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Hot workability and microstructure control in Co20Cr15W10Ni cobalt-based superalloy

机译:Co20Cr15W10Ni钴基高温合金的热加工性能和组织控制

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Hot isothermal compression tests were conducted on Cobalt-based superalloy Co-20Cr-15W-10Ni using a thermo-mechanical simulator to study the hot workability and microstructure evolution over a wide range of temperatures and strain rates. Strain hardening was observed at lower strain rates and flow softening at higher strain rates. Microscopy revealed presence of deformation bands at a temperature of 1323 K and a strain rate of 10 s(-1); whereas at temperatures above 1423 K, fine recrystallized grains were observed at all strain rates. Dynamic recrystallization (DRX) initiates at 1373 K. At 1473 K, sudden increase in the recrystallized grain size (DDRX) is noticed, indicating grain growth. Processing maps have been developed to delineate the regions of stable and unstable metal flow during high temperature deformation. Using Ziegler's continuum principles and processing maps, regions of stable metal flow was observed in the temperature range of 1323e1500 K and strain rate range of 0.1-1 s(-1). Activation energy (Q(avg)) for the alloy was found to be 421 kJ mol(-1). As Zener Holloman parameter (Z) increases, D-DRX decreases indicating higher nucleation, restricted grain growth, when deformation resistance is high. Constitutive equation and relation between 'Z' and D-DRX for the alloy has been established. (C) 2016 Elsevier B.V. All rights reserved.
机译:使用热力机械模拟器对钴基高温合金Co-20Cr-15W-10Ni进行了热等温压缩试验,以研究在宽温度和应变速率下的热加工性和微观组织演变。在较低的应变速率下观察到应变硬化,而在较高的应变速率下观察到流动软化。显微镜显示在1323 K的温度和10 s(-1)的应变速率下存在变形带。而在高于1423 K的温度下,在所有应变速率下均观察到细小的重结晶晶粒。动态重结晶(DRX)在1373 K处开始。在1473 K处,发现重结晶晶粒尺寸(DDRX)突然增加,表明晶粒长大。已经开发了加工图来描绘高温变形过程中稳定和不稳定的金属流动区域。使用齐格勒的连续性原理和加工图,在1323e1500 K的温度范围和0.1-1 s(-1)的应变速率范围内观察到稳定的金属流动区域。合金的活化能(Q(avg))为421 kJ mol(-1)。随着Zener Holloman参数(Z)的增加,当抗变形性较高时,D-DRX减少,表明成核度更高,晶粒生长受到限制。建立了合金的“ Z”与D-DRX的本构方程和关系。 (C)2016 Elsevier B.V.保留所有权利。

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