Mass production of complex-shaped fuel injection nozzles using metal injection molding.
In the energy industry, particularly in fuel injection nozzles, high precision and durability are required. The shape of the nozzle, which affects combustion efficiency, is intricate and complex, making high quality essential. Metal Injection Molding (MIM) is a manufacturing method that meets these demands. 【Application Scenarios】 - Manufacturing of fuel injection nozzles - Mass production of parts requiring high precision 【Effects of Implementation】 - Precise reproduction of complex shapes - Quality improvement due to high dimensional accuracy - Cost reduction through mass production
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**Features** - High dimensional accuracy can be achieved. - Surface roughness is approximately Rmax 8μm, and it is possible to achieve sub-micron surface roughness with glossy barrels. - Heat treatment and surface treatment equivalent to that of melted materials are possible. **Our Strengths** Daiichi Shoko supports your manufacturing needs. Based in Nagano Prefecture, we engage in contract processing and sales of industrial functional and mechanical parts using various materials. We have obtained ISO 9001 and ISO 14001 certifications, ensuring the provision of high-quality products.
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■Mass production of complex shapes ■Integration of multi-component structures
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Daiichi Shoko Co., Ltd. is based in Nagano Prefecture and engages in the contract processing and sales of industrial functional and mechanical parts made from various materials. Centered around its own manufacturing plant, the company utilizes plastics, metals, rubber, films, sponges, inorganic materials, and composite materials to provide a wide range of products and services related to "monozukuri" (manufacturing) across diverse industrial sectors. Furthermore, it offers specialized units and equipment products assembled from functional parts made of resins and metals, achieving high cost performance. As a trusted partner, we assist our customers in making further leaps into new and advanced fields they aim to pursue.

