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Aggregate Freeze-Thaw Testing and D-Cracking Field Performance 30 Years Later

机译:30年后汇总冻融测试和D-Cracking Field Performance

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Premature deterioration of concrete pavement due to D-cracking has been a problem in Kansas since the 1930s. Kansas geology includes mineable limestone coarse aggregates with variable durability in the eastern portion of the state. Due to this variability and historically poor D-cracking field performance, the Kansas DOT initiated intensive identification and tracking of individual mined beds, as well as frequent durability testing during production in the 1980s. D-cracking field performance of concrete pavements containing limestone coarse aggregates was investigated in 2010-2012. Results of this investigation indicate that the rate of D-cracking decreased, but the minimum rate of D-cracking presence in concrete pavements is more than 30%. In reaction to these results, KDOT implemented changes aimed at mitigating the risk of D-cracking. Implementation actions included increasing the number of freeze-thaw cycles for aggregate in concrete prisms from 300 to 660 cycles, freeze-thaw testing of all aggregate types (not just limestone) in concrete, focusing aggregate sampling at the point of concrete production, and including an "acceptable field-performance history" criterion for concrete aggregates. Ongoing research is being conducted to develop new methods to identify durable aggregates and faster testing techniques.
机译:自20世纪30年代以来,由于D-Cressing引起的混凝土路面的过早恶化是堪萨斯州堪萨斯州的问题。堪萨斯地质包括具有在状态的东部的可变耐用性的可拆卸石灰岩粗聚集体。由于这种可变性和历史缺乏破解场效,堪萨斯DOT在20世纪80年代生产的各个采矿床中的密集识别和跟踪,以及频繁的耐久性测试。在2010 - 2012年研究了含有石灰石粗骨料的混凝土路面的D裂解场性能。该研究的结果表明,D裂解的速率下降,但混凝土路面中的D裂解存在的最小速率超过30%。在对这些结果的反应中,KDOT实施了旨在减轻D裂解风险的变化。实施措施包括将混凝土棱镜骨料的冻融循环的数量增加到660周期,混凝土中的混凝土中的所有骨料类型(不仅仅是石灰石)的冻融测试,聚焦在混凝土生产点,包括用于混凝土聚集体的“可接受的现场性能历史”标准。正在进行持续的研究以开发识别耐用的聚集体和更快的测试技术的新方法。

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