首页> 外文会议>Engineering, Construction, and Operations in Challenging Environments: Earth amp; Space 2004 >A Study of The Thermal Performance of Cold-formed Thin-walled Perforated Steel Studs (Thermal Studs) in Fire
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A Study of The Thermal Performance of Cold-formed Thin-walled Perforated Steel Studs (Thermal Studs) in Fire

机译:火中冷弯薄壁带孔钢钉(热钉)的热性能研究

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Perforating thin-walled steel studs in steel framed housing is an effective method of reducing heat loss and improving energy efficiency. Steel studs with perforation for energy efficiency are called thermal studs This paper presents an experimental and numerical investigation of the thermal performance of lipped thermal studs in fire Four tests were carried out in the fire-testing laboratory of the University of Manchester. Isowool 1000 was used as internal insulation in all tests Gypsum boards were attached to both sides of the test sections All tests were conducted under the standard fire condition and lasted for 2 hours. These test results were compared with those of an existing test using solid steel section Test results show that perforation had significant influences on temperature distributions in thin-walled steel sections Even with a very small perforation size, there is a large temperature difference across each perforation. Overall, the temperature difference between the exposed and unexposed sides for a perforated section is much greater than for a solid section, under the same fire condition. These tests were simulated using a general finite element package ABAQUS The purposes of these numerical simulations are to check the capability of ABAQUS in simulating complex temperature fields, to select appropriate simulation strategy and to determine appropriate material properties.
机译:在钢制框架中对薄壁钢钉进行穿孔是减少热量损失并提高能源效率的有效方法。具有穿孔效率的钢制螺柱称为热螺柱。本文介绍了带唇的热螺柱在火灾中的热性能的实验和数值研究。在曼彻斯特大学的火试验实验室中进行了四个测试。在所有测试中,将Isowool 1000用作内部绝缘材料将石膏板贴在测试部分的两侧。所有测试均在标准燃烧条件下进行,持续2小时。将这些测试结果与使用实心钢截面的现有测试结果进行了比较。测试结果表明,穿孔对薄壁钢截面的温度分布有重大影响。即使穿孔尺寸很小,每个穿孔的温差也很大。总体而言,在相同的起火条件下,穿孔部分的暴露侧和未暴露侧之间的温差远大于实心部分。使用通用有限元程序包ABAQUS对这些测试进行了仿真。这些数值模拟的目的是检查ABAQUS在模拟复杂温度场中的能力,选择适当的模拟策略并确定适当的材料特性。

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