PBO-C/ E 复合材料的界面及压力容器性能
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西安航天复合材料研究所

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TB33;TB4

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Interfacial Properties and Pressure Vessel Performance ofPBO Fiber and Carbon Fiber Hybrid Composites
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    摘要:

    研究了PBO 纤维与T700 碳纤维混杂复合材料的界面性能和压力容器性能。采用层间剪切强度
    测试和吸水率测试研究了不同混杂比对混杂复合材料界面粘接性能和吸水性能的影响。研制了PBO 纤维与
    T700 碳纤维混杂复合材料囟150 mm 压力容器,对容器的水压爆破性能和轴压承载性能进行了测试。结果表
    明:混杂复合材料的层间剪切强度随着混杂比增大逐渐升高,当T700 碳纤维含量较低时,混杂复合材料界面粘
    接性能提高并不明显;混杂复合材料的吸水率介于PBO 纤维和T700 碳纤维复合材料之间,近似符合“混合定
    律冶,界面数对混杂复合材料吸水性影响较大;混杂复合材料囟150 mm 容器的PV/ W 随着混杂比增大逐渐降
    低,混杂工艺能够使PBO 纤维复合材料容器的轴压承载性能提高31%。

    Abstract:

    The interfacial properties and pressure vessel performance of PBO fiber and T700 carbon fiber hybrid
    composites were studied in this paper. The effects of hybrid ratio on interfacial adhesion properties and water absorp鄄
    tion of hybrid composites were investigated by interlaminar shear strength (ILSS) and water absorption measurements.
    Standard 囟150 mm pressure vessels were prepared by PBO fiber and T700 carbon fiber hybrid composites. The water
    explosion and axial bearing tests of 椎150 mm pressure vessels were conducted. The results indicate that the ILSS of
    hybrid composites went up with hybrid ratio increasing, the interfacial adhesion properties of hybrid composites saw
    little improvement as T700 carbon fiber content was lower. The water absorption values of hybrid composites were be鄄
    tween PBO and T700 fiber reinforced composites, which matches the mixture law nearly, and the number of interface
    had remarkable effect on water absorption of hybrid composites. The PV/ W of 囟150 mm pressure vessels prepared by
    hybrid composites decreased as hybrid ratio increasing. The axial bearing property of PBO fiber reinforced composites
    was improved by 31% with hybrid technology.

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引用本文

张承双. PBO-C/ E 复合材料的界面及压力容器性能[J].宇航材料工艺,2015,45(2).

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  • 在线发布日期: 2016-11-28
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