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首页> 外文期刊>Journal of Materials Science >THE EFFECT OF ELEVATED TEMPERATURE AND SILICON ADDITION ON A COBALT-BASED WEAR RESISTANT SUPERALLOY
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THE EFFECT OF ELEVATED TEMPERATURE AND SILICON ADDITION ON A COBALT-BASED WEAR RESISTANT SUPERALLOY

机译:高温和硅添加对基于钴的耐磨高温合金的影响

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摘要

The effects of an elevated temperature and a 5 wt% silicon addition on the resultant microstructure and inherent phases of Stellite 6 were investigated by using room and high temperature optical microscopy, X-ray diffraction, scanning electron microscopy (SEM) and also bulk hardness and microhardness measurements. It has been observed that exposing Stellite 6 to heat treatments at 1000 degrees C results in a characteristic textured structure and coarsening of interdendritic regions due to bulk diffusion. In addition, both dendritic and interdendritic hardness values increase due to texture formation and increased amounts of carbide and intermetallic phases, respectively. On the other hand, silicon addition to Stellite 6 causes the transformation of the original spongy dendritic microstructure in as-cast Stellite 6 to a eutectic dendritic and skeleton interdendritic structure. Also, when silicon added Stellite 6 was heat treated at 1000 degrees C, particulates emanating from the interdendritic skeleton become irregularly dispersed in the dendritic region. In addition, similarly to Stellite 6; a high temperature heat treatment results in an increase in hardness values of silicon added Stellite 6 due to the presence of an Co2Si intermetallic phase. [References: 16]
机译:通过使用室温和高温光学显微镜,X射线衍射,扫描电子显微镜(SEM)以及体硬度和硬度,研究了高温和添加5 wt%的硅对Stellite 6所得微观结构和固有相的影响。显微硬度测量。已经观察到,将Stellite 6暴露于1000摄氏度的热处理会导致特征结构化结构,并且由于体扩散而使枝晶间区域变粗。另外,由于织构的形成以及碳化物和金属间相的数量增加,树枝状和树枝状硬度值均增加。另一方面,向Stellite 6中添加硅会导致铸态Stellite 6中的原始海绵状树枝状微观结构转变为共晶树枝状和骨架树枝状结构。此外,当在1000℃下对添加了硅的Stellite 6进行热处理时,从树突间骨架发出的颗粒不规则地分散在树突区域中。此外,与Stellite 6类似;高温热处理由于存在Co2Si金属间相而导致添加了Stellite 6的硅的硬度值增加。 [参考:16]

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