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聚氨酯和KH550/二氧化硅增强环氧树脂(EP)力学性能的分子动力学研究

Molecular Dynamics Study of Polyurethane and KH550/SiO in Enhancing Epoxy Resin (EP) Mechanical Properties.

作者信息

Tong Zhonghe, Qiu Rui, Cai Shaoxu, Lin Guozhi, Xie Haonan, Jiang Tianyan, Bi Maoqiang

机构信息

School of Electrical and Electronic Engineering, Chongqing University of Technology, Chongqing 400054, China.

College of Civil Engineering, Fuzhou University, Fuzhou 350108, China.

出版信息

Langmuir. 2025 Jul 15;41(27):17749-17763. doi: 10.1021/acs.langmuir.5c01077. Epub 2025 Jul 3.

Abstract

To enhance the mechanical properties of epoxy resin (EP), this study utilizes polyurethane (PU) and KH550/SiO nanoparticles as synergistic modifiers to develop an epoxy resin composite model. In this paper, five models are established, namely: EP, PU-EP, SiO-SR, KH550/SiO-EP, and KH550/SiO-PU-EP model. The mechanism of PU and KH550/SiO synergistic modification of EP mechanical properties is systematically studied through analyses of the cohesive energy density, free fraction volume, radius of gyration, radial distribution function, hydrogen bonding, and pull-out simulations. The results show that SiO nanoparticles modified with the KH550 coupling agent enhance the interaction energy between SiO and the EP matrix in the composite. At different temperatures (300-450 K), both fillers demonstrated the ability to lower the free fractional volume within EP composites. Additionally, they enhanced the quantity of hydrogen bonds, shortened the hydrogen bond distances within the system, and increased the proportion of hydrogen bonds exhibiting higher angles. Among them, KH550-SiO/UP/EP has the most obvious improvement effect on the system, indicating that KH550/SiO and PU synergistically modified epoxy resin can improve the mechanical properties of the composites. At 300 K, the Young's modulus, shear modulus, bulk modulus, and bulk modulus/shear modulus of KH550-SiO/UP/EP system are 8.12%, 7.03%, 16.05%, and 8.43% higher than those of EP system, respectively. At 450 K, it increased by 18.26%, 17.30%, 23.87%, and 27.57%, respectively. The findings of this study are anticipated to offer valuable insights for the design and performance enhancement of epoxy resin composites.

摘要

为提高环氧树脂(EP)的力学性能,本研究采用聚氨酯(PU)和KH550/SiO纳米粒子作为协同改性剂来构建一种环氧树脂复合模型。本文建立了五个模型,即:EP、PU-EP、SiO-SR、KH550/SiO-EP和KH550/SiO-PU-EP模型。通过对内聚能密度、自由体积分数、回转半径、径向分布函数、氢键以及拔出模拟的分析,系统研究了PU和KH550/SiO对EP力学性能的协同改性机理。结果表明,用KH550偶联剂改性的SiO纳米粒子增强了复合材料中SiO与EP基体之间的相互作用能。在不同温度(300 - 450 K)下,两种填料都表现出降低EP复合材料内自由体积分数的能力。此外,它们增加了氢键数量,缩短了体系内氢键距离,并增加了具有较大角度的氢键比例。其中,KH550-SiO/UP/EP对体系的改善效果最为明显,表明KH550/SiO与PU协同改性环氧树脂可提高复合材料的力学性能。在300 K时,KH550-SiO/UP/EP体系的杨氏模量、剪切模量、体积模量以及体积模量/剪切模量分别比EP体系高8.12%、7.03%、16.05%和8.43%。在450 K时,分别提高了18.26%、17.30%、23.87%和27.57%。本研究结果有望为环氧树脂复合材料的设计和性能提升提供有价值的见解。

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