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Inhibiting oxidn. of carbon fibre reinforced carbon moulding - by chemical vapour infiltration or deposition of pyrolytic carbon and opt. silicon carbide

机译:抑制氧化。碳纤维增强碳成型品的制造-通过化学气相渗透或热解碳的沉积和选择。碳化硅

摘要

Prodn. of carbon-fibre reinforced carbon mouldings protected against oxidn., the mouldings of any geometrical shape, produced by moulding and carbonisation in conventional manner, which have a C fibre-reinforced porous C-C matrix, are subjected to chemical vapour phase infiltration (CVI/CVD) with pyrolytic carbon, so that each individual C fibre or fibre bundle is sealed with a dense protective C layer. The density (1.2-1.8 g/cc) and open porosity can be regulated by the amt. of pyrolytic C infiltrated and/or the reaction time of the CVI process. The moulding may then be infiltrated or filled by CVI or CVD with SiC or infiltrated with liquid Si (alloy) and opt. finally reacted with N2 to convert the free Si to Si3N4 to give a multilayer effect increasing the long-term resistance to oxidn. and wear. The process can be carried out with 1-, 2- and 3-dimensional mouldings and mouldings consisting of short fibres (random and quasi-isotropic) and felts. Pref. resins matrices for making the mouldings are phenolic resins, silicone resins and/or resins contg. Si-C, Ti:and/or W. The resin content is 10-50 wt.% w.r.t. C fibres. The gas-tight pyrolytic C coating is 10-3000 microns thick. An inert sepg. layer may first be produced on the fibres (bundle) by CVI, pref. with BN or AIN. ADVANTAGE - The treated moulding has good resistance to oxidn., extremely low porosity, characteristic texture, high purity and an esp. high flexural strength of min. 300 N/mm2 at a density of 1.2-1.8 g/cc and also an E modulus of min. 90 GPa (claimed). The purity can be extremely high, at under 5 ppm, which completely eliminates out-gassing (claimed). The moulding has good resistance to O2 up to over 1800 deg. C, in conjunction with high strength and pseudo-plastic fracture.
机译:产品在保护碳纤维增强的碳模制品免受氧化的过程中,以常规方式通过模制和碳化生产的具有C纤维增强的多孔CC基体的任何几何形状的模制品都要进行化学气相渗透(CVI / CVD) )和热解碳,这样每根C纤维或纤维束都用致密的C保护层密封。密度(1.2-1.8 g / cc)和开孔率可以通过amt进行调节。渗透的热解碳的量和/或CVI过程的反应时间。然后,可通过CVI或CVD用SiC渗透或填充模制件,或使用液态Si(合金)渗透模制件。最终与N2反应,将游离的Si转化为Si3N4,从而产生多层效应,从而提高了长期抗氧化性。和磨损。可以使用一维,二维和三维模制件以及由短纤维(随机和准各向同性)和毛毡组成的模制件来执行此过程。首选用于制造模制品的树脂基料是酚醛树脂,硅树脂和/或连续的树脂。 Si-C,Ti和/或W。树脂含量为w.r.t.的10-50 wt。%。 C纤维。气密的热解C涂层的厚度为10-3000微米。惰性隔膜可以首先通过CVI在纤维(束)上生产层。使用BN或AIN。优势-经过处理的模制品具有良好的抗氧化性,极低的孔隙率,特有的质感,高纯度和尤其是esp。最小的抗弯强度300 N / mm2,密度为1.2-1.8 g / cc,最小E模量。 90 GPa(声称)。纯度可能极高,低于5 ppm,从而完全消除了放气(声称)。模制品对高达1800度以上的氧气具有良好的抵抗力。 C,结合高强度和假塑性断裂。

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