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Microstructure and Mechanical Properties of Multi-scale Titanium Diboride Matrix Nanocomposite Ceramic Tool Materials

机译:多尺度二硼化物基质纳米复合陶瓷工具材料的组织和力学性能

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Under the liquid-phase hot-pressing technique, the multi-scale titanium diboride matrix nanocomposite ceramic tool materials were fabricated by adding both micro-scale and nano-scale TiN particles into TiB_2 with Ni and Mo as sintering aids. The effect of content of nano-scale TiN and sintering temperature on the microstructure and mechanical properties was studied. The result showed that flexural strength and fracture toughness of the composites increased first, and then decreased with an increase of the content of nano-scale TiN, while the Vickers hardness decreased with an increase of the content of nano-scale TiN. The optimal mechanical properties were flexural strength 742 MPa, fracture toughness 6.5 MPa m~(1/2) and Vickers hardness 17GPa respectively. The intergranular and transgranular fracture mode were observed in the composites. The metal phase can cause ductility toughening and crack bridging, while crack deflection and transgranular fracture mode could be brought by micro-scale TiN and nano-scale TiN respectively.
机译:在液相热压技术下,通过将微级和纳米级锡颗粒添加到具有Ni和Mo作为烧结助剂的Tib_2,通过将微级和纳米级锡颗粒添加到Tib_2中来制造多尺度钛的二硼化物基质纳米复合陶瓷工具材料。研究了纳米级锡和烧结温度含量对微观结构和机械性能的影响。结果表明,复合材料的弯曲强度和断裂韧性首先增加,然后随着纳米级锡的含量的增加而降低,而Vickers硬度随着纳米级锡的含量而降低。最佳的机械性能分别是弯曲强度742MPa,断裂韧性6.5MPa m〜(1/2)和维氏硬度17GPa。在复合材料中观察到晶间和肾细胞骨折模式。金属相可以引起延展性增韧和裂纹桥接,而分别可以通过微级锡和纳米级锡引起裂缝偏转和响变骨折模式。

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