Service Story Ep 9 High-Precision Titanium Alloy CNC Parts for Bicycle Upgrades

Home > Service Story Ep 9 High-Precision Titanium Alloy CNC Parts for Bicycle Upgrades
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Service Story Ep 9 High-Precision Titanium Alloy CNC Parts for Bicycle Upgrades

XY-GLOBAL delivers custom CNC machining solutions for industries that demand extreme precision. One recent project involved producing titanium alloy components for an American client’s bicycle modification project, combining high accuracy, durability, and premium surface finishing.

Project Summary

The client needed lightweight yet strong titanium alloy parts to upgrade a performance bicycle. The components required:

  • Exact fit with existing assemblies

  • Superior surface finish

  • Enhanced strength-to-weight ratio for improved riding performance

Manufacturing Excellence

  • Technology: Advanced multi-axis CNC machining

  • Material: Titanium alloy – corrosion-resistant, lightweight, high strength

  • Surface Finish: Mirror polishing with DLC coating for both aesthetics and wear resistance

Precision & Quality Assurance

Our manufacturing process ensures:

  • Tight dimensional tolerances

  • Consistent surface treatment

  • Thorough quality inspection using 3D measuring systems and CCD equipment

Production lead time was 3–5 days, with delivery in around two weeks, ensuring the client met their project schedule.

Outcome

The final parts were delivered with perfect fit and flawless finish. The client praised:

  • Machining accuracy

  • Premium appearance

  • Reliable, fast delivery

The success of this project has led to new cooperation plans for the next quarter.


Why Partner with XY-GLOBAL

  • Proven expertise in titanium alloy CNC machining

  • Experience in custom sports and engineering components 

  • Fast turnaround with strict quality control

  • Ability to meet high-end performance industry demands

Whether for bicycle modifications or custom precision engineering projects, XY-GLOBAL is your trusted CNC machining partner.

📽 Watch the full process in our project video: