首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Monte Carlo simulations on the effects of nanoparticles on chain deformations and reinforcement in amorphous polyethylene networks
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Monte Carlo simulations on the effects of nanoparticles on chain deformations and reinforcement in amorphous polyethylene networks

机译:蒙特卡洛模拟对纳米粒子对无定形聚乙烯网络中链变形和增强的影响

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Reinforcing effects in an amorphous polyethylene matrix were estimated for spherical filler particles arranged either on a cubic lattice or randomly in space.Attention was first focused on the effects of the type of arrangement of the particles on the microscopic properties of the polymer chains.Specifically,Monte Carlo rotational isomeric state (MC-RIS) simulations were carried out to predict the effects of the volumes excluded by the filler particles on the configurational distribution functions of the chains,and from these distributions the elastomeric properties of the composites.The calculations were carried out for a range of particle sizes and particle volume fractions.As expected,filler inclusions are found to increase the non-Gaussian behavior of the chains.The results were compared with those from small-angle neutron scattering (SANS) experiments.In the case of arrangement on a cubic lattice,chains dimensions were always found to decrease.In the randomly-dispersed filler arrangements,there were significant increases in chain dimensions relative to the unfilled system in some instances,and the changes were in excellent agreement with the SANS results.The present simulations thus give further encouragement to interpretations of chain deformations in filled systems in terms of volume exclusion effects from the nanoparticle inclusions,including their dispersions and arrangements within polymer matrices.
机译:对于排列在立方晶格上或在空间中随机排列的球形填料颗粒,估计了其在无定形聚乙烯基体中的增强作用,首先关注的是颗粒排列类型对聚合物链微观性能的影响。进行了蒙特卡洛旋转异构状态(MC-RIS)模拟,以预测填料颗粒排除的体积对链的构型分布函数的影响,并从这些分布中预测复合材料的弹性体性能。进行了计算如预期的那样,发现填料夹杂物增加了链的非高斯行为,并将结果与​​小角度中子散射(SANS)实验的结果进行了比较。在立方晶格上排列,总是发现链的尺寸减小。在随机分散的填充物中注意,在某些情况下,相对于未填充的系统,链的尺寸显着增加,并且变化与SANS结果非常吻合。因此,当前的模拟进一步推动了对填充系统中链变形的体积排阻的解释。纳米颗粒夹杂物的作用,包括它们在聚合物基质中的分散和排列。

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