Moment of a Couple | Engineering Mechanics for Mechanical Engineering PDF Download

Couple

In mechanics, a couple is a system of forces with a resultant (a.k.a. net or sum) moment but no resultant force. A better term is force couple or pure moment. Its effect is to create rotation without translation, or more generally without any acceleration of the centre of mass. In rigid body mechanics, force couples are free vectors, meaning their effects on a body are independent of the point of application.

The resultant moment of a couple is called a torque. This is not to be confused with the term torque as it is used in physics, where it is merely a synonym of moment. Instead, torque is a special case of moment.

A couple is a pair of forces, equal in magnitude, oppositely directed, and displaced by perpendicular distance or moment.

The simplest kind of couple consists of two equal and opposite forces whose lines of action do not coincide. This is called a "simple couple". The forces have a turning effect or moment called a torque about an axis which is normal (perpendicular) to the plane of the forces. The SI unit for the torque of the couple is newton metre.

If the two forces are F and −F, then the magnitude of the torque is given by the following formula:

τ = Fd

where

τ is the moment of couple

F is the magnitude of one of the forces

d is the perpendicular distance between the forces, sometimes called the arm of the couple

The magnitude of the torque is always equal to F d, with the direction of the torque given by the unit vector , which is perpendicular to the plane containing the two forces. When d is taken as a vector between the points of action of the forces, then the couple is the cross product of d and F, i.e. 

τ =|d*F|.

The document Moment of a Couple | Engineering Mechanics for Mechanical Engineering is a part of the Mechanical Engineering Course Engineering Mechanics for Mechanical Engineering.
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FAQs on Moment of a Couple - Engineering Mechanics for Mechanical Engineering

1. What is the moment of a couple?
Ans. The moment of a couple refers to the rotational effect produced by two equal and opposite forces acting on a body but not along the same line. It is the product of one of the forces and the perpendicular distance between the forces.
2. How is the moment of a couple calculated?
Ans. The moment of a couple is calculated by multiplying one of the forces in the couple by the perpendicular distance between the forces. Mathematically, it can be expressed as moment = force × distance.
3. Why is the moment of a couple important in mechanics?
Ans. The moment of a couple is important in mechanics because it represents a pure rotational effect without any translational motion. It helps in analyzing and understanding the rotational equilibrium of objects and systems.
4. How does the moment of a couple differ from the moment of a force?
Ans. The moment of a couple and the moment of a force differ in their nature and effects. The moment of a couple only produces rotational motion, while the moment of a force can produce both rotational and translational motion. Additionally, the moment of a couple is independent of the point of reference, while the moment of a force depends on the chosen point of reference.
5. Can the moment of a couple be zero?
Ans. No, the moment of a couple cannot be zero. Since a couple consists of two equal and opposite forces, the moment of one force will always be equal in magnitude but opposite in direction to the moment of the other force. This ensures that the net moment of a couple is always nonzero.
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