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Plastic cutting products Product List and Ranking from 15 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Jul 30, 2025~Aug 26, 2025
This ranking is based on the number of page views on our site.

Plastic cutting products Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jul 30, 2025~Aug 26, 2025
This ranking is based on the number of page views on our site.

  1. 小沼製作所 Tochigi//Resin/Plastic
  2. エージェンシーアシスト Kyoto//Machine elements and parts 京都本社 営業所(仙台・東京・埼玉・神奈川・浜松・愛知・岐阜・新潟・福井・奈良・兵庫・岡山・福岡)
  3. 株式会社ミドリ樹脂 Nagano//Machine elements and parts
  4. 4 ユー・コーポレーション Gunma//Industrial Electrical Equipment
  5. 4 太陽ゴム工材 Nagano//Rubber products

Plastic cutting products Product ranking

Last Updated: Aggregation Period:Jul 30, 2025~Aug 26, 2025
This ranking is based on the number of page views on our site.

  1. Resin products, resin machining products 小沼製作所
  2. [CNC Machining Products] Leave the machining of resin and metal, as well as small lot machining, to us! エージェンシーアシスト 京都本社 営業所(仙台・東京・埼玉・神奈川・浜松・愛知・岐阜・新潟・福井・奈良・兵庫・岡山・福岡)
  3. Midori Plastics Co., Ltd. Business Introduction 株式会社ミドリ樹脂
  4. [Precision Cutting Processing Example] Glass 40% PPS Turned Products 太陽ゴム工材
  5. 4 If you need acrylic PMMA mirror finishing and polishing, please consult us! 5 ユー・コーポレーション

Plastic cutting products Product List

16~29 item / All 29 items

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If you need acrylic PMMA mirror finishing and polishing, please consult us! 5

Acrylic: Machining and mirror finishing that maintains transparency, such as PMMA and PC. Do you have any issues with prisms, light guides, etc.?

At U Corporation, we achieve micron-order ultra-precision machining using our long-cultivated know-how and high-precision equipment environment for resin and metal materials! When acrylic (PMMA) and polycarbonate (PC) are machined, the processed surface typically whitens and becomes cloudy. Our company realizes transparency and mirror finish by eliminating the need for polishing through cutting processes alone! By streamlining and minimizing processes, we can shorten delivery times and reduce costs!! Additionally, with our in-house buff polishing method, we can reproduce a clearer transparency. Furthermore, we also offer metal cutting at our own factory! We work with materials such as aluminum, stainless steel, difficult-to-cut titanium, Inconel, Kovar, and Super Invar. For more details, please refer to the PDF materials or feel free to contact us. When inquiring, please reach out through the related link (inquiry form) below.

  • Resin processing machine

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One-stop provision

We offer one-stop support for manufacturing beyond resin cutting processed products!

Tōchū Sangyō Co., Ltd. is a company engaged in the manufacturing of plastic (resin) products. We provide a one-stop supply of various processed products, including adhesive processing and metal processing, in addition to plastic machining products. Since our partner companies possess top-notch technology in each processing category, please feel free to consult us about any parts. 【Product Categories】 ■ Resin machining, metal and aluminum machining (Preferred quantity: 1 to 200 pieces) ■ Resin adhesive and bending processing (Preferred quantity: 1 to 20 pieces) ■ Resin 3D printing, etc. (Preferred quantity: 1 to 20 pieces) ■ Resin vacuum casting (Preferred quantity: 5 to 15 pieces) ■ Resin molding processing (Preferred quantity: 100 to 10,000 pieces/month)  Others *For more details, please refer to the PDF document or feel free to contact us.

  • Contract manufacturing
  • Resin processing machine

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Introduction to equipment used in machining processes.

We own a large number of custom-designed processing machines aimed at rationalization and high efficiency!

We perform machining after compression molding based on the drawings provided by our customers. Please feel free to request processing for small lots or single items, such as prototype production related to product development and technology development. We leverage the advantage of our company, which can provide integrated production from material molding, to ensure smooth responses not only for single item production but also during the transition to mass production. Moreover, most of the equipment used in both the compression molding and machining processes is customized with unique specifications based on ideas generated by our in-house staff aiming for rationalization and high efficiency. We would like to introduce our production equipment, which is full of ideas as a specialist in fluoropolymer processing, offering mobility and cost performance. [Machined Products After Compression Molding] - Ball sheets and packings - Packings and seal rings - Gaskets - Bellows - Piston rings - General-purpose resin engineering plastics - Semiconductor-related products (bodies) - Semiconductor-related products (fittings) *For more details, please refer to the PDF document or feel free to contact us.

  • Plastic bearings
  • Contract manufacturing
  • Processing Contract

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Collection of case studies on solving issues in plastic processing and VA/VE *Currently available for free.

