The peculiarities of hydrogen embrittlement of Nb-alloyed stainless steel fabricated by electron-beam additive manufacturing

2020 ◽  
Author(s):  
Marina Yu. Panchenko ◽  
Galina G. Maier ◽  
Evgenii V. Melnikov ◽  
Valentina A. Moskvina ◽  
Kseniya A. Reunova ◽  
...  
2021 ◽  
Vol 225 ◽  
pp. 01011
Author(s):  
Marina Panchenko ◽  
Eugeny Melnikov ◽  
Valentina Moskvina ◽  
Sergey Astafurov ◽  
Galina Maier ◽  
...  

A comparative study of the mechanical properties, fracture mechanisms and hydrogen embrittlement peculiarities was carried out using the specimens of austenitic CrNi steel produced by two different methods: wire-feed electron beam additive manufacturing and conventional casting followed by solid-solution treatment. Hydrogen-induced reduction of ductility and the increase in the yield strength are observed in steel specimens produced by both methods. Despite hydrogen embrittlement index is comparable in them, the increase in the yield strength after hydrogen-charging is different: 25 MPa for cast steel and 175 MPa for additively manufactured steel. This difference is associated with the peculiarities of phase composition and phase distribution in steels produced by different methods.


Author(s):  
I. L. Pobol ◽  
A. A. Bakinovski ◽  
M. K. Stepankova ◽  
A. N. Burin ◽  
A. D. Gubko

The microstructure of samples of austenitic stainless steel and Al-Si alloy, obtained by the wire based additive method under various conditions was investigated. The effect of the beam current, the deposition intervals and the electron beam post-processing on the microstructure is shown.


2019 ◽  
Vol 799 ◽  
pp. 294-299 ◽  
Author(s):  
Marek Stanisław Węglowski ◽  
Sylwester Błacha ◽  
Robert Jachym ◽  
Jan Dutkiewicz ◽  
Łukasz Rogal ◽  
...  

Electron beam (EBAM) and laser beam (LBAM) additive manufacturing processes with a deposited material in the form of a wire are an efficient methods enabling the making of component parts. The scope of the presented work was to investigate the influence of technological process on microstructure and mechanical properties such as tensile strength, microhardness and elongation of the fabricated components. The achieved results and gained knowledge will enable the production of a whole structure from stainless steel in the future. The metallographic examination revealed that the microstructure is not fully homogenies, the cell-dendritic areas occurred. Moreover, the microhardness profiles indicated that some fluctuation in the microstructure as well as mechanical properties can be observed on the cross section of deposited components. However, the mechanical tests showed that the tensile strength as well as elongation fulfil the requirement of producer of deposited wire.


2016 ◽  
Vol 94 ◽  
pp. 17-27 ◽  
Author(s):  
Alejandro Hinojos ◽  
Jorge Mireles ◽  
Ashley Reichardt ◽  
Pedro Frigola ◽  
Peter Hosemann ◽  
...  

Metals ◽  
2021 ◽  
Vol 11 (8) ◽  
pp. 1151
Author(s):  
Kseniya Osipovich ◽  
Andrey Vorontsov ◽  
Andrey Chumaevskii ◽  
Denis Gurianov ◽  
Nikolai Shamarin ◽  
...  

The results of investigating the structure and properties of multilayered bimetallic “steel–copper” macrocomposite systems, obtained by wire-feed electron beam additive manufacturing, are presented in the paper. The features of boundary formation during 3D printing are revealed when changing the filaments of stainless steel and copper. Inhomogeneities in the distribution of steel and copper in the boundary zone were detected. Interphase interaction occurs both in the steel and copper parts of the structural boundary: Cu particles with an average size of 5 µm are formed in the iron matrix; Fe particles with an average size of 10 µm are formed in the copper matrix. It was revealed that such structural elements, as solid solutions of both copper and iron, are formed in the boundary zone, with additional mutual dissolution of alloying elements and mechanical mixtures of system components. The presence of the disc-shaped precipitations randomly located in the matrix was revealed in the structure of the “copper–steel” boundary by transmission electron microscopy; this is associated with rapid cooling of alloys and the subsequent thermal effect at lower temperatures during the application of subsequent layers. The existence of these disc-shaped precipitations of steel, arranged randomly in the Cu matrix, allows us to draw conclusions on the spinodal decomposition of alloying elements of steel. The characteristics of mechanical and micromechanical properties of a bimetallic multilayered composite with a complex formed structure lie in the range of characteristics inherent in additive steel and additive copper.


2020 ◽  
Vol 30 ◽  
pp. 216-223
Author(s):  
Anna Zykova ◽  
Sergei Nikonov ◽  
Veronika Utyaganova ◽  
Nikolai Shamarin ◽  
Alexei Ivanov ◽  
...  

2017 ◽  
Vol 486 ◽  
pp. 234-245 ◽  
Author(s):  
Yuan Zhong ◽  
Lars-Erik Rännar ◽  
Leifeng Liu ◽  
Andrey Koptyug ◽  
Stefan Wikman ◽  
...  

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