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Evaluation of the Potential for Liquid Metal Embrittlement of 304L Stainless Steel by Galvanized Fasteners in an Industrial Fire Scenario

机译:在工业火灾情景中镀锌紧固件对304L不锈钢液态金属脆化潜力的评价

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Liquid Metal Embrittlement (LME) is a phenomenon that promotes a drastic loss of ductility in normally ductile alloys in the presence of certain liquid metals. Zinc (Zn) at temperatures above its melting point [400°C (752°F)] has been known to promote LME in austenitic stainless steels under tensile loads. Although LME of austenitic stainless steel is more likely when Zn is in its molten state, occurrences of Zn induced LME have been reported at temperatures below 400°C (752°F). Industry has adopted a number of practices to prevent LME of SS pressure-retaining equipment by reducing the contact with Zn. However, the use of mechanically galvanized low-alloy fasteners in SS flange joints, joints under a local compressive load is common practice. Up until now, the potential risk for LME of 300-series stainless steel flanges caused by galvanized fasteners during high temperature exposure (e.g. during an industrial fire scenario) has not been evaluated. This study examines the transfer of Zn from hot-dipped galvanized and mechanically galvanized steel bolting to stainless steel by exposing a 304L stainless steel/Galvanized bolting assembly to temperatures in the range 205°C (400°F) to 537°C (1000°F) for approximately one hour to simulate an industrial fire scenario. Exposed samples were examined using optical and scanning electron microscopy. SEM/EDS analysis shows evidence of Zn transfer to stainless steel surface beneath the fasteners. However, metallographic examination did not reveal any infiltration/diffusion of Zn into the stainless steel matrix.
机译:熔融金属脆化(LME)是促进延展性的在通常延性合金在某些液体金属的存在急剧损失的现象。锌(Zn)在温度其熔点400℃(752°F)]上面已经已知促进在LME拉伸载荷下奥氏体不锈钢。虽然奥氏体不锈钢的LME更可能时的Zn处于其熔融状态,Zn中出现诱导的LME已在温度低于400℃(752°F)的报道。工业上已采取了一些做法,以防止SS承压设备LME通过减少与锌的接触。然而,使用在SS法兰接头机械镀锌低合金紧固件,局部压缩载荷下关节是常见的做法。截至目前为止,(例如在工业火灾场景),用于暴露于高温时由于镀锌紧固件300系列不锈钢法兰LME的潜在风险尚未评估。本研究探讨的Zn从热浸镀锌和机械镀锌钢螺栓通过在205℃(400°F)至537℃(1000范围内组件暴露一个304L不锈钢/镀锌螺栓的温度转移到不锈钢° F)大约1小时以模拟工业火灾场景。使用光学显微镜和扫描电子显微镜曝光的样品进行检测。 SEM / EDS分析表明锌转移到不锈钢表面上的紧固件下方的证据。然而,金相检查没有发现锌放入不锈钢基质任何渗透/扩散。

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