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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >A comparative investigation on MIM418 superalloy fabricated using gas- and water-atomized powders
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A comparative investigation on MIM418 superalloy fabricated using gas- and water-atomized powders

机译:气体和水雾化粉末制造的MIM418高温合金的比较研究

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摘要

Gas atomized (GA) and water atomized (WA) 1(418 superalloy powders were injection molded, and a detail comparative investigation on microstructure and mechanical properties of MIM418 superalloys was carried out. The GA sample possesses higher sintering density than the WA sample due to its lower oxygen content, narrow pore size distribution and higher packing density. Both superalloys achieve near full dense after HIPing, and increasing HIPing temperature leads to grain growth and leaving carbide particles at the site of the original prior particle boundaries (PPBs) within the new grains. The GA powder leads to finer and more homogeneous gamma' precipitates and carbides, as well as equiaxed grains (31 mu m), while the WA powder results in larger gamma' precipitates with higher coarsening rate, higher concentration of PPBs, and smaller grain size (26 mu m). The GA sample exhibits satisfactory levels of tensile strength (1425 MPa) and yield strength (1004 MPa) combined with a significantly improved elongation (19.4%), which is suitable for high performance applications. The WA sample has comparable mechanical properties with that of the cast K418 superalloy, which can be used for less critical and low cost demand applications. (C) 2015 Elsevier B.V. All rights reserved.
机译:分别注射了气体雾化(GA)和水雾化(WA)1(418)粉末,并对MIM418高温合金的组织和力学性能进行了详细的对比研究,GA样品的烧结密度高于WA样品。它的低氧含量,狭窄的孔径分布和更高的堆积密度两种超合金在HIP处理后均达到近乎全密实的状态,而HIPing温度升高会导致晶粒长大,并使碳化物颗粒留在新的原始颗粒边界(PPB)内GA粉末会导致更细和更均匀的γ'沉淀和碳化物,以及等轴晶粒(31微米),而WA粉末会导致更大的γ'沉淀,具有更高的粗化率,更高的PPB浓度和更小的颗粒。 GA样品的抗拉强度(1425 MPa)和屈服强度(1004 MPa)令人满意,并具有显着的水平伸长率提高了(19.4%),适用于高性能应用。 WA样品具有与铸造K418高温合金相当的机械性能,可用于不太关键和低成本需求的应用。 (C)2015 Elsevier B.V.保留所有权利。

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