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Role of h-BN content on microstructure and mechanical properties of hot-pressed ZrB2-SiC composites

机译:H-BN含量对热压ZRB2-SiC复合材料微观结构和力学性能的作用

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摘要

The addition of h-BN flacks (0-35 vol%) into the ZrB2-SiC composites was investigated in the present research. The composites were consolidated at a temperature of 1800 degrees C for 1 h under 40 MPa uniaxial pressure by a hotpressing facility. The properties of the composites, such as density, hardness, bending strength, the microstructure, and phase evolution, were evaluated with various contents of h-BN. Densification of the hot-pressed composites improved by the addition of BN, as a nearly full densification was achieved by adding 2.5 vol% BN. X-ray diffraction analysis disclosed the formation of the Zr3N4, B4C, and SiCN phases in the as-sintered triplet composites. The highest bending strength of 350 MPa was obtained for the composite containing 2.5 vol% BN. Due to the poor sinterability of boron nitride flakes, the addition of higher amounts of h-BN (> 5 vol%) dramatically decreased the bending strength and Vickers hardness.
机译:在本研究中研究了将H-BN絮状物(0-35体积%)添加到ZRB2-SiC复合材料中。 通过自测设施将复合材料在1800℃的温度下巩固1小时。 用各种H-BN的各种含量评估复合材料的性质,例如密度,硬度,弯曲强度,微观结构和相逸出。 通过加入BN改善的热压复合材料的致密化,通过加入2.5 Vol%BN来实现几乎全致密化。 X射线衍射分析公开了Zr3N4,B4C和SICN相中的形成在烧结三胶囊复合材料中。 获得350MPa的最高弯曲强度,用于含有2.5体积%BN的复合材料。 由于氮化硼薄片的较差差,加入量较高的H-Bn(> 5体积%)显着降低了弯曲强度和维氏硬度。

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