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磁场辅助激光熔覆铝基金属玻璃覆层
Alternative TitleAluminum-based metallic glass coatings prepared with magnetic field assisted laser cladding
王晓明1; 朱胜1; 杨柏俊2; 张垚1; 徐安阳1
2018
Source Publication航空学报
ISSN1000-6893
Volume39.0Issue:011Pages:422134-1
Abstract为提高铝合金的表面性能,采用磁场辅助激光熔覆的方法在5083铝合金表面制备了Al-Ni-Y-Co-La五元金属玻璃熔覆层,并对其进行组织成分及性能分析。实验结果表明:熔覆层主要由非晶相、α-Al相以及Al4NiY等金属间化合物组成,旋转磁场的搅拌作用使熔覆层非晶相含量由10.2%提高到30.7%,且能够有效抑制多道搭接和多层堆积过程中重熔区晶粒的生长,细化了熔覆层晶粒组织,降低了残余应力,提高了显微硬度及韧性,使其平均显微硬度从278HV(0.1)提高至335HV(0.1),且波动较小,平均抗拉强度为303 MPa,为基体拉伸件的110.2%,平均伸长率为6.79%,为基体的33.1%。
Other AbstractAl-Ni-Y-Co-La five-component metallic glass cladding layer was prepared on the surface of 5083 aluminum alloy by magnetic field assisted laser cladding technology to improve the surface properties of the aluminum alloy.The microstructure and properties of the cladding layer are analised.Some of the effective experimental results show that the cladding layer is mainly composed of amorphous phase,α-Al phase and Al4 NiY intermetallic compound phase.The stirring of the rotating magnetic field increases the amorphous phase content of the cladding layer from 10.2% to 30.7% and could inhibit the recrystallization grain growth effectively in the process of multi-lap and multi-layer deposition.The residual stress is reduced and the grain structure is refined.The microhardness and tenacity are enhanced,the average microhardness increased from278 HV(0.1) to 335 HV(0.1) with less fluctuation.The average tensile strength is 303 MPa,110.2%of the matrix tensile specimen and the average elongation is 6.79%,33.1% of the matrix.
Keyword激光熔覆 磁场 铝基金属玻璃 残余应力 显微硬度 抗拉强度
Indexed ByCSCD
Language中文
CSCD IDCSCD:6371880
Citation statistics
Cited Times:1[CSCD]   [CSCD Record]
Document Type期刊论文
Identifierhttp://ir.imr.ac.cn/handle/321006/151010
Collection中国科学院金属研究所
Affiliation1.陆军装甲兵学院
2.中国科学院金属研究所
Recommended Citation
GB/T 7714
王晓明,朱胜,杨柏俊,等. 磁场辅助激光熔覆铝基金属玻璃覆层[J]. 航空学报,2018,39.0(011):422134-1.
APA 王晓明,朱胜,杨柏俊,张垚,&徐安阳.(2018).磁场辅助激光熔覆铝基金属玻璃覆层.航空学报,39.0(011),422134-1.
MLA 王晓明,et al."磁场辅助激光熔覆铝基金属玻璃覆层".航空学报 39.0.011(2018):422134-1.
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