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Fabrication of SiC/SiC Composites Using both Chopped Fiber and a Hybrid Reinforcement of Chopped and Continuous Fibers

机译:使用短切纤维和短切纤维与连续纤维的复合增强材料制造SiC / SiC复合材料

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摘要

Chopped fiber and a hybrid reinforcement of chopped and continuous fibers were used for fabricating SiC/SiC composites. Under the selected sintering pressure, the composite sintered at lower temperature (1820℃) had lower density. Increasing temperature to 1850℃, the density of the composite reached at a higher level. However, pores still existed and mainly distributed in the areas the fibers accumulated, especially inside of the fiber bundles. Densely sintered matrix still could be found in the composite sintered at 1820℃, 15 MPa. In the areas with the fibers accumulated, matrix was relatively weak so that the cracks were easily propagated leading to the delamination during bending test. When continuous fiber was included into the chopped fiber reinforced composite, a hybrid reinforcing mechanism was obtained. This kind of composite had obviously improved toughness and strength. On the fracture surface, the pulled out fibers that were perpendicular to the fracture surface were increased.
机译:短切纤维以及短切和连续纤维的混合增强材料用于制造SiC / SiC复合材料。在选定的烧结压力下,在较低温度(1820℃)下烧结的复合材料的密度较低。将温度提高到1850℃,复合材料的密度达到较高的水平。然而,孔仍然存在并且主要分布在纤维聚集的区域中,尤其是在纤维束内部。在1820℃,15 MPa下烧结的复合材料中仍存在致密烧结的基体。在纤维聚集的区域,基体相对较弱,因此裂纹很容易传播,从而导致弯曲试验中的分层。当将短纤维包括在短切纤维增强复合物中时,获得了混合增强机理。这种复合材料的韧性和强度明显提高。在断裂面上,垂直于断裂面的拉出的纤维增加。

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