Impact elements of feed grinder: a review

R. Iskakov, S. Issenov, Gulmira Kubentaeva
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Abstract

The article deals with the issue concerning the working bodies of technological equipment designed for grinding pieces and particles of feed raw materials. The most profiTable feed raw materials are by-products and waste materials of animal origin, which have a valuable high-protein content. An alternative way of mandatory waste disposal is their processing, including mechanical grinding to obtain feed products. In the process of grinding, particular importance is given to the working bodies, with the help of which the raw material is directly divided into parts. In this case, the destruction of the feed material often occurs by means of impact. Impact phenomena have proven to be highly effective in the process of intense cracking and chipping, which leads to the desired separation of the crushed particles into smaller ones. However, it is found that crushers have insufficient efficiency of impact elements. The work analyzes the processes of impact grinding from the standpoint of a number of scientific hypotheses, theories, modeling, simulation, experience and approbation, presented in various scientific publications. When studying and improving the theory of impact, attention is paid to nonlinear problems, cracking, modernization of the theory of brittle fracture, diagrams of force changes during impact force, impact equations, wave theory of impact, peridynamic theory. It should be noted that the main scientific results are directly reflected in the improvement of the design features of hammers. It has been revealed that the main improvement in the design of impact elements is in the direction of increasing the efficiency of working surfaces and developing the combination of impact with cutting, abrasion and crushing
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进料磨床的影响因素综述
本文论述了饲料原料碎粒粉碎工艺设备的工作机构设计问题。最有利可图的饲料原料是动物源性的副产品和废物,它们具有宝贵的高蛋白含量。另一种强制性废物处理方法是对其进行处理,包括机械研磨以获得饲料产品。在磨削过程中,特别重要的是给予工作体,借助它直接将原料分成零件。在这种情况下,往往通过冲击的方式发生进料的破坏。冲击现象已被证明是非常有效的在激烈的开裂和切屑的过程中,导致所需的破碎颗粒分离成更小的颗粒。然而,发现破碎机的冲击元件效率不足。这项工作从许多科学假设、理论、建模、仿真、经验和认可的角度分析了冲击磨削的过程,这些观点发表在各种科学出版物中。在研究和改进冲击理论时,主要关注非线性问题、裂纹、脆性断裂理论的现代化、冲击过程中的力变动图、冲击方程、冲击波动理论、周动力理论等。应该指出的是,主要的科学成果直接体现在锤的设计特点的改进上。研究表明,冲击元件设计的主要改进方向是提高工作面的效率,发展冲击与切削、磨损和破碎的结合
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来源期刊
EUREKA: Physics and Engineering
EUREKA: Physics and Engineering Engineering-Engineering (all)
CiteScore
1.90
自引率
0.00%
发文量
78
审稿时长
12 weeks
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