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Flexural bearing capacity and related ductility demand for masonry sections under nonlinear constitutive law

机译:非线性本构关系下砌体截面的抗弯承载力及相关的延性要求

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This paper aims at examining the maximum bearing capacity of rectangular masonry cross-sections subjected to eccentric compression, by assuming a nonlinear constitutive law characterized by two parameters defining stress-strain curve of the material. The variation of these parameters permits us to represent a wide variety of materials; therefore the ductility required of these materials in order for a section to achieve the maximum bending moment compatible with an average normal stress is also determined. The proposed approach can be utilized to evaluate the safety condition of masonry bearing walls, like those characterizing buildings of historical and/or monumental interest, for which the stress state can become dangerous because of eccentricity in the loads or due to horizontal seismic forces. Some experimental tests confirm the reliability of the proposed procedure.
机译:本文旨在通过假设具有两个参数的非线性本构关系来定义材料的应力-应变曲线,从而研究矩形砌体在偏心压缩下的最大承载力。这些参数的变化使我们能够代表各种各样的材料。因此,还确定了这些材料所需的延展性,以使截面达到与平均法向应力相容的最大弯曲力矩。所提出的方法可用于评估砌体承重墙的安全状况,例如那些具有历史和/或纪念意义的建筑物的安全状况,由于荷载的偏心或由于水平地震力,应力状态可能变得危险。一些实验测试证实了所提出程序的可靠性。

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