Characterization of piercing damage in CFRP cross-ply laminates after punch shear machining via impact loading

Characterization of piercing damage in CFRP cross-ply laminates after punch shear machining via impact loading
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DOI:
10.1177/00219983211031627
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发表时间:
2021-08
影响因子:
2.9
通讯作者:
S. Matsuda;Kohei Mabe;K. Ogi;S. Yashiro;Yoshifumi Kakudo
S. Matsuda;Kohei Mabe;K. Ogi;S. Yashiro;Yoshifumi Kakudo
中科院分区:
材料科学3区
文献类型:
--
作者:
S. Matsuda;Kohei Mabe;K. Ogi;S. Yashiro;Yoshifumi Kakudo

文献摘要

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在工业过程中,穿孔和修边是必不可少的,因为复合结构通常以近净形制造,以减少加工操作。使用面外剪切载荷的冲压和剪切切割有望提高生产率。然而,对于此类操作对聚合物基复合材料的影响知之甚少。本研究介绍了在使用准静态(QS)和落锤冲击(DWI)载荷进行冲压后,典型碳纤维增强塑料(CFRP)正交铺层[0°2/90°2]s中穿孔损伤的特征。在准静态冲压过程中,由于高剪切应力切断纤维以及中间层的逐渐剪切变形,上层和下层的界面会发生分层;然而,在低冲击速度下的落锤冲击冲压过程中,与准静态冲压相比,由于剪切变形的局部化,下层界面的分层可以减少。最后,讨论了落锤冲击冲压过程中的损伤累积过程。
In industrial processes, piercing and trimming are essential because composite structures are usually manufactured in a near-net shape to reduce machining operations. Punching and shear cutting using out-of-plane shear loading are expected to increase productivity. Nevertheless, little is known about the effects of such operations on polymer-matrix composites. This study presents on the characterization of piercing damage in typical carbon fiber reinforced plastic (CFRP) cross-ply laminates [0°2/90°2]s after punching using quasi-static (QS) and drop-weight impact (DWI) loadings. During QS punching, the upper and lower ply interfaces delaminate due to the high shear stress to cut fibers and gradual shear deformation in the middle ply; however, during DWI punching at a low impact velocity, delamination of the lower ply interface can be reduced due to the localization of shear deformation, as compared to that in QS punching. Finally, the damage accumulation process during DWI punching is discussed.