连续复合材料制造过程中影响干纤维束力学性能的参数研究

A. Maier, R. Schledjewski
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引用次数: 2

摘要

对于连续制造工艺,纤维的机械预压发生在纤维从线轴卷轴输送到实际制造工艺步骤的过程中。此外,干燥粗纱束的预压可能是强制性的,例如在卷绕过程中,以便能够生产高质量的部件。一方面,干粗纱束内拉伸载荷过高可能会导致灾难性的破坏,另一方面,预张力过低可能会导致产品质量和机械性能下降。本文分析了连续复合材料制造过程中载荷条件对干燥玻璃纤维束力学性能的影响。在工艺典型范围内选择负载条件,即连续缠绕过程中纤维输送速度、必要的预张力和输送系统的其他影响。首先,研究了静态拉伸载荷条件下的应变速率依赖关系。此外,还测试了不同自由规长度(最大1.2 m)下纤维接触点之间的相互作用对施胶和浸渍的影响,并研究了纤维输送过程中扭转对干燥玻璃纤维束力学行为的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on parameters affecting the mechanical properties of dry fiber bundles during continuous composite manufacturing processes
For continuous manufacturing processes mechanical preloading of the fibers occurs during the delivery of the fibers from the spool creel to the actual manufacturing process step. Moreover preloading of the dry roving bundles might be mandatory, e.g. during winding, to be able to produce high quality components. On the one hand too high tensile loads within dry roving bundles might result in a catastrophic failure and on the other hand the part produced under too low pre-tension might have low quality and mechanical properties. In this work, load conditions influencing mechanical properties of dry glass fiber bundles during continuous composite manufacturing processes were analyzed. Load conditions, i.e. fiber delivery speed, necessary pre-tension and other effects of the delivery system during continuous fiber winding, were chosen in process typical ranges. First, the strain rate dependency under static tensile load conditions was investigated. Furthermore different free gauge lengths up to 1.2 m, interactions between fiber points of contact regarding influence of sizing as well as impregnation were tested and the effect of twisting on the mechanical behavior of dry glass fiber bundles during the fiber delivery was studied.
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