Disk spring 8 inch
- Material
- 50CrV4、65Mn、08AI
- Specification(mm)
- ∮192-395mm;Thickness:1.0-3.5mm;
- Models
- Corrugated plate series, driven plate series
- Executive Standard
- vibration damping plate series
- Applications
- damping plate series
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1.Core Material
- 50CrV4: High-strength chrome-vanadium alloy steel, with excellent high temperature resistance and fatigue resistance, suitable for high-load and high-frequency working conditions.
- 65Mn: Manganese spring steel, with high elastic modulus, good rebound performance, outstanding cost performance, suitable for conventional clutch needs.
- 08Al: Low-carbon aluminum-killed steel, excellent cold stamping forming performance, high surface finish, suitable for precision stamping process.
2.Specifications
- Diameter range: ∮192mm~∮395mm (supports non-standard customization)
- Thickness range: 1.0mm~3.5mm
- Wave design: multi-wave structure, optimize stress distribution, and improve elastic recovery efficiency.
3.Product model
- Wave plate series: used for elastic connection between clutch master and slave discs to reduce impact vibration.
- Driven disc series: core transmission components to ensure smooth torque transmission.
- Vibration damping disc series: reduce noise and vibration during clutch engagement and improve driving comfort.
- Damping plate series: Enhance the damping characteristics of the system and extend the service life of the clutch.
4.Implementation standards
- QC/T25-2004: Technical specifications for clutch springs in the automotive industry.
- QC/T27-2004: Performance requirements for automotive clutch driven disc assemblies.
5.Core advantages
- High reliability: The material is strengthened by heat treatment, and the fatigue life exceeds 100,000 cycles.
- Precision manufacturing: Using CNC stamping and laser cutting technology, the dimensional accuracy reaches ±0.1mm.
- Diversified adaptation: The full series covers the clutch needs of passenger cars, commercial vehicles and special vehicles.
- Environmental protection and energy saving: Low friction design reduces energy loss and conforms to the trend of green manufacturing.
6.Application scenarios
- Automobile clutch driven disc assembly
- Engineering machinery transmission system
- Industrial equipment buffer device
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