ACER E-LATHE 22160V MANUAL LATHE

ACER E-LATHE 22160V ACER E-LATHE 22160V MANUAL LATHE equipment image

Equipment Overview

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OEM
ACER
Model
E-LATHE 22160V
Year of Manufacture
-
Category
MANUAL LATHES

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Technical Description

The ACER E-Lathe 22160V is a heavy-duty manual engine lathe designed for precision machining with robust specifications. It features a swing capacity of approximately 22 inches (21.97"), allowing for turning larger diameter workpieces. The lathe has an exceptional distance between centers of 157.52 inches, permitting the machining of long shafts or components. The spindle bore measures 3.30 inches, accommodating substantial bar stock for through-spindle feed. Powered by a 10.06 HP motor, the lathe achieves spindle speeds up to 1,500 RPM, providing a balance between torque and cutting speed for various materials. The swing over the cross slide is 13.39 inches, enabling versatile operations with the compound rest. It supports both inch and metric threading with fine feed ranges, enhancing threading and feeding accuracy. The spindle nose employs a D1-8 camlock with a #7 Morse taper, and the tailstock features a #4 Morse taper with 5.9 inches of travel, suitable for varied tooling setups. Additional operational benefits include a built-in coolant system, four-way tool post, and halogen work light ensuring efficient machining conditions. The lathe bed design includes a gap to facilitate machining of larger diameter workpieces with extended length. This combination of power, capacity, and precision makes the ACER E-Lathe 22160V well-suited for industrial applications requiring both heavy-duty turning and fine detail work.

Technical Attributes

Max Swing
21.97 ''
Distance Between Centers
157.52 ''
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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