Effects of heat sink on frictional heat effect in PEEK/Steel Pair(Numerical calculation using OpenFOAM model and experiments)

The PEEK material has been applied to a sliding bearing system in a power plant system because of its high mechanical durability. In the solid friction of the PEEK materials, the frictional heat becomes the important factor because the temperature increasing due to the frictional heat causes the rap...

Full description

Bibliographic Details
Main Authors: Takuma KOGAWA, Naoto OGASAWARA, Daisuke MORI, Tomoharu AKAGAKI
Format: Article
Language:Japanese
Published: The Japan Society of Mechanical Engineers 2019-10-01
Series:Nihon Kikai Gakkai ronbunshu
Subjects:
Online Access:https://www.jstage.jst.go.jp/article/transjsme/85/879/85_19-00287/_pdf/-char/en
_version_ 1811308753934352384
author Takuma KOGAWA
Naoto OGASAWARA
Daisuke MORI
Tomoharu AKAGAKI
author_facet Takuma KOGAWA
Naoto OGASAWARA
Daisuke MORI
Tomoharu AKAGAKI
author_sort Takuma KOGAWA
collection DOAJ
description The PEEK material has been applied to a sliding bearing system in a power plant system because of its high mechanical durability. In the solid friction of the PEEK materials, the frictional heat becomes the important factor because the temperature increasing due to the frictional heat causes the rapidly increasing of the frictional coefficient of the specimen. In order to maintain the low frictional coefficient of the PEEK materials, the effective cooling method for the PEEK materials needs to be developed. In this study, the passive cooling method, which attaches the heat sink to the PEEK materials, was suggested. For evaluating the suggested cooling method of the PEEK materials, the calculation model adopting OpenFOAM, which is the open source software, has been developed. Adopting some functions and library of OpenFOAM, the frictional heat, heat resistance, and heat transfer coefficient on the heat sink were modeled. The sliding bearing experiment was conducted and time variation of the temperature and friction coefficient in the ring specimen were measured. The temperature variation in the ring specimen was compared with the calculation result. From the numerical calculation results, the developed calculation model could simulate the temperature time variation of the ring obtained in the experiment, when variation of the frictional coefficient, heat resistance, and heat transfer coefficient were modeled appropriately. Finally, the calculation predict ability using OpenFOAM in the considered situation was evaluated.
first_indexed 2024-04-13T09:29:05Z
format Article
id doaj.art-7b09e52663b14b75aceb1d516dd973ca
institution Directory Open Access Journal
issn 2187-9761
language Japanese
last_indexed 2024-04-13T09:29:05Z
publishDate 2019-10-01
publisher The Japan Society of Mechanical Engineers
record_format Article
series Nihon Kikai Gakkai ronbunshu
spelling doaj.art-7b09e52663b14b75aceb1d516dd973ca2022-12-22T02:52:20ZjpnThe Japan Society of Mechanical EngineersNihon Kikai Gakkai ronbunshu2187-97612019-10-018587919-0028719-0028710.1299/transjsme.19-00287transjsmeEffects of heat sink on frictional heat effect in PEEK/Steel Pair(Numerical calculation using OpenFOAM model and experiments)Takuma KOGAWA0Naoto OGASAWARA1Daisuke MORI2Tomoharu AKAGAKI3Departments of Industrial Systems Engineering, National Institute of Technology (KOSEN)Departments of Industrial Systems Engineering, National Institute of Technology (KOSEN)Departments of Industrial Systems Engineering, National Institute of Technology (KOSEN)Departments of Industrial Systems Engineering, National Institute of Technology (KOSEN)The PEEK material has been applied to a sliding bearing system in a power plant system because of its high mechanical durability. In the solid friction of the PEEK materials, the frictional heat becomes the important factor because the temperature increasing due to the frictional heat causes the rapidly increasing of the frictional coefficient of the specimen. In order to maintain the low frictional coefficient of the PEEK materials, the effective cooling method for the PEEK materials needs to be developed. In this study, the passive cooling method, which attaches the heat sink to the PEEK materials, was suggested. For evaluating the suggested cooling method of the PEEK materials, the calculation model adopting OpenFOAM, which is the open source software, has been developed. Adopting some functions and library of OpenFOAM, the frictional heat, heat resistance, and heat transfer coefficient on the heat sink were modeled. The sliding bearing experiment was conducted and time variation of the temperature and friction coefficient in the ring specimen were measured. The temperature variation in the ring specimen was compared with the calculation result. From the numerical calculation results, the developed calculation model could simulate the temperature time variation of the ring obtained in the experiment, when variation of the frictional coefficient, heat resistance, and heat transfer coefficient were modeled appropriately. Finally, the calculation predict ability using OpenFOAM in the considered situation was evaluated.https://www.jstage.jst.go.jp/article/transjsme/85/879/85_19-00287/_pdf/-char/enopenfoampeek materialsreducing peekheat transferfriction and wearsliding bearing
spellingShingle Takuma KOGAWA
Naoto OGASAWARA
Daisuke MORI
Tomoharu AKAGAKI
Effects of heat sink on frictional heat effect in PEEK/Steel Pair(Numerical calculation using OpenFOAM model and experiments)
Nihon Kikai Gakkai ronbunshu
openfoam
peek materials
reducing peek
heat transfer
friction and wear
sliding bearing
title Effects of heat sink on frictional heat effect in PEEK/Steel Pair(Numerical calculation using OpenFOAM model and experiments)
title_full Effects of heat sink on frictional heat effect in PEEK/Steel Pair(Numerical calculation using OpenFOAM model and experiments)
title_fullStr Effects of heat sink on frictional heat effect in PEEK/Steel Pair(Numerical calculation using OpenFOAM model and experiments)
title_full_unstemmed Effects of heat sink on frictional heat effect in PEEK/Steel Pair(Numerical calculation using OpenFOAM model and experiments)
title_short Effects of heat sink on frictional heat effect in PEEK/Steel Pair(Numerical calculation using OpenFOAM model and experiments)
title_sort effects of heat sink on frictional heat effect in peek steel pair numerical calculation using openfoam model and experiments
topic openfoam
peek materials
reducing peek
heat transfer
friction and wear
sliding bearing
url https://www.jstage.jst.go.jp/article/transjsme/85/879/85_19-00287/_pdf/-char/en
work_keys_str_mv AT takumakogawa effectsofheatsinkonfrictionalheateffectinpeeksteelpairnumericalcalculationusingopenfoammodelandexperiments
AT naotoogasawara effectsofheatsinkonfrictionalheateffectinpeeksteelpairnumericalcalculationusingopenfoammodelandexperiments
AT daisukemori effectsofheatsinkonfrictionalheateffectinpeeksteelpairnumericalcalculationusingopenfoammodelandexperiments
AT tomoharuakagaki effectsofheatsinkonfrictionalheateffectinpeeksteelpairnumericalcalculationusingopenfoammodelandexperiments