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A study of failure in carbon/foam sandwich composites with stress concentration

机译:碳/泡沫夹芯复合材料应力集中破坏的研究

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摘要

Both experimental and numerical studies were performed to understand the failure mechanism of carbon/foam sandwich composite plates with stress concentration. The plates had circular holes and were subjected to bending and compressive loading. Both three-point and four-point bending tests were conducted, For the testing, the foam thickness, the size of the hole, the number of holes, and the hole location were varied. In addition, a finite element analysis was conducted to verify and understand the experimental results. It was found that four-point bending is not an effective test method to evaluate the effects of stress concentration at a hole. Compressive loading is an effective method. A sample without a hole fails at the quarter point due to foam core shear failure. With a hole at the center, the core shear stress at the quarter point increases with increasing hole size. However, the skin bending stress at the hole increases at a faster rate. When the hole size reaches a critical diameter, the failure mode changes to skin bending failure at the hole. (MM)
机译:进行了实验和数值研究,以了解碳/泡沫夹芯复合板在应力集中的破坏机理。板具有圆孔,并经受弯曲和压缩载荷。进行了三点和四点弯曲测试。为了进行测试,改变了泡沫厚度,孔的尺寸,孔的数量和孔的位置。此外,进行了有限元分析以验证和理解实验结果。发现四点弯曲不是评估孔上应力集中影响的有效测试方法。压缩加载是一种有效的方法。没有孔的样品由于泡沫芯剪切失败而在四分之一点处失败。以孔为中心,四分之一点的岩心切应力随孔尺寸的增加而增加。但是,孔处的皮肤弯曲应力以更快的速率增加。当孔的大小达到临界直径时,失效模式将变为孔处的蒙皮弯曲失效。 (毫米)

著录项

  • 作者

    Sistare Peter J.;

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  • 年度 1995
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  • 原文格式 PDF
  • 正文语种 en_US
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