Oh Kyu-Hwan, Kim Soo-Yeon, Park Yong-Gul
Department of Railway Construction, Graduate School of Railway, Seoul National University of Science & Technology, Gongneung-ro, Nowon-gu, Seoul 01811, Korea.
Construction Technology Institute, Seoul National University of Science & Technology, Gongneung-ro, Nowon-gu, Seoul 01811, Korea.
Materials (Basel). 2020 Sep 23;13(19):4229. doi: 10.3390/ma13194229.
A joint- or crack-opening resistance evaluation method for the selection of optimal waterproofing material for a railroad bridge deck is proposed. The joint opening range (mm) for the evaluation, and a typical load case of a high-speed double-track railroad bridge structure deck, is analyzed through the finite element method (FEM) and the results of analysis are used to calculate the minimum opening range. The evaluation method is then demonstrated with 4 commonly used waterproofing types of cementitious membrane system: a polyurethane coating system, self-adhesive asphalt sheet system and synthetic polymerized rubber gel composite asphalt sheet system. Five specimens of each type are subjected to continuous joint opening under 4 different joint width range conditions (1.5, 3.0, 4.5, and 6.0 mm), and the joint-opening resistance performance is compared. The proposal for the evaluation criteria and the specimen test results demonstrate how the evaluation method is pertinent for future selection of waterproofing membranes for the sustainability of high-speed railroad bridge deck structures.
提出了一种用于铁路桥面板最佳防水材料选择的接缝或裂缝开口阻力评估方法。通过有限元法(FEM)分析了评估的接缝开口范围(mm)以及高速双轨铁路桥梁结构桥面板的典型荷载工况,并将分析结果用于计算最小开口范围。然后,用4种常用的水泥基膜系统防水类型对该评估方法进行了论证:聚氨酯涂层系统、自粘沥青片材系统和合成聚合橡胶凝胶复合沥青片材系统。每种类型的5个试样在4种不同的接缝宽度范围条件(1.5、3.0、4.5和6.0mm)下承受连续接缝开口,并比较接缝开口阻力性能。评估标准的提议和试样测试结果表明了该评估方法对于未来高速铁路桥面板结构可持续性的防水膜选择具有重要意义。