Molecular dynamics simulations of crystal nucleation in entangled polymer melts under start-up shear conditions

被引:18
作者
Anwar, Muhammad [1 ]
Graham, Richard S. [1 ]
机构
[1] Univ Nottingham, Sch Math Sci, Nottingham NG7 2RD, England
基金
英国工程与自然科学研究理事会;
关键词
FLOW-INDUCED CRYSTALLIZATION; TIME-TEMPERATURE SUPERPOSITION; INDUCTION PERIOD; DENSITY-FLUCTUATIONS; STRUCTURAL FORMATION; ISOTACTIC POLYPROPYLENE; POLYETHYLENE; GROWTH; MODEL; POLY(ETHYLENE-TEREPHTHALATE);
D O I
10.1063/1.5082244
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Understanding the flow induced crystallisation process is necessary due to its technological relevance to polymer processing. Polymer crystallisation controls the morphology of semi-crystalline polymers and hence the properties of the end product. We perform molecular dynamics simulations of polymer melts consisting of sufficiently entangled linear chains under shear flow. We determine the Rouse relaxation time (tau(R)) for linear polymer chains using an established rheological model at different temperatures and fit the simulation data with the Arrhenius and Williams-Landel-Ferry equations. We simulate the crystallisation induction times for different values of the Rouse-Weissenberg number (W-iR = (gamma) over dot tau(R)) at different temperatures. We observe that the level of strain and stretch required to induce crystallisation increases with temperature. We find that the induction times follow a power law in shear rate and observe a more pronounced effect of flow rate for higher temperatures than at lower temperatures. Moreover, we determine that nucleation events occur relatively early in the shear transient and at a stretch value that is smaller than its steady state value. We also report the values of strain at which the occurrence of a nucleation event is most likely to happen. Published under license by AIP Publishing.
引用
收藏
页数:13
相关论文
共 105 条
[1]   Time resolved study of shear-induced crystallization of poly(p-dioxanone) polymers under low-shear, nucleation-enhancing shear conditions by small angle light scattering and optical microscopy [J].
Abuzaina, FM ;
Fitz, BD ;
Andjelic, S ;
Jamiolkowski, DD .
POLYMER, 2002, 43 (17) :4699-4708
[2]   Flow-induced crystallization of polymer: theory and experiments [J].
Acierno, S. ;
Grizzuti, N. .
INTERNATIONAL JOURNAL OF MATERIAL FORMING, 2008, 1 (Suppl 1) :583-586
[3]   Sampling rare switching events in biochemical networks [J].
Allen, RJ ;
Warren, PB ;
ten Wolde, PR .
PHYSICAL REVIEW LETTERS, 2005, 94 (01)
[4]   Time-temperature superposition in rheology and ductile failure of asphalt binders [J].
Andriescu, Adrian ;
Hesp, Simon A. M. .
INTERNATIONAL JOURNAL OF PAVEMENT ENGINEERING, 2009, 10 (04) :229-240
[5]   Crystallization of polyethylene: A molecular dynamics simulation study of the nucleation and growth mechanisms [J].
Anwar, Muhammad ;
Schilling, Tanja .
POLYMER, 2015, 76 :307-312
[6]   Crystal nucleation mechanism in melts of short polymer chains under quiescent conditions and under shear flow [J].
Anwar, Muhammad ;
Berryman, Joshua T. ;
Schilling, Tanja .
JOURNAL OF CHEMICAL PHYSICS, 2014, 141 (12)
[7]   Crystallization mechanism in melts of short n-alkane chains [J].
Anwar, Muhammad ;
Turci, Francesco ;
Schilling, Tanja .
JOURNAL OF CHEMICAL PHYSICS, 2013, 139 (21)
[8]   Density fluctuations during the early stages of polymer crystallization: An overview [J].
Baert, Jimmy ;
Van Puyvelde, Peter .
MACROMOLECULAR MATERIALS AND ENGINEERING, 2008, 293 (04) :255-273
[9]   Atomistic simulation of flow-induced crystallization at constant temperature [J].
Baig, C. ;
Edwards, B. J. .
EPL, 2010, 89 (03)
[10]   Atomistic simulation of crystallization of a polyethylene melt in steady uniaxial extension [J].
Baig, Chunggi ;
Edwards, Brian J. .
JOURNAL OF NON-NEWTONIAN FLUID MECHANICS, 2010, 165 (17-18) :992-1004