We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Machining.
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Machining Product List and Ranking from 118 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Jan 28, 2026~Feb 24, 2026
This ranking is based on the number of page views on our site.

Machining Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jan 28, 2026~Feb 24, 2026
This ranking is based on the number of page views on our site.

  1. 愛知県 小牧市 こまき新産業振興センター Aichi//Government
  2. 佐渡精密 Niigata//Machine elements and parts
  3. 松井製作所 Osaka//Ferrous/Non-ferrous metals
  4. 4 セルジャパン  Tokyo//Machine elements and parts
  5. 5 プランネットエンジニアリング Hiroshima//Machine elements and parts

Machining Product ranking

Last Updated: Aggregation Period:Jan 28, 2026~Feb 24, 2026
This ranking is based on the number of page views on our site.

  1. A manufacturing hub where transportation and technology intersect, Komaki City, Aichi Prefecture. 愛知県 小牧市 こまき新産業振興センター
  2. [VA/VE Case] Change in the shape of the seat hole tear 佐渡精密
  3. From materials to delivery! One-stop production of cutting irregularly shaped materials such as castings and forgings. 井上鉄工所
  4. Introducing cutting processes! Cross holes / spiral slits / brass material [video available] セルジャパン 
  5. 4 Case study of cost reduction in metal processing due to changes in the ZAGURI bottom corner R. プランネットエンジニアリング

Machining Product List

151~177 item / All 177 items

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Five Key Points for Achieving High-Quality Cutting Processing

We will carefully explain everything from the basics of cutting processing to specific points!

If you are involved in the manufacturing industry, have you ever struggled with improving the quality of cutting processes? Everyone has the desire to create high-quality products. However, how can we actually enhance the quality of cutting processes? In this article, we will provide a detailed explanation of "Five Points to Achieve High-Quality Cutting Processes." By understanding these points, you will be able to carry out effective cutting processes and achieve quality improvement. *For more details, you can view the related links. For further information, please feel free to download the PDF or contact us.*

  • Other cutting tools
  • Machining

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A manufacturing hub where transportation and technology intersect, Komaki City, Aichi Prefecture.

A business partner that realizes the "speed," "stability," and "technical collaboration" sought by manufacturing industries nationwide.

Komaki City boasts a consistently high production scale in the ranking of manufacturing shipment value across Aichi Prefecture. A diverse range of industries, including aerospace, automotive, and semiconductors, are well-balanced in the area. We meet the needs of companies seeking a robust supply chain and technological collaboration. Additionally, it is a transportation hub where the Tomei, Meishin, and Chuo Expressways intersect, with two interchanges located within the city. The proportion of the "transportation industry" is extremely high, functioning as one of the leading logistics hub cities in the country. It provides an excellent environment for rapid wide-area distribution and business continuity planning (BCP) due to its solid ground with low liquefaction risk. This time, we are publishing a guidebook introducing companies featured in the Komaki Hikari Monozukuri (Manufacturing) Special Edition, which highlights the activities of businesses in Komaki City. For detailed information about each company, please download the guidebook or contact us.

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Four key points for selecting when requesting machining! *Materials provided.

We will solve your concerns when making a request by clearly explaining the key points for selecting a machining service provider! *Materials will be provided.

Our company engages in a comprehensive manufacturing process that starts with the design and development of labor-saving machinery and extends to precision parts processing for medical devices, industrial robots, measuring instruments, as well as inspection, assembly, packaging, and delivery. We also introduce actual case studies while explaining "Four Points to Consider When Requesting Machining." [Contents of the Document] ■ Introduction ■ Point 1: Production System ■ Point 2: Quality Assurance System ■ Point 3: Areas of Expertise ■ Point 4: Communication with the Person in Charge ■ Conclusion *For more details, please refer to the PDF document. Feel free to contact us with any inquiries.

  • Other contract services
  • Machining

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Cutting processing of resin (plastic) for electronic devices

We support the design and manufacturing of electronic device enclosures.

In the electronics industry, the miniaturization, lightweighting, and high functionality of products are advancing, and high precision and compatibility with various materials are required for enclosures. It is important to provide optimal solutions from the design stage of the enclosure to material selection and processing methods. Resin (plastic) cutting processing is an effective means to meet these needs. Our company offers various processing technologies and materials to achieve the quality and cost performance that our customers require. 【Usage Scenarios】 - Electronic device enclosures - Various covers - Internal components 【Benefits of Implementation】 - Increased design flexibility - Improved product performance through lightweighting - Enhanced assembly due to high dimensional accuracy

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  • Processing Contract
  • plastic
  • Contract manufacturing
  • Machining

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Resin (Plastic) Machining for Research and Development

We support the production of prototypes from the design stage.

