Modeling of additive height and numerical analysis of cooling parameters for aero blade remanufacturing

<p>Additive remanufacturing height and matching cooling parameters are the key factors affecting blade repair quality. First, the mathematical model of the single additive remanufacturing repair height and wire-feeding speed was established, the solution method was proposed and the numerical s...

Full description

Bibliographic Details
Main Authors: M. Gong, S. Dai, T. Wang, L. Wang
Format: Article
Language:English
Published: Copernicus Publications 2021-08-01
Series:Mechanical Sciences
Online Access:https://ms.copernicus.org/articles/12/803/2021/ms-12-803-2021.pdf
id doaj-a6f8e6b07f4c4870ad9d0a544df42b73
record_format Article
spelling doaj-a6f8e6b07f4c4870ad9d0a544df42b732021-08-24T07:45:08ZengCopernicus PublicationsMechanical Sciences2191-91512191-916X2021-08-011280381810.5194/ms-12-803-2021Modeling of additive height and numerical analysis of cooling parameters for aero blade remanufacturingM. Gong0M. Gong1S. Dai2T. Wang3L. Wang4School of Mechanical Engineering, Hebei University of Technology, Tianjin 300041, ChinaInstitute of Aviation Engineering, Civil Aviation University of China, Tianjin 300300, ChinaSchool of Mechanical Engineering, Hebei University of Technology, Tianjin 300041, ChinaInstitute of Aviation Engineering, Civil Aviation University of China, Tianjin 300300, ChinaInstitute of Aviation Engineering, Civil Aviation University of China, Tianjin 300300, China<p>Additive remanufacturing height and matching cooling parameters are the key factors affecting blade repair quality. First, the mathematical model of the single additive remanufacturing repair height and wire-feeding speed was established, the solution method was proposed and the numerical solution was obtained, and the validity of the model was verified by experiments. Then, based on the calculation results of a single additive remanufacturing repair, the geometric morphology of the cross section under double additive remanufacturing repair was analyzed, and the mathematical model was established. Second, based on the optimal parameters obtained by numerical analysis and the mathematical model, the fluid structure coupling heat transfer model of “blade fixture” for base channel cooling was established. The cooling effect of the typical section under different initial temperatures and different flow rates was calculated, and the coupled heat transfer in the process of blade remanufacturing was explained by the mechanism. Third, through the comparative analysis of the cooling effect, optimal cooling parameters of double additive remanufacturing repair were obtained, and the model of coupled heat flow was verified by experiment. The results showed that the mathematical model of additive remanufacturing height is effective for studying the thermal cycle and cooling effect of welding, and the cooling parameters obtained by numerical analysis can effectively guarantee the quality of double additive remanufacturing of blade repair.</p>https://ms.copernicus.org/articles/12/803/2021/ms-12-803-2021.pdf
collection DOAJ
language English
format Article
sources DOAJ
author M. Gong
M. Gong
S. Dai
T. Wang
L. Wang
spellingShingle M. Gong
M. Gong
S. Dai
T. Wang
L. Wang
Modeling of additive height and numerical analysis of cooling parameters for aero blade remanufacturing
Mechanical Sciences
author_facet M. Gong
M. Gong
S. Dai
T. Wang
L. Wang
author_sort M. Gong
title Modeling of additive height and numerical analysis of cooling parameters for aero blade remanufacturing
title_short Modeling of additive height and numerical analysis of cooling parameters for aero blade remanufacturing
title_full Modeling of additive height and numerical analysis of cooling parameters for aero blade remanufacturing
title_fullStr Modeling of additive height and numerical analysis of cooling parameters for aero blade remanufacturing
title_full_unstemmed Modeling of additive height and numerical analysis of cooling parameters for aero blade remanufacturing
title_sort modeling of additive height and numerical analysis of cooling parameters for aero blade remanufacturing
publisher Copernicus Publications
series Mechanical Sciences
issn 2191-9151
2191-916X
publishDate 2021-08-01
description <p>Additive remanufacturing height and matching cooling parameters are the key factors affecting blade repair quality. First, the mathematical model of the single additive remanufacturing repair height and wire-feeding speed was established, the solution method was proposed and the numerical solution was obtained, and the validity of the model was verified by experiments. Then, based on the calculation results of a single additive remanufacturing repair, the geometric morphology of the cross section under double additive remanufacturing repair was analyzed, and the mathematical model was established. Second, based on the optimal parameters obtained by numerical analysis and the mathematical model, the fluid structure coupling heat transfer model of “blade fixture” for base channel cooling was established. The cooling effect of the typical section under different initial temperatures and different flow rates was calculated, and the coupled heat transfer in the process of blade remanufacturing was explained by the mechanism. Third, through the comparative analysis of the cooling effect, optimal cooling parameters of double additive remanufacturing repair were obtained, and the model of coupled heat flow was verified by experiment. The results showed that the mathematical model of additive remanufacturing height is effective for studying the thermal cycle and cooling effect of welding, and the cooling parameters obtained by numerical analysis can effectively guarantee the quality of double additive remanufacturing of blade repair.</p>
url https://ms.copernicus.org/articles/12/803/2021/ms-12-803-2021.pdf
work_keys_str_mv AT mgong modelingofadditiveheightandnumericalanalysisofcoolingparametersforaerobladeremanufacturing
AT mgong modelingofadditiveheightandnumericalanalysisofcoolingparametersforaerobladeremanufacturing
AT sdai modelingofadditiveheightandnumericalanalysisofcoolingparametersforaerobladeremanufacturing
AT twang modelingofadditiveheightandnumericalanalysisofcoolingparametersforaerobladeremanufacturing
AT lwang modelingofadditiveheightandnumericalanalysisofcoolingparametersforaerobladeremanufacturing
_version_ 1721197848276500480