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Machining Product List and Ranking from 40 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.

Machining 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. null/null
  2. null/null
  3. ユー・コーポレーション Gunma//Industrial Electrical Equipment
  4. 4 アイエムジェイ Kanagawa//Resin/Plastic
  5. 5 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)

Machining 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. Wire drawing, straightening, and cutting processing.
  2. Insulation material and heat-resistant material Besthermo machining
  3. Thermosetting resin glass epoxy laminate (Galaepo) machining.
  4. 4 Insulation material and heat-resistant material Lumiboard cutting processing
  5. 4 Thermosetting resin paper phenolic resin laminate (paper Bakelite) machining

Machining Product List

721~735 item / All 864 items

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Additional and modification processing of boards with components mounted.

Since the component assembly has already been completed, is it too late? If it's an issue with the outer shape processing, it might be possible to fix it.

Work is performed using NC machining, resulting in high precision and high quality finishes. Additionally, jigs tailored to the product shape minimize the load on counterpart parts. We also implement electrostatic measures for greater safety. *For more details, please download the PDF or contact us.*

  • Processing Contract
  • Contract manufacturing

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Small diameter pin, shaft composite cutting process

In addition to bar-shaped material machining, precision small-diameter machining is performed through complex processes such as milling, threading, and drilling.

Our company aims to provide consistent production from prototype to mass production, including material procurement, processing, surface treatment, and assembly, in line with our customers' requests for cost, quality, and delivery time, as well as creating products with strong proposal capabilities. We specialize in small-diameter precision machining and complex processing, and we are capable of mass production through automated machining. We handle a wide range of metal processing for materials such as forged and cast materials, utilizing our unique technologies and know-how developed over many years to meet various customer needs. [Strengths] - Small-diameter precision machining - Complex processing - Mass production through automated machining *For more details, please refer to the PDF document or feel free to contact us.

  • Processing Contract

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Machining

We can handle everything from prototype production to mass production! It is possible to carve out various shapes.

Our "cutting processing" can carve various shapes from block materials such as resin, metal, and rubber, offering high precision and accommodating everything from single prototypes to mass production. We provide "resin cutting" that can handle super engineering plastics and glass-filled grades, as well as "metal cutting" capable of complex processing for gears and screws. Please feel free to contact us for inquiries about other processing or manufacturing. 【Features】 <Resin Cutting> - Supports general-purpose resins as well as super engineering plastics and glass-filled grades - Capable of 5-axis machining, allowing for the production of gear shapes - Can also accommodate painting and vapor deposition plating, with numerous achievements in producing transparent items *For more details, please refer to the PDF materials or feel free to contact us.

  • Processing Contract

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Supports large aluminum machining of 4000×2400×1200.

We meet the needs for large-scale machining with 5-axis machining machines and gantry machining centers! Leave your aluminum processing to us.

At our company, Aluminum Cutting.com, we have specialized equipment for large aluminum machining and respond to the aluminum machining needs from the robotics and semiconductor industries. The processing work size is 4000×2400×1200. We carry out machining daily in response to requests from leading domestic robot manufacturers and semiconductor manufacturing equipment manufacturers. 【Features】 〈Aluminum Large Part Machining and 5-Sided Machining Capability〉 ■Work Size: X4000×Y2400×Z1200 ■Available Lot Quantity: 1 to 20 pieces/lot *For more details, please refer to the PDF document or feel free to contact us.

  • Other services
  • Contract manufacturing

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Supports processing of relatively large round items up to φ400.

We respond to requests for aluminum cutting processing from the robot and industrial equipment industry!

At our company, operated under aluminum-cutting.com, we specialize in processing relatively large round aluminum parts, with NC lathes capable of handling up to φ400 and composite lathes up to φ300. In particular, our composite lathes allow for turning operations with fewer chucking cycles. We can accommodate continuous processing of complex shapes as well as relatively simple round shapes, up to about 200 pieces. 【Features】 〈Cutting Capacity for Aluminum Lathe Processing〉 ■Work Size (Max) ・NC Lathe: φ400×L400 ・Composite Lathe: φ300×L800 ■Available Lot Quantities ・Large NC Lathe: 1 to 100 pieces/lot ・Composite Processing: 10 to 200 pieces/lot *For more details, please refer to the PDF document or feel free to contact us.

