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Compaction Behavior and Part Thickness Variation in Vacuum Infusion Molding Process

机译:真空灌注成型过程中的压实行为和零件厚度变化

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摘要

In vacuum infusion molding process (VIMP), it is difficult to manufacture a composite part with small dimensional tolerance, since the upper mold for the process is flexible. In this study, the static and cyclic compaction responses of five kinds of fabrics were experimentally studied under real VIMP conditions, with the effects of compaction pressure, compaction time, compaction cycle and number of the fabric layers. The static and cyclic compaction responses of the all fabrics follow different power law models and the resulting fiber volume fraction and relaxation factor increase with the number of layers. Although the resulting fiber volume fraction increases with the layer numbers, change of the fiber volume fraction of the composite parts with 10 layers to 100 layers of the all fabrics is less than 2.5%. The thickness of the composite part was monitored and measured using micrometer gauges, and the effects of processing parameters on the final thickness of part was investigated. The part thickness varies as a function of spatial coordinates and time during pre-filling, filling and post-filling stages in VIMP. The variation and the final value of the part thickness would be significantly affected by the processing parameters. Statistical results show that the final part thickness is equivalent to the thickness of the dry preform under the 0.08 MPa vacuum compaction pressure in VIMP. The difference between the fiber volume fraction of the final part and that of the dry preform is 2% ~ 5.7%.
机译:在真空灌注成型工艺(VIMP)中,由于该工艺的上模具有柔性,因此难以制造尺寸公差小的复合零件。本研究在实际VIMP条件下,对5种织物的静态和循环压实响应进行了实验研究,并受压实压力,压实时间,压实周期和织物层数的影响。所有织物的静态和循环压实响应均遵循不同的幂律模型,并且所产生的纤维体积分数和松弛因子随层数的增加而增加。尽管所得的纤维体积分数随层数而增加,但是所有织物中具有10层至100层的复合部件的纤维体积分数的变化小于2.5%。使用千分尺对复合零件的厚度进行监测和测量,并研究加工参数对零件最终厚度的影响。在VIMP的预填充,填充和后填充阶段,零件厚度随空间坐标和时间而变化。零件厚度的变化和最终值将受到加工参数的显着影响。统计结果表明,在VIMP中,在0.08 MPa真空压实压力下,最终零件厚度等于干燥预成型坯的厚度。最终部分的纤维体积分数与干燥的预成型坯的纤维体积分数之差为2%〜5.7%。

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