CompactDiscSpring
CompactDiscSpring for your Machine Tool Spindle
Say goodbye to disc springs! High spring force in a compact space: CompactDiscSpring forms the core of every tool spindle, ensuring reliable tool clamping in any situation with high spring force. Replacing conventional disc springs with CompactDiscSpring has significantly extended the lifespan of this essential component. The spring forces reach up to 30 kN at speeds of up to 30,000 rpm.
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Why Choose CompactDiscSpring over Disc Springs?
Traditional systems relied on disc springs and spring stacks, which presented several drawbacks: high disc requirements, risk of fractures, high tolerance deviations, and complex assembly. CompactDiscSpring resolves these issues as a single-component design that offers enhanced reliability and long service life through innovative construction.
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Advantages of the CompactDiscSpring
CompactDiscSpring meets all requirements for a reliable and maintenance-friendly spring technology:
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Single-component design: no need for separation into individual discs
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High resistance to environmental factors and temperature variations
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Simple and cost-effective assembly
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High spring force with minimal outer diameter
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Maximum safety: no loss of functionality if individual parts break
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Long lifespan thanks to continuous fiber structure of the material
CompactDiscSpring is a well-conceived solution for machine tools, convincing international manufacturers with its precision manufacturing and customizability for specific application requirements.
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Areas of Application
CompactDiscSpring is utilized across numerous high-tech industries:
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Mechanical engineering
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Defense technology
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Printing machines
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Aerospace
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Medical technology
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Packaging machines
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Laser technology
Each CompactDiscSpring is tailored to meet our customers’ specific requirements to ensure maximum performance and longevity.
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Customized for Critical Applications
CompactDiscSpring is the ideal choice for safety-critical components in wind turbines and vehicles. Its flexible, single-piece design allows even the highest forces to be effectively applied within a compact space – whether for motorcycle torque dampers or bone lengthening in medical technology.
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