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A Four-parameter Multi-axial Strength Criterion for Lightweight Aggregate (LWA) Concrete

机译:用于轻质骨料(LWA)混凝土的四参数多轴强度标准

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Concrete utilized in engineering structures is usually subject to the action of multi-axial stress. The strength theory of concrete is significant to structure design and saving of construction material. Experimental results have revealed that lightweight aggregate (LWA) concrete represents platform flow plasticity under high compressive stress. The ultimate strength surface of LWA concrete under multi-axial stress intersects with the hydrostatic stress axis at two different points, which is completely different from that of the normal concrete as the ultimate strength surface is open-ended. So the strength criterion aimed at normal concrete cannot fit LWA concrete. In this paper, a fourparameter multi-axial strength criterion for LWA concrete is presented. The strength envelope of the proposed model in the deviatoric plane adopted elliptic curve similar to that of Willam-Warnke model, and the tensile and compressive meridians are represented by quadratic functions with four parameters. Two methods can be used for the determination of the four parameters and their merits and drawbacks are compared by the analysis of experimental data.
机译:工程结构中使用的混凝土通常受到多轴应力的作用。混凝土的强度理论是结构设计和施工材料的结构性。实验结果表明,轻质骨料(LWA)混凝土在高压缩应力下代表平台流动塑性。根据与在两个不同的点的静水应力轴,它是由与普通混凝土的最终强度表面的完全不同的多轴向应力相交LWA混凝土的强度极限表面是开放式的。因此,旨在普通混凝土的强度标准不能适合LWA混凝土。本文介绍了LWA混凝土的四个参数多轴强度标准。在偏平面所提出的模型的强度包络采用类似于威廉姆-Warnke模型的椭圆曲线,并在拉伸和压缩经络由二次函数具有四个参数来表示。通过对实验数据的分析比较,可以使用两种方法来确定四个参数,并且它们的优点和缺点进行了比较。

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