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The Influence of the Particle Size on the Adhesion Between Ceramic Particles and Metal Matrix in MMC Composites

机译:MMC复合材料中粒径对陶瓷颗粒与金属基体之间粘附力的影响

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摘要

This study investigated the influence of the particle size on the adhesion force between ceramic particles and metal matrix in ceramic-reinforced metal matrix composites. The Cu-Al2O3 composites with 5 vol.% of ceramic phase were prepared by a powder metallurgy process. Alumina oxide powder as an electrocorundum (Al2O3) powder with different particle sizes, i.e., fine powder < 3 A mu m and coarse powder of 180 A mu m was used as a reinforcement. Microstructural investigations included analyses using scanning electron microscopy with an integrated EDS microanalysis system and transmission microscopy. In order to measure the adhesion force (interface strength), we prepared the microwires made of the investigated materials and carried out the experiments with the use of the self-made tensile tester. We have observed that the interface strength is higher for the sample with coarse particles and is equal to 74 +/- A 4 MPa and it is equal to 68 +/- A 3 MPa for the sample with fine ceramic particles.
机译:本研究研究了颗粒尺寸对陶瓷增强金属基复合材料中陶瓷颗粒与金属基体之间粘附力的影响。通过粉末冶金法制备了具有5体积%的陶瓷相的Cu-Al2O3复合材料。使用具有不同粒径的氧化铝粉作为电刚玉(Al2O3)粉,即<3 Aμm的细粉和180 Aμm的粗粉。微观结构研究包括使用扫描电子显微镜和集成的EDS显微分析系统以及透射显微镜进行的分析。为了测量粘合力(界面强度),我们准备了由研究材料制成的微丝,并使用自制的拉伸测试仪进行了实验。我们已经观察到,具有粗颗粒的样品的界面强度较高,等于74 +/- A 4 MPa,具有细陶瓷颗粒的样品的界面强度等于68 +/- A 3 MPa。

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