Introduction to Ejendals
Ejendals is a Swedish company specializing in high-quality protective hand and footwear. They collaborate with researchers and customers to design products that ensure protection, durability, and ergonomics. Their safety concept aims to reduce accidents through quality products, education, and safety inspections.
Company Background
Founded in 1949, Ejendals expanded from local glove manufacturing to include protective shoes in the 1970s. The acquisition of Finnish company Urho Viljanmaa OY in 2008 marked the formation of the Ejendals Group. The company is a market leader in the Nordic region and has expanded into several European markets.
Product Quality and Customer Service
Ejendals emphasizes quality in production, with half of their products manufactured in their own factory in Finland. They maintain long-term relationships with select factories and have on-site specialists for quality assurance. The company is known for fast deliveries and excellent customer service, facilitated by a computerized stock management system.
Research and Development
Ejendals operates two high-tech laboratories in Sweden and Finland for product testing. This ensures consistent quality and supports the development of new products. The company integrates function and design, having won international design awards.
Safety and Social Responsibility
Ejendals promotes a zero vision for hand and foot injuries, advocating for quality protection to reduce occupational injuries. They conduct safety inspections and offer education through the Ejendals Academy. The company is committed to social responsibility, adhering to a code of conduct that ensures ethical manufacturing practices.
Certifications and Environmental Efforts
Ejendals is certified under OHSAS 18001, ISO 9001, and ISO 14001 standards. They strive to minimize environmental impact through efficient energy use, transportation, waste reduction, and recycling. The company promotes environmentally friendly products by ensuring high quality to reduce waste.
Hand Protection - TEGERA®
The TEGERA® line offers advanced hand protection solutions, focusing on preventing injuries. The catalogue includes various types of gloves, such as ESD, cut-resistant, thermal, and chemical-resistant gloves, each designed for specific applications and safety standards.
Product Design and Development
Since 1949, TEGERA® has been developing hand protection products in Leksand, Sweden. The company creates its own hand molds to ensure consistency in fit, quality, and ergonomic features. The product range includes gloves for precision tasks and those for harsh environments, emphasizing dexterity, grip, durability, and comfort.
Importance of Proper Glove Use
Proper glove selection is crucial for safety, as unprotected hands are vulnerable to cuts, mechanical damage, heat, cold, and chemical exposure. The TEGERA® Handbook by Dr. Olle Bobjer provides guidance on hand protection.
Standards and CE Markings
Protective gloves must meet safety requirements to receive a CE mark, allowing them to be sold in the EU. Compliance with EN standards is necessary, which includes testing methods and labeling requirements.
Risk CategoriesEU Directive 89/66/EEC categorizes personal protective equipment into three risk levels:
- Category I: Simple design for minimal risks, such as gardening gloves.
- Category II: Intermediate design for mechanical durability, requiring testing and type approval.
- Category III: Complex design for high-risk protection, requiring rigorous testing and annual inspections.
General Requirements (EN 420)
Gloves must provide intended protection, be easy to wear, and not harm the user. Specific requirements include pH levels, chromium content, and allergy information. Proper sizing is crucial to prevent accidents.
Mechanical Risks (EN 388)
Gloves are tested for resistance to abrasion, cutting, tearing, and puncture. Performance levels range from 1 to 5, with specific requirements for each risk.
Chemical Protection (EN 374)
Gloves must be impenetrable and undergo permeation testing to determine chemical breakthrough times. Proper disposal after use is essential.
Thermal Risks (EN 407)
Gloves are tested for resistance to burning, contact heat, convective heat, radiant heat, and molten metal splashes. Performance levels indicate the degree of protection.
Overview: This document provides detailed information on the testing, standards, and guidelines for protective gloves used in various environments, including those involving heat, cold, food contact, and electrostatic discharge (ESD). It also offers guidance on selecting, using, and maintaining gloves to ensure safety and compliance with regulations.
1. Heat Resistance (EN 407):- Tests include burning behavior, contact heat, convective heat, radiant heat, and resistance to molten metal.
- Performance levels range from 1 to 4, with higher numbers indicating better protection.
- Gloves must not contact fire if they do not meet level 3 for flammability resistance.
2. Cold Resistance (EN 511):- Gloves are tested for protection against convective and contact cold, with performance levels from 0 to 4.
- Water permeability is also tested, with ratings of 0 or 1.
- Gloves must meet at least level 1 for abrasion and tear resistance under EN 388.
3. Food Contact (EC/1935/2004 and Regulation 10/2011):- Materials must not alter food composition or pose health risks.
- Gloves are tested for migration of substances to food simulants representing different food groups.
- Specific limits are set for certain substances, and gloves are marked with a 'fork and glass' pictogram if approved.
4. Electrostatic Discharge (ESD):- ESD protection is crucial for handling sensitive electronic equipment.
- Gloves and shoes must meet resistance standards (IEC 61340-5-1 and IEC 61340-4-3).
- Proper system use and regular checks are essential for effective ESD protection.
5. Choosing and Using Gloves:- Conduct risk assessments to determine protection needs.
- Consider glove material properties, fit, tactile properties, and comfort.
- Follow user instructions for cleaning, drying, and storage.
6. Avoiding Hand Injuries:- Proper glove selection can prevent injuries from cuts, vibrations, crushing, frostbite, burns, and allergies.
- Employers must conduct risk assessments and provide suitable protective equipment.
7. Glove Disposal:- Set procedures for glove disposal, especially when handling hazardous chemicals.
- Gloves are combustible, but disposal methods may vary based on usage.
8. Additional Considerations:- Color coding helps in quickly identifying glove sizes.
- Material and manufacturing methods are crucial for determining protection levels.
Introduction
This document provides an overview of TEGERA® gloves, focusing on the materials used, their properties, and the specific applications for which they are designed. The gloves are engineered for comfort, safety, and ergonomics, using advanced synthetic materials that outperform natural leather in many respects.
