Miturska Izabela, Rudawska Anna, Müller Miroslav, Hromasová Monika
Department of Production Engineering, Faculty of Mechanical Engineering, Lublin University of Technology, Nadbystrzycka 36, 20-618 Lublin, Poland.
Department of Material Science and Manufacturing Technology, Faculty of Engineering, Czech University of Life Sciences, Kamýcká 129, 165 21 Prague, Czech Republic.
Materials (Basel). 2021 Jan 15;14(2):411. doi: 10.3390/ma14020411.
The proper process of preparing an adhesive composition has a significant impact on the degree of dispersion of the composition ingredients in the matrix, as well as on the degree of aeration of the resulting composition, which in turn directly affects the strength and functional properties of the obtained adhesive compositions. The paper presents the results of tensile strength tests and SEM microphotographs of the adhesive composition of Epidian 57 epoxy resin with Z-1 curing agent, which was modified using three fillers NanoBent ZR2 montmorillonite, CaCO calcium carbonate and CWZ-22 active carbon. For comparison purposes, samples made of unmodified composition were also tested. The compositions were prepared with the use of six mixing methods, with variable parameters such as type of mixer arm, deaeration and epoxy resin temperature. Then, three mixing speeds were applied: 460, 1170 and 2500 rpm. The analyses of the obtained results showed that the most effective tensile results were obtained in the case of mixing with the use of a dispersing disc mixer with preliminary heating of the epoxy resin to 50 °C and deaeration of the composition during mixing. The highest tensile strength of adhesive compositions was obtained at the highest mixing speed; however, the best repeatability of the results was observed at 1170 rpm mixing speed. Based on a comparison test of average values, it was observed that, in case of modified compositions, the values of average tensile strength obtained at mixing speeds at 1170 and 2500 rpm do not differ significantly with the assumed level of significance = 0.05.
制备粘合剂组合物的适当工艺对组合物成分在基质中的分散程度以及所得组合物的曝气程度有重大影响,而这又直接影响所获得的粘合剂组合物的强度和功能性能。本文介绍了Epidian 57环氧树脂与Z-1固化剂的粘合剂组合物的拉伸强度测试结果和扫描电子显微镜照片,该组合物使用三种填料进行了改性,分别是NanoBent ZR2蒙脱石、CaCO碳酸钙和CWZ-22活性炭。为作比较,还测试了由未改性组合物制成的样品。使用六种混合方法制备组合物,其参数可变,如搅拌器臂的类型、脱气和环氧树脂温度。然后,采用三种混合速度:460、1170和2500转/分钟。对所得结果的分析表明,在使用分散盘式搅拌器且将环氧树脂预热至50°C并在混合过程中对组合物进行脱气的情况下进行混合,可获得最有效的拉伸结果。粘合剂组合物的最高拉伸强度是在最高混合速度下获得的;然而,在1170转/分钟的混合速度下观察到结果的最佳重复性。基于平均值的比较测试,观察到,对于改性组合物,在1170和2500转/分钟的混合速度下获得的平均拉伸强度值在假定的显著性水平α = 0.05时没有显著差异。