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Dynamic response of a thermally activated paraffin actuator

机译:热活化石蜡执行器的动态响应

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This paper considers a thermal phase change actuator filled with a solid-liquid phase change material (PCM), in which its ceiling wall can be thermally activated to move as a result of the volumetric changes associated with thermally induced melting and freezing processes of the PCM contained. Specifically, the present study aims to explore experimentally the dynamic response characteristics of the actuator's movable wall during the melting process of a paraffin (n-Octadecane) as the PCM filled in a rectangular container. Melting experiments for the phase change actuator heated laterally at various isothermal wall temperatures with the solid PCM filled at different initial subcooling temperatures below its melting point have been undertaken to examine the melting heat transfer characteristics as well as the displacement behavior of its movable wall. The experimental results obtained reveal clearly that the melting progress of the KM within the actuator has a dominant bearing on the induced moving speed and thus the total displacement of its movable wall. Moreover, the subcooling condition for the solid PCM filled in the actuator during the melting process may give rise to significant time lag for its thermally driven response, hence increasing the total time required for the solid PCM to be fully melted.
机译:本文考虑了一种热固性相变致动器,其中填充了一种固液相变材料(PCM),由于与PCM的热致融化和冻结过程相关的体积变化,其顶壁可以被热激活以移动包含。具体而言,本研究旨在通过实验探索在将PCM填充到矩形容器中的石蜡(正十八烷)熔化过程中,执行器活动壁的动态响应特性。已经进行了在各种等温壁温度下横向加热的相变执行器的熔化实验,并在低于其熔点的不同初始过冷温度下填充了固态PCM,以检查熔化传热特性及其可移动壁的位移行为。获得的实验结果清楚地表明,致动器内KM的熔化过程对感应运动速度及其活动壁的总位移有重要影响。此外,在熔化过程中填充在致动器中的固态PCM的过冷条件可能会导致其热驱动响应产生明显的时间滞后,从而增加了固态PCM完全熔化所需的总时间。

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