ANNN YANG DY-1100G/10000 MANUAL LATHE

ANNN YANG DY-1100G/10000 ANNN YANG DY-1100G/10000 MANUAL LATHE equipment image

Equipment Overview

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OEM
ANNN YANG
Model
DY-1100G/10000
Year of Manufacture
-
Category
MANUAL LATHES

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Technical Description

The ANNN YANG DY-1100G/10000 manual lathe features a robust design with a **43.3-inch swing capacity** and a substantial **393.5-inch distance between centers**, allowing it to handle large workpieces for turning operations. Its spindle bore diameter is **6.0 inches**, accommodating sizeable bar stock for heavy-duty machining. Powered by a **15.0 HP motor**, the lathe supports a maximum spindle speed of **600 RPM**, providing sufficient torque for a wide range of material removal and shaping tasks. The **28.7-inch swing over the cross slide** enables precise tool movements across the workpiece for detailed finishing and contouring operations. This lathe is intended for skilled manual operation, where an operator controls cutting depth and feed rates via handwheels and levers, ensuring high versatility for prototyping, repair, and custom machining jobs. Its construction supports essential lathe functions such as turning, facing, boring, threading, and grooving, leveraging stable bed alignment and durable components to maintain accuracy and repeatability across extended machining cycles. The manual operation requires a high degree of user skill but offers flexible control over unique or non-repetitive parts. The lathe’s capacity and power make it suitable for machining large shafts, bushings, and heavy tooling components, effectively bridging the gap between toolroom precision and industrial capacity.

Technical Attributes

Max Swing
43.30 ''
Distance Between Centers
393.50 ''
Spindle Bore Diameter
6.00 ''

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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