The real contact width evaluation of a three-layer metal gasket

The performance of a three-layer metal gasket is affected by the contact width between the gasket surface and the rough flanges. In the simulation, proper flange roughness modeling will make it easier to predict the gasket performance later. The surface roughness modeling in the simulation will be c...

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Main Authors: I Made Gatot Karohika, Shigeyuki Haruyama
Format: Article
Language:English
Published: Universitas Mercu Buana 2022-10-01
Series:Jurnal Ilmiah SINERGI
Subjects:
Online Access:https://publikasi.mercubuana.ac.id/index.php/sinergi/article/view/14064
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author I Made Gatot Karohika
Shigeyuki Haruyama
author_facet I Made Gatot Karohika
Shigeyuki Haruyama
author_sort I Made Gatot Karohika
collection DOAJ
description The performance of a three-layer metal gasket is affected by the contact width between the gasket surface and the rough flanges. In the simulation, proper flange roughness modeling will make it easier to predict the gasket performance later. The surface roughness modeling in the simulation will be compared with experimental measurements to determine how much contact occurs due to the rough flange surface. Experimental measurement of real contact width using a digital microscope and simulation using finite element software. The measurements between the simulation results of the real surface roughness model and the experimental results show that they are close to the same. So it can be said that our simulation model is close to the actual conditions.
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spelling doaj.art-f5fe4491f5b3453cab8fd8de00bce6242023-09-03T06:44:31ZengUniversitas Mercu BuanaJurnal Ilmiah SINERGI1410-23312460-12172022-10-0126331131810.22441/sinergi.2022.3.0065477The real contact width evaluation of a three-layer metal gasketI Made Gatot Karohika0Shigeyuki Haruyama1Department of Mechanical Engineering, Faculty of Engineering, Universitas UdayanaGraduate School of Innovation and Technology Management, Yamaguchi UniversityThe performance of a three-layer metal gasket is affected by the contact width between the gasket surface and the rough flanges. In the simulation, proper flange roughness modeling will make it easier to predict the gasket performance later. The surface roughness modeling in the simulation will be compared with experimental measurements to determine how much contact occurs due to the rough flange surface. Experimental measurement of real contact width using a digital microscope and simulation using finite element software. The measurements between the simulation results of the real surface roughness model and the experimental results show that they are close to the same. So it can be said that our simulation model is close to the actual conditions.https://publikasi.mercubuana.ac.id/index.php/sinergi/article/view/14064contact widthflangegasketsimulationsurface roughness
spellingShingle I Made Gatot Karohika
Shigeyuki Haruyama
The real contact width evaluation of a three-layer metal gasket
Jurnal Ilmiah SINERGI
contact width
flange
gasket
simulation
surface roughness
title The real contact width evaluation of a three-layer metal gasket
title_full The real contact width evaluation of a three-layer metal gasket
title_fullStr The real contact width evaluation of a three-layer metal gasket
title_full_unstemmed The real contact width evaluation of a three-layer metal gasket
title_short The real contact width evaluation of a three-layer metal gasket
title_sort real contact width evaluation of a three layer metal gasket
topic contact width
flange
gasket
simulation
surface roughness
url https://publikasi.mercubuana.ac.id/index.php/sinergi/article/view/14064
work_keys_str_mv AT imadegatotkarohika therealcontactwidthevaluationofathreelayermetalgasket
AT shigeyukiharuyama therealcontactwidthevaluationofathreelayermetalgasket
AT imadegatotkarohika realcontactwidthevaluationofathreelayermetalgasket
AT shigeyukiharuyama realcontactwidthevaluationofathreelayermetalgasket