首页> 外文会议>Progresses in Fracture and Strength of Materials and Structures pt.2 >Atomistic Finite Element Simulations on the Tensile Properties of Polyhedral Oligomeric Silsesquioxane (POSS) Reinforced Polystyrene
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Atomistic Finite Element Simulations on the Tensile Properties of Polyhedral Oligomeric Silsesquioxane (POSS) Reinforced Polystyrene

机译:多面体低聚倍半硅氧烷(POSS)增强聚苯乙烯拉伸性能的原子有限元模拟

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The influences of the polyhedral oligomeric silsesquioxane (POSS) on the mechanical properties of the polystyrene (PS) under tensile strain loading were studied using the atomistic finite element simulations. Firstly, the nano scale pole-like atomistic models and the micro scale pole-like finite element models of two kinds of homopolymers, the pure PS and the polystyrene attached with 5 mol% propyl-POSS (P-POSS-PS), were built, after which the atomistic finite element models were built by connecting the carbon and silicon atoms on the boundaries of the atomistic models to the corresponding nodes in the finite element ones. Then the mechanical behaviors of the two kinds of homopolymers under different tensile strains were investigated. The results show that, when the tensile strain of PS reaches 0.05 the micro voids appear. The tensile stresses of PS approximatively keep increasing with the increasing strain before the tensile strain of 0.07, after which the stresses declines. And the corresponding tensile modulus of PS is 4.52GPa. By contrast with PS, when the tensile strain of P-POSS-PS reaches 0.06 the micro voids appear. The tensile stresses of P-POSS-PS are almost keeping increasing before the tensile strain of 0.08, and the corresponding tensile modulus is 5.32GPa. Conclusions can be made from this work that the tensile strength of homopolymers can be observably improved by POSS. A small quantity of POSS can even improve the toughness of homopolymers slightly. This work has realistic theoretical significance to understand the reinforcement mechanism of POSS and provides important referential message to the applications of POSS.
机译:利用原子有限元模拟研究了多面体低聚倍半硅氧烷(POSS)对拉伸应力载荷下聚苯乙烯(PS)力学性能的影响。首先,建立了两种均聚物的纳米级杆状原子模型和微米级杆状有限元模型,两种均聚物分别连接有5 mol%丙基-POSS(P-POSS-PS)的纯PS和聚苯乙烯之后,通过将原子模型边界上的碳原子和硅原子连接到有限元单元中相应的节点,建立原子有限元模型。然后研究了两种均聚物在不同拉伸应变下的力学行为。结果表明,当PS的拉伸应变达到0.05时,会出现微孔。 PS的拉伸应力在拉伸应变为0.07之前随应变的增加近似保持增加,此后应力下降。 PS的相应拉伸模量为4.52GPa。与PS相反,当P-POSS-PS的拉伸应变达到0.06时,会出现微空隙。 P-POSS-PS的拉伸应力在拉伸应变为0.08之前几乎保持增加,相应的拉伸模量为5.32GPa。从这项工作可以得出结论,POSS可以明显提高均聚物的拉伸强度。少量的POSS甚至可以稍微提高均聚物的韧性。这项工作对于理解POSS的增强机制具有现实的理论意义,并为POSS的应用提供重要的参考信息。

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