Continuous processing of various shafts and more with a set of dice! Cold forging processing produces no chips, making it ideal for reducing material costs.
Continuous processing of various shafts and more with a set of dice! Cold forging processing produces no chips, making it ideal for reducing material costs. 【Features】 ○ Enhanced surface roughness through high-speed impact technology using rotary forging ○ Increased strength of parts due to work hardening ○ Possible to process inner diameter splines by inserting a core for machining ○ Improved precision of inner wave shapes ○ Good precision with CNC control and easy dimensional adjustments ○ Capable of processing delicate parts such as medical components ○ Can process aluminum, titanium, stainless steel, shape memory alloys, β-titanium, and magnesium ○ Achieves lightweight parts by hollowing out what has traditionally been processed as solid material ● For other functions and details, please download the catalog.
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Continuous processing of various shafts, etc., using a set of dice! Ideal for reducing material costs as there are no chips generated during cold forging processing. 【Features】 ○ Enhanced surface roughness through high-speed impact technology using rotary forging ○ Increased strength of parts due to work hardening ○ Possible to process inner diameter splines by inserting a core for machining ○ Improved accuracy of inner wave shapes ○ Good precision with CNC control, making dimensional adjustments easy ○ Capable of processing delicate parts such as medical components ○ Can process aluminum, titanium, stainless steel, shape memory alloys, β-titanium, and magnesium ○ Achieves lightweight components by hollowing out parts that were traditionally processed from solid materials ● For other functions and details, please download the catalog.
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Specialist in processing round bars and pipe materials We can easily process difficult-to-cut materials (titanium, titanium alloys Ni-Ti, 64Ti) through swaging (cold forging) processing. Reduction of annealing processes Weight reduction of parts Reduction of material costs Improvement of dimensional accuracy (inner diameter, outer diameter) Stabilization of quality through NC (numerical control) Increased strength due to work hardening Thickening