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Mechanical and physical behaviors of short pitch-based carbon fiber-reinforced HfB_2-SiC matrix composites

机译:短沥青基碳纤维增强HfB_2-SiC基复合材料的力学和物理行为

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摘要

Short Pitch-based carbon fiber-reinforced HfB_2 matrix composites containing 20 vol% SiC, with fiber volume fractions in the range of 20-50%, were manufactured by hot-press process. Highly dense composite compacts were obtained at 2100 °C and 20 MPa for 60 min. The flexural strength of the composites was measured at room temperature and 1600 °C. The fracture toughness, thermal and electrical conductivities of the composites were evaluated at room temperature. The effects of fiber volume fractions on these properties were assessed. The flexural strength of the composites depended on the fiber volume fraction. In addition, the flexural strength was significantly greater at 1600 °C than at room temperature. The fracture toughness was improved due to the incorporation of fibers. The thermal and electrical conductivities decreased with the increase of fiber volume fraction, however.
机译:通过热压工艺制备了短沥青基碳纤维增强HfB_2基复合材料,该复合材料包含20%(体积)的SiC,纤维体积分数在20%至50%之间。在2100°C和20 MPa下60分钟获得了高密度的复合压坯。在室温和1600℃下测量复合材料的弯曲强度。在室温下评估复合材料的断裂韧性,导热性和导电性。评估了纤维体积分数对这些性质的影响。复合材料的弯曲强度取决于纤维体积分数。另外,在1600℃下的弯曲强度比在室温下显着更大。由于纤维的掺入,断裂韧性得到改善。然而,随着纤维体积分数的增加,热导率和电导率降低。

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