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The Influence of Al2O3 Powder Morphology on the Properties of Cu-Al2O3 Composites Designed for Functionally Graded Materials (FGM)

机译:Al2O3粉末形态对功能梯度材料(FGM)设计的Cu-Al2O3复合材料性能的影响

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摘要

In order to meet the requirements of an increased efficiency applying to modern devices and in more general terms science and technology, it is necessary to develop new materials. Combining various types of materials (such as metals and ceramics) and developing composite materials seem to be suitable solutions. One of the most interesting materials includes Cu-Al2O3 composite and gradient materials (FGMs). Due to their potential properties, copper-alumina composites could be used in aerospace industry as rocket thrusters and components in aircraft engines. The main challenge posed by copper matrix composites reinforced by aluminum oxide particles is obtaining the uniform structure with no residual porosity (existing within the area of the ceramic phase). In the present paper, Cu-Al2O3 composites (also in a gradient form) with 1, 3, and 5 vol.% of aluminum oxide were fabricated by the hot pressing and spark plasma sintering methods. Two forms of aluminum oxide (alpha Al2O3 powder and electrocorundum) were used as a reinforcement. Microstructural investigations revealed that near fully dense materials with low porosity and a clear interface between the metal matrix and ceramics were obtained in the case of the SPS method. In this paper, the properties (mechanical, thermal, and tribological) of composite materials were also collected and compared. Technological tests were preceded by finite element method analyses of thermal stresses generated in the gradient structure, and additionally, the role of porosity in the formation process of composite properties was modeled. Based on the said modeling, technological conditions for obtaining FGMs were proposed.
机译:为了满足应用于现代设备以及更广义的科学和技术的提高效率的要求,有必要开发新材料。结合各种类型的材料(例如金属和陶瓷)并开发复合材料似乎是合适的解决方案。最有趣的材料之一包括Cu-Al2O3复合材料和梯度材料(FGM)。由于其潜在的性能,铜铝复合材料可在航空航天工业中用作火箭推进器和飞机发动机的组件。由氧化铝颗粒增强的铜基复合材料构成的主要挑战是获得均匀的结构,且无残留孔隙(存在于陶瓷相区域内)。在本文中,通过热压和火花等离子烧结方法制备了氧化铝含量为1、3和5%(体积)的Cu-Al2O3复合材料(也呈梯度形式)。两种形式的氧化铝(αAl2O3粉末和刚玉)用作增强材料。显微组织研究表明,采用SPS方法可得到几乎完全致密的材料,其孔隙率低,金属基体与陶瓷之间的界面清晰。本文还收集并比较了复合材料的性能(机械,热学和摩擦学)。在进行技术测试之前,先对梯度结构中产生的热应力进行有限元分析,然后对孔隙度在复合材料形成过程中的作用进行建模。基于上述建模,提出了获得女性生殖器残割的技术条件。

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