High-precision, high-difficulty precision cutting processing service

High-precision, high-difficulty precision cutting processing service
High-Precision and High-Difficulty Precision Machining Services Our company offers high-precision and high-quality precision machining that achieves dimensional accuracy of ±0.001mm and surface roughness of Rz 0.4μm. Utilizing a variety of processing equipment such as machining centers, NC lathes, and jig borers, we flexibly accommodate complex and high-difficulty shapes. We can handle everything from rough machining to finishing in a consistent manner. We have a proven track record in processing a variety of materials, including difficult-to-machine materials such as SUS316L, titanium, aluminum, and resin. In particular, we have delivered SUS316L knife edge components for vacuum equipment, meeting delicate structural requirements and stringent tolerance demands. All products are finished under a strict quality inspection system and provided with stable quality.
1~19 item / All 19 items
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Micron precision precision cutting processing service
SUS304 thin plates (thickness 0.7 finish) are also available! Our technical capabilities respond to high-difficulty precision machining with micron accuracy!
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Precision cutting service for high hardness materials.
Supports precision machining with a finish of Rz0.1μm even for high hardness materials with HRC50!
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High-precision, high-difficulty precision cutting processing service
Compatible with SUS316L! Machining available for vacuum parts with a precision of 1/1000mm.
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Precision cutting processing
We achieve high quality and short delivery times with Maruwa Machinery's unique processing technology (programming and jig design and manufacturing).
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Precision machining achievements of difficult-to-cut materials
Compatible with difficult-to-machine materials such as titanium and Inconel! The machining accuracy is 1/1000mm with a surface roughness of Rz 0.4μm. We can also accommodate orders starting from just one piece!
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Technical Data: Basic Knowledge of Machining
An explanation of machine tools for machining, such as cylindrical grinding, wire electrical discharge machining, and surface grinding machines, presented in an easy-to-understand manner for newcomers and beginners! Materials are available!
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Micron-level precision, high difficulty × short delivery time! Precision cutting processing [Processing case examples available].
High-precision machining that achieves a dimensional accuracy of ±0.001mm and a surface roughness of Rz 0.4μm! Thorough inspection of all products ensures stable quality.
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Micron precision cutting for semiconductor wafers
Achieving dimensional accuracy of ±0.001mm, solving challenges in wafer processing!
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Precision machining for aerospace engines
Precision machining for aerospace engines achieving micron-level accuracy.
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Precision machining for automotive transmissions
Contributing to the improvement of transmission performance through precision cutting processing that achieves micron-level accuracy.
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Precision machining with micron accuracy for measuring instruments.
Achieving a dimensional accuracy of ±0.001mm. Maximizing the performance of the sensor.
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Micron Precision Machining for Machine Tools
High-precision machining service that achieves dimensional accuracy of ±0.001mm.
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Automotive Tooling and Equipment Parts: Work Holder | Precision Machining Example 1
Work holder for automotive parts manufacturing line using micron precision machining.
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Automotive Tooling and Equipment Parts: Work Holders | Precision Machining Case Study 2
High-precision "work receivers" that support the production sites of the automotive industry.
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Automotive Equipment Parts: PEEK Work Holder | Precision Machining Case Study 3
This is a processing example that addresses the issue of "metal jigs causing fine scratches on the workpiece" in the mass production line of automotive parts.
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Automotive tooling and equipment parts: Pins | Precision machining examples
Examples of the production of "pins," which play an important role in precise positioning of objects and as guides for mechanisms in automotive parts assembly lines and inspection equipment.
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Automotive Tooling and Equipment Parts: Holder | Precision Machining Case Study 1
Examples of processing "holders" used to securely fix and hold various sensors in predetermined positions in automatic assembly lines and precision inspection processes for automotive parts.
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Automotive Tooling and Equipment Parts: Holder | Precision Machining Case Study 2
A case study of processing a "holder" for accurately mounting large measuring units and cylindrical parts in fixed positions on an automotive parts mass production line.
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Automotive Tooling and Equipment Parts: Blocks | Precision Machining Examples
Examples of processing "block" components that function as a base for mounting various units and as a positioning reference.
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