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Effects of chip conditions on the solid state recycling of Ti-6Al-4V machining chips

机译:切屑条件对Ti-6Al-4V加工切屑固态回收的影响

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摘要

Five different types of Ti-6Al-4V machining chips were recycled in their solid state using equal channel angular pressing (ECAP). The chips were produced by either turning or milling with or without the application of a coolant. All the as-recycled materials achieved full density but their microstructures, including the prior chip boundary spacing and grain size, are dependent on the starting chip morphologies and dimensions. The differences, however, were largely removed in the subsequent mill-annealing processing consisting of β homogenisation, hot deformation and final annealing, leading to near-identical mill-annealed microstructures for all different types of chips consisting of equiaxed α + β grains with lamellar α, typical following such a treatment. The recycled and mill-annealed materials possess high yield strengths of  >900 MPa and satisfactory tensile ductility of  >11%, comparable or superior to the original commercial mill-annealed Ti-6Al-4V and independent of the initial chip conditions.
机译:使用相等的通道角压制(ECAP),将五种不同类型的Ti-6Al-4V切削屑以固态回收。通过在有或没有冷却液的情况下进行车削或铣削来生产切屑。所有回收后的材料均达到了全密度,但它们的微观结构(包括先前的切屑边界间距和晶粒尺寸)取决于起始切屑的形态和尺寸。但是,在随后的由β均质化,热变形和最终退火组成的铣削退火处理中,这些差异已被大部分消除,从而导致了由等轴α+β晶粒和层状构成的所有不同类型切屑的近似相同的铣削退火显微组织。 α,典型地经过这样的处理。再生和轧制退火材料的屈服强度≥900MPa,拉伸延展性≥11%,与最初的商用轧制退火Ti-6Al-4V相当或更好,并且不受初始切屑条件的影响。

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