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连续配筋混凝土路面结构优化及性能评价 被引量:8
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作者 李盛 杨帆 +1 位作者 曹前 刘朝晖 《土木工程学报》 EI CSCD 北大核心 2017年第7期122-128,共7页
针对目前连续配筋混凝土路面(CRCP)的结构特征和缺陷,对CRCP结构进行了研发及优化设计,垫层用碎石,基层采用碾压混凝土,面层分上下两层,上面层采用橡胶水泥混凝土,基层和面层之间设沥青混凝土抗冲刷层;行车道及硬路肩1/2宽度范围内的面... 针对目前连续配筋混凝土路面(CRCP)的结构特征和缺陷,对CRCP结构进行了研发及优化设计,垫层用碎石,基层采用碾压混凝土,面层分上下两层,上面层采用橡胶水泥混凝土,基层和面层之间设沥青混凝土抗冲刷层;行车道及硬路肩1/2宽度范围内的面层设纵横向连续钢筋以及可滑移支座,硬路肩另外1/2宽度范围的部分为素混凝土,在硬路肩1/2宽度处设纵向接缝,在面层设横向诱导切缝;钢筋采用环氧树脂净浆涂层处理,横向钢筋和纵向钢筋呈30°~60°角;运用断裂力学、损伤力学理论和数值仿真法,对CRCP加铺改造后沥青层的损伤开裂进行了研究,结果表明:新的CRCP结构沥青加铺层的疲劳损伤寿命大幅提高,裂缝扩展强度大大减小,路用性能得到有效提升,经济效益显著。研究成果已有一定的工程应用,提出的设计理念及方法可为连续配筋混凝土路面的合理设计提供理论依据和参考,也可为我国道路设计理论的发展提供有益借鉴。 展开更多
关键词 连续配筋混凝土路面 抗冲刷层 可滑移支座 诱导缝 优化设计
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Effect of Al-deposition on erosion resistance of plasma sprayed thermal barrier coating 被引量:5
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作者 张小锋 周克崧 +3 位作者 董淑娟 徐伟 宋进兵 刘敏 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第8期2587-2593,共7页
A columnar Al film was firstly deposited on the top of 7%Y2O3?stabilized zirconia (7YSZ) ceramic coating in thermal barrier coating (TBC) system by magnetron sputtering. A vacuum treatment was then carried out at... A columnar Al film was firstly deposited on the top of 7%Y2O3?stabilized zirconia (7YSZ) ceramic coating in thermal barrier coating (TBC) system by magnetron sputtering. A vacuum treatment was then carried out at 700 °C for 1 h and 900 °C for 5 h to improve the erosion resistance of Al-deposited TBC. Aα-Al2O3 layer was in situ synthesized on the top of 7YSZ coating via vacuum heat treatment. The microstructure evolution of Al-deposited TBC illustrated that a loose surface-layer and a dense sub-layer formed on the top of 7YSZ coating after vacuum treatment. The phase structures of the as-sprayed TBC and the Al-deposited TBC after vacuum heat treatment were characterized by X-ray diffraction (XRD) and transmission electron microscope (TEM) assisted with focused ion beam (FIB). Particulate erosion resistances of the as-sprayed TBC and treated TBC were compared at room temperature. In addition, erosion mechanism and schematic diagram were proposed. The results show that the Al-deposited TBC after vacuum heat treatment has better particulate erosion resistance than the as-sprayed one. 展开更多
关键词 thermal barrier coating erosion resistance in situ synthesis
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