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首页> 外文期刊>Transactions of the Indian Ceramic Society >4D Carbon-Carbon Composite Processing and its Properties in Comparison with Other Carbon-Carbon Preforms
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4D Carbon-Carbon Composite Processing and its Properties in Comparison with Other Carbon-Carbon Preforms

机译:4D碳-碳复合材料的加工及其与其他碳-碳预制棒的性能比较

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摘要

The re-entry structure of a long range missile will experience severe aero thermal load during flight. The nose tip of the missile shall be capable of withstanding these severe thermal stresses arising out of thermal shock in all the directions. The material has to be so designed as to exhibit symmetric erosion and should have the lowest erosion rate with respect to all directions. So multidirectional reinforced carbon-carbon composite is an ideal choice for this application. To obtain strength in 2, 3 or 4 directions we weave fibers in different directions. Though carbon-carbon composite shows anisotropic (direction dependent) property, 4D carbon-carbon composite shows the same properties (strength, erosion rate, etc) in all 4 directions. The process involved for making 4D carbon-carbon is very tedious as well as very expensive. The properties like density, tensile strength, specific modulus, etc are studied and are very much comparable with those of the other preforms.
机译:远程导弹的重入结构在飞行过程中将承受严重的航空热负荷。导弹的鼻尖应能够承受因各个方向的热冲击而产生的这些严重的热应力。该材料必须设计成具有对称的腐蚀,并且在所有方向上应具有最低的腐蚀速率。因此,多方向增强碳-碳复合材料是该应用的理想选择。为了在2、3或4个方向上获得强度,我们在不同的方向上编织纤维。尽管碳-碳复合材料显示出各向异性(方向相关)的特性,但4D碳-碳复合材料在所有四个方向上都显示出相同的特性(强度,腐蚀速率等)。制作4D碳碳的过程非常繁琐且非常昂贵。研究了诸如密度,抗张强度,比模量等特性,这些特性与其他预成型件的可比性非常好。

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