Two inch, I still cannot figure out, for the life of me, if your drill example the electric motor is an internal or external force!
Technically? Its internal to the drill. But I can't come up with a reason why that would matter. Its just an input force.
We are looking at the drill gearbox and the inputs and outputs... Not the whole drill.
The motor is the input. The wrench. Braced against the case inside the drill, this is where the confusion is... It doesn't matter WHERE it's braced, it matters THAT its braced and inputing force. Imagine your holding the motor with your right hand, it's only touching the gearset and your hand. That's it.
The drill case handle, the static bracing arm, bracing the gearset from turning, is held in your other hand, or by other immovable object.
The output is the nut.
Its really that simple.
A drill is a torque multiplier, period. It's just Braced internally instead of externally. The concepts are the same, because it is the same thing. Its just harder to visualize the different forces apparently because its braced internally and the torque is coming from an electric motor.
If you stood there next to a nut, put the torque multiplier on the nut, put the bracing arm against your leg, pit the wrench in your hand, on the nut, and turned the nut, you are applying the input force, and resisting the other input(bracing arm).
Hopefully you got grippy shoes on.
Mr. Citation. Its all perspective. A torque multiplier or planetary gear set requires the same three input/outputs, you can stick the three different points wherever you want them. Two move, one doesn't.
The drill example shows that you can ignore the wrench input in the example, and focus only on the bracing force, and the output force.... Which are equal.
Or better yet...... Rip the motor out of the drill... Stick a ratchet/extension through the drill case and turn the gear set with the ratchet....
The force applied the the drill handle(brace) will equal the output to the screw.
Or... Even better yet... Attach a powerful electric motor to the input square drive of the OPs torque multiplier. Attach the motor too a bar that is braced to an immovable utility pole. Put the torque multipliers bracing arm on the opposite side of the same utility pole. This would be a drill.
Remove the above motor, put the torque wrench back on the multiplier, put right hand on the utility pole, put the torque wrench in your left hand, pull with left hand(TW), push with right hand(utility pole)
With the torque wrench and torque muliplier, through your feet, and the bracing arm, are on the same immovable object, the earth, opposing each other.
Those are the best attempted visualizations I can come up with. Maybe I'm too sleep deprived.
Carry on.... Lol
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