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Synthesis and Characterization of Nickel-Alumina Composites from Recycled Nickel Powder

机译:回收镍粉合成镍铝复合材料及其表征

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The recycling of metallic waste to create more valuable materials and their valorization into upgraded metal-based composites constitutes an important field of study. The composite industry nowadays considers environmental improvements as important as other properties of the materials. In the present paper, nickel powder was recycled from ferrous scrap, a low-cost and largely available material, by an effective hydrometallurgical recovery process. Then, this recycled powder was successfully used along with particulateα-alumina to prepare oblong nickel-based composite specimens with ceramic reinforcement loadings ranging from 0 to 30 wt.% by applying powder processing manufacturing techniques including cold isostatic pressing (CIP) and sintering. The microstructures obtained were characterized, the specimens were subjected to three-point bend tests, and their fracture behaviour was evaluated. By increasing the % ceramic reinforcement content, density clearly decreases while strengthening is achieved, thus leading to development of lightweight and enhanced oblong nickel-alumina composites. The composite microstructure, and particularly the metal-ceramic interface bonding, has a strong impact on fracture behaviour upon external loading.
机译:金属废物的循环利用以创造更多有价值的材料,以及将其价值评估为升级的金属基复合材料构成了重要的研究领域。如今,复合材料行业认为改善环境与材料的其他性能一样重要。在本文中,镍粉是通过有效的湿法冶金回收工艺从铁屑废料中回收的,铁屑废料是一种低成本且可大量获得的材料。然后,通过应用包括冷等静压(CIP)和烧结在内的粉末加工制造技术,将该回收粉末与α-氧化铝颗粒一起成功用于制备陶瓷增强载荷范围为0至30wt。%的长方形镍基复合材料样品。对获得的显微组织进行表征,对样品进行三点弯曲测试,并评估其断裂行为。通过增加陶瓷增强剂的百分比,密度明显降低,同时实现了增强,从而导致了轻质和增强的长方形镍铝复合材料的发展。复合材料的微结构,特别是金属-金属界面的结合,对外部载荷下的断裂行为有很大的影响。

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