Carbon Fiber Surgical Medical Components: Robot Arms, Bed Plates and Orthopedic Instruments

2022-08-13 17:29:17 3G Carbon A 54

Carbon fiber surgical robotic arm

Compared with the manual operation of doctors, surgical robots show more stable accuracy and precision in routine operations. Common surgical robots are mostly composed of monitoring cameras, mechanical arm structures, lifting components, platforms, and surgical instruments. composition. Among them, the role of the robotic arm is particularly important. The structure and motion accuracy of the robotic arm directly determine the working range of the end effector and the success rate of the operation.

As the main component to realize the speed and accuracy of the workpiece movement, the robotic arm generally includes the shoulder joint, the elbow joint and the wrist joint. No matter which part, the dynamic and static loads to be endured are relatively large, that is to say, the bearing capacity is required. and stiffness to meet higher requirements. Moreover, to achieve the ultimate in flexible operation, on the one hand, it relies on precise positioning, and on the other hand, it depends on the lightness and speed of the robotic arm itself. The domestic carbon fiber parts business intelligence on the new material technology uses lightweight carbon fiber composite materials to make the robotic arm, which can effectively reduce the extra load caused by the arm length, and the high-strength and high-performance material properties also increase the operation of the entire robotic arm. safety and reliability.

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Carbon fiber operating table top

Carbon fiber composite medical panels are widely used in radiotherapy, such as carbon fiber breast examination trays, carbon fiber medical head rests, and carbon fiber web fixing plates for rectal cancer prepared by Zhishang New Materials for medical manufacturers. With the continuous improvement of medical needs, the application of carbon fiber composite materials in operating beds is also increasing.

The traditional stainless steel operating bed needs to continuously adjust the position of the bed and the traction frame to achieve the X-ray transmission function, which will inevitably increase the workload of medical staff and reduce the efficiency of the operation. In accordance with the requirements of medical equipment manufacturers, 3G Carbon provides customized services for full carbon fiber bed tops. Due to the good X-ray transmission performance of carbon fiber material, the fluoroscopy target of the entire operating table can be achieved without constantly adjusting the position of the bed and the traction frame, and a high-definition fluoroscopy imaging effect can be achieved, which can greatly reduce the medical staff The operation burden is reduced, the negative impact of X-rays on patients is reduced, and the application effect is ideal.

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Carbon Fiber Bone Surgical Medical Instruments

In medical devices, this part of the material in contact with the human body must be biocompatible and meet the medical and health safety standards to prevent patients from increasing the risk of infection. Carbon fiber itself is non-toxic, but there are great differences in the properties of the matrix resin as a composite material. 3G  Carbon uses continuous carbon fiber as reinforcement and food-grade PEEK resin as matrix. Through the dual combination of high-strength reinforcement and high-performance matrix, it forms an ideal material for orthopedic medical instruments.

Orthopedic surgical sights, surgical brackets, etc. made of this material have high strength, good firmness, and will not shift; the material is light and convenient for doctors to operate and use; high temperature and corrosion resistance, can adapt to high-frequency high-temperature disinfection and other Disinfection method; good wear resistance, long service life; no toxic side effects, not easy to cause allergic reactions.

In the past, the application of carbon fiber parts in China was limited to the thermosetting resin base, and the application technology of continuous carbon fiber + medium and high-end thermoplastic resin has been monopolized by the same foreign industry.