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Why is it important for the polarity of the armature to reverse as the armature spins?

Why is it important for the polarity of the armature to reverse as the armature spins?

As the armature rotates, the commutator reverses the current in each coil as it moves between the field poles. This is necessary if the forces acting on the coil are to remain acting in the same direction and so continue the rotation.

What is the reason we reverse the armature leads on a compound motor to reverse the motor?

Fixing rotation problems for DC motors Their direction can be easily controlled by inverting the polarity of the applied armature voltage by reversing the armature leads. This works with shunt, series, and compound wound DC motors.

Why is it important to reverse only the armature leads when changing the rotation of a compound motor?

When a compound motor is to be reversed, only the armature leads are changed. If the motor is reversed by changing the shunt field leads, the motor will be changed from a cumulative compound motor to a differential compound motor. If this happens, the motor speed will drop sharply when load is added to the motor.

What will happen if both armature and field current are reversed?

However if both, the direction of armature current and field polarity are reversed, torque developed would be in clockwise direction. If the current through both is reversed, the motor will continue to rotate in the same direction as it was rotating previously.

What will happen if you reverse the power source polarities for a DC motor explain?

It is universal in the sense that it will run equally well using either an ac or a dc voltage source. Reversing the polarity of both the stator and the rotor cancel out. Thus the motor will always rotate the same direction irregardless of the voltage polarity.

What will happen if you reverse the power source polarities for a DC shunt motor?

Armature connection changed to give opposite direction of current in armature while maintaining field direction results in clockwise rotation. Reverse field polarity and armature polarity from middle diagram will result in the same clockwise direction of rotation.

Why did direction of rotation is changed only by changing the armature current direction in a DC compound motor?

The rotation of a compound-wound motor can be reversed by changing the direction of the current in the field or the armature circuit, ( 5). Since the series field coils must also be reversed if the shunt field is reversed, it’s easier to reverse the current in the armature only.

Why are DC motors reversed by switching the direction of current flow through the armature?

The direction of rotation of a DC motor depends on the direction of the magnetic field and the direction of current flow in the armature. If either the direction of the field or the direction of current flow through the armature is reversed, the rotation of the motor will reverse.

What happens if the direction of current at the terminals of a series motor is reversed?

The direction of electromagnetic torque developed by armature depends upon the direction of flux or magnetic field and the direction of the flow of current in armature conductors. When both (the direction of the field as well as that of armature current) are reversed the direction of rotation will not change.

What happens if shunt field connection is reversed in the generator?

What will happen if the the supply terminals are reversed in case of a DC shunt motor? The motor will run in reverse direction. The motor will run at its normal speed in the same direction as before. The motor will stop.

What happens when you reverse polarity in a motor?

If you reverse the wire polarities so that each wire is connected to the opposing power supply terminal, then the motor rotates counter clockwise. DC Motor rotation does have to do with the voltage polarity and the direction of the current flow.

Does the direction of rotation of DC shunt motor would get reversed if the armature current and field current Both are reversed?

When both (the direction of field as well as that of armature current) are reversed the direction of rotation will not change. So in case of DC shunt motor, if the supply terminals are interchanged, there is no change in direction of rotation.

Why does the armature rotate in the same direction?

This is because the direction of the magnetic field in the armature reverses, but the direction of the permanent magnet field remains the same. If it is a wound-field motor, it will continue to rotate in the same direction.

How can a DC series motor direction be reversed?

Reversing a DC Shunt Motor is never possible unless field terminals are available outside the motor. To reverse the direction of motion, direction of either of ϕ or i a is to be changed.

Is it possible to reverse the field of an electric motor?

On the other hand, you can also reverse the field leads but this is risky: doing so can affect the stability of your DC motor. Having an electric motor running in the wrong direction isn’t the end of the world.