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How To Improve The Production Efficiency Of The Equipment From The Size And Working Principle Of The Cone Broken Model

Last Update:2020-05-03 13:02:27

In the selection of cone breaking, we need to better understand the working principle of cone breaking, so that we can determine the production scale and product structure, and correctly configure the crusher equipment, so that the production efficiency of the whole crushing production line will be greatly improved. Cone breaking size is an important index in crushing process design, because it is related to the selection of equipment in the production line and the later production. The present crushing production lines are all based on the production planning, select the cone type and quantity, and then configure the equipment according to different process links, so as to achieve the purpose of reasonable design.

As for how to improve the production efficiency of industrial cone breaking, first of all, it is necessary to clearly understand the materials to be ground, analyze the hardness, humidity, composition of the materials, as well as the size requirements of the discharge materials, and select the appropriate cone breaking model, which is very helpful to improve the efficiency. For example, the cone breaking with large cone breaking size is mainly used for crushing more than 280 kinds of materials, such as barite, limestone, ceramics, slag and other non flammable and explosive mining, metallurgy, chemical industry, building materials and other industries with Mohs hardness no more than 9.3 and humidity less than 6%. The particle size of the finished product is adjusted in the range of 80-425 mesh.

According to the working principle of cone breaking, it can be used to process all kinds of nonflammable and explosive ores with Mohs hardness below grade 7 and humidity below 6%, and the size of discharge can be adjusted between 600-1250 mesh. In addition, different types of cone breaking are different in material and wear resistance, so it is necessary to select appropriate cone breaking according to material characteristics.

In addition, a reasonable crushing process should be selected. The ideal crushing process is that once the ore particles are grinded to the monomer separation, they should be discharged from the cone crushing rapidly. On the one hand, it can avoid over grinding, high energy consumption and unqualified discharge particle size. Large cone size can make the crushing medium fully act on the coarse ore particles, so that the material can bear the crushing energy of the equipment to a large extent. And in the closed-circuit grinding of cone breaking, the working principle of cone breaking can help the unqualified products to be broken twice and three times, until the raw materials are broken to the finished products that meet the exclusion standard.


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