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Constitutive model for a stress- and thermal-induced phase transition in a shape memory polymer

  • Xiaogang Guo*
  • , Liwu Liu
  • , Yanju Liu
  • , Bo Zhou
  • , Jinsong Leng
  • *此作品的通讯作者
  • Harbin Engineering University
  • Harbin Institute of Technology
  • China University of Petroleum (East China)

科研成果: 期刊稿件文章同行评审

摘要

Recently, increasing applications of shape memory polymers have pushed forward the development of appropriate constitutive models for smart materials such as the shape memory polymer. During the heating process, the phase transition, which is a continuous time-dependent process, happens in the shape memory polymer, and various individual phases will form at different configuration temperatures. In addition, these phases can generally be divided into two parts: the frozen and active phase (Liu Y et al 2006 Int. J. Plast. 22 279-313). During the heating or cooling process, the strain will be stored or released with the occurring phase transition between these two parts. Therefore, a shape memory effect emerges. In this paper, a new type of model was developed to characterize the variation of the volume fraction in a shape memory polymer during the phase transition. In addition to the temperature variation, the applied stress was also taken as a significant influence factor on the phase transition. Based on the experimental results, an exponential equation was proposed to describe the relationship between the stress and phase transition temperature. For the sake of describing the mechanical behaviors of the shape memory polymer, a three-dimensional constitutive model was established. Also, the storage strain, which was the key factor of the shape memory effect, was also discussed in detail. Similar to previous works, we first explored the effect of applied stress on storage strain. Through comparisons with the DMA and the creep experimental results, the rationality and accuracy of the new phase transition and constitutive model were finally verified.

源语言英语
期刊论文编号105019
期刊Smart Materials and Structures
23
10
DOI
出版状态已出版 - 1 10月 2014
已对外发布

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