首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >The use of COSMO-SAC to predict relative adhesion between polymer matrices and silane-treated glass surfaces in filled particulate composites
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The use of COSMO-SAC to predict relative adhesion between polymer matrices and silane-treated glass surfaces in filled particulate composites

机译:使用COSMO-SAC预测填充的颗粒复合物中聚合物基体与硅烷处理的玻璃表面之间的相对粘附力

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摘要

Successful efforts have been made at predicting the adhesion between several polymer matrices and the surface of a glass filler, treated with various coupling agents using thermodynamic descriptors. A good thermodynamic criterion has been shown to be the (negative) Gibbs free energy of mixing (-△G_(mix)_(0.5), for a solution containing molecules representative of the repeat units of the polymer and the exposed functional groups of the silane coupling agents. Group contribution methods, such as UNIFAC allow for straightforward calculations of (-△G_(mix)_(0.5); however, the UNIFAC database remains incomplete, and furthermore requires a subscription to access the most current database. Recently, new predictive models based on the surface charge distribution of molecules and statistical thermodynamics have been developed to predict properties of solutions. In this work, one such method, COSMO-SAC, is used to calculate (-△G_(mix)_(0.5) and compare the results to a previously determined database of relative practical adhesion strengths between various polymer matrices and the organo-functional groups of silane coupling agents. The results obtained from COSMO-SAC show good agreement with the experimental database, except for the cases of significant steric effects and systems containing amines. Overall, the adhesion predictions obtained from COSMO-SAC calculations are comparable to the UNIFAC predictions, although UNIFAC was more successful in predicting adhesion for the amine containing compounds.
机译:在预测几种聚合物基体与玻璃填料表面之间的附着力方面已经进行了成功的努力,并使用热力学描述词用各种偶联剂处理了玻璃填料。对于包含代表聚合物重复单元的分子和聚合物的暴露官能团的溶液,混合的(负)吉布斯自由能(-△G_(mix)_(0.5)被证明是一个好的热力学判据。硅烷偶联剂。基团贡献方法(例如UNIFAC)可以直接计算(-△G_(mix)_(0.5);但是,UNIFAC数据库仍然不完整,并且还需要订阅才能访问最新的数据库。已经开发了基于分子表面电荷分布和统计热力学的新预测模型来预测溶液的性质,在这项工作中,使用一种方法COSMO-SAC来计算(-△G_(mix)_(0.5)并将结果与​​先前确定的各种聚合物基体与硅烷偶联剂的有机官能团之间的相对实际粘合强度的数据库进行比较,从COSMO-SAC获得的结果与实验数据库,但明显的空间效应和含胺的系统除外。总体而言,尽管UNIFAC在预测含胺化合物的粘合性方面更为成功,但从COSMO-SAC计算得出的粘合性预测与UNIFAC的预测可比。

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