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Effect of heat treatment on porosity and corrosion performance of cold sprayed titanium deposits

机译:热处理对冷喷涂钛镀层孔隙率和腐蚀性能的影响

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Cold gas dynamic spraying (CGDS) can be used to deposit oxygen sensitive materials, such as titanium, without significant chemical degradation of the powder and with minimal heating of the substrate. The process is thus believed to have potential for the deposition of corrosion resistant barrier coatings. However, to be effective a barrier coating must not allow ingress of a corrosive liquid and hence must have minimal interconnected porosity. Thus the aim of the present study was to investigate the effects of processing, including a post-spray annealing treatment, on the deposit meso- and microstructures and corrosion behavior. Commercially pure titanium powder was deposited using pre-heated nitrogen as main and powder carrier gas using a CGT Kinetiks 4000 system to produce coatings on stainless steel. Selected coatings were debonded from the substrate, and the resultant free standing deposits heat treated at 1050℃ in vacuum for 60 minutes. Changes in microhardness were measured and correlated with microstructural changes. Optical microscopy, scanning electron microscopy, X-ray diffraction (XRD), helium pycnometry and mercury porosimetry were all employed to examine the microstructural characteristics of coatings and free standing deposits, before and after heat treatment. Their corrosion performance was also investigated using potentiodynamic polarization tests in 3.5 wt% NaCl. The influences of heat treatment and corrosion behavior will be analyzed and discussed in terms of pores structure evolution and microstructural changes.
机译:冷气动态喷涂(CGDS)可用于沉积对氧敏感的材料(例如钛),而不会造成粉末的明显化学降解,并且对基材的加热最少。因此认为该方法具有沉积抗腐蚀阻挡层的潜力。然而,为了有效,阻隔涂层必须不允许腐蚀性液体进入,因此必须具有最小的互连孔隙率。因此,本研究的目的是研究包括喷涂后退火处理在内的处理对沉积介观和微观结构以及腐蚀行为的影响。使用CGT Kinetiks 4000系统,使用预热的氮气作为主要气体和粉末载气,沉积商用纯钛粉末,以在不锈钢上产生涂层。将选定的涂层从基材上剥离下来,然后将所得的自留沉积物在1050℃的真空中热处理60分钟。测量了显微硬度的变化,并将其与显微组织变化相关联。在热处理之前和之后,均采用光学显微镜,扫描电子显微镜,X射线衍射(XRD),氦比重法和水银孔率法检查涂层和自由沉积物的显微结构特征。还使用在3.5 wt%NaCl中的电位极化试验研究了它们的腐蚀性能。将根据孔结构演变和微观结构变化来分析和讨论热处理和腐蚀行为的影响。

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