首页> 外文期刊>Advances in condensed matter physics >Morphologic and Chemical Properties of PMMA/ATH Layers with Enhanced Abrasion Resistance Realised by Cold Plasma Spraying at Atmospheric Pressure
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Morphologic and Chemical Properties of PMMA/ATH Layers with Enhanced Abrasion Resistance Realised by Cold Plasma Spraying at Atmospheric Pressure

机译:大气压冷等离子喷涂实现耐磨性增强的PMMA / ATH层的形貌和化学性质

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This study investigated the morphologic and chemical properties of coatings based on PMMA/ATH powder and deposited by cold plasma spraying on wood and glass. Since the deposition of pure PMMA/ATH powder with air as process gas yielded coatings with insufficient abrasion resistance, two modifications of the basic process were investigated. Previous studies showed that replacing air as process gas with forming gas did not enhance the abrasion resistance, but the addition of a phenol-formaldehyde resin (PF) succeeded in stabilising the particle coatings. In this work, results from morphologic and chemical analysis suggested an encasement of the PMMA/ATH particles by plasma-modified PF and thus a fusion of individual particles, explaining the enhanced bonding. Moreover, adhesion tests confirmed an outstanding bonding between the coating and wood as well as glass, which is assumed to result from interactions between the PF’s hydroxyl groups and functional groups on the substrates’ surfaces. Studies on the wettability revealed a hydrophobic character of such coatings, therefore generally indicating a possible application, for example, to reduce water uptake by wooden materials.
机译:本研究研究了基于PMMA / ATH粉末并通过冷等离子喷涂沉积在木材和玻璃上的涂料的形貌和化学性质。由于用空气作为工艺气体沉积纯PMMA / ATH粉末会产生耐磨性不足的涂层,因此对基本工艺进行了两种改进。先前的研究表明,用成型气体代替空气作为工艺气体并不能提高耐磨性,但是添加酚醛树脂(PF)可以成功地稳定颗粒涂层。在这项工作中,从形态和化学分析得出的结果表明,等离子体改性的PF包裹了PMMA / ATH颗粒,因此单个颗粒融合在一起,从而解释了增强的键合。此外,附着力测试证实了涂料与木材以及玻璃之间的出色粘合性,这被认为是由于PF的羟基与基材表面上的官能团之间的相互作用所致。对润湿性的研究表明这种涂层具有疏水性,因此通常表明可能的应用,例如,减少木质材料的吸水率。

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