Synthetic Materials- Microthan® and Macrothan®: These are high-tech synthetic materials used in TEGERA® gloves, known for their durability, suppleness, and fingertip sensitivity. They are chrome-free and provide excellent grip.
- Aquathan®: A membrane that allows heat and moisture to escape while preventing liquids from entering, making it wind and waterproof.
- GripForce®: A technology ensuring an extraordinary grip, crucial for glove functionality.
Leather Materials- Full-Grain or Nappa: Durable, soft, flexible, and moisture-resistant, ideal for assembly gloves requiring high fingertip sensitivity.
- Split-Grain Leather: Coarser and heat-resistant, suitable for tougher jobs and welding gloves.
- Cowhide, Goatskin, Pigskin, Oxhide: Each type offers unique benefits in terms of durability, flexibility, and comfort.
Textile Materials- Cotton: Known for comfort and moisture absorption, but flammable.
- Synthetic Fibres: Include polyester, acrylic, nylon, para-aramid, viscose, and bamboo viscose, each offering specific benefits like strength, elasticity, and moisture management.
Dipping Materials- Polyurethane (PU): Durable and resistant to fats and oils.
- Nitrile (NBR): Highly resistant to cuts.
- Latex/Natural Rubber (NR): Elastic with good grip, but limited protection against oil-based solvents.
Chemical Protection Gloves- Various materials are used to protect against specific chemicals, with considerations for temperature, thickness, and mechanical damage affecting protection levels.
Mechanical Risks- Gloves are designed to protect against crushing, cuts, and vibration injuries, using materials like KEVLAR®, Dyneema®, and CRF® for cut resistance.
- Wrist-supporting gloves help maintain proper wrist alignment to prevent long-term injuries.
General Handling GlovesThese gloves are designed for precision, all-round, and heavier work, emphasizing the importance of using protective gloves to reduce injury risks.
Overview of Synthetic Leather Materials:
Synthetic leather materials such as Microthan®, Macrothan®, and Polythan® are highlighted for their ergonomic designs, touch perception, flexibility, and durability. Microthan®+ and Macrothan®+ offer enhanced grip and durability, suitable for rough environments. PU leather is noted for its cost-effectiveness in general applications.
Product Specifications:- Tegera® 9100: Features Microthan® palm, nylon back, unlined, with reinforced index finger, chrome-free, and designed for fine assembly work. Available in sizes 5-11, with a length range of 212-238 mm.
- Tegera® 9105: Similar to 9100 but with a polyester back and Velcro® fastening. Available in sizes 5-13, with a length range of 216-253 mm.
- Tegera® 9140: Features a breathable back, reinforced index finger, and padded palm. Available in sizes 7-11, with a length range of 181-219 mm.
- Tegera® 9220: Made with Macrothan® palm, polyester back, and Velcro® fastening. Available in sizes 6-11, with a length range of 214-250 mm.
Leather Glove Features:
Leather gloves are made from full-grain goatskin, offering high protection, dexterity, and comfort. Chrome-free options are available. Specific models like Tegera® 114 and 115 are designed for fine assembly work with reinforced features for added durability.
Knitted and Dipped Gloves:
These gloves use materials like polyester, acrylic, nylon, and cotton for liners, and nitrile, latex, and PVC for dipping. They provide excellent grip, durability, and protection against various environmental factors.
Key Features Across Products:
All gloves are categorized under Cat. II and comply with EN 388 standards, ensuring protection and performance in various environments such as dry, dirty, and slippery conditions.
Overview: This document provides detailed specifications and features of various synthetic gloves designed for general handling and lightweight tasks. These gloves are categorized under Cat. II and comply with EN 388 standards, indicating their suitability for protection against mechanical risks.
Specifications: The gloves are primarily made from materials such as Lycra®, nylon, and polyester, with different dipping materials like nitrile, nitrile foam, PU, and vinyl. They feature various grip patterns including sandy, reinforced, foam, and smooth finishes. The gloves are available in multiple colors and sizes, ranging from 6 to 11, with lengths between 220mm to 280mm.
Features and Properties: Key features include oil and grease resistance, water repellency, breathable backs, and anatomical designs. The gloves offer properties such as good fingertip sensitivity, durability, flexibility, excellent grip, and comfort. They are designed for use in environments that are moist, oily, greasy, dirty, or slippery.
Product Variants: The document lists several glove models, each with specific features tailored for different types of precision and assembly work. For example, the Tegera® 728 is noted for its oil and grease-resistant palm, while the Tegera® 883 offers the highest level of protection with a breathable back and excellent grip.
Packaging and Display: Gloves are packaged in pairs per package/carton, typically 12/120, and are displayed in bags with euro slots or hooks with hangtags, depending on the model.
Primary Environments of Use: These gloves are suitable for various environments, including wet, moist, oily, greasy, dirty, and slippery conditions, making them versatile for different industrial applications.
Overview: The document provides detailed specifications and features of various
work gloves designed for different applications, focusing on materials, design, and intended environments of use. It categorizes gloves based on liner materials, synthetic leather features, and specific product lines.
Liner Materials: The document outlines the properties of different liner materials used in gloves, such as nylon, cotton, polyester, acrylic, and viscose. Each material is described in terms of strength, flexibility, moisture absorption, and suitability for specific tasks. For instance, nylon is noted for its strength and low moisture absorption, while cotton is highlighted for comfort and high moisture absorption.
Textile Gloves: Several textile gloves are described, each with specific features like reinforced fingers, breathable backs, and grip patterns. The gloves are categorized under different EN standards (e.g., EN 388, EN 420) and are designed for dry and clean environments. Key properties include fingertip sensitivity, flexibility, durability, and comfort.
Synthetic Leather Gloves: The document details gloves made from synthetic leather materials like Microthan®, Macrothan®, and Polythan®. These gloves are designed for medium-weight handling and are noted for their ergonomic designs, touch perception, and durability. Features such as reinforced seams, chrome-free materials, and touchscreen compatibility are highlighted.
