Cam and Follower: Types, Working Principle, Applications & Advantages

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cam and followers

Have you observed the movement of the needle in the sewing machine? The. periodic to and fro or up and down motion of the needle is called reciprocating. It is a unique mechanism that can be seen in controlling the opening and closing of valves in IC(Internal Combustion) engines.

What Is a Cam and Follower Mechanism?

  1. Cam - Driving member
  2. Follower - Driven member
  3. Frame - Supporting member

cam and follower mechanism

As the cam rotates, its varying cross-section makes the follower in contact with it to reciprocate. The frame or guide guides the follower while reciprocating and acts as a support for the cam and follower.

Types of Cam and Followers

Cams and followers can be classified into many types. Let us have a look at it.

Types of Cam Based on the Shape

The cam can be classified into:

Types of Followers

Like cam, the followers can be classified into many types based on their shape, positions, and type of motion.

Based on the Shape

Based on the Position

Based on the Motion

Pros and Cons of Cam and Follower Mechanism

The following are the advantages of the cam and follower mechanism.

The following are the disadvantages of the cam and follower mechanism.

Application of Cam and Follower

In IC Engines: The reciprocating motion of an IC engine's inlet and exhaust valves is achieved by the cam and follower mechanism.

In Children Toys: This cam and follower mechanism is used in many toys where simple periodic motion is required.

In Automatic Lathe Machines: The motion of tools in an automatic lathe machine is controlled by this mechanism. Also, the feed mechanism in lathe machines is done by the cam and follower mechanism.

Many types of research are still underway to promote the performance of the cam and follower mechanism. A student of Skill-Lync designed a simple cam and follower model in Hyper Works using 3D contact in 2019. He had achieved a curve-to-curve joint and successfully reduced the damping by implementing a phenomenon called lift-off.


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