


·The newly added lifting device facilitates customers to maintain the equipment;
·The structure and process of the impeller are investigated. Compared with the previous equipment, the service life of the impeller part is increased by 30-200% under the condition of crushing the same material;
·The impeller structure adopts a new four-throwing port design to increase the material throughput, and the crushing efficiency of the same material is increased by about 20% compared with the three-port impeller;
·The transmission part of the equipment adopts a special sealing structure to prevent oil leakage from the bearing cylinder, and has obtained 2 national patents;
·The bearings use imported bearings to reduce transmission system failures;
·The simple lower body structure design effectively prevents the lower part of the body from being blocked when the moisture content of the material is too high;
·The "stone hitting stone" working mode is adopted to reduce the types of wear-resistant use and reduce customer production costs;
·The V-belt tensioning method is hydraulic tensioning to ensure that the tensioning force of the V-belts on both sides is the same to avoid current errors;
·The matching high-voltage motor can be directly connected to the grid, with high economic performance and good environmental protection advantages, saving energy and reducing consumption for customers.
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The motor drives the main shaft of the bearing cylinder transmission part to rotate at high speed. At the same time, the rotor rotates at high speed with the main shaft. The impeller accelerates the materials entering the impeller and then sprays them into the crushing cavity. They collide and grind with the lining materials formed in the crushing cavity, and the materials are crushed. After acceleration, the kinetic energy obtained is converted into the energy required for crushing or shaping the materials. The materials circulate multiple times in the crushing chamber are crushed and shaped numerous times under the action of the surrounding gas vortex, thereby achieving continuous crushing and shaping of the materials. They are discharged from the lower part of the machine body to form the desired shape. When finished materials are needed, the crushing method is “stone on stone”. This mode is mainly used for the shaping and crushing of stone.
In addition, sand crushing machine is also equipped with a “rock-on-iron” crushing method. The difference from the stone-on-stone crushing method is that after the material is ejected from the rotor, it impacts the impact block installed in the crushing cavity. The energy obtained by the material is accelerated and converted into the impact block’s impact. It requires energy. After impact, the material is directly discharged from the lower part of the machine body, and it is impossible to achieve multiple crushing cycles in the crushing cavity.

Model | VSI6X13100G | VSI6X1380G | VSI6X1263G | VSI6X1150G | |
Throughput t/h | Crushing | 783-839 | 601-643 | 454-486 | 344-368 |
Shaping | 940-1309 | 721-1004 | 545-758 | 413-575 | |
Max Feed Size(mm) | Crushing | ≤50 | ≤50 | ≤50 | ≤45 |
Shaping | ≤60 | ≤60 | ≤60 | ≤55 | |
Rotational Speed (r/min) | 800-1100 | 800-1100 | 900-1200 | 1000-1300 | |
Dual Motor Power (kw) | 1000 | 800 | 630 | 500 | |
Dimension(LxWxH)(mm) | 7900×2980×4150 | 7900×2980×4150 | 7440×2980×4100 | 7440×2750×3880 | |
Weight(t) | Rock For Rock | 33 | 32.5 | 29 | 24 |
Stone For Iron | 36.5 | 36 | 32 | 26.5 | |
Power Source | Voltage(V):AC380、400、415、440、480 Frequency(Hz):50、60 | ||||
Thin Oil Lubrication Station | L/min | 4-16 | |||
Pump Motor Power (kw) | 0.75 | ||||
Heater Power (kw) | 4 | ||||
Safety Protection | Automatic shutdown when there is no oil flow; air cooling for cooling; heating system starts in winter. | ||||