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Structural Evolution of Nanocrystalline Nickel-Tungsten Alloys Upon Mechanical Alloying with Subsequent Annealing

机译:机械合金化并随后退火后的纳米晶镍钨合金的结构演变

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In the current study, the two alloys, Ni-20 at. pct W and Ni-35 at. pct W, were mechanically alloyed and subsequently heat treated to evaluate their structural variations using X-ray dif?fraction, scanning, and transmission electron microscopy, and differential thermal analysis. In addition, the effect of Fe contamination on the progress of mechanical alloying was investigated. The results showed that the Ni-20 at. pct W contained only Ni(W) solid solution even after prolonged milling times, while the Ni-35 at. pct W was amorphized after 40 hours of milling. The composition of the amorphized alloy was estimated to be Ni-31 at. pct W. Furthermore, it was demonstrated that the nanocrystalline NiW intermetallic compound was stable at tem?peratures greater than 1303 K (1030 °C) and did not completely vanish upon peritectoid reaction. Consequently, an exceptional grain coarsening resistance was observed at high tem?peratures near the melting points. The mechanisms involved in this outstanding thermal stability were also probed.
机译:在当前的研究中,这两种合金为Ni-20 at。 pct W和Ni-35 at。对pct W进行机械合金化,然后进行热处理,以使用X射线衍射,扫描和透射电子显微镜以及差热分析来评估其结构变化。此外,研究了铁污染对机械合金化过程的影响。结果表明,Ni-20为at。即使经过延长的研磨时间,pct W也仅包含Ni(W)固溶体,而Ni-35的固溶体。研磨40小时后,pct W非晶化。非晶态合金的组成估计为Ni-31at。 pct W.此外,已证明纳米晶NiW金属间化合物在大于1303 K(1030°C)的温度下稳定,并且在腹膜反应后不会完全消失。因此,在接近熔点的高温下观察到了优异的抗晶粒粗化性。还探讨了这种出色的热稳定性所涉及的机理。

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