SM4-20(15)57-80/40-10-S182 Vickers Servo Valve
| Model Number | SM4-20(15)57-80/40-10-S182 |
|---|
Product Description
Product Overview
The SM4-20(15)57-80/40-10-S182 is a high-performance two-stage electro-hydraulic servo valve from Eaton Vickers’ SM4 series, a classic nozzle-flapper type servo valve platform in the industrial hydraulics sector. The valve employs a dry torque motor and two-stage hydraulic amplifier architecture, with a low-friction double-nozzle flapper pilot stage and a four-way sliding spool and sleeve power stage featuring mechanical null adjustment, achieving closed-loop spool position control via a feedback rod.
The valve precisely converts electrical signals into hydraulic flow output, providing closed-loop system control with high positional accuracy, repeatable velocity profiles, and predictable force or torque regulation. Combined with a hydraulic cylinder, position sensor, and appropriate circuitry, the SM4-20(15)57-80/40-10-S182 enables stepless cylinder position control with accuracy to 0.025 mm (0.001 inch) or better. Combined with a hydraulic servo motor, tachometer, and appropriate circuitry, it enables stepless proportional flow control with closed-loop error of less than 1/10 revolution per minute.
Model code breakdown: SM4 = series designation; 20(15) = maximum flow 20 L/min or 15 L/min; 57 = servo motor maximum current 57 mA; 80/40 = rated pressure 80/40 MPa; 10 = valve pressure differential 10 MPa; S182 = manufacturer-specific code/project suffix.
The valve mounts according to ISO 4401-05 standard (external control port not conforming to ISO 4401) with integrated block or subplate mounting capability. As a drop-in replacement, the valve is fully compatible with the OEM Eaton Vickers specification in mounting interface, electrical connection, and performance characteristics. Every unit undergoes 100% simulation-based testing prior to shipment, covering null stability, flow linearity, step response, and internal leakage.
Technical Specifications
All parameters below are based on Eaton Vickers official SM4-20 10 Design product specifications (Danfoss PowerSource Product No. 3025212) and verified supplier technical pages:
Complete Model: SM4-20(15)57-80/40-10-S182
Brand: Eaton Vickers / former Vickers
Product Series: SM4 series two-stage electro-hydraulic servo valve, 10 Design
Product Type: High-performance four-way servo valve, nozzle-flapper pilot stage + four-way sliding spool power stage
Design Number: 10 Design (maximum supply pressure 210 bar / 3000 psi)
Nominal Size: ISO 4401-05 (NG10 / Cetop 5)
Maximum Flow: 20 L/min or 15 L/min (rated); series maximum flow 76 L/min (20 USgpm)
Servo Motor Maximum Current: 57 mA
Rated Pressure: 80/40 MPa (model code); maximum supply pressure 210 bar (3000 psi)
Valve Pressure Differential: 10 MPa
Coil Resistance: 80 Ω
Coil Rated Current: 40 mA
Operating Temperature Range: 0 °C to +135 °C (media)
Hydraulic Fluid: Petroleum-based hydraulic oil
Seal Material: Buna-N (Nitrile)
Body Material: Aluminum alloy (second stage)
Spool/Sleeve Material: Hardened stainless steel
Mounting: Subplate mounting
Integrated Filter: 35 μm absolute filtration, protects pilot stage
Spool Lap Condition: Critically Lapped
Spool Drive Type: Two-stage, dual-coil, quad air gap symmetrical torque motor
Weight: Approx. 2.3 lb (1.04 kg)
Dimensions (L×W×H): 3.91 in × 3.42 in × 2.83 in
Fluid Cleanliness Requirement: 15/13/10 micron
Position Control Accuracy: 0.025 mm (0.001 inch) or better
Note: Specifications are based on Eaton Vickers official SM4-20 10 Design product specifications (Danfoss PowerSource Product No. 3025212) and verified supplier technical pages. This product has been discontinued but inventory and service information remain available. Always verify against the complete model code during replacement selection. For -50 Design version, maximum supply pressure is 350 bar (5000 psi).
Key Technical Advantages
1. Double-Nozzle Flapper Pilot Stage with Dry Torque Motor for High-Resolution Control
The SM4-20(15)57-80/40-10-S182 employs a symmetrical dual-coil, quad air gap, dry torque motor driving a nozzle-flapper pilot stage. The torque motor provides extremely fast response to input signals, generating highly accurate control curves. The pilot stage is a low-friction double-nozzle flapper valve featuring high spool driving force, robust construction, long service life, and high dynamic response. Spool position is fed back to the first stage through a center feedback rod, establishing a mechanical force feedback closed loop that achieves stable null control without relying on electronic sensors.
