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Crystallization Products and Structural Characterization of CaO-SiO(2)-Based Mold Fluxes with Varying Al(2)O(3)/SiO(2) Ratios

During the casting of high aluminum steel, the dramatic increase in the Al(2)O(3)/SiO(2) ratio is inevitable, resulting in significant changes of the crystallization behavior, which would result in heat transfer and lubrication problems. Crystallization products and structure characterization of gla...

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Autores principales: Gao, Yuxiang, Leng, Mei, Chen, Yangfan, Chen, Zhichao, Li, Jiangling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6356824/
https://www.ncbi.nlm.nih.gov/pubmed/30634464
http://dx.doi.org/10.3390/ma12020206
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author Gao, Yuxiang
Leng, Mei
Chen, Yangfan
Chen, Zhichao
Li, Jiangling
author_facet Gao, Yuxiang
Leng, Mei
Chen, Yangfan
Chen, Zhichao
Li, Jiangling
author_sort Gao, Yuxiang
collection PubMed
description During the casting of high aluminum steel, the dramatic increase in the Al(2)O(3)/SiO(2) ratio is inevitable, resulting in significant changes of the crystallization behavior, which would result in heat transfer and lubrication problems. Crystallization products and structure characterization of glassy CaO-SiO(2)-based mold fluxes with different Al(2)O(3)/SiO(2) ratios were experimentally investigated using a differential scanning calorimetry technique and Raman spectroscopy. With increasing Al(2)O(3)/SiO(2) ratios, the following results were obtained. The crystallization temperature and the crystallization products are changed. With increasing Al(2)O(3)/SiO(2) ratios from 0.088 to 0.151, the crystallization temperature first increases greatly from 1152 °C to 1354 °C, and then moderately increases. The crystallization ability of the mold flux is strengthened. The species of the precipitated crystalline phase change from two kinds, i.e., Ca(4)Si(2)O(7)F(2) and Ca(2)SiO(4), to four kinds, i.e., Ca(4)Si(2)O(7)F(2), Ca(2)SiO(4), 2CaO·Al(2)O(3)·SiO(2) and Ca(12)Al(14)O(32)F(2), the crystallization ability of Ca(4)Si(2)O(7)F(2) is gradually attenuated, but other species show the opposite trend. The results of Raman spectroscopy indicate that Al(3+) mainly acts as a network former by the information of [AlO(4)]-tetrahedral structural units, which can connect with [SiO(4)]-tetrahedral by the formation of new bridge oxygen of Al–O–Si linkage, but there is no formation of Al–O–Al linkage. The linkage of Al–O–Si increases and that of Si–O–Si decreases. The polymerization degree of the network and the average number of bridging oxygens decrease. Further, the relatively strong Si–O–Si linkage gradually decreases and the relatively weak Al–O–Si gradually increases. The change of the crystalline phase was interpreted from the phase diagram and structure.
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spelling pubmed-63568242019-02-04 Crystallization Products and Structural Characterization of CaO-SiO(2)-Based Mold Fluxes with Varying Al(2)O(3)/SiO(2) Ratios Gao, Yuxiang Leng, Mei Chen, Yangfan Chen, Zhichao Li, Jiangling Materials (Basel) Article During the casting of high aluminum steel, the dramatic increase in the Al(2)O(3)/SiO(2) ratio is inevitable, resulting in significant changes of the crystallization behavior, which would result in heat transfer and lubrication problems. Crystallization products and structure characterization of glassy CaO-SiO(2)-based mold fluxes with different Al(2)O(3)/SiO(2) ratios were experimentally investigated using a differential scanning calorimetry technique and Raman spectroscopy. With increasing Al(2)O(3)/SiO(2) ratios, the following results were obtained. The crystallization temperature and the crystallization products are changed. With increasing Al(2)O(3)/SiO(2) ratios from 0.088 to 0.151, the crystallization temperature first increases greatly from 1152 °C to 1354 °C, and then moderately increases. The crystallization ability of the mold flux is strengthened. The species of the precipitated crystalline phase change from two kinds, i.e., Ca(4)Si(2)O(7)F(2) and Ca(2)SiO(4), to four kinds, i.e., Ca(4)Si(2)O(7)F(2), Ca(2)SiO(4), 2CaO·Al(2)O(3)·SiO(2) and Ca(12)Al(14)O(32)F(2), the crystallization ability of Ca(4)Si(2)O(7)F(2) is gradually attenuated, but other species show the opposite trend. The results of Raman spectroscopy indicate that Al(3+) mainly acts as a network former by the information of [AlO(4)]-tetrahedral structural units, which can connect with [SiO(4)]-tetrahedral by the formation of new bridge oxygen of Al–O–Si linkage, but there is no formation of Al–O–Al linkage. The linkage of Al–O–Si increases and that of Si–O–Si decreases. The polymerization degree of the network and the average number of bridging oxygens decrease. Further, the relatively strong Si–O–Si linkage gradually decreases and the relatively weak Al–O–Si gradually increases. The change of the crystalline phase was interpreted from the phase diagram and structure. MDPI 2019-01-09 /pmc/articles/PMC6356824/ /pubmed/30634464 http://dx.doi.org/10.3390/ma12020206 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gao, Yuxiang
Leng, Mei
Chen, Yangfan
Chen, Zhichao
Li, Jiangling
Crystallization Products and Structural Characterization of CaO-SiO(2)-Based Mold Fluxes with Varying Al(2)O(3)/SiO(2) Ratios
title Crystallization Products and Structural Characterization of CaO-SiO(2)-Based Mold Fluxes with Varying Al(2)O(3)/SiO(2) Ratios
title_full Crystallization Products and Structural Characterization of CaO-SiO(2)-Based Mold Fluxes with Varying Al(2)O(3)/SiO(2) Ratios
title_fullStr Crystallization Products and Structural Characterization of CaO-SiO(2)-Based Mold Fluxes with Varying Al(2)O(3)/SiO(2) Ratios
title_full_unstemmed Crystallization Products and Structural Characterization of CaO-SiO(2)-Based Mold Fluxes with Varying Al(2)O(3)/SiO(2) Ratios
title_short Crystallization Products and Structural Characterization of CaO-SiO(2)-Based Mold Fluxes with Varying Al(2)O(3)/SiO(2) Ratios
title_sort crystallization products and structural characterization of cao-sio(2)-based mold fluxes with varying al(2)o(3)/sio(2) ratios
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6356824/
https://www.ncbi.nlm.nih.gov/pubmed/30634464
http://dx.doi.org/10.3390/ma12020206
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