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Numerical evaluation of test setups for determining the shear strength of masonry

机译:用于确定砌体抗剪强度的测试装置的数值评估

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The bond shear strength between masonry units and mortar is the weakest link in a masonry wall. Different material tests have been developed in order to characterize this bond behaviour. The objective of this study is to evaluate three common test setups through non-linear finite element analysis. The simulation method is based on our recent development of cohesive elements, which allows for the first time to fully capture the force-deformation characteristic of shear tests in 3D from the onset of loading until the residual shear strength and to retrieve typical shear failure modes observed in experiments. This study provides new insights into our understanding and interpretation of such shear tests: (1) elastic analysis, which has been widely used in the past, does not yield a stress distribution that is representative of the stress distribution at maximum resistance; (2) while friction coefficient is well estimated (the error is less than 10%), the local cohesion is underestimated by all three test setups of which the error lies between 13 and 32%; (3) the randomness of the material properties leads to a further underestimation of the mean value of the local cohesion; (4) differences in the material properties of the two joints of the triplet test units do not jeopardize the applicability of this test setup and estimations of the mean properties are obtained with similar reliability as for couplet tests.
机译:砌体单元与砂浆之间的粘结抗剪强度是砌体墙中最薄弱的环节。为了表征这种粘结行为,已经开发了不同的材料测试。本研究的目的是通过非线性有限元分析来评估三种常见的测试设置。该模拟方法基于我们最近开发的内聚元件,它允许首次从载荷开始直到残余剪切强度,完全捕获3D剪切测试的力-变形特性,并获取观察到的典型剪切破坏模式在实验中。这项研究为我们对此类剪切试验的理解和解释提供了新的见解:(1)过去已广泛使用的弹性分析不会产生代表最大阻力下的应力分布的应力分布; (2)虽然摩擦系数得到了很好的估计(误差小于10%),但是所有三个测试设置的局部内聚力都被低估了,这三个测试设置的误差在13%至32%之间; (3)材料特性的随机性导致进一步低估了局部内聚力的平均值; (4)三重态测试单元两个接头的材料性能差异不会危害该测试装置的适用性,并且获得的平均性能估算值与对联测试相似。

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