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乙烯基硅油粘度对硅橡胶泡沫材料力学性能影响的分子动力学模拟与实验验证

Molecular dynamics simulation and experimental verification of the effects of vinyl silicone oil viscosity on the mechanical properties of silicone rubber foam.

作者信息

He Hongyu, Li Lulu, Ya Ruhan, Liu Hong, Luo Bin, Li Zhipeng, Tian Wenhuai

机构信息

School of Materials Science and Engineering, University of Science and Technology Beijing Beijing 100083 China

School of Materials Science and Engineering, Shunde Innovation School, University of Science and Technology Beijing Foshan 528300 China

出版信息

RSC Adv. 2024 Jul 30;14(33):23840-23852. doi: 10.1039/d4ra04784b. eCollection 2024 Jul 26.

Abstract

The molecular motion trajectories of silicone rubber foam (SRF) at various vinyl silicone oil viscosities were studied molecular dynamics (MD) simulation from the perspective of all atomic molecules. The influence of different viscosities of vinyl silicone oil on interaction, compatibility, and aggregation degree of molecules was determined based on the mean square displacement, diffusion coefficient, binding energy, solubility parameter, radial distribution function, and radius of gyration. The mechanical properties of the SRF were also experimentally verified. Results revealed that as the viscosity of vinyl silicone oil increased, the mean square displacement, fractional free volume, diffusion coefficient, and solubility parameter of the system decreased, whereas its larger radius of gyration increased. Moreover, the radial distribution function showed a weaker relative interaction between molecular chains. The calculated binding energy demonstrated that the system had better compatibility at a viscosity of 0.45 Pa s. This study provided a deeper insight into the relation between the viscosity of vinyl silicone oil and mechanical properties of the SRF. As the viscosity of vinyl silicone oil increased, the changing trend in MD simulation results of elastic modulus, shear modulus, bulk modulus, and Poisson's ratio was consistent with the experimental results. The MD simulations can promote theoretical predictions and scientific basis for the design of the SRF with desired performances.

摘要

从全原子分子的角度,通过分子动力学(MD)模拟研究了不同乙烯基硅油粘度下硅橡胶泡沫(SRF)的分子运动轨迹。基于均方位移、扩散系数、结合能、溶解度参数、径向分布函数和回转半径,确定了乙烯基硅油不同粘度对分子间相互作用、相容性和聚集程度的影响。还通过实验验证了SRF的力学性能。结果表明,随着乙烯基硅油粘度的增加,体系的均方位移、自由体积分数、扩散系数和溶解度参数降低,而其较大的回转半径增加。此外,径向分布函数表明分子链之间的相对相互作用较弱。计算得到的结合能表明,在粘度为0.45 Pa·s时体系具有较好的相容性。本研究深入探讨了乙烯基硅油粘度与SRF力学性能之间的关系。随着乙烯基硅油粘度的增加,弹性模量、剪切模量、体积模量和泊松比的MD模拟结果变化趋势与实验结果一致。MD模拟可为设计具有理想性能的SRF提供理论预测和科学依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfaa/11287115/dbf5aa2f2b67/d4ra04784b-f1.jpg

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