We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Hole Drilling.
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Hole Drilling Product List and Ranking from 45 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

Hole Drilling Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. 光機械製作所 HIKARI LASER LAB. Mie//Manufacturing and processing contract
  2. エヌシー産業 本社工場 Kyoto//others
  3. アイテック Gunma//Manufacturing and processing contract
  4. ブル精密 (株)ブル精密 本社 Tochigi//Glass and clay products
  5. 5 大羽精研 Aichi//Machine elements and parts

Hole Drilling Product ranking

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. Perforation hole processing エヌシー産業 本社工場
  2. [Processing Example] Flat Grinding and Hole Processing of Non-Magnetic Metals アイテック
  3. [Glass Processing Examples] Car Navigation Related ブル精密 (株)ブル精密 本社
  4. Processing small diameter holes in hardened stainless steel. 大羽精研
  5. 4 Deep hole machining 東亜電工

Hole Drilling Product List

31~45 item / All 117 items

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[Example] Gundrilling process on A5052 plate

Gundrilling processing on a 60mm thick A5052 block material!

This is a case of various gun drilling operations performed on a 60mm thick A5052 block material. 【Case Details】 Material: A5052 block material with a thickness of 60mm Processing: 3 stepped holes of φ1.7 and φ3 (sensor holes) 35 blind holes of φ5 (air holes) 8 through holes of φ12.1 (heater holes) *If you are having trouble with the precision and quality of deep hole machining, please contact Fuji Shin Seisakusho. *Please view the "Manufacturing Case Collection" PDF data available for download.

  • Processing Contract
  • cylinder
  • Other machine elements

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[Example] A5056 Shaft (Gun Drill, Lathe, Machining, Plating)

Electroless nickel plating is also possible in the final process! This is an example of composite processing, such as gun drilling of A5056 (aluminum) shafts.

This is a case of composite processing including gun drilling, lathe work, machining, and plating of A5056 (aluminum) shafts. 【Case Details】 Material: A5056 (aluminum) Processing: Gun drilling of four through holes with a diameter of φ10 in the longitudinal direction Eight M3 taps and four M20 taps on the opposite side M20 processed with a helical method Electroless nickel plating treatment by a partner company *If you are having trouble with the accuracy or quality of deep hole processing, please contact Fuji Shin Seisakusho. *Please view the "Production Case Collection" PDF data available for download.

  • Processing Contract
  • cylinder
  • Other machine elements

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[Example] SUS304 Special Shaft (Gun Drill, Lathe, Machining)

This is an example of composite processing of stainless steel (SUS304) involving gun drilling, lathe work, and machining.

This is an example of composite processing of stainless steel (SUS304) (gundrilling, lathe, machining). 【Details of the example】 Material: SUS304 Processing: Gundrilling, lathe, machining, etc. *If you are having trouble with the accuracy or quality of deep hole processing, please contact Fuji Shin Seisakusho. *Please view the "Production Case Collection" PDF data available for download.

  • Processing Contract
  • cylinder
  • Other machine elements

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[Example] SUS304 Special Flange Processing (Without Gundrill)

This is an example of composite processing of stainless steel (SUS304) such as turning and machining.

This is an example of composite processing (lathe, machining) of stainless steel (SUS304). 【Case Details】 Material: SUS304 Processing: Lathe, machining, etc. *If you are having trouble with the accuracy and quality of deep hole processing, please contact Fuji Shin Seisakusho. *Please view the "Production Case Collection" PDF data available for download.

  • Processing Contract
  • cylinder
  • Other machine elements

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[Example] Copper casting processing (lathe ⇒ gun drilling ⇒ machining ⇒ lathe finishing)

Examples of composite processing of copper castings (including gun drilling)

This is a case study of composite processing of copper castings. 【Case Details】 Material: Copper (casting) Processing: Lathe, Gundrilling, Machining Center, Lathe (finishing) *If you are having trouble with the accuracy or quality of deep hole processing, please contact Fuji Shin Seisakusho. *Please view the "Production Case Collection" PDF data available for download.

  • Processing Contract
  • cylinder
  • Other machine elements

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[Example] New heat-resistant alloy (Inconel type, gun drill, lathe)

This is a case study of processing a new type of heat-resistant alloy.

