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Performance of Confinement on Masonry

机译:砌体监牢的性能

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摘要

Most of the confinement models for masonry, empirical in nature, have been calibrated against their own sets of experimental data or they are simply derived from concrete. Masonry confinement is still highly correlated to concrete confinement, so that extensive experimental and theoretical studies are still needed to assess more reliable mechanical models of masonry confinement. Due to the extremely large variability in masonry performance, general equations cannot always be provided that are equally suitable for every masonry type. In this paper a novel approach is proposed, based on a mechanically based strength theory. In this way it is possible to differentiate various masonries based on the mechanical properties of the masonry as a whole. The proposed model is able to account also for non uniform confining stress fields, i.e. as it is found in non circular cross sections, so that the key innovative aspect is the different contribution of confining stress field not equal in the two transverse directions x and y. The effect of confinement is evaluated explicitly considering a plasticity model under triaxial compression. According to this model it is possible to assess the sensitivity of the confinement performance as a function of characteristic mechanical properties of masonry, and in particular those that potentially provide differences in the behaviour of different masonry materials.
机译:本质上是经验性的,对于砌体的大多数约束模型已经根据他们自己的实验数据集进行了校准,或者仅从混凝土中得出。砌体监禁仍与混凝土监禁高度相关,因此仍需要广泛的实验和理论研究来评估更可靠的砌体监禁力学模型。由于砌体性能的巨大差异,无法始终提供适用于每种砌体类型的通用方程。在本文中,提出了一种基于机械强度理论的新颖方法。以这种方式,有可能基于整个砌体的机械性能来区分各种砌体。所提出的模型还能够解决非均匀约束应力场,即在非圆形横截面中发现的问题,因此创新的关键方面是在两个横向x和y上约束应力场的不同贡献不相等。 。考虑三轴压缩下的可塑性模型,明确评估了约束的效果。根据该模型,可以评估限制性能的敏感性,作为砌体特征机械性能的函数,尤其是那些可能提供不同砌体材料性能差异的性能。

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