Effect of heat treatment on microstructure and properties of hybrid manufacturing TC4 alloy bonding zone

IF 6.6 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of Materials Research and Technology-Jmr&t Pub Date : 2025-01-01 Epub Date: 2024-12-17 DOI:10.1016/j.jmrt.2024.12.088
Jun Zhang , Peizhi Yang , Haiou Yang , Wenzhe Yang , Kuitong Yang , Wenya Xu
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Abstract

Samples were deposited on the casting matrix of TC4 titanium alloy by arc fuse additive manufacturing technology. The effects of different heat treatments on the microstructure and properties of the bonding zone of the hybrid manufacturing sample were studied. Meanwhile, the corrosion resistance of different regions of the sample after heat treatment was studied. The results show that with the increase of annealing temperature, the α phase in the binding zone has a certain degree of coarsening, and the acicular martensite α 'phase at the top of the binding zone decomposes. At the same time, the yield strength reached 882.4 MPa when the annealing temperature is 800 °C. After solution aging treatment at 950 °C/1h/AC (Air Cooling)+600 °C/4h/AC, the non-uniformity of the structure of the bonding zone is improved, and the yield strength above 800 MPa is maintained at the highest post-fracture elongation of 8.6%, which demonstrates a good comprehensive performance. On the other hand, after 950 °C/1h/AC+600 °C/4h/AC solution aging treatment, the fusing of the continuous α phase and the decomposition of the acicular martensite α′ phase led to an improvement in the corrosion resistance of the bonding zone. At the same time, the improvement in the microstructure heterogeneity between different regions reduces the difference of corrosion resistance in different regions of TC4 titanium alloy components to a certain extent.
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热处理对复合制造TC4合金结合区的组织和性能的影响
采用电弧熔丝增材制造技术在TC4钛合金铸造基体上沉积样品。研究了不同热处理工艺对杂化试样结合区组织和性能的影响。同时,对热处理后试样不同部位的耐蚀性进行了研究。结果表明:随着退火温度的升高,结合区内的α相发生一定程度的粗化,结合区顶部的针状马氏体α′相发生分解;同时,当退火温度为800℃时,屈服强度达到882.4 MPa。经950℃/1h/AC(空冷)+600℃/4h/AC固溶时效处理后,结合区组织的不均匀性得到改善,800 MPa以上屈服强度保持在最高断后伸长率8.6%,综合性能良好。另一方面,经过950℃/1h/AC+600℃/4h/AC固溶时效处理后,连续α相的熔合和针状马氏体α′相的分解导致结合区的耐蚀性提高。同时,不同区域间组织不均匀性的改善在一定程度上减小了TC4钛合金部件不同区域耐蚀性的差异。
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来源期刊
Journal of Materials Research and Technology-Jmr&t
Journal of Materials Research and Technology-Jmr&t Materials Science-Metals and Alloys
CiteScore
8.80
自引率
9.40%
发文量
1877
审稿时长
35 days
期刊介绍: The Journal of Materials Research and Technology is a publication of ABM - Brazilian Metallurgical, Materials and Mining Association - and publishes four issues per year also with a free version online (www.jmrt.com.br). The journal provides an international medium for the publication of theoretical and experimental studies related to Metallurgy, Materials and Minerals research and technology. Appropriate submissions to the Journal of Materials Research and Technology should include scientific and/or engineering factors which affect processes and products in the Metallurgy, Materials and Mining areas.
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