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Modification of Silicon Carbide Surfaces by Atmospheric Pressure Plasma for Composite Applications

机译:大气压等离子体对碳化硅表面的改性

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In this study, we explore the use of atmospheric pressure plasmas for enhancing the adhesion of SiC surfaces using a urethane adhesive, as an alternative to grit-blasting. Surface analysis showed that He- O2 plasma treatments resulted in a hydrophilic surface mostly by producing SiO_x. Four-point bending tests and bonding pull tests were carried out on control, grit-blasted, and plasma-treated surfaces. Grit-blasted samples showed enhanced bonding but also a decrease in flexural strength. Plasma treated samples did not affect the flexural strength of the material and showed an increase in bonding strength. These results suggest that atmospheric pressure plasma treatment of ceramic materials is an effective alternative to grit-blasting for adhesion enhancement.
机译:在这项研究中,我们探索了使用大气压等离子体来增强使用聚氨酯粘合剂的SiC表面的附着力,以替代喷砂处理的方法。表面分析表明,He-O2等离子体处理主要通过产生SiO_x产生亲水表面。在控制,喷砂和等离子处理的表面上进行了四点弯曲测试和粘结拉力测试。喷砂处理的样品显示出增强的结合力,但抗弯强度也有所降低。等离子体处理的样品不影响材料的抗弯强度,并且显示出粘结强度的增加。这些结果表明,陶瓷材料的大气压等离子体处理是喷砂处理以提高附着力的有效替代方法。

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