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Determination of thermal expansion coefficient of a monofilament polyamide fiber using digital image correlation

机译:用数字图像相关测定单丝聚酰胺纤维的热膨胀系数

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摘要

Coiled polymer actuators are a type of artificial muscles that are a promising development in the field of smart materials. The coefficient of thermal expansion of monofilament polyamide fibers is a crucial parameter for understanding the actuation of coiled fibers. The main purpose of this work is to develop a new methodology for estimating the coefficient of thermal expansion and the transition temperature of monofilament polymer fibers. In the experimental procedure, axial deformations of monofilament polyamide fiber samples were induced by temperature variations using a controlled thermal system. These deformations were determined from images of polyamide samples using the digital image correlation method. Two different approaches based on distinct temperature conditions were conducted. An alternative model with three parameters, including the coefficient of thermal expansion, was introduced to describe the thermal-mechanical behavior of monofilament polyamide fibers. Moreover, polyamide samples were also characterized using four conventional methodologies. Results indicated that the coefficient of thermal expansion changed of a modest negative value to a large negative value and this transition occurred around the glass transition temperature of the polyamide. The thermal expansion curves demonstrate good repeatability and all estimated parameters were in accordance with literature, indicating that the proposed approach can be suitable for the proposed study. This investigation may help in understanding of the intrinsic thermal-mechanical behavior of polymeric monofilaments employed as actuators.
机译:卷绕的聚合物致动器是一种人工肌肉,是智能材料领域的有希望的发展。单丝聚酰胺纤维的热膨胀系数是用于理解卷绕纤维的致动的关键参数。这项工作的主要目的是开发一种估计热膨胀系数和单丝聚合物纤维的转变温度的新方法。在实验过程中,通过使用受控热系统的温度变化诱导单丝聚酰胺纤维样品的轴向变形。使用数字图像相关方法从聚酰胺样品的图像确定这些变形。进行了基于不同温度条件的两种不同的方法。引入了具有三个参数的替代模型,包括热膨胀系数,以描述单丝聚酰胺纤维的热机械行为。此外,还使用四种常规方法表征聚酰胺样品。结果表明,热膨胀系数改变为大负值的适度负值,并且在聚酰胺的玻璃化转变温度周围发生这种转变。热膨胀曲线展示了良好的重复性,所有估计参数都符合文献,表明所提出的方法可以适合于所提出的研究。本研究可能有助于了解所用致动器的聚合物单丝的内在热电机械行为。

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