首页> 外文会议>ASME international manufacturing science and engineering conference;MSEC2010 >CURING AND CONSOLIDATION OF ADVANCED THERMOSET COMPOSITE LAMINATE PARTS BY PRESSING BETWEEN A HEATED MOLD AND CUSTOMIZED RUBBER-FACED MOLD
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CURING AND CONSOLIDATION OF ADVANCED THERMOSET COMPOSITE LAMINATE PARTS BY PRESSING BETWEEN A HEATED MOLD AND CUSTOMIZED RUBBER-FACED MOLD

机译:通过加热模具和定制橡胶面模具之间的挤压来固化高级热固性复合材料层压件

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Curing and consolidating thermoset composite laminates and sandwich structures typically involves vacuum bagging an uncured and formed layup over a thin-walled mold, placing it in an autoclave, and subjecting the entire unit to temperature, vacuum and pressure cycles as prescribed by the manufacturer. Autoclaving is generally considered the major bottleneck in manufacturing of advanced composites parts because of high capital and consumable costs, energy usage, waste generated and process scalability. A new curing and consolidation process, called 'thermal press curing' is discussed and demonstrated as an alternative to autoclaving. The process involves compressing a composite laminate between a special mold set - heated metal mold and a matching rubber-covered mold made of an insulative material - designed to provide uniform temperature and pressure over the metal mold surface, that is, mimic the process conditions provided by an autoclave.The thermal press curing process is demonstrated for the first time using a mold set for a simple 2-dimensional axisymmetric shape. An aluminum curing mold with embedded electric resistance cartridge heaters is heuristically designed to provide uniform temperature in operation across the mold surface within 1°C of the target value (177°C). With the mold set compressing an eight-ply carbon/epoxy composite workpiece and well insulated on all sides, the power draw is at least 1-2 orders-of-magnitude less than a comparable autoclaving operation. The potential to significantly improve pressure uniformity from the compressed rubber mask is shown by changing the mask shape. Even without an optimized rubber layer shape and thickness, the eight-ply composite part was successfully cured. Finally, a plan for future work is described.
机译:固化和固结热固性复合材料层压板和三明治结构通常涉及将未固化和成型的叠层真空装袋在薄壁模具上,将其放入高压釜中,然后按照制造商的规定对整个单元进行温度,真空和压力循环。高压灭菌通常被认为是制造高级复合材料零件的主要瓶颈,原因是高昂的资金和消耗成本,能源使用,产生的废物和工艺可扩展性。讨论并演示了一种新的固化和固结工艺,称为“热压固化”,可以替代高压灭菌。该过程涉及在特殊模具组(加热的金属模具和由绝缘材料制成的匹配的橡胶覆盖的模具)之间压缩复合层压板,该模具设计为在金属模具表面上提供均匀的温度和压力,即模仿所提供的工艺条件用高压灭菌器。 首次使用简单的二维轴对称形状的模具对热压固化工艺进行了演示。带有嵌入式电阻盒式加热器的铝固化模具经过启发式设计,可在整个模具表面提供目标温度(目标温度(177°C))的1°C以内的均匀温度。使用模具压缩八层碳/环氧树脂复合材料工件并在各个侧面进行充分绝缘,其功率消耗比类似的高压灭菌操作小至少1-2个数量级。通过改变面罩的形状,可以显着提高压缩橡胶面罩的压力均匀性。即使没有优化的橡胶层形状和厚度,八层复合部件也可以成功固化。最后,描述了未来工作的计划。

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