  • Other services
  • Contract manufacturing

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Specialized in aluminum cutting processing! 【Large aluminum processing & five-sided machining】

Supports large aluminum machining up to 4000×2400×1200. For 1000×1000, flatness and parallelism of 0.05 can be achieved through cutting alone.

At Aluminum Cutting.com, we have specialized equipment for large aluminum machining and respond to the aluminum machining needs from the robotics and semiconductor industries. The machining work size is an impressive 4000×2400×1200. We carry out cutting processes daily based on requests from leading domestic robot manufacturers and semiconductor manufacturing equipment manufacturers. 【Processing Examples】 ■ Large aluminum milling machined product (φ900×13) ■ Large aluminum base (machined product) ■ Large aluminum machined product (200×600×900) ■ ADC12 machined product *For more details, please download the PDF or contact us.

  • Processing Contract

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A must-see for those particularly struggling with production volume! With 90 machine tools, we can offer integrated production.

[Factory tour video available] Solving the challenges of those looking for partner companies or outsourcing, and those who want to expand production capacity! Comprehensive support from cutting processing to assembly and functional testing.

Are you facing any of these issues with production volume in cutting processing or injection molding? Looking for partner companies or outsourcing… Struggling with a lack of successors or manpower… Wanting to expand your production capacity… Wanting to reduce the time spent on order management tasks… We can solve all of the above concerns! We have 80 machining centers, 10 NC lathes, and 5 injection molding machines, providing very high production capacity. We handle everything from material procurement to leak testing after cutting processing of castings and die-casts. Additionally, we can perform part press-fitting, assembly, adhesion, and appearance inspection. **Benefits of using Sanko Industry** ■ High production capacity due to owning approximately 100 machine tools ■ High quality maintenance and shortened delivery times thanks to having 3 three-dimensional measuring machines ■ All factories certified for ISO 9001 and 14001 ■ With a defect delivery rate of 0.000036%, we can provide products with peace of mind ■ We provide consistent support from cutting processing to assembly, functional inspection, and appearance inspection, enabling cost reduction in customer management. *We are currently posting a video of a "factory tour" of our main factory.* *We are also offering a document explaining how to minimize defective product deliveries to nearly zero via PDF download.*

  • Processing Jig

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[Column] About Titanium Machining

You will understand the key points when performing lathe and milling machining! This explains the reasons why titanium machining is difficult.

Cutting titanium is considered very difficult. This is due to the properties of titanium, such as its low thermal conductivity and low Young's modulus. Therefore, when performing lathe or milling operations, it is very important to take measures such as reducing the cutting speed and using cutting oil. Additionally, if there is vibration, the product may become uneven, so it is necessary to pay attention to the installation location of the cutting machine. This article will explain the reasons why cutting titanium is challenging. [Contents] ■ Reasons why cutting titanium is difficult ■ Points to consider when cutting titanium *For more details, please refer to the PDF document or feel free to contact us.

  • Other metal materials

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[Column] About Brass Machining: Points to Note and Two Key Considerations During Processing

Alloy of copper and zinc! An explanation of machining brass (yellow brass) with examples included.

Brass, also known as yellow copper, is processed into familiar items such as five-yen coins, while it is said to be a metal material that is difficult to machine. As an alloy of copper and zinc, its softness and good ductility can be considered major characteristics of brass. This provides the advantage of being easy to process into complex shapes, but it can also lead to issues such as scratches and burrs caused by cutting chips during machining. This article explains the points and precautions regarding the machining of brass, along with examples of machining cases. Please use this as a reference when requesting brass processing. [Contents] ■ Precautions in brass machining ■ Key points in brass machining ■ Examples of brass machining by craftsmen *For more details, please refer to the PDF materials or feel free to contact us.

  • alloy

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[Column] On the Processing of Nickel Alloys

What is nickel alloy? Introducing four reasons why machining is difficult and examples of processing.