In the field of research and development, prototype production requires flexible responses to design changes and the ability to work with a variety of materials. Resin (plastic) machining is the optimal solution to meet these needs. Our machining technology contributes to the efficiency of research and development through rapid responses in the prototyping stage and adaptability to various materials. 【Usage Scenarios】 - Prototyping of new materials - Shape verification - Function evaluation - Jig manufacturing 【Benefits of Implementation】 - Flexible responses to design changes - Adaptability to diverse materials - Production of high-quality prototypes - Reduction of research and development time

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  • Processing Contract
  • plastic
  • Contract manufacturing
  • Machining

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What is machining for aerospace?

We respond to the demand for lightweight solutions in the aerospace field!

In the aerospace industry, reducing the weight of aircraft is essential for improving fuel efficiency and performance. Particularly for aircraft components, it is important to achieve weight reduction while maintaining strength. Machining is suitable for manufacturing precise and lightweight parts by removing unnecessary portions from metal materials. Our video materials introduce the principles and characteristics of machining, showcase improvement cases, and explain the key points for selecting processing partners to meet the lightweight needs in the aerospace field. 【Usage Scenarios】 * Aircraft components (structural members, engine parts, etc.) * Space exploration vehicle parts * Drone components 【Benefits of Implementation】 * Improved fuel efficiency through weight reduction * Enhanced performance of components * Cost reduction

  • others
  • Machining

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Basic Knowledge of Cutting Processing for Molds

A clear explanation of the basics of cutting processing in a video!

In the mold industry, knowledge of cutting processes is crucial for achieving both product precision and durability. In particular, the shape accuracy of molds significantly affects the quality of molded products, making an understanding of cutting processes essential. Improper machining can shorten the lifespan of molds and lead to molding defects. This video will explain the basics of cutting processes, machining principles, improvement case studies, and key points for selecting machining partners. 【Application Scenarios】 * Mold design * Mold manufacturing * Quality control of molded products 【Benefits of Introduction】 * Acquisition of basic knowledge of cutting processes * Improvement of quality in mold manufacturing * Reduction of machining defects

  • others
  • Machining

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What is machining for semiconductor manufacturing equipment?

Explaining the basics of cutting processing in a video!

In the semiconductor manufacturing equipment industry, microfabrication technology has become a crucial factor that influences product performance. In particular, high-precision component machining is required, and the quality of cutting processes significantly affects the overall reliability of the equipment. A lack of knowledge in cutting processes can lead to the occurrence of defective products and a decline in performance. This video will explain everything from the basics of cutting processes to processing principles, characteristics, improvement cases, and points for selecting processing destinations. By deepening the understanding of cutting processes, we will contribute to the improvement of the quality of semiconductor manufacturing equipment. 【Application Scenarios】 - Precision component machining for semiconductor manufacturing equipment - Promotion of understanding of microfabrication technology - Reduction of machining defects 【Effects of Implementation】 - Acquisition of basic knowledge of cutting processes - Streamlining of processing destination selection - Improvement of the quality of semiconductor manufacturing equipment

  • others
  • Machining

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What is cutting processing for homemade machine tools?

A clear explanation of the basics of cutting processing in a video!

When creating machine tools, knowledge of cutting processes is essential. By understanding the principles and characteristics of cutting processes, it becomes possible to produce more precise and high-quality parts. This video explains the basics of cutting processes, the differences from other machining methods, improvement examples, and key points for selecting machining destinations. It is easy to understand, even for those learning about cutting processes for the first time. 【Usage Scenarios】 * Production of machine tool parts * Basic learning of metal processing * Creation of homemade tools 【Effects of Introduction】 * Improved understanding of cutting processes * Enhanced quality of part production * Expanded options for machining methods

  • others
  • Machining

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What is machining for robots?

Video materials useful for the design and manufacturing of robot movable parts!

