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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Thermal induced phase evolution of Fe-Fe3Ni functionally graded material fabricated using the wire-arc additive manufacturing process: An in-situ neutron diffraction study
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Thermal induced phase evolution of Fe-Fe3Ni functionally graded material fabricated using the wire-arc additive manufacturing process: An in-situ neutron diffraction study

机译:使用线弧添加剂制造工艺制造的Fe-Fe3Ni功能渐变材料的热诱导相位演化:原位中子衍射研究

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In the present research an Fe-Fe3Ni functionally graded material has been fabricated using an innovative wire-arc additive manufacturing process. Considering the residual bcc-alpha-Fe in the bulk material, a homogenization heat treatment is conducted to the as-fabricated alloy to transform the residual bcc lattice into fcc structure. During the entire heat treatment, the phase evolution process in Fe-Fe3Ni functionally graded material is in-situ characterized using the high-intensity neutron diffraction instrument WOMBAT, therefore the temperature profile is set linear to accurately extract phase volume fractions and thermal lattice strains in the specific regions. According to the results, the as-fabricated functionally graded material contains both fcc-Fe3Ni and bcc-alpha-Fe, while after heat treatment the bcc-alpha-Fe is dissolved into the Fe3Ni matrix and leads to lower hardness in the alloy. Also, the detected phase evolutions are mainly performed by the low Ni content section of the Fe-Fe3Ni functionally graded material. In addition, compared to the bcc lattice in the as-fabricated functionally graded material, the dissolved Fe more considerably restraint the Fe3Ni lattice deformation thus a much lower thermal expansion coefficient is measured from cooling than the heating process. (C) 2020 Elsevier B.V. All rights reserved.
机译:在本研究中,使用创新的线弧添加剂制造工艺制造FE-FE3NI功能梯度材料。考虑到散装材料中的残留BCC-α-Fe,将均质化热处理传导到制造合金中以将残留的BCC晶格转化为FCC结构。在整个热处理期间,使用高强度中子衍射仪POMBAT的FE-FE3NI功能梯度材料中的相位演化方法是原位的,因此温度曲线被设置为直链以精确提取相体积分数和热晶格菌株特定区域。根据结果​​,含有FCC-Fe3Ni和Bcc-α-Fe的质制品含有FCC-Fe3Ni和Bcc-α-Fe,而在热处理之后将BCC-α-Fe溶解在Fe3Ni基质中,并导致合金的硬度降低。而且,检测到的相变化主要由Fe-Fe3Ni功能梯度材料的低Ni含量部分进行。另外,与在以制造的功能梯度材料中的BCC晶格相比,溶解的Fe更大地约束Fe3Ni晶格变形,因此从冷却比加热过程测量了大得多的热膨胀系数。 (c)2020 Elsevier B.v.保留所有权利。

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