Carbon-Ti X‑Rotor Titanium Bolt Kit
Engineered for riders who demand uncompromising quality, the Carbon‑Ti X‑Rotor Titanium Bolt Kit delivers exceptional strength, longevity, and performance in an ultra‑light package. Precision‑machined in Italy from Grade 5 titanium, these bolts offer superior durability and corrosion resistance—ideal for hard‑charging mountain, gravel, and road cyclists.
Key Features
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Superlight Grade 5 Titanium Construction
Each bolt is crafted from aerospace‑grade titanium, achieving a total kit weight of just 7.8 grams while retaining exceptional structural integrity. -
Enhanced Ride Performance
Reduced rotational weight at the rotor leads to faster acceleration, improved responsiveness, and a more agile ride feel—especially noticeable on climbs and quick technical transitions. -
Low‑Profile, Regular Head Design
The sleek low‑profile head minimises interference with the rotor interface while maintaining maximum clamping stability. -
Torx T25 Socket for Secure Installation
Precision‑cut T25 sockets ensure consistent torque application and long‑term reliability, reducing the risk of stripping and allowing confident, repeatable tightening. -
Laser‑Engraved for Quality Assurance
The bolts feature Carbon‑Ti’s signature laser engraving—both an aesthetic touch and a mark of craftsmanship that reinforces authenticity and long‑term traceability. -
Designed for 6‑Bolt Disc Rotors
Includes 6 bolts—enough for one wheel, fully compatible with ISO 6‑bolt rotor standards.
Why Riders Choose Carbon‑Ti
Carbon‑Ti is renowned for blending Italian engineering with cutting‑edge materials. Their titanium hardware is trusted by elite racers and precision‑focused cyclists who value reliability, longevity, and weight savings in every component. The X‑Rotor bolt kit is a testament to this philosophy—providing a durable, corrosion‑proof upgrade that enhances braking stability and overall bike performance.
Made in Italy
Expertly manufactured in Italy with meticulous quality control, ensuring world‑class craftsmanship and component longevity.