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首页> 外文期刊>Journal of Composite Materials >Stress model and strain energy release rate of a prescribed crack in scarf joint/repair of composite panels
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Stress model and strain energy release rate of a prescribed crack in scarf joint/repair of composite panels

机译:丝巾接缝/修复复合板中指定裂纹的应力模型和应变能释放率

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An analytical model for stress distribution was derived and an analytical model for determining the strain energy release rate of a prescribed crack in a scarf joint or a bonded scarf repair of a composite panel was developed. The crack closure method was used to calculate the strain energy release rate at the crack tip after a prescribed crack was inserted at high adhesive stress locations. In the stress model, the first-order laminated plate theory was applied to the composite panels, including the following: (1) scarfed parent substrate and corresponding repair panel for a bonded scarf repair or (2) both adherend panels for a scarf joint, assuming a linear elastic adhesive. The bondline was presumed to be thin, so the adhesive stresses were presumed to be uniform through the thickness. The coupled second-order differential equations obtained via kinematics and force equilibrium were solved semi-numerically using the symbolic computational tool Maple. Finite element analyses using the commercial software ABAQUS were conducted for comparison purposes, and results correlated well with the developed analytical model. Experimental strain data of the bonded scarf repairs was also used to verify the developed model. It can be seen that the highest adhesive stresses occur at locations where high-stiffness plies are discontinued. The obtained strain energy release rate can be used for failure analysis if appropriate critical energy release rates in conjunction with proper mode mixture rule are used.
机译:推导了应力分布的分析模型,并开发了一种确定模型的接缝接头或复合板粘结式接缝修复件中指定裂纹的应变能释放速率的分析模型。裂纹闭合方法用于计算在高粘结应力位置插入指定裂纹后裂纹尖端处的应变能释放速率。在应力模型中,将一阶层压板理论应用于复合材料面板,包括以下内容:(1)刮除的母材基板和用于粘合式围巾修复的相应修复面板,或(2)两个用于围巾连接的被粘合面板,假设使用线性弹性胶。假定粘合线很细,所以粘合力在整个厚度上都被认为是均匀的。通过运动学和力平衡获得的耦合二阶微分方程使用符号计算工具Maple进行了半数值求解。为了进行比较,使用商业软件ABAQUS进行了有限元分析,结果与开发的分析模型很好地相关。粘合围巾修复的实验应变数据也用于验证开发的模型。可以看出,最高的粘合应力发生在高刚度帘布层不连续的位置。如果将适当的临界能量释放速率与适当的模式混合规则结合使用,则可以将获得的应变能量释放速率用于故障分析。

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