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Out-of-Autoclave Sandwich Structure: Processing Study

机译:高压灭菌三明治结构:加工研究

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Composite sandwich structures offer several advantages such as reduced weight, high bending/torsion stiffness, superior thermal insulation and excellent acoustic damping over conventional structural materials. 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. Improved adhesion strength with a well formed adhesive fillet at the interface of the honeycomb core walls and laminate is the aim of sandwich composite manufacturing, and is one area of investigation in this work. Out-of-autoclave (OOAJ processing of composites offers several key benefits compared to autoclave processing such as lower manufacturing cost resulting from a lower capital cost and lower energy consumption. In the present work, the effects of moisturized adhesive film, core type, material system and variable levels of vacuum on adhesive fillet formation are evaluated. Aluminum honeycomb and vented aluminum honeycomb are used as core materials in this study. Two material systems ofprepregs and adhesive films, Cycom 5320 prepreg with FM 309-1M adhesive, and MTM45-1 prepreg with MTA-241/PK13 adhesive are used to manufacture the panels and evaluate the performance. A quantitative investigation of the adhesive fillet geometry is carried out for all the panels. Manufactured panels are evaluated for peel strength and flatwise tensile strength in accordance with ASTMstandards. Various combinations of core material, moisture content, material system and vacuum level are evaluated for effects on adhesive strength and adhesive foaming.
机译:与传统结构材料相比,复合材料夹层结构具有许多优点,例如重量轻,弯曲/扭转刚度高,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。在蜂窝状芯壁和层压材料的界面处使用形成良好的粘合剂圆角来提高粘合强度是三明治复合材料制造的目的,并且是这项工作中研究的领域之一。与高压釜处理相比,高压釜外处理(复合材料的OOAJ处理)具有几个关键优势,例如由于较低的投资成本和较低的能耗而降低了制造成本。在当前工作中,润湿的胶膜,芯类型,材料的影响系统和真空度对粘合剂圆角形成的影响进行了评估,本研究以铝蜂窝和透气铝蜂窝为核心材料,预浸料和粘合膜的两种材料系统,带FM 309-1M粘合剂的Cycom 5320预浸料和MTM45-1使用带有MTA-241 / PK13粘合剂的预浸料制造面板并评估其性能,对所有面板的胶角几何形状进行定量研究,并根据ASTM标准评估制成的面板的剥离强度和横向拉伸强度。对核心材料,水分含量,材料系统和真空度的各种组合进行了评估,以得出以下效果: n粘合强度和粘合剂起泡。

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