Molecular based temperature and strain rate dependent yield criterion for anisotropic elastomeric thin films

被引:8
作者
Bosi, F. [1 ]
Pellegrino, S. [1 ]
机构
[1] CALTECH, Grad Aerosp Labs, Pasadena, CA 91125 USA
关键词
Yield stress; Cooperative model; Semi-crystalline polymers; AMORPHOUS GLASSY-POLYMERS; PLASTIC-DEFORMATION; SEMICRYSTALLINE POLYMERS; COOPERATIVE MODEL; CREEP-BEHAVIOR; STRESS; POLYETHYLENE; FORMULATION; MORPHOLOGY; PRESSURE;
D O I
10.1016/j.polymer.2017.07.080
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
A molecular formulation of the onset of plasticity is proposed to assess temperature and strain rate effects in anisotropic semi-crystalline rubbery films. The presented plane stress criterion is based on the strain rate-temperature superposition principle and the cooperative theory of yielding, where some parameters are assumed to be material constants, while others are considered to depend on specific modes of deformation. An orthotropic yield function is developed for a linear low density polyethylene thin film. Uniaxial and biaxial inflation experiments were carried out to determine the yield stress of the membrane via a strain recovery method. It is shown that the 3% offset method predicts the uniaxial elastoplastic transition with good accuracy. Both the tensile yield points along the two principal directions of the film and the biaxial yield stresses are found to obey the superposition principle. The proposed yield criterion is compared against experimental measurements, showing excellent agreement over a wide range of deformation rates and temperatures. (C) 2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:144 / 153
页数:10
相关论文
共 46 条
[1]  
[Anonymous], 1950, The Mathematical Theory Of Plasticity
[2]   THEORY FOR LOW-TEMPERATURE PLASTIC-DEFORMATION OF GLASSY POLYMERS [J].
ARGON, AS .
PHILOSOPHICAL MAGAZINE, 1973, 28 (04) :839-865
[3]   TENSILE YIELD-STRESS BEHAVIOR OF POLY(VINYL CHLORIDE) AND POLYCARBONATE IN GLASS TRANSITION REGION [J].
BAUWENS, JC ;
BAUWENSC.C ;
HOMES, G .
JOURNAL OF POLYMER SCIENCE PART A-2-POLYMER PHYSICS, 1969, 7 (10PA) :1745-&
[4]   TENSILE YIELD-STRESS BEHAVIOR OF GLASSY POLYMERS [J].
BAUWENSC.C ;
BAUWENS, JC ;
HOMES, G .
JOURNAL OF POLYMER SCIENCE PART A-2-POLYMER PHYSICS, 1969, 7 (4PA2) :735-&
[5]   The creep behaviour of isotropic polyethylene [J].
Bonner, M ;
Duckett, RA ;
Ward, IM .
JOURNAL OF MATERIALS SCIENCE, 1999, 34 (08) :1885-1897
[6]  
Bosi F., NONLINEAR THERMOMECH
[7]   MOLECULAR MODEL FOR YIELD AND FLOW IN AMORPHOUS GLASSY POLYMERS MAKING USE OF A DISLOCATION ANALOG [J].
BOWDEN, PB ;
RAHA, S .
PHILOSOPHICAL MAGAZINE, 1974, 29 (01) :149-166
[8]   MODELING OF DOUBLE YIELD POINTS IN POLYETHYLENE - TEMPERATURE AND STRAIN-RATE DEPENDENCE [J].
BROOKS, NWJ ;
DUCKETT, RA ;
WARD, IM .
JOURNAL OF RHEOLOGY, 1995, 39 (02) :425-436
[9]   The NASA super pressure balloon - A path to flight [J].
Cathey, H. M., Jr. .
ADVANCES IN SPACE RESEARCH, 2009, 44 (01) :23-38
[10]   Yielding behaviour in model epoxy thermosets - II. Temperature dependence [J].
Cook, WD ;
Mayr, AE ;
Edward, GH .
POLYMER, 1998, 39 (16) :3725-3733