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Effect of Polypropylene Fiber on Shrinkage Properties of Cement-stabilized Macadam

机译:聚丙烯纤维对水泥稳定碎石收缩性能的影响

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A parametric experimental study has been conducted to investigate the effect of polypropylene fiber on the shrinkage of cement-stabilized macadam. By means of the micrometer gauge method and the strain gauge method, the dry shrinkage coefficient and thermal shrinkage coefficient of cement-stabilized macadam were measured respectively. The results indicate that polypropylene fiber can effectively decrease the average dry shrinkage coefficient and average thermal shrinkage coefficient of cement-stabilized macadam. The average dry shrinkage coefficient of long curing period is smaller than that of short curing period, while the average thermal shrinkage coefficient of long curing period is much larger than that of shot curing period. When the fiber volume fraction is not beyond 0.1%, the average dry shrinkage coefficient and average thermal shrinkage coefficient are gradually decreasing with the increase in fiber volume fraction. Furthermore, polypropylene fiber appears to be highly effective in controlling dry and thermal shrinkage cracking of cement-stabilized macadam.
机译:已经进行了参数化实验研究,以研究聚丙烯纤维对水泥稳定的碎石的收缩率的影响。采用千分尺法和应变仪法分别测定了水泥稳定碎石的干缩系数和热缩系数。结果表明,聚丙烯纤维可有效降低水泥稳定碎石的平均干缩系数和平均热缩系数。长固化期的平均干缩系数小于短固化期的平均干缩系数,而长固化期的平均干缩系数远大于喷丸固化期的平均干缩系数。当纤维体积分数不超过0.1%时,随着纤维体积分数的增加,平均干收缩系数和平均热收缩系数逐渐降低。此外,聚丙烯纤维在控制水泥稳定的碎石干裂和热收缩开裂方面似乎非常有效。

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