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TRANSVERSELY ISOTROPIC DAMAGE AROUND CONDUCTING CRACK-TIP IN FOUR-POINT BENDING PIEZOELECTRIC BEAM

TRANSVERSELY ISOTROPIC DAMAGE AROUND CONDUCTING CRACK-TIP IN FOUR-POINT BENDING PIEZOELECTRIC BEAM
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摘要 A static damage constitutive model was proposed on basis of the electrical enthalpy density, and then some characteristics of transversely isotropic damage were discussed. Finally, the effects of both crack depth and applied loads on damage distributions were investigated through numerically analyzing transversely isotropic damage in a four_point bending PZT_PIC151 beam with a central conducting crack. Some conclusions were given: 1) Crack depth and mechanical loading have great influence on both mechanical and electrical damages.With their increment,the damages at crack_tip obviously increase and their region sizes also expand. 2) Effects of electrical loading on the two kinds of damages are obviously different. Electrical loading monotonously changes magnitude but region size of mechanical damage, whose effect on electrical damage is very complex. A static damage constitutive model was proposed on basis of the electrical enthalpy density, and then some characteristics of transversely isotropic damage were discussed. Finally, the effects of both crack depth and applied loads on damage distributions were investigated through numerically analyzing transversely isotropic damage in a four_point bending PZT_PIC151 beam with a central conducting crack. Some conclusions were given: 1) Crack depth and mechanical loading have great influence on both mechanical and electrical damages.With their increment,the damages at crack_tip obviously increase and their region sizes also expand. 2) Effects of electrical loading on the two kinds of damages are obviously different. Electrical loading monotonously changes magnitude but region size of mechanical damage, whose effect on electrical damage is very complex.
出处 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2005年第4期431-440,共10页 应用数学和力学(英文版)
基金 ProjectsupportedbytheNationalNaturalScienceFoundationofChina(No.10172036and 50378041)
关键词 transversely isotropic damage conducting crack piezoelectric ceramic four_point bending beam transversely isotropic damage conducting crack piezoelectric ceramic four_point bending beam
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