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Advancement of Plasma Cold-Hearth Melting for Production of Gamma Titanium Aluminide Alloys within Arconic

机译:血浆冷壁炉熔化的推进,用于在arconic中生产伽马钛铝合金合金

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Utilization of gamma titanium aluminide alloys in aerospace and automotive/industrial applications has placed significant demand on melting sources for products to be used in cast, wrought, and direct-machining applications. There is also an increased demand for input stock used in gas atomization of powders. Current technologies used in ingot manufacturing include plasma arc melting, vacuum arc melting, and induction skull melting + centrifugal casting. Subsequent processing may include forging, re-melting + casting, or machining directly into components. Over the past six years, Arconic Engineered Structures has developed a robust melting method using plasma cold-hearth melting technology, including the design and implementation of a new 3-torch system to produce Ti-48-2-2 cast bars. General discussions concerning plasma cold-hearth melting, manufacturing challenges, and metallurgical attributes associated with cast Ti-48-2-2 bars will be reviewed. Emphasis will be on understanding the impact of hot isostatic pressing on internal voids, residual stress cracking and resulting mechanical properties.
机译:在航空航天和汽车/工业应用中使用伽马钛铝化合金的利用对铸造,锻造和直接加工应用中使用的产品的熔化来源提出了显着的需求。对粉末气体雾化使用的输入股也有所增加。用于铸锭制造的当前技术包括等离子电弧熔化,真空电弧熔化和感应颅骨熔化+离心铸造。随后的处理可以包括锻造,重新熔化+铸造或直接加工成部件。在过去的六年中,arconic工程结构采用等离子冷炉熔化技术开发了一种稳健的熔化方法,包括新的3炬系统的设计和实施,以生产Ti-48-2-2铸棒。关于血浆冷炉膛熔化,制造挑战和与铸造TI-48-2-2栏的冶金属性的一般讨论将进行综述。重点是了解热等静压对内部空隙,残余应力开裂和导致的机械性能的影响。

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