Foreign Object Damage Performance and Constitutive Modeling of Titanium Alloy Blade

Foreign object damage (FOD) to fan blades has been identified as one of the main factors affecting the safety of aeroengine operation. Numerical simulations are an important means of studying FOD, but the selection of the material’s parameters in modeling is a key problem. In this work, a FOD test w...

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Main Authors: Yu Xu, Li Cheng, Chang Shu, Xuan Chen, Peiyuan Li
Format: Article
Language:English
Published: Wiley 2020-01-01
Series:International Journal of Aerospace Engineering
Online Access:http://dx.doi.org/10.1155/2020/2739131
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author Yu Xu
Li Cheng
Chang Shu
Xuan Chen
Peiyuan Li
author_facet Yu Xu
Li Cheng
Chang Shu
Xuan Chen
Peiyuan Li
author_sort Yu Xu
collection DOAJ
description Foreign object damage (FOD) to fan blades has been identified as one of the main factors affecting the safety of aeroengine operation. Numerical simulations are an important means of studying FOD, but the selection of the material’s parameters in modeling is a key problem. In this work, a FOD test was carried out with titanium alloy blades as the sample, and the damage types suffered by the blades subjected to impacts from foreign objects under different conditions are obtained. A blade material test was carried out to obtain its parameters in terms of the Johnson-Cook material model, and finite element models of the impacting foreign objects are constructed. When comparing the test results with the simulated results, excellent correlation between them is found.
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institution OA Journals
issn 1687-5966
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language English
publishDate 2020-01-01
publisher Wiley
record_format Article
series International Journal of Aerospace Engineering
spelling doaj-art-9b1fdba57226439d81e4cbd4b4bd1f412025-08-20T02:20:25ZengWileyInternational Journal of Aerospace Engineering1687-59661687-59742020-01-01202010.1155/2020/27391312739131Foreign Object Damage Performance and Constitutive Modeling of Titanium Alloy BladeYu Xu0Li Cheng1Chang Shu2Xuan Chen3Peiyuan Li4Air Force Engineering University, No. 1 Changle East Road, Baqiao District, Xi’an City, Shaanxi Province, ChinaAir Force Engineering University, No. 1 Changle East Road, Baqiao District, Xi’an City, Shaanxi Province, ChinaAir Force Engineering University, No. 1 Changle East Road, Baqiao District, Xi’an City, Shaanxi Province, ChinaAir Force Engineering University, No. 1 Changle East Road, Baqiao District, Xi’an City, Shaanxi Province, ChinaAir Force Engineering University, No. 1 Changle East Road, Baqiao District, Xi’an City, Shaanxi Province, ChinaForeign object damage (FOD) to fan blades has been identified as one of the main factors affecting the safety of aeroengine operation. Numerical simulations are an important means of studying FOD, but the selection of the material’s parameters in modeling is a key problem. In this work, a FOD test was carried out with titanium alloy blades as the sample, and the damage types suffered by the blades subjected to impacts from foreign objects under different conditions are obtained. A blade material test was carried out to obtain its parameters in terms of the Johnson-Cook material model, and finite element models of the impacting foreign objects are constructed. When comparing the test results with the simulated results, excellent correlation between them is found.http://dx.doi.org/10.1155/2020/2739131
spellingShingle Yu Xu
Li Cheng
Chang Shu
Xuan Chen
Peiyuan Li
Foreign Object Damage Performance and Constitutive Modeling of Titanium Alloy Blade
International Journal of Aerospace Engineering
title Foreign Object Damage Performance and Constitutive Modeling of Titanium Alloy Blade
title_full Foreign Object Damage Performance and Constitutive Modeling of Titanium Alloy Blade
title_fullStr Foreign Object Damage Performance and Constitutive Modeling of Titanium Alloy Blade
title_full_unstemmed Foreign Object Damage Performance and Constitutive Modeling of Titanium Alloy Blade
title_short Foreign Object Damage Performance and Constitutive Modeling of Titanium Alloy Blade
title_sort foreign object damage performance and constitutive modeling of titanium alloy blade
url http://dx.doi.org/10.1155/2020/2739131
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AT xuanchen foreignobjectdamageperformanceandconstitutivemodelingoftitaniumalloyblade
AT peiyuanli foreignobjectdamageperformanceandconstitutivemodelingoftitaniumalloyblade