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A sophisticated simulation for the fracture behavior of concrete material using XFEM 被引量:3

A sophisticated simulation for the fracture behavior of concrete material using XFEM
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摘要 The development of a powerful numerical model to simulate the fracture behavior of concrete material has long been one of the dominant research areas in earthquake engineering. A reliable model should be able to adequately represent the discontinuous characteristics of cracks and simulate various failure behaviors under complicated loading conditions. In this paper, a numerical formulation, which incorporates a sophisticated rigid-plastic interface constitutive model coupling cohesion softening, contact, friction and shear dilatation into the XFEM, is proposed to describe various crack behaviors of concrete material. An effective numerical integration scheme for accurately assembling the contribution to the weak form on both sides of the discontinuity is introduced. The effectiveness of the proposed method has been assessed by simulating several well-known experimental tests. It is concluded that the numerical method can successfully capture the crack paths and accurately predict the fracture behavior of concrete structures. The influence ofmode-Ⅱ parameters on the mixed-mode fracture behavior is further investigated to better determine these parameters. The development of a powerful numerical model to simulate the fracture behavior of concrete material has long been one of the dominant research areas in earthquake engineering. A reliable model should be able to adequately represent the discontinuous characteristics of cracks and simulate various failure behaviors under complicated loading conditions. In this paper, a numerical formulation, which incorporates a sophisticated rigid-plastic interface constitutive model coupling cohesion softening, contact, friction and shear dilatation into the XFEM, is proposed to describe various crack behaviors of concrete material. An effective numerical integration scheme for accurately assembling the contribution to the weak form on both sides of the discontinuity is introduced. The effectiveness of the proposed method has been assessed by simulating several well-known experimental tests. It is concluded that the numerical method can successfully capture the crack paths and accurately predict the fracture behavior of concrete structures. The influence ofmode-Ⅱ parameters on the mixed-mode fracture behavior is further investigated to better determine these parameters.
出处 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2017年第4期859-881,共23页 地震工程与工程振动(英文刊)
基金 Scientific Research Fund of Institute of Engineering Mechanics,China Earthquake Administration under Grant No.2016A01 the National Key Research and Development Plan under Grant No.2016YFC0701108 the National Natural Science Foundation of China under Grant Nos.51238012,51322801)
关键词 fracture behavior concrete material earthquake engineering interface constitutive model XFEM fracture behavior concrete material earthquake engineering interface constitutive model XFEM
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