Balancing machine is divided into two parts: the hardware handles the vibration signals and enables the system to be updated in real time; the software completes the calculation, control and realizes other functions. When the workpiece is loaded on the support frame, the belt makes the workpiece to be rotated in a certain way, and the centrifugal force generated by the unbalanced mass will make the support frame vibrate. Left and right vibration sensors convert the vibration signals into electrical signals for input to the electrical measurement system, and photoelectric sensors provide a frequency/phase reference signal for the system.
Key AdvantagesMaximum workpiece mass | kg | 10-60000 | |
Maximum workpiece diameter | mm | Ø4000 | |
Support bearing diameter | mm | Ø90-Ø250 | Ø250-Ø400 |
Base length | mm | 9000 | |
Balancing speed | r/min | Variable frequency stepless speed control | |
Motor power | kW | 3-55 | |
Electrical test system/control cabinet: industrial computer EDA-708 test system, 17-inch LCD display Power: AC 380V, LCD 17-inch display | |||
Printer: Hewlett-Packard printer, standard A4 paper size dynamic balancing test report | |||
Technical Performance | |||
Minimum achievable residual unbalance amount (emar) | g.mmKg | ≤1 | |
Unbalance reduction rate | URR | 90% | |
Gearbox input torque | NW | 650 | |
Universal joint drive shaft torque | n.m | 2250 |
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