用户名: 密码: 验证码:
形状记忆合金薄板低速冲击载荷下热力耦合行为分析
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Experiment and simulation of thermomechanical coupled behavior of SMA under low velocity impact
  • 作者:任旋畅 ; 王骏 ; 许英杰 ; 张卫红
  • 英文作者:REN Xuanchang;WANG Jun;XU Yingjie;ZHANG Weihong;School of Mechanical Engineering,Northwestern Polytechnical University;Unmanned System Research Institute,Northwestern Polytechnical University;
  • 关键词:形状记忆合金 ; 低速冲击 ; 热力耦合 ; 本构模型 ; 数值分析
  • 英文关键词:shape memory alloy;;low-velocity impact;;thermomechanical behavior;;constitutive model;;numerical analysis
  • 中文刊名:HKCB
  • 英文刊名:Journal of Aeronautical Materials
  • 机构:西北工业大学机电学院;西北工业大学无人系统技术研究院;
  • 出版日期:2019-06-01
  • 出版单位:航空材料学报
  • 年:2019
  • 期:v.39
  • 基金:国家重点研发计划(2017YFB1102800);; 国家自然基金(11872310,11802241,5171101743);; 陕西省科技新星项目(2017KJXX-31)
  • 语种:中文;
  • 页:HKCB201903005
  • 页数:9
  • CN:03
  • ISSN:11-3159/V
  • 分类号:39-47
摘要
进行形状记忆合金(shape memory alloy,SMA)薄板不同冲击能量条件下低速冲击实验,以SMA热力学本构模型为理论基础,通过数值手段对超弹性SMA薄板的冲击响应进行仿真分析,探究冲击载荷作用下SMA热力耦合行为特征。结果表明:数值仿真结果与实验数据吻合良好,有效表征了SMA薄板冲击过程中的变形、相变、耗散、温变等热力耦合行为特征。
        The thermomechanical coupled behaviour of shape memory alloy(SMA) sheet under low velocity impact loading was investigated.Based on the SMA thermomechanical constitutive model,the impact response of SMA sheet was numerically simulated in software to explore the characteristics of SMA thermomechanical coupled behaviour under impact load.The numerical simulation results are in good agreement with the experimental data,which effectively characterizes the thermomechanical coupled behaviour,such as deformation,phase transformation,dissipation and temperature change,etc.during the impact of SMA sheet.
引文
[1]NEMAT-NASSER S,GUO W G.Superelastic and cyclic response of NiTi SMA at various strain rates and temperatures[J].Mechanics of Materials,2006,38(5):463-474.
    [2]黄学文,董光能,王慧,等.TiNi形状记忆合金阻尼特性的研究[J].材料工程,2003(5):3-6.(HUANG X W,DONG G N,WANG H,et al.Study on damping characteristics of TiNi shape memory alloy[J].Journal of Materials and Engineering,2003(5):3-6.)
    [3]SUN T,WANG L P,WANG M.(Ti,O)/Ti and(Ti,O,N)/Ti composite coatings fabricated via PⅢD for the medical application of NiTi shape memory alloy[J].Journal of Biomedical Materials Research:Part B:Applied Biomaterials,2011,96(2):249-260.
    [4]宁聪琴,周玉.医用钛合金的发展及研究现状[J].材料科学与工艺,2002,10(1):100-106.(NING C Q,ZHOU Y.Development and research status of biomedical titanium alloys[J].Materials Science and Technology,2002,10(1):100-106.)
    [5]JANI J M,LEARY M,SUBIC A,et al.A review of shape memory alloy research,applications and opportunities[J].Materials and Design,2014,56(4):1078-1113.
    [6]钱辉,李宏男,任文杰,等.形状记忆合金复合摩擦阻尼器设计及试验研究[J].建筑结构学报,2011,32(9):58-64.(QIAN H,LI H N,REN W J,et al.Experimental investigation of an innovative hybrid shape memory alloys friction damper[J].Journal of Building Structures,2011,32(9):58-64.)
