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Classical Nucleation and Lattice Model Unite

机译:古典成核和格子模型联合

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Classical nucleation theory predicts the limit of superheat of liquids quite well. To come up with an equation for the limit of superheat of polymer solutions, the lattice model for polymer solutions was used to give the surface tension of polymer solutions. A formula for bubble nucleation in polymer solutions was derived by Jennings with the precursor equation dlnA/dK=1/(6K) where J=AexpK gives the nucleation rate for liquids. The aim of this paper was to show that the precursor equation holds for monomer in the polystyrene-cyclohexane system. Thus, the precursor equation is true for all molecular weight polymer. This happens because the surface tension of polystyrene is significantly more than cyclohexane and the influence of the surface tension dominates.
机译:古典成核理论预测液体过热的极限。为了提出聚合物溶液过滤极限的等式,用于聚合物溶液的晶格模型用于提供聚合物溶液的表面张力。通过Jennings与前体等式DLNA / DK = 1 /(6K)衍生聚合物溶液中的气泡成核的配方,其中J = ALPK给予液体的成核速率。本文的目的是表明,前体方程在聚苯乙烯 - 环己烷系统中保持单体。因此,前体方程对于所有分子量聚合物都是如此。这种情况发生是因为聚苯乙烯的表面张力显着大于环己烷,并且表面张力的影响占主导地位。

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