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Nonlinear Analysis of Masonry Walls Based on a Damage-Plastic Formulation

机译:基于损伤塑料配方的砌体墙体非线性分析

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Masonry structures subjected to seismic actions exhibit a complex nonlinear behaviour. To obtain a comprehensive representation of all the occurring nonlinear mechanisms, constitutive models including damage and plasticity are required and nonlinear dynamic analyses are considered the most reliable. Hence, models considering both degrading effects and hereditary nature of restoring forces are needed. Different approaches can be adopted, relying on microscopic, macroscopic, multi-scale and macroelement formulations. The latter are often adopted for real cases, mainly to reduce the computational burden of the analyses. The proposed macroelement accounts for typical flexural and shear in-plane failure mechanisms via two flexural hinges and a shear link, arranged in series with an elastic beam. The hysteretic behaviour is reproduced by a smooth model, in which the introduction of a damage function describes both strength and stiffness degradation effects. The model is used to perform comparisons with experimental results on masonry walls, with the aim of validating the numerical procedure and its capabilities to describe nonlinear masonry response.
机译:经受地震动作的砌体结构表现出复杂的非线性行为。为了获得所有发生的非线性机制的全面表示,需要包括损坏和塑性的本构模型,并且非线性动态分析被认为是最可靠的。因此,需要考虑衰减效应和恢复力的遗传性质的模型。可以采用不同的方法,依赖于微观,宏观,多尺度和宏观配方。后者通常用于实际情况,主要是为了减少分析的计算负担。所提出的宏观形态通过两个弯曲铰链和剪切连杆涂布典型的弯曲和剪切面内破坏机构,与弹性束串联布置。通过平滑模型再现滞后行为,其中引入损伤功能描述了强度和刚度降低效应。该模型用于对砌体墙壁的实验结果进行比较,目的是验证数字程序及其能力来描述非线性砌体响应。

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