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Friction Welding of Intermetallic Titanium Aluminides: Microstructural Evolution and Mechanical Properties

机译:金属间钛铝化物的摩擦焊接:组织演变和力学性能

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Intermetallic titanium aluminides have the Potential to replace currently used nickel-based superalloys in high temperature applications in the medium term owing to their attractive properties profile. They will mainly be used for aircraft and automobile engines. The production of individual components of aircraft or automobile engines requires an easily applicable and reliable joining technology in orderte produce complex component structures as a consequence of costs incurred for machining them from solid. Friction welding plays a key role when it comes to an economical use of titanium aluminide materials in lightweight constructions and high temperature applications. The present work describes this pressure welding tech-nique using an extruded γ-TiAI-based alloy Ti-43.5AI-4Nb-1Mo-0.1B (at%). It compares and discusses the microstructural evolution and mechanical properties of joints of the same kind.
机译:金属间钛铝化物由于其吸引人的特性而具有中期替代高温下当前使用的镍基高温合金的潜力。它们将主要用于飞机和汽车发动机。飞机或汽车发动机的单个零件的生产需要易于应用且可靠的连接技术,以使生产复杂的零件结构成为可能,这是由于从固体中加工零件而产生的成本的结果。在轻质结构和高温应用中经济地使用铝化钛材料时,摩擦焊接起着关键作用。本工作描述了一种使用挤压的基于γ-TiAI的合金Ti-43.5AI-4Nb-1Mo-0.1B(at%)的压力焊接技术。它比较并讨论了同类接头的微观组织演变和力学性能。

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