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 67 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Dec 24, 2025~Jan 20, 2026
This ranking is based on the number of page views on our site.

Hole Drilling Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Dec 24, 2025~Jan 20, 2026
This ranking is based on the number of page views on our site.

  1. ハイタック Shizuoka//Manufacturing and processing contract
  2. 光機械製作所 HIKARI LASER LAB. Mie//Manufacturing and processing contract
  3. 武蔵野ファインガラス Saitama//Manufacturing and processing contract
  4. 4 アイテック Gunma//Manufacturing and processing contract
  5. 5 不二新製作所 Osaka//Ferrous/Non-ferrous metals

Hole Drilling Product ranking

Last Updated: Aggregation Period:Dec 24, 2025~Jan 20, 2026
This ranking is based on the number of page views on our site.

  1. Deep hole machining of resin ハイタック
  2. Micro through-hole processing (TGV) 武蔵野ファインガラス
  3. Deep hole machining of small diameter for medical devices. ハイタック
  4. Micro-hole processing, micron level, φ50μm, synthetic quartz glass, medical. 光機械製作所 HIKARI LASER LAB.
  5. Perforation hole processing エヌシー産業 本社工場

Hole Drilling Product List

106~120 item / All 134 items

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Osaka Machining Processing - Deep Hole Processing

Deep hole machining, grinding processing. [Leave cost reduction to Filir Co., Ltd.]

♦Material S45C (Steel) ♦Industry Automation and Labor-Saving Machinery FA Equipment ♦Processing Method Machining Grinding ♦Surface Treatment Processing (within Japan) ♦Quantity 10 to 50 pieces ♦Description This involves machining of deep holes. *We encourage you to request a quotation, and we will respond to your company's needs. Please feel free to consult us after visiting our website. =-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=-=- Fi-Rail Co., Ltd. Sales Department, Yoshikazu Demizu 570-0043 6-11-12 Minamiterakatahigashi-dori, Moriguchi City, Osaka Prefecture TEL: 06-7493-8864 FAX: 06-7493-8871 Mobile: 070-3885-7735 E-mail: demizu@fi-real.com Website: https://fi-real.com/

  • Other conveying machines
  • Other industrial robots
  • Other assembly machines

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[Technical Introduction] High-Precision Angular Holes, Fine Holes, and Deep Hole Machining

Supports drilling from φ0.3mm! Achieved a corner accuracy of 1μm for square holes.

We would like to introduce the technology of E-DM Works Co., Ltd. for "High-Precision Corner Holes, Fine Holes, and Deep Hole Machining." We can accommodate drilling from φ0.3mm. We have achieved a corner accuracy of 1μm for corner holes. Please leave fine hole machining using electrical discharge machining and wire cutting to us. 【Features】 ■ Supports drilling from φ=0.3mm ■ Achieves corner accuracy of 1μm for corner holes *For more details, please refer to the PDF document or feel free to contact us.

  • Processing Contract
  • Other machine elements
  • Other electronic parts

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Hexagonal hole machining

Can be processed in a short time! We perform hex hole processing used for hex wrenches and other tools.

"Hexagonal hole machining" is performed using a special attachment. Since the machining of hexagonal holes is done through cutting processes, the machining time is significantly shorter compared to methods like electrical discharge machining. Please note that since these are hexagonal holes for hex wrenches, they are not suitable for cases that require very high precision. 【Features】 - Uses a special attachment - Very short machining time - Machining of hexagonal holes through cutting processes

  • Power Transmission Equipment
  • Processing Contract

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Examples of yield improvement and cost reduction in metal processing due to changes to through holes.

By reducing the number of cutting tools used by one, it is possible to lower costs as processing time can also be shortened!

We will process a stop hole with a diameter of φ6H7 and an effective depth of 7mm in a thin plate with a thickness of 8mm. In this case, it is necessary to machine the hole as close to being through as possible and finish the bottom of the hole to a flat surface. Therefore, we will process in the following order: [φ5.0 drill → flat end mill → chamfering → φ5.9 end mill → φ6 reamer]. One issue is that reamers with larger cutting edge surfaces cannot be used, which can cause the entrance to become misaligned and larger, leading to reduced yield. If there is no problem with the pilot hole being through, we can omit the machining with the flat end mill by making it a through hole. As a result, the number of cutting tools used is reduced by one, and machining time is also shortened, which helps to lower costs. [Case Study] ■ Content: Improvement of yield and cost reduction in metal processing by changing to a through hole ■ Issue: The entrance becoming misaligned and larger, causing reduced yield ■ Proposal: Make it a through hole if there is no problem with the pilot hole being through ■ Application: Cost reduction, cutting processing, machining, lathe work, precision processing *For more details, please refer to the PDF document or feel free to contact us.

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Laser microfabrication: SUS304 micro hole processing

Laser microfabrication: Fine hole processing of SUS304 using ultrashort pulse laser.

