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首页> 外文期刊>Journal of Materials Science >New route to process uni-directional carbon fiber reinforced (SiC + ZrB2) matrix mini-composites
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New route to process uni-directional carbon fiber reinforced (SiC + ZrB2) matrix mini-composites

机译:加工单向碳纤维增强(SiC + ZrB2)基复合材料的新途径

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Unidirectional carbon fiber-reinforced (SiC + ZrB2) matrix mini-composites were prepared by soft solution route. In this process, the matrix materials were prepared using water-soluble precursors of colloidal silica, sucrose, zirconium oxychloride, and boric acid as sources of silica, carbon, zirconia, and boron oxide respectively. The room temperature mechanical properties were investigated and the fracture features of the composites were examined. Tensile strength of 269 +/- A 36 MPa and fracture energy of 0.38 +/- A 0.05 MJ/m(3) for the mini-composite, carbothermally reduced at 1,600 A degrees C were attributed to the fiber pull out. In spite of a composite failure mode, the composite carbothermally reduced at 1,700 A degrees C exhibited lower mechanical properties. It showed that carbon fibers reacted with ZrO2 to form ZrC phase at 1,700 A degrees C, formed chemical bonding, and led to a strong interface between fibers and matrix, which resulted in the degradation of mechanical properties of the mini-composites. The XRD and SEM investigations of the powders and the mini-composites revealed phase formation whereas cross-sectional microstructure indicated the uniform distribution of fibers within the matrix.
机译:采用软溶液法制备了单向碳纤维增强(SiC + ZrB2)基复合材料。在此过程中,基质材料分别使用胶体二氧化硅,蔗糖,氯氧化锆和硼酸的水溶性前体分别作为二氧化硅,碳,氧化锆和氧化硼的来源。研究了室温机械性能并检查了复合材料的断裂特性。微型复合材料的抗张强度为269 +/- A 36 MPa,断裂能为0.38 +/- A 0.05 MJ / m(3),这是因为纤维被拉出,在1600 A摄氏度下碳热还原。尽管出现复合破坏模式,但在1,700 A摄氏度下碳热还原的复合材料仍显示出较低的机械性能。结果表明,碳纤维与ZrO2在1,700 A的温度下反应形成ZrC相,形成化学键合,并导致纤维与基体之间形成牢固的界面,从而导致微型复合材料的机械性能下降。粉末和微型复合材料的XRD和SEM研究表明,形成了相,而横截面微观结构表明,纤维在基体内均匀分布。

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