Modelling the dynamic physical properties of vulcanised polymer models by molecular dynamics simulations and machine learning

被引:10
作者
Yoshida, Kohei [1 ]
Kanematsu, Yusuke [1 ]
Rocabado, David S. Rivera [1 ]
Ishimoto, Takayoshi [1 ]
机构
[1] Hiroshima Univ, Grad Sch Adv Sci & Engn, 1-3-2 Kagamiyama, Higashihiroshima, Hiroshima 7398511, Japan
关键词
Polymer; Natural rubber; Molecular dynamics; Machine learning; THERMAL-CONDUCTIVITY DECOMPOSITION; STYRENE-BUTADIENE RUBBER;
D O I
10.1016/j.commatsci.2023.112081
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The performance trade-off of rubber materials is a major barrier to their development. Thus, to overcome such limitations, there is a strong need to understand the mechanisms related to the influence of the polymer structure on the physical properties of rubber materials. Although a number of studies have analysed the relationship between the structures of monomers and the properties of polymers, few studies have focused on the contribution of polymer dynamics to property analysis. Thus, we performed molecular dynamics simulations on vulcanised natural rubber to calculate the dynamic structural features and physical properties. Machine learning was used to analyse the effect of changes in the polymer structure (i.e., sulfur crosslinking) on the physical properties. Furthermore, the structural parameters involved in the physical properties were extracted. These findings pro-vide clues to understanding the mechanism of simultaneous control of multiple properties in a trade-off rela-tionship, which has previously been considered difficult.
引用
收藏
页数:10
相关论文
共 53 条
[1]   Perspective: Materials informatics and big data: Realization of the "fourth paradigm" of science in materials science [J].
Agrawal, Ankit ;
Choudhary, Alok .
APL MATERIALS, 2016, 4 (05)
[2]   Vulcanization and crosslinking in elastomers [J].
Akiba, M ;
Hashim, AS .
PROGRESS IN POLYMER SCIENCE, 1997, 22 (03) :475-521
[3]  
Alvarez Grima M.M., 2007, PRINT PARTNERS IPSKA
[4]  
Bekkedahl N., J RES NBS A PHYS CH, V73
[5]   The reinforcement of elastomeric networks by fillers [J].
Bokobza, L .
MACROMOLECULAR MATERIALS AND ENGINEERING, 2004, 289 (07) :607-621
[6]   Crystal and Crystallites Structure of Natural Rubber and Synthetic cis-1,4-Polyisoprene by a New Two Dimensional Wide Angle X-ray Diffraction Simulation Method. I. Strain-Induced Crystallization [J].
Che, Justin ;
Burger, Christian ;
Toki, Shigeyuki ;
Rong, Lixia ;
Hsiao, Benjamin S. ;
Amnuaypornsri, Sureerut ;
Sakdapipanich, Jitladda .
MACROMOLECULES, 2013, 46 (11) :4520-4528
[7]   Improved mechanical, thermal conductivity and low heat build-up properties of natural rubber composites with nano-sulfur modified graphene oxide/silicon carbide [J].
Duan, Xiaoyuan ;
Tao, Rongyao ;
Chen, Yuchen ;
Zhang, Zhiyi ;
Zhao, Guizhe ;
Liu, Yaqing ;
Cheng, Shuaishuai .
CERAMICS INTERNATIONAL, 2022, 48 (15) :22053-22063
[8]  
Evans D.J., STAT MECH NONEQUILIB
[9]   Atomic coordination dictates vibrational characteristics and thermal conductivity in amorphous carbon [J].
Giri, Ashutosh ;
Dionne, Connor J. ;
Hopkins, Patrick E. .
NPJ COMPUTATIONAL MATERIALS, 2022, 8 (01)
[10]   Evaluation of the compatibility between rubber and asphalt based on molecular dynamics simulation [J].
Guo, Fucheng ;
Zhang, Jiupeng ;
Pei, Jianzhong ;
Ma, Weisi ;
Hu, Zhuang ;
Guan, Yongsheng .
FRONTIERS OF STRUCTURAL AND CIVIL ENGINEERING, 2020, 14 (02) :435-445