We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Shape processing.
ipros is IPROS GMS IPROS One of the largest technical database sites in Japan that collects information on.

Shape processing Product List and Ranking from 22 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Dec 31, 2025~Jan 27, 2026
This ranking is based on the number of page views on our site.

Shape processing Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Dec 31, 2025~Jan 27, 2026
This ranking is based on the number of page views on our site.

  1. ゼノー・テック Okayama//Machine elements and parts
  2. クリスタル光学 Shiga//Manufacturing and processing contract
  3. ミツル光学研究所 Kanagawa//Glass and clay products
  4. 4 null/null
  5. 4 FUJIMI Saitama//Machine elements and parts

Shape processing Product ranking

Last Updated: Aggregation Period:Dec 31, 2025~Jan 27, 2026
This ranking is based on the number of page views on our site.

  1. Upper and lower different shape processing ゼノー・テック
  2. High-Precision Freeform Surface Processing through Ultra-Precision Machining - Crystal Optics - クリスタル光学
  3. Insulation materials for industrial furnaces: We offer shape processing tailored to the applications of insulation and heat-resistant products!
  4. Business Information: Titanium Processing FUJIMI
  5. 4 Support for SiC and sapphire: Specially shaped dummy wafers available from just one piece. ミツル光学研究所

Shape processing Product List

16~27 item / All 27 items

Displayed results

[Examples of Production by Application] Complex Shape Processing for Eccentric Shafts

Consistent processing within the company! We can process using suitable methods according to the required precision and intended use.

This is a machining example where the axis on the tip side is eccentric from the central axis. The amount of eccentricity of the axis at the tip from the central axis is 3mm. On the eccentric tip side, there is a groove processing with a width of 0.5mm, a depth of 0.5mm, and a pitch of 1mm on the outer circumference of φ7mm, as well as a taper processing towards the tip φ3. The axis, except for the tip part, is aligned at the center but has a rounded corner composite shape, and an iris rosette m=0.3 is machined at the tip on the opposite side of the eccentric part. Our company performs integrated processing in-house using various machining machines, allowing us to process harder materials and manage quality for difficult machining tasks, adapting to the required precision and intended use. 【Production Example】 ■Material: Aluminum alloy ■Product Size: φ18×L46 *For more details, please refer to the PDF document or feel free to contact us.

  • Contract manufacturing
  • Processing Contract
  • Shape processing

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

High-Precision Freeform Surface Processing through Ultra-Precision Machining - Crystal Optics -

Direct cutting finishes the surfaces of free-form shapes made of materials such as aluminum and resin with high precision at the micrometer and nanometer levels.

In fields where advanced technologies such as space, astronomy, and new energy are adopted, high-precision component manufacturing is required. In crystal optics, advanced freeform surface shapes are created using machining methods with lathes. 【Processing Achievements】 ● Head-Up Display Aluminum ultra-large freeform mirror 600x200mm * Shape accuracy: PV 1μm * Roughness: Ra 1nm ● Washers, Spherical Bearings Ni2P (Electroless Nickel) surface concave φ100mm * Shape accuracy: PV 2μm * Roughness: Ra 3nm ● Astronomy, Space Infrared Observation Device Mirror Prototype mirror for the 30m-class TMT telescope at the University of Tokyo Atacama Observatory ● Fine groove mirror surface processing, diffraction gratings (shaping processing) ● Electroforming processed surface precision cutting ● Mirror tubes ● Resin lenses ● Molds ● Stampers (fine structure patterns)

  • Processing Contract
  • Shape processing

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Special shape processing

We are shaping it through a combination of processes such as drawing and bending from a single steel plate.

Our company provides consistent support from prototyping to mass production, collaborating with each customer to create a single product, which we consider one of our strengths. This product has also been developed in-house from prototyping to mass production.

  • Processing Contract
  • Shape processing

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Shaping of superhard alloys

Shape tolerance ±0.01, the shape part is lap processed! Introducing our processing technology.

