The structural design and manufacturing process of the robotic arm for surgical lamps are important links in the manufacturing of surgical lamps. The robotic arm is the supporting structure of the surgical lamp, which can support the free movement of the lamp head in space and maintain the stability of the lamp head. The rationality of the structural design of the robotic arm and the accuracy of the manufacturing process directly affect the working performance and lifespan of the surgical lamp. In the design of the robotic arm structure, factors such as the material, structural form, number of joints, and joint type of the robotic arm need to be considered. The material of the robotic arm needs to have sufficient strength and stability, usually using high-strength aluminum alloy, stainless steel, and other materials.
The structural form of the robotic arm needs to meet the working requirements of the surgical lamp, usually adopting a multi joint structure to achieve multi-directional free movement. The selection of the number and type of joints needs to be determined based on the working range and requirements of the surgical lamp. In terms of manufacturing technology, it is necessary to consider factors such as the machining accuracy, assembly accuracy, and surface treatment of the robotic arm. The machining accuracy and assembly accuracy of the robotic arm need to ensure its stability and flexibility. Surface treatment usually uses processes such as spraying and anodizing to improve the surface hardness and corrosion resistance of the robotic arm.
In summary, the research on the structural design and manufacturing process of the surgical lamp robotic arm is of great significance for improving the working performance and lifespan of the surgical lamp.
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