High-Temperature Erosion of SiC-NiCrAlY/Cr3C2-NiCr Coating

被引:0
|
作者
Barragan, Eduardo Enrique Velez [1 ]
Albarran, Marco Aurelio Gonzalez [2 ]
de Anda, Eduardo Rodriguez [1 ]
Guillen, Gabriel Israel Vasquez [3 ]
Montalvo, Josede Jesus Ibarra [3 ]
Guillen, Juan Carlos Diaz [4 ]
Aguilar, Jorge Manuel Chavez [5 ]
机构
[1] Univ Guadalajara, Ctr Univ Ciencias Exactas Ingn, CUCEI, Dept Ingn Proyectos, Ciudad Univ,Blvd Marcelino Garcia Barragan 1421, Guadalajara 44430, Jalisco, Mexico
[2] CONACyT Univ Guadalajara, Ctr Univ Ciencias Exactas Ingn, Dept Ingn Proyectos, CUCEI, Jose Guadalupe Zuno 48, Zapopan 45100, Jalisco, Mexico
[3] Inst Tecnol Super Zapopan, Camino Arenero 1101, Zapopan 45019, Jalisco, Mexico
[4] CONACyT, Corp Mexicana Invest Mat, Saltillo 25290, Coahuila, Mexico
[5] Univ Guadalajara, CUCEI, Dept Ingn Mecan Electr, Blvd Marcelino Garcia Barragan 1421, Guadalajara 44430, Jalisco, Mexico
关键词
high-temperature erosion; HVOF; MCrAlY alloy; SiC; Cr3C2-NiCr; SOLID PARTICLE EROSION; THERMAL SPRAY COATINGS; WEAR BEHAVIOR; SILICON-CARBIDE; OXIDATION; DISPERSION; POWDER; STEEL;
D O I
10.3390/coatings13040720
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
High-temperature erosion is a detrimental phenomenon in industries where particle flow exists, in which the search for new materials and mixes to increase the lifespan of mechanical components exposed to erosion is crucial. The present work studied the erosion resistance of two coatings at 25 degrees C (RT) and 900 degrees C in a sandblast-type rig. The coatings were fabricated with cermet-type powders: (C1) commercial Cr3C2-NiCr and (C2) commercial Cr3C2-NiCr mixed with a laboratory-conditioned powder consisting of NiCrAlY (linking matrix) and SiC (ceramic phase). Both coatings were applied on an Incoloy 330 substrate using an HVOF thermal spray process. The C2 coating was 11% harder than C1 but had a 62.2% decrement in its K-IC value. The erosion test results at RT and 900 degrees C showed better erosion resistance on C1 than C2 at both testing temperatures and the three impact angles (30 degrees, 60 degrees, and 90 degrees); this was attributed to the minor K-IC induced by SiC hard particles and the bigger propagation of inter-splat and trans-splat cracks in C2. The erosion mechanisms at RT and 900 degrees C were similar, but at high temperature, the apparent size of plastic deformation (micro-cutting, grooves, and craters) increased due to an increase in the matrix ductility. Maximum penetration depth always occurred at a 60 degrees impact angle.
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页数:16
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