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Experimental validation of numerical simulation for phase decomposition of a binary polymer thin film on a patterned substrate

机译:图案化基材上二元聚合物薄膜相分解数值模拟的实验验证

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Phase separation of polymer blends can be directed by the difference of the attraction factors to the polymers on a patterned substrate to achieve polymer self-assembly. A 2D model of the Cahn-Hilliard equation was established using an unconditionally gradient stable time marching scheme. The morphology development in the early stage of the phase separation on a template guided self-assembly was investigated through numerical simulation. Through the numerical investigation, it was observed that the morphology evolution of the polymer blends depended on the consistency of the initial concentration, strength of forcing function, scaling factor, the gradient energy coefficient, and material properties.
机译:聚合物共混物的相分离可通过对图案化基材上的聚合物的吸引因子的不同来实现,以实现聚合物自组装。使用无条件梯度稳定时间行进方案建立了Cahn-Hilliard方程的二维模型。通过数值模拟研究了模板引导自组装相分离早期的形态发展。通过数值研究,观察到聚合物共混物的形态演变取决于初始浓度的一致性,推力函数的强度,比例因子,梯度能量系数和材料性能。

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