Helical (spiral) bevel gears are essential for efficient power transmission and precise motion control in robotics. With angled teeth for smoother engagement, they reduce noise and vibration—outperforming traditional straight bevel gears.
✅ Higher Load Capacity – Angled teeth distribute force evenly, boosting strength and minimizing wear.
✅ Improved Efficiency & Durability – Smooth meshing reduces backlash for long-lasting performance.
✅ Precision & Control – Gradual engagement enhances accuracy for fine movements.
Available in both D-Shaft and Hex-shaft options, Studica Robotics helical bevel gears are ideal for competitive robotics, educational projects, and teaching mechanical concepts like gear ratios and power transfer. Learn more about the advantages of helical bevel gears.
The Studica Robotics 13 and 26 Tooth Hex Shaft Helical Bevel Gear Set is a precision-engineered component designed for robotics applications, particularly within the FIRST Tech Challenge (FTC) community. This gear set made of zinc-plated 20CrMnTi hardened steel enables efficient power transmission and precise motion control in robotic systems.
Enhance your robotics projects with the Studica Robotics 13 and 26 Tooth D-Shaft Helical Bevel Gear Set. Designed for precision and durability, this gear set made of zinc-plated 20CrMnTi hardened steel is perfect for robotics applications, offering smooth operation and reliable performance. Ideal for FTC custom robot builds and gear systems.
The Studica Robotics 36-Tooth D-Shaft Helical Bevel Gear 1:1 Set is designed for smooth and efficient power transmission. This precision-engineered gear set made of zinc-plated 20CrMnTi hardened steel is perfect for FTC and STEM applications.
The Studica Robotics 36-Tooth Hex Shaft Helical Bevel Gear 1:1 Set is designed to enhance motion control in robotics applications. This gear set, made of zinc-plated 20CrMnTi hardened steel features helical bevel gears with 36 teeth, optimized for use with 6mm hex shafts, providing a 1:1 gear ratio. Ideal for transmitting motion between perpendicular shafts, it ensures smooth and efficient power transfer in your robotic designs.