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首页> 外文期刊>Journal of molecular graphics & modelling >Molecular dynamics simulations on miscibility, glass transition temperature and mechanical properties of PMMA/DBP binary system
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Molecular dynamics simulations on miscibility, glass transition temperature and mechanical properties of PMMA/DBP binary system

机译:PMMA / DBP二元系统混溶性,玻璃化转变温度和力学性能的分子动力学模拟

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摘要

Polymethyl methacrylate (PMMA) and dibutyl phthalate (DBP) binary system was simulated by molecular dynamics (MD) simulations with the COMPASS force field to predict properties of PMMA/DBP blends such as the miscibility, the glass transition temperature (T-g) and mechanical properties of polymer/plasticizer blends. Results show that PMMA/DBP is a miscible system, which can be predicted by comparing the difference of the solubility parameters value (vertical bar Delta delta vertical bar2.0 MPa0.5) between PMMA and DBP. The free volumes (V-F) and density (rho) of PMMA/DBP system were simulated to study the T-g. It is found that the V-F and rho of PMMA/DBP change regularly along with the increase of DBP mass fraction and the transition occurred at the turning point. We also predicted the effects of temperature and DBP on the mechanical properties of PMMA including Young's modulus (E), Bulk modulus (K), Shear modulus (G) and Poisson's ratio (v). The mechanical properties can be effectively improved by the temperature and the addition of DBP plasticizer, which may provide a more flexible mixture with a lower E, K, G and an increased ductility. Accordingly, the method used in this work is not only a useful tool to provide properties of a given polymer/plasticizer blend but also a promising technique to help screen the formulations of polymer bonded explosive (PBX) and propellants before experiments. (C) 2018 Elsevier Inc. All rights reserved.
机译:通过分子动力学(MD)模拟与罗盘力场模拟模拟聚甲基丙烯酸甲酯(PMMA)和邻苯二甲酸二丁酯(DBP)二元系统,以预测PMMA / DBP共混物的特性,例如混溶性,玻璃化转变温度(TG)和机械性能聚合物/增塑剂共混物。结果表明,PMMA / DBP是一种可混溶的系统,可以通过比较PMMA和DBP之间的溶解度参数值(垂直条Δδ2.5)的差异来预测。模拟PMMA / DBP系统的自由体积(V-F)和密度(RHO)以研究T-G。发现PMMA / DBP的V-F和RHO通常随着DBP质量分数的增加而变化,并且在转折点发生过渡。我们还预测了温度和DBP对PMMA的机械性能的影响,包括杨氏模量(e),散装模量(k),剪切模量(g)和泊松比(v)。通过温度和添加DBP增塑剂可以有效地改善机械性能,其可以提供更柔韧的混合物,其较低的E,K,G和增加的延展性。因此,本作作品中使用的方法不仅是提供给定聚合物/增塑剂共混物的性质的有用工具,而且是有望的技术,以帮助在实验之前帮助筛选聚合物键合(PBX)和推进剂的配方。 (c)2018年Elsevier Inc.保留所有权利。

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