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Reliability based determination of material partial safety factors for cast iron beams in jack arched construction exposed to standard and natural fires

机译:基于可靠性的确定标准和自然火灾下千斤顶拱形建筑中铸铁梁材料局部安全系数的确定

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摘要

Cast iron beams were extensively used in many 19th century structures, especially in fireproof flooring systems (such as jack arch). Many such structures are still in use today and it is important that they fulfil the current requirements of fire resistance when there is a change of use. These structures are out of scope of modern design codes and old design codes do not provide guidance for fire resistance design. Furthermore, cast iron is a brittle material weak in tension, and there are many uncertainties in its mechanical properties at ambient and elevated temperatures due to material flaws. It is necessary to quantify the probability of structural failure and to introduce safety factors to reduce the probability of structural failure in fire to an acceptable level. This paper presents the results of a detailed study whose purpose is to derive appropriate safety factors to achieve different levels of reliability, for fire safety design of cast iron beams. In this study, a fibre analysis method has been used to calculate the moment capacity of four different types of cast iron cross section. Using randomized stress strain-temperature relationships, based on variability of the different governing parameters (under tension: maximum stress, 0.2% proof stress, corresponding strains at maximum stress (strength) and failure; under compression: Young's modulus, proportional limit, 0.2% proof stress and the maximum stress), the probability distribution of moment capacity has been calculated. Based on the criterion of cast iron beam failure not exceeding probabilities of 10(-1), 10(-2) and 10(-3), material safety factors of 1.5, 3.0 and 5.0 respectively have been obtained.
机译:铸铁梁广泛用于19世纪的许多建筑中,尤其是在防火地板系统(例如千斤顶)中。如今,许多此类结构仍在使用中,重要的是当用途发生变化时,它们必须满足当前的耐火性要求。这些结构超出了现代设计规范的范围,旧的设计规范没有为耐火设计提供指导。此外,铸铁是一种脆性弱的材料,由于材料缺陷,在环境温度和高温下其机械性能存在许多不确定性。必须量化结构破坏的可能性并引入安全因素,以将火灾中的结构破坏的可能性降低到可接受的水平。本文介绍了一项详细研究的结果,其目的是为铸铁梁的防火设计导出适当的安全系数,以达到不同的可靠性水平。在这项研究中,纤维分析方法已被用来计算四种不同类型铸铁截面的弯矩承载力。使用随机应力应变-温度关系,基于不同控制参数的可变性(在拉力下:最大应力,0.2%弹性极限应力,在最大应力(强度)下的相应应变和破坏;在压缩下:杨氏模量,比例极限,0.2%极限应力和最大应力),计算了力矩能力的概率分布。根据铸铁梁失效不超过10(-1),10(-2)和10(-3)的准则,材料安全系数分别为1.5、3.0和5.0。

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