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DEV-260

This machine tool adopts a C-type structural design. The column, bed, etc., are all made of high-strength HT300 gray cast iron, which has high strength and good vibration absorption performance. It effectively absorbs the vibrations generated during cutting and effectively improves the machining accuracy of the machine tool.

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  • 产品描述
  • DEV260 is a five-axis machining center developed by Del Automation Equipment Co., Ltd., especially suitable for complex polyhedral five-axis machining of small parts, molds, and related industries.

    1. The machine tool adopts a C-type structure design. The column, bed, etc. are made of high-strength HT300 gray cast iron, which has high strength and good vibration absorption performance. It effectively absorbs vibrations generated during cutting and effectively improves the machining accuracy of the machine tool.

    2. The turntable can move back and forth, ensuring the shortest distance between the operator and the workpiece, greatly facilitating the loading and unloading of the workpiece.

    3. The X-axis and Y-axis use No. 30 linear guides, and the Z-axis uses No. 35 linear guides, with sufficient rigidity, small starting damping, and fast response performance.

    4. All three axes use high-response ball screw drives; the A-axis and C-axis use an internal motor-type rotary table, and the brake uses an air-driven, high-torque, and wrap-around brake to ensure sufficient braking force.

    The DEV40 and 50 series are five-axis machining centers developed by Del Automation Equipment Co., Ltd., especially suitable for complex polyhedral five-axis machining of small and medium-sized molds, auto parts, and related industries.

    1. The machine tool adopts a semi-gantry moving beam structure design. The bed is an integral structure of high-strength HT300 gray cast iron. The moving parts are away from the cutting area, effectively reducing the failure rate of the moving parts.

    2. The overall structure ensures the shortest distance between the operator, the milling head, and the worktable, greatly facilitating manual tool changes and workpiece loading and unloading.

    3. The X-axis and Y-axis use No. 45 linear guides, and the Z-axis uses No. 35 linear guides, with sufficient rigidity, small starting damping, and fast response performance.

    4. All three axes use a high-response nut-rotating ball screw drive; the A-axis and C-axis use a self-developed cradle-type rotary table, and the brake uses a hydraulically driven, high-torque, wrap-around brake to ensure sufficient braking force.

    The DEV65, 80, and 100 series of precision five-axis machining centers are produced by Del Automation Equipment Co., Ltd., using imported foreign technology. They are leading domestic and internationally advanced precision five-axis machining centers. This machine tool is widely used in the aerospace, automotive, mold, and machinery manufacturing industries to process shell parts, disc-shaped parts, irregular parts, curved parts, and spatial angle parts, etc. Parts can be automatically processed on five sides through multiple processes such as milling, boring, drilling, reaming, tapping, and threading in a single clamping.

    The DEV65, 80, and 100 series of precision five-axis machining centers adopt an integral closed-frame structure. The cradle-type dual-swing worktable is fixed to the bed to complete the rotation of the A-axis and C-axis. The moving beam reciprocates on the bed through four roller guides, driving the spindle to complete the Y-axis movement. The front end of the crossbeam moves left and right through two roller guides, driving the spindle to complete the X-axis movement. The slider moves up and down on the crossbeam through two guides, driving the spindle to complete the Z-axis movement. The machine tool combines the high dynamic characteristics of the moving beam gantry-type moving beam and the high rigidity characteristics of the closed structure, giving the machine tool good dynamic response, high-precision stability, good airtightness of the overall processing area, reasonable overall layout, and small footprint.

    The significant features of this machine tool are: high precision, high speed, and high rigidity.

    Main features of the machine tool:

    1. Large processing range;

    2. Uses roller linear guides, improving the static and dynamic load-bearing capacity of the guides and extending their service life;

    3. The worktable only completes the rotational movement, and the three linear coordinates are all at the top of the bed, fully ensuring the minimization of the weight of the machine's moving parts and ensuring the dynamic characteristics of the machine tool;

    4. The spindle adopts a direct drive (or electric spindle) structure, ensuring the machine's high and low-speed processing performance and high-speed processing performance;

    5. The machine tool spindle, A-axis, and C-axis all have constant temperature cooling functions, allowing constant temperature cooling water (oil) to flow through, ensuring that the temperature of the main heat-generating components is consistent with the bed temperature, effectively controlling the overall temperature deformation, and improving the machining accuracy of the machine tool;

    6. The system opens the C-axis actuator module, and according to the mathematical model formed by temperature changes, uses the simulation interface to perform micro-precision compensation, further improving processing accuracy;

    7. The high-speed rapid traverse speed of the machine tool shortens processing time and improves processing efficiency;

    8. The machine tool's tool magazine is arranged on the bed, below the moving beam, making full use of the effective space and reducing the machine tool's footprint;

    9. The bed is integrally cast, and finite element analysis is used during the design process to make the structure more reasonable.

     

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