Microprocessing designed for fiber and resin nozzles. Achieving flatness of ±0.01mm while considering distortion!
At Oda Iron Works, we regularly conduct in-house prototypes for the purpose of honing our technology. We performed fine processing assuming nozzles made of fibers and resins, and we would like to introduce the results. In the prototype, we focused on: 1. Innovations during the chucking stage to prevent distortion due to the finished dimensions of φ150mm × 3.15mm, which is quite thin. 2. Innovations during the processing stage to minimize distortion caused by cutting resistance. We significantly re-evaluated the processing method itself, breaking down the process into finer steps to ensure that the amount of cutting and the movement of the tool do not become excessively large, thereby reducing cutting resistance as much as possible. 【Features】 [Fine processing assuming fiber and resin nozzles] ○ Material: SUS316L ○ Size: φ150mm × 3.15mm ○ Points: Processing methods to minimize distortion Chucking methods to minimize distortion *For more details, please contact us or download the catalog.
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【Overview】 ○ Fine processing assumed for fiber and resin nozzles. Achieving flatness of ±0.01mm while considering distortion! ○ Cost reduction achieved through labor reduction! Manual work eliminated by design changes. ○ "Incredible Technique!" Challenging high-precision ultra-thin integrated structures broadcasted on NHK! ○ Striving towards spherical processing! Challenging perfect spheres using CADCAM! Part One ● For more details, please contact us or download the catalog.
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Oda Iron Works is a group of experts with absolute confidence in the cutting processing of stainless materials. ● Outstanding processing know-how specialized in stainless materials ● Diverse equipment and cutting processing techniques that accommodate all complex shapes ● Overwhelming supply speed of mass-produced parts through the use of processing jigs We aim to be a company that provides peace of mind to our customers through stable supply and quality management of mass-produced machine parts.