The creep of an elastoviscoplastic beam under a bending loading

被引:0
作者
Mohamed Hadid
Younès Saadallah
Abderrazak Debilou
Belhi Guerira
Ayoub Guerrah
机构
[1] Université de Biskra,Laboratoire de Génie Mécanique
[2] Université de Biskra,undefined
来源
Mechanics of Time-Dependent Materials | 2014年 / 18卷
关键词
Elastoviscoplastic; Bending curvature; Creep; Nonlinear behavior; Flexion; Thermoplastic; Rheological model;
D O I
暂无
中图分类号
学科分类号
摘要
Thermoplastics start to manifest a nonlinear mechanical behavior from relatively low loading levels. Under a bending solicitation, which generates a nonuniform stress field, the material behavior becomes more challenging. Indeed, a flexed specimen may have different behaviors from one point to another according to the local stress state. In the present work, a six-parameter rheological model is used to simulate the nonlinear behavior of an elastoviscoplastic beam, subjected to a three-point bending load. In the framework of Euler–Bernoulli theory, the mathematical formulation of a bent beam behavior involves the bending curvature function. This function allows the determination of the strain and stress fields along and through the beam. However, when the beam reaches the viscoplastic stage, the differential equation providing the bending curvature of the beam requires a numerical integration, which has been accomplished in this work. This theoretical modeling approach is supported by experimental creep tests carried out on polyamide specimens (PA6). The testing results are qualitatively consistent with the predictions of the proposed rheological model.
引用
收藏
页码:573 / 587
页数:14
相关论文
共 35 条
[1]  
Al-Haik M.S.(2004)Explicit and implicit viscoplastic models for polymeric composite Int. J. Plast. 20 1875-1907
[2]  
Garmestani H.(2001)Viscoplastic analysis of structural polymer composites using stress relaxation and creep data Composites, Part B, Eng. 32 165-170
[3]  
Savran A.(2006)Finite difference scheme for large-deflection analysis of non-prismatic cantilever beams subjected to different types of continuous and discontinuous loadings Arch. Appl. Mech. 75 459-473
[4]  
Al-Haik M.(2008)A review of some plasticity and viscoplasticity constitutive theories Int. J. Plast. 24 1642-1693
[5]  
Vaghar M.R.(2008)A viscoplastic constitutive model for polymeric materials Int. J. Plast. 24 2032-2058
[6]  
Garmestani H.(2012)Inelastic material behavior of polymers—experimental characterization, formulation and implementation of a material model Mech. Mater. 52 40-57
[7]  
Shahawy M.(2012)A generalised fractional derivative model to represent elastoplastic behaviour of metals Int. J. Mech. Sci. 65 12-17
[8]  
Al-Sadder S.(2011)Coupled viscoelastic–viscoplastic modeling of homogeneous and isotropic polymers: numerical algorithm and analytical solutions Comput. Methods Appl. Mech. Eng. 200 3381-3394
[9]  
Al-Rawi R.A.O.(1856)Mémoire sur la flexion des prismes J. Math. Pures Appl. 1 89-189
[10]  
Chaboche J.(2010)New flow rules in elasto-viscoplastic constitutive models for spheroidal graphite cast-iron Int. J. Plast. 26 905-924