Transformation-mismatch superplasticity in reinforced and unreinforced titanium

被引:80
作者
Dunand, DC
Bedell, CM
机构
[1] Dept. of Mat. Sci. and Engineering, Massachusetts Inst. of Technology, Cambridge
[2] Dept. of Civ. and Mech. Engineering, United States Military Academy, West Point
关键词
D O I
10.1016/1359-6454(95)00224-3
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Samples of commercial-purity titanium, with and without 10 vol.% TiC particulates, were thermally cycled about the allotropic transformation temperature of titanium. Thermal ratcheting was small for both unstressed materials. Upon application of an external uniaxial tensile stress, unreinforced titanium exhibited large strain increments, resulting from the biasing by the applied stress of the volume mismatch developed between grains during the transformation. Upon repeated cycling, a strain to fracture of 200% was reached, with a strain per cycle proportional to the external stress, in agreement with existing transformation-mismatch superplasticity models. The metal matrix composite displayed transformation-mismatch superplasticity as well, with a strain to fracture of 135% and a strain per cycle significantly higher than for unreinforced titanium. This novel enhancement of superplastic strain is modeled by considering the internal mismatch between the transforming matrix and the non-transforming particulates.
引用
收藏
页码:1063 / 1076
页数:14
相关论文
共 74 条
[51]   THE DEFORMATION OF PARTICLE REINFORCED METAL MATRIX COMPOSITES DURING TEMPERATURE CYCLING [J].
PICKARD, SM ;
DERBY, B .
ACTA METALLURGICA ET MATERIALIA, 1990, 38 (12) :2537-2552
[52]   THE BEHAVIOR OF METAL MATRIX COMPOSITES DURING TEMPERATURE CYCLING [J].
PICKARD, SM ;
DERBY, B .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 1991, 135 :213-216
[53]   THE INFLUENCE OF MICROSTRUCTURE ON INTERNAL-STRESS SUPERPLASTICITY IN POLYCRYSTALLINE ZINC [J].
PICKARD, SM ;
DERBY, B .
SCRIPTA METALLURGICA ET MATERIALIA, 1991, 25 (02) :467-472
[54]  
PICKARD SM, 1988, 9TH P RIS INT S MET, P447
[55]  
Pilling J., 1989, Superplasticity in Crystalline Solids
[56]   ANALYSIS OF CREEP IN THERMALLY CYCLED AL/SIC COMPOSITES [J].
POVIRK, GL ;
NUTT, SR ;
NEEDLEMAN, A .
SCRIPTA METALLURGICA ET MATERIALIA, 1992, 26 (03) :461-466
[57]   CREEP OF ALPHA URANIUM DURING IRRADIATION WITH NEUTRONS [J].
ROBERTS, AC ;
COTTRELL, AH .
PHILOSOPHICAL MAGAZINE, 1956, 1 (08) :711-717
[58]   A MODEL OF INTERNAL-STRESS SUPERPLASTICITY BASED ON CONTINUUM MICROMECHANICS [J].
SATO, E ;
KURIBAYASHI, K .
ACTA METALLURGICA ET MATERIALIA, 1993, 41 (06) :1759-1767
[59]   ALPHA-BETA CYCLING OF URANIUM [J].
STOBO, JJ .
JOURNAL OF NUCLEAR MATERIALS, 1960, 2 (02) :97-109
[60]  
TAKAYAMA Y, 1985, TITANIUM SCI TECHNOL, P753