材料
Online ISSN : 1880-7488
Print ISSN : 0514-5163
ISSN-L : 0514-5163
論文
ポリカーボネート破壊の粗視化分子動力学解析:分子鎖の絡み合いと空間分布からの破断応力予測モデルの提案
Leelaprachakul Tatchaphon久保 淳梅野 宜崇
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2022 年 71 巻 2 号 p. 151-158

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Polycarbonate finds a wide range of applications as structural materials due to the prominent mechanical and physical properties. It is urged to clarify the molecular origin of its mechanical properties for better designing the molecular structure. In this study, we investigated the effect of entanglement and spatial distribution of molecules in the initial structure on fracture stress by means of coarse-grained molecular dynamics (CGMD) simulation. By altering the method of creation of initial molecular structures, we successfully obtained wide variations of the number of entanglements (Ne) and the radius of gyration (Rg). Using the obtained structures as the initial configuration, we performed uniaxial tension simulations to evaluate the maximum stress (σmax) after yielding. We found that σmax cannot be described by either Ne or Rg alone but is expressed as a function of both of them (σmax = f(Ne,Rg)).

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