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Control of eta carbide formation in tungsten carbide powders sputter-coated with (Fe/Ni/Cr)

机译:(Fe / Ni / Cr)溅射碳化钨粉末中碳化铁的形成控制

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摘要

Composite powders of tungsten carbide with variable coating contents of Fe/Ni/Cr based alloys (1-15 wt.%) were prepared by sputtering. The coated powders have revealed a good performance to shape-forming and sintering. However, the presence of nanocrystalline coatings could enhance the formation of a brittle phase during sintering, named [eta]-phase, (M, W)6C. To investigate this effect, the powders were heat-treated at variable temperatures, up to 1400 °C. For comparison, conventionally prepared powders were studied, too, and the content of [eta]-phase was found to be higher for the sputter-coated ones. This result is attributed to the content of binder elements with affinity to carbon, like chromium, enhanced by the difference on binder characteristics, such as nanocrystallinity and morphology. It was concluded that an effective control of the reaction can be achieved by increasing in the binder composition the ratio between the elements without affinity and those with affinity to carbon and/or enlarging the carbon content.
机译:通过溅射制备具有可变的Fe / Ni / Cr基合金涂层含量(1-15wt。%)的碳化钨复合粉末。涂覆的粉末显示出良好的形状形成和烧结性能。然而,纳米晶涂层的存在可以增强在烧结过程中脆性相的形成,称为η相,(M,W)6C。为了研究这种效果,将粉末在高达1400°C的可变温度下进行了热处理。为了比较,也研究了常规制备的粉末,并且发现对于溅射涂覆的粉末,η相的含量较高。该结果归因于对碳(如铬)具有亲和力的粘合剂元素的含量,其由于粘合剂特性(例如纳米结晶度和形态)的差异而增加。结论是,通过增加粘合剂组合物中不具有亲和力的元素与具有对碳的亲和力的元素之间的比例和/或增加碳含量,可以实现对反应的有效控制。

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