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Characterization of Nanometric-Sized Carbides Formed During Tempering of Carbide-Steel Cermets

机译:碳化物-金属金属陶瓷回火过程中形成的纳米尺寸碳化物的表征

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The aim of this article of this paper is to present issues related to characterization of nanometric-sized carbides, nitrides and/or carbonitrides formed during tempering of carbide-steel cermets. Closer examination of those materials is important because of hardness growth of carbide-steel cermet after tempering. The results obtained during research show that the upswing of hardness is significantly higher than for high-speed steels. Another interesting fact is the displacement of secondary hardness effect observed for this material to a higher tempering temperature range. Determined influence of the atmosphere in the sintering process on precipitations formed during tempering of carbide-steel cermets. So far examination of carbidesteel cermet produced by powder injection moulding was carried out mainly in the scanning electron microscope. A proper description of nanosized particles is both important and difficult as achievements of nanoscience and nanotechnology confirm the significant influence of nanocrystalline particles on material properties even if its mass fraction is undetectable by standard methods. The following research studies have been carried out using transmission electron microscopy, mainly selected area electron diffraction and energy dispersive spectroscopy. The obtained results and computer simulations comparison were made.
机译:本文的目的是提出与表征碳化金属陶瓷回火过程中形成的纳米尺寸碳化物,氮化物和/或碳氮化物有关的问题。由于回火后硬质合金金属陶瓷的硬度增加,因此仔细检查这些材料非常重要。研究过程中获得的结果表明,硬度的上升明显高于高速钢。另一个有趣的事实是该材料在较高的回火温度范围内观察到的二次硬度效应的位移。在烧结过程中确定的气氛对碳化金属陶瓷回火过程中形成的沉淀的影响。到目前为止,主要通过扫描电子显微镜对通过粉末注射成型生产的碳化金属陶瓷进行检查。纳米颗粒的正确描述既重要又困难,因为纳米科学和纳米技术的成就证实了纳米晶体颗粒对材料性能的重大影响,即使其质量分数无法通过标准方法检测到。使用透射电子显微镜进行了以下研究,主要是选择区域电子衍射和能量色散光谱。对获得的结果和计算机仿真进行了比较。

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