Chinese Journal of Lasers, Volume. 47, Issue 8, 802009(2020)
Microstructures and Properties of Tin-Based Babbitt Metal Prepared by Laser Cladding Deposition
[1] Zhang B, Yang Z Y, Fu D X et al. Preparation of the wire of ZChSnSb11-6 used for remanufacturing thermal spraying[J]. Thermal Spray Technology, 5, 29-33(2013).
[2] Qin Z, Zhao Z W, Wei H D et al. Research progress and preparation techniques of Babbitt metal[J]. Hot Working Technology, 45, 10-14(2016).
[3] Zhang Z L, Duan S H, Ding Y et al. Wear performance of arc sprayed Sn-based Babbitt alloy coating[J]. Journal of Shenyang University of Technology, 32, 50-54(2010).
[4] Wang J M, Xue Y W, Ma L X et al. Influence of creep on mechanical properties and microstructures of Babbitt alloy ZChSnSb11-6[J]. The Chinese Journal of Nonferrous Metals, 24, 2513-2518(2014).
[5] Zou J T, Zhao Y, Wang C et al. Diffusion bonding of ZChSnSb11-6/20 steel bimetal composite material[J]. The Chinese Journal of Nonferrous Metals, 26, 1451-1458(2016).
[6] Alcover P R C, Pukasiewicz A G M. Evaluation of microstructure, mechanical and tribological properties of a Babbitt alloy deposited by arc and flame spray processes[J]. Tribology International, 131, 148-157(2018).
[7] Valeeva A K, Valeev I, Fazlyakhmetov R. On the wear rate of an Sn11Sb5.5Cu Babbitt[J]. Journal of Friction and Wear, 38, 53-57(2017).
[8] Kim C K, Choi S G, Kim J H et al. Characterization of surface modification by laser cladding using low melting point metal[J]. Journal of Industrial and Engineering Chemistry, 87, 54-59(2020).
[9] Zhang W. Research on microstructure and hardness of tin-base Babbitt alloy made by laser remelting[J]. Hot Working Technology, 44, 32-34(2015).
[10] Ni Y Q, Dong G N, Tong Z et al. Effect of laser remelting on tribological properties of Babbitt alloy[J]. Materials Research Express, 6, 096570(2019).
[11] Li J. Microstructure and tensile fracture of laser cladding Sn-Cu-Sb coating on gas turbine steel surface[J]. Materials Protection, 52, 75-78(2019).
[12] Zhang D Y, Zhang H, Qin L G et al. Effect of surface texturing on tribological properties of Babbitt alloy[J]. Journal of Huazhong University of Science and Technology(Nature Science Edition), 42, 30-34, 52(2014).
[14] Hao Y B, Zhao K, Yang P et al. Microstructure and mechanical properties of tin-based Babbitt alloy made by laser cladding deposition[J]. The Chinese Journal of Nonferrous Metals, 28, 2016-2023(2018).
[18] Duan H P, Feng H, Zhao Q H[J]. Effect of mechanical vibration on β phase of Sn-Sb alloy Foundry Technology, 2004, 686-688, 690.
[19] Zhang S Q, Wang Y C, Zhang B et al. Effect of micro-chilling treatment on microstructure and properties of ZChSnSb11-6 alloy[J]. Hot Working Technology, 45, 88-90(2016).
[20] Zhao X K, Lai R, Hai X S. A study on the microstructures and properties of selective laser melted Babbitt metals[J]. Journal of Materials Engineering and Performance, 28, 5433-5440(2019).
[21] Zhou F M, Zhang Q Y, Shi M X et al. The effect of TIG arc brazing current on interfacial structure and bonding strength of tin-based babbit[J]. Journal of Adhesion Science and Technology, 31, 2312-2322(2017).
[22] Kobernik N, Mikheev R, Kremlev S. Plasma-powder deposition of Babbitt alloys[J]. Welding International, 29, 654-656(2015).
[23] Fu Y C, Wang X, Mao D D et al. The wear mechanism of Babbitt during dry sliding friction[J]. Lubrication Engineering, 36, 32-35(2011).
Get Citation
Copy Citation Text
Hao Yunbo, Wang Jiang, Yang Ping, Wang Yuling, Liang Xudong, Gao Jiali. Microstructures and Properties of Tin-Based Babbitt Metal Prepared by Laser Cladding Deposition[J]. Chinese Journal of Lasers, 2020, 47(8): 802009
Category: laser manufacturing
Received: Feb. 17, 2020
Accepted: --
Published Online: Aug. 24, 2020
The Author Email: Yunbo Hao (m18221247257@163.com)