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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Effect of process parameters on the surface quality of air cushion method
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Effect of process parameters on the surface quality of air cushion method

机译:工艺参数对气垫法表面质量的影响

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摘要

A new method of the vacuum-assisted resin transfer molding process, called air cushion method, has been developed to manufacture composite parts. The process utilizes additional air cushions bound into the bagging film beneath. After the preform is sealed by the bag and evacuated, distribution channels are created between air cushions to enhance resin flow during infusion. Once the resin infusion is completed, the binding interfaces between the air cushion and the bagging film are cut and distribution channels collapse. The vacuum bag entirely compacts the preform. The goal of this study is to utilize a 2(4) full factorial design to evaluate the effects of process variables, including the number of the air cushion (factor A), thickness of the air cushion (factor B), elasticity of the bagging film (factor C), and vacuum pressure in the cavity (factor D), on the surface quality of air cushion method components. Results show that the process parameters ranked in decreasing order of importance are B, D, A, and C for affecting the surface height difference. Compared with traditional vacuum-assisted resin transfer molding, air cushion method at the optimum settings reduces the infusion time by 68.4% but increases the surface height difference by 0.0312mm.
机译:已经开发出一种新的真空辅助树脂传递成型工艺方法,称为气垫法,以制造复合零件。该工艺利用了附加的气垫,该气垫绑定在下面的包装膜中。在将预成型坯用袋子密封并抽成真空后,在气垫之间形成分配通道,以增强输注过程中的树脂流动。一旦树脂注入完成,气垫和袋装膜之间的结合界面就被切断,分配通道塌陷。真空袋完全压实了瓶坯。这项研究的目的是利用2(4)全因子设计来评估过程变量的影响,包括气垫的数量(因子A),气垫的厚度(因子B),装袋的弹性膜(因子C)和腔体中的真空压力(因子D)对气垫法组件表面质量的影响。结果表明,按重要性降序排列的工艺参数为B,D,A和C,以影响表面高度差。与传统的真空辅助树脂传递模塑相比,采用最佳设置的气垫法可减少68.4%的注入时间,但表面高度差增加0.0312mm。

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