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Mechanical Properties Of Tetra-Polyethylene And Tetra-Polyethylene Oxide Diamond Networks Via Molecular Dynamics Simulations

机译:四聚乙烯和四聚环氧乙烷金刚石网络的力学性能的分子动力学模拟

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摘要

The tensile response to uniaxial deformation of polyethylene-based (Tetra-PE) and polyethylene glycol-based (Tetra-PEG) networks of various strand lengths with idealized diamond connectivity have been studied via atomistic molecular dynamics simulations. Tetra-PE and Tetra-PEG diamond networks with the same strand length show comparable maximum extensibility but the Young's moduli and tensile strength of the former are significantly lower than those of the latter, consistent with stronger intersegmental attractions in the amorphous Tetra-PEG networks. The stress-strain curves show that the stress in short-stranded networks increased rapidly and monotonically with strain while for long-stranded networks it increased very little at small strain, in a non-monotonic fashion at intermediate strains, and then very sharply as the limit of extensibility was approached. Spontaneous partial crystallization of a long-stranded Tetra-PE diamond network under supercooling was demonstrated, and the resulting system was used to: (1) Estimate its melting point as the temperature where any crystalline material disappeared abruptly, and (2) show that the presence of crystalline material in the undeformed state leads to higher stress responses upon deformation compared to amorphous samples, a result consistent with experimental observations. The spontaneous crystallization of Tetra-PEG networks at large supercooling was unsuccessful due to the slow motions of the network beads and the prohibitively long crystal nucleation times entailed.
机译:通过原子分子动力学模拟研究了具有理想金刚石连接性的各种股长的聚乙烯基(Tetra-PE)和聚乙二醇基(Tetra-PEG)网络对单轴变形的拉伸响应。具有相同链长的Tetra-PE和Tetra-PEG金刚石网络显示出可比的最大可延展性,但前者的杨氏模量和拉伸强度明显低于后者,与无定形Tetra-PEG网络中更强的节间吸引力相符。应力-应变曲线表明,短链网络中的应力随应变而快速单调增加,而长链网络中的应力在小应变时几乎没有增加,在中间应变时以非单调的方式增加,然后随着应变的增加而急剧增加。达到了可扩展性极限。证明了长链Tetra-PE金刚石网络在过冷条件下的自发部分结晶,并将所得体系用于:(1)估算熔点,即任何结晶物质突然消失的温度,以及(2)表明与无定形样品相比,未变形状态的结晶材料的存在导致变形时的应力响应更高,这一结果与实验观察结果一致。由于网状球的缓慢运动和太长的晶体成核时间,在大的过冷条件下,Tetra-PEG网络的自发结晶未能成功。

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    Wang, Endian;

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  • 年度 2016
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