Product Specifications: Each glove model is listed with specific details such as material composition, size range, length range, packaging, and primary environments of use. The document emphasizes the importance of choosing the right glove based on the work environment and specific handling needs.
Key Features and Benefits: The gloves are designed to maximize dexterity, grip, durability, and comfort. Synthetic leather gloves are particularly noted for their ergonomic designs and suitability for individuals with allergies to chromium.
Conclusion: The document serves as a comprehensive guide for selecting appropriate work gloves based on material properties, design features, and intended use environments. It highlights the importance of understanding material characteristics to ensure safety and efficiency in various work applications.
Overview: The document provides detailed specifications and features of various work gloves designed for different environments and tasks. The gloves are categorized based on materials, design, and intended use, with a focus on durability, comfort, and protection.
Specifications: Each glove is described with specific details such as material composition, lining, grip pattern, fastening type, color, size range, and length range. The gloves are categorized under Cat. II and comply with EN 388 standards, indicating their protective capabilities.
Materials and Design: The gloves are made from synthetic leather, nitrile, and various types of leather such as goatskin, cowhide, and pigskin. They feature reinforced seams, fingertips, and thumbs for added durability. The design includes ergonomic shaping, elasticated fastening, and specific grip patterns to enhance usability.
Primary Environments of Use: The gloves are suitable for a range of environments including dark, dry, moist, oily, greasy, and dirty conditions. Some gloves are specifically designed for harsh or windy environments, providing water and oil repellency.
Features and Benefits: Key features include chrome-free materials, breathable backs, water and oil repellent palms, and high visibility colors. The gloves offer properties such as good fingertip sensitivity, flexibility, durability, and excellent grip, ensuring a comfortable fit for various tasks.
Leather Gloves: Leather gloves are highlighted for their strength, flexibility, and adaptability to weather changes. Full-grain leather offers dexterity and comfort, while split leather provides better grip and heat insulation. Different types of leather, such as cowhide, goatskin, and pigskin, are used for specific benefits like durability and breathability.
Knitted and Dipped Gloves: These gloves are designed with specific liner and dipping materials to maximize features like dexterity, grip, and comfort. Materials such as polyester, acrylic, nylon, and cotton are used for liners, while nitrile and latex are common dipping materials for enhanced grip and moisture resistance.
Overview: The document provides detailed specifications and features of various types of work gloves designed for different environments and tasks. The gloves are categorized based on their material, dipping, grip pattern, and primary environments of use. They are classified under different categories (Cat. I and Cat. II) and comply with specific EN standards.
Specifications: The gloves are made from materials such as nitrile, latex, PVC, cotton, and leather. They are available in various sizes and lengths, with specific features like water and oil repellency, breathability, and reinforced areas for durability. The gloves are designed for use in wet, dry, dirty, and harsh environments.
Categories and Standards: The gloves are categorized under Cat. I and Cat. II, with compliance to EN 388 and EN 420 standards. These categories indicate the level of protection and suitability for different work conditions.
Materials and Properties: The document highlights the properties of different materials used in glove manufacturing. Nitrile and latex provide flexibility and grip, while cotton and polyester offer comfort and moisture absorption. Leather gloves are noted for their durability and adaptability to weather changes.
Primary Environments of Use: The gloves are suitable for various environments, including wet, moist, oily, greasy, dirty, and harsh conditions. Some gloves are specifically designed for dry and clean environments.
Features and Benefits: Key features include water and oil repellency, breathable backs, high visibility colors, and reinforced areas for added protection. The gloves are designed to provide a good fit, flexibility, and comfort for all-round work.
Special Requirements: The document mentions the development of special gloves in collaboration with customers to address specific work environment challenges and provide long-term protection.
Overview: The document provides detailed specifications and features of various types of gloves designed for specific industrial applications. These gloves are categorized based on their primary functions such as anti-vibration, impact-reducing, wrist support, ESD (Electrostatic Discharge), and cut-resistance.
1. Anti-Vibration Gloves:- Materials: Made from Microthan®, Vibrothan®, and full grain goatskin.
- Features: Reinforced index finger, padded palm, pre-curved fingers, and vibration-reducing properties according to EN ISO 10819.
- Applications: Suitable for harsh environments and heavy work.
2. Impact-Reducing Gloves:- Materials: Microthan®, Impactothan®, and full grain cowhide.
- Features: Reinforced seams, knuckle protection, water repellent, and detachable fingers.
- Applications: Ideal for fine assembly work and all-round work in moist and harsh environments.
3. Wrist Support Gloves:- Materials: Made from Microthan®, Macrothan®, and polyester.
- Features: Extra long, chrome free, reinforced seams, and ergonomically shaped.
- Applications: Used in dry, moist, and slippery environments.
4. ESD Gloves:- Materials: Synthetic leather, nylon, carbon, and PU.
- Features: ESD compliant, reinforced index finger, and excellent fingertip sensitivity.
- Applications: Suitable for dry, clean, and oily environments to prevent static discharge.
5. Cut-Resistant Gloves:- Materials: KEVLAR®, Dyneema®, and CRF®.
- Features: High cut protection, flexibility, and heat resistance.
- Applications: Designed for environments requiring high dexterity and protection against sharp objects.
Conclusion: The document emphasizes the importance of selecting the right glove based on the specific work environment and task requirements. Each glove type is engineered to provide optimal protection, comfort, and functionality.
Overview: The document provides detailed specifications and features of various cut-resistant gloves designed for different environments and tasks. These gloves are categorized based on their cut resistance levels, materials used, and specific properties tailored for precision work, harsh environments, and protection against oil, grease, and moisture.
Specifications: The gloves are categorized under EN 388 standards with cut resistance levels ranging from 3 to 5. They are made using materials like Dyneema®, Lycra®, nylon, and KEVLAR® fiber, with different dipping materials such as PU, nitrile, and latex to enhance grip and protection.
