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Improvement of Inter-face Layer Coating by Plasma Treatment of Carbon Fiber for Carbon Fiber Reinforced Silicon Carbide Composite Applications

机译:碳纤维碳纤维碳纤维碳纤维碳纤维间涂层间层涂层的改进

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Carbon fiber (CF) reinforced SiC (CF/SiC) composites are sought for high temperature application in areas of automobiles, aerospace and nuclear reactors due to their outstanding properties. However, CF/SiC composites have low durability owing to oxidation of CF upon air-exposure during high temperature applications. The inter-phase layer between fiber and SiC matrix is used in order to protect fiber from oxidation. Here, we have aimed to study the effect of air RF (13.56 MHz) plasma treatment on CF tow for improvement of SiO2 inter-face layer coating by dip coating technique. The air RF (13.56 MHz) plasma treatments on CF tows and graphite proxy substrates (for 20, 40 and 60 min) have been analyzed by Scanning Electron Microscopy (SEM) and contact angle measurement, respectively confirmed the enhancement of wettability. Such plasma treated CF tows have been further used for deposition of Si02 coating and uniform deposition has been achieved for 20 min plasma treated CF as evident from SEM surface analysis. Whereas, Energy Dispersive X-ray Analysis (EDXA) and Fourier Transform Infra-Red spectroscopy (FTIR) measurements have been used to get elemental and bonding information of coated silicon substrates confirmed the high quality of SiO2 coating. While tensile strength measurement verified the enhancement of tensile strength for plasma treated SiO2 coated CF tows as compare to untreated CF tow, and optimum strength (1449 MPa) has been obtained for 20 min plasma treated SiO2 coated CF tow with uniform coating properties. Hence, 20 min plasma treatment on CF tow is confirmed the beneficial effect on SiO2 inter-face layer coating for CF/SiC Composites Applications.
机译:由于其出色的特性,寻求碳纤维(CF)增强SiC(CF / SiC)复合材料在汽车,航空航天和核反应堆区域的高温应用中寻求高温应用。然而,由于在高温应用期间,由于CF氧化,CF / SiC复合材料具有低耐久性。使用纤维和SiC基质之间的相相层以保护纤维免受氧化。在这里,我们旨在研究通过浸涂技术改善SiO2间层涂层的CF丝束的空气RF(13.56MHz)等离子体处理的影响。通过扫描电子显微镜(SEM)和接触角测量,分别分析了对CF次和石墨代理基板(对于20,40和60分钟)的空气RF(13.56MHz)血浆处理,并分别证实了润湿性的增强。这种等离子体处理的CF丝状物进一步用于沉积SiO 2涂层,并且已经从SEM表面分析中实现了20分钟的等离子体处理的CF均匀的沉积。然而,能量分散X射线分析(EDXA)和傅立叶变换红外光谱(FTIR)测量已经用于获得涂覆的硅基衬底的元素和粘合信息证实了高质量的SiO 2涂层。虽然拉伸强度测量验证了血浆处理的SiO 2的抗拉强度的增强,但与未处理的CF丝束进行比较,并且已经获得了20分钟的等离子体处理的SiO 2涂覆的CF丝束,并且具有均匀的涂布性能,得到最佳强度(1449MPa)。因此,在CF / SiC复合材料应用中,对CF丝束的20分钟对SiO2间层涂层的有益作用得到了确认的效果。

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