

Excertos do catálogo

QIROX Sensor systems Top quality with each weld seam
Abrir o catálogo na página 1
Tactile gas nozzle sensor Page 6 Laser offline sensor Page 10 Laser online sensor Page 12 Technical Data Page 14
Abrir o catálogo na página 2
Sensitivity to perfect welding processes With our QIROX® system solution for automated welding and cutting we can integrate state-of-the-art welding technology into your welding production. The main task of our sensor systems is to ensure quality control through precise welding procedures. The flexibility of your systems increases due to the control and compensation of tolerances between the programmed paths and the real workpieces. Four CLOOS sensors which have been proven in the field are available for the most varied materials and applications; these sensors are able to further improve...
Abrir o catálogo na página 4
The right sensor always available With intensive consultation we can develop complete solutions to meet your requirements. To generate maximum efficiency and effectiveness by automating the welding processes, all components are individually matched to the relevant production conditions and requirements. This applies in particular to the field of sensor technology, where we have developed four products with different capacity ranges: tactile gas nozzle sensor, arc sensor, laser offline sensor and the laser online sensor. These sensors have different tasks depending on the production...
Abrir o catálogo na página 5
Tactile gas nozzle sensor Start and/or end point exactly located The start point and the workpiece joint contour play a special role in automated robot welding. Although the positions are defined by the relevant program which controls the robot, in practice deviations occur due to inaccurate settings or material tolerances. To enable these deviations to be quickly and accurately compensated for, the CLOOS tactile gas nozzle sensor checks the start and/or end positions – and corrects the programmed welding path correspondingly. The tactile gas nozzle sensor can be combined with the arc...
Abrir o catálogo na página 6
Measuring the seam volume If both positions are defined, the linear run of the weld seam is determined automatically. In the case of a V seam the tactile CLOOS gas nozzle sensor also measures the seam volume according to the same principle. After saving the information in the user program, the robot fills the seam along the optimised path. The main advantage is a perfect welding result as a basis for a reliable quality. Tasks ■ Detection of the start and/ or end position ■ Definition of the workpiece position ■ Determination of the linear welding path ■ Measurement of the seam volume in the...
Abrir o catálogo na página 7
Correction signals from the arc The CLOOS arc sensor uses the arc to simultaneously weld and measure the joint position on the workpiece. The welding torch oscillates along the joint scanning the edges of the weld seam preparation. If the measured values, which are obtained electronically from weld current and voltage, are not the same on both sides, the weld seam position deviates from the programmed path. The computer-based robot controller adjusts the welding head position so that the seam is placed exactly in the centre of the joint. In addition, this procedure corrects the distance of...
Abrir o catálogo na página 8
Saving the measured values After the robot has welded the root seam, the correction data determined is saved and used for welding the cover runs ensuring that the build-up of these runs is continuously optimised. The final result is further improved when combined with the CLOOS gas nozzle sensor, which determines the start of the weld seam. Materials ■ Steels ■ Chrome nickel steels Advantages and benefit ■ Nearly no loss in time ■ No interference from attached parts ■ Direct connection to the robot controller ■ Adaptation of the correcting sensitivity ■ Memory function - data storage for...
Abrir o catálogo na página 9
Laser offline sensor Optically measured welding path The laser offline sensor tracks the programmed path offline before starting the welding process. The sensor sends a light beam onto the material surface, receives the reflection and obtains every measurement information on the actual seam position and seam geometry. This procedure can be used for materials made of high-alloy steel and aluminium as well as for unalloyed steel and galvanised steel. The laser offline sensor can be combined with the arc sensor without any problems. Short detection distance, low cycle times In order to achieve...
Abrir o catálogo na página 10
Monitoring Integrated video camera ■ Programming aid where access is difficult ■ Observation of the torch during welding Contactless measurement As a non contact optical measuring system, the CLOOS laser offline sensor is largely independent of the material. The scanning process is quick and due to its high resolution and insensitivity to reflection can provide reliable details and data on positions as well as geometrical information on the different weld types. Programming adaptation During scanning the laser sensor detects the position of the seam start and end, as well as the position of...
