DMTG CDS6166C MANUAL LATHE

Equipment Overview
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- DMTG
- Model
- CDS6166C
- Year of Manufacture
- -
- Category
- MANUAL LATHES
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A+Technical Description
The DMTG CDS6166C Manual Lathe is a robust conventional horizontal lathe designed for precision turning applications in industrial environments. Featuring a maximum swing diameter over the bed of 25.98 inches (660 mm) and a swing over the cross slide of 17.32 inches (440 mm), this lathe accommodates large workpieces with ease. The spindle bore measures 3.23 inches (82 mm), allowing for the machining of long bar stock or hollow components. The lathe delivers a wide spindle speed range up to 2,000 RPM, ensuring versatility for various materials and machining operations. With a spindle nose D8 configuration and a metric #110 taper, the machine provides secure tooling and chuck attachment. The spindle is powered by a 7.5 kW motor, generating a torque of 1000 N·m for heavy-duty cutting tasks. The CDS6166C offers multiple distance between centers options, including 750 mm, 1000 mm, 1500 mm, 2000 mm, and 3000 mm, making it adaptable to different production requirements. The machine is equipped with 16 spindle speed steps, enabling precise control over cutting conditions. Designed for accuracy, the lathe achieves machining tolerances up to IT7 class and surface roughness as fine as Ra1.6. The CDS6166C is suitable for turning, facing, grooving, chamfering, and threading operations on both internal and external cylindrical surfaces, conical surfaces, and end faces. Its sturdy construction and reliable performance make it an ideal choice for workshops demanding high productivity and precision in manual turning applications.
Technical Attributes
- Max Swing
- 25.98 ''
- Spindle Bore Diameter
- 3.23 ''
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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