Introducing examples of pocket processing, dish holes, and cut-out processing for "Warasuyama Carbon"!
"Warashiyama Carbon" is our machining technology that supports various functions through continuous micro-hole processing, outer and inner diameter processing of round bars, and flexible machining capabilities. We conduct various cutting processes, prototype and small-batch production, as well as unique development of materials (primary products). The ability to perform dish holes and pocket machining is a significant advantage of cutting processes. While water jet and laser cutting can penetrate, cutting machining allows for free adjustment of pocket depth. Furthermore, although CFRP materials have layers, we can achieve a clean finish on the bottom surface with special tools, enabling processing that does not cause delamination between layers, even for trims and thin shapes. [Processing Examples] ■ Pocket machining ■ Transom *For more details, please refer to the PDF document or feel free to contact us.
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【Features】 ■ The ability to process dish holes and pockets is a significant advantage of cutting machining. ■ The depth of the pockets can be freely adjusted. ■ Special tools allow for a clean finish on the bottom surface. ■ Processing can be done without causing delamination between layers, even for trims and thin-walled shapes. *For more details, please refer to the PDF document or feel free to contact us.
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For more details, please refer to the PDF document or feel free to contact us.
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At Kyowa Seisakusho, we have a wealth of production achievements primarily in the automotive industry, focusing on mass production of steel shafts, plates, cores, and other products. In addition to our existing business, we are also working on cutting processing of new materials, CFRP (carbon fiber reinforced plastic composite materials), to meet the needs for lightweight and high-strength solutions. Under the Toyota Production System, which has garnered long-standing support from customers in the automotive industry, we achieve QCD through thorough production management and are advancing research and development towards new processing limits.