Our company actively engages in high-precision shape processing of cemented carbide, utilizing our long-standing expertise in processing this material. If you have any projects that make you wonder, "Can such a shape be processed in cemented carbide?" please feel free to consult with us. 【Processing Examples】 ■ Mirror finish shape processing without polishing *For more details, please download the PDF or feel free to contact us.

  • Processing Contract
  • Shape processing

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

3D shape processing of special gears [prototyping and small lot only]

We provide a wide range of equipment lineup for the processing of gears, which is considered a special process!

We would like to introduce the "3D Shape Processing of Special Gears" conducted by Shinhara Manufacturing Co., Ltd. 3D processing technology refers to a method of creating a 3D model and precisely machining necessary parts from a block of metal according to the 3D model. Our company uses new CAD/CAM software along with machining centers, 5-axis machining machines, and composite processing machines to manufacture parts. We can produce parts that cannot be made without specialized equipment in the required quantities and within the necessary time frame. 【Objectives of 3D Shape Processing】 1. No need for dedicated gear machines or specialized tools. 2. Easy to manufacture in the required quantities. 3. Processing can be easily done with 3D data and CAD/CAM software. 4. New mechanisms can be constructed with gears that could not be processed with conventional gear machines. 5. Contributes to the compactness of various devices. *For more details, please refer to the PDF document or feel free to contact us.

  • gear
  • Shape processing

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Nanbu Iron Works Co., Ltd.

Prototyping, small lot production, short delivery times, and high quality. We realize our customers' wishes.

Through our reliable technical skills and thorough precision guarantees, we will maximize the realization of our customers' wishes. Additionally, our employees will work together to address short delivery times. Please feel free to consult with us first. Business Content: Machining Main Processing Content: Turning and Milling Main Products: Construction machinery, motorcycles, buggies, outboard motors, and others Processing Materials: Iron, aluminum, stainless steel Specialty Areas: We excel in machining shaft shapes due to our complete centerless grinding machine setup. We also have milling capabilities, allowing us to reduce the number of processes. We can accommodate other shapes such as gears, as well as prototypes and small lots. We respond with high precision and short delivery times.

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Micro-shape processing by die-sinking electrical discharge machining for aerospace turbines.

For precision machining of turbine components. Achieving complex shapes with die-sinking electrical discharge machining.

In the aerospace industry, particularly in the turbine sector, high precision and reliability are required. The manufacturing of parts with complex three-dimensional shapes, such as turbine blades and nozzles, demands advanced technical skills. The processing of fine shapes, such as angled grooves and grooves extending to intermediate sections, which are difficult to achieve with wire-cut electrical discharge machining, significantly impacts turbine performance. Our partners utilize die-sinking electrical discharge machining technology to address these challenges. Through high-precision processing with dedicated electrodes, we contribute to improving turbine efficiency. 【Application Scenarios】 - Processing of angled grooves in turbine blades - Processing of fine shapes in nozzle components - Processing of other turbine parts with complex three-dimensional shapes 【Benefits of Implementation】 - Improved turbine performance through high-precision part manufacturing - Timely supply of parts - Increased design flexibility

  • 3-scaled.jpg
  • ワイヤー2-scaled.jpg
  • ワイヤー3.jpg
  • ワイヤーカット.jpg
  • ワイヤー1-scaled.jpg
  • Other processing machines
  • Shape processing

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Micro-shape processing by die-sinking electrical discharge machining for optical lens molds.

Diagonal grooves in lens molds and fine shape processing solved by electrical discharge machining!

