The air cushion vibration isolation platform can effectively isolate external vibration interference and provide a stable working environment. The isolation effect of low-frequency vibration is obvious, generally reaching a vibration amplitude of several micrometers, meeting the requirements of high-precision experiments and instrument equipment; Despite using an air cushion vibration isolation structure, it still has a high load-bearing capacity and can support the installation and use of various heavy-duty precision instruments and equipment; The structure is compact, stable and reliable, and there will be no shaking, tilting or other problems during use, ensuring the normal operation of the instrument and equipment.
Structural characteristics of air cushion vibration isolation platform:
1. High quality panel: Made of high magnetic conductivity stainless steel panel or other high-strength, low deformation materials, with high precision and good stability. The surface of the panel is precision ground to remove rough machining marks, making it smooth and even, providing a stable working surface for precision instruments.
2. Honeycomb structure polymer material isolation: Honeycomb structure polymer material is usually used as the isolation layer inside, which has good buffering performance and low natural frequency, and can effectively isolate low-frequency vibrations from the outside world.
3. Multi level composite material joints: Multi level composite materials are used to connect the joints between the platform and the ground, further reducing the transmission of vibration and improving the isolation effect.
4. Silent operation: The equipped silent air pump has low working noise and will not interfere with the surrounding environment, creating a quiet working atmosphere for users.
Precautions for using air cushion vibration isolation platform:
-Sensitive to airflow in the environment, therefore it should be avoided to use in experimental environments with high airflow.
-Ensure stable environmental conditions such as temperature and humidity in the laboratory to avoid affecting vibration isolation performance.
-We need a stable supply of compressed air, so we should ensure that the air source is sufficient and the pressure is stable.
-Regularly inspect the pneumatic system to ensure that no air leaks occur.
-Be careful not to exceed the rated load capacity of the platform to avoid damaging it or affecting its vibration isolation effect.
-When placing devices on the platform, the load should be evenly distributed to avoid local overload.
-Regularly clean and maintain it to maintain its good working condition.
-Check the wear of the air cushion and replace severely worn components in a timely manner.
-Regularly inspect and calibrate sensors, data acquisition systems, etc. to ensure the accuracy and reliability of test results.