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首页> 外文期刊>Construction and Building Materials >Compaction and volumetric analysis of cold in-place recycled asphalt mixtures prepared using gyratory, static, and impact procedures
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Compaction and volumetric analysis of cold in-place recycled asphalt mixtures prepared using gyratory, static, and impact procedures

机译:使用振动,静态和冲击程序制备冷真实沥青混合物的压实和体积分析

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摘要

Compaction is one of the most important factors to be considered while manufacturing laboratory samples of cold in-place recycled (CIR) mixtures. In this study, the effect of three laboratory compaction procedures (static, gyratory, and impact) on the volumetric performance of CIR mixtures was investigated. CIR specimens were manufactured with the same proportion of added water and bitumen emulsion, and using several levels of compaction, varying the number of gyrations and blows. The volumetric properties were evaluated by different procedures, both before and after curing. A comparison between the laboratory results of the different tests, the design target values, and actual in-field values was performed. It was observed that gyratory compaction proved to be the most versatile and one that best represented the real compaction. The bulk density procedure by dimensions was useful for laboratory design; however, it overestimated the sizes of the air void content by more than 10% compared to the field values.(c) 2021 The Author(s). Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
机译:压实而制造就地回收(CIR)的混合物冷的实验室样品将被认为是最重要的因素之一。在这项研究中,对CIR混合物的体积性能的三个实验室压实过程(静态,旋回和影响)的影响进行了研究。 CIR标本进行的加入水和沥青乳液,以及使用压实的几个级别相同的比例制造的,变化的和回转打击的次数。通过不同的程序之前和固化后的体积特性进行了评价。进行了不同的测试,设计目标值,和实际的现场值的实验室结果之间的比较。据观察,旋转压实被证明是最通用的和一个最能代表真正的压实。通过尺寸堆积密度过程是用于实验室设计有用;然而,它由10%以上相比,字段值高估了空气空隙含量的大小。(C)2021的作者(或多个)。由elsevier有限公司出版。这是CC By-NC-ND许可下的开放式访问文章(http://creativecommons.org/licenses/by-nc-nd/4.0/)。

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