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Experimental Study and Failure Mechanism Analysis of Rubber Fiber Concrete under the Compression-Shear Combined Action

机译:压缩剪切组合作用下橡胶纤维混凝土的实验研究与破坏机理分析

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摘要

In order to examine the compression-shear combined mechanical properties of rubber fiber concrete, an experimental study was carried out on rubber fiber concrete of three different configurations using a material compression-shear testing machine by considering different axial compression ratios. The failure modes and shear stress-strain curves of rubber fiber concrete under different loading conditions were obtained. By comparatively analyzing the mechanical parameters of rubber fiber concrete under different axial compression ratios, the following conclusions were drawn. With the increase of the axial compression ratio, the failure mode in the shear direction gradually developed from a relatively straight crack to a main crack accompanied by a certain amount of axial cracks; meanwhile, the number of concrete slags on the shear failure section was gradually increased and the friction marks were gradually deepened. The addition of rubber particles increased the randomness and discreteness of the concrete upon failure, while fibers inhibited the development of oblique micro-cracks and the dropping of concrete slags. The shear stress of the concrete specimen containing rubber particles was significantly lower than those without rubber particles. Comparatively, fibers showed little effect on the shear stress. As the axial compression ratio increased, the shear stress and shear strain of rubber fiber concrete were gradually increased, but the increasing amplitude of shear stress tended to become flattened. Under the influence of the axial compression ratio, the shear stress of C-0%-0%, C-30%-0%, and C-30%-0.6% was increased by 4.57 times, 3.26 times, and 2.69 times, respectively, suggesting a gradually decreasing trend. At the same time, based on the principal stress space and the octahedral stress space, the compression-shear combined failure criterion was proposed for the three different rubber fiber concretes. The research findings are of great significance to the engineering application and development of rubber fiber concrete.
机译:为了检查橡胶纤维混凝土的压缩剪切综合力学性能,通过考虑不同的轴向压缩比,在三种不同配置的橡胶纤维混凝土上进行实验研究。得到了不同负载条件下橡胶纤维混凝土的故障模式和剪切应力 - 应变曲线。通过在不同的轴向压缩比下比较分析橡胶纤维混凝土的机械参数,得出了以下结论。随着轴向压缩比的增加,剪切方向中的故障模式从相对直的裂缝逐渐发展到伴随着一定量的轴裂;同时,剪切失效部分上的混凝土渣的数量逐渐增加,摩擦痕迹逐渐加深。橡胶颗粒的添加增加了混凝土在发生故障时增加了随机性和离散性,而纤维抑制了倾斜微裂缝的发展和混凝土渣的滴。含有橡胶颗粒的混凝土试样的剪切应力显着低于没有橡胶颗粒的剪切应力。相比之下,纤维对剪切应力效果很小。随着轴向压缩比的增加,橡胶纤维混凝土的剪切应力和剪切应变逐渐增加,但剪切应力的幅度增加趋于变平。在轴向压缩比的影响下,C-0%-0%,C-30%-0%和C-30%-0.6%的剪切应力增加了4.57倍,3.26倍和2.69倍,分别表明趋势逐渐降低。同时,基于主应力空间和八面体应力空间,提出了三种不同橡胶纤维混凝土的压缩剪切组合的故障标准。研究结果对橡胶纤维混凝土的工程应用和开发具有重要意义。

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