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Co-Cr-Nb-W合金碳化物组织转变及力学性能研究
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1.钢铁研究总院 高温材料研究所;2.北京钢研高纳科技股份有限公司;3.中国航发贵阳发动机设计研究所

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基金项目:

国家重点研发计划(项目号2022YFC3902002)


Carbides Evolution and Mechanical Behavior of Co-Cr-Nb-W Wear-resistance Alloy
Author:
Affiliation:

1.Central Iron and Steel Research Institute;2.Gaona Aero Material Co., Ltd.;3.AECC Guiyang Aero-Engine Research Institute

Fund Project:

National Key R&D Program of China

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    摘要:

    热处理过程中的碳化物转变对高温合金的力学性能影响显著。本实验采用XRD、SEM、EPMA、TEM等技术研究了Co-Cr-Nb-W耐磨合金热处理过程中碳化物的析出类型、分布特征、演变机理及其对高温拉伸性能的影响。Co-Cr-Nb-W耐磨合金主要在钎焊和时效热处理后使用,该过程中主要发生如下两个碳化物转变过程:MC + matrix = M6C和M23C6+ matrix = M6C。合金在高温拉伸应力下的断裂机制为韧脆混合机制,块状初生碳化物与基体之间的界面容易成为裂纹萌生源。热处理过程消除了容易引起晶界迁移的片层状共晶M23C6,在骨架状MC周围析出了细小的M6C,同时改善了枝晶间元素偏析,促进基体中形成高密度的交叠层错带,使得合金在1000℃下的抗拉强度提高了约20MPa。

    Abstract:

    Carbides transformation during heat-treatment process has a significant effect on the mechanical properties of superalloys. XRD, SEM, EPMA, and TEM were used to investigate the distribution and evolution mechanism of carbides and their effects on high-temperature tensile properties of Co-Cr-Nb-W wear-resistant alloy during heat-treatment process. There are two carbides transformation processes in the Co-Cr-Nb-W alloy during brazing simulation and aging: MC+matrix=M6C and M23C6+matrix=M6C. The fracture mechanism of the Co-Cr-Nb-W alloy under high temperature tensile stress is a hybrid mechanism of ductile fracture and brittle fracture, and the interface between the bulk primary carbide and the matrix is easy to become the source of crack source. The heat treatment process eliminates the lamellar M23C6 which is easy to cause grain boundary migration, induces the precipitation of fine M6C particles around the skeleton MC, improves the interdendritic element segregation, promotes the formation of high-density overlapping stacking fault (SF) bands in the matrix, and increases the tensile strength of the alloy at 1000℃ by about 20 MPa.

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凌晨,李尚平,林筠,侯杰,李义平,骆合力. Co-Cr-Nb-W合金碳化物组织转变及力学性能研究[J].稀有金属材料与工程,2024,53(3):815~824.[LingChen, Li Shangping, Lin Jun, Hou Jie, Li Yiping, Luo Heli. Carbides Evolution and Mechanical Behavior of Co-Cr-Nb-W Wear-resistance Alloy[J]. Rare Metal Materials and Engineering,2024,53(3):815~824.]
DOI:10.12442/j. issn.1002-185X.20230133

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历史
  • 收稿日期:2023-03-15
  • 最后修改日期:2023-04-22
  • 录用日期:2023-04-23
  • 在线发布日期: 2024-03-27
  • 出版日期: 2024-03-20