Materials and Features: - Dyneema® Diamond Technology: Provides high cut resistance and dexterity.
- PU (Polyurethane): Offers excellent grip in wet and dry conditions but less effective against moisture.
- Nitrile: Highly resistant to cuts and effective against moisture penetration.
- KEVLAR® Fiber: Used for heat resistance and reinforced seams.
Glove Models: - Tegera® 909: PU palm-dipped, cut resistance level 3, suitable for precision work.
- Tegera® 990: Similar to 909 but with a white color and washable at 40°C.
- Tegera® 899: Features a breathable back and is designed for oil and greasy environments.
- Tegera® 430: Utilizes CRF® Technology for fine assembly work.
- Tegera® 10990: Offers extra flexibility and breathability for precision tasks.
- Tegera® 255: Made with full grain goatskin and KEVLAR® for assembly work.
- Tegera® 783: Fully dipped in nitrile, suitable for slippery and harsh environments.
- Tegera® 10991: Extra long and breathable, designed for precision work.
- Tegera® 215: Reinforced for harsh environments with KEVLAR® lining.
- Tegera® 9121: Half-lined with Microthan®+ for dry and moist environments.
- Tegera® 983: High cut resistance level 4, suitable for dirty environments.
- Tegera® 993: Features glass fiber thread for all-round work.
- Tegera® 132: Combines goatskin and cowhide for warm and harsh environments.
- Tegera® 785: Nitrile dipped with the highest cut resistance level 5.
- Tegera® 991 and 991wht: PU palm-dipped, designed for precision work with high protection.
- Tegera® 980 and 981: Aqua PU dipped, extra long with reinforced fingertips for fine assembly work.
Key Properties: The gloves are designed to offer high protection, flexibility, durability, excellent grip, and comfort. They are suitable for environments with cut risks, oil and grease exposure, and harsh conditions.
Overview: The document provides detailed specifications and features of various cut-resistant and thermal gloves designed for different work environments. These gloves are categorized based on their material composition, dipping materials, and specific use cases, such as cut risk environments, thermal protection, and precision work.
Cut Resistant Gloves:- Materials and Technology: Gloves are made using materials like CRF® Technology, Dyneema®, Kevlar®, and glass fiber threads. These materials provide high cut resistance, flexibility, and durability.
- Dipping Materials: Nitrile foam, latex, and nitrile are used for palm dipping, offering good grip and moisture resistance.
- Features: Gloves are categorized under EN 388 standards with cut resistance levels up to 5. They are designed for environments with cut risks, oil, and moisture exposure.
- Applications: Suitable for fine assembly work, all-round work, and environments with cut, oil, and moisture risks.
Cut Resistant Sleeves:- Design and Materials: Sleeves are made from Dyneema®, Kevlar®, and nylon, providing protection against cuts, abrasion, and puncture injuries.
- Features: They offer flexibility, durability, and comfort, suitable for harsh and cut risk environments.
Thermal Gloves:- Protection Against Thermal Risks: These gloves protect against frostbite and burns, with options for waterproof and extra warm models.
- Materials: Made from synthetic leather, polyester, fleece, and full grain goatskin, providing warmth and flexibility.
- Features: Gloves are winter-lined, with reinforced fingers for durability and protection in cold and wet environments.
Key Takeaways:- Gloves are designed to meet specific safety standards and provide protection in various environments.
- Material selection and glove design focus on maximizing protection, comfort, and dexterity.
- Different gloves cater to specific needs, such as cut resistance, thermal protection, and precision work.
Overview: This document provides detailed specifications and features of various synthetic and leather gloves designed for all-round work, particularly in cold and harsh environments. The gloves are categorized under Cat. II and comply with EN 388 and EN 511 standards, indicating their protective capabilities against mechanical and cold hazards.
Specifications:- Materials: The gloves are made from materials such as Microthan®, Macrothan®, full grain goatskin, and cowhide. They feature polyester, neoprene, and spandex for flexibility and durability.
- Lining: Most gloves are winter-lined with fleece or Thinsulate® (ranging from 40g to 200g) for insulation.
- Grip Pattern: A diamond grip pattern is commonly used to enhance grip.
- Fastening: Options include elasticated 360° or 180° and Velcro® for secure fitting.
- Color and Size Range: Available in various colors including high-viz options, and sizes ranging from 6 to 13, with lengths from 230 mm to 396 mm.
Features:- Chrome-free construction, reinforced index fingers, seams, and fingertips for durability.
- Pre-curved fingers and specially designed thumbs for ergonomic fit.
- Waterproof and windproof properties, with some models featuring Sympatex membranes.
- Reflective elements for visibility in dark environments.
Properties:- Flexible, durable, and comfortable with excellent grip and fit.
- Good fingertip sensitivity, especially in leather gloves.
- Designed for use in various environments including dark, windy, dry, cold, wet, moist, oily, greasy, dirty, slippery, and harsh conditions.
Primary Environments of Use: The gloves are suitable for dark, windy, dry, cold, wet, moist, oily, greasy, dirty, slippery, and harsh environments, making them versatile for different work conditions.
Standards Compliance: All gloves are categorized under Cat. II and comply with EN 388 and EN 511 standards, ensuring protection against mechanical and cold hazards.
Overview: This document provides detailed specifications and features of various types of gloves designed for different environments and purposes, including cold insulation, chemical protection, and heat resistance. Each glove type is categorized by its material, design, and intended use environment.
Cold Insulation Gloves: These gloves are designed for use in cold, moist, and harsh environments. They are categorized into medium and heavy weight, with features such as water repellent materials, reinforced fingers, and high durability. The gloves are made from materials like synthetic leather, full grain goatskin, and oxhide, with linings such as fleece and Thinsulate® for added warmth.