Nickel alloys excel in heat resistance and corrosion resistance, making them indispensable for mechanical parts used in high-temperature environments such as gas turbines and incinerators. However, due to these characteristics, they are referred to as "difficult-to-machine materials," highlighting the challenges of cutting processing. On social media, there are prominent voices expressing that "nickel alloys are difficult, costly, and we don't want to take orders," making them a challenging material for craftsmen. But why is it said that processing them is difficult? In this article, we will explain the reasons why nickel alloys are considered difficult to process from the perspectives of "strength at high temperatures," "hardness," and "relationship with tools." Additionally, in the latter part, we will introduce our company's actual processing achievements for nickel alloys. [Contents] ■ Four reasons why cutting processing of nickel alloys is difficult ■ Introduction of nickel alloy processing achievements at our Kujo factory in Osaka ■ The process of manufacturing nickel alloy parts and how to place orders *For more details, please refer to the PDF document or feel free to contact us.

  • Other metal materials

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[Column] Methods of Cutting Iron

Explaining the machinability and processing methods of iron! Also introducing points to consider when choosing a supplier.

The hardness of iron varies significantly depending on the amount of carbon it contains (carbon steel). Therefore, the machinability of iron differs by type, and materials must be selected according to the desired shape and strength. Additionally, there are several methods for cutting iron, with the main methods being turning, milling, and drilling. This article explains the machinability of iron and its processing methods. [Contents] - The difference in machinability based on the carbon content in iron - Types and methods of iron cutting processes - Key points when requesting iron cutting processing *For more details, please refer to the PDF document or feel free to contact us.

  • Steel

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[Proposal Example] Thin-walled Aluminum Processing

Final processing using a method that does not produce fixed stress! Introducing examples that suppress the occurrence of distortion.

We would like to introduce examples of how we addressed our customers' challenges and requests. In the machining of aluminum plates, there was a case where, during the process of machining to a thickness of 0.4mm, bulging and distortion occurred on the backside due to machining stress from the machine. By increasing the number of rough machining processes and machining as close to the final shape as possible, followed by final processing using a chucking method that does not generate fixed stress, we were able to suppress the occurrence of distortion and meet the flatness requirements for the outer surface of the product. [Case Overview] ■ Challenges - Bulging and distortion on the backside due to machining stress from the machine - Need to process a product that requires a flatness of 3/100mm for the entire product ■ Proposal - Increase the number of rough machining processes and machine as close to the final shape as possible - Final processing using a chucking method that does not generate fixed stress *For more details, please refer to the PDF document or feel free to contact us.

  • Processing Contract

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[Proposal Example] High-precision products made from materials with high processing difficulty.

The key point is that everything is handled by machining! Successful case studies of processing high-difficulty materials.

We would like to introduce a case study of how we addressed our customer's challenges and requests. In this case, the processing of a relatively difficult material, A2017, was the main issue. Therefore, by using a fixture called a "form clamp," we were able to achieve the tolerance of the inner circle and coaxial accuracy. 【Case Overview】 ■Challenges - Processing of a relatively difficult material, A2017, which is an aluminum alloy. - Processing of large items over Φ300, while needing to achieve inner circle precision. - Difficult to process and labor-intensive. - Since it is round, using a lathe would be ideal, but it is too large to grip. - Unable to achieve coaxial accuracy. *For more details, please refer to the PDF document or feel free to contact us.

  • Processing Contract

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Resin cutting and processing

We primarily focus on processing cushioning materials belonging to logistics containers to meet our customers' needs.

To transport your important work (product) without damaging it, we select cushioning materials from a wide variety of materials. Depending on the weight and application of the work, we handle various materials, including hard resins, highly foamed resins, and rubber-based materials, and carry out machining.

  • Processing Contract

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Resin cutting and processing

We primarily focus on processing cushioning materials belonging to logistics containers to meet our customers' needs.

To transport your important work (product) without damaging it, we select cushioning materials from a wide variety of materials. The cushioning materials are processed through cutting, handling various materials such as rigid resins, highly foamed resins, and rubber-based materials, depending on the weight and application of the work.

  • Processing Contract

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