首页> 外文期刊>Carbon >MESOPHASE PITCHES AS MATRIX PRECURSOR OF CARBON FIBER REINFORCED CARBON .2. STABILIZATION OF MESOPHASE PITCH MATRIX BY OXYGEN TREATMENT
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MESOPHASE PITCHES AS MATRIX PRECURSOR OF CARBON FIBER REINFORCED CARBON .2. STABILIZATION OF MESOPHASE PITCH MATRIX BY OXYGEN TREATMENT

机译:介晶沥青作为碳纤维增强碳的基质前体; 2。氧处理稳定中间相基体矩阵

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The stabilization of unidirectional (UD) composites fabricated with non-surface-oxidized and surface-oxidized HT carbon fibers, mesogenic pitches and mesophase pitches with oxygen was studied by variation of oxygen pressure (up to 2 MPa), temperature (160-200 degrees C), and stabilization time (up to 36 hours). The oxygen uptake is diffusion controlled and can be described by Fick's second law. By stabilization, swelling of the composites during carbonization is diminished, and the coke yield is increased. At a pitch-specific oxygen uptake, a minimum swelling and simultaneously a maximum coke yield were found. This specific oxygen uptake was assigned as optimum stabilization. This conclusion is confirmed by a decreased rate of oxygen uptake by further treatment. The oxygen uptake can be strongly accelerated by increased oxygen pressure, but like the maximum temperature for optimum stabilization, there is a maximum oxygen pressure. Both parameters are pitch-specific. In contrast to the optimum stabilization, it was surprisingly found that the bulk density of the carbonized composites can be increased by over-stabilization. Copyright (C) 1996 Elsevier Science Ltd [References: 17]
机译:通过改变氧气压力(最高2 MPa),温度(160-200度)研究了用非表面氧化和表面氧化的HT碳纤维,介晶沥青和中间相沥青制造的单向(UD)复合材料的氧稳定性。 C)和稳定时间(最多36小时)。氧气的吸收受扩散控制,可以用菲克第二定律描述。通过稳定化,减少了碳化过程中复合材料的溶胀,并提高了焦炭收率。在沥青特定的摄氧量下,发现了最小的溶胀和最大的焦炭产量。该特定的氧气吸收被指定为最佳稳定度。通过进一步处理减少的氧气吸收速率可以证实该结论。氧气压力的增加可以极大地促进氧气的吸收,但是像最高温度以获得最佳的稳定性一样,氧气压力也最大。这两个参数都是特定于音高的。与最佳的稳定化相反,令人惊讶地发现,碳化的复合材料的堆积密度可以通过过度稳定化来增加。版权所有(C)1996 Elsevier Science Ltd [参考:17]

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