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Characterization of hybrid components consisting of SEBM additive structures and sheet metal of alloy Ti-6AI-4V

机译:由合金Ti-6ai-4V的SEBM添加剂结构和金属板组成的杂种组分的表征

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Within this paper the characterization of hybrid components consisting of selective electron beam melting (SEBM) additive structures and sheet metal of alloy Ti-6A1-4V will be presented. Key idea of the new production approach is the combination of the advantages of two different manufacturing processes. On the one hand the very high flexibility of the additive manufacturing process and on the other hand the economic production of conventional geometries by deep drawing operations. Main challenge within this new and innovative process is the identification and quality of the properties of the new hybrid components after the manufacturing process. The necessary evaluation consists of three parts: the analysis of the deep drawing blanks, the additive manufactured structure and finally the connection between both. Whereas standardized testing methods are available for the testing of the blanks and the additive structure, there are hardly scientific publication which deals with the investigation of the connection between them. Therefore, a new testing methods and consequently a new tool design was developed in order analyze the specimens in dependency of different strain- and stress conditions. At the end microstructural investigations were performed to identify the fundamental mechanisms which lead to the different properties on macroscopic scale. The result proofed that in particular the electron beam power has a high influence on the production process and thereby the connection quality.
机译:在本文中,将呈现由选择性电子束熔化(SEBM)添加结构和金属合金Ti-6a1-4V的混合组件的表征。新生产方法的关键思想是两种不同制造过程的优势的组合。一方面,添加剂制造工艺的非常高的灵活性,另一方面,通过深绘制操作,常规几何形状的经济生产。在这种新的和创新过程中的主要挑战是制造过程后新型混合组件的特性的识别和质量。必要的评估包括三个部分:对深层绘图坯料的分析,添加剂制造的结构以及最终两者之间的连接。虽然标准化的测试方法可用于测试空白和添加剂结构,但几乎没有科学的出版物,这些出版物涉及对它们之间联系的调查。因此,新的测试方法以及因此开发了一种新的工具设计,以依赖于不同的应变和应力条件来分析标本。在结束的微观结构研究中,进行了鉴定基本机制,导致宏观规模不同的性质。结果证明,特别是电子束功率对生产过程具有很高的影响,从而具有高影响的连接质量。

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