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The VERTEX VMJ-10 flat vise chuck is a robust and precise clamping tool designed for securely holding workpieces during milling operations. Its body is constructed from hardened alloy steel, providing excellent resistance to mechanical stress, impact, and high temperatures. The parallel, flat jaws are engineered to grip workpieces evenly and securely, ensuring stable positioning without slippage during material removal. This model is highly suitable for use on manual, semi-automatic, and CNC milling machines, making it ideal for high-precision industrial applications.
Structurally, the VMJ-10 chuck features a finely tuned gear and screw-driven mechanism that allows smooth and safe manual control of the jaws. The jaw contact surfaces are fully machined and precisely aligned with the machine’s axis, enhancing surface finish quality and minimizing unwanted vibrations. High accuracy in parallelism and concentricity has been integrated into the design, which significantly improves repeatability in industrial operations. VERTEX, adhering to international standards, ensures exceptional build quality and long service life for this model.
WEBSITE: Three bed systems of Vortex milling machine model VMJ-10 Iran
The VERTEX VMJ-10 flat milling machine chuck is a precise and durable tool designed to securely hold workpieces during milling operations. This chuck is made from hardened alloy steel, offering high resistance to mechanical pressure, wear, and heat. Its flat and parallel jaws enable uniform and slip-free clamping of the workpiece, enhancing both accuracy and surface quality. The precise design makes this model suitable for use on manual, semi-automatic, and CNC milling machines, capable of handling heavy loads in industrial environments.
Structurally, the VMJ-10 chuck features an advanced screw and gear mechanism that provides smooth and accurate control of the jaws. The contact surfaces of the jaws are fully machined and aligned with the machine axis to minimize unwanted vibrations and improve the final work quality. High precision in concentricity and parallelism plays a crucial role in increasing the efficiency and repeatability of milling operations, ultimately extending the service life of both the machine and auxiliary tools.