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Synthesis and consolidation of W-Cu composite powders with silver addition

机译:添加银的钨铜复合粉末的合成与固结

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Homogeneous and nanostructured W-19 wt.%Cu-l wt%Ag and W-10wt%Cu-10wt.%Ag composite powders were prepared via a chemical precipitation method, with the aim of surveying the effect of silver on the properties of tungsten-copper composites. For this purpose, ammonium metatungstate, copper nitrate and silver nitrate with predetermined weight proportion were separately dissolved in distilled water. Furthermore, W-20 wt.%Cu composite powders were provided for comparison. The initial precipitates were obtained by reacting a mixture of the mentioned solutions under certain pH and temperature. The precursor precipitates were then washed, dried, and calcined in air to form oxide powders. In the next step, the reduction was carried out in hydrogen atmosphere to convert them into the final nanocomposite powders. The resulting powders were evaluated using X-ray diffraction (XRD), thermogravimetry (TG) and scanning electron microscopy (SEM) techniques. The effect of sintering temperature was investigated on densification and hardness of the powders compacts. The results showed that at all sintering temperatures, by increasing in the amount of silver, powders showed better sinterability compared to W-20 wt.%Cu powders. Maximum relative densities of 97.7%, 98.2% and 99.6% were achieved for W-20 wt%Cu, W-19 wt.%Cu-l wt%Ag and W-10 wt.%Cu-10wt%Ag compacts sintered at 1200 °C, respectively. Moreover, maximum hardness of 359, 349 and 255 Vickers were resulted for W-20 wt.%Cu, W-19 wt.%Cu-l wt.%Ag and W-10 wt.%Cu-10 wt.%Ag compacts sintered at 1200 °C, respectively.
机译:通过化学沉淀法制备了均相和纳米结构的W-19 wt。%Cu-1 wt%Ag和W-10wt%Cu-10wt。%Ag复合粉末,目的是研究银对钨性能的影响-铜复合材料。为此,将预定重量比例的偏钨酸铵,硝酸铜和硝酸银分别溶解在蒸馏水中。此外,提供W-20重量%的Cu复合粉末用于比较。通过使所述溶液的混合物在一定pH和温度下反应获得初始沉淀物。然后将前体沉淀物洗涤,干燥并在空气中煅烧以形成氧化物粉末。在下一步中,在氢气气氛中进行还原以将它们转化为最终的纳米复合粉末。使用X射线衍射(XRD),热重分析(TG)和扫描电子显微镜(SEM)技术评估所得粉末。研究了烧结温度对粉末压坯致密性和硬度的影响。结果表明,在所有烧结温度下,与W-20 wt。%Cu粉末相比,通过增加银含量,粉末显示出更好的烧结性。对于在1200烧结的W-20 wt%Cu,W-19 wt。%Cu-1 wt%Ag和W-10 wt。%Cu-10wt%Ag压块,最大相对密度达到97.7%,98.2%和99.6%分别为℃。此外,对于W-20重量%的Cu,W-19重量%的Cu-1重量%的Ag和W-10重量%的Cu-10重量%的Ag压块,获得了359、349和255维氏的最大硬度。分别在1200°C下烧结。

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