HZHF HF320MZQ-G13T WIRE EDM MACHINE

HZHF HF320MZQ-G13T HZHF HF320MZQ-G13T WIRE EDM MACHINE equipment image

Equipment Overview

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OEM
HZHF
Model
HF320MZQ-G13T
Year of Manufacture
-
Category
WIRE EDM MACHINES

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Technical Description

The HZHF HF320MZQ-G13T Wire EDM machine is a CNC-controlled electrical discharge machining system with precise capabilities tailored for fine wire cutting. It features an X-axis travel of 27.17 inches and a Y-axis travel of 18.03 inches, enabling accurate machining across a sizable working area for diverse applications. The CNC control ensures automated, highly repeatable cuts with fine positional control, essential for intricate shapes and detailed components. Wire EDM technology uses a thin wire as an electrode to erode material electrically, making it ideal for hard-to-machine metals and complex geometries. Typical wire diameters range from 0.10 to 0.30 mm, and cutting accuracy can be as fine as ±0.006 mm in straight cuts for similar machines. The machine likely supports taper cutting with adjustable angles to accommodate complex profiles. Its construction provides stability and minimizes vibration, facilitating superior surface finishes often below Ra 1.0 µm in comparable models. The system can handle a range of workpiece sizes and weights compatible with the specified travel lengths. Power requirements are commonly three-phase 380V/50Hz for industrial integration. This wire EDM machine is suitable for precision mold making, tool and die production, and parts manufacturing that demand high surface integrity and tight tolerances. Its CNC interface simplifies programming and integration with CAD/CAM software for efficient production workflows.

Technical Attributes

Y-Axis Travel
18.0 ''
X-Axis Travel
27.2 ''

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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