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聚酰胺非晶相弹性性质预测
引用本文:邓旭辉,唐现琼,尹久仁,张为民,张平.聚酰胺非晶相弹性性质预测[J].高分子材料科学与工程,2011(1):170-174.
作者姓名:邓旭辉  唐现琼  尹久仁  张为民  张平
作者单位:湘潭大学土木工程与力学学院;
基金项目:国家自然科学基金资助项目(10672138); 湖南省教育厅资助项目(07A071、04C682)
摘    要:聚合物基复合材料宏观有效力学性质的确定需要复合材料中各个组分的基本力学性质。采用基于拓扑的关联指数法对11种典型聚酰胺非结晶相的体积模量、泊松比、杨氏模量、剪切模量等弹性性能进行了预测。结果表明,当温度从1K逐步增加到(Tg-20)K时,体积模量、杨氏模量和剪切模量随温度的增加呈指数规律减小;而泊松比则呈线性增加。当温度在玻璃化温度Tg附近(Tg-20)
关 键 词:聚酰胺  关联指数法  泊松比  体积模量  杨氏模量  剪切模量

The Predictions of Elastic Properties of Amorphous Phase of Polyamides
Xuhui Deng,Xianqiong Tang,Jiuren Yin,Weimin Zhang,Ping Zhang.The Predictions of Elastic Properties of Amorphous Phase of Polyamides[J].Polymer Materials Science & Engineering,2011(1):170-174.
Authors:Xuhui Deng  Xianqiong Tang  Jiuren Yin  Weimin Zhang  Ping Zhang
Affiliation:Xuhui Deng,Xianqiong Tang,Jiuren Yin,Weimin Zhang,Ping Zhang(School of Civil Engineering and Mechanics,Xiangtan University,Xiangtan 411105,China)
Abstract:The basic elastic properties of the components of polymer matrix composites are required for the prediction of effective property.The elastic properties of 11 polyamides,such as Poisson′s ratio,bulk modulus,Young′s modulus and shear modulus,were predicted by the connectivity indices method based on topology from their molecular structures.It shows that when the temperature rises from 1 K to(Tg-20)K,bulk modulus,Young′s modulus and shear modulus decrease exponentially,while the Poisson′s ratio increases linearly.And with the temperature rising from(Tg-20) K to(Tg+30) K,Young′s modulus and shear modulus decrease from GPa order magnitude to MPa order magnitude dramatically,while the Poisson′s ratio increases from about 0.42 to 0.4999 rapidly.After a drop of bulk modulus at the glass transition temperature,it decreases exponentially again with temperature increasing.The correlations between these elastic properties and temperature of 11 kinds of polyamides were obtained by linear or nonlinear regression respectively.
Keywords:polyamide  connectivity index method  Poisson's ratio  bulk modulus  Young's modulus  shear modulus  
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