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Viability of the Use of Nanoclay-Modified Asphalt Binders in Roofing Shingles

机译:在屋面瓦中使用纳米粘土改性沥青粘合剂的可行性

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Asphalt shingles are the most commonly used material on residential roofs in the United States. Asphalt is the primary input in the production of roofing asphalt shingles. In the production process of modified asphalt membranes for shingles, asphalt is modified with thermoplastic polymers such as atactic-polypropylene (APP) and styrene-butadiene-styrene (SBS). On the other hand, the use of nanoclays or organoclays is a potential alternative of traditional polymers, which are very expensive and not abundant. Nanoclays are derived from naturally occurring clay minerals and are capable of improving the physical and mechanistic properties of polymers and rubbers. Studies have showed that nanoclays improve stiffness, aging, and fire resistance behavior of asphalt binders. The objective of this study is to find out the viability of nanoclay as a modifier for asphalt binders to be used in roofing shingles and to find out the moisture susceptibility of nanoclay-modified asphalt binders by surface free energy analysis. To this end, different percentages of natural nanoclays in the form of bag fines (PBF) obtained from a local asphalt plant were used modify a base (straight run) binder. Nanoclays have not shown any detrimental effects on the delamination resistance of the binder. Thus, nanoclays are expected to be a viable alternative of expensive polymers and have potentials to reduce material costs, produce durable shingles, and induce sustainability in asphalt roofing practices in the United States.
机译:沥青瓦是美国住宅屋顶上最常用的材料。沥青是生产屋顶沥青瓦的主要投入。在用于木瓦的改性沥青膜的生产过程中,沥青是用热塑性聚合物(如无规聚丙烯(APP)和苯乙烯-丁二烯-苯乙烯(SBS))改性的。另一方面,使用纳米粘土或有机粘土是传统聚合物的潜在替代方法,这些聚合物非常昂贵且不丰富。纳米粘土源自天然粘土矿物,能够改善聚合物和橡胶的物理和机械性能。研究表明,纳米粘土可改善沥青粘合剂的刚度,老化和耐火性能。这项研究的目的是发现纳米粘土作为用于屋顶木瓦的沥青粘合剂的改性剂的可行性,并通过表面自由能分析发现纳米粘土改性的沥青粘合剂的湿气敏感性。为此,使用了从本地沥青工厂获得的不同百分比的袋装细粉(PBF)形式的天然纳米粘土来改性基础(直线型)粘合剂。纳米粘土对粘合剂的抗分层性没有显示出任何有害作用。因此,在美国,纳米粘土有望成为昂贵聚合物的可行替代品,并具有降低材料成本,生产耐用带状板并在沥青屋面实践中实现可持续性的潜力。

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