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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 >Influence of heat treatment on the microstructure evolution and elevated temperature mechanical properties of Hastelloy-X processed by laser directed energy deposition
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Influence of heat treatment on the microstructure evolution and elevated temperature mechanical properties of Hastelloy-X processed by laser directed energy deposition

机译:热处理对激光定向能量沉积加工哈斯泰利-X的微观结构演化和高温力学性能的影响

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The microstructure and elevated temperature mechanical properties of Hastelloy-X (Hast-X) bulk structures built using Laser Directed Energy Deposition (LDED) based Additive Manufacturing is investigated in as-built (AB) and heat-treated (HT) conditions. Microscopic analysis show the presence of fine cellular and dendritic growth in AB samples and recrystallized and coarsened equiaxed grains in HT samples. The AB samples revealed random grain orientation with slightly preferred texture along the < 100 > plane, unlike in the HT samples. Further, the AB samples revealed the elemental segregation of Mo, Si and C and precipitation of Mo-rich carbides, which are absent in the HT samples. Micro tensile test results at ambient temperature showed excellent agreement with the mechanical properties obtained from automated ball indentation (ABI) tests of LDED built Hast-X in AB condition. Subsequently, ABI tests are used to evaluate the mechanical properties in AB and HT conditions from ambient temperature to 873 K. It is observed that the strength and ABI hardness decreased with increase in test temperature, while the strain hardening exponent and uniform ductility showed an opposite trend. The yield strength (YS) of AB sample is higher than conventional sample, while YS of HT sample is similar to the YS of conventionally processed wrought Hast-X taken from literature at all test temperatures. Further, the indentation size and material pile up around the indentation also increased with heat-treatment and increase in the test temperature. This study paves a way towards the successful deployment of LDED built Hast-X for various applications in hostile conditions. (C) 2021 Elsevier B.V. All rights reserved.
机译:研究了基于激光定向能量沉积(LDED)技术的添加剂制造方法制备的Hastelloy-X(Hast-X)块状结构在竣工(AB)和热处理(HT)条件下的微观结构和高温力学性能。微观分析表明AB样品中存在细细胞和树枝状生长,HT样品中存在重结晶和粗化的等轴晶粒。与HT样品不同,AB样品显示出沿<100>平面的随机晶粒取向,具有略微优先的纹理。此外,AB样品显示了钼、硅和碳的元素偏析,以及富钼碳化物的沉淀,而这在HT样品中是不存在的。环境温度下的微拉伸试验结果与AB条件下LDED Hast-X的自动球压入(ABI)试验获得的力学性能非常一致。随后,ABI试验用于评估AB和HT条件下从环境温度到873 K的机械性能。观察到,强度和ABI硬度随着试验温度的升高而降低,而应变硬化指数和均匀延性则呈现相反的趋势。AB试样的屈服强度(YS)高于常规试样,而HT试样的屈服强度(YS)与文献中所有试验温度下的常规加工Hast-X试样的屈服强度(YS)相似。此外,压痕尺寸和压痕周围的材料堆积也随着热处理和试验温度的升高而增加。这项研究为在恶劣条件下成功部署LDED-BUILD Hast-X应用铺平了道路。(c)2021爱思唯尔B.V.保留所有权利。

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