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首页> 外文期刊>Journal of Materials Science >Reactive sintering of boron-doped Ni76Al24 intermetallic
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Reactive sintering of boron-doped Ni76Al24 intermetallic

机译:掺硼Ni76Al24金属间化合物的反应烧结

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A preliminary investigation into the formation of boron-doped nickel-rich Ni3Al with boron additions up to 2 wt% (i.e. to levels above the equilibrium solid solubility limit of boron in Ni3Al) from elemental powders by reaction synthesis was carried out. The application of reaction synthesis was seen as a low-energy alternative to the production of Ni3Al/boride composite suitable for wear applications. X-ray diffraction, Neutron diffraction, SEM/EDS,WDS, Image analysis, Archimedes principle and Rockwell hardness measurements; were used to study the effect of boron addition on the final microstructure, average grain size, bulk density and hardness of as-prepared Ni76Al24. Up to 0.3 wt% boron content, the microstructure consisted of single-phase Ni3Al, however, at a boron content of 0.5 wt% an apparent transition from a single phase microstructure to a two-phase intermetallic/boride composite microstructure was observed, which dominated when the boron content increased, up to 2 wt%. The two-phase microstructure was identified as Ni3Al (particles) within an Ni41Al5B12 boride matrix, with no remaining un-reacted boron. The boron addition was found to increase the Rockwell hardness of Ni3Al via two mechanisms. Below the solubility limit, the increase in hardness was due to solution hardening. Above 0.5 wt%B, solution hardening in addition to the formation of the harder boride phase, were found to amount to up to 50% increase in the hardness compared with boron free Ni3Al. The extrusion of semi-molten beads at the surface of the compact at high B-content may be a limiting factor, in the formation of Ni3Al/boride composites via this route. (C) 2002 Kluwer Academic Publishers. [References: 18]
机译:通过反应合成初步研究了由元素粉末形成的硼掺杂的富镍镍Ni3Al,其中硼的添加量高达2 wt%(即高于硼在Ni3Al中的平衡固溶极限)。反应合成的应用被认为是生产适合磨损应用的Ni3Al /硼化物复合材料的一种低能耗替代品。 X射线衍射,中子衍射,SEM / EDS,WDS,图像分析,阿基米德原理和洛氏硬度测量;用来研究硼的添加对最终制备的Ni76Al24的最终显微组织,平均晶粒尺寸,堆积密度和硬度的影响。硼含量高达0.3 wt%时,显微组织由单相Ni3Al组成,然而,硼含量为0.5 wt%时,观察到从单相显微组织到两相金属间化合物/硼化物复合显微组织的明显转变,这占主导地位当硼含量增加时,可达2 wt%。两相显微组织被鉴定为Ni41Al5B12硼化物基质中的Ni3Al(颗粒),没有剩余的未反应硼。发现硼的添加通过两种机理增加了Ni3Al的洛氏硬度。低于溶解度极限,硬度增加是由于溶液硬化。高于0.5 wt%B,与不含硼的Ni3Al相比,除形成较硬的硼化物相外,溶液硬化还增加了高达50%的硬度。在通过这种途径形成Ni3Al /硼化物复合材料时,高B含量的坯体表面半熔融珠粒的挤出可能是一个限制因素。 (C)2002 Kluwer学术出版社。 [参考:18]

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