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Investigating mechanical properties of cross-linked SiO2 and polyimide through molecular dynamics simulation

机译:通过分子动力学模拟研究交联SiO2和聚酰亚胺的机械性能

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摘要

The cross-linked model of SiO2 and polyimide (SiO2-PI) was constructed through molecular dynamics simulation, and the mixture model of SiO2 and PI (SiO2/PI) was also constructed for comparative analysis. The SiO2-PI model was constructed at the atomistic level to simulate the real polymerization procedure. By comparing the radial distribution function and interaction energy of the two models, covalent bonds have been formed and the reliability of the cross-linked model was confirmed. The mechanical properties of the two materials are calculated by the molecular dynamics and the improvement in mechanical properties has shown after the cross-linking. This improvement in the mechanical properties of the materials is analyzed theoretically with the conclusions of morphology and interaction energy. By comparing with similar materials, the results obtained in this paper are convincing. Thus, the cross-linked model can provide theoretical guidance for the improvement in the material properties.
机译:通过分子动力学模拟构建SiO 2和聚酰亚胺(SiO2-PI)的交联模型,并且还构造了SiO2和Pi(SiO 2 / PI)的混合模型以进行比较分析。 SiO2-PI模型在原子水平构建以模拟实际聚合方法。通过比较两种模型的径向分布功能和相互作用能量,已经形成了共价键,并确认了交联模型的可靠性。通过分子动力学计算两种材料的力学性能,并且在交联后,机械性能的改善已经显示。理论上,这种改善材料的机械性能与形态和相互作用能量的结论进行了理论上。通过与类似材料进行比较,本文获得的结果是令人信服的。因此,交联模型可以为改善材料特性提供理论指导。

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