FUJI TNW-3500 (R) HORIZONTAL MACHINING CENTER

FUJI TNW-3500 (R) FUJI TNW-3500 (R) HORIZONTAL MACHINING CENTER equipment image

Equipment Overview

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OEM
FUJI
Model
TNW-3500 (R)
Year of Manufacture
-
Category
HORIZONTAL MACHINING CENTERS

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Technical Description

The FUJI TNW-3500R is a dual-spindle, live-tool CNC lathe engineered for advanced multi-axis turning and milling operations. Featuring two main spindles capable of 4,000 RPM with 20 HP each, this machine enables simultaneous turning operations on two workpieces. The system accommodates workpieces up to 6.000" in diameter with 4.000" turning length, utilizing 8" three-jaw chucks for secure workholding. Twin turrets, each with 10 turning and 10 rotary tool positions, facilitate flexible tool selection and live milling capabilities with a 5 HP rotary spindle operating at 5,000 RPM. The machine provides four-axis control with X-axis travel of 10.430", Z-axis travel of 11.810", and rapid traversal rates of 787 ipm across all axes. Controlled by a FANUC 310i-A CNC system, the TNW-3500R integrates an automated gantry robot loader with 5+5 kg carrying capacity for unattended production. The machine measures 11'6" × 6'2" with 9' height and weighs approximately 17,600 lbs. Standard equipment includes a 150 PSI flood coolant system, chip conveyor, work turnover device, and gravity-feed roller conveyor for continuous part handling. This configuration enables complex component manufacturing including turning, facing, threading, grooving, boring, and live milling operations in a single setup, optimizing productivity for high-volume precision machining applications.

Technical Attributes

# of Axes
4.00
Max Spindle Speed
4,000.00
Spindle Power
20.00 HP
Z-Axis Travel
11.81 ''
X-Axis Travel
10.43 ''

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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