DAINICHI DL(X)95(A/B) HORIZONTAL MACHINING CENTER

Equipment Overview
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- DAINICHI
- Model
- DL(X)95(A/B)
- Year of Manufacture
- -
- Category
- HORIZONTAL MACHINING CENTERS
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A+Technical Description
The Dainichi DL(X)95(A/B) is a CNC horizontal lathe designed for precision turning and semi-precision machining operations. This machine features a single main spindle with a maximum turning diameter of 24.800 inches and an extended machining length capability of 393.700 inches, accommodating various workpiece sizes. The spindle utilizes a 25.000-inch chuck diameter with a 37.400-inch maximum swing over bed, providing adequate clearance for larger components. The spindle operates at variable speeds up to 900 RPM with 25 horsepower, with optional 600 RPM capability for high-torque applications requiring enhanced cutting force. The machine employs a SLIDE-type primary tool carrier with a maximum of four turning tools, though simultaneous cutting is limited to one tool, enabling sequential precision operations. The two-axis CNC control system manages X and Z-axis movements, with Z-axis travel ranging from 60.000 inches standard to an optional 393.700 inches for extended workpiece lengths. This configuration is equipped with FANUC 20-TA control, ensuring reliable automation and repeatability. The DL95 series combines Dainichi's heavy-duty construction with servo motor-driven ball screws for high-accuracy turning, making it suitable for medium to large production runs requiring consistent dimensional tolerances and surface finish quality in automotive, aerospace, and industrial component manufacturing.
Technical Attributes
- Spindle Power
- 25.00 HP
- Z-Axis Travel
- 60.00 ''
- Max Spindle Speed
- 900.00 RPM
- X-Axis Travel
- 60.00 ''
- # of Axes
- 2.00
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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