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Proposal/Case Study | Examples of Using "Irregular Parts" Utilizing Copper Shaped Wire

Achieving complex shapes through wire processing, press cutting, and cold forging. Contributing to weight reduction and performance improvement of parts.

By applying our core technology of shaped wire drawing to non-ferrous materials, we can achieve high functionality in electronic components. The "high capacity" of EVs and "lightweighting" through the replacement with aluminum parts, along with the use of shaped wires that closely match the component shapes, enable the production of non-ferrous parts with high yield. You can view materials introducing examples of processing shaped metal parts such as heat sinks, EV relays, busbars, and shafts by downloading the PDF. [Contents] ◎ Heat Sink ◎ EV Relay ◎ Busbar ◎ Shaft ◎ Iron Core ◎ Spacer ◎ Armature ◎ Cam ◎ Latch *Please feel free to contact us with any inquiries.

Here is the HP of Namitei.

basic information

【Features of Irregular Metal Parts】 ■ High-precision cutting of irregular wires using our unique fine cutting method ■ Minimal burrs and deformation, eliminating the need for additional processing such as chamfering ■ Widely used in sliding parts and thin-walled irregular components

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Must-see for designers! Free introduction of processing examples for irregular non-ferrous parts.

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Since its establishment in 1947, we have been manufacturing and selling steel wire products through drawing and rolling processes, and now we offer integrated production from cold-formed components to metal parts produced by pressing, shearing, and machining. In particular, we excel in the production of deformed coil wire with irregular cross-sections, and our strength lies in our ability to consistently produce unique deformed metal parts utilizing these irregular wires. Compared to powder sintering and precision casting methods used for manufacturing deformed parts, our deformed metal parts produced entirely through plastic processing at Namitei possess excellent toughness, strength, and smooth surface characteristics, making them widely adopted in sliding components and thin-walled deformed parts. To leverage the cost advantages of continuous processing, we propose specifications that mix functional applications and processing characteristics to meet our customers' needs.