局部静载荷约束下循环动态扰动对煤岩损伤演变和分带效应的影响

Yihong Liu , Hongbao Zhao , Aiwen Wang , Lianpeng Dai , Yue Li , Hongwei Zhang
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摘要

为了获得在局部静载荷约束下,循环冲击载荷对煤岩破坏的影响特征,研究了原煤和煤球在过程和增量循环冲击过程中破坏因子和断裂率的演变。实验结果表明,局部静载荷约束的存在提高了煤岩的抗冲击能力,煤岩的损伤因子呈现出明显的分区特征。当煤岩处于弹性状态时,静载荷约束面积较大的隔板抗冲击能力较强;当煤岩处于塑性状态时,静载荷约束面积较大的隔板抗冲击能力较弱。增大的脉冲循环冲击比持续的脉冲循环冲击对煤岩的破坏效率更高。两种循环冲击方法的破岩效率差异主要体现在约束面积最大的分区上。煤岩表面的裂缝扩展与破坏因子的分区特征更为一致。当静载荷约束区处于弹性状态时,静载荷对裂纹生长有抑制作用。当静载荷约束区处于塑性状态时,裂缝主要在静载荷约束区内扩展,约束区内主要是沿垂直方向生长的拉伸裂缝,而非约束区内的裂缝主要沿斜方向生长。最后,应用断裂力学分析了样品的破坏类型。
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Influence of cyclic dynamic disturbance on damage evolution and zoning effect of coal-rock under local static load constraint

In order to obtain the characteristics of the effects of cyclic impact loading on the damage of coal-rock in the presence of a local static load constraint, the evolution of the damage factor and the fracture rate during the process and incremental cyclic impact on raw coal and briquettes has been studied. Experimental results show that the presence of local static load restraint improves the impact resistance of the coal-rock, and the damage factor of the coal-rock shows obvious zoning characteristics. When the coal-rock is in an elastic state, the partition with a larger static load restraint area has stronger impact resistance, when the coal-rock is in a plastic state, the partition with a larger static load restraint area has a weaker impact resistance. Increasing impulsive cyclic impacts have a higher damage efficiency to coal-rock than constant impulsive cyclic impacts. The difference in rock breaking efficiency between the two cyclic impact methods is mainly reflected in the partition with the largest constrained area. The crack propagation on the coal-rock surface is more consistent with the partition characteristics of the damage factor. When the static load constrained zone is in an elastic state, the static load has an inhibitory effect on the crack growth. When the static load confinement zone is in a plastic state, the cracks mainly propagate in the static load confinement zone, and the constrained zone mainly consists of tensile cracks that grow in the vertical direction, while the cracks in the non-constrained zone mainly grow in an oblique direction. Finally, fracture mechanics was applied to analyze the failure type of the sample.

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