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Universal relations in linear thermoelastic theories of thermally-responsive shape memory polymers

机译:热响应形状记忆聚合物的线性热弹性理论中的普遍关系

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摘要

In this paper we formulate a one-dimensional linear thermo-elastic (LTE) model in integral form for describing the behavior of thermally-responsive shape memory polymers (SMPs), which unifies and slightly generalizes numerous theories proposed in the literature starting with the seminal approach proposed by Liu et al. (2006). The presented model in its most general form requires the calibration of three response functions. Detailed analysis of four types of shape memory cycles (SMCs) used to quantify the shape memory effect in thermally-responsive SMPs and the corresponding forms of constitutive relations derived within LTE model display a number of critical properties. In particular, two of three response functions may be determined in many different ways from strain and stress storage/recovery profiles measured in SMCs (the third response function may be determined from an independent test). As implication of this fact, we show that the LTE model predicts a number of inter-relations between the measured strain and stress storage/recovery profiles. All these relations are universal in the sense that for any shape memory polymer, which may be correctly described by LTE model, the strain/stress storage/recovery profiles measured in SMCs must satisfy (at least approximately) these relations. Their role within the LTE model is analogous to the role of universal relations in the theory of finite deformation elasticity. In particular, these universal relationships provide a theoretical basis for the validation of any model within the LTE class. The basic theoretical results derived in this paper are illustrated using data obtained by Liu et al. (2006).
机译:在本文中,我们以积分形式建立了一个一维线性热弹性(LTE)模型,用于描述热响应形状记忆聚合物(SMP)的行为,该模型统一并略微概括了文献中从精髓开始的许多理论。刘等人提出的方法。 (2006)。最一般形式的模型需要对三个响应函数进行校准。对四种类型的形状记忆周期(SMC)进行的详细分析,这些形状记忆周期用于量化热响应SMP中的形状记忆效应,并且在LTE模型中导出的本构关系的相应形式显示出许多关键特性。特别是,可以根据在SMC中测量的应变和应力存储/恢复曲线,以许多不同的方式确定三个响应函数中的两个(第三响应函数可以从独立测试中确定)。作为这一事实的暗示,我们表明LTE模型可预测测得的应变与应力存储/恢复曲线之间的许多相互关系。就任何可以由LTE模型正确描述的形状记忆聚合物而言,所有这些关系都是通用的,在SMC中测得的应变/应力存储/恢复曲线必须满足(至少近似)这些关系。它们在LTE模型中的作用类似于通用关系在有限变形弹性理论中的作用。特别是,这些通用关系为LTE类中任何模型的验证提供了理论基础。本文使用Liu等人获得的数据说明了基本的理论结果。 (2006)。

著录项

  • 来源
    《International Journal of Engineering Science》 |2014年第9期|140-158|共19页
  • 作者单位

    Ruhr University Bochum, Institute of Mechanics, Universitaetsstr. 150, D-44780 Bochum, Germany;

    Helmholtz-Zentrum Geesthacht (HZG), Institute of Biomaterial Science, Kantstrasse 55, D-14573 Teltow, Germany;

    Helmholtz-Zentrum Geesthacht (HZG), Institute of Biomaterial Science, Kantstrasse 55, D-14573 Teltow, Germany;

    Ruhr University Bochum, Institute of Mechanics, Universitaetsstr. 150, D-44780 Bochum, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Shape memory polymer; Constitutive model; Thermoelasticity;

    机译:形状记忆聚合物;本构模型;热弹性;

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