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TEM microstructure investigations of aluminium alloys used as coating substrate

机译:铝合金作为涂层基体的TEM显微组织研究

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Purpose: The aim of this paper was investigated structure and properties of gradient coatings produced in PVD process on AlSi9Cu aluminium alloys.Design/methodology/approach: The following results concern the structures of the substrates and coatings with the application of electron transmission and scanning microscopy; phase composition of the coatings using X-ray diffraction and grazing incident X-ray diffraction technique (GIXRD); microhardness and wear resistance.Findings: The deposited coatings are characterized by a single, double, or multi-layer structure according to the applied layers system, and the individual layers are coated even and tightly adhere to the substrate as well to each other. The analysis of coatings obtained on the surface of cast aluminium alloys by the PVD processes show a clear - over 100% - increase of the microhardness, compared to the base material microhardness.Practical implications: Achieving of new operational and functional characteristics and properties of commonly used materials, including the Al-Si-Cu alloys is often obtained by heat treatment, ie, precipitation hardening and/or surface treatment due to application or manufacturing of machined surface layer coatings of materials in a given group of materials used for different surface engineering processes.Originality/value: The paper presents the research involving the PVD coatings obtained on an unconventional substrate such as aluminium alloys. Contemporary materials should possess high mechanical properties, physical and chemical, as well as technological ones, to ensure long and reliable use. The above mentioned requirements and expectations regarding the contemporary materials are met by the non-ferrous metals alloys used nowadays, including the aluminium alloys
机译:目的:本文旨在研究PVD工艺在AlSi9Cu铝合金上制备的梯度涂层的结构和性能。设计/方法/方法:以下结果涉及电子传输和扫描显微镜技术对基材和涂层结构的影响;使用X射线衍射和掠入射X射线衍射技术(GIXRD)的涂层的相组成;发现:所沉积的涂层的特征是根据所应用的涂层系统为单层,双层或多层结构,并且各层的涂层均匀且紧密地粘附在基材上。与基础材料的显微硬度相比,通过PVD工艺在铸造铝合金表面获得的涂层的分析显示,显微硬度明显提高了100%以上。包括Al-Si-Cu合金在内的用过的材料通常是通过热处理获得的,即,由于在用于不同表面工程的给定材料组中应用或制造了材料的机加工表层涂层,导致沉淀硬化和/或表面处理原创性/价值:本文介绍了涉及在非常规基材(例如铝合金)上获得的PVD涂层的研究。现代材料应具有很高的机械性能,物理和化学性能以及技术性能,以确保长期可靠的使用。当今使用的有色金属合金(包括铝合金)满足了对现代材料的上述要求和期望。

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