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Essential factors influencing the bonding strength of cold sprayed aluminum coatings on ceramic substrates

机译:影响陶瓷基材冷喷铝涂层粘合强度的基本因素

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The present work summarizes the most important results of a research project dealing with the comprehensive investigation of the bonding mechanisms between cold sprayed Al coatings and various poly- and monocrystalline ceramic substrates (Al_2O_3, AlN, Si_3N_4, SiC, MgF_2). Due to their exceptional combination of properties, metallized ceramics are gaining more and more importance for a wide variety of applications, especially in electronic engineering. Cold spraying provides a quick, flexible and cost-effective one-step process to apply metallic coatings on ceramic surfaces. However, since most of the existing cold spray-related publications focus on metallic substrates, only very little is known about the bonding mechanisms acting between cold sprayed metals and ceramic sub-strates. In this paper, the essential factors influencing the bonding strength in such composites are identified. Besides mechanical tensile strength testing, a thorough analysis of the coatings and especially the metal/ceramic interfaces was conducted by means of HRTEM, FFT, STEM, EDX, EELS, XRD and EBSD. The influence of substrate material, substrate temperature and particle size is evaluated with regard to the observed bonding behavior. The results suggest that, apart from mechanical interlocking, the adhesion of cold sprayed metallic coatings on ceramics is based on a complex interplay of different mechanisms such as quasi-adiabatic shearing, static recrystallization as well as heteroepitaxial growth.
机译:本工作总结了研究项目的最重要结果,处理冷喷涂Al涂层和各种聚晶陶瓷基材(Al_2O_3,AlN,Si_3N_4,SiC,MgF_2)之间的粘合机制综合研究。由于其特殊的性能组合,金属化陶瓷对各种应用越来越重要,特别是在电子工程中。冷喷涂提供了一种快速,灵活且经济高效的一步法,可在陶瓷表面上涂抹金属涂层。然而,由于大多数现有的冷喷雾相关的出版物侧重于金属基材,因此涉及作用在冷喷涂金属和陶瓷子条纹之间的粘合机构很少。在本文中,鉴定了影响这种复合材料中的粘合强度的基本因素。除了机械拉伸强度测试之外,通过HRTEM,FFT,茎,EDX,EEL,XRD和EBSD进行涂层和尤其是金属/陶瓷界面的彻底分析。关于观察到的粘合行为评价基底材料,衬底温度和粒度的影响。结果表明,除了机械互锁外,陶瓷上的冷喷涂金属涂层的粘附基于不同机制的复杂相互作用,例如准防冻剪切,静态重结晶以及异质轴生长。

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