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China’s leading carbon fiber medical board CT board, UAV carbon fiber composite structure, carbon fiber arm manufacturer provides carbon fiber composite Teeth forks for handling robots in the LCD and wafer fields Hay:D02JSBS

Carbon fiber medical CT bed board

Carbon fiber composite materials have the characteristics of light weight, high strength, high modulus, fatigue resistance, easy penetration of X-rays and low absorption rate, and are widely used in the field of modern medical equipment. Such as X-ray diagnostic equipment, CT machine, radiation therapy machine, etc.

Medical CT bed boards mostly use insulated electric boards, but their ray transmittance is low, mechanical properties are poor, and imaging clarity is poor. The absorption rate and scattering rate of carbon fiber composite materials are much smaller than that of carbon fiber composite materials. During diagnosis, the X-ray dose can be reduced correspondingly, the power of the X-ray machine can be reduced, the service life of the instrument can be prolonged, and the electric energy can be saved. More importantly, because of the excellent X-ray transmission performance of carbon fiber composite material, it allows rays to irradiate on the bed at any angle without refraction, and only a small dose of rays can be used to obtain clear contrast, thereby reducing the risk to patients. And the harm of medical staff.

Carbon fiber medical CT bed board

Carbon fiber medical CT bed board.jpg

The carbon fiber medical CT bed board is laminated with carbon fiber prepreg. The resin and base material can be fully impregnated, and the bed board structure is uniform, which can prevent artifacts. Carbon fiber has good X-ray permeability, which can help X-rays to penetrate the human body accurately and without error. After multiple conversions, a high-definition pattern appears on the screen. The X-ray fluoroscopy of the carbon fiber composite board is only aluminum equivalent less than 1.0mmAL, and the board surface is flat and smooth, light weight and compressive. It replaces the aluminum alloy board with obvious advantages and becomes a new choice of a new generation of digital X-ray imaging technology.

Carbon fiber board can be used for operating tables or panels and backing boards for radiotherapy. It is based on various properties of carbon fiber materials, such as impact resistance, scratch resistance, easy cleaning, moisture and fire resistance, non-permeable surface anti-mold, anti-static and anti-static Chemical corrosion, anti-oxidation, etc., to a large extent meet the strength and rigidity requirements of medical devices, and become an ideal medical board at present.

The material mechanical properties of carbon fiber composite materials are improved compared with traditional materials, so that the deflection of the bed board can meet the requirements of use. Clinical application shows that compared with other materials, the X-ray transmittance of carbon fiber composite bed is significantly improved, the mechanical properties meet the requirements of use, and the surface is smooth and beautiful. It is an ideal replacement product.

Teeth forks are necessary accessories for handling robots. They are mainly used in LCD and wafer assembly process equipment in the semiconductor industry. They can replace the heavy metal robotic arms in the past, greatly reduce vibration amplitude and improve stability and production efficiency.

Carbon fiber robotic arm (fork)

Carbon fiber robotic arm (fork).jpg

By using carbon fiber composite materials to make the fork plate, the weight of the fork mechanism can be effectively reduced, and a better balance between load and weight can be achieved. Through the steering adjustment of the robot, the steering adjustment of raw materials such as glass and metal plates can be quickly and efficiently performed, which is convenient for loading and unloading and cooperating with other equipment, and has good practicability.

At present, JSBS has customized a batch of 1.5m carbon fiber composite tooth forks for robotics technology companies to replace the original metal robotic arms to achieve the purpose of reducing weight and improving production efficiency. The product adopts high-strength, high-modulus carbon fiber material, hot-press forming, and has more advantages in mechanical properties. It has the following advantages:

1. High strength, not easy to deform.

2. High temperature resistance, corrosion resistance, durable.

3. Light weight, can save energy and electricity.

4. Reduce vibration amplitude, improve stability and production efficiency.

5. The unique development process technology can greatly reduce production costs and meet high-standard quality standards.

6. Use CAE to analyze the deformation of the robot arm and provide theoretical support for actual product production.

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