Chemical Protection Gloves: These gloves provide protection against chemical risks and are suitable for environments hazardous to health. They are made from materials like PVC and neoprene, with features such as full dipping for chemical resistance, and are designed to withstand contact heat up to 500°C.
Heat Protection Gloves: Available in light, medium, and heavy weight categories, these gloves are designed to withstand high temperatures and provide excellent durability and fit. They are made from materials like full grain goatskin and cowhide, with features such as reinforced seams and water repellent properties. They are suitable for warm and harsh environments.
Key Features and Standards: The gloves adhere to various EN standards, ensuring high levels of protection, durability, and comfort. Features such as high-viz colors, reinforced fingers, and water repellent properties are highlighted across different glove types.
Overview: This document provides detailed specifications and guidelines for various types of protective gloves, including heat-resistant, welding, and chemical-resistant gloves. It outlines the materials, features, and recommended environments for use, along with safety standards and certifications.
Heat-Resistant Gloves:- TEGERA 484: Nitrile-dots, cotton gloves, withstands heat up to 250°C, suitable for warm environments. Features include reinforced seams and water/oil repellency.
- TEGERA 17 & 19: Split grain cowhide gloves, withstands heat up to 100°C, flame retardant, suitable for heavy work in harsh environments.
Welding Gloves:- TEGERA 134: Made from full grain goatskin with KEVLAR® fiber, withstands heat up to 100°C, water and oil repellent, suitable for cut risk and warm environments.
- TEGERA 585: Split grain cowhide with aluminium, withstands heat up to 250°C, cut resistant, suitable for harsh environments.
Chemical-Resistant Gloves:- Designed for protection against hazardous chemicals, these gloves are intended for single-day use. Key considerations include chemical permeation, penetration, and degradation.
- Recommendations are provided for various chemicals, indicating protection duration and material suitability.
Safety Standards:- Gloves are categorized under EN 388, EN 407, EN 12477, and other relevant standards, indicating their protective capabilities against mechanical and thermal risks.
Recommendations:- Always consult the chemical protection guide when selecting gloves for specific chemical exposures.
- Consider environmental factors such as temperature and chemical mixtures when choosing protective gloves.
Overview: This document provides detailed specifications and features of various disposable and chemical-resistant gloves, focusing on materials like nitrile, neoprene, latex, PVC, and PE. It highlights the gloves' suitability for different environments and their protective properties against chemicals.
Specifications:- Nitrile Gloves: Available in various thicknesses (0.06 mm to 0.38 mm), these gloves offer excellent fingertip sensitivity, flexibility, and are latex-free. They are suitable for handling foodstuffs and provide splash protection against chemicals.
- Neoprene Gloves: Known for their elasticity and durability, neoprene gloves provide good fingertip sensitivity and are suitable for corrosive environments.
- Latex Gloves: These gloves offer good dry grip and flexibility, suitable for wet and dirty environments.
- PVC/Vinyl Gloves: These are soft, flexible, and suitable for microbiological risk environments. They are available in transparent color and are latex-free.
- PE Gloves: Ideal for thin, disposable use, these gloves are approved for handling foodstuffs but offer limited protective properties.
Standards and Certifications:- Gloves are categorized under Cat. I, II, or III, indicating their level of protection.
- Compliance with standards such as EN 374-2, EN 374-3, EN 388, and IEC 61340-5-1 (ESD) is noted for various gloves.
Features and Benefits:- Gloves provide splash protection against chemicals and are approved for handling foodstuffs.
- They offer high puncture resistance, flexibility, and good grip.
- Some gloves are accelerator-free, reducing the risk of allergic reactions.
Applications:- Gloves are suitable for use in chemical risk environments, microbiological risk environments, and environments hazardous to health.
- They are designed for disposable use in wet, moist, dirty, and harsh environments.
Material Suitability:- Nitrile: Suitable for aliphatic solvents, not suitable for ketones.
- Neoprene: Suitable for strong acids and alkalis, not suitable for aliphatic solvents.
- Butyl Rubber: Suitable for ketones.
- Viton and Laminates: Effective against aromatic organic solvents.
Overview: This document provides detailed specifications and features of various chemical protection gloves under the Tegera® brand. These gloves are designed for use in environments with chemical, microbiological, and other hazardous risks. They are categorized under Cat. III, indicating high protection levels.
Specifications: The gloves are made from materials such as nitrile, latex, neoprene, and PVC, with thicknesses ranging from 0.28 mm to 0.68 mm. They feature diamond or sandy grip patterns and are available in various colors and sizes. The length of the gloves ranges from 300 mm to 450 mm, depending on the model.
Features and Properties: Key features include protection against chemicals, approval for handling foodstuffs, latex-free options, and resistance to oil and grease. The gloves are designed to be flexible, durable, and comfortable, with good grip and fit. Some models offer additional features like extra length or winter lining for cold environments.
Primary Environments of Use: These gloves are suitable for chemical risk environments, microbiological risk environments, environments hazardous to health, corrosive environments, wet and moist environments, and dirty environments. Some models are also suitable for cold environments.
Standards and Certifications: The gloves comply with EN 388, EN 374-2, and EN 374-3 standards, ensuring their effectiveness in providing protection against mechanical and chemical risks.
Packaging and Display: The gloves are packaged in bags with euro slots, with varying quantities per package and carton depending on the model. The AQL (Acceptable Quality Level) for most gloves is 0.65, indicating a high level of quality control.
Overview of Glove Materials and Their Applications
Various materials are used in the production of disposable and chemical-resistant gloves, each offering unique properties and benefits. Nitrile gloves are flexible, elastic, and puncture-resistant, making them suitable for food handling. Neoprene gloves are soft and durable, while latex gloves provide good dry grip. PVC gloves are versatile, and polythene gloves are ideal for thin, disposable applications. Butyl rubber and laminates offer chemical resistance, with Viton and polyvinyl alcohol providing protection against specific organic compounds.
