Scaling of First-Ply Failure and Strength in [+ϑ n /−ϑ/−ϑ n /90/90 2n ] s Laminates: Experiments and Predictions

J. Lavoie, J. Morton
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引用次数: 1

Abstract

An experimental investigation of first-ply failure and strength was conducted on ply-level scaled carbon/epoxy composite laminates having a stacking sequence of [+ϑn/−ϑ/−ϑn/90/902n]s where the constraint ply angle, ϑ, was varied from 0 to 75°, and where the constraint ply angle, ϑ, was varied from 0 to 75°, and n varied from 1 to 4. First-ply failure was shown to depend on the level of constraint and the scale factor, n. The strain energy release rate for matrix microcracking was computed from first-ply failure data of the [02/902]s laminate. Then, first-ply failure for all other layups was predicted using a numerical model that accounted for both constraint and size. Tensile strength was predicted using a strain energy release rate model for delamination of surface angle plies. A delamination energy value for each ply angle was calculated from the thinnest (n = 1) laminates to predict strength of the other sizes.
[+°n /−°n /−°n /90/90 2n] s层压板第一层破坏和强度的标度:实验和预测
对层序为[+ϑn/−↓/−ϑn/90/902n]s的层序尺度碳/环氧复合材料层合板进行了首层破坏和强度的实验研究,其中约束层合角φ为0 ~ 75°,约束层合角φ为0 ~ 75°,n为1 ~ 4。第一层破坏取决于约束水平和尺度因子n。根据[02/902]s层合板的第一层破坏数据计算基体微裂纹的应变能释放率。然后,使用考虑约束和尺寸的数值模型预测所有其他铺层的首层失效。使用应变能释放率模型预测了表面角层分层的拉伸强度。从最薄(n = 1)层合板计算每个层合角的分层能值,以预测其他尺寸的强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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