This is a processing example of a new type of heat-resistant alloy (if Inconel 718, a nickel-based alloy, can be processed, it is a material that can be processed). 【Case Details】 Outer diameter: φ25.4 (supplied material is φ27) Inner diameter: φ21.4 Total length: 500mm (supplied material is 502) *If you are having trouble with the accuracy and quality of deep hole machining, please contact Fuji Shin Seisakusho. *Please view the "Manufacturing Case Collection" PDF data from the download section.

  • Processing Contract
  • cylinder
  • Other machine elements

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[Example] FC250 (Gun drill, BTA processing)

This is an example of FC250 (gun drilling, BTA processing).

This is an example of FC250 (gun drilling, BTA processing). 【Example Details】 Material: Cast iron Processing: Gun drilling, BTA processing *If you are having trouble with the precision or quality of deep hole processing, please contact Fuji Shin Seisakusho. *Please view the "Production Case Collection" PDF data from the download section.

  • Processing Contract
  • cylinder
  • Other machine elements

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[Example] HPM7 (Gun drilling process, multiple holes)

This is an example of HPM7 (gun drill processing, multiple holes).

This is a case study of HPM7 (gun drilling processing, multiple holes). 【Case Details】 Material: HPM7, six-sided polished material Processing: φ12.1 (4 locations) φ15.0 (1 location) φ22.0 (4 locations) *If you are having trouble with the accuracy and quality of deep hole processing, please contact Fuji Shin Seisakusho. *Please view the "Production Case Collection" PDF data available for download.

  • Processing Contract
  • cylinder
  • Other machine elements

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Solving the dilemma of choosing a partner company! Document on processing achievements and selection points for processing contractors.

[Essential for Engineers and Purchasing Agents!] A document presenting five key points to identify reliable processing companies, along with examples of "processing achievements" such as short delivery times and small-lot, diverse products!

Points to identify reliable processing contractors and problem-solving materials are content that we would like not only engineers but also ordering personnel and site managers to read. "Problems in searching for partner companies" and "Five points to identify reliable processing contractors" are surely the answers our customers are looking for in this booklet! ★ Right now, we are offering the booklet for free! 【Do you have any of these problems? (Excerpt)】 - I want to place an order, but sending materials is a hassle... - For a first-time order, they won't accept it if it's a small quantity with many varieties... - There are no standard products, and no one can process them... 【Our Strengths】 - Consistent production from materials - With just one drawing, we arrange materials and deliver satisfactory products as "finished products" - Instead of saying "we can't do it" for difficult products, we request our extensive network of partner factories to meet needs to the fullest - Reliability reflected in a high repeat rate - Stable quality regardless of whether it's prototype or mass production *For details, please contact us or refer to the catalog.

  • Processing Contract
  • Vehicle body parts

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Cutting plate material SS400 1990×990 200 holes processed

Cutting plate material SS400 1990×990 200 holes processed

【Category】 Machine Tools 【Specifications】 Material: Stainless Steel Lot: From 1 piece Accuracy: 1/100 to 1/1000 mm 【Description】 Cutting table made of SS400, dimensions 1990×990, with 200 hole processing. Both sides are chamfered at 0.5. Through processing with M16 taps at four locations. Thickness: 50 mm. Through processing with a 200-25π reamer. Spacing is 100 mm both vertically and horizontally. - 60 years in business, Metal Processing Industry, Kobayashi Nobuhiro Ironworks -

  • Flat/Shaped/Vertical Cutting Machine

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Deep hole machining <Gundrill method & BTA method>

Processing diameter φ1mm to φ500mm, maximum processing length 10,000mm! Hole drilling with a diameter tolerance typically around H7 to H9 is possible.

Miroku Machinery also supports processing related to hole machining. With the gun drill method, we can process hole diameters from φ1 to φ35 and depths up to 4,000mm. With the BTA method, we can process hole diameters from φ15 to φ500 and depths up to 10,000mm. We have excellent diameter tolerances, cylindricity, and roundness, and by using carbide tips, we can drill holes in materials with hardness up to HRc40 to 45. 【Features】 ■ High-efficiency deep hole machining ■ Minimal bending ■ Good surface roughness ■ Good diameter tolerances, cylindricity, and roundness ■ Capable of drilling holes in high hardness materials *For more details, please refer to the PDF document or feel free to contact us.

  • Other processing machines
  • Processing Contract

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Five Features of "Warashiyama Carbon" [Includes Processing Case Studies!]

