1. Lightweight
The extraordinary lightweight of Xinbo Composites Carbon Fiber robotic arm has significantly lower inertia allowing the robotic arm to be moved and stopped more quickly with less power.

2. High Stiffness
We use Toray Carbon fiber Raw Material to engineer robotic arm, which guarantee high strength, zero coefficient of thermal expansion, and high precision under high speed working.
3. High Precision
Xinbo Composites carbon fiber robotic arm work with high strength and high stiffness carbon fiber prepreg. Once this beam has been moved into position, these characteristics will
quickly eliminate any vibrations caused by the motion. This allows for rapid positioning of the robotic arm which greatly increases manufacturing speed and efficiency.
In addition, this reduction in inertia or dynamic loading increases robot life and reduces maintenance.
4. Same Maximum Deflection as Steel
Xinbo Composites carbon fiber robotic arm has about the same static and dynamic deflection as the steel. However, due to the inherent vibration dampening characteristics of
Xinbo Composites carbon fiber Robotic arm, it results in more rapid positioning.
5. 60% Less Deflection than Aluminum
60% less deflection results in much more rapid positioning.
6. 31% Reduction in Required Power vs. Steel
31% reduction in torque on the robot mechanism means less power required and less wear and maintenance on the robot itself.
Why Xinbo Composite Engineered Robotic Arms?
Our joint design is a proprietary combination of mechanical analysis, material selection and manufacturing, CNC machining process methods.
Our products have had zero field service failures over a wide variety of shaft types and over multiple years of production.
Let us know your potential robotic arm requirements, and we will provide professional quotation.




