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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Evaluation of skin-core adhesion bond of out-of-autoclave honeycomb sandwich structures
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Evaluation of skin-core adhesion bond of out-of-autoclave honeycomb sandwich structures

机译:高压釜外蜂窝夹芯结构的皮芯粘合力评价

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Composite sandwich structures offer several advantages over conventional structural materials such as lightweight, high bending and torsional stiffness, superior thermal insulation and excellent acoustic damping. One failure mechanism in a composite sandwich structure is the debonding of the composite facesheets from the core structure. A well-formed adhesive fillet at the interface of the honeycomb core cell walls and the laminate is a significant factor in preventing bond failure. In the present work, honeycomb composite sandwich panels are manufactured using a low-cost vacuum-bag-pressure-only out-of-autoclave manufacturing process. CYCOM~R5320 out-of autoclave prepreg is used for the facesheet laminates and FM~R 300-2U film adhesive is used for the facesheet-to-core bond. The manufactured composite sandwich panels are of aerospace quality with a facesheet laminate void content of around 1%. In this study, adhesive fillet formation and adhesive mechanical strength are evaluated as a function of several different sandwich construction design variables. Both aluminum and aramid Nomex~R honeycomb core materials are considered to study the effect of core cell size and core material. The effect of film adhesive thickness is studied. A process for reticulation of the adhesive is applied and studied. A quantitative investigation of the adhesive fillet geometry is carried out for all the panels. Manufactured panels are evaluated for flatwise tensile strength in accordance with test method ASTM C297. Optimized combinations of core material, core density, cell size and adhesive thickness are identified. Results show that the reticulation process improves fillet formation and increases flatwise tensile properties.
机译:与传统结构材料相比,复合材料夹层结构具有多个优点,例如重量轻,高弯曲和扭转刚度,出色的隔热性和出色的声阻尼。复合夹层结构中的一种失效机理是复合面板从芯结构上剥离。蜂窝状芯孔壁与层压板的界面处形成良好的粘合剂圆角是防止粘结失败的重要因素。在目前的工作中,蜂窝复合材料夹心板是使用低成本的仅真空袋压力的超高压釜制造工艺制造的。 CYCOM〜R5320高压灭菌预浸料用于面板层压板,FM〜R 300-2U薄膜粘合剂用于面板与芯材的粘合。所制造的复合夹芯板具有航空航天质量,面板层压板的空隙含量约为1%。在这项研究中,根据几个不同的夹心结构设计变量来评估粘合剂的圆角形成和粘合剂的机械强度。铝和芳纶Nomex〜R蜂窝芯材料均被考虑用于研究芯孔尺寸和芯材料的影响。研究了薄膜胶粘剂厚度的影响。应用和研究粘合剂的网状化方法。对所有面板进行了粘合剂圆角几何形状的定量研究。根据测试方法ASTM C297评估制成的面板的水平拉伸强度。确定了芯材,芯密度,泡孔尺寸和粘合剂厚度的优化组合。结果表明,网状化过程改善了圆角形成并增加了水平拉伸性能。

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