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Mechanical and interfacial behavior of single mullite fiber and mullite fiber-based porous ceramics

机译:单氯腾纤维和莫来石纤维的多孔陶瓷机械和界面行为

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摘要

The mechanical behaviors of single mullite fiber and binder/mullite fiber interface were experimentally investigated. The growth of the mullite grains of the fiber with the increasing calcination temperature greatly affected the tensile and compression strengths of the mullite fibers. As the calcination temperature went up from 1000 degrees C to 1500 degrees C, the average tensile strength decreased from 0.954 GPa to 0.191 GPa, and the Weibull modulus decreased from 5.1 to 1.8. The compressive strength was 50-60% of the average tensile strength under the same calcination temperature. The bonding strength of the binder/fiber interface increased with the increase of the calcination temperature. The mechanical properties and fracture mechanism of the mullite fiber-based porous ceramics with different binder contents were comprehensively analyzed based on the mechanical behavior of the single mullite fiber and the binder/fiber interface.
机译:实验研究了单次莫氟岩纤维和夹住纤维纤维界面的机械行为。 纤维的莫来石颗粒的生长随着煅烧温度的增加大大影响了莫来石纤维的拉伸和压缩强度。 随着煅烧温度从1000℃升高到1500℃,平均拉伸强度从0.954GPa降低至0.191gPa,威布尔模量从5.1降至1.8。 在相同的煅烧温度下,抗压强度为平均拉伸强度的50-60%。 粘合剂/纤维界面的粘合强度随着煅烧温度的增加而增加。 基于单次汽油纤维和粘合剂/纤维界面的机械性能,综合分析了具有不同粘合剂含量的莫来石纤维的多孔陶瓷的机械性能和断裂机制。

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