Lhoash, I did not want to get a discussion going on breakdown torque since it was not really relevant to your questions, but since it has been brought up and is being discussed as if it is a limit for your case, it probably should be examined more....
I did a quick google search for a chart showing both breakdown and rated torque above base speed on a vfd but did not find one; so I made one up. A typical breakdown torque rating can be around 250% of rated.
First a description of rated, available, and breakdown (Max) torques to be clear....
- Rated is what the motor can put out all day long and as you know can be dependent on speed (constant below 'base' speed, drop linearly above) - this is a thermal limit.
- breakdown is the absolute max torque you can get out of the motor at its rated voltage - again, changes with speed, but in this case, it drops as the SQUARE of the speed increase above 'base.' - this is a physical design limit
- available is the lower of continuous or breakdown.
So attached is my chart (first one) showing these on a typical 10hp motor, as well as my spreadsheet (second one) that generated it.
You can see that breakdown torque has no effect on the motors rated output torque, since it is well above the rated torque to over 4500rpm: this is the reason I did not bring up breakdown torque or torque dropping at the square of anything rating.
Lionelhutz' discussion about why your motor is less efficient at these higher speeds (due to more slip) is a good one; I simply showed previously that the less efficiency was due to 'stuff' going on at these higher speeds - including more slip, more eddy current losses, more dynamic friction losses, windage, and POSSIBLY breakdown torque effects.
Feel free to modify the spreadsheet attached and put in YOUR new motor data as you know it! Unlike this typical motor, you will find YOUR motor's BD torque is WAY above its rated torque well out past its 5500rpm rating due to their new 'base' speed of 3600rpm! LOTS & LOTS of tricks can be played with motors.....
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