In the robotics industry, durability of movable parts and precise movements are required. Particularly in areas subjected to repetitive motions or high loads, the accuracy and strength of components significantly influence the robot's performance. Improper processing or material selection can lead to robot failures or performance degradation. This video explains the principles and characteristics of cutting processing, improvement cases, and points for selecting processing destinations. It also discusses the differences between cutting processing and other methods such as casting. The video is designed to be as easy to understand as possible for those learning about cutting processing for the first time. 【Application Scenes】 * Joints of robotic arms * Movable parts of precision equipment * Drive parts of industrial robots 【Effects of Introduction】 * Acquisition of basic knowledge of cutting processing * Promotion of understanding of processing methods * Tips for selecting the optimal processing destination

  • others
  • Machining

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What is cutting processing for home appliances?

I will answer the question, 'What is cutting processing?'

In the home appliance industry, the casing plays an important role in protecting the product's performance and enhancing its design. In particular, functions such as durability, heat dissipation, and electromagnetic wave shielding are required, and precise parts manufacturing through cutting processes is essential to meet these demands. If the precision of the cutting process is low, it may hinder the assembly of the casing or lead to a decline in product performance. This video explains the principles and characteristics of the cutting process, improvement examples, and points to consider when selecting a processing partner. It also discusses the differences between cutting processes and other methods such as casting. The video is designed to be as easy to understand as possible for those learning about cutting processes for the first time. 【Usage Scenarios】 - Manufacturing casings for home appliances - Processing precision parts - Prototyping metal parts 【Benefits of Implementation】 - High precision of casings - Improved product quality - Cost reduction

  • others
  • Machining

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Basic Knowledge of Machining for Smartphones

Explaining the basics of cutting processing that realizes miniaturization!

In the smartphone industry, miniaturization and high functionality of products are always in demand. The precise processing of components is a crucial factor that influences product performance. Cutting processing is an essential technology for accurately shaping metal parts and contributes to the manufacturing of complex components inside miniaturized smartphones. This video clearly explains the basics of cutting processing and discusses the importance of machining in smartphone component manufacturing. 【Usage Scenarios】 * Manufacturing smartphone components * Processing small precision parts * Shaping metal components 【Benefits of Introduction】 * Acquisition of basic knowledge of cutting processing * Promotion of understanding of processing methods * Grasping key points for selecting processing partners

  • others
  • Machining

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What is cutting processing for clock decoration?

Explaining the basics of cutting machining in a video!

In the watch industry, the precise processing of decorative components greatly influences the quality and design of the products. Particularly in watch decoration, where beauty in detail is essential, the accuracy of machining is crucial. Improper processing can lead to component damage or deterioration in appearance. This video explains the principles and characteristics of machining, examples of improvements, and key points for selecting processing partners. It is presented in a way that is easy to understand for those learning about machining for the first time. 【Application Scenes】 * Watch dials * Bezels * Cases 【Benefits of Introduction】 * Acquisition of basic knowledge of machining * Promotion of understanding of processing methods * Tips for selecting processing partners

  • others
  • Machining

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What is machining for bicycles?

I will answer the question, 'What is cutting machining?'

In the bicycle industry, the strength and precision of components are essential to ensure product durability and safety. Particularly for frames and parts that must withstand vibrations and impacts during operation, high strength is indispensable. Inadequate processing can lead to component failure or performance degradation. This video explains the principles and characteristics of cutting processing, improvement examples, and points for selecting processing destinations. It also discusses the differences between cutting processing and other methods such as casting. The video is designed to be as easy to understand as possible for those learning about cutting processing for the first time. 【Application Scenes】 - Bicycle frames - Suspension components - Brake calipers - Pedals - Gear shifters 【Benefits of Introduction】 - Manufacturing of high-strength components - High dimensional accuracy - Adaptability to various shapes - Weight reduction - Improved durability

  • others
  • Machining

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Cutting process and various treatments

It is possible to use the product for a longer time! Sub-zero treatment is performed after heat treatment.

We would like to introduce our central measurement cutting processing and various treatments. At our company, after performing cutting processes such as lathe and milling, we carry out sub-zero treatment after heat treatment to prevent aging. Additionally, for areas that do not require grinding, we apply rust prevention treatment (blackening) to allow our customers to use the products for a longer time. Please feel free to contact us if you have any requests. 【Business Overview】 ■ Design and Manufacturing ■ Cutting Processing and Various Treatments ■ Grinding Processing ■ Inspection *For more details, please refer to the PDF document or feel free to contact us.

  • Processing Jig
  • Inspection fixture
  • Machining

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Cutting processing <A wide range of machining centers available>

Various processing options available! We can handle long materials from palm-sized to 2500mm.

