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Preparation of Ultrafine Tungsten-Based Alloy Powders by GNP-Reduction Method

机译:用GNP还原法制备超细钨基合金粉末

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A novel glycine-nitrate process (GNP)-reduction method has been developed to fabricate ultrafine tungsten heavy alloy powders, with ammonium metatungstate (AMT), iron nitrate nonahydrate (Fe(NO_3)_3·9H_2O), nickel nitrate hexahydrate (Ni(NO_3)_2·6H_2O) as raw materials and gylcine as a complexant and incendiary agent. Precursor powders were obtained by self-propagation reaction in a suspension containing above materials. The precursor powders were then hydrogen-reduced to obtain composite powders with 90W-7Ni-3Fe composition (wt.%). Phase constitution and morphology of the precursor powders and the reduced powders were characterized by X-ray diffraction (XRD) and scanning electron microscope (SEM). Chemical composition of resultant powders was analyzed by energy depressive spectrometer (EDS) analysis. It was shown that the GNP-reduction method produces ultrafine 90W-7Ni-3Fe powders with particle size of about 200 nm and highly dispersion of the composition.
机译:已经开发了一种新型甘氨酸 - 硝酸法(GNP) - 制定方法以制造超细钨重合金粉末,用甲碳钨酸铵(AMT),铁硝酸铁非水(Fe(NO_3)_3·9H_2O),硝酸镍六水合物(NI(NI_3 )_2·6H_2O)作为原料和酰氨基作为络合剂和烧蛋。通过在含有上述材料的悬浮液中进行自繁殖反应获得前体粉末。然后将前体粉末减少,得到具有90W-7NI-3Fe组合物(重量%)的复合粉末。通过X射线衍射(XRD)和扫描电子显微镜(SEM)表征前体粉末和降低粉末的相体构造和形态。通过能量抑制光谱仪(EDS)分析分析所得粉末的化学成分。结果表明,GNP还原方法产生超细90W-7Ni-3Fe粉末,粒径为约200nm,并高度分散的组合物。

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