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Exoskeleton Robot Machined Parts

Exoskeleton Robot Machined Parts

An exoskeleton robot is a wearable medical robotic mechanical device. These exoskeleton robots are usually composed of multiple precision components, most of which need to be manufactured through high-precision machining to ensure their stability, durability and comfort. These accessories are manufactured through precision machining to provide key structural support, power transmission and the ability to work with other components for the exoskeleton robot, thereby ensuring that the exoskeleton robot can efficiently and stably assist users to complete various tasks, such as rehabilitation training, heavy object handling or enhancing human movement ability.

  • Order(MOQ) :

    100PCS
  • Payment :

    TT
  • Product Origin :

    CHINA
  • Shipping Port :

    SHANGHAI

Here in Kezhen, through 20 years of accumulation of equipment and technology, we can quickly respond to your needs for Exoskeleton Robot Machined Parts, such as Exoskeleton robot bracket and Exoskeleton robot shell, etc.

 

Exoskeleton robot bracket: The shoulder structure is a key module in the upper limb rehabilitation exoskeleton. It is light in weight and compact in structure, ensuring the maximum range of motion of the human shoulder joint, thereby driving the rotation of the shoulder joint and making the outer shell of the upper and lower arm areas movable. As an important load-bearing component of the exoskeleton, the stator bracket directly affects the working efficiency and comfort of the entire shoulder structure. The Exoskeleton robot bracket is made of AL6061-T6 aluminum alloy, which has the characteristics of light weight and excellent mechanical properties. Since the stator needs to be integrated with other exoskeleton components, the processing accuracy requirements are particularly high. We use advanced five-axis linkage processing technology in the processing process, which can produce complex three-dimensional curved surface shapes to meet the needs of joints in different movement directions.

 

Exoskeleton robot shell: When processing the shell components, specific dimensional tolerances must be strictly controlled to ensure correct docking and assembly with other exoskeleton components. In particular, those parts that affect the connection points and interfaces with other modules must be precisely controlled to ensure precise matching. Precise mounting holes are reserved inside the joint connection frame for installing motors, sensors and other components, and the positioning accuracy of these holes reaches ±0.02mm, ensuring precise matching between various components. In addition, it is critical to maintain the structural integrity of the shell. For thin-walled areas or areas with complex features, careful processing is required to prevent deformation. Since exoskeleton parts need to be used repeatedly, most of these exoskeleton parts require anodized surface treatment to enhance appearance and corrosion resistance to ensure long-term durability.

 

We control the entire vertical industry chain and process flow of Exoskeleton Robot Machining Parts to ensure consistent product quality. From strict chemical composition analysis and physical property testing of each batch of raw materials to ensure that the composition and performance of the materials meet the design requirements, to the use of three-coordinate measuring instruments, roughness meters and other precision testing equipment to monitor the dimensional accuracy and surface roughness of each accessory in real time during the machining process. For critical dimensions, each processed accessory must be fully inspected, and for non-critical dimensions, random inspections are conducted, with a random inspection ratio of 30%. The finished parts of the Exoskeleton Robot Machined Parts must also undergo comprehensive performance tests, including strength tests, fatigue tests, etc. The strength test uses a tensile tester and a pressure tester to test according to the load multiples required by the design to ensure the reliability of the parts in actual use. The fatigue test simulates the stress conditions of the exoskeleton robot during long-term use. After the specified number of cycles, the parts are checked for damage or deformation to ensure that all Exoskeleton Robot Machined Parts we ship are qualified.

 

Choosing our Exoskeleton Robot Machined Parts means choosing a reliable precision engineering partner. For more information or to discuss how our Exoskeleton Robot Machined Parts can benefit your specific application, please contact us today and send us a drawing.

 

We look forward to helping you realize your great engineering project!

 

 

 

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