Rock Crusher Supplier Manila

Abstract

Factors Affecting Manila Rock Crusher Production The Manila Rock Crusher is one of the most popular medium and fine crushing equipments, suitable for crushing all kinds of medium and hard materials. The output of the Manila Rock Cru…
  • Rock Crusher Supplier Manila
  • Rock Crusher Supplier Manila
  • Rock Crusher Supplier Manila

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Factors Affecting Manila Rock Crusher Production

The Manila Rock Crusher is one of the most popular medium and fine crushing equipments, suitable for crushing all kinds of medium and hard materials. The output of the Manila Rock Crusher is affected by many factors. If the value of these factors is chosen properly, the output of the Manila Rock Crusher will increase. This article shares seven factors that affect Manila Rock Crusher production.

1, Moving Cone Rotation Speed

The rotational speed of the moving cone is an important factor affecting the output of the Manila Rock Crusher. If the rotation speed is too slow, the material will slide through the crushing cavity along the contour of the moving cone liner, and it takes a long time to pass through the crushing chamber, so the yield is definitely low, and the particle size of the product is also deteriorated; The material is almost not discharged downwards. Even if it is broken, there is a stagnation time after the material is broken, and the clogging phenomenon will definitely occur. The output at this time can be imagined, so there is an optimal rotation speed.

2, Parallel Zone Length

The starting point of the parallel zone is the plug point of the crushing cavity, and the shorter the length of the parallel zone, the lower the position of the plugging point, which is equivalent to increasing the actual moving cone diameter of the crushing cavity, resulting in higher yield, but then broken. The quality of the product will deteriorate; the longer the length of the parallel zone, the higher the position of the plugging point, at which point the yield is reduced, but the quality of the product is better.


The parallel belt is longer, and the ore and discharge ports are relatively small, and the finer product size can be obtained. Generally, the short head type with a longer parallel strip is placed as a fine crush after being placed in the middle. The standard type is short in parallel, so the crushed product is coarser and the output is higher. Generally, it is used as a medium crush after the coarse crushing, that is, after the smashing or rotary crushing machine.

3, The Bottom Angle Of The Moving Cone

The bottom angle of the moving cone determines the inclination angle of the moving cone. The larger the bottom angle of the moving cone, the easier the material is to move freely. However, the number of times the material is crushed and broken when passing through the crushing chamber will be less, although the output is reduced. It becomes larger, but the quality of the product is reduced. When the bottom angle of the moving cone becomes smaller, the surface of the moving cone will become gentle, the material will slide down along the broken motor cone, and the output will become low, but the quality of the broken product will change at this time. In addition, the size of the bottom angle of the moving cone will also determine the height of the fixed point of the Manila Rock Crusher. When the bottom angle of the moving cone becomes larger, the position of the fixed point will become higher, and the material is more likely to move freely in the crushing chamber. At this time, the lamination effect is obvious, and the yield is increased; when the bottom angle of the moving cone becomes small, the position of the fixed point is lowered, and the lamination effect is poor and the yield is reduced.

4, The Precession Angle

The magnitude of the precession angle directly determines the eccentricity of the Manila Rock Crusher and the swinging stroke of the discharge port. When the precession angle becomes larger, the eccentricity of the Manila Rock Crusher and the swing stroke of the discharge port become larger, and the material is more likely to fall freely, so the yield is increased, but the number of times the material is crushed and broken in the crushing chamber is reduced, resulting in The quality of the product decreases; when the precession angle becomes small, the eccentricity of the Manila Rock Crusher and the swinging stroke of the discharge port become smaller, resulting in a longer time for the material to pass through the crushing chamber, and the yield is lowered, but the material is more likely to be broken. The cavity is broken to improve the quality of the product. Therefore, on the basis of ensuring the quality of the product, reducing the precession angle will increase the yield of the product.

5, Closed Side Discharge Opening Size

The size of the closed discharge port determines the output of the Manila Rock Crusher. When the size of the closed discharge port becomes larger, the output of the Manila Rock Crusher becomes larger, but the quality of the broken product deteriorates, and the content of the needle-like material in the product increases; When the size of the closed discharge port becomes smaller, the output of the Manila Rock Crusher becomes smaller, but the quality of the broken product becomes better.

6, Material Filling Rate

The filling rate of the material has a very important relationship with the output of the Manila Rock Crusher. When the material filling rate is too small, the material cannot fill every broken layer, then the output will definitely decrease; when the filling rate is too large, the material will fill the broken cavity. Full, but the material is compacted, it is not easy to laminate and crush, the material does not easily pass through the crushing chamber, resulting in low output of the Manila Rock Crusher and poor quality. Therefore, there is an optimum material fill rate during the dosing process.

7, The Operating Factors Of The Manila Rock Crusher

The impact of the Manila Rock Crusher’s operating factors on production is subjective and can be avoided, but if these subjective factors are not noticed, it will have a great impact on the Manila Rock Crusher’s output. The operational factors affecting the Manila Rock Crusher’s output include whether the feedstock is sufficient, whether the feedstock has a uniform particle size, and the like. When the Manila Rock Crusher is working, if the feeding is insufficient, the Manila Rock Crusher will be in working condition, resulting in serious decline in production; if the particle size distribution of the feed is uneven, even if the particle size is very different, the crushing force will be unreasonably distributed, resulting in lining. The wear of the board is severe and will greatly affect the output of the broken product.

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