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Performance improvement of asphalt concretes using fiber reinforcement

机译:纤维增强沥青混凝土的性能改进

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摘要

This study reports on the laboratory performance, field performance and cost analysis of fiber-reinforced asphalt concrete (FR-AC) pavement using AC60/70 and polymer modified asphalt (PMA) as binders. The performance testing included indirect tensile resilient modulus, indirect tensile strength modulus, indirect tensile fatigue life, dynamic creep and wheel-tracker tests. Field trials of AC60/70 and PMA mixtures, were undertaken with and without fibers and the International Roughness Index, texture depth, and rutting of the mixtures were measured over time. The PMA + Fiber mixture exhibited the best performance among the materials tested. The performance of AC60/70 + Fiber mixture were comparable to PMA mixture. The improvement of both fatigue cracking and rutting were similar for AC60/70 + Fiber mixtures while the improvement of fatigue cracking was higher than rutting for the PMA mixtures. Since the performance of FR-AC was similar for both laboratory and plant mixed specimens, the laboratory mix design results can be used to interpret the field performance. The fiber reinforced AC60/70 mixture was found to be the most economical. The outcome of this research can be used as a guide, for establishing the specification of FR-AC pavement in Thailand and other countries using similar mix design.
机译:本研究报告了使用AC60 / 70和聚合物改性沥青(PMA)作为粘合剂的纤维增强沥青混凝土(FR-AC)路面的实验室性能,现场性能和成本分析。性能测试包括间接拉伸弹性模量,间接拉伸强度模量,间接拉力疲劳寿命,动态蠕变和轮式跟踪器测试。随着时间的推移,用纤维和不含纤维和不含纤维的纤维和国际粗糙度指数,纹理深度和纹理的田间试验。 PMA +纤维混合物在测试的材料中表现出最佳性能。 AC60 / 70 +纤维混合物的性能与PMA混合物相当。对于AC60 / 70 +纤维混合物,疲劳裂化和车辙的改善是相似的,而疲劳裂解的改善高于PMA混合物的速度。由于FR-AC的性能类似于实验室和植物混合标本,因此可以使用实验室混合设计结果来解释现场性能。发现纤维增强的AC60 / 70混合物是最经济的。该研究的结果可用作指导,用于在泰国和其他国家使用类似的混合设计建立FR-AC路面规范。

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