Structural characteristics of Camlock coupling
Release time:
2021-04-09
Camlock coupling is a rigid coupling. The structural characteristics of this type of coupling are mostly simple in structure, easy to maintain, and can transmit large torque; but it lacks the ability to compensate for the relative displacement between the two connected shafts; The requirement for neutrality is very high.
Couplings are usually used to connect two shafts and transmit motion and torque between them; they have the ability to absorb vibration and mitigate shocks; they can be used as a safety device to prevent the connected parts from being subjected to excessive loads and play a role in overload protection. Function: When connecting shafts with couplings, the two shafts can be separated only after the machine stops and after disassembly.

Camlock coupling is a rigid coupling. The structural characteristics of this type of coupling are mostly simple in structure, easy to maintain, and can transmit large torque; but it lacks the ability to compensate for the relative displacement between the two connected shafts; The requirement for neutrality is very high. If the relative displacement of the two axes occurs, it will cause additional load and severe wear on the shaft, coupling and bearing, which will seriously affect the normal operation of the shaft and bearing; in addition, it cannot be relieved when the load is transmitted. Shock and absorb vibration.
Camlock coupling is composed of two flanged half couplings and a set of bolts. During operation, the two flanged half couplings are respectively connected to the two shafts with keys, and then the two half couplings are connected into one body with bolts to transmit movement and torque. It is often suitable for the connection of low speed, large torque, stable load, short and rigid shaft.
Related News



