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Evaluation of Cement Kiln Dust-Stabilized Reclaimed Asphalt Pavement Aggregate Systems in Road Bases

机译:水泥窑粉尘稳定再生回收沥青路面骨料骨料骨料骨料

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Road rehabilitation and reconstruction generate large supplies of reclaimed asphalt pavement (RAP) aggregate, and recycling into asphalt paving mixtures is the predominant application. Cement kiln dust (CKD), also known as cement bypass dust, is a by-product material generated during production of portland cement. In Oman, where recycling of pavement materials is not practiced, a first attempt was made at combining two by-product materials for use in road construction. Conservation of natural resources and preservation of the environment are two benefits that could be gained by reusing waste materials. The potential use in road bases of CKD-stabilized RAP and RAP with virgin aggregate mixtures was investigated. Physical, compaction, and uncon fined compressive strength tests were conducted on RAP and virgin aggregate blends of 100% to 0%, 90% to 10%, 80% to 20%, and 0% to 100%. Samples were prepared using CKD at 0%, 3%, 5%, 7%, 10%, 15%, and 20% and were cured for 3,7, and 28 days in plastic bags at room temperature. Results indicate that the maximum dry density and unconfined compressive strength of RAP generally increase with addition of virgin aggregate and CKD. The moisture content―dry density curves for CKD-stabilized RAP aggregate mixtures did not show a distinctive peak similar to that of the 100% virgin aggregate blend. Longer curing periods will produce higher strength values. CKD content of 15% seems to be the optimum for achieving maximum strength.
机译:道路康复和重建产生大量的再生沥青路面(RAP)骨料,并回收成沥青铺设混合物是主要的应用。水泥窑粉尘(CKD),也称为水泥旁路灰尘,是在港口水泥生产过程中产生的副产物材料。在阿曼,没有实践路面材料的回收,首次尝试结合两种副产物用于道路建设。保护自然资源和环境保护是通过重用废料来获得的两个益处。研究了CKD稳定的RAP和RAP的潜在用途,与原始的聚集体混合物进行了调查。在RAP和Virgin骨料共混物上进行物理,压实和unn罚款抗压强度试验100%-0%,90%至10%,80%至20%,0%至100%。使用0%,3%,5%,7%,10%,15%和20%的CKD制备样品,并在室温下在塑料袋中固化3,7和28天。结果表明,随着原始骨料和CKD的添加,RAP的最大干密度和不合适的抗压强度通常增加。用于CKD稳定的RAP聚集体混合物的水分含量 - 干密度曲线并未显示出与100%原始骨料混合物中的独特峰。较长的固化期将产生更高的强度值。 CKD含量为15%似乎是实现最大强度的最佳选择。

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