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Plasma Spray Coatings of Sol-Gel Ceramic Nanopowders

机译:溶胶-凝胶陶瓷纳米粉体的等离子喷涂层

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The use of a dense ceramic layer on a substrate as a barrier coating is often limited due to poor mechanical strength of the ceramic layer. Moreover, structural changes resulting sintering and phase transformation can contribute to failure of a coating, especially in operation at high temperatures. Nanocrystalline ceramic materials have been recognized to have special mechanical properties. Ceramic nanopowders were synthesized through sol-gel method and deposited on metal substrate by Atmospheric Plasma Spraying (APS). Commercial ceramic coatings were also developed for comparison reasons, as well as nanophased coatings using high-energy ball milled powders. All coatings were fully characterized in terms of porosity, adhesion strength, microhardness and microstructure. Studies were focused on effects of powders' properties and spraying conditions on the crystallinity and mechanical properties of the coatings. Results suggested that thermal spraying of ceramic nanopowders leads to coatings with properties comparable to those of conventional powders (microhardness up to 1146 HV, porosity down to 13 %, adhesion up to 30.6 MPa for a coating thickness of 169 μm )and the reduction of the initial powder grain size to nanoscale favours the development of high crystallinity coatings with improved mechanical properties and thermal stability.
机译:由于陶瓷层的机械强度差,经常限制在基底上使用致密的陶瓷层作为阻挡涂层。此外,导致烧结和相变的结构变化可导致涂层的失效,特别是在高温下操作时。纳米晶陶瓷材料已经被认为具有特殊的机械性能。通过溶胶-凝胶法合成了陶瓷纳米粉体,并通过大气等离子喷涂(APS)沉积在金属基底上。出于比较的原因,还开发了商用陶瓷涂料,以及使用高能球磨粉的纳米相涂料。所有涂层在孔隙率,粘合强度,显微硬度和显微组织方面都得到了充分表征。研究的重点是粉末的性能和喷涂条件对涂料的结晶度和机械性能的影响。结果表明,陶瓷纳米粉的热喷涂可产生与传统粉末相当的性能(显微硬度高达1146 HV,孔隙率低至13%,对于169μm的涂层,粘附力高达30.6 MPa),并且降低了最初的粉末粒度达到纳米级,有利于开发具有改善的机械性能和热稳定性的高结晶度涂层。

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