A numerical multi-scale method for analyzing the rate-dependent and inelastic response of short fiber reinforced polymers: Modeling framework and experimental validation

被引:4
作者
Ahmadi, H. [1 ,2 ,3 ]
Hajikazemi, M. [1 ]
Finazzi, D. [1 ,2 ]
Sinchuk, Y. [1 ]
Van Paepegem, W. [1 ]
机构
[1] Univ Ghent, Fac Engn & Architecture, Dept Mat Text & Chem Engn, Technol Pk 46, B-9052 Zwijnaarde, Belgium
[2] SIM M3 Program, Technol Pk 48, B-9052 Zwijnaarde, Belgium
[3] Technol Pk 46, B-9052 Zwijnaard, Belgium
关键词
Multi-scale method; Short fiber reinforced polymers; Rate dependency; Two-layer viscoplastic model; Anisotropic model; Multi -step averaging method; FATIGUE DAMAGE MECHANISMS; MEAN-FIELD HOMOGENIZATION; STRESS DISTRIBUTIONS; STIFFNESS; YIELD; COMPOSITES; INCLUSIONS; SIMULATION; PLASTICITY; POLYAMIDE;
D O I
10.1016/j.compositesa.2024.108018
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This research presents a numerical multi-scale approach that efficiently addresses the inelastic and timedependent mechanical response of short fiber reinforced polymers (SFRPs) under monotonic loading conditions by linking the mechanical analysis from microscale analysis to a continuum model. To do so, first, the mechanical performance of a recently suggested unit cell, considering the intrinsic mechanical characteristics of both fiber and matrix, is studied to address the inelastic and rate-dependent mechanical behavior of completely aligned SFRPs. Then, the evaluated mechanical response is linked to the Hill's plasticity and two-layer viscoplastic (TLVP) models to represent the anisotropic mechanical response of SFRPs. Furthermore, an easy-to-use multi-step homogenization process is considered to numerically incorporate the influence of fiber misalignments. Finally, the suggested multi-scale technique is thoroughly validated at different strain rates, by using experimental observations of short fiber composites with high volume fraction and direct FE simulations of RVEs with complex microstructures.
引用
收藏
页数:17
相关论文
共 78 条
[1]   THE USE OF TENSORS TO DESCRIBE AND PREDICT FIBER ORIENTATION IN SHORT FIBER COMPOSITES [J].
ADVANI, SG ;
TUCKER, CL .
JOURNAL OF RHEOLOGY, 1987, 31 (08) :751-784
[2]   Predicting the elasto-plastic response of short fiber reinforced composites using a computationally efficient multi-scale framework based on physical matrix properties [J].
Ahmadi, H. ;
Hajikazemi, M. ;
Van Paepegem, W. .
COMPOSITES PART B-ENGINEERING, 2023, 250
[3]   A hierarchical multi-scale analytical approach for predicting the elastic behavior of short fiber reinforced polymers under triaxial and flexural loading conditions [J].
Ahmadi, H. ;
Hajikazemi, M. ;
Rashidinejad, E. ;
Sinchuk, Y. ;
Van Paepegem, W. .
COMPOSITES SCIENCE AND TECHNOLOGY, 2022, 225
[4]   Mechanical behavior of multilayer graphene reinforced epoxy nano-composites via a hierarchical multi-scale technique [J].
Ahmadi, H. ;
Jahanshahi, M. ;
Khoei, A. R. ;
Bordas, S. .
CARBON TRENDS, 2021, 4
[5]   A computational study about the effects of ply cracking and delamination on the stiffness reduction of damaged lamina and laminate [J].
Ahmadi, H. ;
Hajikazemi, M. ;
Van Paepegem, W. .
INTERNATIONAL JOURNAL OF DAMAGE MECHANICS, 2022, 31 (03) :325-347
[6]   An anisotropic viscoelastic-viscoplastic model for short-fiber composites [J].
Amiri-Rad, A. ;
Pastukhov, L. V. ;
Govaert, L. E. ;
van Dommelen, J. A. W. .
MECHANICS OF MATERIALS, 2019, 137
[7]   Constitutive modeling of injection-molded short-fiber composites: Characterization and model application [J].
Amiri-Rad, Ahmad ;
Wismans, Martijn ;
Pastukhov, Leonid, V ;
Govaert, Leon E. ;
van Dommelen, Johannes A. W. .
JOURNAL OF APPLIED POLYMER SCIENCE, 2020, 137 (41)
[8]   In situ damage mechanisms investigation of PA66/GF30 composite: Effect of relative humidity [J].
Arif, M. F. ;
Meraghni, F. ;
Chemisky, Y. ;
Despringre, N. ;
Robert, G. .
COMPOSITES PART B-ENGINEERING, 2014, 58 :487-495
[9]   Development of an RVE and its stiffness predictions based on mathematical homogenization theory for short fibre composites [J].
Babu, K. P. ;
Mohite, P. M. ;
Upadhyay, C. S. .
INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2018, 130 :80-104
[10]   PLASTIC BEHAVIOR AND STRETCHABILITY OF SHEET METALS .1. A YIELD FUNCTION FOR ORTHOTROPIC SHEETS UNDER PLANE-STRESS CONDITIONS [J].
BARLAT, F ;
LIAN, J .
INTERNATIONAL JOURNAL OF PLASTICITY, 1989, 5 (01) :51-66