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Finite element modelling of the biaxial behaviour of high-performance fibre-reinforced cement composites (HPFRCC) using Concrete Damaged Plasticity

机译:高性能纤维增强水泥复合材料(HPFRCC)使用混凝土破坏塑性的双轴行为的有限元建模

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摘要

High-performance fibre-reinforced cement or concrete composites (HPFRCC) are increasingly used in structural applications exposed not only to uniaxial but also complex stress states. Current finite element models for these materials have however been only validated for uniaxial stress states, and mostly restricted to cement composites with relatively limited strain hardening capacity in tension. To facilitate the numerical analysis and design of more complex structures, this paper adapts and validates the Concrete Damaged Plasticity (CDP) model for both urn- and biaxial stress states, and for cement composites with a large strain hardening capacity (ratio of failure stress to linear stress limit more than 8). The validation of the numerical model is clone by performing laboratory biaxial tension-tension tests under various load cases. For the latter, an adapted cruciform specimen was designed. The strain distribution in the specimen as well as its evolution with increasing load correspond well. As the results show, the adapted CDP model can simulate the nonlinear strain hardening behaviour in tension different from the linear behaviour in compression - of high-performance cement composites for both uniaxial as well as biaxial stress states. Moreover, failure can be simulated. (C) 2015 Elsevier B.V. All rights reserved.
机译:高性能纤维增强水泥或混凝土复合材料(HPFRCC)越来越多地用于不仅承受单轴应力而且承受复杂应力状态的结构应用中。然而,这些材料的当前有限元模型仅针对单轴应力状态进行了验证,并且主要限于具有相对有限的拉伸应变硬化能力的水泥复合材料。为便于对更复杂的结构进行数值分析和设计,本文针对and骨和双轴应力状态以及具有大应变硬化能力的水泥复合材料(破坏应力与线性应力极限大于8)。通过在各种载荷情况下进行实验室双轴拉伸试验来克隆数值模型。对于后者,设计了适合的十字形样品。试样中的应变分布及其随载荷增加而演变。结果表明,改进的CDP模型可以模拟高性能水泥复合材料在单轴和双轴应力状态下在拉伸过程中的非线性应变硬化行为(与压缩时的线性行为不同)。此外,可以模拟故障。 (C)2015 Elsevier B.V.保留所有权利。

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