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Analysis of the results of surface free energy measurement of Ti6A14V by different methods

机译:不同方法对Ti6a14V的表面自由能测量结果分析

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Surface Free Energy (SFE) of solids should be calculated using theoretical models. The contact angle (CA) measurement on a surface is considered the most practical way to obtain the SFE. The results of five methods based in the models are compared: the method of Zisman (ZI), the geometric mean (GM), the harmonic mean (HM), the Lifshitz-van der Waals / Acid-Base (LW/AB) and the equation of state (ES). The SFE calculated with GM, HM and LW/AB methods change with the amount and type of liquid used, however, when water, glycerol and dimethyl sulfoxide are used together the SFE and its dispersive and polar components are similar in value for the three methods. In the case of the ES model the values of SFE change with the liquid used; finally using the ZI method the SFE values are 20% lower than (he values of SFE obtained with the other methods.
机译:应使用理论模型计算固体的表面自由能(SFE)。表面上的接触角(CA)测量被认为是获得SFE最实用的方法。基于模型的五种方法的结果进行了比较:ZISMAN(ZI)的方法,几何平均值(GM),谐波平均值(HM),Lifshitz-Van der Waals /酸碱(LW / AB)和状态方程(ES)。用GM,HM和LW / AB方法计算的SFE与所用的液体的量和类型的液体变化,但是,当水,甘油和二甲基亚砜一起使用SFE时,其分散剂和极性组分在三种方法的有价值中相似。在ES模型的情况下,使用所使用的液体改变SFE的值;最后使用ZI方法,SFE值低于20%,低于(用其他方法获得的SFE的值)。

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