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Toughened Laminated Alumina / Silica Ceramics Formed by Weakening Interlayer Bonded Strength

机译:弱化层间粘结强度形成增韧层状氧化铝/二氧化硅陶瓷。

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Low impact toughness is the major obstacle to impede the applications of brittle ceramics such that a very small crack may induce catastrophic fracture of the bulk components. Thus, enhancing the impact toughness of ceramics is virtually important. It is generally accepted that weakening the interlayer binding strength of the laminated material is beneficial to the fracture toughness of the laminated ceramics. In this paper, alumina / silica layered composite ceramics were prepared by impregnating the alumina interlayers with silica sol, wherein the interlayer bonding strength was controlled by adjusting the sintering temperatures from 1000°C to 1600°C. Lowing sintering temperature warrants the weak interlayer bonding strength, which results in the occurrence of the multiple bending strength-strain curves and improve the fracture strain and impact toughness. Crack deflection along the weak interface layer is the main mechanism for the enhanced toughness and crack tolerance. When the sintering temperature decreases from 1600°C to 1200°C, impact toughness increases from 4.42 kJ/m~2 to 6.95 kJ/m~2, and fracture strain measured by three-point bending increases from 0.25% to 0.36%. Finite element software was used to simulate the differences in stress distribution.
机译:低的冲击韧性是阻碍脆性陶瓷应用的主要障碍,以至于很小的裂纹可能会导致块状部件的灾难性断裂。因此,增强陶瓷的冲击韧性实际上很重要。人们普遍认为,弱化层压材料的层间结合强度有利于层压陶瓷的断裂韧性。在本文中,通过用二氧化硅溶胶浸渍氧化铝中间层来制备氧化铝/二氧化硅层状复合陶瓷,其中通过将烧结温度从1000℃调节至1600℃来控制层间结合强度。较低的烧结温度保证了较弱的层间结合强度,这导致出现多重弯曲强度-应变曲线,并改善了断裂应变和冲击韧性。沿弱界面层的裂纹挠曲是增强韧性和裂纹耐受性的主要机制。当烧结温度从1600℃降低到1200℃时,冲击韧性从4.42kJ / m〜2增加到6.95kJ / m〜2,通过三点弯曲测量的断裂应变从0.25%增加到0.36%。使用有限元软件来模拟应力分布的差异。

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