Hot workability characteristics of Rene88DT superalloy with directionally solidified microstructure

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The hot deformation characteristics of Rene88 DT superalloy with directionally solidified microstructure produced by electroslag remelting continuous directionally solidification(ESR-CDSò) were studied in the temperature range of 1,040–1,140 °C and strain rate range of 0.001–1.000 s-1by hot compression tests. Flow curves for Rene88 DT alloy with initial directionally solidified(DS)microstructure exhibit pronounced peak stresses at the early stage of deformation followed by the occurrence of dynamic softening phenomenon. Rene88 DT alloy with DS microstructure shows higher flow peak stresses compared with HIPed P/M superalloy FGH4096, but the disparities in peak stresses between ESR-CDSed Rene88 DT and HIPed P/M superalloy FGH4096 reduce as temperature increases. The improvement of hot workability of DS alloy with columnar grains avoiding the maximum shear stress comes true. A hot deformation constitutive equation as a function of strain that describes the dependence of flow stress on strain rate and temperature is established. Hot deformation apparent activation energy(Q) varies not only with the strain rate and temperature but also with strain. The strain rate sensitivity exponent(m) map is established at the strain of 0.8, which reveals that global dynamic recrystallization(DRX) shows a relatively high m value in a large strain compression.Optimum parameters are predicted in two regions:T = 1,100–1,130 °C,_e = 0.100–1.000 s-1and T = 1,080–1,100 °C,_e = 0.010–0.100 s-1, which is based on processing maps and deformation microstructure observations. The hot deformation characteristics of Rene 88 DT superalloy with directionally solid microstructure produced by electroslag remelting continuous directionally solidification (ESR-CDSò) were studied in the temperature range of 1,040-1,140 ° C and strain rate range of 0.001-1.000 s-1by hot compression tests . Flow curves for Rene 88 DT alloy with initial directionally solidified (DS) microstructure display pronounced peak stresses at the early stage of deformation following the occurrence of dynamic softening phenomenon. Rene88 DT alloy with DS microstructure shows higher flow peak stresses compared with HIPed P / M improvement in hot workability of DS alloy with columnar grains avoiding the maximum shear stress comes true. A hot deformation M superpelloy FGH4096, but the disparities in peak stresses between ESR-CDSed Rene88 DT and HIPed P / M superalloy FGH4096 reduce as temperature increases. constitutive equation as a function of strain that describes the dependence of flow stress on strain rate and temperature is established. Hot deformation apparent activation energy (Q) varies not only with the strain rate and temperature but also with strain. The strain rate sensitivity exponent (m) map is established at the strain of 0.8, which reveals that global dynamic recrystallization (DRX) shows a relatively high m value in a large strain compression. Optimum parameters are predicted in two regions: T = 1,100-1,130 ° C, _e = 0.100-1.000 s-1 and T = 1,080-1,100 ° C, _e = 0.010-0.100 s-1, which is based on processing maps and deformation microstructure observations.
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