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首页> 外文期刊>Surface Engineering >COMPARATIVE STUDY OF MECHANICAL PROPERTIES AND RESIDUAL STRESS DISTRIBUTIONS OF COPPER COATINGS OBTAINED BY DIFFERENT THERMAL SPRAY PROCESSES
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COMPARATIVE STUDY OF MECHANICAL PROPERTIES AND RESIDUAL STRESS DISTRIBUTIONS OF COPPER COATINGS OBTAINED BY DIFFERENT THERMAL SPRAY PROCESSES

机译:不同热喷涂工艺获得的铜涂层的力学性能和残余应力分布的比较研究

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In this work, the influence of the thermal spraying processes, atmospheric plasma spraying (APS), high velocity' oxygen fuel (HVOF), and vacuum plasma spraying (VPS), on the microstructure and properties of copper coatings is discussed. The differences ill microstructure, microhardness, and residual stress for each type of coating are shown. The X-ray diffraction (XRD) method is used to evaluate the mechanical anisotropical characteristics of the materials and the residual stress distribution. The particularity of this study is that the thickness of the coating is of the millimetre scale; the massive coating specimens without a substrate were obtained for XRD microelastic modulus measurements and for macrotensile measurement. Microhardness distributions have been obtained in coatings and ill substrates that pass through the interface zones. It was observed that dense coatings could be obtained by industrial processes such as APS and HVOF, but they induce oxidation in the copper coating. The copper oxidation is limited in the VPS process. The elastic modulus values measured by the in situ XRD method show that the HVOF coating has more rigidity than the APS coating. HVOF and VPS copper coatings have higher microhardness values than the APS copper coating. The residual stress values are in traction in the APS, VPS, and HVOF coatings: the residual stress level in the HVOF and APS coatings is less important than that in the VPS coating. The microstructure observations show that the VPS copper coating has a recrystallised structure whereas the APS and HVOF copper coatings have a splat type structure. As a consequence, the VPS copper coating has a high Young's modulus, an important mechanical resistance, and a high elongation as compared with the other copper coatings.
机译:在这项工作中,讨论了热喷涂工艺,大气等离子喷涂(APS),高速'氧气燃料(HVOF)和真空等离子喷涂(VPS)对铜涂层的组织和性能的影响。显示了每种涂层在显微组织,显微硬度和残余应力方面的差异。 X射线衍射(XRD)方法用于评估材料的机械各向异性特征和残余应力分布。这项研究的特殊性在于涂层的厚度为毫米级。获得了没有基材的块状涂层样品,用于XRD微弹性模量测量和大拉伸测量。在穿过界面区域的涂料和不良基材中已经获得了显微硬度分布。据观察,可以通过诸如APS和HVOF的工业方法获得致密的涂层,但是它们在铜涂层中引起氧化。在VPS工艺中,铜的氧化受到限制。通过原位XRD方法测量的弹性模量值表明,HVOF涂层具有比APS涂层更高的刚性。 HVOF和VPS铜涂层的显微硬度值高于APS铜涂层。 APS,VPS和HVOF涂层中的残余应力值为牵引力:HVOF和APS涂层中的残余应力水平不如VPS涂层中的残余应力重要。显微组织观察表明,VPS铜涂层具有重结晶的结构,而APS和HVOF铜涂层具有splat型结构。结果,与其他铜涂层相比,VPS铜涂层具有高的杨氏模量,重要的机械阻力和高的伸长率。

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