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Failure Investigation of a Welding Regulator Fire

机译:焊接调节器着火的故障调查

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This paper describes the investigation and failure analysis of a welding regulator fire that resulted in explosive energy release and injury to an operator. The failure analysis revealed that an organic contaminant in the form of an insect had entered the cylinder valve prior to attachment of the regulator. Ignition of the insect and nest materials led to an explosion-like overpressure that blew the high-pressure poppet through the nozzle and forcibly separated the regulator bonnet from the main body. Scanning Electron Microscopy (SEM) and Fourier Transform Infrared Spectroscopy (FTIR) on the residue from the fire-damaged components confirmed that insect nest material was present at the time of the fire. Autogenous Ignition Testing (AIT) on similar insect debris revealed a very low ignition temperature and probable high heat of combustion. The explosion-like energy release was felt to be related to a momentary containment of the fire in the early stages of the combustion event which led to greater involvement of the cylinder valve's nylon seat and resulted in increased reaction kinetics.
机译:本文介绍了焊接调节器起火的调查和故障分析,该起火导致爆炸性能量释放和操作人员受伤。故障分析表明,在安装调节器之前,昆虫形式的有机污染物已进入气缸阀。昆虫和巢穴材料的点燃导致爆炸状的超压,该超压使高压提升阀通过喷嘴吹出,并强行将调节器阀盖与主体分开。扫描电子显微镜(SEM)和傅立叶变换红外光谱(FTIR)对着火的组件中的残留物进行了确认,证实在着火时存在昆虫巢物质。对类似昆虫残骸的自燃测试(AIT)显示,其着火温度非常低,燃烧热很可能很高。爆炸状的能量释放被认为与燃烧事件早期阶段的火势暂时遏制有关,这导致气缸阀的尼龙阀座更多地参与并导致反应动力学增强。

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