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首页> 外文期刊>Journal of Composite Materials >Failure Load Prediction by Damage Zone Method for Single-lap Bonded Joints of Carbon Composite and Aluminum
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Failure Load Prediction by Damage Zone Method for Single-lap Bonded Joints of Carbon Composite and Aluminum

机译:碳复合材料与铝材单搭接接头的损伤区域法预测破坏载荷

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摘要

A damage zone method based on 3D finite element analysis was proposed to predict the failure loads of single-lap bonded joints with dissimilar composite-aluminum materials. To simulate delamination failure, interply resin layers between any two adjacent orthotropic laminas of composite adherend were assumed with a thickness of one-tenth of a composite lamina. Geometrically non-linear effects due to the large rotation of the single-lap joint were included in the analysis. Analysis also considered the material nonlinearity of the aluminum adherend due to the stress exceeding yield level. Based on the experimental observation that the failure modes of the specimens were dominated by delamination and debonding, the Ye-criterion was applied to account for the out-of-plane failure of composite adherend and the Von Mises strain criterion was applied for the adhesive layer. The failure indices were multiplied to the predicted damage zone as a weight factor and the calculated damage zones were divided by an area or volume considering the joint geometry. Predicted failure loads show deviation within 18% from experimental results for nine different bonding lengths or adherend thicknesses.
机译:提出了一种基于3D有限元分析的损伤区域方法,以预测复合铝材料不同的单搭接接头的破坏载荷。为了模拟分层失败,假设在复合粘附体的任意两个相邻正交各向异性薄片之间插入树脂层,其厚度为复合薄片的十分之一。分析包括由于单膝关节的大旋转引起的几何非线性效应。分析还考虑了由于应力超过屈服水平而导致的铝粘附体的材料非线性。基于实验结果表明,试样的破坏模式主要是分层和脱粘,因此,采用Ye准则解释了复合被粘物的平面外破坏,并且对粘接层采用了冯·米塞斯应变准则。失效指数乘以预测的损伤区域作为权重因子,计算出的损伤区域除以结合几何形状的面积或体积。对于九种不同的粘结长度或被粘物厚度,预计的破坏载荷与实验结果的偏差在18%以内。

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