热力学深过冷熔体凝固的非平衡效应主要表现在晶粒尺寸细化、亚稳相析出、调幅(Spinodal)分解、形成块体非晶等几个方面。在这些方面进行的探索与研究对研发新型高性能材料具有重要的理论意义和实用价值。
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spinodal curve 旋节线
spinodal temperature 旋节温度
spinodal line 旋节线
spinodal structure spiral growths 旋转生长
spinodal equation spinodal方程
Spinodal分解 spinodal decomposition
spinodal wavelength Spinodal波长
spinodal instability spinodal不稳定性
Fundamentals of annealing, spinodal decomposition, nucleation, growth, and particle coarsening.
退火、节分解、核、长和颗粒粗化的基本原理。
Computer simulation was firstly performed on the precipitation mechanism at mean-field spinodal lines in complicated system with ordering and clustering.
首次对既存在有序化又存在原子簇聚的复杂体系中平均场失稳线上合金的沉淀机制进行计算机模拟。
The precipitation mechanism of DO22 phase is spinodal decomposition, and the precipitation mechanism of L12 phase is non-classical nucleation and growth.
DO22相的早期沉淀机制为失稳分解,L12相的早期沉淀机制为非经典形核长大。
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