首页> 美国卫生研究院文献>Materials >On the Role of Processing Parameters in Producing Recycled Aluminum AA6061 Based Metal Matrix Composite (MMC-AlR) Prepared Using Hot Press Forging (HPF) Process
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On the Role of Processing Parameters in Producing Recycled Aluminum AA6061 Based Metal Matrix Composite (MMC-AlR) Prepared Using Hot Press Forging (HPF) Process

机译:工艺参数在热压锻制HPA再生铝基AA6061金属基复合材料(MMC-AlR)中的作用

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摘要

Solid-state recycling, which involves the direct recycling of scrap metal into bulk material using severe plastic deformation, has emerged as a potential alternative to the conventional remelting and recycling techniques. Hot press forging has been identified as a sustainable direct recycling technique that has fewer steps and maintains excellent material performance. An experimental investigation was conducted to explore the hardness and density of a recycled aluminum-based metal matrix composite by varying operating temperature and holding time. A mixture of recycled aluminum, AA6061, and aluminum oxide were simultaneously heated to 430, 480, and 530 °C and forged for 60, 90, and 120 min. We found a positive increase in microhardness and density for all composites. The hardness increased approximately 33.85%, while density improved by about 15.25% whenever the temperature or the holding time were increased. Based on qualitative analysis, the composite endures substantial plastic deformation due to the presence of hardness properties due to the aluminum oxide embedded in the aluminum matrix. These increases were significantly affected by the operating temperature; the holding time also had a subordinate role in enhancing the metal matrix composite properties. Furthermore, in an effort to curb the shortage of primary resources, this study reviewed the promising performance of secondary resources produced by using recycled aluminum and aluminum oxide as the base matrix and reinforcement constituent, respectively. This study is an outline for machining practitioners and the manufacturing industry to help increase industry sustainability with the aim of preserving the Earth for our community in the future.
机译:固态回收涉及使用严重的塑性变形将废金属直接回收成块状材料,它已成为传统重熔和回收技术的潜在替代品。热压锻造已被认为是一种可持续的直接循环利用技术,其步骤少且材料性能优异。进行了实验研究,以通过改变工作温度和保持时间来探索再生铝基金属基复合材料的硬度和密度。将再生铝,AA6061和氧化铝的混合物同时加热到430、480和530°C,并锻造60、90和120分钟。我们发现所有复合材料的显微硬度和密度均呈正增长。每当温度或保温时间增加时,硬度增加约33.85%,密度增加约15.25%。基于定性分析,由于嵌入铝基质中的氧化铝具有硬度,因此复合材料可承受较大的塑性变形。这些增加受到工作温度的显着影响。保持时间在增强金属基复合材料的性能方面也起辅助作用。此外,为遏制一次资源的短缺,本研究回顾了分别以回收铝和氧化铝为基础基质和增强成分生产的二次资源的有前途的性能。这项研究为机械加工从业者和制造业概述,旨在帮助提高工业的可持续性,以期将来为我们的社区保护地球。

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