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作 者:刘聪 卢祎苗 吴正光[1] 王彤 孙海峰 LIU Cong;LU Yimiao;WU Zhengguang;WANG Tong;SUN Haifeng(College of Civil Science and Engineering,Yangzhou University,Yangzhou 225127,China)
机构地区:[1]扬州大学建筑科学与工程学院,江苏扬州225127
出 处:《新型建筑材料》2020年第7期41-45,共5页New Building Materials
基 金:国家自然科学基金项目(51578480);2019年江苏省研究生科研与实践创新计划项目(XSJCX19_075,SJCX19_0889)。
摘 要:以废弃建筑垃圾破碎再生过程中产生的再生微粉为原料制备地聚合物,得出再生微粉为原料的地聚合物配合比,对再生微粉地聚合物所制备稳定碎石基层材料适用性进行研究。结果表明:再生微粉地聚合物最佳配比为m(再生微粉)∶m(矿渣粉)=50∶50,6%NaOH、6%Na2SiO3复合激发,水固比为0.4。采用碱激发再生微粉制备地聚合物替代水泥,推荐使用30%再生骨料替代天然骨料,与水泥稳定材料相比能够有效降低基层材料的失水敏感性,提高材料的收缩性能。再生微粉地聚合物稳定碎石完全可以应用于施工,在公路改扩建工程中循环应用具有较好前景。The recycled micropowder produced during the process of crushing and recycling waste construction is used as raw material to prepare the polymer,and the optimum ratio of the polymer of the recycled micropowder is obtained,then the applicability of the polymer stabilized macadam base material with recycled micropowder is studied. The results show that the optimum ratio of polymer with recycled micropowder is m(recycled micropowder)∶m(slag powder)=50∶50,NaOH dosage is 6%,Na2 SiO3 dosage is 6%,water-solid ratio is 0.4. Replacing cement with recycled micropowder polymer,it is recommended to use 30% recycled aggregate instead of natural aggregate. Compared with cement stabilized material,it can effectively reduce the water loss sensitivity of the base material and improve the shrinkage performance of the material. The polymer stabilized macadam with recycled micropowder can be applied to construction. This material has good prospects for cyclic application in highway reconstruction and expansion projects.
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