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Low temperature performance of laboratory produced asphalt rubber (AR) mixes containing polyoctenamer

机译:实验室生产的含聚辛烯的沥青橡胶(AR)混合物的低温性能

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摘要

The use of the additive polyoctenamer (PO) in asphalt rubber (AR) binders helps to improve their storage stability and to reduce their stickiness and tackiness, while not affecting the low temperature performance of the AR binders and mixes. The objective of this paper was to determine if the use of PO had any impact over the low temperature performance of laboratory mixes produced with AR binders that were also laboratory produced. The low temperature performance of the laboratory produced asphalt rubber (AR) mixes were evaluated by means of the semicircular bend geometry test, utilizing two types of ground tire rubber (ambient and cryogenic) at two different percentages of polyoctenamer (PO). Stiffness, fracture toughness and fracture energy for the mixes were obtained in order to statistically evaluate how the variables influence their low temperature performance. Overall, the laboratory test results indicate that the use of PO at the dosage utilized and the rubber types at the percentage employed will not adversely impact the low temperature performance of AR mixes; furthermore the use of PO can increase the fracture toughness of AR mixes, making the pavements less brittle at lower temperatures. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在沥青橡胶(AR)粘合剂中使用添加剂聚辛烯(PO)有助于提高其储存稳定性并降低其粘性和粘性,同时不影响AR粘合剂和混合物的低温性能。本文的目的是确定PO的使用是否对使用AR粘合剂(也是实验室生产的)生产的实验室混合物的低温性能有任何影响。实验室生产的沥青橡胶(AR)混合物的低温性能通过半圆弯曲几何测试进行了评估,其中使用了两种不同百分比的聚辛烯(PO)的磨碎的轮胎橡胶(环境和低温)。获得混合物的刚度,断裂韧性和断裂能,以便统计评估变量如何影响其低温性能。总体而言,实验室测试结果表明,按所使用的剂量使用PO和按所使用的百分比使用橡胶类型不会对AR混合物的低温性能产生不利影响。此外,PO的使用可以增加AR混合物的断裂韧性,从而使路面在较低温度下的脆性降低。 (C)2016 Elsevier Ltd.保留所有权利。

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