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Low Velocity Impact Response Analysis of Shape Memory Alloy Reinforced Composite Beam

Low Velocity Impact Response Analysis of Shape Memory Alloy Reinforced Composite Beam
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摘要 The low velocity impact responses of shape memory alloy ( SMA ) reinforced composite beams were analyzed by employing the finite element method. The finite element dynamic equntion was solved by the Newmark direct integration method, the impact contact force was determined asing the Hertzian contact law, and the influence of SMA .fibers on stiffiwss matrix is studied. Numerical results show that the SMA fibers can effectively improve the low velocity impact response property of composite beam. The low velocity impact responses of shape memory alloy ( SMA ) reinforced composite beams were analyzed by employing the finite element method. The finite element dynamic equntion was solved by the Newmark direct integration method, the impact contact force was determined asing the Hertzian contact law, and the influence of SMA .fibers on stiffiwss matrix is studied. Numerical results show that the SMA fibers can effectively improve the low velocity impact response property of composite beam.
作者 吴永东
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2005年第3期70-73,共4页 武汉理工大学学报(材料科学英文版)
基金 SupportedbytheKeyResearchProjectoftheMinistryofEducation(No.00085)
关键词 shape memory alloy composite beam low velocity impact FEM shape memory alloy composite beam low velocity impact FEM
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参考文献7

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