Our company offers a wide range of machining centers, capable of performing "cutting processing" for materials ranging from small to large (up to 2500mm). This processing method involves carving out the shape of products from plastic materials, eliminating the need for molds. As a result, there are fewer steps to reach the final product, allowing for speedy production. Additionally, we accommodate various types of processing, such as cutting and drilling. Please feel free to contact us when you need assistance. 【Features】 ■ A wide range of machining centers available ■ Capable of speedy production ■ Various processing options available, including cutting and drilling ■ Processing of materials from small to large (up to 2500mm) ■ Consultation for prototypes before mass production is also available *For more details, please refer to the related links or feel free to contact us.

  • Company:DAIKI
  • Price:Other
  • Processing Contract
  • Machining

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Machining <Consultation available for prototypes before mass production>

Leave the frame, ducts, etc. to us! We also handle various machining processes such as cutting and drilling.

In our company, we also accept consultations for prototypes before mass production in our "cutting processing" services. Prototypes can be made using NC cutting machines before the production of press molds. Additionally, we have both small and large cutting machining centers, capable of processing materials ranging from palm-sized to 2500mm in length. 【Features】 ■ Prototypes can be made using NC cutting machines before the production of press molds ■ Quick production with fewer steps ■ Various processing options available, including cutting and drilling ■ A wide range of machining centers available ■ Capable of processing materials from small to large (up to 2500mm) *For more details, please refer to the related links or feel free to contact us.

  • Company:DAIKI
  • Price:Other
  • Processing Contract
  • Machining

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Cutting processing <Mie Prefecture support>

Customization tailored to your needs! We will provide proposals with mass production in mind even during the prototyping phase.

Our company offers a wide range of machining centers, capable of cutting materials from small sizes up to large ones (up to 250mm). Since our establishment in 1968, we have focused on providing high-quality services by paying attention to detail and emphasizing work efficiency. We also perform cutting and machining of automotive parts, construction materials, precision machine components, and supply parts to manufacturing companies. 【Features】 - We have machining centers for small to large cutting processes, capable of processing materials from palm-sized to 2500mm in length. - We also accept inquiries for prototypes before mass production. *For more details, please refer to the related links or feel free to contact us.

  • Company:DAIKI
  • Price:Other
  • Processing Contract
  • Machining

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[VA/VE Case] Process Design for Stress Reduction

Effects of suppressing deformation and anxiety! Introducing examples of production achieved without significant process changes.

We would like to introduce a case study on the process design for stress reduction that we conducted. When machining a deep V-groove shape into round bars, deformation due to stress occurred after rough machining using wire cutting, making the finishing process impossible. We left extra material at the tip of the V and connected it with a bridge, allowing us to perform the finishing process while suppressing deformation due to stress. Finally, we cut off the bridge section to complete the V shape. 【Case Overview】 ■Challenge When machining a deep V-groove shape into round bars, deformation due to stress occurred after rough machining using wire cutting, making the finishing process impossible. ■Results - Left extra material at the tip of the V and processed while connected with a bridge. - Finished machining with a small-diameter end mill after the rough machining process using wire cutting. - Cut off unnecessary parts to complete the work. *For more details, please visit our website or feel free to contact us.

  • Processing Contract
  • Machining

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Resin (Plastic) Machining for Medical Devices

Leave the precision machining of medical device components to us. We also accommodate inquiries from the design stage.

In the medical device industry, precision parts that require high accuracy and safety are essential. Especially in medical devices that relate to patient health and safety, the quality of the components affects the performance of the products. Resin (plastic) machining is crucial to meet these demands, requiring high dimensional accuracy and the ability to work with various materials. Our company provides optimal solutions for our customers' needs through our extensive experience in the medical device field and consultation on material selection from the design stage. 【Application Scenarios】 - Precision medical device components - Surgical instruments - Inspection equipment parts 【Benefits of Implementation】 - Improved product quality through high-precision component processing - Increased design flexibility by accommodating various resin materials - Shortened development time through support from the design stage

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  • Processing Contract
  • plastic
  • Contract manufacturing
  • Machining

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[Machining Range for Magnesium] Cutting Processing

Minimum order quantity accepted from 1 piece! Magnesium machining by Makuru.

