CORROSION BEHAVIOR OF ALUMINA-ALUMINUM AND SILICON CARBIDE-ALUMINUM METAL-MATRIX COMPOSITES

被引:99
作者
NUNES, PCR [1 ]
RAMANATHAN, LV [1 ]
机构
[1] IPEN CNEN SP, CP 11049, BR-05422970 SAO PAULO, BRAZIL
关键词
ALUMINA; ALUMINUM; AQUEOUS CORROSION; CORROSION RESISTANCE; METAL-MATRIX COMPOSITES; PARTICLE REINFORCEMENTS; PHASES; PITTING; SILICON CARBIDE;
D O I
10.5006/1.3293621
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Particle-reinforced, aluminum-based metal-matrix composites (MMCs) are-being considered for a range of applications. Their mechanical properties have been investigated in detail, but more information about their corrosion behavior is needed. The influences of alloy composition; particle characteristics such as composition, size, volume fraction, and pretreatment: and composite post-treatment on the aqueous corrosion behavior of aluminum-matrix composites prepared by the melt stirring process were studied. Corrosion tests consisted of prolonged immersion and anodic polarization measurements in sodium chloride (NaCl) solutions. The difference between the corrosion potential (E(corr)) and the pitting potential (E(p)) was lowered from similar to 500 mV(SCE) in deaerated NaCl to 100 mV(SCE) in aerated NaCl. Particle addition affected E(p) but not E(corr). Immersion test data revealed significant specimen weight loss for the composites resulting from formation of pits or microcrevices in the matrix near the particle-matrix interface and from particle dropout. Pits in the silicon carbide (SiC) composites were deeper than those in the alumina (Al2O3) composites, probably because the SiC particles acted as efficient cathodic sites, Pit initiation and propagation occurred at weak spots in the air-formed film, corresponding to phase discontinuities and second-phase particles and to oxygen reduction at the particles or precipitates. Anodization and ceria (CeO2) coatings improved corrosion resistance of the composites.
引用
收藏
页码:610 / 617
页数:8
相关论文
共 33 条
[1]   EFFECT OF REINFORCEMENT ON THE PITTING BEHAVIOR OF ALUMINUM-BASE METAL MATRIX COMPOSITES [J].
AYLOR, DM ;
MORAN, PJ .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1985, 132 (06) :1277-1281
[2]   CORROSION BEHAVIOR OF SILICON-CARBIDE PARTICLE REINFORCED 6061/AL ALLOY COMPOSITES [J].
BHAT, MSN ;
SURAPPA, MK ;
NAYAK, HVS .
JOURNAL OF MATERIALS SCIENCE, 1991, 26 (18) :4991-4996
[3]  
BINGER WW, 1967, ALUMINUUM, V1, P212
[4]   LOCALIZED CORROSION OF ALUMINUM-ALLOYS - A REVIEW [J].
FOLEY, RT .
CORROSION, 1986, 42 (05) :277-288
[5]  
GIROT FA, 1987, J MET, V11, P18
[6]  
GRIFFITHS AJ, 1992, NPL NEWS DMM A, V31, P31
[7]   GALVANIC CORROSION OF ALUMINUM-MATRIX COMPOSITES [J].
HIHARA, LH ;
LATANISION, RM .
CORROSION, 1992, 48 (07) :546-552
[8]  
Hinton B. R. W., 1985, CORROSION AUSTRALASI, V10, P12
[9]   CORROSION PROTECTION OF AL/SIC METAL MATRIX COMPOSITES BY ANODIZING [J].
LIN, S ;
GREENE, H ;
SHIH, H ;
MANSFELD, F .
CORROSION, 1992, 48 (01) :61-67