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首页> 外文期刊>International Journal of Heat and Mass Transfer >Heat conduction in a functionally graded medium with an arbitrarily oriented crack
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Heat conduction in a functionally graded medium with an arbitrarily oriented crack

机译:在具有任意方向裂纹的功能梯度介质中的热传导

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摘要

To characterize the influence of cracking defect on the heat conduction in a functional graded structure, the problem of an infinite nonhomogeneous plane containing an arbitrarily oriented crack under uniform remote heat flux is considered. In the mathematical formulation the crack is approximated as a cut with temperature discontinuity. By using Fourier transformation, the mixed boundary value problem is reduced to a Cauchy-type singular integral equation for an unknown density function. The singular integral equation is then regularized by approximating the density function with a Cheby-shev polynomial-based series, and the resulting linear equation is solved by using a collocation technique. Temperature distributions along the crack surface planes and the heat flux intensity factors at crack tips are calculated for quantifying the singular temperature gradient and heat flux in the neighborhood of the crack tip, and to evaluate the effects of grading inhomogeneity, crack orientation, and crack thermal permeability on the post-damage performance of the thermal system. It is shown that the inhomogeneity in thermal conductivity around crack tip results in a higher temperature gradient, and that the heat flux intensity factor is strongly influenced by crack orientation as well as material inhomogeneity.
机译:为了表征功能梯度结构中裂纹缺陷对热传导的影响,考虑了在均匀的远距离热通量下包含任意取向裂纹的无限不均匀平面的问题。在数学公式中,裂纹近似为具有温度不连续性的切口。通过使用傅立叶变换,混合边值问题被简化为一个未知密度函数的柯西型奇异积分方程。然后,通过使用基于Cheby-shev多项式的级数对密度函数进行逼近来对奇异积分方程进行正则化,并使用搭配技术对所得线性方程进行求解。计算沿裂纹表面平面的温度分布和裂纹尖端的热通量强度因子,以量化裂纹尖端附近的奇异温度梯度和热通量,并评估分级不均匀性,裂纹取向和裂纹热的影响渗透率对热系统的破坏后性能。结果表明,裂纹尖端周围导热系数的不均匀性导致较高的温度梯度,并且裂纹方向和材料的不均匀性对热通量强度因子的影响很大。

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