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Hydrogen embrittlement of DP-1000 flat steel sheet: Influence of mechanical properties, specimen geometry, pre-damaging and electrolytically zinc galvanizing

机译:DP-1000钢板的氢脆:机械性能,试样几何形状,预损伤和电解锌镀锌的影响

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Studies towards the impact of solute hydrogen on the mechanical properties of ultra-high strength sheet steel grades (UHSS) for the automotive industry have been increasingly conducted in the past years. This paper focuses on the pre-damaging of a dualphase DP-1000 automotive sheet steel, as found in the manufacturing of automotive body parts, in connection with hydrogen embrittlement. It is shown that the kind of pre-damaging of the specimens has a severe influence on the occurrence of hydrogen embrittlement. Hydrogen embrittlement resistance under corrosive conditions was determined through constant load tests. Tensile specimens, manufactured from electrolytically zinc galvanized DP-1000 steel, were immersed in a 5% sodium chloride solution. The impact of material properties, pre-damaging and specimen geometry are critically discussed. Furthermore a discussion is given about the material testing methods most suitable to indicate high or low hydrogen embrittlement resistance if constant load testing is performed.
机译:过去几年中,越来越多地研究溶质氢对汽车行业超高强度钢板(UHSS)的机械性能的影响。本文重点研究与汽车氢脆相关的双相DP-1000汽车钢板的预损伤,如在汽车车身零件制造中发现的那样。结果表明,试样的预损伤类型对氢脆的发生有严重的影响。通过恒定载荷试验确定在腐蚀性条件下的耐氢脆性。将由电解镀锌的DP-1000钢制成的拉伸试样浸入5%氯化钠溶液中。严格讨论了材料性能,预损坏和样品几何形状的影响。此外,对进行恒负荷测试时最适合指示高或低耐氢脆性的材料测试方法进行了讨论。

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