In the optical lens mold industry, precise shape processing of molds that influence lens performance is required. In particular, angled grooves and complex three-dimensional shapes greatly affect the quality of the mold and the accuracy of the lens. Fine shapes that are difficult to achieve with wire-cut electrical discharge machining can be realized with high precision using die-sinking electrical discharge machining. The technology of our partners enhances the design freedom of molds and supports the manufacturing of high-quality lenses. 【Application Scenarios】 - Processing of angled grooves in lens molds - Groove processing up to the intermediate part of lens molds - Processing of complex three-dimensional shapes 【Benefits of Implementation】 - High precision in mold processing - Improvement in lens performance - Mold production with short lead times

  • 3-scaled.jpg
  • ワイヤー2-scaled.jpg
  • ワイヤー3.jpg
  • ワイヤーカット.jpg
  • ワイヤー1-scaled.jpg
  • Other processing machines
  • Shape processing

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Support for SiC and sapphire: Specially shaped dummy wafers available from just one piece.

In addition to V-notch and orifice processing in accordance with SEMI standards, additional machining such as notching and drilling is also possible. We support research and development from a single prototype to mass production.

We manufacture dummy wafers that can be used for transport tests and condition setting in the development of power semiconductors such as SiC and GaN. We also have extensive experience in processing difficult-to-cut materials (SiC, sapphire, ceramics, etc.). ▼ Do you have any of these concerns? In the process development of next-generation power semiconductors, do you face the following challenges? - You need dummy wafers that comply with **SEMI standards (V-notch with orifice)** for testing, but cannot produce them in small lots. - You want to create the same shape using heat-resistant quartz or glass as an alternative to expensive SiC substrates. - You require special thickness or recessed processing tailored to your equipment, but there are no vendors that can accommodate this. Mitsuru Optical Laboratory's "prototype support capabilities" and "difficult material processing technology" will solve these challenges. 【Feature 1】Supports processing of "difficult-to-cut materials" from quartz to SiC and sapphire. 【Feature 2】Fusion of shape processing compliant with SEMI standards and "special processing." 【Feature 3】"We will turn your requests into reality." Quick response from a single prototype.

  • Other semiconductors
  • Shape processing

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Micro-shape processing using die-sinking electrical discharge machining for automotive engines

For precision machining of engine parts. Achieving complex shapes with die-sinking electrical discharge machining.

In the field of automotive engines, high precision and durability are required. In particular, components with complex shapes inside the engine are crucial elements that affect performance. The processing of fine shapes, such as diagonal grooves and interrupted grooves, which are difficult to achieve with wire-cut electrical discharge machining, poses challenges for improving engine performance. Our partner's die-sinking electrical discharge machining technology addresses these challenges and enables the manufacturing of high-precision engine components. [Application Scenarios] - Machining of diagonal grooves in engine components - Machining of complex three-dimensional shapes - Machining of components requiring high precision [Effects of Implementation] - Improvement of engine performance - Enhanced durability of components - Provision of high-quality products

  • 3-scaled.jpg
  • ワイヤー2-scaled.jpg
  • ワイヤー3.jpg
  • ワイヤーカット.jpg
  • ワイヤー1-scaled.jpg
  • Other processing machines
  • Shape processing

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Micro-shape processing by die-sinking electrical discharge machining for semiconductors.

We will solve the challenges of microfabrication in semiconductor manufacturing.

In the semiconductor industry, miniaturization and high performance of products make fine processing of components essential. In particular, there is a demand for processing complex three-dimensional shapes, angled grooves, and grooves extending to intermediate sections, which are difficult to handle with wire-cut electrical discharge machining. The precision of these processes significantly affects product performance, making high technical capability crucial. Our partner's die-sinking electrical discharge machining technology addresses these challenges and provides high-quality components. 【Application Scenarios】 - Mold components in semiconductor manufacturing - Fine processing of electronic components - Manufacturing of precision machinery parts 【Benefits of Implementation】 - Achievement of high-precision fine shapes - Supply of components in a short delivery time - Improvement in product quality

  • 3-scaled.jpg
  • ワイヤー2-scaled.jpg
  • ワイヤー3.jpg
  • ワイヤーカット.jpg
  • ワイヤー1-scaled.jpg
  • Other processing machines
  • Shape processing

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration