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The relationship between particle strength and particle breakage in loaded gravels

机译:负载砾石中颗粒强度与颗粒破碎之间的关系

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The particle breakage behaviour of coarse grains during shearing of a gravelly granular assemblage changes in accordance with the magnitude of the confining stress acting on the assemblage. The transition from particle rearrangement and sliding to particle breakage is studied for two gravelly materials subjected to a wide range of compressive and shear stresses (10kPa to 3.5MPa). The tested materials are a gravel fraction derived from crushed sedimentary sandstones and shales, and a gravel derived from a crushed rhyodacitic volcanic. At low confining stresses, breakage due to compression and shear are both small, with only some fine fragments produced. Confining stress increase results in a stage being reached where particle damage starts to increase greatly, under both compressive and shearing loads. The results indicate that, as stresses become very large, the particle breakage due to compression continues to increase, but the breakage due to shearing under the same vertical stress actually decreases. This is attributed to the attainment of a fabric which, through extreme damage during compression, allows subsequent shearing with reduced additional particle damage.
机译:在砾石组合体剪切过程中,粗晶粒的颗粒破碎行为会根据作用在组合体上的约束应力的大小而变化。研究了两种砾石材料从颗粒重排和滑动到颗粒破裂的过渡过程,这些材料受到很大的压缩应力和剪切应力(10kPa至3.5MPa)。所测试的材料是源自破碎的沉积砂岩和页岩的砾石馏分,以及源自破碎的菱锰矿火山的砾石。在低围压下,由于压缩和剪切引起的破裂都很小,仅产生一些细小的碎片。限制应力的增加导致在压缩和剪切负荷下,颗粒破坏开始大大增加的阶段。结果表明,当应力变得很大时,由于压缩引起的颗粒破裂继续增加,但是在相同垂直应力下由于剪切作用引起的破裂实际上减少了。这归因于获得一种织物,该织物通过在压缩期间的极度损坏而允许随后的剪切并减少了附加的颗粒损坏。

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