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Zirconia reinforced reaction bonded silicon carbide composites: Microstructure and mechanical properties

机译:氧化锆增强反应粘结碳化硅复合材料:组织和力学性能

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Nano-sized zirconia particles were dispersed in a SiC/C suspension to examine the particle influence on mi-crostructure and mechanical properties on the resulting composite. The ZrO_2/reaction bonded SiC composite was produced by a combination of slip casting and liquid silicon infiltration. By dispersing zirconia particles into the matrix, the gowth of β-SiC was inhibited and the size of residual silicon was reduced. This result led to an increase of flexural strength with reinforcement ranging from 0 to 20 wt.%. Compared with the monolithic RBSC ceramics, the fracture toughness was steadily improved, reaching the peak value of appropriate 4.6 MPa m~(1/2) at the zirconia fraction of 25 wt.%. The XRD analysis revealed the phase transformation occurred on the fracture surface of the composites. Thus, the transformation of zirconia and the crack deflection are considered as the main toughening mechanisms.
机译:将纳米尺寸的氧化锆颗粒分散在SiC / C悬浮液中,以检查颗粒对微结构和机械性能的影响。 ZrO_2 /反应结合SiC复合材料是通过滑模浇铸和液态硅渗透相结合制备的。通过将氧化锆颗粒分散到基质中,抑制了β-SiC的生长,并减少了残留硅的尺寸。该结果导致抗弯强度增加,增强范围为0至20重量%。与整体式RBSC陶瓷相比,断裂韧性稳定地提高,在25wt。%的氧化锆含量下达到合适的4.6 MPa m〜(1/2)的峰值。 XRD分析表明,相变发生在复合材料的断裂表面。因此,氧化锆的转变和裂纹变形被认为是主要的增韧机理。

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