ACER DYNAMIC 1760G MANUAL LATHE

ACER DYNAMIC 1760G ACER DYNAMIC 1760G MANUAL LATHE equipment image

Equipment Overview

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OEM
ACER
Model
DYNAMIC 1760G
Year of Manufacture
-
Category
MANUAL LATHES

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Technical Description

The ACER DYNAMIC 1760G Manual Lathe is a precision-engineered geared head engine lathe designed for heavy-duty turning applications. With a 17-inch swing over the bed and 60 inches between centers, it provides ample capacity for large workpieces. The lathe features a robust 7.5 HP drip-proof spindle motor, delivering high torque for efficient metal removal across a wide range of materials. Spindle speeds are infinitely variable from 50 to 1,800 RPM in 12 steps, ensuring optimal performance for various machining tasks. The spindle bore measures 2.25 inches, accommodating larger bar stock, while the swing over the cross slide is 9.63 inches, allowing flexibility in tool positioning and part handling. The machine is built on a hardened and ground bedway with a Rockwell C 55° rating, ensuring long-term accuracy and durability. The lathe’s dimensions are 41 inches wide, 107 inches long, and 67 inches high, with a total weight of 4,250 lbs, providing excellent stability during operation. Standard features include a D1-6 spindle nose, mechanical drum-type brake for quick stopping, and a full-length splash guard for operator safety. The lathe supports both inch and metric threading, with a wide selection of thread pitches and feeds for versatile production needs. Its rugged construction, precise controls, and comprehensive accessory options make the ACER DYNAMIC 1760G a reliable choice for demanding industrial environments.

Technical Attributes

Spindle Bore Diameter
2.25 ''
Max Swing
17.00 ''
Distance Between Centers
60.00 ''

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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