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Mechanics of hollow concrete block masonry prisms under compression: Review and prospects

机译:空心混凝土砌块砌体棱镜受压力学:回顾与展望

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The aim of this work is to critically assess the mechanical properties of hollow concrete masonry using experimental results from prisms constructed with blocks of two different strengths and four types of mortar. A key conclusion is that mortar is mostly responsible for the non-linear behavior of masonry. Moreover, a strongly non-linear relationship between masonry elasticity modulus and compres-sive strength is found, which contradicts the simple linear relation proposed by Eurocode 6 [CEN. Eurocode 6: Design of masonry structures - Part 1 - Common rules for reinforced and unreinforced masonry structures. EN-1996-1-1; 2005.]. The porosity of mortar and the state of stress that mortar undergoes in the process of compressive loading can be responsible for changes in the mechanical properties, such as elasticity modulus and Poisson's ratio. Finally, different types of mortars induce different failure modes in the masonry prisms and there is clear evidence that the failure of hollow concrete masonry starts after onset of mortar crushing. In order to better reproduce the observed experimental behavior, a tentative model for the mortar Poisson's ratio variation Upon loading is also presented.
机译:这项工作的目的是使用由两种不同强度的块和四种类型的砂浆制成的棱镜的实验结果来严格评估空心混凝土砌筑的机械性能。一个关键的结论是,砂浆主要负责砌体的非线性行为。此外,发现砌体弹性模量与抗压强度之间存在强烈的非线性关系,这与欧洲规范6 [CEN。欧洲规范6:砌体结构的设计-第1部分-钢筋和非钢筋砌体结构的通用规则。 EN-1996-1-1; 2005。]。砂浆的孔隙率和砂浆在压缩载荷过程中所承受的应力状态可能是造成机械性能变化的原因,如弹性模量和泊松比。最后,不同类型的砂浆在砌体棱柱中引起不同的破坏模式,并且有明确的证据表明空心混凝土砌体的破坏是在砂浆破碎开始后开始的。为了更好地重现观察到的实验行为,还提出了砂浆泊松比随载荷变化的暂定模型。

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