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Hereditary model of loose mined rock layer deformation in disintegrators

机译:破碎机松动开采岩层变形的遗传模型

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The objective of this work is to substantiate the hereditary character of the stresses and deformations accumulation in loose mined rock during the disintegrators working surfaces convergence. It is shown, in particular, that the layer porosity after compression and the side thrust coefficient depend not only on the applied pressure, but also on the initial porosity. It is substantiated the mechanism of interrelation between the stresses and deformations of a layer. The experimental researches on fine– grained granite compression in a rigid matrix have been fulfilled. The approximation of obtained results by polynomial functions has been carried out. The coefficients have been determined by the least-square method. The close agreement of the analytical and the experimental values has been recorded. The initial porosity parameter was put into the equation of dependences of the current porosity and the side thrust coefficient on pressure. The mechanism of the forces distribution on separate particles contacts has been explained in terms of the material compacting hystory. The practical value of the research is in calculating the disintegrators operating parts parameters with account of the mined rock layer condition prior to the act of crushing.
机译:这项工作的目的是证实崩解机工作面收敛过程中松散开采岩石中应力和变形积累的遗传特征。特别显示出,压缩后的层孔隙率和侧推力系数不仅取决于所施加的压力,而且还取决于初始孔隙率。证实了层的应力和变形之间的相互关系的机理。已经完成了在刚性基体中细粒花岗岩压缩的实验研究。通过多项式函数对获得的结果进行了近似。系数已通过最小二乘法确定。记录了分析值和实验值的紧密一致性。将初始孔隙度参数放入当前孔隙度和侧推力系数对压力的依赖性方程中。关于材料压实的历史,已经解释了在单独的颗粒接触上的力分布的机理。该研究的实用价值在于考虑到破碎之前的开采岩石层条件来计算粉碎机的工作部件参数。

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