首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Experimental Investigation of Mechanical Properties, Formability and Force Measurement for AA7075-O Aluminum Alloy Sheets Formed by Incremental Forming
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Experimental Investigation of Mechanical Properties, Formability and Force Measurement for AA7075-O Aluminum Alloy Sheets Formed by Incremental Forming

机译:渐进成形AA7075-O铝合金板的力学性能,成形性和测力的实验研究

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摘要

Incremental sheet forming (ISF) has demonstrated its high potential to shape complex three-dimensional components without using specific tooling, thus enabling product customization, cost reduction and efficiencies. This paper presents an experimental campaign to investigate AA7075-O aluminum alloy sheet forming using single point incremental forming (SPIF) technology and understand the forming process mechanism. Firstly, tensile tests were carried out to characterize the mechanical properties of AA7075-O sheets with three different thicknesses. Then, the effects of tool path types with different incremental steps on the maximum part draw angle and the successful part height were evaluated to clarify the formability. Additionally, a fracture forming limit diagram was developed to give the design limits for strain. Finally, the trends in forming forces were analyzed considering the influence of different draw angles, sheet thicknesses, step-down sizes and sheet orientations. Experimental results showed that formability is affected by the part draw angle and incremental steps of the tool path. However, the likelihood of successful forming also depends on other geometrical design parameters such as the part height. In addition, the influences of process parameters on tool forces provide further insights into the deformation mechanics of AA7075-O sheets. The slope of the force curve after the peak value can be identified as a forming failure prediction indicator regardless of the tool path types when using a truncated cone as a benchmark. Also the influence of sheet orientations on forming forces was investigated in SPIF. The vertical forming force is found to be smaller in a sheet orientation 45 to the rolling direction than that of a sheet orientation 0 for three different sheet thicknesses.
机译:渐进片材成型(ISF)已展示出无需使用特定工具即可成型复杂的三维组件的巨大潜力,从而可以实现产品定制,降低成本和提高效率。本文提出了一项实验活动,以研究使用单点增量成形(SPIF)技术的AA7075-O铝合金板的成形并了解成形过程的机理。首先,进行拉伸试验以表征具有三种不同厚度的AA7075-O片材的机械性能。然后,评估了具有不同增量步长的刀具路径类型对最大零件拉伸角和成功零件高度的影响,以阐明可成形性。此外,还制定了裂缝形成极限图,以给出应变的设计极限。最后,考虑了不同拉伸角,板材厚度,台阶尺寸和板材取向的影响,分析了成形力的趋势。实验结果表明,可成形性受零件拉拔角度和刀具路径增量步长的影响。但是,成功成型的可能性还取决于其他几何设计参数,例如零件高度。此外,工艺参数对工具力的影响可进一步了解AA7075-O板材的变形力学。当使用截锥作为基准时,无论刀具路径类型如何,都可以将力曲线在峰值之后的斜率识别为成形失败预测指标。在SPIF中还研究了板材取向对成形力的影响。对于三种不同的板厚度,发现在垂直于轧制方向的板取向45上的垂直成形力小于板取向0的垂直成形力。

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