Material: SUS304 / Thickness: 0.1mm / Hole pitch: 100μm A through hole with a diameter of 20μm was processed in a stainless steel flat plate using a super short pulse laser. Processing is possible not only on flat surfaces but also on curved surfaces.

  • Processing Contract
  • stainless
  • Other physicochemical equipment

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Micro-hole processing, micron level, φ50μm, synthetic quartz glass, medical.

Laser shape processing: Micro-hole drilling through synthetic quartz glass.

【Micro Hole Processing Micron Level φ50μm Synthetic Quartz Glass Medical】 【Material】 Synthetic Quartz Glass 【Industry and Application】 Medical Devices and Medical Parts Communication Equipment Automotive Interior Parts 【Dimensions】 Thickness 0.45mm (450μm) 【Processing】 Ultrashort Pulse Laser Processing 【Features】 Performed through-hole processing with 10,000 holes within a 20mm range on synthetic quartz glass. Through technological development, we achieved through-hole processing with a hole diameter of Φ50μm. In our conventional processing, the limit for glass of similar thickness was approximately Φ100μm. This product uses ultrashort pulse lasers, which significantly reduce physical damage and thermal effects, allowing for fine processing with minimal burrs. Hikari Machinery Manufacturing Co., Ltd. ■HIKARI LASER LAB. 511 Room, Higashi-Kashiwa Techno Plaza, 5-4-6 Kashiwanoha, Kashiwa City, Chiba Prefecture 277-0882 Tel. 0471-70-4866 Fax. 0471-70-4866 E-mail: info@hikarikikai.co.jp HP: https://www.hikarikikai.co.jp/

  • Processing Contract
  • Laser marker
  • Other lighting equipment

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Laser micro holes φ100μm alkaline-free glass quartz

Laser micro holes φ100μm alkaline-free glass quartz

【Laser Micro Holes φ100μm Non-Alkali Glass Quartz】 【Material】 Non-Alkali Glass 【Industry and Applications】 Medical Devices Communication Equipment 【Dimensions】 Thickness 0.5mm (500μm) 【Processing】 Ultrashort Pulse Laser Processing 【Features】 This product has a material thickness of 0.5mm and a hole diameter of 100μm. It enables small diameter hole processing with minimal burrs. It is compatible with drilling various types of glass (quartz). It can accommodate minimum hole diameters of approximately 0.1mm. Microprocessing of Difficult-to-Cut Materials and Shapes ◆ Automotive Parts, Medical Device Parts, Electronic Components, Semiconductor Components ◆ Prototype and Development Projects We handle everything from processing to equipment setup. Hikari Machinery Manufacturing Co., Ltd. ■ HIKARI LASER LAB. 〒277-0882 Chiba Prefecture, Kashiwa City, Kashiwa-no-ha 5-4-6, Room 511, Tokatsu Techno Plaza Tel. 0471-70-4866 Fax. 0471-70-4866 E-mail: info@hikarikikai.co.jp HP: https://www.hikarikikai.co.jp/

  • Processing Contract
  • Other optical parts
  • Other markings

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Micro-hole processing, glass, quartz, ultra-short pulse laser, cutting

Micro-hole processing, glass, quartz, ultra-short pulse laser, cutting.

【Micro Hole Processing Glass Quartz Ultra-Short Pulse Laser Cutting】 【Material】 Glass Quartz 【Industry and Applications】 Medical devices and medical parts related industry Precision stainless steel micro parts for medical devices 【Dimensions】 Thickness 0.5mm (500μm) 【Features】 This product uses ultra-short pulse laser technology to process micro holes in glass. It enables small diameter hole processing with minimal burrs. It is compatible with drilling holes in various types of glass, with a minimum hole diameter of approximately 0.1mm. ◆ Fine processing of difficult-to-cut materials and complex shapes ◆ Automotive parts, medical device parts, electronic components, semiconductor parts ◆ Prototype and development projects We handle everything from processing to equipment setup. Hikari Machinery Manufacturing Co., Ltd. ■ HIKARI LASER LAB. 511 Room, Higashi-Kashiwa Techno Plaza, 5-4-6 Kashiwa-no-ha, Kashiwa City, Chiba Prefecture 277-0882 Tel. 0471-70-4866 Fax. 0471-70-4866 E-mail: info@hikarikikai.co.jp HP: https://www.hikarikikai.co.jp/

  • Contract manufacturing
  • Laser marker
  • Beverage Production Equipment

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Deep hole machining for automotive parts

In the automotive parts production line, efficient tools are essential for enhancing profitability!

We would like to introduce our "deep hole machining for automotive parts." This is a cost-effective production method used to create numerous holes in parts such as transmission shafts, engine blocks, airbag chambers, camshafts, and other internal engine components. Deep hole machining using gun drilling is a crucial material removal process in industries such as automotive, mold making, and turbines, and it is expected to become more complex with increasing demand in the future. 【Features】 ■ Used to create numerous holes in parts ■ Cost-effective production method *For more details, please download the PDF or feel free to contact us.

