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Low-Velocity Impact Properties of Sandwich Structures with Aluminum Foam Cores and CFRP Face Sheets

机译:铝泡沫芯和CFRP面板夹层结构的低速冲击性能

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摘要

Within this contribution, the low-velocity impact behavior of sandwich structures was investigated. The sandwich structures consisted of carbon fiber reinforced polymer (CFRP) face sheets in various setups, and different core structures, including an open-cell and a closed-cell aluminum foam. The matrix of the face sheets was foamed polyurethane, which also acts as the adhesive connecting the face sheets to the core. Low-velocity indentation tests were carried out with multiple sandwich configurations. The indentation behavior was further examined by additional quasi-static indentation tests, and in situ indentation tests sequentially recorded by X-ray computed tomography. Both the low velocity indentation tests and the quasi-static tests were supported by digital image correlation measurements of the lower specimen surfaces. The overall indentation behavior was described consistently to sandwich structures with different material combinations in literature. The influence of each sandwich configuration parameter on the indentation behavior was determined and described in detail.
机译:在这一贡献中,研究了夹层结构的低速冲击行为。夹层结构由各种设施中的碳纤维增强聚合物(CFRP)面板和不同的核心结构组成,包括开孔和闭孔铝泡沫。面部片材的基质是发泡聚氨酯,其也用作将面板连接到芯的粘合剂。用多个三明治配置进行低速压痕试验。通过额外的准静态压痕试验进一步检查压痕行为,并由X射线计算机断层扫描顺序地记录的原位压痕试验。通过下样本表面的数字图像相关测量支持低速缩进测试和准静态测试。整体压痕行为一致地描述于具有不同材料组合的夹层结构。确定和详细描述每个夹心配置参数对压痕行为的影响。

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