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A novel active fire protection approach for structural steel members using NiTi shape memory alloy

机译:使用NiTi形状记忆合金的结构钢构件新型主动防火方法

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摘要

A novel active fire protection approach, based on integrating a shape memory alloy, NiTi, with a steel structure, was proposed to satisfy the fire resistance requirements in structural design. To demonstrate the principles of this approach, a simple structure in the form of a simply supported steel beam was used. The internal action of the beam due to a transverse applied load was reduced by utilizing the shape memory effect in the NiTi alloy at rising temperatures. As a result, the net internal action from the load design was kept below the deteriorated load capacity of the beam during the fire scenario for period of time that was longer than that of the original beam without the NiTi alloy. By integrating the NiTi alloy into the beam system, the structure remained stable even though the steel temperature exceeded the critical temperature which may have caused the original beam structure to collapse. Prior to testing the composite NiTi-steel beam under simulated fire conditions, the NiTi alloy specimens were characterized at high temperatures. At 300 °C, the stiffness of the specimens increased by three times and its strength by four times over that at room temperature. The results obtained from the high-temperature characterization highlighted the great potential of the alloy being used in fire engineering applications.
机译:为了满足结构设计中的耐火性要求,提出了一种基于形状记忆合金NiTi与钢结构的新型主动防火方法。为了演示此方法的原理,使用了简单支撑的钢梁形式的简单结构。通过在升高的温度下利用NiTi合金中的形状记忆效应,减少了由于横向施加的载荷而引起的束的内部作用。结果,在火灾情况下,载荷设计产生的净内部作用保持在梁的退化承载能力以下,持续的时间长于没有NiTi合金的原始梁。通过将NiTi合金集成到梁系统中,即使钢的温度超过了可能导致原始梁结构崩溃的临界温度,结构仍保持稳定。在模拟的火焰条件下测试复合NiTi钢梁之前,先对NiTi合金试样进行了高温表征。在300°C下,样品的刚度比室温下增加了三倍,强度提高了四倍。从高温表征获得的结果突显了该合金在消防工程应用中的巨大潜力。

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