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Formability behavior studies on CP-Al sheets processed through the helical tool path of incremental forming process

机译:通过增量成形过程螺旋刀具处理CP-Al板料的可成形性行为研究

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Incremental sheet forming (ISF) is a novel die-less sheet metal forming process, which can produce components directly from the CAD geometry using a CNC milling machine at less production time and cost. The formability of the sheet material used is greatly affected by the process parameters involved and tool path adopted, and the present study is aimed to investigate the influence of different process parameter values using the helical tool path strategy on the formability of a commercial pure Al and to achieve maximum formability in the material. ISF experiments for producing an 80 mm diameter axisymmetric dome were carried out on 2 mm thickness commercially pure Al sheets for different tool speeds and feed rates in a CNC milling machine with a 10 mm hemispherical forming tool. The obtained parts were analyzed for springback, amount of thinning and maximum forming depth. The results showed that when the tool speed was increased by keeping the feed rate constant, the forming depth and thinning were also increased. On contrary, when the feed rate was increased by keeping the tool speed constant, the forming depth and thinning were decreased. Springback was found to be higher when the feed rate was increased rather than the tool speed was increased.
机译:增量板形成(ISF)是一种新型芯片金属板成形过程,可以在较少生产时间和成本下使用CNC铣床直接从CAD几何中产生部件。所使用的片材的可成形性受到所涉及的过程参数和采用的工具路径的大大影响,并且本研究旨在使用螺旋刀具路径策略对商业纯AL的可成形性的不同工艺参数值的影响。在材料中实现最大成形性。用于制备80mm直径轴对称圆顶的ISF实验在2mm厚的商业纯的Al板上进行,用于不同的工具速度和具有10mm半球形成形工具的CNC铣床中的进料速率。分析所得零件进行回弹,稀释量和最大成形深度。结果表明,当通过保持进料速率恒定增加刀具速度时,也增加了成形深度和变薄。相反,当通过保持工具速度恒定来增加进料速率时,减小形成深度和变薄。当进料速率增加而不是刀具速度增加时,发现回弹更高。

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