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Autogenous self-healing properties of cement-stabilized macadam after microcracking

机译:微裂纹后水泥稳定型麦田的自愈性自愈性能

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Microcracking techniques can be applied to reduce the shrinkage stress of cement-stabilized macadam (CSM) and prevent cracking of the base course. Meanwhile, the microcracks will gradually heal without serious impact on the pavement during the base curing. In this study, a control model for microcracking degree under the coupling conditions of microcracking load, microcracking time and material properties was established according to the response surface method (RSM). Then specimens with ten working conditions were produced and tested to analyze the effects of microcracking time and degree on the healing of mechanical properties and mesoscopic structure, and the changes during the healing process were characterized quantitatively. The results showed that the degree of microcracking had a more significant effect on healing characteristics compared with the microcracking time. Microcracking was best controlled at 40%, and microcracking at 2 days of curing was relatively optimal. In addition, the final product coverage of the specimens with the microcracking degrees (30%, 40%, 50%) could exceed 90%. The analysis indicates that CSM possesses good self-healing properties after precracking. (C) 2020 Elsevier Ltd. All rights reserved.
机译:可以应用微裂化技术以减少水泥稳定的汞碳(CSM)的收缩应力并防止基础路线的开裂。同时,微裂纹将在基础固化过程中逐渐愈合而对路面的严重影响。在该研究中,根据响应面法(RSM)建立了微裂纹负耦合条件下的微裂纹度的控制模型,微裂隙时间和材料特性。然后产生具有十种工作条件的样品并测试,以分析微裂纹时间和程度对机械性能愈合的影响,并且定量表征愈合过程中的变化。结果表明,与微裂纹时间相比,微捕发程度对愈合特性具有更大的影响。微裂化最好在40%的40%控制,固化2天的微裂纹相对最佳。此外,具有微裂纹度的试样的最终产品覆盖率(30%,40%,50%)可能超过90%。分析表明,在预裂后,CSM具有良好的自我愈合性能。 (c)2020 elestvier有限公司保留所有权利。

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