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Investigation of the fracture energy of hot mixtures asphalt incorporating metallic wastes via semi-circular bending test

机译:通过半圆形弯曲试验调查热混合物沥青沥青骨折的骨折能量

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摘要

In the study, metallic wastes were evaluated in order to reduce environmental impacts and to contribute fracture energy of HMA mixtures. In this context, aluminum chips and iron powders were included in the mixtures at 0.50%, 1.00%, and 1.50% (by weight of mixtures), and the effect of HMA mixtures on fracture energy was investigated by Semi-Circular Bending (SCB) test. Experiments were performed on a total of 28 SCB test specimens from 7 different series including reference, Al-0.50, Al-1.00, Al-1.50, Fe-0.50, Fe-1.00, Fe-1.50. Basic physical properties, dissipated energy (DE), fracture energy (G(f)), flexibility index (FI), and crack resistance index (CRI) values of HMA specimens were measured and compared. Based on test results, carrying load capacity and G(f) values of the mixtures were increased in the use of waste iron powders. A decrease in G(f) and peak load values were obtained while increasing the aluminum chips ratios. However, with the use of 0.5% waste aluminum chips were contributed G(f), peak load, CRI, and FI values compared by the reference sample. It is concluded that both aluminum chips and iron powders contributed to fracture energy of HMA mixtures. (C) 2021 Elsevier Ltd. All rights reserved.
机译:在该研究中,评估金属废弃物以减少环境影响并促进HMA混合物的骨折能量。在这种情况下,将铝芯片和铁粉包含在0.50%,1.00%和1.50%(混合物重量)的混合物中,并通过半圆形弯曲(SCB)研究了HMA混合物对骨折能量的影响测试。通过具有7种不同系列的总共28个SCB试样进行实验,包括参考,Al-0.50,Al-1.00,Al-1.50,Fe-0.50,Fe-1.00,Fe-1.50。测量并比较了基本物理性质,耗散能量(DE),断裂能量(G(F)),柔韧性指数(FI)和HMA样本的抗裂性指数(CRI)值。基于测试结果,在使用废铁粉末时,携带负载能力和混合物的G(F)值增加。在增加铝芯片比率的同时获得G(f)和峰值值的降低。然而,通过使用0.5%的废物铝芯片,通过参考样品比较的G(F),峰值负荷,CRI和固定值。结论是,铝芯片和铁粉都有助于HMA混合物的骨折能量。 (c)2021 elestvier有限公司保留所有权利。

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