Innovative Design of Improving the Thermal Insulation Capacity of Fire Rolling Doors

碩士 === 中華大學 === 營建管理研究所 === 97 === In the present, most of the rolling door products in the market are made of steel or stainless steel. These metallic materials are characterized by high integrity against fire but have low thermal insulation capacity due to heat conduction. According to the specifi...

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Main Author: 張婉瑩
Other Authors: Cheng,Shao-Tsai
Format: Others
Language:zh-TW
Published: 2009
Online Access:http://ndltd.ncl.edu.tw/handle/44262095038178972014
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spelling ndltd-TW-097CHPI57180192015-11-13T04:09:13Z http://ndltd.ncl.edu.tw/handle/44262095038178972014 Innovative Design of Improving the Thermal Insulation Capacity of Fire Rolling Doors 改善防火鐵捲門阻熱性之創新設計 張婉瑩 碩士 中華大學 營建管理研究所 97 In the present, most of the rolling door products in the market are made of steel or stainless steel. These metallic materials are characterized by high integrity against fire but have low thermal insulation capacity due to heat conduction. According to the specifications of architectural technologies, rolling doors, when used for fire control compartmentation, must ensure both integrity and thermal insulation. The average temperature of rolling door’s leaves on the fire side cannot be higher than 170℃, and the temperature of any point on the rolling door cannot exceed 210℃. The statistics provided by Taiwan Architecture & Building Center show that six rolling door makers have passed the review as of Dec 2008. Of the eight fire rolling door products they provided, none was labeled with the thermal insulation capacity. Therefore, thermal insulation of rolling doors is an issue that should be resolved first. In this study, domestic and foreign studies on solutions to the lack of thermal insulation of fire rolling doors were reviewed and their inventive principles were analyzed. Through literature review, the current technologies and their drawbacks were collected. And presently, domestic studies for probing and improving the thermal insulation capacity of fire rolling doors are much less. After understanding the problems to be improved, the problems were defined and innovative ideas were proposed. The “Matrix” and “40 Inventive Principles” of TRIZ and the structural invention and problem-solving process provided by the computer assisted design software “Goldfire Innovator” were utilized to two innovative designs, part of there have “dry’s type” and “wet’s type” inovative designs, and these can improve the thermal insulation capacity of fire rolling doors. Cheng,Shao-Tsai 鄭紹材 2009 學位論文 ; thesis 0 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 中華大學 === 營建管理研究所 === 97 === In the present, most of the rolling door products in the market are made of steel or stainless steel. These metallic materials are characterized by high integrity against fire but have low thermal insulation capacity due to heat conduction. According to the specifications of architectural technologies, rolling doors, when used for fire control compartmentation, must ensure both integrity and thermal insulation. The average temperature of rolling door’s leaves on the fire side cannot be higher than 170℃, and the temperature of any point on the rolling door cannot exceed 210℃. The statistics provided by Taiwan Architecture & Building Center show that six rolling door makers have passed the review as of Dec 2008. Of the eight fire rolling door products they provided, none was labeled with the thermal insulation capacity. Therefore, thermal insulation of rolling doors is an issue that should be resolved first. In this study, domestic and foreign studies on solutions to the lack of thermal insulation of fire rolling doors were reviewed and their inventive principles were analyzed. Through literature review, the current technologies and their drawbacks were collected. And presently, domestic studies for probing and improving the thermal insulation capacity of fire rolling doors are much less. After understanding the problems to be improved, the problems were defined and innovative ideas were proposed. The “Matrix” and “40 Inventive Principles” of TRIZ and the structural invention and problem-solving process provided by the computer assisted design software “Goldfire Innovator” were utilized to two innovative designs, part of there have “dry’s type” and “wet’s type” inovative designs, and these can improve the thermal insulation capacity of fire rolling doors.
author2 Cheng,Shao-Tsai
author_facet Cheng,Shao-Tsai
張婉瑩
author 張婉瑩
spellingShingle 張婉瑩
Innovative Design of Improving the Thermal Insulation Capacity of Fire Rolling Doors
author_sort 張婉瑩
title Innovative Design of Improving the Thermal Insulation Capacity of Fire Rolling Doors
title_short Innovative Design of Improving the Thermal Insulation Capacity of Fire Rolling Doors
title_full Innovative Design of Improving the Thermal Insulation Capacity of Fire Rolling Doors
title_fullStr Innovative Design of Improving the Thermal Insulation Capacity of Fire Rolling Doors
title_full_unstemmed Innovative Design of Improving the Thermal Insulation Capacity of Fire Rolling Doors
title_sort innovative design of improving the thermal insulation capacity of fire rolling doors
publishDate 2009
url http://ndltd.ncl.edu.tw/handle/44262095038178972014
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