Chinese Journal of Lasers, Volume. 50, Issue 12, 1202209(2023)
Microstructure and Friction and Wear Properties of Laser Deposition Repair GH4169/GH738 Alloy with Aging Heat Treatment
[1] Ma W B, Zhao Z H, Luo H Y et al. Very high cycle fatigue behavior of superalloy GH738[J]. Heat Treatment of Metals, 44, 630-633(2019).
[2] Chen S Y, Chen Y X, Jiao S F et al. Process study of laser cutting Ni-based alloy[J]. Applied Laser, 42, 66-71(2022).
[3] Xiao L R, Tan W, Liu L M et al. Low cycle fatigue behavior of GH3536 alloy formed via laser additive manufacturing[J]. Chinese Journal of Lasers, 48, 2202009(2021).
[4] Zhang J, Zhang Q L, Yao J H et al. Process optimization and interfacial microstructure and properties analysis of laser cladded IN718 alloy[J]. Chinese Journal of Lasers, 49, 1602021(2022).
[5] Zhang X S, Wang Q Y, Zheng H B et al. Residual stress and stress corrosion of alloy materials in laser additive manufacturing[J]. Laser & Optoelectronics Progress, 59, 1300002(2022).
[6] Li Q, Wu Y L. Effect of additive repair on heat treatment and mechanics of GH738 alloy made by laser deposition[J]. Applied Laser, 40, 1023-1028(2020).
[7] Bian H Y, Zhai Q X, Qu S et al. Effect of aging heat treatment on microstructure and properties of laser deposition repaired GH738 alloy[J]. Rare Metal Materials and Engineering, 48, 317-322(2019).
[8] Sheng J J, Wang L, Liu R et al. Effects of heat treatment on microstructure and performance of laser cladded IN939 alloy[J]. Surface Technology, 49, 202-209, 252(2020).
[9] Kim K S, Yang S S, Kim M S et al. Effect of post heat-treatment on the microstructure and high-temperature oxidation behavior of precipitation hardened IN738LC superalloy fabricated by selective laser melting[J]. Journal of Materials Science & Technology, 76, 95-103(2021).
[10] Zhang Y C, Yang L, Lu W Z et al. Microstructure and elevated temperature mechanical properties of IN718 alloy fabricated by laser metal deposition[J]. Materials Science and Engineering: A, 771, 138580(2020).
[11] Zhang Y C, Yang L, Chen T Y et al. Investigation on the optimized heat treatment procedure for laser fabricated IN718 alloy[J]. Optics & Laser Technology, 97, 172-179(2017).
[12] Liu Y Y, Xiao M, Gao X S et al. Study on microstructure and property of FGH95/GH4169 dissimilar materials laser additive repaired interface[J]. Hot Working Technology, 50, 22-25(2021).
[13] Bian H Y, Zhu M H, Li Y et al. Microstructure and mechanical properties of laser deposition repair of GH536/GH738 superalloy[J]. The Chinese Journal of Nonferrous Metals, 30, 542-549(2020).
[15] Zhang J, Zhang Q L, Li D et al. Effect of δ aging treatment on microstructure and tensile properties of repaired Inconel 718 alloy using laser additive manufacturing[J]. Chinese Journal of Lasers, 47, 0102001(2020).
[16] Zhang Y C, Wang Z, Zhang Y Y et al. Microstructure, mechanical properties and thermal crack behavior of laser cladded IN718 alloy coating[J]. Journal of Xihua University (Natural Science Edition), 41, 42-50, 66(2022).
[17] Zhang Q L, Zhang J, Li D et al. Microstructure and properties of laser additive remanufactured IN718 alloy with different aging temperatures[J]. Rare Metal Materials and Engineering, 49, 1785-1792(2020).
[18] Zhang J, Li K, Wu Z S et al. Microstructure and high temperature wear properties of GH4169 coating fabricated via laser cladding[J]. Applied Laser, 42, 36-42(2022).
[19] Bian H Y, Zhai Q X, Qu S et al. Experimental study on laser deposition repair GH738 alloy[J]. Infrared and Laser Engineering, 47, 0706002(2018).
[20] Yao Z H, Dong J X, Zhang M C et al. Relationships between microstructures and properties for GH864 superalloy[J]. Rare Metal Materials and Engineering, 39, 1565-1570(2010).
[21] Bian H Y, Zhai Q X, Li Y et al. Microstructure and tensile properties of laser deposition repair GH738 superalloy[J]. Chinese Journal of Lasers, 44, 1002003(2017).
[22] Bian H Y, Zhao X P, Qu S et al. Effect of heat treatment on high temperature tensile properties of laser deposition repair GH4169 superalloy[J]. Chinese Journal of Lasers, 43, 0103008(2016).
[23] Guo Q Y, Ma Z Q, Qiao Z X et al. A new type-γ′/γ″ coprecipitation behavior and its evolution mechanism in wrought Ni-based ATI 718Plus superalloy[J]. Journal of Materials Science & Technology, 119, 98-110(2022).
[24] Zhou Q J, Zhao Y G, Xie Y et al. Microstructure and mechanical properties for laser melting deposition formed/repaired GH4169 alloy by regulated methods: a review[J]. Chinese Journal of Rare Metals, 46, 636-651(2022).
Get Citation
Copy Citation Text
Hongyou Bian, Ziming Liu, Weijun Liu, Qingsheng Huo, Xiaowen Xu, Fei Xing. Microstructure and Friction and Wear Properties of Laser Deposition Repair GH4169/GH738 Alloy with Aging Heat Treatment[J]. Chinese Journal of Lasers, 2023, 50(12): 1202209
Category: Laser Surface Machining
Received: Nov. 28, 2022
Accepted: Feb. 7, 2023
Published Online: Jun. 6, 2023
The Author Email: Liu Weijun (wjliu@sut.edu.cn)