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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Evaluating promising applications of a new nanomaterial produced by accumulative roll bonding process: A preliminary multiple criteria decision-making approach
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Evaluating promising applications of a new nanomaterial produced by accumulative roll bonding process: A preliminary multiple criteria decision-making approach

机译:评估通过累积辊粘合过程产生的新型纳米材料的有前途的应用:初步多重标准决策方法

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摘要

Although many new materials are developed in laboratories, most of them do not get commercialized. The ranking of applications gives material engineers a better understanding of the advantages and disadvantages of any new or improved material under development. This is possible through simultaneously considering different technical, economic, and environmental criteria. It also helps to guide future research on developing new materials and identify the requirements that any new material must fulfill for the most fitting applications. The appropriateness of the proposed approach for evaluating promising applications of a new material is demonstrated using a case study in nanostructured Al/Al2O3 metal matrix composite produced via the accumulative roll bonding process. Al/Al2O3 metal matrix composite provides superior mechanical and physical properties and accumulative roll bonding is a severe plastic deformation process that can be applied to the continuous production of bulky sheet materials. The material is in growing use and becoming indispensable in several key industrial sectors such as aerospace, automobile, marine, and defense, and the enhanced properties created by accumulative roll bonding will only increase its potential. The innovative approach described in this paper will be of interest to academic researchers and practitioners involved in new materials, processing, and product development.
机译:虽然在实验室开发了许多新材料,但其中大多数都没有商业化。申请的排名使材料工程师更好地了解任何新的或改进的产品的优缺点。这是可以同时考虑不同的技术,经济和环境标准。它还有助于引导未来的开发新材料的研究,并确定任何新材料必须满足最拟合应用的要求。使用纳米结构的Al / Al2O3金属基质复合材料在通过累积辊键合工艺生产的案例研究,证明了所提出的评估新材料的拟议方法的适当性。 Al / Al2O3金属基质复合材料提供卓越的机械和物理性能,累积辊粘合是一种严重的塑性变形过程,可以应用于庞大的板材的连续生产。该材料在越来越多的使用中,在若干关键工业领域中不可或缺,例如航空航天,汽车,海洋和防御,并且通过累积轧辊粘合产生的增强性能将仅增加其潜力。本文描述的创新方法将对参与新材料,加工和产品开发的学术研究人员和从业者感兴趣。

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