A book that gathers case studies on VA/VE and solutions to challenges in plastic processing, such as 'Improvements in mass-produced resin machined products' and 'Cost reduction methods for small lot printing.'

This document is a collection of case studies that address issues related to VA (Value Analysis) and VE (Value Engineering) as well as challenges in plastic processing. It includes six case studies, starting with successful examples of VA and VE that improved the QCD (Quality, Cost, Delivery) of mass-produced resin machined products, as well as examples of plastic processing that balance design flexibility and cost. [Contents] - Methods for improving QCD of mass-produced resin machined products - Changing the manufacturing method from injection molding to mold-less production in small lots - Key points for utilizing polymer adhesives - Cost reduction through special plastic parts and methods outside of material manufacturer standard sizes - Proposal for changing processing methods from Thomson processing to machining... *For more details, please refer to the PDF document or feel free to contact us.

  • Processing Contract
  • Contract manufacturing
  • Other contract services

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[Precision Cutting Processing Example] ABS / POM Wired Dome

A needle-like shape with a height of 10mm is expressed on the wired dome! A work that condenses the know-how of resin cutting!

We would like to introduce a machining example of a resin cutting product using ABS and POM, called the "Wire Dome." This piece was machined from a raw material measuring 83mm × 53mm × 43mm, and to increase the difficulty of the cutting process, a needle-like shape with a height of 10mm was expressed on a φ0.5mm wire dome. At Taiyo Rubber Materials, we take cutting balance into consideration when machining such easily deformable resins, utilizing cutter passes (focusing on MC and CAM precision) and jigs to create a work that condenses our expertise in resin cutting. 【Case Overview】 ■ Name: ABS/POM Wire Dome ■ Material: ABS, POM ■ Dimensions: 83mm × 53mm × 43mm ■ Precision: Machined a 10mm needle on a 0.5mm wire ■ Features: Silver Award-winning work in the Micro Machining category of the DMG Mori Seiki Cutting Processing Dream Contest *For more details, please refer to the related link page or feel free to contact us.

  • Resin processing machine

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[Precision Cutting Processing Example] POM Made Spiral Processed Product

Cutting the tip part without breaking it at 0.1mm! We specialize in machining difficult-to-cut resins!

We would like to introduce a case study of machining a spiral shape from POM square bars. The feature of this process is that the wall thickness of the spiral part is machined to be thin, particularly at the tip of the spiral, which is finished with a thickness of 0.1mm to prevent breakage. The key point is that this cutting process has been achieved with a resin that is softer than metal. At Taiyo Rubber Materials, we specialize in the challenging machining of resins. If you are facing issues with the precision or shape of machining with a certain resin, please feel free to contact us. 【Case Overview】 ■Name: POM Spiral Machined Product ■Material: POM (Delrin) ■Dimensions: 100×100×80mm ■Precision: Thickness at the tip of the spiral 0.1mm ■Features: - *For more details, please refer to the related link page or feel free to contact us.

  • Resin processing machine

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[Precision Cutting Processing Example] Lens Holder

Unique processing procedures, methods, and jigs! We are very skilled at high-difficulty resin cutting processing!

The ABS lens holder has a top that is a ring shape with a thickness of 1.2 millimeters, supported by three thin legs measuring 1X3X22H. Due to the many recessed areas, warping and distortion are likely to occur during processing, and great care must be taken with the finished surface due to vibrations from cutting tools, making it a challenging machining product. Our company is particularly skilled in this high-difficulty resin machining thanks to our unique processing procedures, methods, and jigs. For products that require minimal warping and distortion, as well as surface roughness, please contact us. 【Case Overview】 ■ Name: Lens Holder ■ Material: ABS Natural ■ Dimensions: 42X55X24 ■ Precision: Surface Roughness 6.3S ■ Features: Minimal warping and distortion, with a clean finished surface *For more details, please refer to the related link page or feel free to contact us.

  • Resin processing machine

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Before designing: The importance of selecting resin materials.

Introducing the characteristics of resins commonly used in cutting processes! Key points to reduce costs.

Industrial products such as electrical and electronic devices and medical equipment use various materials, including iron and resin. However, in the case of resin, many high-performance products have been developed in response to the demands and changes of the times. The objectives include (1) weight reduction, (2) prevention of scratches during contact with other components, (3) prevention of corrosion such as rust during long-term use, and (4) the pursuit of high precision as long as there are no issues with strength or rigidity. However, improving the functionality of resin also leads to increased costs, so it is essential to accurately understand the characteristics of different types of resin and design accordingly. *For detailed content of the column, please refer to the related links. For more information, feel free to contact us.*

  • Other polymer materials

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[Sheet Metal Processing] Resin Cutting Product Example <Acrylic Blade + Base>

【*Presenting processing case materials】 Blade/base is made of acrylic resin, handle is made of Bakelite resin.

