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RYQ-3A High Precision Turbocharger Rotor Dynamic Balancing Machine
The RYQ-3A Turbocharger Balancing Machine is a professional-grade solution designed for the precision balancing of small rotating parts such as turbocharger rotors, micro-motor armatures, and fans. Utilizing advanced soft-bearing technology and a stable belt drive system, this horizontal balancing machine ensures exceptional measuring accuracy and efficiency. The system is controlled by a computer-based measuring interface that provides real-time data display. With its ergonomic working height and compact design, the RYQ-3A is the ideal equipment for turbocharger remanufacturing and high-speed rotor production lines.






Engineered for production workshops, repair shops, and remanufacturing lines, the balancing platform supports turbocharger rotors, micro-motor armatures, fan impellers, pump impellers, and various high-speed rotating parts. Hard-bearing and soft-bearing configurations cover light to heavy workpieces.
Hard-bearing balancing operates at or below the first resonance of the suspension, providing high stability and tolerance for heavy workpieces. Soft-bearing balancing runs above resonance with higher sensitivity, ideal for lightweight rotors and small high-speed components such as turbocharger cores.
Universal joint drive enables accurate balancing of long shafts and irregular workpieces by transmitting rotation through flexible couplings. Gimbal drive supports a wider range of rotor geometries including pulleys, flywheels, and multi-stage impellers.
Calibrated measuring instrumentation achieves residual unbalance levels of typically ≤1 g.mm/kg, with unbalance reduction ratio ≥95 percent. Real-time display of magnitude and phase supports single-plane and dual-plane correction.
Q1. What is the difference between hard-bearing and soft-bearing balancing?
Hard-bearing operates below the first suspension resonance and offers greater stability for heavier rotors. Soft-bearing operates above resonance and provides higher sensitivity for lightweight components such as turbocharger cores.
Q2. Which drive method suits long shafts and irregular rotors?
Universal joint drive and gimbal drive handle long shafts, pulleys, and irregular geometries. Belt drive is typically used for compact lightweight rotors.
Q3. What workpiece mass range is supported?
The platform covers a wide mass range from sub-kilogram rotors up to heavy industrial workpieces depending on the model selected.
Q4. Can the balancing speed be adjusted during testing?
Yes. Balancing speed is continuously variable across the supported RPM range to match the rotor design and weight distribution.
Q5. What is the typical unbalance reduction ratio?
Unbalance reduction ratio of 95 percent or higher is achievable under standard calibration conditions, with residual unbalance typically below 1 g.mm/kg.
High Measuring Accuracy: Achieves a minimum achievable residual unbalance of ≤0.5 g.mm/kg, ensuring laboratory-grade precision for high-speed components.
Wide Speed Range: Features an infinitely variable DC drive with a balancing speed range from 400 to 10,000 r/min to suit various rotor types.
Soft-Bearing Technology: Provides high sensitivity and stability, allowing for the detection of even the smallest vibrations in lightweight workpieces (0.01kg to 3kg).
Efficient Belt Drive: The horizontal belt drive system ensures smooth rotation and prevents electromagnetic interference often found in end-drive systems.
User-Friendly Software: Equipped with a sophisticated computer measuring system and software that makes handling simple even for complex balancing tasks.
Ergonomic Design: Features a comfortable working height and a compact layout that can be conveniently placed on a standard workbench.
Versatile Application: Perfect for balancing turbochargers, small motor rotors, impellers, and other high-speed rotating parts up to 350mm in diameter.
The balancing platform supports remote diagnostics sessions, allowing our engineers to connect via secure remote link for parameter calibration, vibration analysis review, and unbalance correction tuning. Operators receive live guidance on test setup, single-plane and dual-plane balancing procedures, and preventive maintenance scheduling without interrupting production.
Standard warranty covers 12 months from the date of commissioning, including replacement of defective electronic and mechanical components, drive system repair, and measuring sensor calibration. Extended warranty and on-site service packages are available for high-utilization production environments.
On-site installation includes foundation alignment, drive system calibration, vibration sensor calibration, and operator training. Training covers single-plane and dual-plane correction methods, unbalance reduction ratio evaluation, and preventive maintenance routines.
| Technical Parameter | Specifications (Model RYQ-3A) |
|---|---|
| Mass of Workpiece | 0.01 - 3 kg |
| Max. Diameter of Workpiece | Φ 350 mm |
| Distance Between Two Support Bearings | 30 - 450 mm |
| Range of Journal Diameter | φ 3 - 22 mm |
| Balancing Speed Range | 400 - 10,000 r/min (Adjustable) |
| Min. Achievable Residual Unbalance | ≤ 0.5 g.mm/kg |
| Unbalance Reduction Ratio | ≥ 90% |
| Drive Power | 0.09 KW (Infinitely variable DC drive) |



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