EFFECT OF HYDROGEN ON TRANSFORMATION CHARACTERISTICS AND DEFORMATION-BEHAVIOR IN A TINI SHAPE MEMORY ALLOY

被引:12
|
作者
HOSHIYA, T
DEN, S
KATSUTA, H
ANDO, H
机构
[1] IRIE KOKEN CO LTD, DEV & RES LAB, KAWAGOE, JAPAN
[2] JAPAN ATOM ENERGY RES INST, TOKAI RES ESTAB, TOKAI, IBARAKI 31911, JAPAN
关键词
SHAPE MEMORY EFFECT; TITANIUM-NICKEL ALLOY; MARTENSITIC TRANSFORMATION; ELECTRICAL RESISTIVITY; HYDROGEN; DEFORMATION BEHAVIOR; ELASTIC ENERGY;
D O I
10.2320/jinstmet1952.56.7_747
中图分类号
学科分类号
摘要
Transformation characteristics and deformation behavior of hydrogenated Ti-50.5 at%Ni alloys, which were occluded in a low pressure range of hydrogen between 1.1 and 78.5 kPa, have been studied by electrical resistivity measurement, tensile test, X-ray diffraction analysis and microstructural observation. M(s) temperature of the Ti-Ni alloys decreased with an increase in hydrogen content. This corresponds to the stabilization of the parent phase during cooling, which was confirmed by X-ray diffraction: The suppression effect of hydrogen takes place on the martensitic transformation. Critical stress for slip deformation of hydrogenated Ti-Ni alloys changed with hydrogen content and thus hydrogen had a major influence on deformation behavior of those alloys. With hydrogen contents above 0.032 mol%, hardening was distinguished from softening which was pronounced in the contents from 0 to 0.032 mol%H. Hydrides were formed in hydrogen contents over 1.9 mol%. The hydride formation results in the reorientation in variants of the R phase and an increase in the lattice strains of the parent phase.
引用
收藏
页码:747 / 756
页数:10
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