Scaling Effects in Composite Laminates Under Tensile, Flexural, and Compressive Loading

D. P. Johnson, Joseph H. Felts, Michael T. Ho
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Abstract

It has been demonstrated by several researchers that composite materials exhibit scaling effects both in unidirectional and multidirectional specimens. This has an important impact on the design and manufacture of full scale structures. In the current work, the authors present a wide range of experimental data for scaled composite laminates under tensile, flexural and compressive loading. Data for both blocked ply (so-called ply-level) and distributed ply (so-called sublaminate-level) thickness scaling are presented. Laminates studied include the following stacking sequences: [45/-45/45/-45]s, [45/-45/0/90]s, [45/-45/90/0]s, [45/90/-45/0]s, [45/-45/45/-45/0]s, [45/-45/0/0]s, [90/0/90/0]s. In general, ply-level scaling leads to degraded performance with increased specimen size in all stacking sequences, under all loading conditions. Sublaminate-level scaling also leads to a lowering of strength and strain to failure, although the effect is much less pronounced than in ply-level scaling. Typically, the strength of these specimens decreases by about 5% as the size of the specimens is quadrupled.
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复合材料层合板在拉伸、弯曲和压缩载荷下的结垢效应
许多研究者已经证明复合材料在单向和多向试样中都表现出尺度效应。这对全尺寸结构的设计和制造具有重要的影响。在目前的工作中,作者提供了大量的拉伸、弯曲和压缩载荷下的复合材料层合板的实验数据。给出了阻塞层(所谓的层级)和分布层(所谓的亚层级)厚度缩放的数据。所研究的层压板包括以下堆叠顺序:[45/-45/45/-45]s, [45/-45/0/90]s, [45/90/ 0]s, [45/90/ 0]s, [45/-45/45/-45/0]s, [45/-45/0]s, [90/0/90]s。通常,在所有加载条件下,在所有堆叠顺序中,层数级缩放导致性能随着试样尺寸的增加而下降。亚层级结垢也会导致强度和应变的降低,但效果远不如层级结垢明显。通常,这些试件的强度会随着试件尺寸的增大而降低约5%。
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