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Effects of incremental depth and tool rotation on failure modes and microstructural properties in Single Point Incremental Forming of polymers

机译:增量深度和工具旋转对聚合物单点增量成型中破坏模式和微观结构特性的影响

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Single Point Incremental Forming (SPIF) is a sheet forming process characterized by advantages that include low-cost and part-shape-independent tooling, higher formability and greater process flexibility as compared to conventional sheet forming. While recent work has demonstrated the possibility of SPIF of polymers the effects of incremental depth and tool rotation speed, key process parameters in SPIF, have rarely been examined. This work experimentally examines how incremental depth and tool rotation speed affect the failure mode during forming, forming forces as well as the void structure and crystallinity of the formed material in polymer SPIF. The dependence of both tearing and wrinkling on the incremental depth and tool rotation speed is uncovered. It is shown that contrary to SPIF of metals, greater incremental depths result in increased formability in polymer SPIF, but this advantage is limited by the occurrence of sheet wrinkling at excessively high incremental depths. Further, the occurrence of sheet wrinkling depends not just on the incremental depth but also on the part shape being formed. Microstructural examination of the formed material shows that greater incremental depth results in greater void densities and that the material formed with SPIF has greater crystallinity than the unformed material. Additionally, it is shown that higher tool rotation speed can cause earlier onset of wrinkling. The implications of these observations on SPIF of polymers are discussed. (C) 2015 Elsevier B.V. All rights reserved.
机译:单点增量成型(SPIF)是一种板材成型工艺,其特征在于,与传统的板材成型相比,优点包括低成本和零件形状独立的工具,更高的可成型性和更大的工艺灵活性。尽管最近的工作证明了SPIF聚合物的可能性,但很少检查增量深度和工具旋转速度(SPIF中的关键工艺参数)的影响。这项工作实验性地检查了聚合物SPIF中,增加的深度和工具旋转速度如何影响成形过程中的破坏模式,成形力以及成形材料的空隙结构和结晶度。发现撕裂和起皱都取决于增量深度和工具旋转速度。已经表明,与金属的SPIF相反,更大的增量深度会导致聚合物SPIF的可成形性提高,但是此优点受到了在过高的增量深度处出现板皱的限制。此外,片材起皱的发生不仅取决于增量深度,还取决于所形成的零件形状。所形成的材料的微观结构检查表明,更大的增量深度导致更大的空隙密度,并且用SPIF形成的材料比未形成的材料具有更大的结晶度。另外,显示出较高的工具旋转速度可导致较早起皱。讨论了这些观察结果对聚合物SPIF的影响。 (C)2015 Elsevier B.V.保留所有权利。

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