Zheng Yexin, Tsige Mesfin, Wang Shi-Qing
School of Polymer Science and Polymer Engineering, University of Akron, Akron, OH, 44325, USA.
Macromol Rapid Commun. 2023 Jan;44(1):e2200159. doi: 10.1002/marc.202200159. Epub 2022 Sep 8.
In the present work, molecular dynamics simulations are carried out based on the bead-spring model to indicate how the entanglement lockup manifests in the late stage of fast Rouse-Weissnberg number (Wi >>1) uniaxial melt stretching of entangled polymer melts. At high strains, distinct features show up to reveal the emergence of an increasingly tightened entanglement network. Chain tension can build up, peaking at the middle of the chain, to a level for chain scission, through accumulated interchain interactions, as if there is a tug-of-war ongoing for each load-bearing chain. Thanks to the interchain uncrossability, network junctions form by the pairing of two or more hairpins. It is hypothesized that the interchain entanglement at junctions can lockup through prevailing twist-like interchain couplings as long as Wi > 9. In this limit, a significant fraction of chains act like cyclic chains to form a network held by interchain uncrossability, and appreciable chain tension emerges.
在本工作中,基于珠簧模型进行了分子动力学模拟,以表明在快速劳斯-魏斯伯格数(Wi >>1)的缠结聚合物熔体单轴熔体拉伸后期,缠结锁定是如何表现的。在高应变下,出现了明显的特征,揭示了越来越紧密的缠结网络的出现。链张力会积累,在链的中间达到峰值,通过累积的链间相互作用达到链断裂的水平,就好像每条承重链都在进行拔河比赛。由于链间不可穿越性,两个或更多发夹配对形成网络节点。据推测,只要Wi > 9,节点处的链间缠结就可以通过普遍存在的类似扭曲的链间耦合而锁定。在这个极限下,相当一部分链的行为类似于环状链,形成一个由链间不可穿越性维系的网络,并出现可观的链张力。