    [7]HASHEMI S M T,KHADEM S E.Modeling and analysis of the vibration behavior of a shape memory alloy beam[J].International Journal of Mechanical Sciences,2006,48(1):44-52.
    [8]邹广平,李雨蕾,王丹丹,等.连续冲击载荷下镍钛形状记忆合金动态力学性能的实验研究[J].功能材料,2012,43(13):1678-1681.(ZOU G P,LI Y L,WANG D D,et al.The experimental study of dynamic mechanical property of Ni-Ti shape memory alloy[J].Journal of Functional Materials,2012,43(13):1678-1681.)
    [9]SPEICHER M S,DESROCHES R,LEON R T.Experimental results of a NiTi shape memory alloy(SMA)-based recentering beam-column connection[J].Engineering Structures,2011,33(9):2448-2457.
    [10]RAGHAVAN J,BARTKIEWICZ T,BOYKO S,et al.Damping,tensile,and impact properties of superelastic shape memory alloy(SMA)fiber-reinforced polymer composites[J].Composites:Part B,2010,41(3):214-222.
    [11]MEO M,MARULO F,GUIDA M,et al.Shape memory alloy hybrid composites for improved impact properties for aeronautical applications[J].Composite Structures,2013,95(1):756-766.
    [12]KIM E,LEE I,ROH J,et al.Effects of shape memory alloys on low velocity impact characteristics of composite plate[J].Composite Structures,2011,93(11):2903-2909.
    [13]TANAKA K.A thermomechanical sketch of shape memory effect:one-dimensional tensile behavior[J].Res.Mechanica,1986,18:251-263.
    [14]LIANG C,ROGERS C A.One-dimensional thermomechanical constitutive relations for shape memory materials[J].Journal of Intelligent Material Systems and Structures,1990,1(2):207-234.
    [15]BRINSON L C,LAMMERING R.Finite element analysis of the behavior of shape memory alloys and their applications[J].International Journal of Solids&Structures,1993,30:3261-3280.
    [16]BO Z,LAGOUDAS D C.Thermomechanical modeling of polycrystalline SMAs under cyclic loading,Part I:theoretical derivations[J].International Journal of Engineering Science,1999,37(9):1089-1140.
    [17]LAGOUDAS D C,SHU S G.Residual deformation of active structures with SMA actuators[J].International Journal of Mechanical Sciences,1999,41(6):595-619.
    [18]ZAKI W,MOUMNI Z,et al.A 3D model of the cyclic thermomechanical behavior of shape memory alloys[J].Journal of the Mechanics and Physics of Solids,2007,55(11):2427-2454.
    [19]MORIN C,MOUMNI Z,ZAKI W.Thermomechanical coupling in shape memory alloys under cyclic loadings:experimental analysis and constitutive modeling[J].International Journal of Plasticity,2011,27(12):1959-1980.
    [20]CHAO Y,KANG G,KAN Q,et al.Rate-dependent cyclic deformation of super-elastic NiTi shape memory alloy:thermo-mechanical coupled and physical mechanism-based constitutive model[J].International Journal of Plasticity,2015,72:60-90.
    [21]WANG J,MOUMNI Z,ZHANG W H.A thermomechanically coupled finite-strain constitutive model for cyclic pseudoelasticity of polycrystalline shape memory alloys[J].International Journal of Plasticity,2017,97:194-221.
    [22]NG.K.L,SUN.Q.P.Stress-induced phase transformation and detwinning in NiTi polycrystalline shape memory alloy tubes[J].Mechanics of Materials,2006,38(1/2):41-56.
    [23]WANG J,MOUMNI Z,ZHANG W H,et al.A 3D finitestrain-based constitutive model for shape memory alloys---counting for thermomechanical coupling and martensite reorientation[J].Smart Materials and Structures,2017,26(6):65006.
    [24]WANG J,MOUMNI Z,ZHANG W H,et al.A thermomechanically coupled finite deformation constitutive model for shape memory alloys based on hencky strain[J].International Journal of Engineering Science,2017,117:51-77.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700