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Effects of SiC on densification, microstructure and nano-indentation properties of ZrB2-BN composites

机译:SiC对ZRB2-BN复合材料的致密化,微观结构和纳米缩进性能的影响

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摘要

Introducing the SiC additive resulted in a noticeable enhancement in the sintering behavior of the ZrB2-hBN composite, profiting from the SiC involvement in the surface oxide removal. This research intended to compare two ceramics of ZrB2-hBN and ZrB2-SiC-hBN in terms of sinterability, microstructure, and mechanical features. Both samples were spark plasma sintered at 2000 degrees C for 5 min under 30 MPa. The SiC-free specimen reached a relative density of lower than 95%, while incorporating SiC improved this value up to 99.3%, resulting in near fully dense material. The role of SiC on oxide removal was found to be the chief cause in enhancing the sinterability of the ZrB2-SiC-hBN sample compared to ZrB2-hBN. According to the field emission scanning electron microscopy (FESEM), field emission-electron probe microanalyzer (FE-EPMA), X-ray diffractometry (XRD), and X-ray photoelectron spectroscopy (XPS) studies, both systems were unreactive, and no major in-situ phase could be produced over the sintering process. The ZrB2-SiC-hBN composite reached an elastic modulus of 374 GPa and a Vickers hardness of 19 GPa.
机译:引入SiC添加剂显著提高了ZrB2-hBN复合材料的烧结性能,这得益于SiC参与表面氧化物去除。本研究旨在比较ZrB2 hBN和ZrB2 SiC hBN两种陶瓷的烧结性、微观结构和机械特性。这两个样品都是在2000摄氏度、30兆帕的压力下进行5分钟的火花等离子烧结。无SiC试样的相对密度低于95%,而加入SiC后,该值提高了99.3%,从而使材料接近完全致密。与ZrB2 hBN相比,SiC对氧化物去除的作用是提高ZrB2 SiC hBN样品烧结性能的主要原因。根据场发射扫描电子显微镜(FESEM)、场发射电子探针微分析仪(FE-EPMA)、X射线衍射仪(XRD)和X射线光电子能谱(XPS)研究,这两个系统均未反应,并且在烧结过程中无法生成主要的原位相。ZrB2-SiC-hBN复合材料的弹性模量为374gpa,维氏硬度为19gpa。

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