ACER DYNAMIC 22100L MANUAL LATHE

Equipment Overview
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- ACER
- Model
- DYNAMIC 22100L
- Year of Manufacture
- -
- Category
- MANUAL LATHES
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A+Technical Description
The ACER DYNAMIC 22100L Manual Lathe is a precision-engineered engine lathe designed for heavy-duty turning applications. With a robust Meehanite casting bed thermally treated for stability and durability, this lathe ensures consistent accuracy and long-term reliability. The machine offers a swing over bed of 21.97 inches (558 mm), a distance between centers of 98.31 inches (2,497 mm), and a swing over cross slide of 13.39 inches (340 mm), making it suitable for large workpieces. The spindle features a 3.30-inch (83.8 mm) bore and is supported by high-precision bearings for smooth operation and reduced vibration. Powered by a 10.06 HP (7.5 kW) main drive motor, the lathe delivers ample torque for demanding machining tasks. Spindle speeds range up to 1,500 RPM, providing flexibility for a wide range of materials and cutting conditions. The universal gearbox supports both inch and metric threading, with a broad selection of thread pitches for versatile threading capabilities. The lathe is equipped with a D1-11 spindle nose for secure tooling attachment and features oil-lubricated leadscrews for smooth and precise feed movements. Additional features include a wide bed way for enhanced rigidity, a half-nut engagement handle for threading, and a coolant pump for improved tool life and surface finish. Designed for both manual and automated operation, the ACER DYNAMIC 22100L is ideal for industrial environments requiring high precision and reliability in turning operations.
Technical Attributes
- Distance Between Centers
- 98.31 ''
- Max Swing
- 21.97 ''
- Spindle Bore Diameter
- 3.30 ''
Data Accuracy and Verification
Specifications and technical details are compiled from manufacturer documentation, historical records, and third-party industry sources. While care is taken to ensure accuracy, this information is provided for reference purposes only and may contain errors or omissions. Users should independently verify all details before relying on them.
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