Glove Specifications and Standards
Gloves are categorized under Cat. III and adhere to standards such as EN 388 and EN 374, ensuring protection against chemicals and mechanical risks. Specific models like the Tegera® series offer features such as pre-curved fingers, various grip patterns, and different liner materials to enhance comfort and protection in hazardous environments.
JALAS® Safety FootwearJALAS®
safety shoes are designed with advanced shock absorption systems to protect feet from stress and strain injuries. They are lightweight, comfortable, and improve posture, reducing long-term damage to the body. The JALAS® Drylock membrane provides waterproof and ventilating properties, with thermal insulation for winter models.
Electrostatic Discharge (ESD) Protection
ESD protection is crucial in environments dealing with sensitive electronic equipment. ESD gloves and shoes must meet international standards to prevent damage from static electricity. Regular testing and maintenance of ESD properties are essential to ensure effective protection.
Foot Health and Ergonomics
Proper footwear is vital for preventing foot problems and ensuring long-term health. JALAS® emphasizes the importance of ergonomic design in their safety shoes to support the foot's natural structure and function.
Introduction
This document discusses the importance of proper footwear to prevent injuries and enhance comfort. It highlights the role of JALAS® insoles and the FootStop Service in preventing repetitive strain injuries (RSI) by providing customized support.
Footwear Specifications
Proper footwear should provide the right size and cushioning to prevent misalignments and overstrain. JALAS® offers neutralizer insoles for different foot arches, which can often replace the need for custom orthopaedic soles.
FootStop Service
The FootStop Service uses a foot scanner to analyze foot pressure and arch type, helping users select appropriate shoes and insoles. This service acts as preventative healthcare but does not replace medical treatment for existing injuries.
Footwear Maintenance
To prolong the life of protective footwear, consider the environment, moisture, and waterproofing. Shoes should be dried at room temperature and waterproofed regularly.
Insole Types
JALAS® offers various insoles, such as FX2 SUPREME, FX2 PRO, FX1 CLASSIC, FX2 CLASSIC, FX2 WINTER, and FX3 EXALTER, each with specific shock absorption and comfort features. All insoles conform to ESD standards.
Outsole Materials
Different outsole materials like RPU, Nitrile Rubber, PU, and TPU offer varying levels of grip, durability, and resistance to heat and chemicals. Each material is suited for specific environments and work conditions.
Safety Features
JALAS® safety footwear includes features like anti-static properties, ESD compliance, stabilizers, impact protection, toe wear protection, and safety toecaps made from materials like aluminum, steel, and composite.
Additional Features
Footwear also includes nail protection, various lining materials for ventilation and warmth, and membranes for water repellency and breathability.
Safety Standards
All safety footwear complies with EN ISO 20345:2011 and other relevant standards, ensuring protection against various hazards. The document provides a table summarizing the protection classes and additional tests.
Sole Platforms
JALAS® offers several sole platforms like Enduro, Performance, Grip, Zenit, Stabilizator, Green Line, and M-Sport, each designed for specific environments and safety ratings.
Conclusion
JALAS® safety footwear is designed to maximize safety and comfort, with a wide range of models and sizes to suit different needs and environments.
Overview: The document provides detailed specifications and features of various safety shoe collections, highlighting their suitability for different working environments. Each collection is designed with specific materials and technologies to enhance safety, comfort, and environmental friendliness.
Key Collections:
- M-Sport: Lightweight shoes with aluminium toecaps and dual shock absorption zones, suitable for both indoor and outdoor industrial environments.
- Green Line: Environmentally friendly shoes carrying the EU Flower Ecolabel, using non-metal materials for puncture protection and toecaps.
- Drylock: Waterproof shoes with a non-slip, heat-resistant outsole, ideal for wet and slippery surfaces.
- Zenit: Features the FX2 shock absorption system and RPU outsole for excellent grip in wet environments, with memory foam lining for comfort.
- Exalter2: Sporty design with a heat-resistant outsole and enhanced safety features for ladder use.
- Street: Sneaker-style shoes with RPU soles for ultimate grip and breathable lining for comfort.
- Gran Premio: Spacious fit shoes with unbeatable grip on winter surfaces.
- Grip Collection: High-quality, comfortable shoes with PU/Nitrile outsoles for industrial use.
Technical Specifications:
- Safety Ratings: Most shoes conform to EN ISO 20345:2011 standards, with ratings such as S1, SRC, HRO, and S1P.
- Materials: Common materials include aluminium for toecaps, PU for midsoles, and various textiles for insoles and linings.
- Features: Many shoes offer heat and oil-resistant outsoles, anti-static properties, ventilating insoles, and double shock absorption zones.
- Environmental Considerations: Some collections emphasize eco-friendly materials and processes, such as the Green Line.
Conclusion: The document outlines a comprehensive range of safety footwear designed to meet diverse industrial needs, focusing on protection, comfort, and environmental responsibility.
Overview: This document provides detailed specifications and features of various Jalas® safety shoe models, categorized under safety ratings S1P and S2, compliant with EN ISO 20345:2011 standards. The shoes are designed for environments with risks of outsole penetration and offer various protective features.
Specifications:- Jalas® 3008 Zenit: Features plasma-treated composite nail protection, aluminium toecap, PU midsole, and RPU outsole. It is designed for regular fitting and available in sizes 36-47. Key features include oil-resistant outsole, anti-static properties, and excellent shock absorption.
- Jalas® 1518 Antislip+: Incorporates steel nail protection, aluminium toecap, and rubber outsole. It offers a wide fit and is available in sizes 35-50. Notable for its heat-resistant outsole and wide fit.
- Jalas® 3108 Monza Grip: Utilizes plasma-treated composite nail protection and aluminium toecap. It features a PU midsole and rubber outsole, suitable for regular fitting in sizes 36-47.
