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Quartz sand making machine

Quartz sand making machine

Size:<200mm

Capacity:10-80tph

Material:Quartz

Application: Widely used in various ores, cement, refractory materials, aluminum soil clinker, silicon carbide, glass raw materials, mechanism stone materials with gold slag, especially for silicon carbide, silicon carbide, sintered bauxite, sand, etc.

Introduction

Quartz sand making machine Introduction

Quartz sand sand making machines are available in a wide variety of models. CFTC quartz sand making machine is very suitable for the crushing and shaping of soft or medium hard and extremely hard materials. It is widely used in various ores, cement, refractory materials, aluminum soil clinker, corundum, glass raw materials, mechanism building stone materials in gold. The slag, especially for high-hardness, extra-hard and abrasion-resistant materials such as silicon carbide, silicon carbide, sintered bauxite, and beautiful sand, is more effective than other types of crushers..

Quartz sand making machine working principle

Quartz stone sand machine working principle:
Quartz stone sanding machine uses advanced selective crushing and cleavage and crushing principle to directly apply sufficient kinetic energy to the material and transform the kinetic energy into the crushing energy required to overcome the material. The material basically breaks along its natural texture surface and cleavage surface, and the grain shape is good and its consumption is low. The machine can realize the conversion of the two working principles of “stone stone” and “stone hitting iron”.


 
The material falls into the feeding hopper, enters the high-speed rotating wheel through the center feeding hole, and is rapidly accelerated in the wheel. The acceleration can reach tens of times the gravity acceleration, and then the high-speed is injected from the wheel, first and freely after rebounding. Another part of the falling material collides and then impacts on the material lining (stone) or the counter-attack (stone), which is rebounded obliquely upward to the top of the vortex chamber, changing its direction of movement, and deflecting downward. It also collides with the material emitted from the impeller flow path to form a continuous material curtain. In this way, a piece of material is subjected to two to many impacts, friction and grinding and crushing in the vortex breaking chamber. The broken material is discharged from the lower discharge opening.
The center feeding is accompanied by a circular waterfall feeding: the material falls into the feeding hopper, falls through the annular hole, is divided into two materials by the dividing plate, and one is fed into the high-speed rotating wheel through the dividing plate, and the other is divided into points. The tray is falling around. The material entering the wheel is rapidly accelerated in the wheel, and its acceleration can reach tens of times the acceleration of gravity, and then the high-speed is injected from the wheel. First, it is crushed and broken with another part of the material falling freely around the distributor, and then together Impact on the vortex lining in the vortex chamber, rebounded by the material lining, impacting obliquely upward to the top of the vortex chamber, changing its direction of motion, deflecting downward movement, and colliding with the material emitted from the impeller flow path to form a continuous Material curtain. In this way, a piece of material receives two to many chances of impact, friction and grinding and crushing in the vortex breaking chamber. The broken material is discharged from the lower discharge opening.
 
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Technical Parameters

TYPE capacity
(t/h)
Feed granularity
(mm)
Discharge granularity
(mm)
power
(kw)
size
(mm)
VSI-1000 10 <50 <3 60-95% 45-55 2600×1400×1900
VSI -1250 20 <80 <3 60-95% 75-90 2800×1600×2100
VSI -1500 30 <100 <3 60-95% 110-132 3100×1900×2200
VSI -1750 50 <120 <3 60-95% 160 3710×2360×2390
VSI -2000 65 <150 <3 60-95% 200 4100×2660×2620
VSI -2300 80 <200 <3 60-95% 280 4800×2850×2720

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