Study on the Method of Improving the Fire Resistance Performance of No Threshold Fire Door

Joo-Seong Lee, Bohyeok Lim, Hae-Dong Lee
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Abstract

In this study, we aim to improve the fire resistance performance by solving the structural problem so that gas or flame does not leak through the door in case of a fire while maintaining airtightness and insulation when removing the threshold at the bottom of a general fire door. To improve airtightness and insulation performance along with fire-resistance, an ordinary auto-bottom is provided in the lower part of the door. However, there is a limit to securing fire-resistance. To maximize fire-resistance performance, graphite, an expandable foaming agent, is applied to block the gap between the lower part of the door and floor. Additionally, gas holes at the bottom of the door induce the gas generated to flow into the door. We found that blocking the flow of gas plays a very important role in improving fire-resistance performance.
提高无门槛防火门防火性能的方法研究
在本研究中,我们的目标是通过解决结构问题,使气体或火焰在发生火灾时不会从门中泄漏,同时在拆除普通防火门底部门槛时保持密闭性和绝缘性,从而提高防火性能。为了提高密封性和隔热性能以及防火性能,门的下部设有普通自动底。然而,确保防火性是有限度的。为了最大限度地提高防火性能,可膨胀发泡剂石墨被用于堵塞门的下部与地板之间的空隙。此外,在门的底部的气体孔诱导产生的气体流入门。我们发现阻断气体的流动对提高耐火性能起着非常重要的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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