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Tailorable Burning Behavior of Ti14 Alloy by Controlling Semi-Solid Forging Temperature

Semi-solid processing (SSP) is a popular near-net-shape forming technology for metals, while its application is still limited in titanium alloy mainly due to its low formability. Recent works showed that SSP could effectively enhance the formability and mechanical properties of titanium alloys. The...

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Autores principales: Chen, Yongnan, Yang, Wenqing, Zhan, Haifei, Zhang, Fengying, Huo, Yazhou, Zhao, Yongqing, Song, Xuding, Gu, Yuantong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5512519/
https://www.ncbi.nlm.nih.gov/pubmed/28773820
http://dx.doi.org/10.3390/ma9080697
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author Chen, Yongnan
Yang, Wenqing
Zhan, Haifei
Zhang, Fengying
Huo, Yazhou
Zhao, Yongqing
Song, Xuding
Gu, Yuantong
author_facet Chen, Yongnan
Yang, Wenqing
Zhan, Haifei
Zhang, Fengying
Huo, Yazhou
Zhao, Yongqing
Song, Xuding
Gu, Yuantong
author_sort Chen, Yongnan
collection PubMed
description Semi-solid processing (SSP) is a popular near-net-shape forming technology for metals, while its application is still limited in titanium alloy mainly due to its low formability. Recent works showed that SSP could effectively enhance the formability and mechanical properties of titanium alloys. The processing parameters such as temperature and forging rate/ratio, are directly correlated with the microstructure, which endow the alloy with different chemical and physical properties. Specifically, as a key structural material for the advanced aero-engine, the burn resistant performance is a crucial requirement for the burn resistant titanium alloy. Thus, this work aims to assess the burning behavior of Ti14, a kind of burn resistant alloy, as forged at different semi-solid forging temperatures. The burning characteristics of the alloy are analyzed by a series of burning tests with different burning durations, velocities, and microstructures of burned sample. The results showed that the burning process is highly dependent on the forging temperature, due to the fact that higher temperatures would result in more Ti(2)Cu precipitate within grain and along grain boundaries. Such a microstructure hinders the transport of oxygen in the stable burning stage through the formation of a kind of oxygen isolation Cu-enriched layer under the burn product zone. This work suggests that the burning resistance of the alloy can be effectively tuned by controlling the temperature during the semi-solid forging process.
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spelling pubmed-55125192017-07-28 Tailorable Burning Behavior of Ti14 Alloy by Controlling Semi-Solid Forging Temperature Chen, Yongnan Yang, Wenqing Zhan, Haifei Zhang, Fengying Huo, Yazhou Zhao, Yongqing Song, Xuding Gu, Yuantong Materials (Basel) Article Semi-solid processing (SSP) is a popular near-net-shape forming technology for metals, while its application is still limited in titanium alloy mainly due to its low formability. Recent works showed that SSP could effectively enhance the formability and mechanical properties of titanium alloys. The processing parameters such as temperature and forging rate/ratio, are directly correlated with the microstructure, which endow the alloy with different chemical and physical properties. Specifically, as a key structural material for the advanced aero-engine, the burn resistant performance is a crucial requirement for the burn resistant titanium alloy. Thus, this work aims to assess the burning behavior of Ti14, a kind of burn resistant alloy, as forged at different semi-solid forging temperatures. The burning characteristics of the alloy are analyzed by a series of burning tests with different burning durations, velocities, and microstructures of burned sample. The results showed that the burning process is highly dependent on the forging temperature, due to the fact that higher temperatures would result in more Ti(2)Cu precipitate within grain and along grain boundaries. Such a microstructure hinders the transport of oxygen in the stable burning stage through the formation of a kind of oxygen isolation Cu-enriched layer under the burn product zone. This work suggests that the burning resistance of the alloy can be effectively tuned by controlling the temperature during the semi-solid forging process. MDPI 2016-08-16 /pmc/articles/PMC5512519/ /pubmed/28773820 http://dx.doi.org/10.3390/ma9080697 Text en © 2016 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
Chen, Yongnan
Yang, Wenqing
Zhan, Haifei
Zhang, Fengying
Huo, Yazhou
Zhao, Yongqing
Song, Xuding
Gu, Yuantong
Tailorable Burning Behavior of Ti14 Alloy by Controlling Semi-Solid Forging Temperature
title Tailorable Burning Behavior of Ti14 Alloy by Controlling Semi-Solid Forging Temperature
title_full Tailorable Burning Behavior of Ti14 Alloy by Controlling Semi-Solid Forging Temperature
title_fullStr Tailorable Burning Behavior of Ti14 Alloy by Controlling Semi-Solid Forging Temperature
title_full_unstemmed Tailorable Burning Behavior of Ti14 Alloy by Controlling Semi-Solid Forging Temperature
title_short Tailorable Burning Behavior of Ti14 Alloy by Controlling Semi-Solid Forging Temperature
title_sort tailorable burning behavior of ti14 alloy by controlling semi-solid forging temperature
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5512519/
https://www.ncbi.nlm.nih.gov/pubmed/28773820
http://dx.doi.org/10.3390/ma9080697
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