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Fatigue in AISI 4340 steel thermal spray coating by HVOF for aeronautic application

机译:HVOF用于航空应用的AISI 4340钢热喷涂层的疲劳

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摘要

Currently, high-strength materials, particularly AISI 4340 steel, are used in several landing gear components. Due to the high resistance to wear and corrosion required, the components are usually coating by hard chromium. This treatment produces waste, such as Cr+ 6 (hexavalent chromium), generally after applying the coating of hard chromium which is harmful to health and the environment. The process HVOF (High-velocity-oxygen-fuel) is considered a promising technique for deposition of hard chromium alternative coatings, for example, coatings based on tungsten carbide. This technique provides high hardness and good wear strength and more resistance to fatigue when compared to AISI 4340 hard chromium coated. To minimize loss fatigue due to the process of deposition, shot peening is used to obtain a compressive residual stress. The aim of this study was to analyze the effects of the tungsten carbide thermal spray coating applied by the HVOF, in comparison to the conventional hard chromium electroplating on the AISI 4340 high strength steel behavior in fatigue. Optical microscopy and scanning electron microscopy were used to observe crack origin sites, thickness and adhesion of the coating. (C) 2010 Published by Elsevier Ltd.
机译:当前,高强度材料,特别是AISI 4340钢,已用于多个起落架部件。由于所需的高耐磨性和耐腐蚀性,通常会在部件上镀硬铬。这种处理通常会在涂覆对健康和环境有害的硬铬涂层后产生废物,例如Cr + 6(六价铬)。 HVOF(高速氧气燃料)工艺被认为是沉积硬铬替代涂层(例如,基于碳化钨的涂层)的有前途的技术。与AISI 4340硬铬涂层相比,该技术可提供高硬度和良好的耐磨强度,并具有更高的抗疲劳性。为了使由于沉积过程引起的损耗疲劳最小化,喷丸处理可用于获得压缩残余应力。这项研究的目的是分析与传统的硬铬电镀相比,HVOF施加的碳化钨热喷涂涂层对AISI 4340高强度钢在疲劳中的行为的影响。使用光学显微镜和扫描电子显微镜观察裂纹的起源部位,涂层的厚度和粘附性。 (C)2010由Elsevier Ltd.出版

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