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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Additive manufacturing of a new Fe-Cr-Ni alloy with gradually changing compositions with elemental powder mixes and thermodynamic calculation
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Additive manufacturing of a new Fe-Cr-Ni alloy with gradually changing compositions with elemental powder mixes and thermodynamic calculation

机译:新型Fe-Cr-Ni合金的添加剂制造具有逐渐变化的元素粉末混合物和热力学计算的组合物

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It is becoming an urgent need to synthesize novel alloy possessing both corrosion resistance and sufficient plasticity to meet various functionality requirements in severe corrosion working environment. This study introduced a new Fe-Cr-Ni-based alloy with gradient composition which was fabricated by additive manufacturing with pre-mixed elemental powder. A thin wall sample was fabricated from bottom to top layer by layer following four composition designs (Fe-16Cr-8Ni, Fe-14Cr-16Ni, Fe-12Cr-23Ni, and Fe-9Cr-28Ni) to achieve the transition from ferritic phase to austenite phase. The elemental powders' shape and size distribution were characterized and analyzed first. The mixing enthalpy for the three elements was studied since it can impact on the deposits homogeneity. Microscopic metallography of the sample was acquired to analyze the microstructure. Then, the phase identification was investigated by X-ray diffraction (XRD). Energy dispersive spectroscopy (EDS) analysis examined the composition in the sample. The results indicate that the microstructure of regions with 8 and 16% of Ni was mainly the lathy and skeletal morphologies, while standard austenite morphology, cells, and dendrites were observed in the regions with 23 and 28% Ni. Then, Vickers hardness test was used to observe the gradually changing hardness profile. In addition, a thermodynamic modeling was employed to predict the Fe-Cr-Ni alloy's formed phase at room temperature, then compared with the XRD pattern. The experimental-computational approach described herein for characterizing the new Fe-Cr-Ni alloy can be used to improve the understanding and design of other new alloys.
机译:它正在成为迫切需要合成具有耐腐蚀性和充分可塑性的新型合金,以满足严重腐蚀工作环境中的各种功能要求。该研究介绍了一种具有梯度组合物的新型Fe-Cr-Ni合金,其通过与预混元素粉末的添加剂制造制造的梯度组合物。在四个组成设计(Fe-16Cr-8Ni,Fe-14Cr-16Ni,Fe-12cr-23ni和Fe-9cr-28ni)之后,通过层由底部到顶层制成薄壁样品(Fe-16cr-8ni,Fe-14cr-16ni,Fe-9cr-28ni),以实现从铁素体相的过渡奥氏体阶段。首先表征和分析了元素粉末形状和尺寸分布。研究了三种元素的混合焓,因为它会影响沉积物均匀性。获得样品的微观金相术以分析微观结构。然后,通过X射线衍射(XRD)研究相鉴定。能量分散光谱(EDS)分析检测样品中的组合物。结果表明,具有8和16%的Ni的区域的微观结构主要是损伤和骨骼形态,而在具有23和28%Ni的区域中观察到标准奥氏体形态,细胞和树枝状物。然后,使用维氏硬度测试来观察逐渐变化的硬度曲线。此外,使用热力学建模来预测Fe-Cr-Ni合金在室温下形成的相,然后与XRD图案进行比较。用于表征新Fe-Cr-Ni合金的实验计算方法可用于改善其他新合金的理解和设计。

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