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AN ADVANCED CAP MODEL FOR CONCRETE MATERIALS

机译:混凝土材料的先进帽模型

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Concrete is a pressure-sensitive material. To ensure the safety of structures, it is required to understand the mechanical behavior of concrete. The stress-strain relation of concrete is highly nonlinear and pressure dependent. Therefore, design problems involving concrete materials need an appropriate constitutive model to quantify its stress-strain relation. Presented in this paper is a new cap-type constitutive law for concrete. The model is prominent in the sense that it satisfies the compatibility between the failure surface and the yield cap. It has modified the classical cap model to obtain smooth yield surfaces. In addition, the model effectively describes strength variations along various directions in the octahedral plane. The model has shown to realistically predict concrete responses in experiments by 7 parameters. The proposed concept can also be extended to include as many previous models for describing various observed material behavior as it is required.
机译:混凝土是一种压敏材料。为确保结构的安全性,需要了解混凝土的机械性能。混凝土的应力 - 应变关系高度非线性和压力依赖性。因此,涉及混凝土材料的设计问题需要适当的组成型模型来量化其应力应变关系。本文提出是一种新型混凝土型本构规则。该模型在意义上是突出的,即它满足故障表面和产量盖之间的兼容性。它已修改经典盖模型以获得光滑的屈服表面。另外,该模型有效地描述了八面体平面中的各个方向的强度变化。该模型显示在7个参数中实心地预测实验中的具体反应。所提出的概念也可以扩展到包括以前的前一种模型,用于描述所需的各种观察到的材料行为。

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