Opening up a new society with CFRP! Introducing the features of Warabiyama Carbon that supports both prototyping and mass production.

"Warasuyama Carbon" is our processing technology that has successfully transitioned from conventional continuous processing of φ0.5mm holes to continuous processing of 100 holes ranging from φ0.3mm to φ0.2mm. Inner diameter processing allows for cutting of grooves and steps, expanding its use as mechanical components. Through the development of cutting tools, tools, and methods, we can process pockets, countersunk holes, screws, grooves, hexagonal holes, and more, as well as perform fine precision adjustments that are possible only through cutting processing. Additionally, while we have been developing materials aimed at high strength and high elasticity of carbon fibers, we will now also focus on utilizing the functions of each fiber (such as conductivity, electromagnetic shielding, etc.) and developing materials that can meet customer needs through combinations with resins. **Five Features of Warasuyama Carbon** ■ Supports continuous fine hole processing ■ Supports outer and inner diameter processing of round bars ■ Capable of various cutting processes due to flexible processing power ■ Supports both prototyping and small batch production as well as mass production ■ Conducts unique development of materials (primary products) to accommodate various functions *For more details, please refer to the PDF document or feel free to contact us.*

  • Other cutting tools
  • Other consumables
  • Other machine elements

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[Processing Example] Plate Material Fine Hole Processing

Contributing to cost reduction! Introducing examples of fine hole processing with "Warabiyama Carbon."

"Warashiyama Carbon" is our machining technology that supports various cutting processes, from continuous micro-hole machining to outer and inner diameter processing of round bars, and is capable of handling everything from prototypes and small quantities to mass production due to its flexible machining capabilities. It is possible to continuously process over 100 micro-holes with a diameter of φ0.5mm to φ0.2mm using a single cutting tool. Additionally, we have successfully reduced costs by using our uniquely developed cutting tools. Furthermore, we can process both UD and cross materials with a thickness of 0.5mm to 1.5mm. [Processing Examples] ■ Micro-hole machining (φ0.5mm) ■ Micro-hole machining (φ0.3mm・φ0.2mm) ■ Continuous micro-hole machining (φ0.3mm・φ0.2mm) *For more details, please refer to the PDF document or feel free to contact us.

  • Other cutting tools
  • Other machine elements
  • Processing Contract

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Case study of cost reduction in metal processing through pocket hole machining.

Cutting processing with end mills! Significant reduction in processing time achieves cost reduction for machine parts.

This is a machine part with a φ11 hole and a stepped section. Since machining the pin angles of the stepped section is impossible with end milling, processing with a wire EDM machine is necessary. However, the wire EDM machine takes a long time to process, resulting in high costs. If there are no mechanical issues, we will drill a φ11 hole, and by also machining pocket holes in the corners of the stepped section, we can create clearance, allowing for machining with an end mill. By eliminating the need for time-consuming wire EDM processing, we can significantly reduce processing time and achieve cost reduction for the machine part. [Case Study] ■ Content: Cost reduction in metal processing through pocket hole machining ■ Issue: Wire EDM machines incur high costs due to long processing times ■ Proposal: Machining with an end mill ■ Applications: Cost reduction, cutting processing, machining, lathe work, precision processing *For more details, please refer to the PDF document or feel free to contact us.

  • Processing Contract

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Introduction of case studies for solving hexagonal hole machining problems.

Easy to process even with thin shapes! Achieving high-level quality in complex machining of difficult-to-cut materials and small precision parts.

Traditionally, the processing of hexagonal holes in small-scale production involved drilling a pilot hole and then using a hexagonal punch to process the hexagonal hole through pressing. However, this multi-step process led to issues such as long production lead times, high costs, and the need for dedicated jigs. Our company performs hexagonal hole processing using dedicated tools in a consistent production process. Due to the freedom in process design, hexagonal hole processing has become possible in processes that were not feasible before, allowing for reduced production lead times and lower costs through process consolidation, eliminating the need for dedicated jigs. Additionally, there are advantages such as ease of processing thin-walled shapes, which are difficult to achieve with pressing. [Case Study] ■ Issues - Long production lead times, high costs, need for dedicated jigs, etc. ■ Solution - Perform hexagonal hole processing using dedicated tools in a consistent production process. *For more details, please refer to the PDF document or feel free to contact us.

  • Processing Contract

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