按非Fourier定律分析陶瓷薄膜受热沉积作用的热力耦合问题
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国家自然科学基金资助项目(10802103);重庆市自然科学基金计划面上项目(CSTC2012JJA00009);中央高校基本科研业务费资助(CDJZR12240069)


Analysis of thermo-mechanical interaction in ceramic membranes subjected to heat deposition using non-Fourier law
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    摘要:

    考虑热传导的非Fourier定律,并且在温度控制方程中计入应变和应力变化的热效应,在应力本构方程中计入了温度变化的影响,得出了各向同性线性热弹性温度梯度非Fourier物质的热力双向耦合方程,且对有限厚度陶瓷薄膜,给出了边界受单一脉冲热沉积的典型一维瞬态问题的数值结果。讨论了延迟时间对温度增加量和应力分布的影响。主要结论:对陶瓷类介质,由于热波波速和膨胀波波速有极大的数量级差异,热力耦合对传播速度影响甚微,即以十分接近热波波速和膨胀波波速传播。由于外加作用是以热学量给出的脉冲热沉积,因此传播的主要控制速度是热波波速。传播的力学量属高阶小量。

    Abstract:

    In the paper, the influence of stain and heat effect caused by the variation of stresses in the temperature governing equation, and the influence of temperature variation in the constitutive equations and the non-Fourier effect of heat conduction are all considered, and the thermo-mechanical equation of isotropy and linear thermo-elastic material including the temperature gradient is deduced. The influence of relax time on the space-time distributions of temperature increment and stresses are discussed in the ceramic membranes with finite thickness for 1-D transient question which subjects to single pulse heat deposition. The result shows that, for the ceramic, the difference of speed between heat wave and expand wave reaches the order of magnitude, and the couple effect of thermo-mechanics has little influence on the speed of propagation. Since the single pulse heat deposition belongs to the thermal physical quantities, the heat wave is the domain speed of propagation, and the mechanical quantities belong to the high-order small quantities.

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张晓敏,陈立群,张龙.按非Fourier定律分析陶瓷薄膜受热沉积作用的热力耦合问题[J].重庆大学学报,2013,36(5):113-118.

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  • 在线发布日期: 2013-06-07
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