Visn. Nac. Akad. Nauk Ukr. 2016. (12): 39-47
https://doi.org/10.15407/visn2016.12.039

K.A. Gogaev
Frantsevich Institute for Problems of Materials Science of National Academy of Sciences of Ukraine, Kyiv

NEW APPROACHES IN THE POWDER METALLURGY TECHNOLOGY – A WAY TO UPGRADE THE QUALITY OF METAL PRODUCTS
According to the materials of scientific report at the meeting of the Presidium of NAS of Ukraine, October 26, 2016

The advantages of powder metallurgy methods are demonstrated by the example of the developed advanced technologies. The application of the technology for manufacturing cutting tools from high-speed steel powders provides an essential increase in the tool life compared to the tools of similar types produced by traditional technology. The using of the powder asymmetric rolling method results in improvement of the rolled products quality and decrease in the energy consumption. The utilization of the powder modifiers in production of farm implements from high-duty cast iron results in considerable increase in their durability.  

Keywords: powder high-speed steel, asymmetric rolling, strength, deformation, high-duty cast iron with globular graphite.

Language of article: ukrainian

 

REFERENCES

1. Gogaev K.A., Ulshin V.I. Powder metallurgy of tool steels. (Donetsk: Knowledge, 2012).  
2. Ul’shin V.I., Gogaev K.A., Ul’shin S.V. Effect of high-speed cooling on structure formation and mechanical properties of tool materials. Powder Metall. Met. Ceram. 2009. 48(9): 547.
https://doi.org/10.1007/s11106-010-9166-z
3. Ul’shin V.I., Gogaev K.A., Ul’shin S.V. Anisotropy of the mechanical properties of tool materials produced by jet forming. Journal of Mechanical Engineering the NTUU KPI. 2011. (62): 66.
4. Gogaev K.A., Sydorchuk O.M., Radchenko O.K. High-speed steel with low tungsten content produced by jet forming. Metal Science & Treatment of Metals. 2015. (1): 24.
5. Gogaev K.A., Kalutskii G.Ya., Voropaev V.S. Asymmetric rolling of metal powders. I. Powder compactibility under asymmetric rolling. Powder Metall. Met. Ceram. 2009. 48(3): 152.
https://doi.org/10.1007/s11106-009-9116-9
6. Gogaev K.A., Kalutskii G.Ya., Voropaev V.S. Asymmetric rolling of metal powders. II. Angular parameters in asymmetric rolling. Powder Metall. Met. Ceram. 2009. 48(5): 474.https://doi.org/10.1007/s11106-009-9135-6
7. Gogaev K.A., Kalutskii G.Ya., Voropaev V.S. Asymmetric rolling of metal powders. III. Advance in asymmetric rolling. Powder Metall. Met. Ceram. 2009. 48(7): 384.https://doi.org/10.1007/s11106-009-9153-4
8. Prikhodko I.Yu., Dedyk M.I., Gogaev K.A., Voropaev V.S., Itsenko A.I. Optimization of parameters of asymmetric rolling of titanium powder by the finite-element method. Powder Metall. Met. Ceram. 2016. 55(1): 12. https://doi.org/10.1007/s11106-016-9774-3
9. Gogaev K.A., Radchenko O.K. Powder system forming process. (Donetsk: Knowledge, 2011).
10. Gogaev K.A., Voloshchenko S.M., Podrezov Yu.N., Radchenko A.K., Radchenko L.A. Process approaches for producing complex composite inoculants by rolling of powder mixtures. I. Inoculant powder mixtures. composition, structure, and properties. Powder Metall. Met. Ceram. 2016. 55(5): 270.
https://doi.org/10.1007/s11106-016-9802-3
11. Gogaev K.A., Voloshchenko S.M. Features of heat treatment for the attached implements of agricultural equipment. In: The problems of service life and safety in exploitation of the constructions, buildings, and machines. Target-oriented complex program of NAS of Ukraine. (Kyiv, 2012). P. 464.
12. Gogaev K.A., Voloshchenko S.M. Bainite cast-iron for wearing replaceable components of soil-cultivating equipment. Visn. Nac. Acad. Nauk Ukr. 2015. (9): 64.