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Surface adsorption phenomenon during the preparation process of nano WC and ultrafine cemented carbide

机译:纳米WC和超细硬质合金制备过程中的表面吸附现象。

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摘要

The surface adsorption phenomena during the preparation process of nano tungsten carbide and WC-10Co-0.35VC-0.45Cr_3C_2 ultrafine cemented carbide were investigated by X-ray diffraction (XRD), scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDXS). It is shown that new phases are formed on the surface of nano tungsten carbide and the sinter skin of ultrafine cemented carbide due to the interaction among the impurity elements from the furnace or the impurity elements and alloy elements, accompanied with the change of the surface properties. Nevertheless, the formation of impurity elements containing phases on the sinter skin of cemented carbide does not result in any evidently abnormity in the inner microstructure. The tungsten carbide grains in cemented carbide are homogeneously distributed and well crystallized with an average grain size of 200-300 nm.
机译:通过X射线衍射(XRD),扫描电子显微镜(SEM)和能量色散X射线光谱法研究了纳米碳化钨和WC-10Co-0.35VC-0.45Cr_3C_2超细硬质合金的制备过程中的表面吸附现象( EDXS)。结果表明,由于炉中杂质元素或杂质元素与合金元素之间的相互作用,纳米碳化钨表面和超细硬质合金的烧结皮上形成了新的相,并伴随着表面性能的变化。 。然而,在硬质合金的烧结皮上形成含有相的杂质元素不会导致内部微观结构出现任何明显的异常。硬质合金中的碳化钨晶粒均匀分布并充分结晶,平均晶粒尺寸为200-300 nm。

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