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A dimensionless study on thermal control of positive temperature coefficient (PTC) materials

机译:阳性温度系数(PTC)材料热控制无量纲研究

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摘要

Positive temperature coefficient (PTC) material is widely used in the field of thermal control due to its unique temperature sensitive characteristics. However, there is no general criterion about PTC material thermal control at present due to the lack of theoretical analysis in the previous works. Thus, in this paper, the dimensionless method is used to study PTC material adaptive thermal control and finally, a fitting formula is obtained to estimate the equilibrium temperature of controlled device. First, a one-dimensional and steady-state heat transfer model was proposed to calculate the equilibrium temperature of controlled device under thermal control of PTC materials, and it was verified by experiment. Then, the model has been nondimensionalized and four dimensionless numbers are introduced by Buckingham theorem, in which the Wr number is presented to represent the heating characteristics of PTC materials. Finally, by fitting all the data, a form of fitting equation of equilibrium temperature of controlled device is obtained. The results show that this form proposed in this paper can be applied to the widely used ceramic PTC materials. The criterion equation fitted by this form can effectively estimate the equilibrium temperature of the controlled devices with good accuracy and wide application.
机译:由于其独特的温度敏感特性,正温度系数(PTC)材料广泛用于热控制领域。然而,由于在以前的作品中缺乏理论分析,目前没有关于PTC材料热控制的一般标准。因此,在本文中,使用维度方法研究PTC材料自适应热控制,最后,获得配合式以估计受控装置的平衡温度。首先,提出了一维和稳态传热模型来计算PTC材料热控制下受控装置的平衡温度,并通过实验验证。然后,该模型已经非望着,并且由Buckingham定理引入了四个无量纲数,其中提出了WR编号以表示PTC材料的加热特性。最后,通过拟合所有数据,获得了受控装置的平衡温度的拟合温度的拟合方程形式。结果表明,本文提出的这种形式可应用于广泛使用的陶瓷PTC材料。由该形式装配的标准方程可以有效地估计受控装置的平衡温度具有良好的精度和广泛的应用。

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