- Jalas® 6418 Bio: Offers a metal-free design with composite toecap and plasma-treated composite nail protection. It is environmentally friendly, meeting EU flower criteria.
- Jalas® 3010 Zenit: Designed for both indoor and outdoor use, featuring a breathable membrane patented by Geox, and a PU midsole with RPU outsole.
Features and Properties:- All models provide the highest level of protection, excellent grip, fit, and comfort.
- Common features include oil-resistant outsoles, anti-static properties, ventilating insoles, and double shock absorption zones.
- Some models offer additional features like heat-resistant outsoles, water repellency, and breathable membranes.
Primary Environments of Use: These safety shoes are primarily designed for indoor environments with risks of outsole penetration, with some models suitable for outdoor and dry environments.
Overview: This document provides detailed specifications and features of various Jalas® safety shoes, all conforming to EN ISO 20345:2011 standards with a safety rating of S3. These shoes are designed for use in outdoor and harsh environments, offering high protection levels, excellent grip, and comfort.
Specifications: Each model features a combination of plasma-treated composite (PTC) textile for nail protection and aluminium or composite toecaps. The fitting is generally regular, with some models offering a wide fit. The size range varies from 34 to 50, depending on the model.
Materials: The shoes incorporate PU midsoles, plastic shanks, and rubber or RPU outsoles. Insoles are made from textile, soft EVA, and polyester-based conductive threads, with double shock absorption zones using Poron® XRD™. Upper materials include microfiber, textile, PU-coated leather, and full-grain leather.
Features: Key features across the models include heat-resistant and oil-resistant outsoles, anti-static properties, ventilating insoles, water repellency, and double shock absorption zones. Some models also include ProNose toe reinforcement, Boa® closure systems, and are metal-free.
Properties: The shoes provide the highest level of protection, excellent grip, fit, comfort, and shock absorption. They are suitable for environments with risks of outsole penetration and are designed to prevent odours with antibacterial fibres.
Primary Environments of Use: These safety shoes are ideal for outdoor use, environments with risk for outsole penetration, wet environments, and where metal-free shoes are required.
Overview: This document provides detailed specifications and features of various safety shoe models under the Jalas® brand, each conforming to EN ISO 20345:2011 standards. The shoes are designed for different environments and offer various levels of protection and comfort.
Specifications:- Toecap Material: Options include composite and aluminium.
- Nail Protection Material: Options include plasma-treated composite textile and steel.
- Fitting: Available in narrow, regular, and wide fits.
- Size Range: Typically from 36 to 47, with some models extending to 48 or 50.
- Platform: Includes Green Line, M-Sport, Zenit, Enduro, and Grip.
- Sole Material: Combinations of PU midsole, rubber outsole, plastic shank, and RPU outsole.
- Insole Material: Textile, soft EVA, polyester-based conductive thread, with shock absorption zones in Poron® XRD™ or Ergothan.
- Upper Material: Options include PU-coated leather, full-grain leather, microfiber, and textile.
- Lining Material: Polyester, polyamide, Cambrelle®, and technical fleece.
- Colour Options: Black, grey, green, red, yellow.
Features:- ProNose toe reinforcement for added durability.
- Oil-resistant and heat-resistant outsoles.
- Anti-static properties and metal-free options.
- Water repellent and ventilating insoles.
- Double shock absorption zones for enhanced comfort.
- Conformance with IEC 61340-5-1 (ESD) standards.
- Environmental considerations, such as meeting EU flower environmental criteria.
Properties:- Highest level of protection and excellent grip.
- Comfortable fit with excellent shock absorption.
- Lightweight and suitable for harsh environments.
Primary Environments of Use:- Outdoors and indoors, including environments with risk for outsole penetration.
- Metal-free requirements for shoes.
- Wet and harsh environments, suitable for all-year use.
- Cold environments with specific models offering extreme warmth.
Overview: This document provides detailed specifications and features of various Jalas® safety shoes, all conforming to the EN ISO 20345:2011 standard with safety ratings of S2 or S3. These shoes are designed for use in harsh environments, offering protection against various hazards.
Specifications:- Safety Ratings: S2, S3, with additional features like HRO (heat resistant outsole), WR (water resistant), SRB/SRC (slip resistance), CI (cold insulation).
- Materials: Toecaps are made of aluminium, with nail protection materials varying between steel and plasma-treated composite textiles. Uppers are typically PU-coated leather, with some models featuring full-grain leather.
- Insoles: FX2 Winter or FX2 Pro, featuring textile, aluminium foil, soft EVA, and Poron® XRD™ for shock absorption.
- Sizes: Range from 35 to 50, depending on the model.
Features:- All models include anti-static properties, oil-resistant outsoles, and double shock absorption zones.
- Many models feature ProNose toe reinforcement, heat-resistant outsoles, and water-repellent properties.
- Some models are equipped with additional features like snow locks, zippers, and reflectors for enhanced safety and convenience.
Primary Environments of Use: These shoes are suitable for outdoor use, environments with risks of outsole penetration, cold and wet conditions, and harsh environments. Some models are specifically designed for heat and welding applications.
Key Models:- Jalas® 3325 Drylock: Features a waterproof Drylock membrane and is suitable for wet environments.
- Jalas® 1375: Designed for cold environments with a polyester fur lining.
- Jalas® 1808 Icetrack: Offers a wide fit and bio-ceramic fur lining for thermal insulation.
- Jalas® 3978 Offroad+: Includes ProNose toe reinforcement and is water repellent.
- Jalas® 6448 Tempera High: Metal-free design suitable for environments requiring non-metallic footwear.
- Jalas® 1898 Winter King: Features KEVLAR® thread for heat resistance and withstands welding sparks.
Conclusion: Jalas® safety shoes provide a high level of protection, comfort, and durability, making them ideal for various challenging work environments. Each model is tailored to specific needs, such as cold insulation, heat resistance, and water repellency, ensuring safety and performance in demanding conditions.
