Shi Fenghui, Dai Zhishuang, Zhang Baoyan
Beijing Institute of Aeronautical Materials, Beijing 100095, China.
Se Pu. 2010 Jul;28(7):697-701. doi: 10.3724/sp.j.1123.2010.00697.
Inverse gas chromatography (IGC) was used to measure the surface tension and solubility parameter of E51 epoxy resin in this work. By using the Schultz method, decane, nonane, octane and heptane were chosen as the neutral probes to calculate the dispersive surface tensions (gamma(D)). Based on the Good-van Oss equation, the specific surface tension (gamma(SP)) of E51 epoxy resin was calculated with the acidic probe of dichloromethane and the basic probe of toluene. The results showed that the gamma(D) and gamma(SP) of the E51 resin decreased linearly with the increase of temperature. According to the Flory-Huggins parameters (chi) between the resin and a series of probes, the solubility parameters (delta) of E51 resin at different temperatures were estimated using the method developed by DiPaola-Baranyi and Guillet. It was found that the values of delta of the E51 resin were 11.78, 11.57, 11.48 and 11.14 MPa1/2 at 30, 40, 50 and 60 degrees C, respectively. The dispersive component (delta(D)) and the specific component (delta(SP)) of solubility parameter at different temperatures of the E51 resin were investigated according to the relationships between surface tension, cohesion energy and solubility parameter. The results showed that the values of delta(D) were higher than those of delta(SP) for the epoxy resin, and both of them decreased with the increase of temperature.
在本工作中,采用反相气相色谱法(IGC)测定了E51环氧树脂的表面张力和溶解度参数。通过舒尔茨方法,选择癸烷、壬烷、辛烷和庚烷作为中性探针来计算分散表面张力(γ(D))。基于古德-范奥氏方程,用二氯甲烷作为酸性探针、甲苯作为碱性探针计算了E51环氧树脂的比表面张力(γ(SP))。结果表明,E51树脂的γ(D)和γ(SP)随温度升高呈线性下降。根据树脂与一系列探针之间的弗洛里-哈金斯参数(χ),采用迪保拉-巴拉尼和吉耶开发的方法估算了E51树脂在不同温度下的溶解度参数(δ)。结果发现,E51树脂在30、40、50和60℃时的δ值分别为11.78、11.57、11.4 and 11.14 MPa1/2。根据表面张力、内聚能和溶解度参数之间的关系,研究了E51树脂在不同温度下溶解度参数的分散分量(δ(D))和比分量(δ(SP))。结果表明,环氧树脂的δ(D)值高于δ(SP)值,且二者均随温度升高而降低。