metallurgy steel
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Metals ◽  
2021 ◽  
Vol 11 (4) ◽  
pp. 665
Author(s):  
Federico Simone Gobber ◽  
Jana Bidulská ◽  
Alessandro Fais ◽  
Róbert Bidulský ◽  
Marco Actis Grande

In this study, the efficacy of an innovative ultra-fast sintering technique called electro-sinter-forging (ESF) was evaluated in the densification of Fe-Cr-C steel. Although ESF proved to be effective in densifying several different metallic materials and composites, it has not yet been applied to powder metallurgy Fe-Cr-C steels. Pre-alloyed Astaloy CrM powders have been ad-mixed with either graphite or graphene and then processed by ESF. By properly tuning the process parameters, final densities higher than 99% were obtained. Mechanical properties such as hardness and transverse rupture strength (TRS) were tested on samples produced by employing different process parameters and then submitted to different post-treatments (machining, heat treatment). A final transverse rupture strength up to 1340 ± 147 MPa was achieved after heat treatment, corresponding to a hardness of 852 ± 41 HV. The experimental characterization highlighted that porosity is the main factor affecting the samples’ mechanical resistance, correlating linearly with the transverse rupture strength. Conversely, it is not possible to establish a similar interdependency between hardness and mechanical resistance, since porosity has a higher effect on the final properties.


2020 ◽  
Vol 63 (10) ◽  
pp. 796-801
Author(s):  
L. I. Leont’ev ◽  
V. V. Tsukanov ◽  
D. L. Smirnova

The paper contains informational material about the essence of the discoveries made by D.K. Chernov in the field of metal science, theory and practice of heat treatment, new types of tests and investigations. D.K. Chernov was a real pioneer of extremely important phenomena in the field of phase and structural transformations, casting structure, and study of strength of steel products. Significance of his discoveries, undoubtedly, puts D.K. Chernov’s name on the first place in a row of world scientists – metallurgists and metal scientists. Later his discoveries allowed one to develop the science of metals and its subdisciplines – metallurgy, steel deformability, theory of phase and structural transformations, tests and research of metals, theory and technology of heat treatment.


2019 ◽  
Vol 59 (2) ◽  
pp. 312-318 ◽  
Author(s):  
Hao-Nan Lou ◽  
Chao Wang ◽  
Bing-Xing Wang ◽  
Zhao-Dong Wang ◽  
Raja Devesh Kumar Misra
Keyword(s):  

Metals ◽  
2018 ◽  
Vol 8 (7) ◽  
pp. 534 ◽  
Author(s):  
Hao-Nan Lou ◽  
Chao Wang ◽  
Bing-Xing Wang ◽  
Zhao-Dong Wang ◽  
Yu-Qian Li ◽  
...  

2017 ◽  
Vol 17 (2) ◽  
pp. 72-81
Author(s):  
M. Vattur Sundaram ◽  
R. Shvab ◽  
S. Millot ◽  
E. Hryha ◽  
L. Nyborg

Abstract In order to be cost effective and to meet increasing performance demands, powder metallurgy steel components require continuous improvement in terms of materials and process development. This study demonstrates the feasibility of manufacturing structural components using two different alloys systems, i.e. lean Cr-prealloyed and diffusion bonded water atomised powders with different processing conditions. The components were sintered at two different temperatures, i.e. 1120 and 1250 °C for 30 minutes in three different atmospheres: vacuum, N2- 10%H2 atmosphere as well as lean N2-5%H2-0.5%CO-(0.1-0.4)%CH4 sintering atmosphere. Components after sintering were further processed by either low pressure carburizing, sinterhardening or case hardening. All trials were performed in the industrial furnaces to simulate the actual production of the components. Microstructure, fractography, apparent and micro hardness analyses were performed close to the surface and in the middle of the sample to characterize the degree of sintering (temperature and atmosphere) and the effect of heat treatment. In all cases, components possess mostly martensitic microstructure with a few bainitic regions. The fracture surface shows well developed sinter necks. Inter- and trans-granular ductile and cleavage fracture modes are dominant and their fraction is determined by the alloy and processing route.


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