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Hydrogen-assisted cold cracking in welded joints of press-hardened 22MnB5

机译:Hydrogen-assisted冷裂纹的焊接接头press-hardened 22 mnb5

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摘要

Over the last decade, press hardening has become all pervasive for automotive body-in-white design. Press-hardened boron micro-alloyed steels are widely used in modern body structure for high safety standard and lightweight achievement. Considering the welding of press-hardened components, some special considerations have to be taken into account compared to conventional deep-drawing steel grades. The mechanical properties of the welded joints are influenced by the hydrogen content in the base metal as well as the weld metal. Hydrogen absorption may result from the press-hardening process, as well as the welding process. Due to the martensitic microstructure and the high strength level, a critical hydrogen content may cause hydrogen embrittlement or hydrogen-assisted cold cracking (HACC). This paper focuses on the determination of the diffusible hydrogen content in the base metal after the press-hardening process, as well as in gas metal arc (GMA) welded joints of 22MnB5. Hydrogen source during press hardening is the humidity at the austenitizing temperature in the furnace atmosphere. During welding, for this study hydrogen was deliberately introduced by hydrogenous fluids on the sheet surface. The diffusible hydrogen content in the base metal and the weld metal was quantified by thermal desorption mass spectroscopy (TDMS) technique. The influence of the diffusible hydrogen on the mechanical properties of the welds was determined by four-point-bend testing. The time to fracture was identified using acoustic emission technique.
机译:在过去的十年里,新闻硬化为汽车车身工程无处不在设计。广泛应用于现代的身体结构高吗安全标准和轻量级的成就。考虑press-hardened的焊接组件,一些特殊考虑比传统的被考虑深冲钢的成绩。焊接接头性能的影响贱金属中的氢含量以及焊缝金属。从press-hardening过程,以及焊接过程。微观结构和高强度水平,临界氢含量可能引起氢脆化或hydrogen-assisted冷开裂(使用)。扩散氢含量的基础金属press-hardening过程之后在气体金属电弧焊接接头(GMA)22 mnb5。奥氏体化温度湿度炉内气氛。研究氢是故意引入的在薄板表面氢的液体。贱金属和扩散氢含量量化了焊缝金属热解吸质谱法(tdm)技术。上的扩散氢的影响焊缝的力学性能决定four-point-bend的测试。确定了利用声发射技术。

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