STAR SR-10J HORIZONTAL MACHINING CENTER

STAR SR-10J STAR SR-10J HORIZONTAL MACHINING CENTER equipment image

Equipment Overview

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OEM
STAR
Model
SR-10J
Year of Manufacture
-
Category
HORIZONTAL MACHINING CENTERS

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Technical Description

The STAR SR-10J is a Type C CNC Swiss-style lathe engineered for precision small-diameter machining with a maximum workpiece diameter of 10mm (0.390"). This compact machine features a powerful main spindle delivering 15,000 RPM with 3.7kW continuous power output and dual C-axis indexing control on both main and sub spindles for enhanced secondary machining capabilities. The machine accommodates bar stock up to 10mm diameter and provides a maximum headstock stroke of 135mm in standard configuration or 105mm with the revolving guide bush unit. The tooling configuration includes six turning tools (8mm square shank) on the primary slide and a four-station back-working tool post with selectable stationary and power-driven tool positions capable of drilling up to ø4mm and tapping to M3×P0.5. The sub spindle operates at maximum 10,000 RPM with independent C-axis control and clamping, further expanding machining flexibility. The machine utilizes a slant-type guideway structure providing rigidity for stable cutting conditions and improved tool life. Standard control features Fanuc's 32i-B CNC system with a 10.4-inch color screen. With seven addressable axes, rapid traverse speeds of 35m/min, and an 89-liter coolant capacity, the SR-10J delivers high-speed accuracy within a space-efficient footprint measuring 1,865×775×1,695mm and weighing approximately 1,400kg.

Technical Attributes

Max Spindle Speed
15,000.00
Z-Axis Travel
5.31 ''
# of Axes
7.00
Spindle Power
5.00 HP
X-Axis Travel
5.31 ''
Y-Axis Travel
5.31 ''

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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