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首页> 外文期刊>Journal of Performance of Constructed Facilities >Premature Cracking from Cement-Treated Base and Treatment to Mitigate Its Effect
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Premature Cracking from Cement-Treated Base and Treatment to Mitigate Its Effect

机译:水泥处理基层过早开裂及其缓解措施

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摘要

A forensic study was conducted to investigate the premature cracking distress on an ongoing construction project on State Highway (SH) 24. Transverse cracks occurred at approximately every 9-15 m (30-50 ft) along the 9.6 km (5.9 mi) project. The field tests involved both destructive tests, including trenching and coring, and nondestructive tests, including falling weight deflectometer (FWD) and ground-penetrating radar (GPR) tests. The laboratory tests mainly included cement-treated base material and asphalt mixture material series tests. By integrating all the test results, it was concluded that the premature cracking was originating from the cement-treated base (CTB). Although CTB is not a new concept in pavement construction, stabilization of base materials is a complex process, which, if not handled properly, may lead to premature failures. The two primary factors that contributed to the premature failure are (1) an excessive amount of cement in the CTB, and (2) a high moisture content when the CTB was compacted (almost 2% above optimum moisture). It was believed the possibility of premature failure could be reduced significantly, if the lab verification tests were conducted on the CTB before construction started. Pavement life analysis was conducted to evaluate the current structure adequacy to sustain future traffic. In addition, extensive material design was conducted for the final wearing course asphalt mixture, which was intended to mitigate the effect of existing cracks by resisting crack propagation from the underlying structure.
机译:进行了法医研究,调查了正在进行中的国道24号高速公路建设项目的过早开裂困扰。在9.6公里(5.9英里)的工程中,大约每9-15 m(30-50英尺)发生横向开裂。现场测试既涉及破坏性测试(包括挖沟和取芯),也涉及非破坏性测试,包括落锤偏转仪(FWD)和探地雷达(GPR)测试。实验室测试主要包括水泥处理的基础材料和沥青混合料的系列测试。综合所有测试结果,可以得出结论,过早开裂是由水泥处理过的基料(CTB)引起的。尽管CTB在路面施工中不是一个新概念,但基础材料的稳定化是一个复杂的过程,如果处理不当,可能会导致过早损坏。导致过早失效的两个主要因素是(1)CTB中的水泥过量,以及(2)CTB压实时含水量高(比最佳含水量高出近2%)。据信,如果在施工开始之前在CTB上进行了实验室验证测试,则过早失效的可能性将大大降低。进行了路面寿命分析,以评估当前结构是否足以维持未来的交通。此外,对最终的磨损过程沥青混合料进行了广泛的材料设计,旨在通过阻止裂缝从底层结构中扩散来减轻现有裂缝的影响。

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