ACER E-LATHE 2130V MANUAL LATHE

Equipment Overview
Share Link- OEM
- ACER
- Model
- E-LATHE 2130V
- Year of Manufacture
- -
- Category
- MANUAL LATHES
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A+Technical Description
The ACER E-LATHE 2130V is a robust manual engine lathe designed for precision machining, featuring a 20.5-inch swing and 30-inch distance between centers, making it suitable for handling large workpieces. It has a spindle bore of 3.1 inches, accommodating sizable tooling and work materials. Driven by a 7.5 HP motor, it provides reliable power with spindle speeds up to 2,000 RPM, enabling a broad range of turning operations from roughing to finishing. The swing over the cross slide measures 13 inches, allowing versatile machining on varying diameters. The lathe’s construction typically includes hardened and ground components ensuring durability and accuracy, though specific casting details for this model are not provided. This machine is engineered for manual operation, catering to machinists needing a precise, sturdy lathe for medium to large-sized parts. The ACER E-LATHE 2130V balances power and capacity for general engine lathe tasks in shops requiring substantial swing and length capabilities. Though this specific model’s detailed accessories and features like feed mechanisms or additional tooling options are not explicitly listed, ACER’s E-Lathe series commonly includes features such as multiple feed stops, camlock spindle noses, and built-in coolant systems. Overall, the 2130V model is a dependable choice for manual lathe applications demanding a large swing diameter, significant center distance, and consistent spindle power up to 7.5 HP at 2,000 RPM.
Technical Attributes
- Spindle Bore Diameter
- 3.10 ''
- Max Swing
- 20.50 ''
- Distance Between Centers
- 30.00 ''
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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