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Fracture in hole-flanging produced by single point incremental forming

机译:单点渐进成形在孔翻边中产生的断裂

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Hole flanging produced by single point incremental forming is a new manufacturing process in which a sheet, with a concentric pre-cut hole and the outer periphery rigidly fixed by a blank holder, is progressively forced with a tool to produce cylindrical or conical smooth flanges. The formability limits of the process are known to be higher than those commonly found in hole-flanging produced by conventional press-working due to suppression of necking with a low growth rate of accumulated strains above the forming limit curve. The aim and objectives of the paper is to evaluate the critical values of fracture toughness and ductile damage at crack initiation according to different damage laws and to correlate these values with independently determined values of the forming limits at fracture. The presentation starts by tracing the strains and stresses of various positions over the surface of the hole-flanged parts at different intermediate stages of deformation. It is revealed that the strain loading ratios are constant for different material elements. From these data, the experimental values of accumulated damage at various positions are determined, particularly at the site of fracture.
机译:通过单点渐进成形产生的孔翻边是一种新的制造过程,在该过程中,用工具逐渐迫使具有同心预切孔且外围由毛坯保持器刚性固定的薄板制成圆柱形或圆锥形的光滑法兰。已知该方法的可成形性极限高于通过常规压制加工在孔翻边中通常发现的极限,这是由于在超过成形极限曲线的情况下以较低的累积应变生长速率抑制了颈缩。本文的目的和目的是根据不同的损伤定律评估裂纹萌生时断裂韧性和韧性损伤的临界值,并将这些值与断裂时成形极限的独立确定值相关联。介绍是从在变形的不同中间阶段在带孔法兰零件的表面上跟踪各个位置的应变和应力开始的。结果表明,不同材料元素的应变加载率是恒定的。根据这些数据,可以确定在各个位置(尤其是在骨折部位)累积损伤的实验值。

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