Thermo-Mechanical Treatment of Titanium Based Layered Structures Fabricated by Blended Elemental Powder Metallurgy

Author:

Prikhodko Sergey V.1,Markovsky Pavlo E.2,Savvakin Dmytro G.2,Stasiuk Oleksandr2,Ivasishin Orest M.2

Affiliation:

1. Univesity of California Los Anrgeles

2. G.V. Kurdyumov Institute for Metal Physics, National Academy of Sciences of Ukraine

Abstract

High specific strength of Ti-based alloys and composites makes them highly requested materials in various structural applications, especially when lightweight is desired in high-strength constructions. When these alloys are used in layered structures, far advanced set of characteristics that combine different mechanical properties often non-compatible in a single layer uniform structure can be attained; for instance, high hardness or moduli systems are usually lacking of sufficient toughness. Mechanical properties of individual layer in multilayered materials can be controlled by changing chemical composition and microstructure within each layer specifically. In present study layered materials were formed by combination of the layer of Ti-6Al-4V alloy and metal matrix composites on its base reinforced with fine TiB and TiC particles. Structures were fabricated using blended elemental powder metallurgy (BEPM). The effect of different post-sintering thermo-mechanical treatments on structure of layered BEPM materials was studied. Processing parameters were assessed in terms of their influence on materials’ porosity, grain size and structure, distribution of reinforcement particles and layers integration. The effect of above mentioned structural characteristics on hardness of layered materials was evaluated.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference6 articles.

1. G. Lutjering, J.C. Williams, Titanium, second ed., Springer-Verlag, Berlin, (2007).

2. T. Godfrey, P. Goodwin, C.M. Ward-Close, Titanium Particulate Metal Matrix Composites Reinforcement, Production Methods, and Mechanical Properties, Advanced Engineering Mater. 2, No. 3 (2000) 85-92.

3. M. Qian, Cold Compaction and Sintering of Titanium and Its Alloys for Near-Net-Shape or Preform Fabrication, Int. Journal of Powder Metallurgy, 46, No 5 (2010) 29-44.

4. D.G. Savvakin, S.V. Prikhodko, M.V. Matviychuk, O.M. Ivasishin, Fabrication of Layered Ti-6Al-4V Plates by Cold Isostatic Pressing Powder Metallurgy for Anti-Ballistic Protection Application, ITA-2017 Conference, 8-11 Oct 2017, Miami, USA.

5. F.H. Froes, D. Eylon, Powder metallurgy of titanium alloys, Inter. Mater. Rev., v.35, No. 3 (1990) 162-182.

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