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Force-displacement characteristics of simply supported beam laminated with shape memory alloys 被引量:4

Force-displacement characteristics of simply supported beam laminated with shape memory alloys
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摘要 As a preliminary step in the nonlinear design of shape memory alloy(SMA) composite structures,the force-displacement characteristics of the SMA layer are studied.The bilinear hysteretic model is adopted to describe the constitutive relationship of SMA material.Under the assumption that there is no point of SMA layer finishing martensitic phase transformation during the loading and unloading process,the generalized restoring force generated by SMA layer is deduced for the case that the simply supported beam vibrates in its first mode.The generalized force is expressed as piecewise-nonlinear hysteretic function of the beam transverse displacement.Furthermore the energy dissipated by SMA layer during one period is obtained by integration,then its dependencies are discussed on the vibration amplitude and the SMA's strain(Ms-Strain) value at the beginning of martensitic phase transformation.It is shown that SMA's energy dissipating capacity is proportional to the stiffness difference of bilinear model and nonlinearly dependent on Ms-Strain.The increasing rate of the dissipating capacity gradually reduces with the amplitude increasing.The condition corresponding to the maximum dissipating capacity is deduced for given value of the vibration amplitude.The obtained results are helpful for designing beams laminated with shape memory alloys. As a preliminary step in the nonlinear design of shape memory alloy(SMA) composite structures,the force-displacement characteristics of the SMA layer are studied.The bilinear hysteretic model is adopted to describe the constitutive relationship of SMA material.Under the assumption that there is no point of SMA layer finishing martensitic phase transformation during the loading and unloading process,the generalized restoring force generated by SMA layer is deduced for the case that the simply supported beam vibrates in its first mode.The generalized force is expressed as piecewise-nonlinear hysteretic function of the beam transverse displacement.Furthermore the energy dissipated by SMA layer during one period is obtained by integration,then its dependencies are discussed on the vibration amplitude and the SMA's strain(Ms-Strain) value at the beginning of martensitic phase transformation.It is shown that SMA's energy dissipating capacity is proportional to the stiffness difference of bilinear model and nonlinearly dependent on Ms-Strain.The increasing rate of the dissipating capacity gradually reduces with the amplitude increasing.The condition corresponding to the maximum dissipating capacity is deduced for given value of the vibration amplitude.The obtained results are helpful for designing beams laminated with shape memory alloys.
出处 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2011年第6期1065-1070,共6页 力学学报(英文版)
基金 supported by the National Natural Science Foundation of China (10872142 and 10632040) New Century Excellent Talents in University of China (NCET-05-0247) the Key Program of the Natural Science Foundation of Tianjin (09JCZDJ26800)
关键词 Shape memory alloy Laminated beam Bilinear hysteretic model Force-displacement characteristics - Energy dissipation Shape memory alloy Laminated beam Bilinear hysteretic model Force-displacement characteristics - Energy dissipation
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  • 1戴德沛.阻尼减振降噪技术[M].西安:西安交通大学出版社,1988..
  • 2秦惠增 任勇生.具有SMA的结构动力学响应分析[J].振动工程学报,2000,13:98-103.
  • 3Birman V.Review of mechanics of shape memory alloy structures[J].Appl Mech Rev,1997,50(11):629-645.
  • 4Chu L C.Integrated intelligent structures for suppressing static aerothermoelastic deformations and flutter of panels,AFOSRTR-95 0053[R].Virginia:C & C Technologies,Inc,1995.
  • 5Dano M L,Hyer M W.SMA-induced snap-through of unsymmetric fiber-reinforced composite laminates[J].Int J Solids and Structures,2003,40(22):5949-5972.
  • 6Park J S,Kim J H,Moon S H.Vibration of thermally postbuckled composite plates embedded with shape memory alloy fibers[J].Composite Structures,2004,63(2):179-188.
  • 7Park J S,Kim J H,Moon S H.Thermal post-buckling and flutter characteristics of composite plates embedded with shape memory alloy fibers[J].Composites Part B,2005,36 (8):627-636.
  • 8Cho M,Kim S.Structural morphing using two-way shape memory effect of SMA International[J].International Journal of Solids and Structures,2005,42(5/6):1759-1776.
  • 9Brinson L C.One-dimensional thermomechanical constitutive relations for shape memory alloy:Thermomechanical derivation with non-constant material functions and redefined martensite internal variable[J].J Intelli Mater Syst & Struct 1993,4:229-242.
  • 10Zhong Z W,Mei C.Finite element vibration analysis of composite plates with embedded shape memory alloy fibers at elevated temperatures,De-Vol 84-3[R].New York:ASME,1984:675-684.

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