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Experimental Investigation of the Coupled Influence of Rate of Loading and Contact Time on the Frictional Behavior of Quartz Grain Interfaces under Varying Normal Load

机译:载荷和接触时间对正态载荷变化对石英晶界摩擦行为影响的实验研究

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In this study, the coupled influence of contact time and rate of loading on the interface behavior of quartz grains was examined experimentally. The rate of loading is considered not just a tangential (or sliding) rate but a combination of both normal and tangential loading rates, which leads to the target normal load and tangential displacement for a given contact time. Two classes of tests were conducted; in the first class, steady-state sliding was first allowed to be reached by shearing the grains at a constant normal load before the application of the simultaneous normal load and tangential displacement variation, whereas in the second class, the normal load and tangential displacement were varied simultaneously from the start of the test. The experimental results from monotonic and cyclic micromechanical tests highlight the significant influence of the coupled load rate and contact time on the interparticle friction, tangential stiffness, and energy loss of the contacted interfaces. The results are compared with standard micromechanical experiments that were conducted under a constant normal load during the shearing of the grain contacts. Indirect qualitative analysis was performed to substantiate the increase in contact area with increasing contact time, which is not expected in constant normal load sliding.
机译:在这项研究中,实验研究了接触时间和加载速率对石英晶粒界面行为的耦合影响。加载速率不仅被认为是切向(或滑动)速率,而且还考虑了法向和切向加载速率的组合,这会导致给定接触时间下的目标法向载荷和切向位移。进行了两类测试。在第一类中,首先在同时施加法向载荷和切向位移变化之前,通过在恒定的法向载荷下剪切晶粒来达到稳态滑动,而在第二类中,法向载荷和切向位移为从测试开始就同时变化。单调和循环微机械试验的实验结果突出了耦合载荷率和接触时间对颗粒间摩擦,切向刚度和接触界面能量损失的重大影响。将结果与标准的微机械实验进行比较,该实验是在谷物接触面的剪切过程中在恒定法向载荷下进行的。进行了间接定性分析,以证实接触面积随接触时间的增加而增加,这在恒定法向载荷滑动中是无法预期的。

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