Abrir o catálogo na página 11
Laser online sensor Maximum sensor capacity The laser online sensor first moves to the programmed start position. The tracking section is then measured online during welding. The laser head which is mounted parallel to the processing point sends a laser beam onto the workpiece surface, receives the reflected beams and transfers the measured results to the robot controller. Here the data is evaluated in order to compensate for material tolerances and heat distortion. Based on the new values the system changes the position of the welding torch and adjusts the process parameter. The online...
Abrir o catálogo na página 12
Consistent quality If the tolerance deviations indicated by measurements during welding are too high, the system interrupts the production run. This integrated quality control inhibits faulty welds, thus avoiding extensive rework. Tasks ■ Search seam start ■ Correction of tooling position ■ Adaptation of process parameters during welding ■ Control of the edge offset in the case of butt welds Weld types ■ Lap joint ■ Multi overlap weld ■ Butt joint ■ Butt joint with air gap ■ Fillet weld ■ V weld, HV weld ■ Corner weld ■ Flange weld ■ Special seam types Materials ■ Nearly all materials ■...
Abrir o catálogo na página 13Todos os catálogos e folhetos técnicos CLOOS
-
QINEO BASIC 300 C 2020
4 Páginas
-
QINEO MICRO PULSE 200
3 Páginas
-
QINEO MICRO 1802020
3 Páginas
-
QINEO MICRO 300
3 Páginas
-
QIROX Entry Package
12 Páginas
-
QIROX RoboPlan
16 Páginas
-
Micro Cell QR-MC-1.1 and MC-1.2
4 Páginas
-
QIROX Compact cells
32 Páginas
-
QIROX Welding robots
32 Páginas
-
QIROX Compact systems
40 Páginas
-
QINEO NexT
32 Páginas
-
QINEO – Product Overview
44 Páginas
-
Welding
32 Páginas
-
Grinding Solution
4 Páginas
-
QIROX Laser Cell
12 Páginas
-
QIROX Quick Weld Programming QWP
2 Páginas
-
QIROX QC2 Master
2 Páginas
-
QIROX QC2 Advanced
2 Páginas
-
Carl Cloos Schweisstechnik GmbH
28 Páginas
-
Industrial competence: Agriculture
24 Páginas
-
C-Gate
4 Páginas
Catálogos arquivados
-
TIG Drive CWD 45° Ø1.2 AS21
2 Páginas
-
QN PT 40 Circle cutting set
2 Páginas
-
Standard head
2 Páginas
-
Single wire cleaning CMR7C
2 Páginas
-
Narrow gap blade 350-0°-LED
2 Páginas
-
Torch cleaning unit CMR6-T-SR
2 Páginas
-
Torch bracket for MRW 10° AS21
2 Páginas
-
MRW 300 - 35° - 78/273
2 Páginas
-
QWD-AR
2 Páginas
-
QWD-M2
2 Páginas
-
QINEO NexT 452 DC
2 Páginas
-
QINEO CLE 352 (DC)
3 Páginas
-
QINEO CHAMP 451 PRO
3 Páginas
-
QINEO STEP 250 C
3 Páginas
-
QINEO TRONIC PULSE 350
3 Páginas
-
QINEO CHAMP 450
4 Páginas
-
Laser hybrid head LHP - IMG
2 Páginas
-
QINEO Plasma Cut 30
3 Páginas
-
QINEO STEP 350 C
3 Páginas
-
QINEO BASIC 300 C 2016
4 Páginas
-
QINEO MICRO 180 2016
3 Páginas
-
QINEO® PULSE
10 Páginas
-
QINEO® STEP
8 Páginas
-
The new Industrial robot ROMAT® 400
4 Páginas