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Effect of Phenolic Resin on the Basic Properties of Woodceramics and Biomorphic SiC Ceramics

机译:酚醛树脂对木陶瓷和生物形态SiC陶瓷基本性能的影响

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Biomorphic SiC ceramics were fabricated by infiltrating liquid silicon into woodceramics which were prepared from beech and pine impregnated with phenolic resin (PR) of different viscosity in order to reinforce the cell wall of wood. The viscosity of phenolic resin was adjusted by ethanol according to the weight ratio of PR to ethanol. The samples not impregnated with resin were compared. Effect of viscosity of phenolic resin on the dimension shrinkage, weight loss, porosity and the axial and radial flexural strength were investigated. Microstructural observation and phase identification of woodceramics and biomorphic SiC were performed by SEM and XRD, respectively. The results show that, the lower the viscosity of phenolic resin was, the higher the dimension shrinkage, weight loss and porosity of woodceramics were. Biomorphic SiC was a diphase composite consisting of major phase β-SiC and secondary phase Si. Woodceramics made from pine swelled or broke and strength of woodceramics fabricated from beech declined when higher viscosity resins were impregnated. The flexural strength of biomorphic SiC increased with increasing in viscosity of PR. The axial flexural strength was significantly higher than the radial flexural strength because of anisotropic pore microstructures.
机译:通过将液态硅渗入木陶瓷中来制造生物型SiC陶瓷,木陶瓷由山毛榉和松木浸渍而成,并具有不同粘度,以增强木材的细胞壁。根据PR与乙醇的重量比,通过乙醇调节酚醛树脂的粘度。比较未浸渍树脂的样品。研究了酚醛树脂粘度对尺寸收缩率,失重,孔隙率以及轴向和径向抗弯强度的影响。分别通过SEM和XRD对木陶瓷和生物形态SiC进行显微观察和鉴定。结果表明,酚醛树脂的粘度越低,木质陶瓷的尺寸收缩率,失重和孔隙率越高。生物质碳化硅是由主相β-SiC和第二相Si组成的双相复合材料。当浸渍较高粘度的树脂时,由松树制成的木陶瓷膨胀或破裂,而由山毛榉制成的木陶瓷的强度下降。生物晶碳化硅的抗弯强度随着PR粘度的增加而增加。由于各向异性的孔微观结构,轴向抗弯强度明显高于径向抗弯强度。

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