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Cold Spraying of Ti_2AlC MAX-Phase Coatings

机译:冷喷_2ALC最大相涂层

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Cold spraying was applied to deposit Ti_2AlC on different substrate materials. The study of single impacts by scanning electron microscopy indicates that bonding of the first layer is mainly attributed to the deformation and shear instabilities occurring at substrate sites. Nevertheless, as compared to the feedstock particles, the splats appear flattened by the impact. This deformation seems to be attributed not only to local, internal shear but also to internal fracture. By applying up to five passes under optimized spray parameters, Ti_2AlC-coatings with thicknesses of about 110-155 μm were achieved. XRD analysis of the coating proved that the crystallographic structure of the feedstock was retained during cold spraying. The coating microstructures show rather low porosity of about <2%, but several cracks between spray layers. Successful build-up of more than one layer can probably be attributed to local deformation of the highly anisotropic Ti_2AlC-phase.
机译:施用冷喷涂以在不同的基材材料上沉积Ti_2ALC。 通过扫描电子显微镜的单一冲击的研究表明第一层的粘合主要归因于在底物位点发生的变形和剪切不稳定性。 然而,与原料颗粒相比,SPLATS显得通过撞击扁平。 这种变形似乎不仅归因于局部内部剪切,也归因于内部骨折。 通过在优化的喷射参数下施加多达五次通过,实现了厚度为约110-155μm的Ti_2AlC涂层。 涂料的XRD分析证明了在冷喷涂过程中预先保留原料的晶体结构。 涂层微结构显示出相当低的孔隙率为约<2%,但喷雾层之间的几个裂缝。 成功积聚的多个层可能归因于高位各向异性Ti_2ALC相的局部变形。

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