2. Integrated 35μm Filter Protects Pilot Stage from Contamination
The valve incorporates an integrated 35 μm absolute filtration element, effectively protecting the first-stage nozzle-flapper mechanism from fluid contamination and substantially reducing the likelihood of hardware failure. The jewel orifice design further extends valve service life. This built-in protection mechanism significantly enhances servo valve reliability in industrial environments, reducing unplanned downtime risk from fluid contamination.
3. Hardened Stainless Steel Spool with O-Ring Anti-Seizure Design
The power stage spool and sleeve are manufactured from hardened stainless steel, effectively reducing wear and corrosion for extended valve life. O-rings mounted on the sleeve prevent spool seizure, ensuring smooth operation under high-pressure conditions. The distinctive jewel feedback ball seat effectively reduces wear — wear that in other servo valves can lead to loss of null control.
4. High-Precision Closed-Loop Control with Multi-Mode Application Capability
The valve provides closed-loop system control with high positional accuracy, repeatable velocity profiles, and predictable force or torque regulation. Combined with a hydraulic cylinder, position sensor, and appropriate circuitry, it enables stepless cylinder position control with accuracy to 0.025 mm or better. Combined with a hydraulic servo motor, tachometer, and appropriate circuitry, it enables stepless proportional flow control with closed-loop error less than 1/10 revolution per minute. Combined with pressure/force sensors, it enables precise pressure/force control with best system stability reaching 1% of pressure and load range.
5. 100% Simulation-Based Testing and Drop-In Interchangeability
Every SM4-20(15)57-80/40-10-S182 undergoes 100% simulation-based testing prior to shipment. Test protocols cover null stability, flow linearity, step-response verification, and internal leakage detection. As a drop-in replacement, the valve is fully compatible with the OEM Eaton Vickers specification in mounting dimensions (ISO 4401-05 standard interface), electrical connection, and performance characteristics. Standard port circles, mounting patterns, and adapter plate flexibility make this valve a cost-effective choice for improving existing systems.
Application Areas
Turbine EH Control Systems: Key component of DEH control systems, precisely controlling high-pressure main steam valve and governor valve opening for 660MW and larger steam turbines
Automatic Gauge Control (AGC): Precision position control for rolling mill hydraulic gap systems
Roll Bending / Roll Balancing Systems: Precision hydraulic pressure regulation
Injection/Blow Molding Systems: Flow and pressure closed-loop control during injection and hold-pressure phases
Test and Simulation Equipment: Precision force/position control for electro-hydraulic servo loading systems
Die Casting Equipment: High-speed dynamic pressure regulation and real-time switching control
Hydraulic Braking Systems: Precision hydraulic pressure control
Industrial Automation Lines: Integration with PLC and motion controllers for precision hydraulic cylinder or motor motion control
Expert Maintenance Tips
Pre-Installation Checks:
Verify the manifold mounting surface conforms to ISO 4401-05 (NG10) standard; surface roughness Ra ≤ 0.8 μm
Flush all piping with clean hydraulic fluid prior to installation; ensure system cleanliness reaches 15/13/10 micron or better
Inspect Buna-N O-rings for damage and confirm compatibility with the hydraulic fluid in use
Tighten mounting bolts in diagonal sequence to specified torque
Using a flushing valve to reduce initial system contamination levels prior to SM4 installation is recommended
Operational Maintenance:
Use precision pressure filters matched to the servo valve; replace filter elements at regular intervals
Recommended fluid: petroleum-based anti-wear hydraulic oil; maintain operating temperature within 0 °C to +135 °C range
Periodically monitor null output flow offset; significant increase indicates spool/sleeve wear or feedback rod anomaly
Verify coil resistance remains stable at 80 Ω (at 21°C); confirm connector contact integrity
Utilize the SM4’s dual filter module interface for enhanced pilot stage contamination protection
Troubleshooting Guide:
Spool fails to actuate or responds abnormally: Check control current reaches the coil (rated 40 mA, maximum 57 mA), measure coil resistance against 80 Ω, confirm connector engagement reliability
Null-point drift: Inspect jewel feedback ball seat for wear, verify pilot stage filter (35μm) is not clogged, check feedback rod for deformation after ruling out fluid contamination
Insufficient flow: Confirm system supply pressure is within 210 bar allowable range; check spool metering edges for partial blockage by contaminant particles
Slow response: Check system cleanliness level; verify pilot stage nozzles are not partially blocked by contaminant particles
Abnormal noise: Check that system return pressure is within allowable limits; confirm no back-pressure blockage in the return line
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