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Effect of Cyclic Freezing-Thawing on the Shear Mechanical Characteristics of Nonpersistent Joints

机译:循环冻融对非发光关节剪切力学特性的影响

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摘要

The effects of freezing-thawing cycles and persistency differences have a significant impact on the shear mechanical properties of joints. In this paper, a series of joints direct shear tests were performed on freezing-thawing treated joints to investigate the effect of freezing-thawing cycles and the persistency on the shear strength deterioration of joints. Shear strength and residual strength decrease with the freezing-thawing cycle increase and joint persistency increase. Shear strength damage mainly generates in the initial stage of the freezing-thawing cycle, and the shear strength decreases slightly in the late freezing-thawing cycle stage. The freeze-thaw cycle has a minimal effect on the shear strength of joints with low persistency, yet has a great effect on joints with high persistency. The damage of joint roughness caused by freezing-thawing cycles increases with joint persistency increases. When the joint persistency is constant, the shear strength parameter decreases with the freezing-thawing cycle at first and then tends to be stable. Cohesion is the dominant factor that controls shear strength. When freezing-thawing cycles are constant, the friction angle decreases slowly with persistency at first and then decreases rapidly, and the friction angle is the dominant factor that controls shear strength.
机译:冷冻循环和持续差异的影响对关节的剪切力学性能具有显着影响。在本文中,对冻融处理接头进行了一系列接头直接剪切试验,以研究冷冻解冻循环的影响和关节剪切强度劣化的持久性。剪切强度和剩余强度随着冰冻解冻循环的增加和关节持久性增加而降低。剪切强度损坏主要在冰冻解冻循环的初始阶段产生,并且剪切强度在晚期冷冻解冻循环阶段略微降低。冻融周期对具有低持久性的关节剪切强度具有最小影响,但对具有高持久性的关节具有很大的效果。冻融循环引起的关节粗糙度的损害随着关节持久性的增加而增加。当关节持久性恒定时,剪切强度参数首先随着冷冻循环的循环减小,然后趋于稳定。凝聚力是控制剪切强度的主导因素。当搅拌循环是恒定的时,摩擦角首先持久地减小,然后快速降低,摩擦角是控制剪切强度的主体因子。

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