首页> 外文会议>ASME international design engineering technical conferences;DETC2010;CIE2010;ASME international computers and information in engineering conference;Design automation conference >A VISCOELASTIC BASED MECHANISM FOR IMPROVING SPRING-IN ANGLE PREDICTIONS IN COMPRESSION MOLDED THERMOPLASTIC MATRIX COMPOSITES
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A VISCOELASTIC BASED MECHANISM FOR IMPROVING SPRING-IN ANGLE PREDICTIONS IN COMPRESSION MOLDED THERMOPLASTIC MATRIX COMPOSITES

机译:基于粘弹性的机制,可改善模压热塑基复合材料的模入角预测

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In this paper, dimensional distortion during the compression molding of thermoplastic matrix composites, typically described as spring-in or spring forward, is investigated through a finite element model. Spring-in is the reduction of the enclosed angle of two surfaces on the final component shape with respect to the original mold shape. Spring-in of thermoplastic matrix composites has typically been attributed to the difference in the thermal expansion of in-plane and through thickness directions of the composite. However, using this mechanism alone during modeling has not shown complete agreement with the experimental data. A new meso-level mechanism based on the viscoelasticity effect of the thermoplastic matrix is proposed. With this mechanism, the predicted spring-in angle can be in good agreement with experiments.
机译:在本文中,通过有限元模型研究了热塑性基体复合材料压缩成型过程中的尺寸变形,通常被描述为弹入或向前弹开。弹入是最终零件形状上的两个表面相对于原始模具形状的包角的减小。热塑性基质复合材料的弹跳通常归因于复合材料的面内和厚度方向的热膨胀差异。但是,在建模过程中单独使用此机制尚未显示出与实验数据完全一致的结果。根据热塑性基体的粘弹性效应,提出了一种新的中观能级机理。通过这种机制,预测的弹入角可以与实验很好地吻合。

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