Study of fire-resistant behavior of steel materials in fire

碩士 === 國立臺灣科技大學 === 營建工程系 === 90 === The purpose of this research is to simulate the behavior of steel within real structure in fire. This research can be divided into four parts: macroscopic behavior, fire-resistant property of post-fire steel, analysis of the cross-section of fracture and SEM micr...

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Main Author: 蕭琪賢
Other Authors: 楊錦懷
Format: Others
Language:zh-TW
Published: 2002
Online Access:http://ndltd.ncl.edu.tw/handle/07488671336260393273
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spelling ndltd-TW-090NTUST5120952015-10-13T14:41:24Z http://ndltd.ncl.edu.tw/handle/07488671336260393273 Study of fire-resistant behavior of steel materials in fire 鋼鐵材料在火場中耐高溫之行為研究 蕭琪賢 碩士 國立臺灣科技大學 營建工程系 90 The purpose of this research is to simulate the behavior of steel within real structure in fire. This research can be divided into four parts: macroscopic behavior, fire-resistant property of post-fire steel, analysis of the cross-section of fracture and SEM microscopic structure analysis. The main variables for this study are the stress sustained of steel and the fire temperature. 0.4fy, 0.6fy, 0.8fy, 1.05fy and 1.10fy will be applied to simulate the real stress sustained in real structure. As for the fire temperature, 200℃, 300℃, 400℃, 500℃ and 600℃are used as variables. The study results show that the heavier the stress sustained of steel and the higher the temperature, the bigger the maximum strain and strain remain. And when the combination of stress and temperature reach a limit, the steel will fracture. But the fractured mode is not due to the inter-granular rupture of creep but the dimpled rupture of stress overload. Because the fractured deformation is quite small, the dimple in microscopic structure is small and shallow. Besides, for the fire-resistant property of post-fire steel, the study shows that the characteristic of the post-fire steel doesn’t weaken through a fire. 楊錦懷 2002 學位論文 ; thesis 103 zh-TW
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description 碩士 === 國立臺灣科技大學 === 營建工程系 === 90 === The purpose of this research is to simulate the behavior of steel within real structure in fire. This research can be divided into four parts: macroscopic behavior, fire-resistant property of post-fire steel, analysis of the cross-section of fracture and SEM microscopic structure analysis. The main variables for this study are the stress sustained of steel and the fire temperature. 0.4fy, 0.6fy, 0.8fy, 1.05fy and 1.10fy will be applied to simulate the real stress sustained in real structure. As for the fire temperature, 200℃, 300℃, 400℃, 500℃ and 600℃are used as variables. The study results show that the heavier the stress sustained of steel and the higher the temperature, the bigger the maximum strain and strain remain. And when the combination of stress and temperature reach a limit, the steel will fracture. But the fractured mode is not due to the inter-granular rupture of creep but the dimpled rupture of stress overload. Because the fractured deformation is quite small, the dimple in microscopic structure is small and shallow. Besides, for the fire-resistant property of post-fire steel, the study shows that the characteristic of the post-fire steel doesn’t weaken through a fire.
author2 楊錦懷
author_facet 楊錦懷
蕭琪賢
author 蕭琪賢
spellingShingle 蕭琪賢
Study of fire-resistant behavior of steel materials in fire
author_sort 蕭琪賢
title Study of fire-resistant behavior of steel materials in fire
title_short Study of fire-resistant behavior of steel materials in fire
title_full Study of fire-resistant behavior of steel materials in fire
title_fullStr Study of fire-resistant behavior of steel materials in fire
title_full_unstemmed Study of fire-resistant behavior of steel materials in fire
title_sort study of fire-resistant behavior of steel materials in fire
publishDate 2002
url http://ndltd.ncl.edu.tw/handle/07488671336260393273
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