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Surface tension-pressure superposition principle for anisotropic shrinkage of an ellipsoidal pore in viscous sintering

机译:粘性烧结中椭圆孔孔隙孔的各向异性收缩的表面张力 - 压力叠加原理

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The shrinkage of a spherical pore is a classical model of the final stage of sintering; however, closed pores observed in real sintering have irregular shapes, which can be approximated as ellipsoids in many cases. In this study, we used the finite element simulation to evaluate the anisotropic shrinkage of a non-spherical pore. The shape evolution was expressed as the superposition of the deformation of a pore driven by surface tension and the deformation of a void driven by remote pressure in the absence of surface tension. By using this superposition principle, we can predict the shape evolution of any spheroidal pore, which is affected by the initial aspect ratio, the remote pressure, and the gas pressure inside the pore. We analyzed the role of sintering stress tensor on the anisotropic shrinkage also.
机译:球形孔隙的收缩是烧结最后阶段的经典模型;然而,在实际烧结过程中观察到的闭孔形状不规则,在许多情况下可以近似为椭球体。在本研究中,我们使用有限元模拟来评估非球形孔隙的各向异性收缩。在没有表面张力的情况下,形状演化表现为由表面张力驱动的孔隙变形和由远程压力驱动的孔隙变形的叠加。利用这个叠加原理,我们可以预测任何球状孔隙的形状演化,它受初始长宽比、远程压力和孔隙内气体压力的影响。我们还分析了烧结应力张量对各向异性收缩的作用。

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