Deformation and fracture in microlaminates

被引:246
作者
Was, GS
Foecke, T
机构
[1] UNIV MICHIGAN,DEPT NUCL ENGN & RADIOL SCI,ANN ARBOR,MI 48109
[2] NATL INST STAND & TECHNOL,DIV MET,GAITHERSBURG,MD 20899
关键词
deformation; fracture; microlaminates;
D O I
10.1016/S0040-6090(96)08905-5
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The utility of microlaminates in engineering applications depends ultimately on their strength and toughness. While the properties of monolithic films and coatings can be controlled through crystal structure and microstructure, the properties of microlaminates are a sensitive function of the interfaces, It is the large number of interfaces in a microlaminate that determines the unique behavior of this special type of composite. This review begins with a property-based definition of a microlaminate. The mechanisms by which microlaminates deform plastically are reviewed and evaluated in the context of data on metal-metal, metal-intermetallic, metal-ceramic and ceramic-ceramic systems. It is evident that in addition to layer geometry, the layer microstructure plays a major role in determining the operative deformation mechanism. The fracture processes in a microlaminate are examined in the context of the layer strength, microstructure, defects and crack-tip-dislocation processes. High toughnesses in microlaminate materials can be attained through a combination of mechanisms, and their effectiveness depends critically on the ability to affect the magnitude and shape of the stress field at the tip of the crack. The study of deformation and fracture in microlaminates is still a relatively young field in materials science. However, while our understanding of these processes is still quite incomplete, it is improving rapidly with advances in experiment, theory and modeling capability.
引用
收藏
页码:1 / 31
页数:31
相关论文
共 113 条
[11]  
Bickerdike R.L., 1984, INT J RAPID SOLIDIF, V1, P305
[12]   STRUCTURE PROPERTY RELATIONSHIPS IN MICROLAMINATE TIC/NI CONDENSATES [J].
BUNSHAH, RF ;
SANS, C ;
DESHPANDEY, C ;
DOERR, HJ ;
MOVCHAN, BA ;
DEMCHISHIN, AV ;
BADILENKO, GF .
THIN SOLID FILMS, 1982, 96 (01) :59-66
[13]   STRUCTURE PROPERTY RELATIONSHIPS IN CR/CU AND TI/NI MICROLAMINATE COMPOSITES [J].
BUNSHAH, RF ;
NIMMAGADDA, R ;
DOERR, HJ ;
MOVCHAN, BA ;
GRECHANUK, NI ;
DIDKIN, GG .
THIN SOLID FILMS, 1984, 112 (03) :227-236
[14]   STRUCTURE AND PROPERTY RELATIONSHIPS IN MICROLAMINATE NI-CU AND FE-CU CONDENSATES [J].
BUNSHAH, RF ;
NIMMAGADDA, R ;
DOERR, HJ ;
MOVCHAN, BA ;
GRECHANUK, NI ;
DABIZHA, EV .
THIN SOLID FILMS, 1980, 72 (02) :261-275
[15]   NANOINDENTATION STUDY OF THE MECHANICAL-PROPERTIES OF COPPER-NICKEL MULTILAYERED THIN-FILMS [J].
CAMMARATA, RC ;
SCHLESINGER, TE ;
KIM, C ;
QADRI, SB ;
EDELSTEIN, AS .
APPLIED PHYSICS LETTERS, 1990, 56 (19) :1862-1864
[16]   MECHANICAL-PROPERTIES OF AN IN-SITU SYNTHESIZED NB/NB3AL LAYERED COMPOSITE [J].
CAO, HC ;
LOFVANDER, JPA ;
EVANS, AG ;
ROWE, RG ;
SKELLY, DW .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 1994, 185 (1-2) :87-95
[17]   ON CRACK EXTENSION IN DUCTILE/BRITTLE LAMINATES [J].
CAO, HC ;
EVANS, AG .
ACTA METALLURGICA ET MATERIALIA, 1991, 39 (12) :2997-3005
[18]   EFFECTS OF LAMELLAE SPACING AND COLONY SIZE ON THE FRACTURE-RESISTANCE OF A FULLY-LAMELLAR TIAL ALLOY [J].
CHAN, KS ;
KIM, YW .
ACTA METALLURGICA ET MATERIALIA, 1995, 43 (02) :439-451
[19]   CRACKING AND STRESS REDISTRIBUTION IN CERAMIC LAYERED COMPOSITES [J].
CHAN, KS ;
HE, MY ;
HUTCHINSON, JW .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 1993, 167 (1-2) :57-64
[20]   PLASTIC PROPERTIES OF POLYCRYSTALLINE THIN-FILMS ON A SUBSTRATE [J].
CHAUDHARI, P .
PHILOSOPHICAL MAGAZINE A-PHYSICS OF CONDENSED MATTER STRUCTURE DEFECTS AND MECHANICAL PROPERTIES, 1979, 39 (04) :507-516