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Extrude Hone
S250
Compact and flexible deburring system concentrates
maximum economy into minimum machine space
The new Kennametal Extrude Hone™ S250 thermal deburring
machine is designed to be flexible and compact and offers a host
of options. Being a fully featured single-station unit, it is provided
with all necessary functions to ensure a controlled deburring process
and integrates easily into lean manufacturing environments.
The S250 thermal deburring machine, designed for a max closing
pressure of 250 US tons (2,224 kN), is available with different
chamber diameters for perfectly meeting individual customer
requirements. With an optional “extended chamber”, the deburring
unit provides the possibility of machining larger workpieces, thus
providing high flexibility and economical operation.
The S250's compact design requires very little floor space, making it
ideal for machining not only small batches but also mass-produced
parts. This makes the S250 an extremely economical solution for
manufacturers with a diverse range of parts and batch sizes.
It also integrates easily into a linked production line.
Features and Benefits
• Robust
Combination of a frame designed to give long lasting fatigue strength
and performance and a hydraulic ram cylinder providing reliable chamber closing.
• Modularly constructed enclosure
Low-noise hydraulic power unit reduces noise into the production
environment and delivers increased safety for the machine operator.
• Water cooling of the 2-piece deburring chamber
Enables system to be used in continuous operation.
• Hydraulically operated gas dosing system
Achieves consistent quality with high-precision gas delivery system.
• Simplified loading and unloading operation
Automatically operated vertical sliding door and ergonomic loading device (patent pending).
• User-friendly HMI control with touch screen interface
Facilitates quick set ups and fine-tuning of parameters and convenient machine
monitoring and operation and integral fault diagnostics.
PRODUCT DATA SHEET
TEM • Thermal Energy Method
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