Overview: The document provides detailed specifications and features of various safety and occupational footwear models under the Jalas® brand. These shoes are designed for different environments and purposes, offering protection, comfort, and durability.
Specifications: Each shoe model is described with specific materials used for different parts such as the toecap, nail protection, sole, insole, upper, and lining. Common materials include aluminium for toecaps, steel or composite for nail protection, PU and rubber for soles, and various textiles for insoles and linings. The shoes are designed to withstand high temperatures, resist oil, and provide anti-static properties.
Key Features: The footwear includes features like heat-resistant outsoles, oil-resistant outsoles, anti-static properties, padded boot shafts, ventilating insoles, and water repellency. Some models also include special features like ProNose toe reinforcement, KEVLAR® thread for heat resistance, and double shock absorption zones.
Safety Ratings and Standards: The shoes comply with various EN ISO standards, such as EN ISO 20345:2011 and EN ISO 20347:2012, indicating their suitability for different safety requirements. Ratings like S3, SRC, CI, HRO, and others denote specific protective features such as slip resistance, cold insulation, and heat resistance.
Primary Environments of Use: The shoes are suitable for a range of environments including outdoors, indoors, warm surfaces, environments with risk for outsole penetration, and harsh conditions. Specific models are tailored for environments like welding, fire rescue, and cold conditions.
Occupational Footwear Collections: The document also describes occupational footwear collections like Flower, Grand Walking, Gram à la Sara, and Tandem, which are designed for comfort and durability in professional settings without necessarily having safety features like toecaps.
Rules and Standards: All footwear complies with EN standards and applicable norms for worker safety, based on the PPE Directive (89/686/EEC). The document includes a table explaining protection classes and additional tests for occupational footwear.
Overview: This document provides detailed specifications and features of various occupational footwear models under the Jalas® brand, designed for different environments and safety requirements. The shoes conform to EN ISO 20347:2012 standards, ensuring quality and safety.
Specifications:- Fitting: Regular and Wide options available.
- Size Range: Varies from 34 to 48 depending on the model.
- Platform Types: Grip, Grand Walking, Comfort, Tandem, Enduro, Performance, Cool Sport.
- Sole Material: Combination of PU midsole, plastic shank, rubber, TPU outsole.
- Insole: FX2 Pro and FX2 Supreme with Poron® XRD™ for shock absorption.
- Upper Material: PU-coated leather, full-grain leather, microfiber, Cordura®.
- Lining Material: Polyester, polyamide, technical fleece, neoprene.
- Color Options: Black, grey, yellow, white, silver, brown, red, blue.
Features:- Heat-resistant and oil-resistant outsoles.
- Anti-static properties and ESD compliance (IEC 61340-5-1).
- Ventilating insoles and breathable materials.
- Adjustable straps, padded shafts, and pull loops for comfort.
- Waterproof and water-repellent options available.
- Reflectors and antibacterial fibers in certain models.
Properties:- Excellent grip and fit.
- Comfortable and breathable.
- Lightweight with excellent shock absorption.
- Suitable for various environments: indoors, outdoors, dry, wet, clean, slippery, harsh, and cold environments.
Primary Environments of Use: The shoes are designed for use in diverse settings such as indoors, office environments, dry and clean environments, slippery and wet conditions, and harsh outdoor environments.
Additional Products:- Insoles: Designed to provide comfort and reduce foot pain with double shock absorption using Poron® XRD™.
- Socks and Accessories: Additional products to complement the footwear range.
Overview: The document provides detailed information on JALAS® insoles and socks, focusing on their design, materials, and features aimed at enhancing comfort and functionality for users. The insoles are designed to adapt to different foot arches and provide dynamic support, while the socks are made from various materials to ensure moisture management and comfort.
Insoles:- Design and Functionality: JALAS® insoles are anatomically designed for low, medium, and high arches, featuring double shock absorption zones with Poron® XRD™ material for enhanced comfort and support.
- Materials: The insoles are made from textile, soft E.V.A, and polyester-based electro conductive thread, with a control bar in TPU or rigid E.V.A.
- Features: They are ESD certified, ergonomically shaped, and approved for use in all JALAS® protective shoes. They also include perforated front sections for breathability.
- Specific Models: The document lists various models such as JALAS® 8709h for high arches, 8710m for medium arches, and 8711l for low arches, each with specific features and size ranges.
Socks:- Material and Design: JALAS® socks are made from materials like beech, Lycra®, Lenzing Modal®, and bamboo, designed to be breathable, moisture-wicking, and antibacterial to prevent odors.
- Features: The socks are available in various weights (light, medium, heavy) and include features like flame retardancy and ESD properties.
- Specific Models: Models such as JALAS® 8215 light ankle sock and 8214 flame retardant sock are highlighted, each with specific materials and properties aimed at providing comfort and functionality.
Additional Information:- Moisture Management: The document emphasizes the importance of keeping feet dry to prevent discomfort and sores, recommending the use of functional materials that wick away moisture.
- Material Properties: Various materials like viscose, bamboo, and wool are discussed for their moisture absorption and antibacterial properties.
Shoelaces- Product 6006: Made of Nomex®, available in black, with sizes 100cm and 150cm.
- Product 8003: Available in black, with size options of 90cm, 100cm, 120cm, 150cm, and 180cm.
Anti-Slip Protection- Product 8017: Made of TPE, black with reflector and five studs, available in sizes S, M, L, XL, offering excellent grip.
- Product 8018: Made of TPE, with six studs, available in sizes M, L, XL, offering excellent grip.
- Product 8023: Made of TPE, black with ten studs, available in sizes 36-40, 40-44, 44-48, offering excellent grip.
GlovesThe document lists various TEGERA® gloves with corresponding page numbers for reference. The gloves are categorized by model numbers, each associated with specific pages in the document.
ShoesThe document also references JALAS® shoes, with model numbers and corresponding page numbers for detailed information.