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Densification and Structural Change of Mechanically Alloyed W-Cu Composites

机译:机械合金化钨铜复合材料的致密化和结构变化

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Fine-grained, high-density (97 + pct of theoretical density (TD)), 80W-20Cu wt pct (58W-42Cu at. pct) composites have been prepared using nonconventional alloying techniques. The W and Cu precursor powders were combined by a high-energy ball-milling procedure in air or hexane. The mechanically alloyed W + Cu powder mixtures were then cold pressed into green compacts and sintered at 1523 K. The milling medium and milling time were varied to increase product densities with a concomitant order-of-magnitude decrease in grain size. For densification, air was found to be a more effective medium than hexane. From microhardness measurements, it was concluded that the W-Cu alloys were dispersion and solution hardened, but were sensitive to entrapped residual impurities. X-ray diffraction (XRD), energy-dispersive X-ray spectroscopy (EDS), and scanning electron microscopy (SEM) analyses were used to demonstrate that the as-milled and sintered W-Cu alloy structures were metastable, decomposing into the starting W and Cu components upon heating at or above 723 K.
机译:已经使用非常规合金化技术制备了细粒,高密度(97 + pct理论密度(TD)),80W-20Cu wt pct(58W-42Cu at。pct)复合材料。通过在空气或己烷中的高能球磨工艺将W和Cu前体粉末合并。然后将机械合金化的W + Cu粉末混合物冷压成生坯,并在1523 K下烧结。改变研磨介质和研磨时间以增加产品密度,并随之降低粒度。为了致密化,发现空气是比己烷更有效的介质。从显微硬度测量可以得出结论,W-Cu合金是分散的和固溶硬化的,但是对残留的杂质很敏感。 X射线衍射(XRD),能量色散X射线光谱(EDS)和扫描电子显微镜(SEM)分析用于证明已研磨和烧结的W-Cu合金结构是亚稳态的,分解为起始在723 K或更高温度下加热时的W和Cu成分。

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