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Experimental and numerical study of multi-leaf masonry walls

机译:多叶砌体墙的实验与数值研究

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摘要

A research programme was carried out with the aim of investigating the mechanical behaviour of multiple-leaf stone masonry walls. A number of experimental tests were performed on three-leaf specimens, consisting of two external leaves made of stone bricks and mortar joints, and an internal leaf in mortar and stone aggregate. The specimens differed from each other in terms of interface geometry, stone nature, and loading conditions. A numerical model was developed to predict the nonlinear response of the specimens. The model is characterized by a damage tensor, which allows one to describe the damage-induced anisotropy accompanying the cracking process. Comparisons between the predicted and measured failure loads are quite satisfactory in most of the studied cases. The numerical procedure still needs to be improved to accurately describe the post-peak behaviour, by avoiding mesh-dependency effects related to the strain-softening behaviour of the material.
机译:通过调查多叶石砌体墙的力学行为的目的进行了一项研究计划。在三叶样品上进行了许多实验试验,包括由石砖和砂浆接头制成的两个外叶,以及砂浆和石骨料的内叶。在界面几何形状,石材性和装载条件方面,标本彼此不同。开发了一种数值模型来预测标本的非线性响应。该模型的特征在于损坏张量,这允许人们描述伴随裂化过程的损伤引起的各向异性。在大多数研究的情况下,预测和测量的故障负载之间的比较非常令人满意。通过避免与材料的应变软化行为相关的网格依赖性效应,仍然需要改善数值过程以准确描述后峰值行为。

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