Examples utilizing our specialties in "hexagonal brooch processing" and "knurling processing" are included.
We are currently offering a "Product Case Study Collection" showcasing ultra-precision parts processing that our company has undertaken. This collection features semiconductor manufacturing equipment parts processed with hexagonal broaching, as well as shafts with flat knurling, highlighting their characteristics and innovative aspects. Additionally, it includes a list of our available equipment. We encourage you to take a look. 【Contents (Excerpt)】 ■ Ultra-small parts for the electronic components industry ■ Gear parts for the power equipment industry ■ Equipment parts for the semiconductor equipment industry ■ Equipment introduction (NC automatic lathes, secondary processing machines, inspection equipment, etc.) *You can view it immediately via "PDF Download." Please feel free to contact us with any inquiries.
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Introduction to Knurling Processing Technology ■ Supports two types: vertical (flat) and iris ■ Capable of fine knurling with a pitch of 0.3 to 0.5 mm, up to a maximum of 1.0 mm ■ When using a rolling machine, the production capacity is approximately 3000 pieces per day ■ Compatible with materials such as aluminum, iron, stainless steel, SCM, titanium, and copper alloys *For more details, please 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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Our company, based on exceptional technical capabilities, owns 24 state-of-the-art NC machining machines, along with one cam-type machine, allowing us to handle a wide range of orders from small quantities of various parts to mass-produced components. Furthermore, we process a variety of materials, from aluminum and brass to difficult-to-machine materials such as SUS (stainless steel) and pure iron. Additionally, with the introduction of ultrasonic cleaning machines, we can ensure environmentally friendly and reliable cleaning in the final finishing process of our products, which has been well received by our users.