CNC-TAKANG TK630/1500 MANUAL LATHE

CNC-TAKANG TK630/1500 CNC-TAKANG TK630/1500 MANUAL LATHE equipment image

Equipment Overview

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OEM
CNC-TAKANG
Model
TK630/1500
Year of Manufacture
-
Category
MANUAL LATHES

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Technical Description

The CNC-TAKANG TK630/1500 is a heavy-duty manual lathe engineered for precision and reliability in demanding turning applications. Featuring a robust one-piece cast iron base, the lathe delivers exceptional rigidity and vibration damping for consistent machining accuracy. With a 25-inch swing over the bed and a 17.7-inch swing over the cross slide, it accommodates large workpieces, while the 60-inch center distance enables extended turning operations. The spindle boasts a 3.3-inch bore, supporting a wide range of workholding options and bar stock diameters. Powered by a 10 HP motor, the TK630/1500 achieves spindle speeds up to 1,545 RPM across 18 steps, ensuring optimal performance for various materials and cutting conditions. The multi-gear spindle design provides a broad range of feeds and threads, including metric, inch, module, and DP ranges, catering to diverse threading requirements. The lathe is equipped with a D1-8 or A2-11 spindle nose for versatile chuck mounting, and the tailstock features a 75mm quill with MT5 taper for secure workpiece support. Additional standard features include a coolant pump, thread chasing dial, and comprehensive tooling accessories. Optional extras such as 3-jaw and 4-jaw chucks, taper attachment, steady rest, and quick-change tool post enhance versatility. Designed for both heavy-duty and precision work, the TK630/1500 is a reliable solution for industrial turning needs.

Technical Attributes

Spindle Bore Diameter
3.30 ''
Max Swing
25.00 ''
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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