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Ultrashort Sintering and Near Net Shaping of Zr-Based AMZ4 Bulk Metallic Glass

The GeniCore Upgraded Field Assisted Sintering Technology U-FAST was applied to the sintering of a commercial Zr-based bulk metallic glass powder AMZ4. The XRD, SEM and DSC analysis of the sintered compacts showed the benefit of the U-FAST method as an enabler for the production of fully amorphous s...

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Autores principales: Żrodowski, Łukasz, Wróblewski, Rafał, Choma, Tomasz, Rygier, Tomasz, Rosiński, Marcin, Morończyk, Bartosz, Kasonde, Maweja, Leonowicz, Marcin, Jaroszewicz, Jakub, Ostrysz, Mateusz, Łacisz, Wojciech, Błyskun, Piotr, Pomian, Karolina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8510460/
https://www.ncbi.nlm.nih.gov/pubmed/34640260
http://dx.doi.org/10.3390/ma14195862
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author Żrodowski, Łukasz
Wróblewski, Rafał
Choma, Tomasz
Rygier, Tomasz
Rosiński, Marcin
Morończyk, Bartosz
Kasonde, Maweja
Leonowicz, Marcin
Jaroszewicz, Jakub
Ostrysz, Mateusz
Łacisz, Wojciech
Błyskun, Piotr
Pomian, Karolina
author_facet Żrodowski, Łukasz
Wróblewski, Rafał
Choma, Tomasz
Rygier, Tomasz
Rosiński, Marcin
Morończyk, Bartosz
Kasonde, Maweja
Leonowicz, Marcin
Jaroszewicz, Jakub
Ostrysz, Mateusz
Łacisz, Wojciech
Błyskun, Piotr
Pomian, Karolina
author_sort Żrodowski, Łukasz
collection PubMed
description The GeniCore Upgraded Field Assisted Sintering Technology U-FAST was applied to the sintering of a commercial Zr-based bulk metallic glass powder AMZ4. The XRD, SEM and DSC analysis of the sintered compacts showed the benefit of the U-FAST method as an enabler for the production of fully amorphous samples with 100% relative density when sintering at 420 °C/480 s (693 K/480 s) and 440 °C/ 60 s (713 K/480 s). The hardness values for fully amorphous samples, over HV1 519, surpass cast materials and 1625 MPa compressive strengths are comparable to commercial cast products. The advantage of the U-FAST technology in this work is attributed to the high heating and cooling rates inherent to ultra-short pulses, which allow to maintain metastable structures and achieve better temperature control during the process. Increasing sintering temperature and time led to the crystallization of the materials. The geometry and material of the dies and punch determine the thermal inertia and pressure distribution inside the compacts, thus affecting the properties of the near net shape NNS compacts made using the U-FAST device.
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spelling pubmed-85104602021-10-13 Ultrashort Sintering and Near Net Shaping of Zr-Based AMZ4 Bulk Metallic Glass Żrodowski, Łukasz Wróblewski, Rafał Choma, Tomasz Rygier, Tomasz Rosiński, Marcin Morończyk, Bartosz Kasonde, Maweja Leonowicz, Marcin Jaroszewicz, Jakub Ostrysz, Mateusz Łacisz, Wojciech Błyskun, Piotr Pomian, Karolina Materials (Basel) Article The GeniCore Upgraded Field Assisted Sintering Technology U-FAST was applied to the sintering of a commercial Zr-based bulk metallic glass powder AMZ4. The XRD, SEM and DSC analysis of the sintered compacts showed the benefit of the U-FAST method as an enabler for the production of fully amorphous samples with 100% relative density when sintering at 420 °C/480 s (693 K/480 s) and 440 °C/ 60 s (713 K/480 s). The hardness values for fully amorphous samples, over HV1 519, surpass cast materials and 1625 MPa compressive strengths are comparable to commercial cast products. The advantage of the U-FAST technology in this work is attributed to the high heating and cooling rates inherent to ultra-short pulses, which allow to maintain metastable structures and achieve better temperature control during the process. Increasing sintering temperature and time led to the crystallization of the materials. The geometry and material of the dies and punch determine the thermal inertia and pressure distribution inside the compacts, thus affecting the properties of the near net shape NNS compacts made using the U-FAST device. MDPI 2021-10-07 /pmc/articles/PMC8510460/ /pubmed/34640260 http://dx.doi.org/10.3390/ma14195862 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Żrodowski, Łukasz
Wróblewski, Rafał
Choma, Tomasz
Rygier, Tomasz
Rosiński, Marcin
Morończyk, Bartosz
Kasonde, Maweja
Leonowicz, Marcin
Jaroszewicz, Jakub
Ostrysz, Mateusz
Łacisz, Wojciech
Błyskun, Piotr
Pomian, Karolina
Ultrashort Sintering and Near Net Shaping of Zr-Based AMZ4 Bulk Metallic Glass
title Ultrashort Sintering and Near Net Shaping of Zr-Based AMZ4 Bulk Metallic Glass
title_full Ultrashort Sintering and Near Net Shaping of Zr-Based AMZ4 Bulk Metallic Glass
title_fullStr Ultrashort Sintering and Near Net Shaping of Zr-Based AMZ4 Bulk Metallic Glass
title_full_unstemmed Ultrashort Sintering and Near Net Shaping of Zr-Based AMZ4 Bulk Metallic Glass
title_short Ultrashort Sintering and Near Net Shaping of Zr-Based AMZ4 Bulk Metallic Glass
title_sort ultrashort sintering and near net shaping of zr-based amz4 bulk metallic glass
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8510460/
https://www.ncbi.nlm.nih.gov/pubmed/34640260
http://dx.doi.org/10.3390/ma14195862
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