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Temperature sensing and actuating capabilities of polymeric shape memory composite containing thermochromic particles

机译:含有热致变色颗粒的聚合物形状记忆复合材料的温度传感和驱动能力

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摘要

Purpose - This paper aims to create and to study multifunctional shape memory polymer (SMP) composites having temperature-sensing and actuating capabilities by embedding thermochromic particles within the polymer matrix. Design/methodology/approach - The multifunctional materials were fabricated following a process consisting of blending (of the thermochromic particles and the SMP at various ratios), mixing, degasing, moulding and thermal curing, prepared by incorporating thermochromic particles within the polymer. The effect of the thermochromic particles on the thermomechanical properties and thermally responsive shape memory effect of the resulting multifunction SMP composites were characterised and interpreted. Findings - It was found that exposure of the composites to temperatures above 70°C led to a pronounced change of their colour that was recorded by the thermal and electrical actuation approaches and was reproducibly reversible. It was also found that the colour of the composites was independent of the mechanical state of the SMP. Such effects enabled monitoring of the onset of the set/release temperature of the SMP matrix. Furthermore, the combination of thermochromic additive and the SMP resulted in significantly improved thermomechanical strength, absorption of infrared radiation and the temperature distribution of the SMP composites. Research limitations/implications - The temperature-sensing and actuating capabilities of the polymeric shape memory composites developed through this study will help to extend the field of potential applications of such composites to fields including sensors, actuators, security labels and information dissemination, where colour indication is an advantageous feature. Originality/value - The SMP composites capable of temperature sensing and actuating are novel.
机译:目的-本文旨在通过将热致变色颗粒嵌入聚合物基质中来创建和研究具有温度感应和致动功能的多功能形状记忆聚合物(SMP)复合材料。设计/方法/方法-多功能材料是按照以下步骤制造的:混合(将热变色颗粒和SMP以各种比例混合),混合,脱气,成型和热固化,方法是将热变色颗粒掺入聚合物中。表征并解释了热致变色颗粒对所得多功能SMP复合材料的热机械性能和热响应形状记忆效应的影响。发现-发现复合材料暴露于70°C以上的温度会导致其颜色发生明显变化,这种变化可通过热和电致动方法记录下来,并且具有可逆性。还发现复合材料的颜色与SMP的机械状态无关。这样的效果使得能够监测SMP基质的凝固/释放温度的开始。此外,热致变色添加剂和SMP的组合可显着提高热机械强度,吸收红外辐射以及SMP复合材料的温度分布。研究的局限性/意义-通过这项研究开发的聚合物形状记忆复合材料的温度感应和致动能力将有助于将这种复合材料的潜在应用领域扩展到传感器,致动器,安全标签和信息传播等领域,其中颜色指示是一个有利的功能。原创性/价值-能够进行温度感应和驱动的SMP复合材料是新颖的。

著录项

  • 作者

    Lu, H; Yao, Y; Lin, L;

  • 作者单位
  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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