以稻壳灰分为填料,经表面活性剂处理的环氧防摩擦涂料

A. Valeeva, E. Gotlib, E. Yamaleeva
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引用次数: 0

摘要

在保持较高耐磨性的同时,使用环氧减摩涂层可以显著降低摩擦区的热应力,扩大涂层的工作温度区间。研究了表面活性剂硅酸盐填料-稻壳灰对环氧材料抗磨涂层的物理化学性能和力学性能的影响。所有被研究的稻壳灰样品,无论是初始的还是用表面活性剂活化的,表面都具有碱性。研究发现,所有阳离子季铵盐(QAS)均能降低稻壳灰的pH值。同时,非离子型的OXIPAV增加了该指标。季铵盐和氨基硅烷对稻壳灰分表面的活化,显著降低了这种硅酸盐的孔隙率。在这种情况下,非离子型季铵盐活化后,平均孔径变化不明显,比表面积减小幅度较小。应用33%的季铵盐和氨基硅烷对所研究的硅酸盐填料表面进行活化,无论表面活性剂的化学结构如何,都降低了其对环氧组合物的改性效果,这不是典型的效果。因此,作者认为使用了次优季铵盐和氨基硅烷的浓度。研究确定50%乙醇溶液中KATAPAV的最佳浓度为14.7 ~ 21%。在QAS含量的这一范围内,硬度显著提高(约40%),磨损略有降低(约10%),静摩擦系数显著降低(可达2倍)。同时,作者观察到与金属的附着力增加了3倍,弯曲强度增加了25%。因此,以最佳用量的季铵盐活化稻壳灰是一种有效的环氧涂料改性剂,可以改善环氧涂料的抗摩擦性能,提高其耐磨性、硬度、强度和附着力。
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EPOXY ANTIFRICTION COATINGS FILLED WITH THE RICE HUSKS ASH TREATED WITH SURFACTANTS
The use of epoxy antifriction coatings can significantly reduce thermal stress in the friction zone and expand the coating working temperature interval while keeping high wear resistance. The paper considers the effect of non-activated and activated by surfactants silicate filler – rice husk ash on the physicochemical and mechanical properties of epoxy materials applied as antifriction coatings. All studied samples of rice husk ash, both initial and activated with surfactants, have an alkaline surface nature. The study identified that all cationic quaternary ammonium salts (QAS) reduce the pH of rice husk ash. At the same time, nonionic OXIPAV increases this indicator. Activation of the rice husk ash surface, both by the quaternary ammonium salts and aminosilanes, significantly reduces the porosity of this silicate. In this case, the average pore diameter does not change significantly, and their specific surface area decreases significantly, to a lesser extent, when activated by nonionic quaternary ammonium salts. The application of quaternary ammonium salts and aminosilanes in the amount of 33 % for activation of the surface of the investigated silicate filler reduces its modifying effect in epoxy compositions, regardless of the chemical structure of the surfactants used, which is not a typical effect. Therefore, the authors assumed that the suboptimal concentration of quaternary ammonium salts and aminosilanes was used. The study identified that the optimal concentration of 50 % alcohol solution of KATAPAV is 14.7–21 %. In this range of the QAS content, there is a significant increase in hardness (about 40 %), a slight decrease in wear (about 10 %), and a significant decrease in the coefficient of static friction (up to 2 times). At the same time, the authors observed an increase in adhesion to metal up to 3 times and bending strength up to 25 %. Thus, rice husk ash activated with an optimal amount of quaternary ammonium salts is an effective modifier of epoxy coatings, which improves their antifriction properties and increases wear resistance, hardness, strength, and adhesion characteristics.
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THE RESEARCH OF AGING AND MECHANICAL PROPERTIES OF NANOSTRUCTURAL TITANIUM The research of the processes of formation of porous non-ferrous metals Special aspects of strain localization during thermal power processing Regulation of powder particles shape and size at plasma spraying The enhancement of cutting capacity of a grinding wheel when processing ductile steel blank parts by ultrasonic activation
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