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Net section tension strength of bolted connections in ultra-high strength sheet steel during and after fire

机译:火灾期间和之后超高强度钢板螺栓连接螺栓连接的净张力

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This paper investigates the net section tension strength of bolted connections in ultra-high strength sheet steel (yield stress greater than 1000 MPa) under various fire scenarios through laboratory testing. The specimens are tested at room (ambient) temperature and elevated temperatures up to 700 degrees C, and are subjected to air or water cooling from temperatures as high as 1000 degrees C. The degradations of the tensile strength at elevated temperatures are much more severe than design code predictions. Substantial recovery of the tensile strength is feasible using water cooling if the steel has been exposed to 1000 degrees C, by almost 90%. Based on finite element analyses incorporating tensile fracture simulation, the paper determines that elongation at fracture is the most relevant parameter of material ductility for a structural steel connection. Tension fractures in very low ductility materials tend to be inclined to the loading direction of the bolted connection. This paper also examines the alternative formulae for determining the net section tension strength of a stagger bolted connection. Their accuracy is verified through the use of a certain geometry, which eliminates any potential errors due to the use of incorrect material tensile strength in the calculations. Cochrane's original formula is confirmed to be significantly more accurate than the simplified version used in the literature and some design codes, for the tested specimens. Crown Copyright (c) 2020 Published by Elsevier Ltd. All rights reserved.
机译:本文通过实验室检测,研究了在各种火灾情景下超高强度板钢(屈服应力大于1000MPa)的螺栓连接净张力强度。在房间(环境)温度下测试标本,高达700℃的温度,并且经受高达1000℃的温度的空气或水冷却。升高温度下拉伸强度的降解比设计代码预测。如果钢已暴露在1000℃,则使用水冷,抗拉强度的显着恢复是可行的。基于掺入拉伸骨折模拟的有限元分析,纸张确定骨折处的伸长是结构钢连接的最相关的材料延展性参数。非常低的延展性材料中的张力裂缝倾向于倾向于螺栓连接的装载方向。本文还研究了用于确定交错螺栓连接的净截面张力强度的替代公式。通过使用某个几何形状来验证它们的准确性,这是由于在计算中使用不正确的材料拉伸强度而消除了任何潜在的误差。 Cochrane的原始公式被确认比文献中使用的简化版本和一些设计代码,用于测试的标本。 Crown版权所有(c)2020由elestvier有限公司出版的所有权利保留。

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