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Effects of Process Parameters on Deformation and Temperature Uniformity of Forged Ti-6Al-4V Turbine Blade

机译:工艺参数对锻造Ti-6Al-4V涡轮叶片变形和温度均匀性的影响

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摘要

This work is motivated by the frequent occurrence of macro- and microdefects within forged Ti-6Al-4V turbine blades due to the severely nonuniform strain and temperature distributions. To overcome the problem of nonuniformity during the blade forging operation, firstly, a 2D coupled thermo-mechanical finite element approach using the strain-compensated Arrhenius-type constitutive model is employed to simulate the real movements and processing conditions, and its reliability is verified experimentally. Secondly, two evaluation indexes, standard deviation of equivalent plastic strain and standard deviation of temperature, are proposed to evaluate the uniformity characteristics within the forged blade, and the effects of four process parameters including the forging velocity, friction factor, initial workpiece temperature and dwell time on the uniformity of strain and temperature distributions are carefully studied. Finally, the numerically optimized combination of process parameters is validated by the application in a practical process. The parametric study reveals that a reasonable combination of process parameters considering the flow resistance, flow localization and the effects of deformation and friction heating is crucial for the titanium alloy blade forging with uniformity. This work can provide a significant guidance for the design and optimization of blade forging processes.
机译:由于严重的不均匀应变和温度分布,在锻造的Ti-6Al-4V涡轮叶片中经常出现宏观和微观缺陷,从而推动了这项工作。为了克服叶片锻造过程中的不均匀性问题,首先,采用应变补偿的Arrhenius型本构模型的二维耦合热力有限元方法模拟了真实的运动和加工条件,并通过实验验证了其可靠性。 。其次,提出了当量塑性应变的标准偏差和温度的标准偏差这两个评价指标,以评价锻造叶片内的均匀性,以及锻造速度,摩擦系数,初始工件温度和停留时间这四个工艺参数的影响。仔细研究了均匀应变时间和温度分布。最后,应用程序在实际过程中验证了过程参数的数字优化组合。参数研究表明,考虑流动阻力,流动局部性以及变形和摩擦加热影响的工艺参数的合理组合对于钛合金叶片均匀锻造至关重要。这项工作可以为叶片锻造工艺的设计和优化提供重要指导。

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