EventsThe Eighteenth International Conference of Experimental Mechanics
Published
This submission belongs to the session ICEM. ICEM 2018 of the event The Eighteenth International Conference of Experimental Mechanics
Published date
11 Jun, 2018
Citation
Kiyohiro Ito, Hiroki Yajima, Masayuki Arai, Creep Life Prediction Method by Using High-Temperature Indentation Creep Test, in Proceedings of The Eighteenth International Conference of Experimental Mechanics, Brussels, 1 July–5 July 2018, MDPI: Basel, Switzerland, doi: 10.3390/ICEM18-05319
Share
Email
Facebook
Twitter
LinkedIn

Creep Life Prediction Method by Using High-Temperature Indentation Creep Test

Hiroki Yajima 1
1. Tokyo University of Science
Abstract

Creep life prediction is very important to maintain safe operation of thermal power plants for a long-term period. In this study, an alternative creep life prediction method was proposed based on a relationship between creep exponent n and creep coefficient k. A high temperature indentation creep test was conducted to identify the creep exponent and creep coefficient for each specimen with different creep damage ratio. Subsequently, the relationship between the creep coefficient and creep exponent for each creep damage ratio was focused on. As a result, it was confirmed that a new parameter B introduced based on both creep coefficient and creep exponent linearly increase as the creep damage ratio increases. Furthermore, the B is uniquely determined by the creep damage ratio regardless of the temperature and stress conditions. These results indicate that the creep life can be predicted with a high accuracy using the B.

Keywords
Creep
Creep life prediction
High-temperature indentation creep test
Norton’s law
Creep exponent
293 Experimental Analysis of CFRP Strengthened Reinforced Concrete Slabs Loaded by Two Independent Explosions
Comparison of non-destructive techniques for impact damage area assessment in aramid/epoxy composites