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1~30 item / All 39 items
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[Development Case] Cold Forging of Fuel Injector Parts (Complex Shaped Products)
Application of penetration methods for small-diameter deep holes! Case study of cold forging of hollow shaft cylindrical products.
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[Development Case] Cold Forging of Difficult-to-Process Material SUS440C
A new method for cold forging of axisymmetric complex shapes! Cold forging of martensitic stainless steel.
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[Development Case] Cold Forging of Difficult-to-Process Materials
Cold forging of austentic stainless steel! A case study of a new method for finishing inner and outer diameters through cold forging.
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[Development Case] Deburring of Holes in Injector Parts
Through-hole of small diameter deep hole by diameter reduction extrusion! Abolition of punching in the middle section of small diameter deep holes.
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[Development Case] Near-Net Shape Manufacturing of Injector Components
Improved yield through non-cutting of outer diameter by increasing forging accuracy! A case study of flange forming without intermediate annealing.
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[Development Case] Cold Forging Near-Net Shape Formation
A new method for penetrating small-diameter deep holes! Achieving no cutting for the inner diameter in small-diameter deep hole penetration.
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[Development Case] Cold Forging Inner Diameter Net Shaping
Achieving improved material yield through the elimination of cutting in inner diameter by increasing forging precision!
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[Development Case] Pressing of Machined Products <Laminated Processing>
Case study of layered processing using sequential sending molds! Achieving process shortening through a review of processing methods.
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[Development Case] Pressing of Lithium-Ion Battery Cover Plates
Combination of cold forging and pressing technology! Integrated molding of safety valves and cover plates through pressing processing.
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[Development Case] Pressing of Machined Products <Thickness Variation Forming>
A case where cost reduction was achieved through process shortening by reviewing the processing method!
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[Development Case] Pressing of Machined Products <Tensile and Compressive Composite Molding>
A new method for combined tensile and compression molding! Shortening the process by reviewing the processing method.
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[Development Case] Integrated Throttle of Diaphragm Cover
Reduction of processing costs by abolishing the soldering process! New method for tensile and compressive composite molding.
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Strengths of Cold Forging: Eco-friendly Processing with Near-Net Shape
By manufacturing forged workpieces in a shape close to the product shape, it is possible to reduce chip discharge and shorten processing time compared to full cutting.
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Carbon Neutral Improvement Activities: Energy Saving through Compressor Renewal
When comparing the power consumption per product, the power usage is reduced by "0.97Wh per unit," with a reduction rate of "13%."
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[Automation and Labor Saving] In-house production of automatic feeding device for single-action press machines.
Automating appearance inspection using AI image sensors! Ensuring high-precision transport capabilities by adopting robotic cylinders.
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Pressing of inner diameter groove processing in squeezed products.
Cost reduction through method conversion (press processing + cutting processing → press processing)
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Development of a new joining method: Dissimilar metal joining through plastic processing.
Contributes to the reduction of CO2 emissions! Since they are processed individually, combinations of different shapes for upper and lower workpieces are possible.
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[Data] Press Technology December Issue
We would like to introduce an article featuring the trusted technology of Miyama Seiko Co., Ltd.!
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Mold making, progressive pressing, cold forging. Which method is optimal, pressing or forging?
We will suggest appropriate processing methods such as progressive stamping or cold forging according to product specifications! What are Miyama Seiko's precision press deep-drawn products and precision cold forging services?
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High-precision pressing and drawing processing, etc. [Technical Explanation Document]
Based on in-house production, creating molds without incurring unnecessary costs while ensuring quality!
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Mold manufacturing, progressive stamping, cold forging [Many achievements in automotive parts]
Leave precision press deep-drawn products and precision cold-forged products to us!
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Adding cutting and assembly to cold forging and deep drawing processes.
Responding to processing requests with a variety of products! Introducing our applied technology.
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Thickness processing: Pressing of lithium-ion battery cover plates.
Achieving high precision with a board thickness of 15μm ± 3μm! A case where the safety valve and cover plate were integrally formed through press processing.
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Difference in thickness processing [Pressing of machined products]
Material plate thickness 1mm → Side and bottom plate thickness 0.5mm! Examples of cold forging and drawing processing have also been carried out.
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What is thickness processing used in mobile lithium-ion batteries?
Successful cost reduction! Achieved high precision with a plate thickness of 15μm ± 3μm.
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Layered processing [Pressing of machined products]
Reducing costs by 40% by not performing cutting! A case of layered processing using a progressive die.
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What is the laminated processing used for coils?
We can create higher performance motors! We can accommodate your requests regarding shape and number of layers in any way you desire.
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Drawing process [Pressing of machined products]
Accommodating various materials and thicknesses, achieving significant cost reduction through integrated molding!
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Conical processing [integrated conical shaping of the diaphragm cover]
The advantage of having fewer defective products! A case of integrated drawing processing using transfer press.
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What is the stamping process used in various automotive parts?
Supports various materials and thicknesses, achieving significant cost reduction through integrated molding!
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