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Bending Moment Characteristics of Hard Roof before First Breaking of Roof Beam Considering Coal Seam Hardening

机译:考虑煤层淬火首次破裂屋顶梁前弯矩特征

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摘要

The mechanical properties of a coal seam affect the distribution of support pressure. Considering the strain hardening effect of coal seam, the support pressure relationship of three zones—softened, hardened, and elastic—of a coal seam with regard to a hard roof is proposed, and methods to determine an approximate expression for the support pressure of hardened zone of coal seam, the range of hardened zone, and the corresponding peak values of support pressure are provided. The deflection equations of a hard roof under three different support pressure relationships of coal seam before the first breaking were theoretically derived, and all the relevant integration constants were determined. Numerical examples of two cases are provided for calculating the bending moment of a hard roof and the support pressure of a coal seam. The analysis shows that as the working face advances, the maximum support pressure increases, the residual strength of coal seam at coal wall decreases, the overall deflection of roof gradually increases, the maximum bending moment of roof in the front of coal wall increases, and the advanced distance of roof bending moment peak gradually increases. As the depth of softened zone of coal seam increases, the similar conclusion is obtained, and the advanced distance of the roof bending moment peak increases at a relatively fast speed. Because the bending moment peak of hard roof is located near the support pressure peak in the softened zone of coal seam, the depth of softened zone of coal seam significantly affects the advanced distance of the bending moment peak of a roof. The actual advanced fracture distances of hard roof are distributed in a relatively broad range. The results indicate that there is a “large and long” type advanced fracture distance occurring in the actual stope. With the same overlying load and stope parameter conditions, the maximum support pressures of support roof in softened, hardened, and elastic zones considering a hardened coal seam are smaller than those in softened and elastic zones without hardening. However, the plumpness in front of the peak of the former support pressure curve is superior to that of the latter, and both the bending moment peak value and the advanced distance of bending moment peak of the former are higher than those of the latter.
机译:煤层的力学性能影响支撑压力的分布。考虑到煤层的应变硬化效果,提出了三个区域软化,硬化和弹性的支撑压力关系,以及煤层关于硬顶的煤层,以及确定硬化载体压力近似表达的方法提供煤层区域,硬化区的范围,以及支撑压力的相应峰值。在理论上导出,在第一次破裂之前,在煤层三种不同支撑压力关系下的硬顶的偏转方程,确定了所有相关的整合常数。提供了两种情况的数值例子,用于计算硬顶的弯曲力矩和煤层的支撑压力。分析表明,随着工作面前的进步,最大支撑压力增加,煤壁煤层的剩余强度降低,屋顶的总体偏转逐渐增加,煤壁前面的最大弯曲力矩的增加,和车顶弯矩峰的高级距离逐渐增加。随着煤层的软化区的增加,获得了相似的结论,并且屋顶弯矩峰的高级距离以相对较快的速度增加。由于硬顶的弯曲力矩峰位于煤层软化区域的支撑压峰附近,因此煤层的软化区深度显着影响屋顶弯矩峰的先进距离。硬屋顶的实际高级断裂距离分布在相对较宽的范围内。结果表明,在实际突起中存在“大而长”的型先进断裂距离。通过相同的覆盖载荷和分级参数条件,考虑硬化的煤层的软化,硬化和弹性区域的最大支撑屋顶的最大支撑压力小于软化和弹性区域而无需硬化。然而,前者支撑压力曲线的峰的前面的褶皱优于后者的褶皱,并且前者的弯矩峰值和前者弯矩峰的高级距离高于后者的峰值。

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