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The role of in-situ ceramic reinforcements on microstructure evolution and mechanical properties on developed hybrid Mg-MMCs

机译:原位陶瓷增强对开发杂交MG-MMC的微观结构演化和机械性能的作用

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摘要

In-situ generation of ceramic reinforcements during the manufacturing of metal matrix composites (MMCs) have wide advantages ranging from better dispersion, generation of nanoceramics to increased compatibility with matrix. The present work alms to explore the effect of precursor concentration on the in-situ generation of CeO_2 and MgO particles in Mg-based MMC. The contribution of different strengthening mechanisms is also explored. Optical microscopy, Scanning electron microscope (SEM), Energy dispersive spectroscopy (EDS) analysis, and X-ray diffraction (XRD) of the developed MMCs lead to categorization of particles and features into cauliflower structure, agglomerated nanoceramics, composite ceramic particles (CCP), nanoceramics, nanopores and inter-metallic. Vickers hardness tests, compression tests, and scratch tests are carried out to evaluate the mechanical response of MMCs. The compression fractured surfaces are analyzed using SEM. Preliminary wear response is evaluated using a 3-D optical profilometer to evaluate the scratched surfaces. The effect of particle size and concentration on various strengthening mechanisms is evaluated. It is possible to manipulate the mechanical properties through controlling the in-situ reinforcement type and distribution, which is also further possible, as reported here.
机译:在制造金属基质复合材料(MMC)期间,原位产生陶瓷增强物的优点是从更好的分散,纳米陶瓷产生以增加与基质的相容性增加。本作工作ALMS探讨前体浓度对基于MG基MMC中CEO_2和MGO颗粒的原位生成的影响。还探讨了不同加强机制的贡献。光学显微镜,扫描电子显微镜(SEM),能量分散光谱(EDS)分析和发育MMC的X射线衍射(XRD)导致颗粒和特征对花椰菜结构,附聚纳米陶瓷,复合陶瓷颗粒(CCP)进行分类,纳米陶瓷,纳米孔和金属间。进行维氏硬度测试,压缩试验和划痕测试以评估MMCS的机械响应。使用SEM分析压缩骨折表面。使用3-D光学分析仪评估初步磨损响应以评估划痕表面。评价粒径和浓度对各种强化机制的影响。如在此报道的那样,可以通过控制原位增强型和分布来操纵机械性能。

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