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INFLUENCE OF THE PROCESSING TECHNIQUE ON THE PROPERTIES OF NB-SI INTERMETALLIC COMPOSITES FOR HIGHTEMPERATURE APPLICATIONS PROCESSED BY MIM AND HIP

机译:加工技术对MIM和HIP处理高温高度应用的Nb-Si金属间复合材料性能的影响

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Nb-Si intermetallic composites feature high-temperature strength at rather low densities. This combination of properties offers a potential to replace nickel-based superalloys that are currently used for structural components of high-temperature applications, such as aircraft or land-based turbines. Previous studies revealed that Metal Injection Molding (MIM) of gas-atomized powder of the alloy composition Nb-20Si-23Ti-6Al-3Cr-4Hf (at.%) leads to a fine-grained microstructure with homogeneously distributed silicide particles. In this study, powder of the same alloy was processed by MIM as well as Hot Isostatic Pressing (HIP). Some of the sintered MIM samples were subjected to HIP for further densification. Results of all three processing techniques MIM, HIP and MIM+HIP were compared concerning residual porosity, microstructure, phase distribution and mechanical properties at ambient and elevated temperatures.
机译:Nb-Si金属间复合材料具有相当低密度的高温强度。这种性能的组合提供了更换基于镍的超合金,目前用于高温应用的结构部件,例如飞机或陆基涡轮机。以前的研究表明,合金组合物Nb-20si-23Ti-6Al-3Cr-4HF(At%)的气体雾化粉末的金属注射成型(MIM)导致具有均匀分布的硅化物颗粒的细粒微观结构。在该研究中,通过MIM和热等静压(臀部)加工相同合金的粉末。将一些烧结的MIM样品进行臀部以进一步致密化。将所有三种加工技术MIM,髋关节和MIM +髋关节关于在环境和升高的温度下进行残余孔隙率,微观结构,相分布和机械性能的结果。

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