首页> 外文期刊>The Journal of Chemical Physics >EFFECT OF DYNAMICAL ASYMMETRY ON THE VISCOSITY OF A RANDOM COPOLYMER MELT
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EFFECT OF DYNAMICAL ASYMMETRY ON THE VISCOSITY OF A RANDOM COPOLYMER MELT

机译:动态不对称性对无规共聚物熔体粘度的影响

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The variation of the viscosity as a function of the sequence distribution in an A-B random copolymer melt is determined. The parameters that characterize the random copolymer are the fraction of A monomers f, the parameter lambda which determines the correlation in the monomer identities along a chain and the Flory chi parameter chi(F) which determines the strength of the enthalpic repulsion between monomers of type A and B. For lambda>0, there is a greater probability of finding like monomers at adjacent positions along the chain, and for lambda<0 unlike monomers are more likely to be adjacent to each other. The traditional Markov model for the random copolymer melt is altered to remove ultraviolet divergences in the equations for the renormalized viscosity, and the phase diagram for the modified model has a binary fluid type transition for lambda>0 and does not exhibit a phase transition for lambda<0. A mode coupling analysis is used to determine the renormalization of the viscosity due to the dependence of the bare viscosity on the local concentration field. Due to the dissipative nature of the coupling. there are nonlinearities both in the transport equation and in the noise correlation. The concentration dependence of the transport coefficient presents additional difficulties in the formulation due to the Ito-Stratonovich dilemma, and there is some ambiguity about the choice of the concentration to be used while calculating the noise correlation. In the Appendix, it is shown using a diagrammatic perturbation analysis that the Ito prescription for the calculation of the transport coefficient, when coupled with a causal discretization scheme, provides a consistent formulation that satisfies stationarity and the fluctuation dissipation theorem. This functional integral formalism is used in the present analysis, and consistency is verified for the present problem as well. The upper critical dimension for this type of renormaliaation is 2, and so there is no divergence in the viscosity in the vicinity of a critical point. The results indicate that there is a systematic dependence of the viscosity on lambda and chi(F). The fluctuations tend to increase the viscosity for lambda<0, and decrease the viscosity for lambda>0, and an increase in chi(F) tends to decrease the viscosity. (C) 1996 American Institute of Physics. [References: 28]
机译:确定在A-B无规共聚物熔体中粘度随序列分布变化的变化。表征无规共聚物的参数是A单体的分数f,确定参数lambda以确定沿着链的单体同一性的相关性和确定该类型单体之间焓排斥强度的Flory chi参数chi(F)。 A和B。对于λ> 0,更有可能在沿着链的相邻位置找到相似的单体,而对于λ<0,不像单体更可能彼此相邻。更改了用于无规共聚物熔体的传统马尔可夫模型,以消除重归一化粘度方程式中的紫外线发散,修改后的模型的相图具有针对λ> 0的二元流体类型跃迁,而对于λ却不显示相变<0。模耦合分析用于确定由于裸粘度对局部浓度场的依赖性而引起的粘度的重新归一化。由于耦合的耗散特性。输运方程和噪声相关性都存在非线性。由于Ito-Stratonovich难题,传输系数的浓度依赖性在配方中带来了其他困难,并且在计算噪声相关性时要使用的浓度选择存在一些歧义。在附录中,使用图解扰动分析显示,用于计算传输系数的Ito处方与因果离散化方案相结合,可提供满足平稳性和涨落耗散定理的一致公式。在本分析中使用了此功能性积分形式主义,并且针对当前问题也验证了一致性。这种类型的正常化的最高临界尺寸为2,因此在临界点附近的粘度没有差异。结果表明,粘度对λ和chi(F)有系统的依赖性。波动倾向于使λ<0的粘度增加,而对于λ> 0的粘度降低,并且chi(F)的增加倾向于使粘度降低。 (C)1996年美国物理研究所。 [参考:28]

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