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Influence of heat input in electron beam process on microstructure and properties of duplex stainless steel welded interface

机译:电子束过程中的热量输入对双相不锈钢焊接界面组织和性能的影响

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摘要

Graphical abstractDisplay OmittedHighlightsOptimising heat input in electron beam welding cannot suppress Cr2N precipitation.Weld had lower toughness and poorer corrosion resistance than base metal.Ferrite was attacked due to lower pitting resistance equivalent number.Optimising heat input for improving microstructure and properties is limited.AbstractThe influence of heat input in electron beam (EB) process on microstructure, mechanical properties, and pitting corrosion resistance of duplex stainless steel (DSS) welded interface was investigated. The rapid cooling in EB welding resulted in insufficient austenite formation. The austenite mainly consisted of grain boundary austenite and intragranular austenite, and there was abundant Cr2N precipitation in the ferrite. The Ni, Mo, and Si segregation indicated that the dendritic solidification was primarily ferrite in the weld. The weld exhibited higher hardness, lower toughness, and poorer pitting corrosion resistance than the base metal. The impact fractures of the welds were dominated by the transgranular cleavage failure of the ferrite. The ferrite was selectively attacked because of its lower pitting resistance equivalent number than that of austenite. The Cr2N precipitation accelerated the pitting corrosion. In summary, the optimised heat input slightly increased the austenite content, reduced the segregation degree and ferrite texture intensity, decreased the hardness, and improved the toughness and pitting corrosion resistance. However, the effects were limited. Furthermore, optimising the heat input could not suppress the Cr2N precipitation. Taking into full consideration the microstructure and properties, a heat input of 0.46 kJ/mm is recommended for the EB welding of DSS.
机译: 图形摘要 < ce:simple-para>省略显示 突出显示 优化热量输入电子束焊接不能抑制Cr 2 N沉淀。 焊接后韧性降低,连铸性能下降 铁素体由于抗点蚀等效值降低而受到攻击。 为改善显微组织和性能而优化热量输入是有限的。 摘要< / ce:section-title> 电子束中热量输入的影响(对双相不锈钢(DSS)焊接界面的组织,力学性能和耐点蚀性进行了研究。 EB焊接中的快速冷却导致奥氏体形成不足。奥氏体主要由晶界奥氏体和晶内奥氏体组成,铁素体中有大量的Cr 2 N沉淀。 Ni,Mo和Si的偏析表明,树枝状凝固主要是焊缝中的铁素体。与母材相比,焊缝具有更高的硬度,更低的韧性和更差的耐点蚀性。焊缝的冲击断裂主要由铁素体的沿晶分裂引起。由于铁素体的耐点蚀当量数比奥氏体低,因此有选择地腐蚀。 Cr 2 N沉淀加速了点蚀。综上所述,优化的热输入稍微增加了奥氏体含量,降低了偏析度和铁素体织构强度,降低了硬度,提高了韧性和抗点蚀性。但是,效果是有限的。此外,优化热量输入并不能抑制Cr 2 N的沉淀。考虑到组织和性能,建议在DSS的EB焊接中输入热量为0.46 kJ / mm。

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  • 来源
    《Applied Surface Science》 |2018年第30期|352-366|共15页
  • 作者单位

    School of Materials Science and Engineering, Tianjin University,Tianjin Key Laboratory of Advanced Joining Technology;

    School of Materials Science and Engineering, Tianjin University,Tianjin Key Laboratory of Advanced Joining Technology;

    School of Materials Science and Engineering, Tianjin University,Tianjin Key Laboratory of Advanced Joining Technology;

    School of Materials Science and Engineering, Tianjin University,Tianjin Key Laboratory of Advanced Joining Technology;

    School of Materials Science and Engineering, Tianjin University,Tianjin Key Laboratory of Advanced Joining Technology;

    School of Materials Science and Engineering, Tianjin University,Tianjin Key Laboratory of Advanced Joining Technology;

    School of Materials Science and Engineering, Tianjin University,Tianjin Key Laboratory of Advanced Joining Technology;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Duplex stainless steel; Electron beam welding; Heat input; Microstructure; Low-temperature toughness; Pitting corrosion;

    机译:双相不锈钢;电子束焊接;热输入;显微组织;低温韧性;点蚀;

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