High strain-rate compression testing of a short-fiber reinforced aluminum composite

被引:36
作者
Guden, M [1 ]
Hall, IW [1 ]
机构
[1] UNIV DELAWARE,MECH ENGN & MAT SCI PROGRAM,NEWARK,DE 19716
来源
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING | 1997年 / 232卷 / 1-2期
关键词
compression testing; metal matrix composites; strain-rate sensitivity;
D O I
10.1016/S0921-5093(96)10880-7
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Compression behavior of 15-26V(f)% Saffil(TM) short-fiber reinforced Al-1.17wt.%Cu alloy metal matrix composites has been determined over a strain-rate range of approximately 10(-4) to 2 x 10(3) s(-1). The strain-rate sensitivity of composite samples at 4% strain, tested parallel and normal to the plane of reinforcement, was found to be higher than that of unreinforced alloy in the strain-rate range studied. Quantitative analysis of fiber fragment lengths from samples tested to different strain levels showed that, at small strains, high strain-rate testing induced a relatively shorter fiber fragment length distribution in the composite compared to quasi-static testing. At quasi-static strain rates, the fiber strengthening effect was found to increase with increasing V-f% and was higher in samples tested parallel to the planar random array. The observed anisotropy of the composite at quasi-static strain rates was also observed to continue into the high strain-rate regime. Microscopic observations on composite samples tested quasi-statically and dynamically to a range of strains showed that the major damage process involved during compression testing was fiber breakage followed by the microcracking of the matrix at relatively large strains. Fiber breakage modes were found to be mostly shearing and buckling. (C) 1997 Elsevier Science S.A.
引用
收藏
页码:1 / 10
页数:10
相关论文
共 19 条
[1]   High strain rate deformation in particle reinforced metal matrix composites [J].
Bao, G ;
Lin, Z .
ACTA MATERIALIA, 1996, 44 (03) :1011-1019
[2]   THE TENSILE DEFORMATION AND FRACTURE OF AL-SAFFIL METAL MATRIX COMPOSITES [J].
CLEGG, WJ ;
HORSFALL, I ;
MASON, JF ;
EDWARDS, L .
ACTA METALLURGICA, 1988, 36 (08) :2151-2159
[3]   THE USE OF A DELTA-ALUMINA FIBER FOR METAL MATRIX COMPOSITES [J].
CLYNE, TW ;
BADER, MG ;
CAPPLEMAN, GR ;
HUBERT, PA .
JOURNAL OF MATERIALS SCIENCE, 1985, 20 (01) :85-96
[4]   THE DYNAMIC COMPRESSION TESTING OF SOLIDS BY THE METHOD OF THE SPLIT HOPKINSON PRESSURE BAR [J].
DAVIES, EDH ;
HUNTER, SC .
JOURNAL OF THE MECHANICS AND PHYSICS OF SOLIDS, 1963, 11 (03) :155-179
[5]  
DOWLING R, 1972, J I MET, V98, P215
[6]   STRESS-STRAIN BEHAVIOR OF METAL MATRIX COMPOSITES WITH DISCONTINUOUS REINFORCEMENTS [J].
EVANS, AG ;
HUTCHINSON, JW ;
MCMEEKING, RM .
SCRIPTA METALLURGICA ET MATERIALIA, 1991, 25 (01) :3-8
[7]  
FOLLANSBEE PS, 1986, METALLURGICAL APPL S, P451, DOI DOI 10.1016/00260800(87)90034-6
[8]   THE EFFECT OF MATRIX PROPERTIES ON REINFORCEMENT IN SHORT ALUMINA FIBER ALUMINUM METAL MATRIX COMPOSITES [J].
FRIEND, CM .
JOURNAL OF MATERIALS SCIENCE, 1987, 22 (08) :3005-3010
[9]  
HALL IW, 1991, P 12 RIS INT S MAT S, P367
[10]  
HARDING J, 1987, P ICCM 6 ECCM 2