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Thermal fracture and thermal shock resistance of functionally graded materials

机译:功能梯度材料的抗热断裂性和抗热震性

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摘要

We first analyze thermal stresses and thermal cracking in a strip of a functionally graded material (FGM) subjected to sudden cooling. It is assumen that the shear modulus of the material decreases hyperbolically with the higher value occurring at the surface exposed to the thermal shock and that thermal conductivity varies exponentially. It is shown that the maximum tensile thermal stress induced in the strip is substantially reduced by the presumed thermal conductivity gradient. Thermal stress intensity factors (TSIFs) are also calculated for an edge crack at the surface exposed to the thermal shock and results show that while the TSIF is relatively insensitive to the shear modulus gradient, it is significantly reduced by the thermal conductivity gradient. The crack growth resistance curve of a ceramic-metal FGM is also studied and it is found that the FGM exhibits strong R-curve behavior when a crack grows from the ceramic-rich region into the metalrich region. Finally, the thermal shock resistance of FGMs is discussed.
机译:我们首先分析承受突然冷却的功能梯度材料(FGM)带中的热应力和热裂纹。假定材料的剪切模量随着暴露在热冲击下的表面上的值较高而双曲线减小,并且热导率呈指数变化。结果表明,通过假定的导热系数梯度,带材中产生的最大拉伸热应力已大大降低。还针对暴露于热冲击的表面上的边缘裂纹计算了热应力强度因子(TSIFs),结果表明,尽管TSIF对剪切模量梯度相对不敏感,但其热导率梯度会明显降低。还研究了陶瓷金属FGM的抗裂纹扩展曲线,发现当裂纹从富陶瓷区向富金属区扩展时,FGM表现出很强的R曲线行为。最后,讨论了FGM的耐热冲击性。

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