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A review on the fabrication techniques of functionally graded ceramic-metallic materials in advanced composites

机译:先进复合材料中功能梯度陶瓷金属材料的制备技术综述

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Whenever two or more dissimilar materials are bonded, large jump in the stresses occurred at the interface during the fabrication will leads to the delamination and poor load-bearing performance on the final structures. Functionally graded material (FGM) which has compositional and microstructure gradient along its thickness was introduced to be a great solution to this problem. Aiming for the best technique to be implemented, this paper presents an extensive review on the various fabrication techniques of FGMs composed by metallic and ceramic phases. Fabrication techniques in this field of work have incorporated many concepts from different background of gradation processes and consolidation or sintering processes. Each of these processes however has their own advantages and disadvantages. The best technique to be applied can be found by considering some critical issues highlighted in published literatures. This review concluded the powder metallurgy (PM) as the most suitable technique certainly for mass production and up-scaling of the FGMs. The selection was strengthen after considering the advantages of the technique such as process cost-effectiveness, reliability of the practical implementation of the process and the high capability of the process to control the quality of the FGMs.
机译:无论何时将两种或更多种不同的材料粘合在一起,在制造过程中界面处出现的应力大跳变都会导致最终结构的分层和不良的承重性能。引入功能梯度材料(FGM)沿其厚度方向具有成分和微观结构梯度,可以很好地解决此问题。为了实现最佳技术,本文对由金属和陶瓷相组成的FGM的各种制造技术进行了广泛的综述。在该工作领域中的制造技术已经结合了来自渐变工艺和固结或烧结工艺的不同背景的许多概念。但是,每个过程都有其自身的优点和缺点。通过考虑已发表文献中突出的一些关键问题,可以找到要应用的最佳技术。这项审查得出结论,粉末冶金(PM)无疑是最适合大规模生产和扩大FGM规模的技术。考虑到该技术的优势,例如工艺成本效益,工艺实际实施的可靠性以及工艺对FGMs的控制能力强,选择更加严格。

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