cp1

Super Powerful Permanent Magnetic Chucks

The PMSC Super Powerful Strong Permanent Magnetic Chuck adopts high-performance neodymium magnets and is assembled with a panel, magnets, base, clamping bars, and wrench. Notable for its exceptionally powerful attraction, it is suitable for metal cutting processes and is commonly utilized in CNC machining centers, CNC engraving and milling machines, grinding machines, and other mechanical processing equipment.
  • Overview


  • Specification type (12*12)

    Specifications Size(mm) Magnetic block Magnetic force block (kg f) Total suction (kg c)
    A B H
    PMSC-2025B 200 256 50 56 25 1400
    PMSC-2525A 253 252 90 90 25 2250
    PMSC-2040A 200 400 80 136 25 3400
    PMSC-3030A 300 300 90 132 25 3300
    PMSC-3040A 300 400 90 176 25 4400
    PMSC-3040B 293 376 60 132 25 3300
    PMSC-3050 300 500 90 220 25 5500
    PMSC-30100A 300 1000 90 352 25 8800
    PMSC-3060A 300 600 90 275 25 6875
    PMSC-3535A 350 350 90 183 25 4575
    PMSC-4040A 400 400 90 240 25 6000
    PMSC-4050A 400 500 90 300 25 7500
    PMSC-4060A 400 600 90 375 25 9375
    PMSC-4080A 400 800 90 480 25 12000
    PMSC-5050A 500 500 110 400 25 10000
    PMSC-5060A 500 600 110 500 25 12500
    PMSC-5080A 500 800 110 640 25 16000
    PMSC-50100A 500 1000 110 800 25 20000
    PMSC-6080A 600 800 110 768 25 19200
    PMSC-1530C 150 300 55 116 15 1740
    PMSC-1540C 150 400 55 184 15 2760
    PMSC-2040C 200 400 65 207 15 3105
    PMSC-3040C 300 400 65 368 15 5520


    Features:

    ● Magnetic force isgenerated by high-performance materials, offering unlimited operation time, no energy consumption, no heat generation, environmental safety, and straightforward, practical operation.

    ● The powerful attraction and magnetic force can incrementally increase with the expansion of the workpiece contact area, facilitating robust milling and drilling capabilities.

    ● The rigid stability of the super-strong permanent magnetic chuck panel ensures no heat-induced deformations during precision machining.

    ● Unique rectangular technology, with constant magnetic force for suction cups of different shapes, sizes, quantities, and positions.

    ● The direction of the force acting on the workpiece has four horizontal directions available for processing.

    ● The magnetic pole is rectangular, and the beam of light evenly penetrates into the bottom of the workpiece, shallow and dense. Usually, the part above 1cm does not show magnetism.

    ● Featuring a simple mechanical switch, it requires no external power source, mitigating the risk of workpiece dislodgment due to sudden power outages or magnetic force loss.

    ● Effortlessly replace clamped workpieces, reducing clamping and adjustment time, enabling five-axis processing, and significantly boosting work efficiency by 80%.


    PMSC Super Permanent Magnetic Chuck Usage Guidelines and Methods:

    1. When placing the workpiece, occupy the magnetic poles as much as possible to maximize the attractive force, and avoid aligning with the magnetic poles.

    2. The super magnetic chuck is a set of magnetic clamping tools, consisting of the magnetic chuck body and other optional accessories. Use accessories as much as possible to achieve precise and rapid clamping of more workpieces. Consider the selection of auxiliary gear groups.

    3. For workpieces with a larger and irregularly shaped bottom surface, use multiple magnetic chucks in combination for clamping.

    4. For large and flat-bottomed workpieces, use auxiliary blocks for height adjustment during clamping.

    5. For horizontal milling machines or drilling machines, use a tripod side magnetic chuck for clamping from the side.

    6. For smaller workpieces, clamp multiple workpieces at once to improve efficiency (due to the small size of the workpiece, choose auxiliary blocks for the outermost workpiece).

    7. To ensure the parallelism between the magnetic chuck plane and the machine tool worktable surface, after the magnetic chuck is installed, users should precision mill the magnetic chuck working surface.