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Force sensor utilizing stiffness change of shape-memory polymer based on temperature

机译:利用基于温度的形状记忆聚合物刚度变化的力传感器

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In this study, we propose a force sensor using a shape-memory polymer (SMP) whose stiffness varies according to the temperature. An SMP can be deformed above its glass transition temperature (T g) by applying a small load. A deformed SMP maintains its shape when cooled below T g and returns to its predefined shape when subsequently heated above T g. The reversible change in the elastic modulus between the glassy and rubbery states of an SMP can be on the order of several hundred-fold. The relationship between the applied force and the deformation of the SMP changes depending on the temperature. Our sensor consists of strain gauges bonded to an SMP bending beam and senses the applied force by measuring the strain. Therefore, the force measuring range and the sensitivity can be changed according to the temperature. In this study, we evaluate a prototype of the sensor using the SMP sheet with embedded electrical heating wire. Moreover, we improve the sensor by combining the SMP and a stainless steel plate. The enhanced versatility of SMP force sensors is demonstrated through a series of experiments conducted using the prototype.
机译:在这项研究中,我们提出了一种使用形状记忆聚合物(SMP)的力传感器,其硬度随温度而变化。通过施加较小的载荷,SMP可以在其玻璃化转变温度(T g)以上变形。变形的SMP在冷却到T g以下时保持其形状,并在随后加热到T g以上时返回其预定形状。 SMP的玻璃态和橡胶态之间的弹性模量的可逆变化可以是几百倍。施加力和SMP变形之间的关系根据温度而变化。我们的传感器由结合到SMP弯曲梁的应变仪组成,并通过测量应变来感应施加的力。因此,可以根据温度改变测力范围和灵敏度。在这项研究中,我们使用带有嵌入式电热丝的SMP板评估了传感器的原型。此外,我们通过结合SMP和不锈钢板来改进传感器。通过使用原型进行的一系列实验证明了SMP力传感器具有增强的多功能性。

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