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Static Behaviour of Contact Molding GFRP Composite Highway Bridge Deck Panels

机译:接触模塑GFRP复合材料公路桥梁桥面板的静态性能

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The main objective of this investigation is to study the behaviour of glass fibre reinforced polymer (GFRP) composite highway bridge deck panels under static loading. A GFRP composite bridge deck panel of 3000 mm length, 1000 mm width, and 300 mm depth was fabricated using contact moulding process. The cross section of the GFRP composite bridge deck panel was a 3-cell rectangular section with additional stiffeners connecting the web to the top flange of the deck. A rectangular patch load that represents the IRC Class A wheeled vehicle was applied at the centre of the bridge deck panel and tested under factored load upto failure. SOLID45 and SHELL93 elements were used to model the GFRP composite bridge deck panel and analyzed using the finite element analysis (FEA) software ANSYS. The maximum deflection, and maximum strain at factored load and load at failure obtained from FEA were compared with experimental data and also with the specifications by the Ohio Department of Transportation (ODOT), USA. Based on the experimental and analytical studies it is concluded that the fabricated bridge deck panels satisfied the performance criteria and can be used in highways under IRC Class A loading.
机译:这项研究的主要目的是研究玻璃纤维增​​强聚合物(GFRP)复合材料公路桥梁桥面板在静态载荷下的性能。使用接触成型工艺制造了长度为3000毫米,宽度为1000毫米,深度为300毫米的GFRP复合桥面板。 GFRP复合材料桥面板的横截面为3单元矩形截面,带有附加的加强筋,将腹板连接到面板的顶部凸缘。代表IRC A级轮式车辆的矩形补丁载荷施加在桥面板的中央,并在分解载荷下进行了测试,直至失效。使用SOLID45和SHELL93元素对GFRP复合材料桥面板进行建模,并使用有限元分析(FEA)软件ANSYS对其进行分析。从有限元分析获得的最大挠度和分解应力下的最大应变以及失效时的载荷与美国俄亥俄州交通运输部(ODOT)的实验数据以及规范进行了比较。根据实验和分析研究,得出的结论是,所制造的桥面板符合性能标准,可在IRC A级荷载下用于高速公路。

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