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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >The pillowing tendency of materials in single-point incremental forming: Experimental and finite element analyses
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The pillowing tendency of materials in single-point incremental forming: Experimental and finite element analyses

机译:单点渐进成形中材料的枕形趋势:实验和有限元分析

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The pillow is a defect that adversely affects the geometrical accuracy as well as the formability in single-point incremental forming. With a main objective to control this defect, the effects of mechanical properties of material on pillowing are examined in this work. To identify the mechanical property that significantly affects pillowing, single-point incremental forming tests are conducted using a variety of materials (i.e. 11). It is found that a property (i.e. area reduction at tensile fracture) that controls the formability of a material in single-point incremental forming does not have any significant effect on its pillowing tendency. Interestingly, hardening exponent (i.e. a property that has controlling influence on the stretch-ability of material) appears to be the most influential property that determines the pillowing tendency of sheet metals in single-point incremental forming. Furthermore, the pillowing tendency of a material decreases with the decrease in this particular property. This, according to finite element analysis, occurs because strain localization around the tool/sheet contact correspondingly increases. To select and rank materials with respect to the pillowing behavior, a formula describing the property-pillowing relationship is proposed. As a secondary objective, the correlation between pillowing and forming depth is also investigated in this work. It is shown that initially the pillow progresses as the forming depth increases. However, after forming has been carried out to a certain depth, the pillow begins to regress, most likely due to strain hardening of sheet metal. In conclusion, it is suggested to lower the hardening exponent of sheet metals in order to control pillowing in single-point incremental forming.
机译:枕形是对几何精度以及单点渐进成形中的可成形性产生不利影响的缺陷。为了控制这一缺陷,主要工作是研究材料的机械性能对枕形的影响。为了确定对枕形有重大影响的机械性能,使用多种材料(即11)进行了单点增量成型测试。已经发现,控制材料在单点增量成形中的可成形性的性质(即,拉伸断裂时的面积减小)对其枕形化趋势没有任何显着影响。有趣的是,硬化指数(即对材料的可拉伸性具有控制影响的特性)似乎是最有影响力的特性,它决定了单点增量成形中钣金的枕形趋势。此外,随着该特定性能的降低,材料的枕头化趋势降低。根据有限元分析,发生这种情况是因为工具/薄板接触周围的应变局部性相应增加。为了选择与枕形行为有关的材料并将其排序,提出了一个描述特性与枕头关系的公式。作为次要目标,在这项工作中还研究了枕形和成形深度之间的相关性。结果表明,最初枕形随着成形深度的增加而前进。但是,在完成一定深度的成型后,枕垫开始退缩,这很可能是由于钣金的应变硬化所致。总之,建议降低钣金的硬化指数,以控制单点增量成形中的枕形。

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