Sweeney J, Spencer P E, Vgenopoulos D, Babenko M, Boutenel F, Caton-Rose P, Coates P D
1School of Engineering, Faculty of Engineering and Informatics, University of Bradford, Bradford, BD7 1DP UK.
Institut Clement Ader (ICA); Universite de Toulouse; CNRS, IMT Mines Albi, INSA, ISAE-SUPAERO, UPS; Campus Jarlard, F-81013 Albi, France.
Mech Time Depend Mater. 2018;22(2):145-165. doi: 10.1007/s11043-017-9369-5. Epub 2017 Oct 30.
An established statistical mechanical theory of amorphous polymer deformation has been incorporated as a plastic mechanism into a constitutive model and applied to a range of polymer mechanical deformations. The temperature and rate dependence of the tensile yield of PVC, as reported in early studies, has been modeled to high levels of accuracy. Tensile experiments on PET reported here are analyzed similarly and good accuracy is also achieved. The frequently observed increase in the gradient of the plot of yield stress against logarithm of strain rate is an inherent feature of the constitutive model. The form of temperature dependence of the yield that is predicted by the model is found to give an accurate representation. The constitutive model is developed in two-dimensional form and implemented as a user-defined subroutine in the finite element package ABAQUS. This analysis is applied to the tensile experiments on PET, in some of which strain is localized in the form of shear bands and necks. These deformations are modeled with partial success, though adiabatic heating of the instability causes inaccuracies for this isothermal implementation of the model. The plastic mechanism has advantages over the Eyring process, is equally tractable, and presents no particular difficulties in implementation with finite elements.
一种已确立的非晶态聚合物变形统计力学理论已作为一种塑性机制纳入本构模型,并应用于一系列聚合物机械变形。早期研究报道的聚氯乙烯拉伸屈服的温度和速率依赖性已被高精度建模。本文报道的聚对苯二甲酸乙二酯(PET)拉伸实验也进行了类似分析,并取得了良好的精度。屈服应力与应变率对数关系曲线斜率的常见增加是本构模型的固有特征。模型预测的屈服温度依赖性形式被发现能给出准确的表述。本构模型以二维形式开发,并作为用户定义子程序在有限元软件包ABAQUS中实现。该分析应用于PET的拉伸实验,其中一些实验中应变以剪切带和颈缩的形式局部化。这些变形的建模取得了部分成功,不过由于模型的等温实现中不稳定性导致的绝热加热会产生不准确性。该塑性机制相对于艾林过程具有优势,同样易于处理,并且在有限元实现中没有特别困难。