The mechanism and experimental study on fracture of thick-bedded backfill roof under high stress

Xiao-jun Wang, Jin-an Wang
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Abstract

Simply supported beams subjected to uniform was considered mechanical model of backfill roof of underhand drift cut-and-filling stopping, because high-span ratio of stratified backfill was relatively large, there might be some errors in the bearing capacity calculation of material mechanics, through the analysis of the model boundary shape and mechanical distribution characteristic, a semi-inverse method of elasticity was used to obtain stress corrected solutions of load-bearing beam. So three mathematical models were created through different high-span ratios, that were 3∶10,3∶5,3∶3, and stress failure curve of elasticity solution was compared with stress failure curve of material mechanics solutions and to validated the correctness of the corrected formula. critical failure equation of backfill roof was derived based on maximum stress criterion, the critical failure curve of backfill was achieved by substituting the mechanics parameters of different stresses into the analytical formulas, and failure modes of backfill roof is found through physical modeling experiment. The results show that the failure of backfill roof is first happening from the center at the bottom of backfill, the final result is that falling arch. Finally, effective measures were proposed to avoid failure of backfill roof.
高应力下厚层充填体顶板断裂机理及试验研究
考虑简支梁受均布作用的下向进路充填回填顶板力学模型,由于分层回填体大跨比较大,在材料力学承载力计算中可能存在一定误差,通过对模型边界形状和力学分布特征的分析,采用半反弹性法得到承载梁的应力修正解。为此,通过3∶10、3∶5、3∶3不同的大跨度比建立了3个数学模型,并将弹性解的应力破坏曲线与材料力学解的应力破坏曲线进行了对比,验证了修正公式的正确性。基于最大应力准则推导了充填体顶板的临界破坏方程,将不同应力下的力学参数代入解析公式,得到了充填体的临界破坏曲线,并通过物理模拟实验找到了充填体顶板的破坏模式。结果表明:充填体顶板破坏首先从充填体底部中心开始,最终形成落拱;最后,提出了防止回填顶板破坏的有效措施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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