Here are examples of resin processed products made by our company. The materials used are acrylic resin for the blade/base and Bakelite resin for the handle. It can be sheathed, and there are no issues with precision. Thanks to our diverse range of equipment and the skilled techniques of our craftsmen, we are able to produce a variety of products in a short lead time. Please feel free to contact us with your requests. 【Case Overview】 ■Lead Time: Approximately 1 week if data is available ■Techniques: Cutting processing/Adhesive/Polishing ■Equipment: Machining *We are currently offering a processing case document summarizing the contents of this case! Please take a look at the document first by downloading the PDF below. Feel free to contact us as well.

  • Processing Contract

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[Design Point] High-precision and burr-free resin cutting processing uses PPS.

The material has difficulty achieving dimensional accuracy and is prone to burr formation! Considering the adoption of PPS.

Introducing the design point for achieving high-precision processing of resin cutting: "Use PPS for high-precision and burr-free resin cutting." Common resins like MC Nylon and POM have an elongation of 30-40%, which limits the usual dimensional accuracy to ±0.02-0.03mm. Therefore, aiming for higher precision significantly increases costs. When high-precision and burr-free parts are required for resin components that need cutting, consider using PPS. In cases where high-precision resin cutting products are needed, adopting low-elongation PPS makes it possible to achieve dimensional accuracy of ±0.01. [Overview] - POM and MC Nylon are unsuitable for high-precision cutting due to their high elongation. - By using low-elongation PPS, it is possible to achieve dimensional accuracy of ±0.01. - Burrs can also be reduced. *For more details, please refer to the related links or feel free to contact us.

  • Resin processing machine

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Points for Designing High-Precision Resin Machined Products

Introducing points to consider during the design phase! Choosing the right materials is key.

In this column, we introduce "Key Points for Designing High-Precision Resin Machined Products." When manufacturing resin machined products, selecting the appropriate material is crucial. The related link provides additional considerations to keep in mind during the design phase if high-precision resin machined products are required. We encourage you to read it. *For more details about the column, you can view it through the related link. Please feel free to contact us for more information.

  • Processing Contract

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【Design Point】Achieving high precision through the change to PPS.

Leads to the design of equipment that can reduce costs! Choosing a resin called PPS.

We will introduce the design point that achieves high-precision machining of resin cutting: "Achieving high precision by switching from polytetrafluoroethylene to PPS." Polytetrafluoroethylene is a resin material with excellent heat resistance and chemical resistance, but when it comes to precise machining, it is a soft material. Therefore, depending on the shape, it can be very difficult to achieve accuracy. In cases where heat resistance and chemical resistance are required, as well as precise cutting, adding PPS, a type of resin, to the options expands the design possibilities. [Overview] ■ There are cases where achieving precision with polytetrafluoroethylene is very difficult. ■ Adding PPS, a type of resin, to the options expands the design possibilities. ■ Heat resistance is almost unchanged at around 200 degrees. *For more details, please refer to the related links or feel free to contact us.

  • Other polymer materials

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[Design Points] In addition to machining, consider assembly for expensive resin materials.

Which option satisfies functionality and reduces costs! It is important to consider this comprehensively.

We will introduce design points for reducing costs in resin machining: "For expensive resin materials, consider assembly in addition to machining." Resin materials known as super engineering plastics, such as PEEK, are high-performance but also high-cost. If a lot of material is cut away to achieve the necessary shape, material costs become high and waste occurs. For high-cost super engineering plastics like PEEK, it is essential to design in a way that avoids unnecessary material usage. In the case of resin machined products, it is important to comprehensively consider whether machining alone or a combination of splitting and assembly better satisfies functional requirements while also reducing costs. [Overview] - Super engineering plastics are high-performance but also high-cost. - It is necessary to design to avoid unnecessary material usage. *For more details, please refer to the related links or feel free to contact us.

  • Processing Contract

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【Material Selection Points】Consider Unilate for cost reduction of PPS machined products.

Excellent cutting processing accuracy, dimensional stability, and rigidity! The cost is very low.

We will introduce the key points for selecting resin materials that lead to cost reduction: "Considering Unilate for cost reduction of PPS machined products." In resin machining, PPS can be machined with high precision and has excellent heat resistance and chemical resistance, making it widely used in industrial products. However, it is relatively expensive in terms of cost, so even if value engineering (VE) is applied to the shape, there are limits. If cost reduction is necessary, consider Unilate as an alternative material. If it is possible to replace PPS with Unilate depending on the usage environment and situation, significant cost reduction effects can be expected. [Overview] ■ PPS is relatively expensive in terms of cost ■ There are limits even if value engineering is applied to the shape ■ Consider Unilate as an alternative material ■ Cost is about 1/5 of PPS ■ Less warping compared to PPS *For more details, please refer to the PDF document or feel free to contact us.

  • Processing Contract

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