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Experimental study on drilling mechanisms and strategies of hybrid CFRP/Ti stacks

机译:混合CFRP / Ti堆钻削机理与策略的实验研究

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Mechanical drilling has been frequently used for hole making of hybrid CFRP/Ti stacks in order to ensure excellent fastening assembly. Owing to their inhomogeneous behavior and poor machinability, drilling CFRP/Ti stacks in one-shot time has brought great challenges to the modern manufacturing community. Compared to the previous studies on drilling CFRP/Ti, this paper aims to highlight the following aspects: (i) the features of tool-work interaction and machinability classification in the bi-material drilling, (ii) the influences of different cutting sequences on CFRP/Ti drilling responses, and (iii) the effects of different tool geometries/materials on CFRP/Ti drilling performance. The experimental results have shown that the drill geometrical features, which ensure the cutting contacts of the stack combination, have a more significant effect on CFRP/Ti drilling output than tool material composition. The Ti -> CFRP drilling strategy promotes higher quality of the machined hole surfaces (e.g., more consistent hole diameters and much better surface finish) with lower Ti burr extents, while the CFRP -> Ti drilling strategy reduces only the induced delamination. The experiments discussed in this paper allow besides several recommendations for the cutting sequence selection and drill geometrical design when drilling hybrid CFRP/Ti stacks. (C) 2016 Elsevier Ltd. All rights reserved.
机译:机械钻孔经常用于混合CFRP / Ti叠层的孔加工,以确保出色的紧固组装。由于其不均匀的行为和较差的可加工性,一次性完成CFRP / Ti叠层的钻削给现代制造业带来了巨大挑战。与以往的CFRP / Ti钻孔研究相比,本文旨在突出以下几个方面:(i)双材料钻孔中工具-工作相互作用和可加工性分类的特征,(ii)不同切削顺序对CFRP / Ti钻孔响应,以及(iii)不同刀具几何形状/材料对CFRP / Ti钻孔性能的影响。实验结果表明,与工具材料组成相比,确保堆叠组合的切削接触的钻头几何特征对CFRP / Ti钻头输出的影响更大。 Ti-> CFRP钻孔策略可在较低的Ti毛刺程度下提高加工孔表面的质量(例如,更一致的孔径和更好的表面光洁度),而CFRP-> Ti钻孔策略仅可减少诱发的分层。本文讨论的实验除了为混合CFRP / Ti烟囱钻削时的切削顺序选择和钻头几何设计提供一些建议外,还提供其他建议。 (C)2016 Elsevier Ltd.保留所有权利。

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