SENYAT QB630 WIRE EDM MACHINE

SENYAT QB630 SENYAT QB630 WIRE EDM MACHINE equipment image

Equipment Overview

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OEM
SENYAT
Model
QB630
Year of Manufacture
-
Category
WIRE EDM MACHINES

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Technical Description

The SENYAT QB630 Wire EDM Machine is a precision computerized electrical discharge machining system engineered for high-accuracy metal cutting and finishing operations. This CNC-controlled machine features a table size of 1230×820 mm with X-axis travel of 24.8 inches, Y-axis travel of 31.5 inches, and Z-axis travel of 23.6 inches, accommodating workpieces up to 630×800 mm with maximum cutting thickness of 600 mm and workpiece weight capacity of 2300 kg. The machine employs a wire diameter range of 0.1-0.2 mm with adjustable wire speeds from 1-11.4 m/s, delivering reposition accuracy of ±0.003 mm and superior surface finish quality down to Ra 1.0 μm. Equipped with automatic threading capability and advanced CNC control incorporating HF (high frequency) and AUTOCUT functions, the QB630 ensures consistent, high-quality results with minimal operator intervention. The machine utilizes Japanese THK linear guides and NSK bearings for enhanced rigidity and precision under heavy loads. Its AC variable frequency-driven wire cylinder guide system employs contactless switches and controllable silicon flexible commutation for reliable performance. With a substantial weight of 6834 lbs, the machine provides the structural stability necessary for demanding precision applications. The QB630 is designed for production environments requiring exceptional accuracy and repeatability in complex cutting operations across various metal processing industries.

Technical Attributes

Y-Axis Travel
31.5 ''
X-Axis Travel
24.8 ''
Z-Axis Travel
23.60 ''
Control System
CNC (HF, AUTOCUT)

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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