Robotics & AI Injection Molding

Solving Robotics Bottlenecks

Modern robotics requires materials that mimic the strength of metal but with the agility of advanced polymers. The critical challenges include high torque-to-weight ratios, zero-backlash motion, and seamless sensor integration.
At Jucheng, we don’t just mold; we engineer the structural integrity of the robot. Our ISO 13485 & IATF 16949 certified facility is equipped to handle the extreme requirements of autonomous systems.
Robotics-First Manufacturing
Metal Replacement
Sensor Encapsulation
Zero-Backlash Gears

Specialized Medical Molding
25+ 5-Axis CNC Machines: We machine hardened steel molds in-house to achieve parting lines so precise they require zero manual deburring.
Zeiss CMM Metrology: We verify the concentricity of robotic bores and gear tooth profiles to micron levels, ensuring smooth, efficient movement.
Rapid Tooling (10 Days): Our fast-turn mold making allows robotics startups to iterate designs and perform field tests in production-grade resins within weeks.
Critical Robotic Applications

Humanoid Actuator Housings
High-strength, thin-walled motor housings molded from glass-filled Nylon. Engineered to withstand high thermal loads and intense vibration while providing rigid support for high-torque actuators.
Autonomous UAV Chassis
Monolithic, lightweight drone airframes featuring integrated cable routing and insert-molded battery mounts. Molded from impact-resistant PC/ABS for maximum durability during high-speed flight.

Medical Grade Material Matrix
| Engineering Goal | Conventional Approach | Jucheng Robotics Solution | Advantage |
|---|---|---|---|
| Weight Reduction | Aluminum Casting | Carbon-Filled PEEK | -45% Mass Reduction |
| Positional Accuracy | Loose Tolerances | Micron-Level Tooling | Zero-Backlash Motion |
| Surface Friction | External Lubrication | PTFE-Filled POM | Maintenance-Free |
| Lead Time | 8-12 Weeks | In-House 5-Axis CNC | T1 in 10-15 Days |
Robotics Manufacturing FAQ
Can you mold parts with internal cable management channels?
Yes. By utilizing advanced 5-axis CNC mold making and complex sliding cores, we can create integrated internal pathways for wiring and sensors within a single molded robotic frame.
How do you ensure the durability of robotic gear teeth?
We use high-wear tool steels (S136 or H13) polished to SPI A-1 standards to ensure the smoothest possible surface finish on gear teeth, reducing friction and extending the life of the component.
