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VMC1890 Vertical Machining Center for Large Structural Component Manufacturing
The VMC1890 is a large-format vertical machining center designed for oversized components, structural plates, molds, and industrial fixtures requiring stable cutting performance and extended travel capacity.

The VMC1890 vertical machining center belongs to the heavy-class platform segment, featuring an enlarged working envelope suitable for long-span structural components and multi-fixture setups. The machine adopts a rigid bed and column casting with optimized ribbing patterns to improve vibration absorption and maintain geometric stability during extended milling cycles. The table offers a wide surface area with high load capacity, allowing users to fixture large single parts or multiple cavity plates in one setup to reduce repositioning and improve throughput.
The spindle unit is configured with a steep taper interface and high motor power reserve, allowing the machine to carry out rough milling in alloy steel while maintaining surface finishing performance in aluminum and tool steel applications. The torque output supports heavy chip loads, whereas speed stability permits contour finishing for mold components.
Movement precision is achieved through high-accuracy ball screws and linear guideways across X, Y, and Z axes. The rapid traverse rates minimize non-cutting motion, enabling faster cycle times in workshop environments. The machine enclosure enhances coolant management and chip evacuation efficiency, especially in operations involving continuous high-volume roughing. Chip conveyors and filtration devices can be integrated to enable longer unattended machining periods.
Application industries include die & mold manufacturing, automotive tooling, automation equipment, energy sector components, and general mechanical processing. The VMC1890’s long-span travel configuration provides operational flexibility where workpieces exceed the capacity of standard mid-size machining centers, making it suitable for factories that require stable material removal performance without sacrificing dimensional consistency.
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