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Thin-walled shell structures made of textile-reinforced concrete Part II: Experimental characterization, ultimate limit state assessment and numerical simulation

机译:纺织品增强混凝土制成的薄壁壳结构第二部分:实验表征,极限状态评估和数值模拟

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摘要

The present paper describes a design approach for textile-reinforced concrete (TRC) shells which reflects the interaction between normal forces and bending moments based on the cross-sectional strength characteristics of the material determined experimentally. The influence of oblique loading on the composite strength of TRC elements with flexible reinforcement is included in a normalized interaction diagram for combined loading. As an example, the design approach is applied to the ultimate limit state assessment of a TRC shell in double curvature. Furthermore, the general applicability of the design approach is discussed in the light of the non-linear loadbearing behaviour of TRC. Due to its strain-hardening tensile response, stress redistributions within the shell result in loadbearing reserves. Details of the structural design and production solutions developed and applied during the realization of the TRC shell structure are described in the companion paper (Part I).
机译:本文介绍了一种纺织品增强混凝土(TRC)壳的设计方法,该方法基于实验确定的材料的横截面强度特性,反映了法向力和弯矩之间的相互作用。斜载荷对带有柔性加强件的TRC元件的复合强度的影响包括在组合载荷的归一化相互作用图中。例如,将设计方法应用于双曲率TRC壳体的极限状态评估。此外,根据TRC的非线性承载行为,讨论了设计方法的一般适用性。由于其应变硬化拉伸响应,壳体内的应力重新分布会导致承载力储备。随附论文(第I部分)中介绍了在实现TRC壳结构期间开发和应用的结构设计和生产解决方案的详细信息。

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