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Mechanical and microstructural characterisation of SiC- and SiBNC-fibre reinforced CMCs manufactured via PIP method before and after exposure to air

机译:通过PIP方法在空气中通过PIP方法制造的SiC和SIBNC-纤维增强CMC的机械和微观结构表征

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摘要

Non-oxide CMCs based on pyc-coated SiC-fibres (Tyranno SA3) as well as novel amorphous ceramic fibres in the quaternary system Si–B–C–Nud(named SiBNC-fibres) were manufactured via polymer infiltration and pyrolysis process. Two different fibre architectures were applied: 0|90°udunidirectional (UD) cross-ply and 0|90° plain weave fabric layer. UD cross-ply reinforced CMCs exhibit much more uniformly distributedudfilaments leading to better infiltration efficiency in resin transfer moulding process. Bending strength and fracture behaviour are strongly influencedudby fibre architecture: UD cross-ply reinforced CMCs show higher bending strengths and less non-linear behaviour compared to plain weave fibreudreinforcement. In tensile test there is no evidence of an influence of fibre architecture. Mechanical properties of unexposed SiC_pyc/SiCN andudSiBNC_pyc/SiCN strongly correlate with fibre properties. After exposure to air (T = 1100 °C, 20 h), a significant decrease of mechanical propertiesudcould be observed, caused by complete oxidation of pyc-fibre coating interfered with silica formation.
机译:通过聚合物浸润和热解过程制造基于Pyc涂覆的SiC纤维(Tyranno SA3)的非氧化物CMC以及新型系统Si-B-C-N UD(命名的SIBNC纤维)中的新型无定形陶瓷纤维。应用了两种不同的纤维架构:0 | 90° udunidirectional(UD)交叉层和0 | 90°Plane Weave织物层。 UD交叉层增强的CMC表现出更均匀的分布的 udfilaments,导致树脂转移成型过程中更好的渗透效率。弯曲强度和断裂行为是强烈影响的 udby光纤架构:与普通编织纤维 udreinforcemple相比,UD交叉层增强的CMC显示出更高的弯曲强度和更少的非线性行为。在拉伸试验中,没有纤维架构影响的证据。未曝光SIC_PYC / SICN和 UDSIBNC_PYC / SICN的机械性能与光纤性能强烈相关。在暴露于空气(T = 1100℃,20h)之后,通过完全氧化钙纤维涂层干扰二氧化硅形成后,观察到机械性能的显着降低。

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