首页> 外文期刊>Acta materialia >HERTZIAN CONTACT BEHAVIOR OF ALUMINA-BASED TRILAYER COMPOSITES: EXPERIMENTAL OBSERVATION AND FEM ANALYSIS
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HERTZIAN CONTACT BEHAVIOR OF ALUMINA-BASED TRILAYER COMPOSITES: EXPERIMENTAL OBSERVATION AND FEM ANALYSIS

机译:氧化铝基三层复合材料的赫兹接触行为:实验观察与有限元分析

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摘要

Two different alumina-based trilayer composites were fabricated with the aim of elucidating the influence of a quasi-ductile interfacial layer on the nature of the Hertzian Contact damage. In each case the composites were designed to promote cone cracking in a more brittle Outer layer (Consisting of fine-grain alumina), and distributed microcracking in a quasi-plastic core layer (composed of alumina with 30 vol. percent calcium hexaluminate platelets). Experimental observations of the indentation induced cracking behavior were complemented by FEM analysis of the principal stress and plastic strain Contours. It was observed that for the trilayer with an intermediate coarse-grain alumina layer, the depth of cone cracking was reduced, which correlated with an improvement in the as-indented strength. Finite element modeling analysis confirmed that due to the presence of the interlayer, modification of the subsurface stress state took place, resulting in a more shallow predicted cone crack trajectory. Implications for design of trilayers with improved Contact damage resistance are discussed.
机译:制备了两种不同的氧化铝基三层复合材料,旨在阐明准延性界面层对赫兹接触损伤性质的影响。在每种情况下,复合材料的设计都是为了促进更脆的外层(由细晶氧化铝组成)中的锥形开裂,以及在准塑性芯层(由氧化铝和30体积百分比的六铝酸钙血小板组成)中的分布微裂纹。通过主应力和塑性应变轮廓的有限元分析,补充了压痕诱发开裂行为的实验观察。结果表明,对于具有中间粗晶粒氧化铝层的三层,锥裂的深度减小,这与压痕强度的提高相关。有限元建模分析证实,由于夹层的存在,地下应力状态发生了改变,导致预测的锥裂纹轨迹更浅。讨论了对具有改进的抗接触损伤能力的三层设计的影响。

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