On the basis of introducing German sand making machine technology and upgrading VSI sand making machine, SBM has developed a new generation of sand making machine – VSI5X sand making machine. VSI5X sand making machine has multiple independent property rights and integrates 3 crushing modes. Now, VSI5X sand making machine is the core equipment in the machine-made sand industry.
Through systematic mechanical analysis and verification, SBM optimizes the structure of the impeller and wearing parts. Compared with the traditional sand making machine, the material throughput and crushing rate of the VSI5X sand making machine are significantly improved, and the working efficiency is increased by 30%-60%. The wear cost of wearing parts is reduced by more than 40%.
Considering the maintenance and parts replacement of the sand making machine during the production process, SBM has introduced a semi-automatic hydraulic system. With the push of a button, users can open the top cover of the machine for the following operations. Therefore, the system greatly saves labor costs and improves service efficiency.
According to the actual production situation, we found that some parts such as peripheral guard plate and impact block were severely worn in some specific parts. Therefore, in order to avoid this phenomenon, SBM adopts a split structure when designing wearing parts, which not only greatly prolongs the service life of wearing parts, but also greatly reduces the use cost of wearing parts.
Considering that customers may have two kinds of production needs (sand making and shaping) that need to be switched between central feeding and unloading, Shibang has made a new improved design on the material distribution plate, and users can easily switch the feeding method. Reduce adjustment downtime.
There are tens of lines of numerical controlling machine tools. Operations such as steel plates’ cutting, bending, planing, milling and paint spraying are all controlled numerically. The machining precision is high, especially for the core parts.
SBM, whose business covers production and sales, is responsible for every machine we produce. We can provide our customers with technical service on products and original spare parts to ensure worry-free operation.
Model | Soft material | Hard material | Side and central feeding | Fully central feeding | Speed (r/min) | Power (kW) | Overall dimension (mm) |
Maximum feeding size (mm) | Throughput (t/h) | ||||||
VSI5X1145 | 50 | 45 | 500-640 | 250-360 | 1100-1310 | 220×2 | 5000×2790×3320 |
VSI5X9532 | 45 | 40 | 350-540 | 180-280 | 1300-1510 | 160×2 | 4560×2600×2900 |
VSI5X8522 | 40 | 35 | 240-380 | 120-190 | 1500-1700 | 110×2 | 4140×2500×2700 |
VSI5X7615 | 35 | 30 | 150-280 | 70-140 | 1700-1900 | 75×2 | 4100×2330×2300 |
Note:
Product pictures, parameters, models, data, performance, specifications, etc. on this website are for reference only. SBM may make changes to the above information. For specific information, please refer to the actual product and the user manual. In the absence of special instructions, SBM reserves the right to interpret all data involved in this website.
VSI5X vertical shaft impact crusher (also known as “sand making machine”) has two feeding methods – “center feeding” and “center & side feeding”. For the former “center feeding” method, the material in the feeding hopper first enters the high-speed spinning rotor through the center hole. In the rotor, the material is fully accelerated, thrown out from the launch port, collides with a part of the material, and falls freely after rebounding. Next, the material hits the surrounding vortex material liner (or impact block) in the vortex chamber together. In the crushing cavity, the material is first bounced back to the top of the crushing cavity, and then moves downward to change direction, forming a material curtain with the material discharged from the impeller runner. Finally, the finished product is discharged from the bottom outlet. For the latter “center & side feed” method, firstly, the material in the feed hopper passes through the round hole. Then, the material is divided into two parts by the distribution plate. Part of the material enters the high-speed rotating impeller, and the other part of the material falls from the four sides of the tray. The materials in the impeller will be accelerated rapidly and thrown out at a high speed, colliding with the materials falling from the four sides of the tray. Next, all the material hits the surrounding vortex material pad (or impact block) in the vortex chamber together. In the crushing cavity, the material is first bounced back to the top of the crushing cavity, and then moves downward to change direction, forming a material curtain with the material discharged from the impeller runner. Finally, the finished product is discharged from the bottom outlet.
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