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Mechanic behaviors of the thermoviscoelastic matrix composites with shape memory fiber |
HE Weibo; JIN Ming; ZHAO Yongli |
School of Civil Engineering and Architecture; Beijing Jiaotong University; Beijing 100044 |
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Cite this article:
HE Weibo JIN Ming ZHAO Yongli. Mechanic behaviors of the thermoviscoelastic matrix composites with shape memory fiber. Chin J Mater Res, 2009, 23(1): 17-21.
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Abstract A stress-strain relation of the thermoviscoelastic matrix composites with pre-strained NiTi fiber is proposed in the field of variable temperature based on the thermoviscoelasticity theory and the rule of mixtures, and in view of the process of martensite reverse transformation. During the reverse transformation and the thermoviscoelastic state of matrix, due to matrix relaxation modulus decreasing,the results show that upon the step constant stress, the compression strain of the composites increases rapidly, and the recovery stress of the NiTi fiber increases then decreases; Under the step constant strain, the increase of the composites stress become slow then fast, till steady. The behaviors of the composites, and the NiTi fiber actuation performance are influenced by higher temperature as well as the material parameters.
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Received: 22 April 2008
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Fund: Supported by National Natural Science Foundation of China No.90205007. |
1 J.G.Boyd, D.C.Lagoudas, Thermomechanical response of shape memory composites, Journal of Intelligent Material Systems and Structures, 5(3), 333(1994)
2 J.Wang, Y.P.Shen, Macromechanics of composites reinforced in the aligned SMA short fibers in uniform thermal fields, Smart Materials and Structures, 9, 69(2000)
3 S.Marfia, Micro-macro analysis of shape memory alloy composites, International Journal of Solids and Structures, 42, 3677(2005)
4 ZHU Yuping, DUI Guansuo, Three phase micromechanical modeling for a shape memory alloy reinforced composite, Key Engineering Materials, 324-325, 939(2006)
5 J.Aboudi, The response of shape memory alloy composites, Smart Materials and Structures, 6(1), 1(1997)
6 M.Cherkaoui, Q.P.Sun, G.Q.Song, Micromechanics modeling of composite with ductile matrix and shape memory alloy reinforcement, International Journal of Solids and Structures, 37(11), 1577(2000)
7 ZHU Yiguo, Lu Hexiang, YANG Dazhi, Mechanical properties of elastoplastic matrix composite reinforced by long SMA fibers, Acta Materiae Compositae Sinica, 19(2),89(2002)
(朱Yi国, 吕和祥, 杨大智, SMA长纤维增强弹塑性基体复合材料的力学性能, 复合材料学报, 19(2),89(2002))
8 ZHANG Zhen, SHEN Yapeng, Mechanical properties of SMA composites embedded with aligned SMA short fiber in elastoplastic matrix, Acta Materiae Compositae Sinica, 21(6), 173(2002)
(张臻, 沈亚鹏, 形状记忆合金短纤维增强弹塑性基体复合材料的力学行为, 复合材料学报, 21(6), 173(2002))
9 X.W.Du, G.Sun, A study on the deflection of shape memory alloy reinforced thermo-viscoelastic beam, Composites Science and Technology, 64, 1375(2004) 10 SUN Shuangshuang, SUN Guojun, Influence of thermoviscoelastic behavior of polymer on actuation performance of shape memory alloy, Journal of Shanghai Jiaotong University, 35(4),485 (2001)
(孙双双, 孙国钧, 聚合物的热粘弹性对形状记忆合金作动性能的影响, 上海交通大学学报, 35(4), 485(2001))
11 HUANG Zhengming, An Introduction to Micromechanics of Composites (Beijing, The Press of Science, 2004) p.8
(黄争鸣, 复合材料细观力学引论 (北京, 科学出版社, 2004) p.8)
12 HU Zili, XIONG Ke, Study on interface failure of shape memory alloy(SMA) reinforced smart structure with damages, Acta Mech. Sinica, 21, 286(2005)
13 M.W.Lin, C.A.Rogers, Analysis of stress distribution in a shape memory alloy composite beam, AIAA-91-1164-CP, 169(1991)
14 ZHOU Guangquan, LIU Xiaomin, Theory of Viscoelasticity (Hefei, The Press of University of Science and Technology of China, 1996) p.233
(周光泉, 刘孝敏, 粘弹性理论 (合肥, 中国科学技术大学出版社, 1996) p.233)1996) p.233) |
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