We accept machining of magnesium. The materials we handle include various types such as pipes, bars, and profiles. The delivery time is approximately 10 to 30 days. Please feel free to consult us when you need our services. 【Target Materials】 ■ Lathe, Milling - Extruded materials (pipes, bars, profiles), sheet materials (rolled materials) *For more details, please refer to the PDF document or feel free to contact us.

  • Other metal materials
  • Other contract services
  • Machining

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What is machining for automotive engines?

I will answer the question, 'What is cutting processing?'

In the field of automotive engines, high precision and durability are required. Engine parts are used in harsh environments such as high temperatures and high pressures, making high quality essential. Cutting processing is an important technology to meet these demands. Improper processing can lead to a decline in engine performance or failure. This video explains the principles and characteristics of cutting processing, improvement cases, and points for selecting processing destinations. It also discusses the differences between cutting processing and other methods such as casting. The video is designed to be as easy to understand as possible for those learning about cutting processing for the first time. 【Usage Scenarios】 - Manufacturing engine parts - Producing prototype parts - Quality improvement 【Effects of Introduction】 - Acquisition of basic knowledge of cutting processing - Promotion of understanding of processing methods - Streamlining of processing destination selection

  • others
  • Machining

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What is machining for medical devices?

I will answer the question, 'What is cutting processing?'

In the medical device industry, precise machining of components is required to ensure product safety and reliability. Particularly for medical devices that are directly related to patient health and safety, high precision and quality are essential. Cutting machining excels at creating complex shapes and fine details, contributing to the manufacturing of precision components for medical devices. Our video materials explain everything from the basics of cutting machining to its application in medical device components and key points for selecting machining partners. 【Usage Scenarios】 - Manufacturing precision medical device components - Machining complex-shaped parts - Parts requiring high-quality surface finishes 【Benefits of Implementation】 - Manufacturing high-quality medical device components - Improving product reliability - Acquiring knowledge about machining technologies

  • others
  • Machining

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What is machining for musical instruments and acoustics?

I will answer the question, 'What is cutting processing?'

In the musical instrument and audio equipment industry, there is a demand for improved sound quality and product durability. In particular, precise processing of components is essential for controlling vibrations and resonance to reproduce accurate tones. Improper processing can lead to deterioration of sound quality and shorten the lifespan of products. This video explains the principles and characteristics of cutting processing, examples of improvements, and key points for selecting processing partners. It also discusses the differences between cutting processing and other methods such as casting. The video has been created with the aim of being as easy to understand as possible for those learning about cutting processing for the first time. 【Application Scenes】 * Instrument parts (metal parts, audio components) * Speaker components * Microphone components 【Effects of Introduction】 * Improved sound quality through precise component processing * Realization of highly durable products * Potential for cost reduction

  • others
  • Machining

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Higashi-Osaka Brand [A Professional Group of Cutting, Rolling, and Finishing] MH Seiko

We can accommodate diameters from Φ3mm to 300mm and lengths from 3mm to 3000mm. We perform everything from cutting to finishing processes in a consistent manner.

MH Seiko Co., Ltd. has been engaged in metal processing of various products, including industrial machinery, nuclear-related equipment, agricultural machinery, and commercial appliances, as well as cutting processing of various shafts. 【Features of MH Seiko】 ■ Processing production of 2,000 to 3,000 types per year ■ Lot support from 1 to 500 pieces ■ Shortest delivery time from 1 day *For more details, please download the PDF or feel free to contact us.

  • Other machine elements
  • Non-ferrous metals
  • Processing Contract
  • Machining

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Metal cutting processing! You can also leave the dimensional tolerances to us! Welding and various surface treatments are possible!

Various metal cutting! Domestic and overseas support available! Please consult us about dimensional tolerances! Welding and surface treatment can also be handled together!

Our company performs various metal cutting based on drawings and various data. You can choose the desired size and material according to your intended use. Even if integrated processing is difficult, complex shapes can be manufactured through segmented processing. Additionally, we can create the necessary 3D data from drawings or sketches, so please feel free to consult with us. We can also handle welding, shot blasting, and baked painting after cutting as a comprehensive service, allowing you to make total requests. 【Features】 ■ Welding and surface treatment are also available ■ Complex shapes can be manufactured ■ 3D data can also be created from drawings or sketches *For more details, please feel free to contact us through our website.

  • Company:MIXER
  • Price:Other
  • Processing Contract
  • Prototype Services
  • Surface treatment contract service
  • Machining

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