Molecular Dynamic Simulations and Experiments Study on the Mechanical Properties of HTPE Binders

被引:10
|
作者
Shi, La [1 ]
Fu, Xiaolong [1 ]
Li, Yang [1 ]
Wu, Shuxin [1 ]
Meng, Saiqin [1 ]
Wang, Jiangning [1 ]
机构
[1] Xian Modern Chem Res Inst, Xian 710065, Peoples R China
基金
中国国家自然科学基金;
关键词
HTPE binders; molecular dynamic simulation; mechanical properties; crosslinking structures; GLASS-TRANSITION TEMPERATURE; REACTION-KINETICS; POLYMER; POLYURETHANES; RUBBER;
D O I
10.3390/polym14245491
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The mechanical properties of HTPE binders have been systemically studied through combining the microstructure molecular simulations with macroscopic experiments. In this study, the crosslinking structures of HTPE binders were established by a computational procedure. Based on the optimized crosslinking models, the mechanical properties and the glass transition temperatures (T-g) of HTPE/N-100, HTPE/HDI, HTPE/TDI, and HTPE/IPDI binder systems were simulated; specifically, the T-g were 245.758 K, 244.573 K, 254.877 K, and 240.588 K, respectively. Then the bond-length distributions, conformation properties, cohesive energy densities, and fraction free volume were investigated to analyze how the microstructures of the crosslinking models influenced the mechanical properties of HTPE binders. Simultaneously, FTIR-ATR spectra analysis of HTPE binders proved that the special peaks, such as -NH and -NCO, could be seen in the crosslinking polyurethane structures synthesized between prepolymers and curing agents. The dynamic mechanical analysis was carried out, and it found that the T-g of HTPE/N-100, HTPE/HDI, HTPE/TDI, and HTPE/IPDI binder systems were -68.18 degrees C, -68.63 degrees C, -65.67 degrees C, and -68.66 degrees C, respectively. In addition, the uniaxial tension verified that both the ultimate stress and Young's modulus of HTPE binder systems declined with the rising temperatures, while the strains at break presented a fluctuant variation. When it was closer to glass temperatures, especially -40 degrees C, the mechanical properties of HTPE binders were more prominent. The morphology of the fractured surface revealed that the failure modes of HTPE binders were mainly intermolecular slipping and molecular chain breakage. In a word, the experimental results were prospectively satisfied using the simulations, which confirmed the accuracy of the crosslinking models between prepolymers and curing agents. This study could provide a scientific option for the HTPE binder systems and guide the design of polyurethanes for composite solid propellant applications.
引用
收藏
页数:18
相关论文
共 50 条
  • [1] Molecular Dynamic Simulations and Experiments Study on the Mechanical Properties of HTPE/PEG Interpenetrating Polymer Network (IPN) Binders
    Shi, La
    Fu, Xiaolong
    Li, Yang
    Wu, Shuxin
    Meng, Saiqin
    Wang, Jiangning
    NANOMATERIALS, 2023, 13 (02)
  • [2] A study of the mechanical properties of the NEPE binders by molecular dynamic simulations and experiments
    Shi, La
    Ren, Li
    Li, Yang
    Fu, Xiaolong
    Meng, Saiqin
    Wang, Jiangning
    RSC ADVANCES, 2022, 12 (25) : 16319 - 16328
  • [3] Mechanical Properties of Boehmite Evaluated by Atomic Force Microscopy Experiments and Molecular Dynamic Finite Element Simulations
    Fankhaenel, J.
    Silbernagl, D.
    Khorasani, M. Ghasem Zadeh
    Daum, B.
    Kempe, A.
    Sturm, H.
    Rolfes, R.
    JOURNAL OF NANOMATERIALS, 2016, 2016
  • [4] Molecular dynamic simulations on the interaction between an HTPE polymer and energetic plasticizers in a solid propellant
    Fu, Xiao-long
    Fan, Xue-zhong
    Ju, Xue-hai
    Qi, Xiao-fei
    Li, JI-zhen
    Yu, Hong-jian
    RSC ADVANCES, 2015, 5 (65): : 52844 - 52851
  • [5] Dynamic and Static Mechanical Properties of Crosslinked Polymer Matrices: Multiscale Simulations and Experiments
    Guseva, Daria V.
    Rudyak, Vladimir Yu.
    Komarov, Pavel V.
    Bulgakov, Boris A.
    Babkin, Alexander V.
    Chertovich, Alexander V.
    POLYMERS, 2018, 10 (07)
  • [6] Cold degradation and dynamic mechanical properties of epoxide binders
    Perepechko, II
    Tekutieva, ZE
    PLASTICS RUBBER AND COMPOSITES PROCESSING AND APPLICATIONS, 1998, 27 (03): : 107 - 109
  • [7] Investigation of hygroscopic and mechanical properties of nanoclay/epoxy system: Molecular dynamics simulations and experiments
    Kim, Do-Hyoung
    Kim, Hak-Sung
    COMPOSITES SCIENCE AND TECHNOLOGY, 2014, 101 : 110 - 120
  • [8] INVESTIGATION OF MECHANICAL PROPERTIES OF CNT REINFORCED EPOXY NANOCOMPOSITE: A MOLECULAR DYNAMIC SIMULATIONS
    Dikshit, Mithilesh K.
    Engle, Pravin E.
    MATERIALS PHYSICS AND MECHANICS, 2018, 37 (01): : 7 - 15
  • [9] Molecular dynamic simulations of the growth and mechanical properties of Zr-Cu films
    Xie L.
    An H.-J.
    Qin Q.
    Zang Y.
    Gongcheng Kexue Xuebao/Chinese Journal of Engineering, 2019, 41 (04): : 497 - 504
  • [10] Effects of branched chains on plasticization properties of trioctyl citrate: Experiments and molecular dynamic simulations
    Gao, Li
    Yuan, Rui
    Tu, Chang
    Tan, Rui
    Xu, Shiai
    JOURNAL OF APPLIED POLYMER SCIENCE, 2024, 141 (37)