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Novel Ferritic Stainless Steel with Advanced Mechanical Properties and Significant Magnetic Responses Processed by Selective Laser Melting

机译:新型铁素体不锈钢具有先进的机械性能和选择性激光熔化处理的显着磁响应

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Novel ferritic stainless steel with advanced mechanical properties and significant magnetic responses was prepared by a selective laser melting (SLM) process from UNS S32707 hyper-duplex stainless steel (HDSS) powder prepared by a plasma rotating electrode process (PREP). The microstructure, mechanical properties, and soft magnetic properties of the sintered state were studied. The results show that ferritic stainless steel with a relative density of 98.2% (with the theoretical density of 7.8 g/cm(3)) can be prepared by SLM with a laser energy density of 87.96 J/mm(3) and 67 degrees of rotation of the upper and lower layers. The rapid cooling after sintering inhibits the formation of austenite, and the ferrite content reaches 98.5%. Sintered parts prepared by SLM have excellent mechanical properties. The measured tensile strength, yield strength, and the microhardness were 1493 MPa, 1391 MPa, and 528.7HV, respectively. The nitrogen content decreased by 33% during SLM. Nitrides precipitated at ferrite grain boundaries lower the ductility and toughness of sintered parts prepared by SLM. The measured elongation, the reduction of area, and the impact absorbing energy were 13.2%, 24.1%, and 18 J, respectively. The high ferrite content causes sintered parts prepared by SLM to have excellent soft magnetic properties. The specific saturation magnetization and the coercivity were 106Am(2)/kg and 1.79mT, respectively. This provided a new approach for the near net shaping of structural and functional integrated soft magnetic materials with both strength and corrosion resistance.
机译:通过通过等离子体旋转电极工艺(PREP)制备的UNS S32707超双相不锈钢(HDSS)粉末的选择性激光熔融(SLM)工艺制备具有先进的机械性能和显着磁反应的新型铁素体不锈钢。研究了烧结状态的微观结构,机械性能和软磁特性。结果表明,相对密度为98.2%(具有7.8g / cm(3))的铁素体不锈钢,可以通过SLM制备,激光能量密度为87.96J / mm(3)和67度上层和下层的旋转。烧结后的快速冷却抑制奥氏体的形成,铁氧体含量达到98.5%。 SLM制备的烧结部件具有优异的机械性能。测得的拉伸强度,屈服强度和微硬度分别为1493MPa,1391MPa和528.7HV。在SLM期间,氮含量降低了33%。在铁素体晶界沉淀氮化物降低了通过SLM制备的烧结部件的延展性和韧性。测量的伸长率,降低面积和抗冲击能量分别为13.2%,24.1%和18 j。高铁氧体含量使得SLM制备的烧结部件具有优异的软磁特性。特定饱和磁化和矫顽力分别为106AM(2)/ kg和1.79mt。这为具有强度和耐腐蚀性的结构和功能集成软磁材料的近净形状进行了新方法。

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