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Experimental study of dynamic bending failure of Laurentian granite: loading rate and pre-load effects

机译:Laurentian花岗岩动态弯曲失效试验研究:装载率和预负载效应

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In deep underground rock engineering projects, rocks are under static pre-load and they may further experience dynamic load due to earthquakes or production blasts. It is thus desirable to consider dynamic failure of rocks subjected to static pre-load. Besides, bending load is commonly encountered near underground openings. Therefore, this study considers the effect of the pre-load on the dynamic bending strength of Laurentian granite (LG). Using a modified split Hopkinson pressure bar system, the semi-circular bend (SCB) method is applied to carry out the bending tests. Five groups of SCB specimens are tested under different pre-loads and loading rates. The results show that under a given pre-load, the flexural tensile strength of LG increases with the loading rate, and decreases with the static pre-load at a given loading rate. The total flexural tensile strength is roughly independent of the pre-load. An empirical equation is used to represent the effects of the loading rate and the pre-load force on the dynamic flexural tensile strength. Furthermore, the flexural tensile strengths measured from SCB tests have higher values than the tensile strengths measured using the Brazilian disc method for the same rock. A nonlocal failure theory is utilized to quantitatively interpret this discrepancy.
机译:在地下地下岩石工程项目中,岩石处于静态预载下,它们可能由于地震或生产爆炸而进一步体验动态负荷。因此,希望考虑经受静态预载荷的岩石的动态故障。此外,弯曲负荷通常在地下开口附近遇到。因此,本研究考虑了载荷预负荷对Laurentian花岗岩(LG)的动态弯曲强度的影响。使用改进的拆分升压杆系统,应用半圆形弯曲(SCB)方法进行弯曲试验。在不同的载荷和装载速率下测试五组SCB样本。结果表明,在给定的预载荷下,LG的弯曲拉伸强度随装载速率而增加,并以给定的负载率的静态预载荷降低。总弯曲拉伸强度大致独立于预载荷。经验方程用于表示负载率和预负载力对动态弯曲拉伸强度的影响。此外,从SCB测试测量的弯曲拉伸强度具有比使用对同一岩石的巴西盘法测量的拉伸强度更高的值。非局部故障理论用于定量解释这种差异。

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