采矿和初加工工艺过程中岩石准脆性断裂的能量准则

Q4 Engineering
G. D. Pershin, E. Pshenichnaya, A. Mazhitov
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引用次数: 0

摘要

本研究旨在开发一种基于采矿和初加工工艺过程中岩石准脆性断裂概念的能量标准计算方法。研究表明,Griffiths-Irwin能量准则是由具有均匀分布载荷拉伸的内部裂纹的板的平衡问题的解导出的,它指的是满足具有限定几何尺寸(长度、宽度)的板破裂的极限能量效率条件的特殊情况。这些标准具有理论价值,不符合实际应用,有必要考虑每种特定采矿技术通过正常破裂裂缝进行岩石破裂过程的能量效率。在不考虑能量效率的情况下,在岩石断裂的准静态概念中计算不可逆消耗功的实际应用是没有意义的,这是所进行研究的主要结论。建议估计形成两个新的单元表面所花费的能量,这两个单元表面对应于一个断裂面并表征岩石材料的断裂阻力,该准则包括考虑新的复杂结构和结构材料常数的断裂变形的极限比能强度以及断裂过程的能量效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy criteria for quasi-brittle fracture of rocks in technological processes of mining and primary processing
This study aims to develop a methodology to calculate energy criteria based on the concept of quasi-brittle fracture of rocks in technological processes of mining and primary processing. The research has shown that the Griffiths-Irwin energy criteria that are derived from solution of the equilibrium problem for a plate with an internal fracture stretched by a uniformly distributed load, refer to a special case which meets the condition of the ultimate energy efficiency of fracturing a plate with defined geometrical dimensions (length, width). Having a theoretical value, these criteria do not meet practical applications, where it is necessary to consider the energy efficiency of the rock fracture process by normal rupture cracks for each specific mining technology. It makes no sense to calculate the irreversibly expended work within the quasi-static concept of rock fracture for its practical application without taking into account the energy efficiency, this being the main conclusion of the research performed. It is suggested to estimate the energy spent on forming two new unit surfaces, which corresponds to one fracture plane and characterizes the fracture resistance of the rock material, with the criterion that includes the ultimate specific energy intensity of the fracture deformation with account of the new complex textural and structural material constants and the energy efficiency of the fracture process.
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来源期刊
Gornaya Promyshlennost
Gornaya Promyshlennost Engineering-Industrial and Manufacturing Engineering
CiteScore
1.10
自引率
0.00%
发文量
100
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