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DEFORMATION INDUCED PHASE TRANSFORMATIN DURING MACHINING OF Ti-5553

机译:Ti-5553加工过程中的变形诱发相变

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Ti-5553 is a relatively new titanium alloy with applications particularly in the aerospace industry for such key structural components as landing gear. However, during machining of Ti-5553, the elevated temperature and high strain at tool-workpiece interface may alter workpiece microstructure and result in β to a phase transformation. During phase transformation, some intermediated phase such as ω phase may form which is brittle and hard to machine, and it could reduce the fatigue life of machined components. The aim of this research work is to optimize the machining condition for Ti-5553, in which its hot deformation behavior in terms of β to a phase transformation could be fully understood. Analysis of variables such as micrographs of phase components and cutting zone temperature demonstrates that the cutting temperature governs the formation of final phase components and to some extent this variation has been quantified to allow for further and more detailed investigation.
机译:Ti-5553是一种相对较新的钛合金,尤其在航空航天工业中用于起落架等关键结构部件。但是,在Ti-5553的加工过程中,工具-工件界面处的高温和高应变可能会改变工件的微观结构,并导致β发生相变。在相变过程中,可能会形成一些中间相,例如ω相,这些相变较脆且难以加工,这会降低加工零件的疲劳寿命。这项研究工作的目的是优化Ti-5553的加工条件,从而可以充分了解其从β到相变的热变形行为。分析变量(例如相成分的显微照片和切割区温度)表明,切割温度控制着最终相成分的形成,并且在某种程度上已量化了这种变化,以便进行进一步更详细的研究。

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