Wang Yangyang, Boukany Pouyan, Wang Shi-Qing, Wang Xiaorong
Department of Polymer Science and Maurice Morton Institute of Polymer Science University of Akron, Akron, Ohio 44325-3909, USA.
Phys Rev Lett. 2007 Dec 7;99(23):237801. doi: 10.1103/PhysRevLett.99.237801.
Five entangled melts, with the number of entanglements per chain ranging from 25 to 160, have been studied to illustrate how cohesive strength can be overcome in either continuous or interrupted extension (i.e., during or after uniaxial stretching). The internal elastic stress due to chain deformation from imposed strain appears to be the cause of the observed yielding behavior that reveals scaling laws. The visual signature of the elastic breakup is the occurrence of nonuniform extension. The yield phenomena may be understood at a force level.
研究了五条缠结熔体,每条链的缠结数在25到160之间,以说明在连续或间断拉伸(即单轴拉伸过程中或之后)中如何克服内聚强度。由于施加应变导致链变形而产生的内部弹性应力似乎是观察到的呈现标度律的屈服行为的原因。弹性破裂的视觉特征是出现不均匀拉伸。屈服现象可以在力的层面上得到理解。