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Interface behavior of a bimaterial plate under dynamic loading

机译:动态载荷下双材料板的界面行为

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The paper deals with interface behavior of bimaterial ceramic-metal composites under dynamic time-harmonic load. The first plate is precracked with a normal crack touching the interface between the plates. It is assumed that the respective restriction for the ratio of energy release rates of the plates allowing the occurrence of an interface single delamination before the initiation of the normal crack in the second plate is satisfied. The growth of interface delamination is not considered. The used approximate shear-lag dynamic approach gives a possibility to obtain solutions in a closed form for axial and shear stresses of the structure. At an elastic-brittle interface behavior theoretical predictions for single debond length of two bimaterial structures are calculated. The parametric analysis reveals the sensitivity of the interface single debond length and shear stress to the type of bimaterial structure and to the characteristics of the dynamic load-in particular its frequency and amplitude. All results are illustrated in figures and tables and are discussed.
机译:研究了双材料陶瓷-金属复合材料在动态时谐载荷下的界面行为。第一板预先开裂,并且正常裂纹接触板之间的界面。假设满足了对板的能量释放速率的比率的相应限制,该限制允许在第二板中的正常裂纹开始之前发生界面单层离层。不考虑界面分层的增长。所使用的近似剪力滞动态方法为结构的轴向和剪应力提供了封闭形式的解的可能性。在弹性-脆性界面行为下,对两个双材料结构的单个脱粘长度进行了理论预测。参数分析揭示了界面单一的脱粘长度和剪切应力对双材料结构类型以及动载荷特性(尤其是其频率和振幅)的敏感性。所有结果均显示在图表中并进行了讨论。

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