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Hydrogen Embrittlement Resistance Evaluation of Ultra High Strength Steel Sheets for Automobiles

机译:汽车用超高强度钢板的耐氢脆性评估

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When ultra high strength steel (UHSS) sheets with tensile strength over 980 MPa are applied in auto mobiles, there is a risk that a type of hydrogen embrittlement fracture called delayed fracture may occur while a vehicle is in use. This paper summarizes the effects of stress, strain, diffusible hydrogen content and the forming mode on the hydrogen embrittlement resistance of UHSS sheets for automotive applica tions. In this study, 1 180 MPa grade ferrite-martensite dual phase steel was used. This material was eval uated by the U-bending and drawn cup methods. It was concluded that high strain, high stress and high diffusible hydrogen content reduced hydrogen embrittlement resistance. In addition, an improved immersion-type hydrogen charging method using an ammonium thiocyanate (NH4SCN) aqueous solution was introduced in this paper. The NH4SCN solution enables control of the dif fusible hydrogen content from low to high concentrations using the NH_4SCN concentration, and dissolu tion of the specimens during immersion in NH_4SCN was minimal, making it possible to maintain substantially the same surface condition as before immersion.
机译:当将抗拉强度超过980 MPa的超高强度钢板(UHSS)应用于汽车时,有可能在使用车辆时发生称为延迟断裂的一种氢脆断裂。本文总结了应力,应变,可扩散氢含量和成形方式对汽车用UHSS板材耐氢脆性的影响。在这项研究中,使用了1 180 MPa级铁素体-马氏体双相钢。该材料通过U形弯曲和拉深杯法进行评估。结论是,高应变,高应力和高扩散氢含量降低了耐氢脆性。此外,本文介绍了一种使用硫氰酸铵(NH4SCN)水溶液的改进的浸没式氢填充方法。 NH4SCN溶液可使用NH_4SCN浓度控制从低浓度到高浓度的易溶氢含量,并且在NH_4SCN浸入期间样品的溶解极少,从而可以保持与浸入前基本相同的表面状态。

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