Showing posts with label Spark-plasma sintering. Show all posts
Showing posts with label Spark-plasma sintering. Show all posts

Monday, 13 June 2022

Possible Nature of Electrical Conductivity of the Corund-Graphene Composite: A Recent Study | Chapter 11 | Research Developments in Science and Technology Vol. 7

 The study looks at how sintering modes affect the electrical conductivity of corundum-graphene composites. The characteristics of the electrically conductive structure and its production circumstances are supported by evidence. The goal of this study is to learn more about the nature of conducting structure creation after receiving a corundum-graphene composite and to support the necessity to continue previous research in this area.


Author(s) Details:

A. G. Zholnin,
The State University of Land Use Planning SULUP, Kazakova str., 105064, Moscow, Russia.

R. S. Hafizov,
The State University of Land Use Planning SULUP, Kazakova str., 105064, Moscow, Russia.

Please see the link here: https://stm.bookpi.org/RDST-V7/article/view/7103

Sunday, 7 November 2021

Study on Current State of the Technology of Obtaining and Research of Properties of the Corundum-Graphene Composite | Chapter 8 | Research Trends and Challenges in Physical Science Vol. 2

 The goal of this project is to review papers on a small group of composites, corundum graphene in particular. This composite has been the subject of a lot of research in order to make generalisations and find trends.


Author(S) Details

A. G. Zholnin
General Physics Department of The State University of Land Use Planning in Moscow, Russia.

R. S. Hafizov
The State University of Land Use Planning, SULUP, Kazakova str., 105064, Moscow, Russia.

View Book:- https://stm.bookpi.org/RTCPS-V2/article/view/4494

Thursday, 2 September 2021

Influence of Technology of Nanopowder Production on the Microstructure of the Sintered by Spark-Plasma Material | Chapter 11 | Recent Trends in Chemical and Material Sciences Vol. 1

A comparison of the Spark-Plasma Sintering (SPS) results of two types of aluminium oxide nanopowders generated through conductor explosion and plasma synthesis. The qualities of the resulting compacts are notably different in mechanical properties and microstructure when the parameters of both powders are similar (spherical form of the particles, size, phase composition), as well as SPS modes. Technological impurities in powders obtained by different procedures are the cause of discrepancies in the qualities of the resultant compacts. Impurities contained in nanopowder created by electro explosion of conductor were artificially added to powder made by plasma synthesis and not containing these impurities, revealing their effect on the creation of the microstructure and characteristics of the sintered by SPS method sample.

Author (s) Details

Dr. A. G. Zholnin
National Research Nuclear University "MEPhI", 115409 Moscow, Kashirskoye Highway, 31, Russia.

Dr. A. P. Melekhov
National Research Nuclear University "MEPhI", 115409 Moscow, Kashirskoye Highway, 31, Russia.

Dr. R. S. Hafizov
State University of Land Management, 105064 Moscow, Kazakova Street 15, Russia.

S. A. Vakulenko
National Research Nuclear University 'MEPhI', 115409 Moscow, Kashirskoye Highway, 31, Russia.

N. A. Rubinkovskiy
National Research Nuclear University 'MEPhI', 115409 Moscow, Kashirskoye Highway, 31, Russia.

A. V. Samokhin
Federal State Institution of Science Institute of Metallurgy and Materials Science of A.A. Baikov of Academy of Sciences (RAS IMET), Russia.

N. V. Alekseev
Federal State Institution of Science Institute of Metallurgy and Materials Science of A.A. Baikov of Academy of Sciences (RAS IMET), Russia.

E. G. Grigoryev
National Research Nuclear University 'MEPhI', 115409 Moscow, Kashirskoye Highway, 31, Russia.

View Book :- https://stm.bookpi.org/RTCAMS-V1/article/view/2188