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Refinement of the Thermal Press Curing Process for Advanced Composites

机译:改进先进复合材料的热压固化工艺

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Thermal press curing (IPC) is an alternative process to autoclaving for consolidating and curing thermoset and thermoplastic prepreg composite parts by pressing them between a heated "curing mold" and a customized rubber-faced "base mold" that are engineered to provide uniform temperature and pressure conditions. A study was performed with a kayak paddle part made from eight plies of woven carbonlepoxy prepreg material and formed by double diaphragm forming (DDF). The study expounds on the narrow body of TPC knowledge around three main objectives: (1) to experimentally compare TPC cured parts to a benchmark autoclave process using a realistic part shape with fine geometrical details, (2) to evaluate the necessity of vacuum bagging of TPC cured parts, and (3) to characterize the robustness/sensitivities of pressure application during the TPC process by varying both the total pressure applied to the base mold and the location the hydraulic press ram applied pressure to the base mold. Maximum temperature and pressure variations around the target levels over the entire clamped tool surface were measured as 5.0 °C and 5.5%, respectively, both of which were well within the manufacturer's recommendations. The TPC part had fewer defects, was generally thinner, and had a higher fiber volume fraction than a comparable autoclaved part. Little difference was observed between the TPC parts made with and without vacuum bagging. Parts with too little pressure (90%) resulted in more thickness variation and defects than too much pressure (110%). Finally, TPC parts exhibit some thickness variation, as expected, when ramforce is applied off the center of pressure (COP).
机译:热压固化(IPC)是高压灭菌的替代方法,可通过在加热的“固化模具”和定制的橡胶面“基础模具”之间进行压制来固结和固化热固性材料和热塑性预浸料复合材料部件,这些部件设计用于提供均匀的温度和压力条件。对由八层编织的环氧环氧预浸料制成的皮划艇桨叶部件进行了研究,并通过双隔膜成型(DDF)形成了该部件。该研究围绕以下三个主要目标阐述了TPC知识的狭窄范围:(1)使用具有精细几何细节的逼真的零件形状,将TPC固化零件与基准高压釜工艺进行实验比较,(2)评估真空袋装的必要性。 TPC固化零件,以及(3)通过改变施加到基础模具上的总压力和液压压模施加压力到基础模具上的位置来表征TPC过程中压力施加的坚固性/敏感性。在整个夹紧的工具表面上,目标位置附近的最大温度和压力变化分别为5.0°C和5.5%,这两个值均在制造商的建议范围内。与可比压热部件相比,TPC部件的缺陷更少,通常更薄,纤维体积分数更高。在装有和不装有真空袋的TPC零件之间观察到的差别很小。压力过低(90%)的零件比压力过大(110%)导致的厚度变化和缺陷更多。最后,如预期的那样,当在压力中心(COP)上施加冲压力时,TPC零件会出现一些厚度变化。

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