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Shear Strength Criteria for Rock,Rock Joints,Rockfill,Interfaces and Rock Masses

机译:岩石,节理,堆石,界面和岩体的抗剪强度标准

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Although many intact rock types can be very strong,a critical confining pressure can eventually be reached in triaxial testing,such that the Mohr shear strength envelope becomes horizontal.This critical state has recently been better defined,and correct curvature,or correct deviation from linear Mohr-Coulomb has finally been found.Standard shear testing procedures for rock joints,using multiple testing of the same sample,in case of insufficient samples,can be shown to exaggerate apparent cohesion.Even rough joints do not have any cohesion,but instead have very high friction angles at low stress,due to strong dilation.Great similarity between the shear strength of rock joints and rockfill is demonstrated,and the interface strength between rockfill and a rock foundation is also addressed.Rock masses,implying problems of large-scale interaction with engineering structures,may have both cohesive and frictional strength components.However,it is not correct to add these,following linear Mohr Coulomb (M-C) or non-linearHoek-Brown (H-B) standard routines.Cohesion is broken at small strain,while friction is mobilized at larger strain and remains to the end of the shear deformation.The criterion ‘c then tan φ’ should replace ‘c plus tan φ’ for improved fit to reality.In all the above,scale effects need to be accounted for.
机译:尽管许多完整的岩石类型都可能非常坚固,但最终在三轴测试中会达到临界围压,从而使莫尔抗剪强度包络线变为水平。最近已更好地定义了此临界状态,并确定了正确的曲率或与线性的正确偏差终于找到了Mohr-Coulomb。对岩石节理的标准剪切测试程序,对同一样品进行多次测试,如果样品不足,则可能会夸大表观内聚力。即使是粗糙的节理也没有任何内聚力,但具有由于膨胀力强,在低应力下具有很高的摩擦角。岩石节理和碎石的抗剪强度之间具有很大的相似性,并且解决了堆石与岩石基础之间的界面强度。岩体,隐含着大规模的问题与工程结构的相互作用,可能同时具有内聚强度和摩擦强度成分。但是,在线性莫尔之后添加这些成分是不正确的库仑(MC)或非线性Hoek-Brown(HB)标准程序。内聚力在小应变时破裂,而摩擦力在大应变时动员并一直保持到剪切变形的终点。应替换为标准``c然后tanφ'' “ c plus tanφ”可改善与现实的契合度。在上述所有方面,都需要考虑比例效应。

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