Lathe Chuck: Precision Workpiece Clamping for Lathe Operations

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Lathe Chuck: Precision Workholding Device for Lathes

This page introduces lathe chucks, essential workholding devices for lathes that securely clamp workpieces during machining. Typically made of durable cast iron or steel, they feature jaws (e.g., three-jaw, four-jaw) to grip cylindrical or irregular shapes. Topics include chuck types, clamping mechanisms, applications in turning operations, and key performance factors like concentricity and clamping force.
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Advantages of the product

High-Speed Stability

Balanced designs (G2.5 at 6000rpm) and low-mass aluminum bodies reduce vibration in high-speed turning (up to 10,000rpm). Critical for precision components in aerospace and electronics industries.

Related products

Dynamic and static balancing accompanied by G1 standards are noted with the spindle speed of 10,000. The built centrifugal force compensation mechanism ensures high speed clamping and the anti-vibration jaw assists in unwanted movement control. The developments are particularly notable when machining components for the aerospace industry comprising titanium alloy materials and carbon fiber reinforced polymer composites (CFRP).

Frequently Asked Questions

What industry standards do lathe chucks meet?

They meet ISO 15552 and ASME B5.1, ensuring compatibility with global lathe manufacturers like Haas and Mori Seiki for automotive, medical, and aerospace applications.

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Customer Reviews

Blake

The 3-jaw self-centering chuck reduced setup to 30s per part, boosting gear production by 50%. Its ±0.02mm accuracy in round workpieces ensured consistent tooth profile machining.

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Quick-Change Jaws

Quick-Change Jaws

Interchangeable soft jaws (aluminum or copper) protect delicate surfaces, while hard jaws handle aggressive cutting. Reduces tool change time by 40% in mixed-material machining setups.
Thermal Expansion Control

Thermal Expansion Control

Temperature-compensating bodies (coefficient 11×10⁻⁶/°C) maintain clamping force consistency across thermal cycles, ensuring accuracy in long production runs.
Multi-Industry Applications

Multi-Industry Applications

Used in automotive for engine component turning, medical for implant machining, and aerospace for turbine shaft production. Adapts to workpiece sizes from 1mm to 2000mm in diameter.