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Short- and long-term properties of glass fiber reinforced asphalt mixtures

机译:玻璃纤维增​​强沥青混合物的短期和长期性能

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This study is aimed at investigating short- and long-term aged properties of glass fibre (GF)-reinforced asphalt mixtures using indirect tensile strength (ITS) and associated fracture energy, moisture susceptibility, creep compliance, resilient modulus, and indirect tension continuous and discontinuous (IDT) fatigue tests. Also, to portray the influence of fibre reinforcement at micro level, a micromechanical finite element model (MFEM) was built utilising representative volume element (RVE) to consider the effect of fibre dose, length, and dispersion (fully aligned or random) on the mechanical characteristics (or stress-strain curve) of the composite under unidirectional strain perturbation. Based on the study results, for the same binder, compared to shorter fibre (i.e. 6-mm length), the application of 12-mm GF to the mixtures showed unnoticeable change in the short- and long-term properties of the reinforced mixtures. On the whole, the GF can impart positive characteristics to the asphalt mixture such as increase strength, resistance to rutting, less susceptibility to moisture damage, retard fatigue cracking, enhance healing capability, and combat adverse aging changes. Unlike the effect of fibre length, the numerical model proved that the orientation and concentration of GF showed noticeable influence on the mechanical response of the composite. Overall, using the GF in asphalt mixtures can help produce durable bituminous pavements. Although the present study investigated the GF-reinforced bituminous materials from performance stand point, one can speculate that building GF-reinforced pavements is more costly initially compared to unreinforced pavements however the benefits may be received over time by extending service life and saving the maintenance cost of the bituminous pavement.
机译:本研究旨在研究使用间接拉伸强度(其)和相关的断裂能,水分敏感性,蠕变顺应性,弹性模量和间接张力连续的玻璃纤维(GF)玻璃纤维(GF)的短期和长期老化性能。不连续(IDT)疲劳测试。此外,为了描绘微观水平的纤维增强的影响,利用代表体积元素(RVE)建立了微机械有限元模型(MFEM),以考虑纤维剂量,长度和色散(完全对齐或随机)的影响单向菌株扰动下复合材料的机械特性(或应力 - 应变曲线)。基于研究结果,对于相同的粘合剂,与较短的纤维(即6毫米长度)相比,将12mm GF的施加到混合物中,在增强混合物的短期和长期性质中施加不符号变化。总体而言,GF可以赋予沥青混合物的阳性特性,例如增加强度,抗rutting的抗性,对湿度损伤的敏感性,延缓疲劳裂解,增强愈合能力,以及对抗不利老化变化。与纤维长度的效果不同,数值模型证明了GF的取向和浓度对复合材料的机械响应表示明显影响。总的来说,使用沥青混合物中的GF可以帮助生产耐用的沥青路面。尽管本研究研究了来自性能待命点的GF增强的沥青材料,但是可以推测建筑GF加强路面最初与未原始的路面更昂贵,但是通过扩展使用寿命并节省维护成本,可以随着时间的推移来接收益处沥青路面。

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