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VSI5X Sand Making Machine

On the basis of introducing German technologies on sand-making machines and upgrading the VSI Sand Maker, SBM develops and researches a new generation of sand-making machine--- VSI5X Sand Making Machine. VSI5X Sand Making Machine has multiple independent property rights and integrates 3 kinds of crushing modes. Now, VSI5X Sand Making Machine is the core equipment in machine-made sand industry.

Product Features: Lower maintenance costs, longer service life of vulnerable parts, quicker adjustments
  • Input Size: 0-50mm
  • Capacity: 70-640TPH
  • Material: Granite, quartz, basalt, pebble, limestone, dolomite, etc.

Performance

Working Principle

VSI5X vertical shaft impact crusher (also known as sand making machine) has two feeding modes: full center feeding: the material falls into the feed hopper, enters the high-speed rotating rotor through the center feed hole, is fully accelerated and thrown out through the launch port, first collides with a part of the material that falls freely after rebounding, and then impacts the vortex material lining (or impact block) in the surrounding vortex cavity, first rebounds to the top of the crushing cavity, then deflects downward, collides with the material emitted from the impeller flow channel to form a continuous material curtain, and finally discharged through the lower discharge port. Center feeding with annular waterfall feeding: the material falls into the feed hopper, then falls through the annular hole, and is divided into two streams by the bulk material plate. One stream of material enters the high-speed rotating impeller through the dividing plate, and the other stream falls from the surrounding of the dividing plate. The material that enters the impeller is rapidly accelerated in the impeller and then thrown out at high speed. It first impacts and crushes with another part of the material that falls freely around the bulk material plate, and then impacts the vortex material lining (or impact block) in the surrounding vortex cavity. It is first rebounded to the top of the crushing cavity, and then deflected and moves downward, colliding with the material emitted from the impeller flow channel to form a continuous material curtain, and finally discharged through the lower discharge port.

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