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Performance of Rubberized and Hybrid Rubberized Concrete Structures under Static and Impact Load Conditions

机译:静态和冲击载荷条件下橡胶和混合橡胶混凝土结构的性能

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摘要

In this study, rubberized concrete samples were prepared by partial substitution (5 %, 10 % and 20 % replacements by volume) of sand by waste crumb rubber, and tested under impact three-point bending load, as well as static load. Three types of specimens (size 50 × 100 × 500 mm) namely, plain concrete, rubberized concrete, and double layer concrete (with rubberized concrete top and plain concrete bottom) were loaded to failure in a drop-weight impact machine by subjecting to 20 N weight from a height of 300 mm, and another three similar specimens were used for the static load test. In both the tests, the load-displacement and fracture energy of each specimen were investigated. Finite-element simulations were also performed to study the dynamic behaviors of the samples, by using LUSAS V. 14 software. It was noticed that, the impact tup, and inertial and bending loads increased with the increase in the percentage of sand replacement by crumb rubber. It was interesting to observe that these effects were more significant in the double layer specimen compared to the plain and rubberized concrete samples. The static peak bending load always decreased with increase of rubber in the mix. In general, the strength and energy absorbing capability of rubberized concrete was better under impact loading than under static loading. The simulated load against displacement behaviors of all the samples were validated by the experimental results.
机译:在这项研究中,通过用废胶粒部分替代沙子(按体积替代5%,10%和20%的体积)来制备橡胶混凝土样品,并在冲击三点弯曲载荷以及静态载荷下进行了测试。将三种类型的试样(尺寸为50×100×500 mm),即普通混凝土,橡胶混凝土和双层混凝土(顶部为橡胶混凝土,底部为橡胶混凝土)在跌落式冲击机中加载,使其经受20次破坏。从300毫米高处取N磅,另外三个类似的样本用于静载荷测试。在这两个测试中,均研究了每个试样的载荷位移和断裂能。还使用LUSAS V.14软件进行了有限元模拟,以研究样品的动态行为。值得注意的是,冲击碎屑,惯性载荷和弯曲载荷随着碎屑橡胶替代砂的百分比的增加而增加。有趣的是,与普通和橡胶处理的混凝土样品相比,双层样品的这些影响更为明显。静态峰值弯曲载荷总是随着混合物中橡胶含量的增加而降低。通常,在冲击载荷下,橡胶混凝土的强度和能量吸收能力要好于静态载荷。实验结果验证了模拟载荷对所有样品位移行为的影响。

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