Alternative Strengthening of Jewelry Tools Using Chemical-Thermal and Local Surface Treatments

Author:

Volkov Oleg1,Knyazev Sergey1,Vasilchenko Alexey2,Doronin Evgen3

Affiliation:

1. National Technical University «Kharkiv Polytechnic Institute»

2. National University of Civil Defence of Ukraine

3. Simon Kuznets Kharkiv National University of Economics

Abstract

The study is aimed at surface strengthening of jewelry tools. Samples in the form of a tool with a flat and curved surface profile are considered. Macrophotographs of jewelry korneisen at different stages of wear, as well as after restoration and strengthening are given. The results of the influence of chemical-thermal and thermo-friction treatments on the structure and properties of U7 and U8A steels used for jewelry tools are presented. The methodology of experimental researches is given. The equipment used for each of the hardening methods investigated in this work is considered. Auxiliary media and features of sample preparation for the experiment are also described. Photos of samples and some equipment at different stages of the study are given. Data on the distribution of microhardness, photographs of microstructures in cross section of samples after different types of hardening are presented. A comparison of the strengthening efficiency of the samples after the use of different processing methods is performed.

Publisher

Trans Tech Publications, Ltd.

Subject

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

Reference9 articles.

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2. R. Joseph, Surface Hardening of Steels: Understanding the Basics. Publisher: ASM International. (2002) 364.

3. M. Kulka, Current Trends in Boriding, Techniques. Springer, Cham. (2019) 282.

4. H. Masumoto, A. Asada, H. Hasuyama, K. Nishio, M. Kato, S. Mukae, Diffusion bonding of tantalum and stainless, Welding International. 11 (2) (1997). 110–120.

5. S. Yunus, S. Alias, F. Wong, A. Rashid & N. Abdullah, Effect of boronizing medium on dispersion layer of austenitic stainless steel, ARPN Journal of Engineeringand Applied Sciences. 10(17) (2015) 7821–7824.

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