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锻态GH4742合金的热变形行为及组织性能演变
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1.钢铁研究总院高温材料研究所;2.东北大学材料各向异性与织构教育部重点实验室

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基金项目:

“两机专项”(2017-VI-0018-0090)


Hot deformation behavior and microstructure and mechanical properties evolution of forged GH4742 superalloy
Author:
Affiliation:

1.High-Temperature Materials Institute,Central Iron and Steel Research Institute;2.Key Lab for Anisotropy and Texture of Materials,Ministry of Education,Northeastern University

Fund Project:

“两机专项”(2017-VI-0018-0090)

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    摘要:

    利用单道次等温压缩实验获得了锻态GH4742合金在变形温度为 1020~1150 ℃、应变速率为0.001~1 s-1、真应变为0.65时的真应力-应变曲线,构建了GH4742合金的热变形本构方程和热加工图,并采用SEM、EBSD等研究了热变形过程中微观亚结构以及γ′相的演变规律,建立了变形工艺条件-组织形态差异-性能变化之间的关联性。结果表明:合金的组织性能演化机制与Z参数密切相关,1080 ℃低温变形时,应变速率由0.001 s-1增加至1 s-1后,lnZ值由75.6增加至82.6,热效应增强,小角度晶界比例降低,动态再结晶比例增加,组织发生细化,基体硬度增加;1110 ℃高温变形时,随着应变速率增加,lnZ值由74增加至78.5,位错滑移和晶界迁移减缓,小角度晶界比例增加,动态再结晶比例降低,加工硬化程度增加,基体硬度增加。GH4742合金不发生动态再结晶晶粒粗化的临界lnZ值为73。结合热加工图和变形组织分析得出锻态GH4742合金良好的加工区域为变形温度1110~1150 ℃、应变速率0.01~0.1s-1

    Abstract:

    The stress-strain curves of forged GH4742 superalloy at deformation temperature of 1020~1150 ℃ and the strain rate of 0.001~1 s-1 under the true strain of 0.65 were obtained by single-pass isothermal compression experiments, the hot deformation constitutive equation and hot working diagram of GH4742 superalloy were constructed, and the evolution of the micro-substructure and γ′ phase during the thermal deformation process were studied by SEM, EBSD, and eventually the correlation of the deformation process conditions-the microstructure difference-the mechanical property variety was established. The results show that the evolution mechanism of the alloy"s microstructure and mechanical properties were closely related to the Z parameter. When the strain rate increased from 0.001 to 1 s-1 at low temperature deformation of 1080 ℃, the lnZ value increased from 75.6 to 82.6, the thermal effect was strengthened, which resulted in the proportion increment of dynamic recrystallization, and the proportion of low-angle grain boundary decreased, the hardness of the matrix increased due to the refinement of the microstructure; With increasing strain rate at high temperature deformation of 1110 ℃, the lnZ value increased from 74 to 78.5, the dislocation slip and grain boundary migration were suppressed, which decreased the proportion of dynamic recrystallization, and the proportion of the high-angle grain boundary was improved, and the hardness of the matrix increased due to the work hardening. The critical lnZ value of GH4742 superalloy without grain coarsening of dynamic recrystallization was 73. The optimum hot working parameters for forged GH4742 superalloy was 1110~1150 ℃ and 0.001~0.01s-1 by the analysis of thermal processing map and the hot deformation microstructure.

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秦鹤勇,李振团,赵光普,张文云,田强,王冲.锻态GH4742合金的热变形行为及组织性能演变[J].稀有金属材料与工程,2022,51(11):4227~4236.[Qin Heyong, LI Zhentuan, Zhao Guangpu, Zhang Wenyun, Tian Qiang, Wang Chong. Hot deformation behavior and microstructure and mechanical properties evolution of forged GH4742 superalloy[J]. Rare Metal Materials and Engineering,2022,51(11):4227~4236.]
DOI:10.12442/j. issn.1002-185X.20210904

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  • 收稿日期:2021-10-18
  • 最后修改日期:2022-02-21
  • 录用日期:2022-02-28
  • 在线发布日期: 2022-12-02
  • 出版日期: 2022-11-30