混凝土预制梁铸铁韧性剪切键的数值模拟与仿真

H. Purnomo, M. Orientilize, R. Nursani, F. Hardjanto
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引用次数: 1

摘要

本文讨论了不含环氧树脂的铸铁球墨金属剪切键连接节段预制混凝土梁的数值模拟与仿真。与其他类型的铸铁相比,FCD金属具有更高的延展性。为了确定FCD金属剪切键的最佳形状,本文进行了数值研究,研究了四种不同几何形状的全尺寸FCD金属剪切键对混凝土构件剪力和作用在连接件中线的预应力的响应。利用ANSYS理论包对剪力键及相邻混凝土构件进行了非线性有限元分析。FCD金属和混凝土材料的适当本构关系是由试验结果和已发表的文献值得出的。研究考虑了两种不同的预应力大小和两种不同的混凝土抗压强度。数值计算结果表明,在剪力键公部前环板上引入锥度可以显著提高剪力键公部前环板的承载能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Modelling and Simulation of Ferro Casting Ductile Shear Keys for Precast Concrete Girders
This paper discusses the numerical modelling and simulation of Ferro casting ductile (FCD) metal shear key, or connector, without epoxy used for joining segmental precast concrete girders. In contrast to other types of cast iron, FCD metals exhibit higher level of ductility. In an effort to identify an optimum shape of an FCD metal shear key the numerical study in this paper investigates the response of four different geometries of full scale FCD metal shear key to shearing force from the concrete members and prestressing force acting in the centreline of the connector. Nonlinear finite element analysis of the shear key and the adjoining concrete members are conducted using ANSYS academic package. The appropriate constitutive relations for the FCD metal and concrete materials are obtained from test results and published values in the literature. The study considers two different magnitudes of prestressing force and two different concrete compressive strengths. Numerical results indicate that introducing a taper onto the forward ring plate of the male part of the shear key results in a significant increase in its load-bearing capacity.
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