首页> 外文OA文献 >Slip-Spring and Kink Dynamics Models for Fast Extensional Flow of Entangled Polymeric Fluids
【2h】

Slip-Spring and Kink Dynamics Models for Fast Extensional Flow of Entangled Polymeric Fluids

机译:滑动弹簧和扭结动力学模型,用于缠绕聚合物流体的快速延伸流动

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

We combine a slip-spring model with an ‘entangled kink dynamics’ (EKD) model for strong uniaxial extensional flows (with Rouse Weissenberg number W i R ≫ 1 ) of long ( M w > 1   Mkg / mol for polystyrene) entangled polymers in solutions and melts. The slip-spring model captures the dynamics up to the formation of a ‘kinked’ or folded state, while the kink dynamics simulation tracks the dynamics from that point forward to complete extension. We show that a single-chain slip-spring model using affine motion of the slip-spring anchor points produces unrealistically high tension near the center of the chain once the Hencky strain exceeds around unity or so, exceeding the maximum tension that a chain entangled with a second chain is able to support. This unrealistic tension is alleviated by pairing the slip links on one chain with those on a second chain, and allowing some of the large tension on one of the two to be transferred to the second chain, producing non-affine motion of each. This explicit pairing of entanglements mimics the entanglement pairing also used in the EKD model, and allows the slip spring simulations to be carried out to strains high enough for the EKD model to become valid. We show that results nearly equivalent to those from paired chains are obtained in a single-chain slip-spring simulation by simply specifying that the tension in a slip spring cannot exceed the theoretical maximum value of ζ ′ ϵ ˙ L 2 / 8 where ζ ′ , ϵ ˙ and L are the friction per unit length, strain rate and contour length of the chain, respectively. The effects of constraint release (CR) and regeneration of entanglements is also studied and found to have little effect on the chain statistics up to the formation of the kinked state. The resulting hybrid model provides a fast, simple, simulation method to study the response of high molecular weight ( M w > 1   Mkg / mol ) polymers in fast flows ( W i R ≫ 1 ), where conventional simulation techniques are less applicable due to computational cost.
机译:我们将滑动弹簧模型与“纠缠的扭结动态”(EKD)模型相结合,用于强大的单轴延伸流(用Rouse Weissenberg Number W i R»1),长(m w> 1 mkg / mol用于聚苯乙烯)缠结的聚合物解决方案和融化。滑动弹簧模型将动态捕获到“扭结”或折叠状态的形成,而Kink Dynamics仿真将动态跟踪到前进的那一点以完成扩展。我们表明,一旦Hencky菌株超过统一左右,使用滑动弹簧锚点的仿射点的单链滑动弹簧模型使用滑动弹簧锚点的仿射运动产生不切实际的高张力,超过链条缠绕的最大张力第二连锁能够支持。通过将单链上与第二链上的链条配合的滑动连杆将这种不切实际的张力减轻,并且允许在两个中的一个上的一些大的张力转移到第二链,产生每个非仿射运动。这种显式配对的纠缠模拟EKD模型中也使用的纠缠配对,并允许将滑动弹簧模拟进行,以便足够高,以使EKD模型变得有效。我们表明,通过简单地指定滑动弹簧中的张力不能超过ζ'的理论最大值,可以在单链滑动弹簧仿真中获得与配对链中的配对链中的结果几乎相当于单链滑动弹簧仿真。 ,ε˙和L分别是链的每单位长度,应变率和轮廓长度的摩擦。还研究了约束释放(Cr)和缠结再生的影响,并发现对链统计效果几乎没有影响到扭结状态的形成。所得到的混合模型提供了一种快速,简单,模拟的方法,用于研究高分子量(MW> 1 MKG / mol)聚合物在快速流动(W I R»1)中的响应,其中常规仿真技术因其而不太适用计算成本。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号