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首页> 外文期刊>Journal of Sandwich Structures and Materials >Influence of Face/Core Interface on Debond Toughness of Foam and Balsa Cored Sandwich
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Influence of Face/Core Interface on Debond Toughness of Foam and Balsa Cored Sandwich

机译:面部/核心界面对泡沫和BALSA CORED三明治粘韧性的影响

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摘要

The face/core debond fracture resistance of sandwich panels consisting of glass fiber/vinylester face sheets over a 155kg/m~3 end-grain balsa wood core and a 200 kg/m~3 PVC foam core has been examined. The sandwich panels were prepared using a variety of resin infusion strategies with the objective of comparing face/core adhesion. The resin infusion methods include machining grooves in the core, adding a layer of continuous filament mat at the face/core interface, resin distribution medium on top of the face sheet fibers, and no infusion aid but significantly delayed gel-time by addition of cure inhibitor. The tilted sandwich debond (TSD) method is used for determination of debond fracture toughness (G_C). It was found that the use of a continuous filament mat between the face and core provided the toughest interface, although the panels prepared using the resin cure inhibitor are almost as tough. Overall, the PVC foam core provided higher toughness than the balsa wood core.
机译:在155kg / m〜3末端玻璃木芯上由玻璃纤维/ vinylester面板组成的夹层面板的面/核粘屑抗断裂性和200kg / m〜3 pvc泡沫芯。 使用各种树脂输注策略制备夹层面板,其目的是比较面/芯粘附的目的。 树脂输注方法包括在芯中加工槽,在面/芯界面处加入一层连续灯丝垫,树脂分布介质在面板纤维的顶部,没有注入助剂,但通过添加固化可以显着延迟凝胶时间 抑制剂。 倾斜的夹心借助(TSD)方法用于测定粘屑骨折韧性(G_C)。 发现使用面部和芯之间的连续灯丝垫提供了最艰难的界面,尽管使用树脂固化抑制剂制备的面板几乎是坚韧的。 总的来说,PVC泡沫芯提供比BALSA木芯更高的韧性。

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