Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Yu. E. Runova"'
Publikováno v:
Metal Science and Heat Treatment. 60:285-289
The effect of bulk porosity on the kinetics of hydrogen thermal diffusion impregnation and on the structure of specimens prepared from different semiproducts, i.e., bars, wires, and fibers of commercially pure titanium, is studied. It is established
Publikováno v:
Metal Science and Heat Treatment. 60:89-94
The structure and properties of porous coatings from fibers of titanium alloy VT1-0 on monolithic specimens of alloy VT6 are studied by optical and electron microscopy and mechanical testing. Athermohydrogen treatment involving hydrogen charging and
Publikováno v:
Russian Metallurgy (Metally). 2017:18-23
The structure of commercial-purity titanium additionally doped with hydrogen and the structural charge during heating to 550–600°C are studied. It is established that phases strongly differentiated by atomic volumes (to 23%) take part during forwa
Publikováno v:
Metal Science and Heat Treatment. 58:335-339
Some features are provide for the change in structure and properties of commercial purity titanium during hydrogenation and their effect on formation of the final structure of semifinished products and objects after vacuum annealing. It is establishe
Publikováno v:
Russian Metallurgy (Metally). 2015:886-890
The effect of the diffusion welding conditions on the structure and properties of a porous material (PM) made of titanium fibers is studied. It is shown that the use of fibers produced by melt quenching and then joined to form workpieces or articles
Publikováno v:
Metallurgist. 59:241-247
The possibility is investigated of improving mechanical properties of porous materials made from sintered titanium fibers and wire by hydrogen heat treatment. It is shown that the use of hydrogen heat treatment makes it possible to improve the streng
Publikováno v:
Metal Science and Heat Treatment. 55:419-422
Special features of formation of structure of diffusion joints of a NiTi-base alloy with titanium alloy VT6 are studied. It is shown that diffusion welding produces a transition zone due to the diffusion of nickel and aluminum from the joined alloys.