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Fabrication of ceramic coatings from polysilazane/aluminum: Effect of aluminum content on chemical composition, microstructure, and mechanical properties

机译:用聚硅氮烷/铝制造陶瓷涂层:铝含量对化学成分,微观结构和机械性能的影响

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摘要

Ceramic coatings with a thickness range of 1.5-5.5 μm were successfully prepared with polysilazane (PSN1) as a precursor and aluminum (Al) powder as an active filler. The effect of Al content on chemical composition, microstructure, and mechanical properties of the coatings was investigated. Chemical composition analysis revealed that Al powder was completely converted into Al_2OC and A1N phases during the ceramization process, accompanied by volume expansion. Ceramic coatings derived from less Al powder containing PSN1/A1 showed more compacted surface morphology and continuous microstructure. The surface hardness and elastic modulus of ceramic coatings decreased with the increase of the volume fraction of Al from 10% to 40% (Al/PSN1, v/v). The maximum surface hardness and elastic modulus of coatings were 6.38 GPa and 107.66 GPa, respectively.
机译:以聚硅氮烷(PSN1)为前驱体和铝(Al)粉末为活性填料,成功制备了1.5-5.5μm厚度的陶瓷涂层。研究了铝含量对涂层化学成分,微观结构和力学性能的影响。化学成分分析表明,在陶瓷化过程中,铝粉已完全转化为Al_2OC和AlN相,并伴随着体积膨胀。由较少的含PSN1 / A1的铝粉衍生的陶瓷涂层显示出更致密的表面形态和连续的微观结构。陶瓷涂层的表面硬度和弹性模量随着Al的体积分数从10%增加到40%(Al / PSN1,v / v)而降低。涂层的最大表面硬度和弹性模量分别为6.38 GPa和107.66 GPa。

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