环形长丝缠绕方法在单向预制板材制造中的验证研究

IF 1.8 Q3 ENGINEERING, MANUFACTURING
F. Finkenwerder, M. Geistbeck, P. Middendorf
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引用次数: 5

摘要

环形长丝缠绕使连续纤维加工成为可能,用于制造单向无卷曲的单向预成型层,这种预成型层可用于直芯、弯芯或闭芯几何形状。然而,单向处理拖曳会导致横向拖曳滑移增加。因此,本研究的目的是验证环形灯丝缠绕的单向缠绕方法,通过分析和实验进行测地线和非测地线轨迹。测地线路径的实现研究了拉力和卷取速度对卷绕角再现性的影响。这里进行的非测地线绕线路径取决于绕线方法、滑移系数和芯轴表面材料,通过测量夹尖力来证明横向牵引滑移的发生。研究结果表明,测地线路径具有良好的再现性,与工艺速度无关。非测地线路径的有效性得到了部分验证,因为出现了横向胶带滑移和胶带侧倾效应,这与更高的局部法向压力相关。
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 the validation of ring filament winding methods for unidirectional preform ply manufacturing
Abstract Ring filament winding enables processing of continuous fibers for manufacturing unidirectional non-crimp unidirectional preform plies on straight-, curved-, or closed-mandrel geometries. However, unidirectional processing of tows can lead to increased lateral tow slippage. The objective of the present study is thus to validate unidirectional winding methods for ring filament winding, performing geodesic and non-geodesic trajectories analytically and experimentally. Implementation of geodesic paths investigates the influence of the tensile force and take-up velocity on the winding angle reproducibility. Non-geodesic winding paths are conducted here dependent on winding methods, slippage coefficients, and the mandrel’s surface materials, evidencing the occurrence of lateral tow slippage by measurements of nip-point forces. Findings indicate an excellent reproducibility of geodesic paths independent of the process velocity. Non-geodesic paths were partially validated because of the occurrence of lateral tape-slippage and a tape side-inclination effect, correlating an increased stick behavior to higher local normal pressure.
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来源期刊
CiteScore
4.00
自引率
0.00%
发文量
11
审稿时长
16 weeks
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