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  • Processing Contract

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Deep hole machining for aerospace (difficult-to-cut materials)

High-quality main spindle motors contribute to the high precision required for aerospace components!

We would like to introduce our "Deep Hole Machining for Aerospace (Difficult-to-Cut Materials)." Our Gundrill machines are designed with advanced technology to meet the complex demands specific to aerospace components, featuring high-quality spindle motors that ensure reliable and stable operation. Additionally, they are equipped with ideal conditions for the aerospace industry, such as suitability for long and deep hole machining, stable machining speeds, and minimal heat generation. [Features] - Main materials: Inconel, Hastelloy - Usable for high-frequency hardened materials - Fuel injection systems (difficult-to-cut materials) - Temperature sensor protection tubes (extremely thin wall machining) - Jet aircraft gear shafts *For more details, please download the PDF or feel free to contact us.

  • Processing Contract

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[Case Study] Molds (Injection Molding and Aluminum Extrusion) Industry

Introducing a case where cooling performance was improved, gas escape was enhanced, and post-processing was reduced!

We would like to introduce a case study of the production of ultra-fine diameter deep hole components used in cooling channels and gas venting within molds in high-temperature environments. In this case, there were challenges due to a high risk of breakage from the ultra-fine diameter and difficulties in ensuring straightness due to the deep holes. However, through our company's efforts, we improved cooling performance and gas venting, resulting in a reduction in post-processing. Our company has many years of experience and advanced technology in the field of deep hole machining and gun drilling. Utilizing advanced gun drilling technology that enables precise deep hole machining, we provide high-quality processing services tailored to our customers' needs. 【Case Overview】 ■ Industry: Molds (Injection Molding, Aluminum Extrusion) ■ Component Information: DAC material, φ2.1×227.1mm, concentricity 0.04mm, inner diameter ±0.01 to 0.02 ■ Challenges: High risk of breakage due to ultra-fine diameter / Difficulty in ensuring straightness due to deep holes ■ Value Provided: Zero breakage with penetration / Achieved concentricity of 0.04mm / High reproducibility in long holes ■ Technical Points: Carbide drill, step feed, hydraulic control, straightness correction *For more details, please download the PDF or feel free to contact us.

  • Processing Contract

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Deep hole machining

Good shaft tolerance, cylindricity, and roundness! High-precision hole machining with a gun drill.

We would like to introduce the "Deep Hole Machining" offered by Toa Denko Co., Ltd. By spraying cutting oil from the tip, chips generated during machining are discharged through a V-shaped groove, enabling high-precision deep hole machining using a "gun drill." Our company can drill holes of different diameters from both sides or stop the hole without making it through. If you have any questions like "Can you do this?" or need consultation, please feel free to contact us. 【Features】 ■ Minimal bending ■ Good surface roughness ■ Excellent diameter tolerance, cylindricity, and roundness *For more details, please refer to the related links or feel free to contact us.

  • Other processing machines

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[Data] Case Study on Problem Solving <Machining Deep Hole Processing for Automotive Parts>

Introduction of a case that solved the chip problem occurring during deep hole machining with machining.

This document introduces a case study that addresses the challenges of machining deep holes in automotive parts. The background of the request was that during machining, when drilling deep holes, chips were getting stuck at the back, causing issues during assembly. By adding a coolant-through spindle to the machining process and injecting oil from the tool during drilling, we improved the chip removal during deep hole machining. [Contents] - Examples of machining products (aluminum products) - Background of the request - Proposed solutions - Customer feedback and points of satisfaction *For more details, please refer to the PDF document or feel free to contact us.

  • Processing Contract

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Laser Processing Case Study 3: Introduction to Hole Processing in Ceramics

I would like to introduce examples of hole processing in alumina and SUS.

Laser Processing Examples 3. Hole Processing in Ceramics *Photos are also included in the PDF catalog. Please download and check. [Example] Material: Alumina Hole Diameter: 50μ Pitch: 0.25mm Using a 400W fiber laser from Furukawa Electric, hole processing has been performed on 0.65T alumina.

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[Medical Devices] Solving challenges in microfluidic devices with φ0.02 hole processing!

For micro hole processing of microfluidic devices, leave it to Sanwa Creation!

In the medical device industry, particularly in microfluidic devices, precise fluid control is required. The small hole diameter and high precision are critical factors that influence the performance of the device. Improper hole processing can lead to increased fluid resistance and device malfunction. Our φ0.02 drilling technology addresses these challenges. 【Application Scenarios】 - Microfluidic chips - Implant devices - Diagnostic devices 【Benefits of Implementation】 - Achieves high-precision fluid control - Enhances device performance - Provides reliable products

  • Printed Circuit Board

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