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Thermal residual stresses in adhesively bonded in-plane functionally graded clamped circular hollow plates

机译:粘合的平面内功能梯度夹紧的圆形空心板中的热残余应力

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摘要

This study investigates the effects of in-plane compositional gradient exponent and direction on the thermal residual stress and deformations in adhesively bonded functionally graded clamped circular plates. The material composition was assumed to vary with a power law along an in-plane direction not through the plate thickness direction. The transient heat conduction and Navier equations in polar coordinates describing the two-dimensional thermo-elastic problem were discretized using finite-difference method, and the set of linear equations were solved using the pseudo-singular-value method. The material composition direction is designed as Ceramic-Metal (CM)-CM, CM-Metal-Ceramic (MC), MC-CM, and MC-MC for the inner and outer plates. The temperature decreased radially along the plates, but exhibited a sharp decrease across the adhesive layer. The compositional gradient exponent and direction affected evidently temperature levels and heat transfer period. The compressive radial and shear strains are more effective on the deformation in the adhesive layer and the plate regions near the plate-adhesive interfaces. The adhesive layer is subjected to considerable shear deformations. The equivalent strain and stresses are very low in a large region of the plates but exhibit sharp peaks on the plate regions near the plate-adhesive interfaces, and decrease towards the adhesive interfaces. These stress and strain peaks in the plates and adhesive layer are affected by the compositional gradient and direction. For an outer edge flux, the largest equivalent strain and stresses are observed in the CM-MC joint but the lowest levels occur in the MC-CM or secondly CM-CM joint. In addition, an inner edge flux results in the lowest and highest peak strains and stresses in the MC-CM and CM-MC joints, respectively. The MC-MC and CM-CM joints result in lower temperature, stress and strain levels around the adhesive layer and along the adhesive interfaces for outer and inner edge fluxes, respectively.
机译:这项研究调查了平面内成分梯度指数和方向对热粘合残余应力和变形的功能粘合梯度板的变形的影响。假设材料组成沿幂律沿着面内方向而不通过板厚度方向变化。使用有限差分法离散描述二维热弹性问题的极坐标中的瞬态热传导方程和Navier方程,并使用拟奇异值方法求解线性方程组。内板和外板的材料成分方向分别设计为陶瓷金属(CM)-CM,CM-金属陶瓷(MC),MC-CM和MC-MC。温度沿着板径向地降低,但是在整个粘合剂层上却表现出急剧的降低。组成梯度指数和方向明显影响温度水平和传热时间。径向压缩应变和剪切应变对粘合剂层和靠近板-粘合剂界面的板区域中的变形更有效。粘合剂层经受相当大的剪切变形。在板的较大区域中,等效应变和应力非常低,但是在靠近板-粘合剂界面的板区域上显示出尖锐的峰值,并朝着粘合剂界面减小。板和粘合剂层中的这些应力和应变峰值受成分梯度和方向的影响。对于外边缘通量,在CM-MC接头中观察到最大的等效应变和应力,而在MC-CM或第二个CM-CM接头中观察到最低的等效应变和应力。另外,内边缘通量分别导致MC-CM和CM-MC接头的最低和最高峰值应变和应力。 MC-MC和CM-CM接头分别导致胶粘剂层周围和沿胶粘剂界面的外边缘和内边缘焊剂的温度,应力和应变水平降低。

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