首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >CARBON-CARBON COMPOSITES PREPARED BY A RAPID DENSIFICATION PROCESS II - STRUCTURAL AND TEXTURAL CHARACTERIZATIONS
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CARBON-CARBON COMPOSITES PREPARED BY A RAPID DENSIFICATION PROCESS II - STRUCTURAL AND TEXTURAL CHARACTERIZATIONS

机译:快速致密化工艺制备的碳-碳复合材料II-结构和织构表征

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In Part I of the present study it was shown that all carbon preforms are suitably densified by a rough laminar pyrocarbon in the processing range 900-1200 degrees C. The composites, studied by X-ray diffraction, optical microscopy and mainly by transmission electron microscopy, are homogeneous in porosity and textures (at micrometric and nanometric scales). The deposit is highly graphitizable ((d) over bar(002) = 0.336 nm and L-c > 150 nm). At a densification temperature above 1200 degrees C, the composites are heterogeneous: an increasing textural disorder occurs in the pyrocarbon and the ability to graphitize decreases. At any processing temperature, the roughness of the substrate is a leading parameter. Wavy surfaces (felt) of large period generate growth cones whereas nanometric scale roughness (T 300 type) locally disturb the pyrocarbon preferred orientation. However, accessible protruding aromatic layers on the fiber surface increase adhesion with the pyrocarbon. Smooth fiber surface (AS4) favors decohesions. (C) 1997 Elsevier Science Ltd. [References: 12]
机译:在本研究的第一部分中,显示了在900-1200摄氏度的加工范围内,所有的碳预成型坯均由粗糙的层状热解碳致密化。复合材料通过X射线衍射,光学显微镜和主要通过透射电子显微镜研究,在孔隙率和织构(微米和纳米尺度)上均一。该沉积物是高度可石墨化的((bar)(002)上的(d)= 0.336 nm和L-c> 150 nm)。在高于1200摄氏度的致密化温度下,复合材料是异质的:热碳中出现越来越多的组织紊乱,并且石墨化能力降低。在任何处理温度下,基材的粗糙度都是主要参数。较大的波浪形表面(毛毡)会产生生长锥,而纳米级粗糙度(T 300型)会局部干扰热碳的首选取向。但是,纤维表面上可及的突出芳香层会增加与热碳的粘合力。光滑的纤维表面(AS4)有助于脱粘。 (C)1997 Elsevier Science Ltd. [参考:12]

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