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Fluid-structure interaction simulations for a temperature-sensitive functionally graded hydrogel-based micro-channel

机译:用于温度敏感功能梯度水凝胶的微通道的流体结构相互作用模拟

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The behavior of a temperature-sensitive micro-channel have been investigated in this study which mainly includes a functionally graded (FG) hydrogel as a sensor or an actuator. In order to achieve this goal, both fluid-structure interaction (FSI) and non-FSI simulations are conducted for hydrogel with homogeneous property distribution as well as FG hydrogels with different number of layers (2–16 layers). Moreover, this study investigates the FG hydrogel cross-linking density that obeys a general exponential form. In addition to all mentioned, the FG hydrogels are considered in both ascending and descending states with vertically and horizontally functionally graded property distributions (VFG and HFG hydrogels). Subsequently, the importance of the difference between the FG and homogenous hydrogels has been highlighted in the findings of the study. Besides, the FSI influence has a vital role in these structures especially once an FG material is utilized. According to the findings, the ascending and descending distributions of the hydrogel properties may significantly affect the micro-channel behavior, especially in horizontally graded type. This process can be done in a way that for descending distribution of HFG there exist no closing state for the micro-channel.
机译:已经研究了该研究的温度敏感微通道的行为主要包括用作传感器或致动器的功能梯度(FG)水凝胶。为了实现这一目标,流体结构相互作用(FSI)和非FSI模拟用于水凝胶,其具有均匀性质分布以及具有不同数量的层(2-16层)的FG水凝胶。此外,该研究研究了遵守一般指数形式的FG水凝胶交联密度。除了所有提及的外,在升序和下降状态下考虑FG水凝胶,垂直和水平功能渐变的性质分布(VFG和HFG水凝胶)。随后,在研究的研究结果中突出了FG与均质水凝胶之间差异的重要性。此外,FSI影响在这些结构中具有重要作用,特别是一旦使用FG材料。根据结果​​,水凝胶特性的上升和下降分布可以显着影响微通道行为,特别是在水平分级型中。该过程可以以一种方式来完成,即对于HFG的降序分布,没有用于微通道的关闭状态。

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