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EFFECTS OF TOOL DEFLECTION IN ACCUMULATED DOUBLE-SIDED INCREMENTAL FORMING REGARDING PART GEOMETRY

机译:刀具挠度在累积双面增量成形中的效果对零件几何形状

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Incremental forming is a flexible dieless forming process. In incremental forming, the metal sheet is clamped around its periphery. One or multiple generic stylus-type tools move along a predefined toolpath, incrementally deforming the sheet metal into a final, freeform shape. Compared with the traditional sheet metal forming process, the incremental forming process is more flexible, energy efficient and cost effective due to lower capital investment related to tooling. However, maintaining tight geometric tolerances in incremental formed parts can be a challenge. Specifically, undesired global bending is usually induced near the region between the tools and fixture resulting in a compromise in geometric accuracy. To address this issue, Accumulated Double-Sided Incremental Forming (ADSIF) is proposed, which utilizes two tools on both sides of the metal to better achieve localized deformation while simultaneously constraining global bending outside the forming area. Moreover, in ADSIF, the two tools are moving from inward to outward, and thus the tools are always forming virgin material and so as to limit forces on the already-formed part. Thus, ADSIF has a higher potential to achieve the desired geometry. Nevertheless, tool deflection due to machine compliance is still an issue that can have a considerable effect on geometric accuracy. In this work, the effect of tool deflection related to part geometry is studied for the ADSIF process. The nature of using two tools, rather than one, in ADSIF inherently implies that relative tool position is a critical process parameter. It is the region near these two tools where local squeezing and bending of the sheet occurs, the primary modes of deformation found in ADSIF. The change of relative tool positions (i.e., tool gap and relative position angle) are studied in detail by first developing an analytical model. It is concluded that the tool gap will be enlarged under the influence of tool compliance while the relative position angle is less affected. Additionally, a finite element simulation capable of modeling tool deflection is established. The comparison between the simulation results using rigid tools and deformable ones clearly demonstrated the significant influence of tool compliance on part geometry. Lastly, an axisymmetric part with varying wall angles was formed, and it was confirmed that ADSIF demonstrates improved geometry accuracy compared with conventional Double-Sided Incremental Forming.
机译:增量成型是一种柔性无无体形成过程。在增量形成中,金属板围绕其周边夹紧。一个或多个通用触控笔型工具沿预定义的刀具路径移动,将金属板递增地变为最终的自由形状。与传统的金属板成型过程相比,由于与工具较低的资本投资,增量成型过程更加灵活,节能且成本效益。然而,在增量形成的部件中保持紧的几何公差可能是一个挑战。具体地,通常在工具和夹具之间的区域附近诱导不期望的全局弯曲,从而导致几何精度的折衷。为了解决这个问题,提出了累积的双面增量形成(ADSIF),其在金属的两侧使用两种工具,以更好地实现局部变形,同时约束成形区域外的全球弯曲。此外,在ADSIF中,两个工具在向外移动到向外,因此工具总是形成原始材料,并限制在已经形成的部分上的力。因此,ADSIF具有更高的潜力来实现所需的几何形状。尽管如此,由于机器合规导致的刀具偏转仍然是对几何精度具有相当大的影响的问题。在这项工作中,研究了ADSIF过程的刀具偏转与零件几何形状相关的效果。 ADSIF中使用两个工具而不是一个工具的性质本质地意味着相对工具位置是关键过程参数。它是附近这两个工具附近的区域,其中发生纸张的局部挤压和弯曲,在ADSIF中发现的变形的主要变形方式。通过首先开发分析模型,详细研究了相对工具位置(即刀具间隙和相对位置角度)的变化。结论是,在刀具依从性的影响下,刀具间隙将扩大,而相对位置角度较小。另外,建立能够建模刀具偏转的有限元模拟。使用刚性工具和可变形的结果之间的仿真结果的比较清楚地证明了工具依从性对部件几何的显着影响。最后,形成具有变化壁角的轴对称部件,并且证实ADSIF与传统的双面增量成形相比,ADSIF显示出改善的几何精度。

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