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首页> 外文期刊>Composite Structures >A strain-hardening microplane damage model for thin-walled textile-reinforced concrete shells, calibration procedure, and experimental validation
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A strain-hardening microplane damage model for thin-walled textile-reinforced concrete shells, calibration procedure, and experimental validation

机译:薄壁纺织品增强混凝土壳的应变硬化微平面损伤模型,校准程序和实验验证

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摘要

Thin-walled shell structures made of textile-reinforced concrete (TRC) exhibit a high load-bearing capacity and considerable ductility. However, the material behavior exhibits several interacting mechanisms of material disintegration that result in a complex, highly nonlinear structural response. In this paper, an anisotropic material model for TRC will be discussed that is able to capture those effects. The calibration of the material model is performed based on an inverse analysis using the strain-hardening response measured in a uniaxial tensile test. Finally, we validate the material model through a finite-element simulation of three-point bending tests as well as the complex biaxial load-bearing behavior as observed in slab tests with central loading. In this context, further issues such as the influence of large deflections and geometrical nonlinearity will be investigated. The calibrated model provides a valuable tool for an in-depth analysis of the structural behavior of thin-walled TRC shell structures. This is especially important for a realistic prediction of the deflections in the cracked state as well as load-bearing reserves resulting from stress redistributions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由纺织品增强混凝土(TRC)制成的薄壁壳体结构具有高承载能力和可观的延展性。然而,材料的行为表现出多种材料分解的相互作用机理,从而导致复杂的,高度非线性的结构响应。在本文中,将讨论能够捕获这些影响的TRC各向异性材料模型。基于使用单轴拉伸试验中测得的应变硬化响应的反分析,对材料模型进行校准。最后,我们通过三点弯曲试验的有限元模拟以及在中心载荷的平板试验中观察到的复杂的双轴载荷行为来验证材料模型。在这种情况下,将进一步研究诸如大挠度和几何非线性的影响。校准后的模型为深入分析薄壁TRC壳体结构的结构行为提供了有价值的工具。这对于真实预测破裂状态下的挠度以及应力重新分布所产生的承载储备尤其重要。 (C)2016 Elsevier Ltd.保留所有权利。

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