High efficiency: Compared with traditional mechanical shock absorbers, inductive shock absorbers have higher shock absorption efficiency.
Fast response: The response speed of inductive components is fast and can quickly adapt to vibration changes.
Strong adaptability: It can be adjusted and optimized for different working environments and load conditions.
Frictionless desgaste: Because it mainly relies on the principle of inductance, it is not easy to appear friction loss, thus reducing maintenance costs.
The operation of inductive shock absorbers relies on Faraday's law of electromagnetic induction. Central to this system are electromagnetic coils that move within a magnetic field when a vehicle or device experiences vibrations, cutting through magnetic inductance lines and generating an induced current. By adjusting the current strength in the coil, the electromagnetic force can be modified, leading to varying damping effects that help mitigate vibrations.