Scientific Library of Tomsk State University

   E-catalog        

Normal view MARC view

Powder injection molding of Ti-Al-W nano/micro bimodal powders: Structure, phase composition and oxidation kinetics M. G. Krinitcyn, A. V. Pervikov, D. Kochuev, M. I. Lerner

Contributor(s): Krinitcyn, Maksim G | Pervikov, Alexander V | Kochuev, Dmitriy | Lerner, Marat IMaterial type: ArticleArticleContent type: Текст Media type: электронный Subject(s): бимодальные порошки | наноструктурированные материалы | горячее изостатическое прессование | фазовый состав | окислениеGenre/Form: статьи в журналах Online resources: Click here to access online In: Metals Vol. 12, № 8. P. 1357 (1-13)Abstract: Products from the materials of the Ti-Al system are difficult to manufacture. This often restricts the use of such materials despite their outstanding properties. Some of the promising methods for manufacturing products, which allows working with materials of the Ti-Al system, are powder injection molding (PIM) and material extrusion additive manufacturing (MEAM) technologies. In the present study, powder composites Ti-48Al-4W with different powder size distribution, obtained by the electric explosion of wire (EEW) method, were investigated. The powder was used in PIM technology to produce bulk samples. After polymer debinding, PIM samples were sintered in a vacuum and using hot isostatic pressing (HIP) at the same temperatures and isothermal holding times. The results show the influence of size distribution and sintering method on the structure, phase composition, mechanical properties and oxidation resistance of pre-sintered PIM samples. It is found that both the size distribution and sintering method affect the mechanical properties. The smaller the particle size of the powder in the material, the greater the resistance to oxidation of such samples.
Tags from this library: No tags from this library for this title. Log in to add tags.
No physical items for this record

Библиогр.: 80 назв.

Products from the materials of the Ti-Al system are difficult to manufacture. This often restricts the use of such materials despite their outstanding properties. Some of the promising methods for manufacturing products, which allows working with materials of the Ti-Al system, are powder injection molding (PIM) and material extrusion additive manufacturing (MEAM) technologies. In the present study, powder composites Ti-48Al-4W with different powder size distribution, obtained by the electric explosion of wire (EEW) method, were investigated. The powder was used in PIM technology to produce bulk samples. After polymer debinding, PIM samples were sintered in a vacuum and using hot isostatic pressing (HIP) at the same temperatures and isothermal holding times. The results show the influence of size distribution and sintering method on the structure, phase composition, mechanical properties and oxidation resistance of pre-sintered PIM samples. It is found that both the size distribution and sintering method affect the mechanical properties. The smaller the particle size of the powder in the material, the greater the resistance to oxidation of such samples.

There are no comments on this title.

to post a comment.
Share