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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Bonded-particle model-based simulation of artificial rock subjected to cyclic loading
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Bonded-particle model-based simulation of artificial rock subjected to cyclic loading

机译:基于核心模型的人工岩体模拟循环载荷

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摘要

A nonlinear parallel-bonded stress corrosion (NPSC) model is proposed to simulate the fatigue characteristics of artificial rock (concrete) during cyclic loading. Numerical simulations of fatigue tests replicate the main mechanical features of concrete specimens subjected to cyclic loading observed in the laboratory. A nonlinear reduction speed of the bond diameter between two bonded particles represents the damage rate induced by the fatigue load. The damage rate is proportional to the maximum cyclic load level when the minimum cyclic load level is fixed. Compared with laboratory data, a logarithmic function of bond diameter in the NPSC model resulted in the best fit to simulate the fatigue behaviour of concrete. The simulation includes acoustic emission (AE) monitoring during fatigue tests. The axial strain of the assembly is governed by the evolution of bond breakages. The sum of released bond strain energy is documented as value proportional to cumulative AE energy. The simulation results show very similar evolution compared with laboratory data, which verifies the effectiveness of AE energy simulation.
机译:提出了非线性平行键合应力腐蚀(NPSC)模型来模拟循环载荷期间人造岩(混凝土)的疲劳特性。疲劳试验的数值模拟复制了在实验室中观察到循环载荷的混凝土试样的主要机械特征。两个粘合颗粒之间的粘合直径的非线性降低速度代表疲劳载荷引起的损伤率。当最小循环负载水平固定时,损坏率与最大循环负载水平成比例。与实验室数据相比,NPSC模型中粘合直径的对数函数导致了最适合模拟混凝土的疲劳行为。仿真包括在疲劳测试期间的声学发射(AE)监测。组件的轴向应变由粘合断裂的演变管辖。释放的债券应变能量的总和被记录为与累积AE能量成比例的价值。与实验室数据相比,仿真结果显示出非常类似的进化,这验证了AE能量模拟的有效性。

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