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常洪雷
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教授 同专业硕导
性别:男
毕业院校:东南大学
学历:研究生(博士)毕业
学位:工学博士学位
在职信息:在职
所在单位:齐鲁交通学院
入职时间:2018-05-28
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[21] 常洪雷. The features of different mineral admixtures affecting the self-healing capacity of cementitious-bas. CONSTRUCTION AND BUILDING MATERIALS, 297, 2021.
[22] 常洪雷. Influence of carbonation on chloride penetration of pastes under cyclic wetting-drying conditions. ADVANCES IN CEMENT RESEARCH, 33, 126, 2021.
[23] 常洪雷. 基于聚乙烯醇制备的自修复微胶囊的性能评估. 《材料导报》, 35, 2021.
[24] 常洪雷. Molecular dynamics simulation of the interfacial interaction mechanism between functional groups on . Construction and building materials, 2021.
[25] 常洪雷. Influence of SAP on the chloride penetration and corrosion behavior of steel bar in concrete. CORROSION SCIENCE, 2020.
[26] 王剑宏. 水下盾构隧道耐久性与全生命周期设计. 隧道与地下工程灾害防治, 2020.
[27] 常洪雷. 生石灰和膨胀剂对砂浆自修复性能的影响. 《东南大学学报(自然科学版)》, 2020.
[28] 常洪雷. 再生骨料混凝土在护岸工程中应用的可行性. 《材料导报》, 2020.
[29] 常洪雷. Comprehensive resistance of fair-faced concrete suffering from sulfate attack under marine environme. CONSTRUCTION AND BUILDING MATERIALS, 277, 2021.
[30] 刘健 and 常洪雷. Influence of carbonation on chloride penetration rate of cement paste under cyclic wetting and dryin. ADVANCES IN CEMENT RESEARCH, 2020.
[31] 常洪雷 and 刘健. Capillary suction induced water absorption and chloride transport in non-saturated concrete: the inf. CONSTRUCTION AND BUILDING MATERIALS, 2019.
[32] 常洪雷 and 刘健. Durability and Aesthetics of Architectural Concrete under Chloride Attack or Carbonation. MATERIALS, 2020.
[33] 常洪雷. 无碳化影响时干湿交替下水泥基材料中氯离子传输行为. 《东南大学学报(自然科学版)》, 2019.
[34] 常洪雷. The Significance of Dispersion of nano-SiO2 on Early Age Hydration of Cement Pastes. Materials and design, 2019.
[35] 常洪雷 , 葛智 and 刘健. Influence of pore structure on chloride penetration in cement pastes subject to wetting-drying cycle. Advances in Materials Science and Engineering, 2019.
[36] 常洪雷. The inhibiting effect and mechanisms of smart polymers on the transport of fluids throughout nano-ch. Applied Surface Science, 2019.
[37] 常洪雷 and 刘健. Feasibility of utilizing recycled aggregate concrete for revetment construction of the lower Yellow . Material, 2019.
[38] 常洪雷 and 刘健. Chloride maximum phenomenon near the surface of cement paste induced by moisture evaporation and car. Materials and Structures/Materiaux et Constructions, 46, 2018.
[39] 常洪雷 and 刘健. A novel method for assessing C-S-H chloride adsorption in cement pastes. CONSTRUCTION AND BUILDING MATERIALS, 2019.
[40] 常洪雷 and 刘健. Chloride distribution feature in surface layer of cementitious-based materials under mere cyclic wet. 2019.
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