Changzhou AMG Precision Tool Manufacturing CO., LTD

Changzhou AMG Precision Tool Manufacturing CO., LTD

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High Temp Resistant TiN Coated Carbide Boring Bar For Aerospace Structural Deep Hole Boring

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Changzhou AMG Precision Tool Manufacturing CO., LTD
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City:changzhou
Province/State:jiangsu
Country/Region:china
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High Temp Resistant TiN Coated Carbide Boring Bar For Aerospace Structural Deep Hole Boring

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Brand Name :AMG
Model Number :Standard/Customized
Certification :ISO9001
Place of Origin :China
MOQ :3
Delivery Time :3-7 days for standard products/7-10 days for non-standard products
Price :Request Quote
Name :High Temperature Resistant TiN Coated Carbide Boring Bar
Type :Boring Cutter
Product name :Surface Finish Optimized Tool
Suitable for :Alloy Steel,Stainless Steel,Titanium Alloy, etc
Express :TNT,DHL,EMS
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AMG specializes in providing advanced custom carbide cutting tools tailored to meet your precise machining needs. Leveraging our expertise and cutting-edge manufacturing capabilities, we design and produce carbide tools that optimize performance and efficiency. One of our flagship products is the high-temperature resistant TiN coated carbide boring bar, engineered specifically for deep hole boring applications in aerospace structural components. This tool combines superior thermal stability with exceptional wear resistance to deliver reliable, high-precision machining in challenging environments.


Customization Capabilities:
At AMG, we can manufacture custom carbide cutting tools based on your detailed drawings or design specifications. Our engineering team can also develop cutting tools optimized according to the structure of your workpieces, helping you improve machining efficiency and reduce overall production costs. Each custom tool undergoes rigorous quality control, and we provide an official inspection report with every order to guarantee consistency and performance reliability. For example, the TiN coated carbide boring bars we produce for aerospace deep hole boring are meticulously customized to meet tight tolerances and material-specific challenges, ensuring optimal performance on complex parts like fuselage frames, wing spars, and engine components.


Specifications Table:

Parameter Description
Material Ultra-fine grain carbide
Coating TiN (Titanium Nitride) PVD coating
Diameter Range 10mm – 50mm (customizable)
Length Range Up to 300mm or more
Tolerance IT6 – IT8 precision class
Cooling Optional internal coolant through-hole design

High Temp Resistant TiN Coated Carbide Boring Bar For Aerospace Structural Deep Hole Boring

High Temp Resistant TiN Coated Carbide Boring Bar For Aerospace Structural Deep Hole Boring



Working Principle

The AMG TiN coated carbide boring bar operates by rotating at precise speeds and feeds to machine deep, accurate cylindrical holes in aerospace components. The TiN coating reduces friction and resists oxidation even at high temperatures, maintaining cutting edge sharpness and dimensional stability during long machining cycles. Optional internal coolant channels deliver coolant directly to the cutting zone to enhance chip evacuation and thermal management, critical for deep hole boring in tough aerospace alloys.


Advantages:

  • Outstanding high-temperature resistance maintains tool hardness and wear resistance in extreme conditions.

  • Exceptional wear resistance reduces abrasive and adhesive wear, extending tool life.

  • Precision manufacturing ensures tight bore tolerances and excellent surface finish.

  • Internal coolant design improves chip evacuation and reduces risk of tool breakage.

  • Enhances machining efficiency with stable cutting action and higher speeds.

  • Backed by AMG’s quality assurance and advanced grinding and coating technologies.


High Temp Resistant TiN Coated Carbide Boring Bar For Aerospace Structural Deep Hole Boring

FAQ:

  1. What materials can this boring bar machine?

    • Titanium alloys, nickel-based superalloys, stainless steels, and other aerospace-grade materials.

  2. What are the benefits of TiN coating?

    • Improved wear resistance, oxidation resistance, and thermal stability at high temperatures.

  3. Is internal coolant supported?

    • Yes, internal coolant through-hole design is available for enhanced cooling and chip removal.

  4. What cutting parameters are recommended?

    • Speeds typically range from 50 to 150 m/min, depending on material and tool diameter.


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