[1] QIN Y, YAN H, GAO Q Sh, et al. Microstructure and wear resistance of in-situ synthesized Ti3SiC2/Ni-based coating by laser cladding on titanium alloy[J]. Nonferrous Metals Engineering, 2019, 9(4): 34-40(in Chinese).
[2] HE B F. Properties of laser cladding NiCrAl+TiC composite coatings on TC4 titanium alloy[J]. Heat Treatment Of Metals, 2019, 44(9): 69-73(in Chinese).
[3] ZHAO X X, XIAO H Q, YOU Ch Ch, et al. Process and microstructure properties of laser cladding TiAl alloy coating on TC4 surface[J]. Laser Technology, 2021, 45(6): 697-702(in Chinese).
[4] ZHANG L T, LIU D X, ZHANG W Q, et al. Research progress of laser cladding coating on titanium alloy surface[J]. Surface Technology, 2020, 49(8): 97-104(in Chinese).
[5] LIU K, YAN H, ZHANG P, et al. Wear behaviors of TiN/WS2+ hBN/NiCrBSi self-lubricating composite coatings on TC4 alloy by laser cladding[J]. Coatings, 2020, 10(8): 747. doi: 10.3390/coatings10080747
[6] GAO Y, LIU R, WU T, et al. Microstructure and wear resistance of laser clad TiAlSi +xB4C coatings on Ti-6Al-4V alloy[J]. Heat Treatment of Metals, 2021, 46(2): 196-200(in Chinese).
[7] OLOFSSON U, LYU Y, ÅSTRÖM A H, et al. Laser cladding treatment for refurbishing disc Brake rotors: Environmental and tribological analysis[J]. Tribology Letters, 2021, 69(2): 1-11.
[8] WU G G, WANG X G, ZENG X, et al. Microstructure and properties of laser clad AlCoCrFeNiTi 0.5 high-entropy alloy coating on TC4 surface[J]. Heat Treatment of Metals, 2019, 44(12): 1-5(in Chin-ese).
[9] ZHANG Z Q, YANG F, ZHANG T G, et al. Research progress of laser cladding titanium carbide reinforced titanium-based composite coating[J]. Surface Technology, 2020, 49(10): 138-151(in Chin-ese).
[10] LIU Zh P, WU W X, LI Sh, et al. Research on microstructure and properties of laser cladding Fe-base alloy coating[J]. Mechanical Engineer, 2021(4): 18-19(in Chinese).
[11] DING Z Y, MA Z B, LI W Q, et al. Study on microstructure and properties of laser cladding Fe-based alloy powder cladding layer[J]. Hot Working Technology, 2019, 48(18): 100-102(in Chin-ese).
[12] TAN J H, SUN R L, NIU W, et al. Research status of TC4 alloy laser cladding materials[J]. Materials Reports, 2020, 34(15): 15132-15137(in Chinese).
[13] YI J, PENG R Sh. Microstructure and wear resistance of laser alloying coating on TC4 titanium alloy surface[J]. Heat Treatment Of Metals, 2020, 45(2): 225-230(in Chinese).
[14] ZHANG D Q, LIU X D, ZHANG W B. Experimental study on laser cladding of TC4 alloy[J/OL]. [2021-03-22]. https://doi.org/10.14158/j.cnki.1001-3814.20152462(in Chinese).
[15] LIU D, CHEN Z Y, CHEN K P, et al. Microstructure and wear resistance of laser clad composite coating on TC4 titanium alloy surface[J]. Heat Treatment of Metals, 2015, 40(3): 58-62(in Chinese).
[16] XIA S H, WU M P, MA Y Q, et al. Effect of TiC content on microstructure and properties of laser clad layer on TC4 alloy[J]. Heat Treatment of Metals, 2020, 45(6): 212-215(in Chinese).
[17] ZHAN J M, LIANG Zh G, HUANG J Y, et al. Study on the single laser cladding process on TC4 titanium alloy surface[J]. Applied Laser, 2020, 40(6): 955-961(in Chinese).
[18] YOU Ch Ch, XIAO H Q, REN L R, et al. Microstructure and pro-perties of laser cladding Ti-Al-N composite coating on TC4 surface[J]. Laser Technology, 2021, 45(5): 585-589(in Chinese).
[19] XIE L Y, WU T, GONG M M, et al. Numerical simulation and experimental study on temperature field of single channel laser cladding[J]. Laser Technology, 2022, 46(2): 226-232(in Chinese).
[20] YU T B, HAN J B, QIAO R Zh, et al. The influence of process parameters on coating performance of Ni based and Fe based cladding layer[J]. Laser & Infrared, 2019, 49(7): 801-807(in Chinese).