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首页> 外文期刊>Journal of Composite Materials >Experimental and numerical investigation on the open-hole compressive strength of AFP composites containing gaps and overlaps
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Experimental and numerical investigation on the open-hole compressive strength of AFP composites containing gaps and overlaps

机译:含空隙和重叠的AFP复合材料开孔抗压强度的实验性和数值研究

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摘要

Laminated composite structures manufactured via the automated fiber placement process inherently contain process defects know as gaps and overlaps. These defects raise concerns when they are located on or near holes intended for mechanical fastening. This investigation attempts to predict the effect of automated fiber placement-generated defects on the open-hole compression strength by combining both experimental tests and numerical simulation. Tested open-hole compression specimens containing gaps and overlaps oriented at 0 degrees or 90 degrees and centered on or shifted near the hole show that, depending on their location, the gaps and overlaps may have negative, negligible, or positive effects on the open-hole compression strength. The better than expected effects are compatible with microscopic observations that clearly show the rearrangement of the plies during the consolidation process, which prevent the formation of deleterious discontinuities. Incorporating these observations in a numerical model, which simulates gaps and overlaps embedded inside the composite laminates, and applying a progressive failure analysis, confirms that the effects of automated fiber placement defects depend as much on their type as on their location relative to the hole center. Finally, the results obtained from a parametric study provided further explanation on the effects of automated fiber placement defects on the failure strength of perforated composite laminates.
机译:通过自动纤维放置过程制造的层压复合结构固有地包含工艺缺陷作为间隙和重叠。这些缺陷当它们位于用于机械紧固的孔上时提高了问题。该研究试图通过组合实验测试和数值模拟来预测自动纤维放置缺陷对开孔压缩强度的影响。测试的开孔压缩样本含有间隙和以0度或90度取向的重叠,靠近孔置于或移位,这表明,根据其位置,间隙和重叠可能具有负面,可忽略的或对开放的积极影响。空穴压缩强度。更好的效果与显微镜观测相容,在整合过程中清楚地显示了层的重新排列,这防止了有害不连续性的形成。在数值模型中掺入这些观察,该数字模型模拟嵌入复合层压板内的间隙和重叠,并应用渐进式故障分析,确认自动化纤维放置缺陷的影响与相对于孔中心相对于其位置上的类型依赖于它们的类型。最后,从参数研究中获得的结果提供了关于自动纤维放置缺陷对穿孔复合层压材料的故障强度的影响的进一步说明。

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