Effect of Surface Roughness on the Determination of the Creep Properties of Material by Using Three Points Bending Creep Test
- DOI
- 10.2991/ismems-16.2016.5How to use a DOI?
- Keywords
- Surface roughness, Creep properties, Bending creep test, Finite element methodSurface roughness, Creep properties, Bending creep test, Finite element methodSurface roughness, Creep properties, Bending creep test, Finite element methodSurface roughness, Creep properties, Bending creep test, Finite el
- Abstract
The purpose of this paper is to understand the effect of surface roughness of the specimen on obtaining the creep characteristics by using bending creep tests. To this aim, a numerical study has been performed on the creep damage development of the specimen by implementing the different surface roughness into nite element models. The work may shed some light on the influence of different surface roughness on the stress distribution, the net section stress, and the indentation creep stress index were analyzedThe purpose of this paper is to understand the effect of surface roughness of the specimen on obtaining the creep characteristics by using bending creep tests. To this aim, a numerical study has been performed on the creep damage development of the specimen by implementing the different surface roughness into nite element models. The work may shed some light on the influence of different surface roughness on the stress distribution, the net section stress, and the indentation creep stress index were analyzedThe purpose of this paper is to understand the effect of surface roughness of the specimen on obtaining the creep characteristics by using bending creep tests. To this aim, a numerical study has been performed on the creep damage development of the specimen by implementing the different surface roughness into nite element models. The work may shed some light on the influence of different surface roughness on the stress distribution, the net section stress, and the indentation creep stress index were analyzedThe purpose of this paper is to understand the effect of surface roughness of the specimen on obtaining the creep characteristics by using bending creep tests. To this aim, a numerical study has been performed on the creep damage development of the specimen by implementing the different surface roughness into nite element models. The work may shed some light on the influence of different surface roughness on the stress distribution, the net section stress, and the indentation creep stress index were analyzedThe purpose of this paper is to understand the effect of surface roughness of the specimen on obtaining the creep characteristics by using bending creep tests. To this aim, a numerical study has been performed on the creep damage development of the specimen by implementing the different surface roughness into nite element models. The work may shed some light on the influence of different surface roughness on the stress distribution, the net section stress, and the indentation creep stress index were analyzedThe purpose of this paper is to understand the effect of surface roughness of the specimen on obtaining the creep characteristics by using bending creep tests. To this aim, a numerical study has been performed on the creep damage development of the specimen by implementing the different surface roughness into nite element models. The work may shed some light on the influence of different surface roughness on the stress distri
- Copyright
- © 2016, the Authors. Published by Atlantis Press.
- Open Access
- This is an open access article distributed under the CC BY-NC license (http://creativecommons.org/licenses/by-nc/4.0/).
Cite this article
TY - CONF AU - Shifeng Wen AU - Sibo Zhou AU - Xianglei Liu PY - 2016/12 DA - 2016/12 TI - Effect of Surface Roughness on the Determination of the Creep Properties of Material by Using Three Points Bending Creep Test BT - Proceedings of the International Symposium on Mechanical Engineering and Material Science PB - Atlantis Press SP - 22 EP - 28 SN - 2352-5401 UR - https://doi.org/10.2991/ismems-16.2016.5 DO - 10.2991/ismems-16.2016.5 ID - Wen2016/12 ER -