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首页> 外文期刊>Shock and vibration >Strength Weakening Effect of High Prestatically Loaded Marble Subjected to Low-Frequency Dynamic Disturbance under Point Load
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Strength Weakening Effect of High Prestatically Loaded Marble Subjected to Low-Frequency Dynamic Disturbance under Point Load

机译:在点负荷下,高预测加载大理石对低频动态扰动的强度弱化效果

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The deep high prestatically loaded rock is often subjected to low-frequency dynamic disturbance and exhibits unusual strength characteristics, and thus, it is important to investigate the strength characteristics under the coupling effect of prestatic load and low-frequency dynamic disturbance loading conditions. In this study, a series of point load tests were conducted on the high prestatically loaded marble subjected to low-frequency disturbance by the MTS system, focusing on exploring the role of prestatic load level and low-frequency disturbance frequency in the process of rock strength change. Based on the average static failure load ( F max ) of samples under the static point loading, the high prestatic load levels ( F p ) were selected as 70%, 80%, and 90% of F max , the corresponding low-frequency dynamic disturbance was loaded by sinusoidal waves with amplitudes of 60%, 40%, and 20% of F max , and the low-frequency dynamic disturbance frequencies ( f ) are 1, 2, 5, and 10?Hz. The change curve of the point load strength with the prestatic load level or the disturbance frequency was analyzed, which indicates that the point load strength under the coupled high prestatic load and low-frequency dynamic disturbance load was significantly lower than that under the pure static loading, presenting a significant point load strength weakening effect. Only when F p or f reaches a certain level, the point load strength decreases significantly as f or F p increases. Moreover, the point load strength weakening rate was proposed to characterize the degree of strength weakening. The comprehensive analysis demonstrates that F p has a greater effect on the point load strength weakening effect than f , which is mainly reflected in the point load strength weakening level dominated by the F p , and the weakening degree is affected by f .
机译:深度高兼容装载的岩石通常经受低频动态干扰,并且具有不寻常的强度特性,因此,重要的是要研究追踪载荷和低频动态干扰负载条件下的强度特性。在这项研究中,在MTS系统对低频干扰的高频率干扰上进行了一系列点负荷测试,专注于探索岩石强度过程中普拉特卡载荷水平和低频干扰频率的作用改变。基于静态点负载下的样品的平均静态故障负载(F MAX),高捕集量负载水平(F P)被选为70%,80%和90%的F MAX,相应的低频动态扰动由幅度的振荡负载,幅度为60%,40%和20%f max,低频动态扰动频率(f)为1,2,5和10?Hz。分析了点负载强度或扰动频率的点负载强度的变化曲线,这表明耦合高追踪载荷和低频动态干扰负载下的点负载强度明显低于纯静电负荷,提出了显着的点负荷强度弱化效果。只有在F P或F到达一定水平时,点负载强度随着F或F P增加而显着降低。此外,提出了点负荷强度弱化速率,以表征弱化程度。综合分析表明,F P对点载荷强度弱化效果的效果大于F,这主要反映在由F P主导的点负荷强度弱化水平,并且弱化程度受F.

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