热源对增材制造双相不锈钢组织和性能的影响

D. Zhang, Aobo Liu, Bangzhao Yin, P. Wen
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引用次数: 1

摘要

奥氏体和铁素体平衡的两相组织赋予双相不锈钢优异的力学性能和较高的耐蚀性。随着DSS在腐蚀性环境中的使用越来越多,增材制造(AM)已被应用于DSS结构的制造。直接能量沉积(DED)技术,包括激光金属沉积(LMD)和线弧增材制造(WAAM),考虑到成本和尺寸的工业要求,被认为是有前途的增材制造工艺。成形质量、微观组织演变、力学性能和耐腐蚀性在很大程度上取决于增材制造过程中使用的热源。Super DSS 2594粉末和线材分别作为LMD和WAAM的原料。构建了缺陷较少的多层单壁体。对其化学成分和微观结构进行了表征。比较了不同热源对材料力学性能和电化学性能的影响。与WAAM样品相比,LMD样品的力学性能相对较低,耐腐蚀性较弱,这是由于LMD过程中能量强度较高,导致元素损失较多。结果表明,适当的合金元素含量和均匀分布对AM DSS零件的成形至关重要。
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Effect of heat sources on microstructure and properties of duplex stainless steels fabricated by additive manufacturing
The balanced two-phase microstructure of austenite and ferrite endows duplex stainless steels (DSSs) excellent mechanical properties and high corrosion resistance. Additive manufacturing (AM) has been applied to the fabrication of DSS structures with the increased use of DSSs in corrosive environment. Direct energy deposition (DED) technologies, including laser metal deposition (LMD) and wire arc additive manufacturing (WAAM), have been regarded as the promising AM processes considering the industrial requirement of cost and size. The formation quality, microstructure evolution, mechanical properties and corrosion resistance largely depends on the heat sources used in AM processes. Super DSS 2594 powder and wire were used as feedstocks respectively for LMD and WAAM. A single-wall body of multiple layers was built with few defects. The chemical composition and microstructure were characterized. The effect of heat sources on mechanical and electrochemical properties was compared. The LMD samples exhibited relatively lower mechanical properties and weaker corrosion resistance than WAAM samples, which was resulted by more element loss due to the higher energy intensity during the LMD process. The results indicated that a proper content and uniform distribution of alloying element is critical to AM DSS parts.
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