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首页> 外文期刊>Composites. B, Engineering >Bulk factor characterization of heated debulked autoclave and out-of-autoclave carbon fibre prepregs
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Bulk factor characterization of heated debulked autoclave and out-of-autoclave carbon fibre prepregs

机译:加热碳水化合物高压釜和高压釜碳纤维预浸料的体积因子表征

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Tow impregnation during cure causes change in the laminate thickness, thus bulk factor, which causes variation in prepreg air permeability and large thickness deviations around corners. A noncontact eddy current thickness sensor monitored the laminate thickness throughout debulk and cure in an oven. Bulk factor values averaged to 1.1 for materials intended for autoclave use and 1.2 for out-of-autoclave, where a lower number is ideal for complex geometries. A heated debulk (HD) at around 48 degrees C for 2 h resulted in similar bulk factor values as a 16-h room temperature debulk (RTD), suggesting that this shorter cycle can be used as a replacement, resulting in a 26-71% cycle time reduction. For these thick sixteen ply laminates, up to six percent and five percent pore area can be expected of laminates processed RTD and HD, respectively. The highest short beam strength was achieved by a plain weave material intended for out-of-autoclave processing and lowest pore area was achieved by a 5harness material intended for autoclave processing.
机译:固化过程中的牵引浸渍导致层压件厚度的变化,从而导致预浸料透气性和拐角周围的大厚度偏差的变化。非接触式涡流厚度传感器在烘箱中监测整个渗透物的层压厚度并固化。对于用于高压灭菌器的材料平均为1.1的大容量因子值和1.2用于自动灭菌,其中较低的数量是复杂几何形状的理想选择。在48摄氏度约为2小时的加热的DeBulk(HD)导致了与16-H室温下变压器(RTD)相似的批量因子值,这表明该较短的循环可以用作替代品,导致26-71 %循环时间减少。对于这些厚的十六层层压板,可以分别可以预期30%和5%的孔隙区域,分别预期层压材料加工RTD和HD。通过普通织物材料实现最高的短光束强度,该材料用于外灭菌加工,并且通过用于高压釜加工的5HARNY材料实现最低孔面积。

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