Zobrazeno 1 - 10
of 39
pro vyhledávání: '"Agata Strojny-Nędza"'
Autor:
Agata Strojny-Nędza, Katarzyna Pietrzak, Iwona Jóźwik, Bartosz Bucholc, Edyta Wyszkowska, Łukasz Kurpaska, Agnieszka Grabias, Agnieszka Malinowska, Marcin Chmielewski
Publikováno v:
Materials, Vol 17, Iss 8, p 1743 (2024)
Oxide Dispersion Strengthened (ODS) ferritic steels are promising materials for the nuclear power sector. This paper presents the results of a study on the sintering process using the Spark Plasma Sintering (SPS) technique, focusing on ODS ferritic s
Externí odkaz:
https://doaj.org/article/eb4053bc071a475f83e1bdf4390c97b9
Publikováno v:
Image Analysis and Stereology, Vol 40, Iss 1, Pp 39-47 (2021)
Tomography allows embedding of one space in another, especially ℛ2 → ℛ3, and observation of the nature of the volumetric internal composite structure. Now, not only a simple interpretation is expected of geometry defined via single thresholds o
Externí odkaz:
https://doaj.org/article/6a3df1f3f55e4728b50f38ed14232c4c
Autor:
Marcin Chmielewski, Rafał Zybała, Agata Strojny-Nędza, Anna Piątkowska, Artur Dobrowolski, Jakub Jagiełło, Ryszard Diduszko, Piotr Bazarnik, Szymon Nosewicz
Publikováno v:
Metallurgical and Materials Transactions A. 54:2191-2207
The presented paper concerns the technological aspects of the interface evolution in the nickel-silicon carbide composite during the sintering process. The goal of our investigation was to analyse the material changes occurring due to the violent rea
Autor:
Krystian Kowiorski, Marcin Heljak, Agata Strojny-Nędza, Bartosz Bucholc, Marcin Chmielewski, Małgorzata Djas, Kamil Kaszyca, Rafał Zybała, Marcin Małek, Wojciech Swieszkowski, Adrian Chlanda
Publikováno v:
Carbon. 206:26-36
Autor:
Kamil Bochenek, Witold Węglewski, Agata Strojny-Nędza, Katarzyna Pietrzak, Tomasz Chmielewski, Marcin Chmielewski, Michał Basista
Publikováno v:
Journal of Thermal Spray Technology. 31:1609-1633
Autor:
Katarzyna Pietrzak, Agata Strojny-Nędza, Kamil Kaszyca, Ivan Shepa, Erika Mudra, Marek Vojtko, Jan Dusza, Vitaliy Antal, Jana Hovancova, Marcin Chmielewski
Publikováno v:
Metals, Vol 10, Iss 8, p 1009 (2020)
The thermal and oxidation resistance of elements found in the combustion boilers of power generation plants are some of the most important factors deciding their effectiveness. This paper shows the experimental results of the influence of NiCr-based
Externí odkaz:
https://doaj.org/article/b042941cbc584c149c91b0d199a52cfb
Publikováno v:
Image Analysis and Stereology, Vol 40, Iss 1, Pp 39-47 (2021)
Tomography allows embedding of one space in another, especially ℛ2 → ℛ3, and observation of the nature of the volumetric internal composite structure. Now, not only a simple interpretation is expected of geometry defined via single thresholds o
Autor:
Krystian Kowiorski, Adrian Chlanda, Marcin Heljak, Małgorzata Djas, Bartosz Bucholc, Kamil Kaszyca, Agata Strojny-Nędza, Rafał Zybała, Marcin Małek, Wojciech Święszkowski, Marcin Chmielewski
Publikováno v:
SSRN Electronic Journal.
Autor:
Agata Strojny-Nędza, Karl Ulrich Kainer, Anna Dmitruk, Krzysztof Naplocha, Andrzej Żak, Hajo Dieringa
Publikováno v:
Dmitruk, A.; Naplocha, K.; Zak, A.; Strojny-Nedza, A.; Dieringa, H.; Kainer, K.U.: Development of Pore-Free Ti-Si-C MAX/Al-Si Composite Materials Manufactured by Squeeze Casting Infiltration. In: Journal of Materials Engineering and Performance. Vol. 28 (2019) 10, 6248-6257. (DOI: /10.1007/s11665-019-04390-8)
Open-porous MAX phase skeletons from Ti3SiC2 were manufactured by Microwave-Assisted Self-propagating High-temperature Synthesis (MASHS) and subsequently subjected to squeeze casting infiltration with an Al-Si lightweight casting alloy (EN AC-44200).
Autor:
Edyta Wyszkowska, Łukasz Kurpaska, Katarzyna Pietrzak, Szymon Nosewicz, Marcin Chmielewski, A. Piątkowska, Piotr Bazarnik, Agata Strojny-Nędza
Publikováno v:
Ceramics International. 45:9164-9173
The study presents a detailed analysis of the impact of the coating type of silicon carbide particles and its share by volume on the microstructure and micromechanical properties of Cu-SiC composites. In order to protect the carbide from decompositio