Modeling the Effects of Filler Network and Interfacial Shear Strength on the Mechanical Properties of Carbon Nanotube-Reinforced Nanocomposites

被引:10
作者
Zare, Yasser [1 ]
Rhee, Kyong Yop [1 ]
机构
[1] Kyung Hee Univ, Coll Engn, Dept Mech Engn, 1 Seocheon, Yongin 449701, Gyeonggi, South Korea
关键词
TENSILE-STRENGTH; PERCOLATION-THRESHOLD; INTERPHASE REGIONS; YOUNGS MODULUS; POLYMER MATRIX; COMPOSITE; CNT; NANOPARTICLES; STRESS; AGGREGATION/AGGLOMERATION;
D O I
10.1007/s11837-020-04083-x
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This modeling paper describes the roles of filler network and imperfect interfacial adhesion between polymer matrix and nanoparticles in the tensile modulus and yield strength of polymer/carbon nanotube (CNT) nanocomposites (PCNT). The percolation threshold (phi p) is assumed by the aspect ratio of the CNT; also, both the critical length of the nanotubes. Crucial for effective stress transfer from matrix to filler (L-c). and the interfacial shear strength (tau) reflect the incomplete interfacial adhesion. Two known micromechanics models are used to examine the influences of these parameters on the tensile modulus and yield strength of PCNT. The lowest ranges of phi p and L-c produce the highest levels of mechanical properties, while tau cannot affect the mechanical performance. The main reasons for these occurrences are explained in order to clarify the roles of the filler network and interfacial adhesion in the modulus and strength of PCNT.
引用
收藏
页码:2184 / 2190
页数:7
相关论文
共 58 条
[1]   Interface Analysis of Spark Plasma Sintered Carbon Nanotube Reinforced Ti6Al4V [J].
Adegbenjo, A. O. ;
Olubambi, P. A. ;
Westraadt, J. E. ;
Lesufi, M. ;
Mphahlele, M. R. .
JOM, 2019, 71 (07) :2262-2271
[2]   Multiscale modeling of the effect of waviness and agglomeration of CNTs on the elastic properties of nanocomposites [J].
Alian, A. R. ;
El-Borgi, S. ;
Meguid, S. A. .
COMPUTATIONAL MATERIALS SCIENCE, 2016, 117 :195-204
[3]   High Corrosion Resistance Offered by Multi-Walled Carbon Nanotubes Directly Grown Over Mild Steel Substrate [J].
Arora, Sweety ;
Rekha, M. Y. ;
Gupta, Abhay ;
Srivastava, Chandan .
JOM, 2018, 70 (11) :2590-2595
[4]   A Novel Approach to Facile Synthesis and Biosensing of the Protein-Regulated Graphene [J].
Askari, Esfandyar ;
Naghib, Seyed Morteza .
INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE, 2018, 13 (01) :886-897
[5]   Elasticity of Poissonian fiber networks [J].
Åström, JA ;
Mäkinen, JP ;
Alava, MJ ;
Timonen, J .
PHYSICAL REVIEW E, 2000, 61 (05) :5550-5556
[6]   Chitosan/MWCNTs Composite as Bone Substitute: Physical, Mechanical, Bioactivity, and Biodegradation Evaluation [J].
Bakhtiari, Sanaz Soleymani Eil ;
Karbasi, Saeed ;
Tabrizi, Sayed Ali Hassanzadeh ;
Ebrahimi-Kahrizsangi, Reza .
POLYMER COMPOSITES, 2019, 40 (S2) :E1622-E1632
[7]   Influence of Graphene Oxide on Mechanical and Hydrophilic Properties of Epoxy/Banana Fiber Composites [J].
Bharadiya, Preetam S. ;
Singh, Mukesh K. ;
Mishra, Satyendra .
JOM, 2019, 71 (02) :838-843
[8]  
Callister W. D., 2018, MAT SCI ENG INTRO, DOI DOI 10.1016/0025-5416(87)90343-0
[9]   A model for the elastic moduli of three-dimensional fiber networks and nanocomposites [J].
Chatterjee, Avik P. .
JOURNAL OF APPLIED PHYSICS, 2006, 100 (05)
[10]   Electrical and Mechanical Properties of 3D-Printed Graphene-Reinforced Epoxy [J].
Compton, Brett G. ;
Hmeidat, Nadim S. ;
Pack, Robert C. ;
Heres, Maximilian F. ;
Sangoro, Joshua R. .
JOM, 2018, 70 (03) :292-297