The automotive differential is composed of a differential case, a planetary gear shaft, two planetary gears, two half-shaft gears and a compound thrust gasket. The differential is a mechanism that can make the left and right or front driving wheels rotate at different speeds to ensure the normal running of the car.
So under what circumstances does the car differential need to do dynamic balancing:
1.More obvious impact can be felt when start or acceleration and deceleration, and abnormal sound can be heard ;
2.When turning, the vehicle is difficult to turn over, the resistance is very large, and the tire appears more serious wear;
3.If the car transmission differential is damaged, the vehicle wheel can only turn through the form of sliding when turning.
To this end, Shanghai Jianping has specially developed a full series of automatic balancing machines for automotive differential cases. It is the single-plane automatic balancing machine specially designed for disc-shaped products, which can conduct automatic unbalance measurement, automatic milling or drilling correction
Product features
Unbalance correction by automatic weight removal;
Axial or radial milling correction mode, there are also multiple ways to choose;
Can perform axial weight removal on two planes simultaneously;
With fault diagnosis and status display function;
The workpiece is driven by the self-pressing belt mechanism for unbalance measurement;
JP900 automatic balancing machine special measurement system;
Manual loading and unloading, optional robot to handle the workpiece between the stations of the equipment;
The number of measuring stations and correction stations can be flexibly configured and combined;
QR code scanning is optional;
Very powerful and flexible fully automatic balancing solutions for differential case;
Single-Station Auto-Drilling Balancing Machine
| Parameters of Balancing Unit | A1LZ1-5 | A1LZ1-35 | A1LZ1-150 |
| Mass of Workpiece(kg) | 5(clamp included) | 35(clamp included) | 150(clamp included) |
| Max Height of Workpiece (mm) | 200 | 200 | 200 |
| Max Diameter of Workpiece (mm) | 40-400 | 100-400 | 200-600 |
| Balancing Speed(r/min) | 800 | 800 | 800 |
| Motor Power(kw) | 0.75 | 1.5 | 7.5 |
| Min Achievable Residual Unbalance Amount (g.mm/kg) | 3 | 3 | 3 |
| Drilling Speed(r/min) | 1500 frequency conversion | 1500 frequency conversion | 1500 frequency conversion |
| Cutting Spindle Motor Power(kw) | 0.75 | 0.75 | 1.5 |
| Max Allowed Correct Times | 2 | 2 | 2 |
| Machine Weight(ton) | 1.5 | 1.5 | 2 |
| Dimensions(mm) | 950*1700*2000 | 950*1700*2000 | 950*1700*2000 |
| Pressure(Mpa) | 0.4-0.6 | 0.4-0.6 | 0.4-0.6 |
| Processing Period(s) | 8-12 | 8-12 | 15-20 |
| Total Power(kw) | 7.5 | 8 | 15 |
| Rotor thickness (mm) | 150 | 150 | 200 |
| Operating Voltage(v) | AC:380External | AC:380External | AC:380External |
| Drilling Method | Standard drill | Standard drill | Standard drill |
| Balancing Machine Type | Hard bearig bracket | Hard bearig bracket | Hard bearig bracket |
| Average Gas Consumption | 6 L/min | 6 L/min | 6 L/min |
| Unbalance Reduction Rate | ≥95% | ≥95% | ≥95% |
| Protection | Phase sequence protection. Overload protection. Pressure detection | ||
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