Synthesis of Functional Surface Layers on Stainless Steels by Laser Alloying

被引:25
作者
Duriagina, Zoia [1 ,2 ]
Kulyk, Volodymyr [1 ]
Kovbasiuk, Taras [1 ]
Vasyliv, Bogdan [3 ]
Kostryzhev, Andrii [4 ]
机构
[1] Lviv Polytech Natl Univ, Dept Mat Sci & Engn, 12 Bandera St, UA-79013 Lvov, Ukraine
[2] John Paul II Catholic Univ Lublin, Al Raclawickie 14, PL-20950 Lublin, Poland
[3] Natl Acad Sci Ukraine, Karpenko Phys Mech Inst, 5 Naukova St, UA-79060 Lvov, Ukraine
[4] Univ Wollongong, Sch Mech Mat Mechatron & Biomed Engn, Northfields Ave, Wollongong, NSW 2522, Australia
关键词
stainless steel; laser alloying; microstructure characterisation; coating; magnetometric phase analysis; wear resistance; MICROSTRUCTURE; PARAMETERS; MECHANISM; BEHAVIOR;
D O I
10.3390/met11030434
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Laser alloying is an effective method to form functional surface layers (coatings) on metallic materials, particularly on stainless steels. Unique phase balance, dislocation substructure, and a possibility to obtain gradient microstructures after laser alloying slow down the surface degradation and increase the wear resistance. In this work, the optimal parameters of laser alloying and their effects on microstructure and properties were investigated for two stainless steels: ferritic AISI 420 and austenitic AISI 304. Three types of alloying plasters were used: 85Nb + 15 graphite, 85Nb + 15 liquid glass, and 15Fe + 30Ni + 20B + 10Si + 25 liquid glass (wt.%). The laser power density of 0.3 x 10(5) W/cm(2) and beam scanning speed of 1990 mm/min were found to generate 220-320 mu m thick coatings with complex microstructures. Phase balance in the coatings was studied with X-ray diffraction and magnetometric phase analyses. High microhardness (up to 16 GPa) and wear resistance were associated with the formation of martensite with some retained austenite and Nb-, Cr-, Si-, and B-rich particles in the surface layer of AISI 420 steel, and high dislocation density austenite strengthened with Ti-, Nb-, Cr-, and Si-rich particles in AISI 304 steel.
引用
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页码:1 / 19
页数:19
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