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首页> 外文期刊>Macromolecules >Brownian Dynamics Modeling of Flow-Induced Birefringence and Chain Scission in Dilute Polymer Solutions in a Planar Cross-Slot Flow
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Brownian Dynamics Modeling of Flow-Induced Birefringence and Chain Scission in Dilute Polymer Solutions in a Planar Cross-Slot Flow

机译:平面槽流中稀聚合物溶液中流致双折射和断链的布朗动力学建模

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摘要

Bead-spring Brownian dynamics simulations are herein used to model flow-induced chain scission in dilute polymer solutions in a planar cross-slot flow.The flow field is obtained by finite-element simulation for a Newtonian fluid at low Reynolds number (Re=4.5),with the flow assumed to be unaffected by the polymer.Chain scission is defined to occur when any spring bears a force over a preset critical spring force.Multiple scission of the same chain in a single pass through the device is allowed.In the simulations,we observed both chain halving and quartering as reported in the experimental literature.However,in contrast to the common view that breakage occurs only in the stagnation point region,we find that the strong shearing flow generated near the walls of the inlet channel prestretches polymer molecules considerably,leading to breakage near the corner where an extensional flow is present.We also predict flow birefringence,which supports our finding that shear plays a significant role in chain scission in this geometry.
机译:本文使用珠-弹簧布朗动力学模拟来模拟平面交叉槽流中稀聚合物溶液中流动引起的断链。流场是通过对低雷诺数(Re = 4.5)的牛顿流体进行有限元模拟获得的),假定流动不受聚合物的影响。链断裂被定义为当任何弹簧承受的力超过预设的临界弹簧力时发生的断裂。同一条链通过单次通过装置就可以进行多次断裂。模拟中,我们观察到实验文献中报道的链条减半和四等分。但是,与通常只在停滞点区域发生断裂的普遍观点相反,我们发现在进气道壁附近产生了强烈的剪切流聚合物分子相当多,导致存在延伸流动的拐角处破裂。我们还预测了流动双折射,这支持了我们的发现剪切作用显着e在这种几何形状中断链。

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