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Heterogeneous nucleation theory revisited: Effect of triple junction line energy

机译:异质成核理论再探:三结线能量的影响

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This paper will re-consider the basic aspects of solid state classical heterogeneous nucleation theory. In particular it will show how recent experimental work that has been able to estimate grain boundary triple junction line energy can be used to supplement the understanding of the energy balance operating during nucleation. This implies that the energy of the newly created interface needs to be recalculated, assuming that the additional line energy of the line surrounding the precipitate in the plane of the boundary is taken into account. Examples will be given of the application of this revised approach to GB precipitate nucleation of cap-shaped particles of chromium carbide in nickel based alloys. It will be shown that original assumed values of the precipitate-matrix interfacial energy for this transformation have to be revised downward for critical nucleus sizes of less than about 10 nm. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文将重新考虑固态经典异质成核理论的基本方面。特别是,它将显示如何利用最近能够估算晶界三重结线能量的实验工作来补充对成核过程中运行的能量平衡的理解。这意味着需要重新计算新创建的界面的能量,前提是要考虑到边界平面中围绕沉淀物的线的附加线能量。将给出这种修改方法对镍基合金中碳化铬的帽状颗粒的GB沉淀成核的应用实例。将显示出,对于小于约10nm的临界核尺寸,必须向下修正用于该转变的沉淀物-基质界面能的原始假定值。 (C)2016 Elsevier B.V.保留所有权利。

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