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FEM Validation of Front End and Back End Defects Evolution in AA6063 and AA6082 Aluminum Alloys Profiles

机译:AA6063和AA6082铝合金轮廓的前端和后端缺陷演化的FEM验证

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The reduction of scraps related to back end defects (i.e. billet skin contamination) and front end defects (i.e. charge welds) is gaining nowadays an increasing industrial interest in order to obtain greater process efficiency. Today, extrusion industrial practice faces the issue by means of technician’s experience, empirical rules or, in most critical profiles, through time consuming and expensive experimental analyses. On the other side, FEM simulation of extrusion dies is becoming a common support tool for the design of new critical dies. Stating this scenario, the possibility to include the prediction of front end and back end defects evolution as simulation output can then be easily obtained at almost comparable computational costs. In this paper the FEM code Altair HyperXtrude? is used for the simulation of 2 industrial cases made by AA6063 and AA6082 alloys following the transient moving boundaries approach. Experimentally, the profiles were extruded, sectioned, polished and etched with caustic soda in order to reveal and measure front and back end development in front of and behind the profile stop mark. The data obtained from experimental analyses are initially discussed referring to billet skin contamination and charge weld evolution, then compared to industrial experience, to theoretical and empirical methods available in literature and to FEM results in order to evaluate pros and cons of each evaluation method.
机译:与后端缺陷(即坯料皮肤污染)和前端缺陷相关的废料减少(即充电焊缝)现在增加了越来越多的工业利益,以获得更大的工艺效率。如今,挤出工业实践通过技术人员的经验,经验规则或在最关键的概况中,通过耗时和昂贵的实验分析来面临问题。在另一边,挤出模具的有限元模拟正在成为新临界模具的设计的共同支持工具。说明这种情况,可以在几乎可相当的计算成本中容易地获得包括作为模拟输出的前端和后端缺陷演变的预测的可能性。在本文中,有限元代码Altair Hyperxtrude?用于瞬态移动边界方法的AA6063和AA6082合金制作的2种工厂的模拟。通过实验,用苛性苏打挤出,切片,抛光和蚀刻型材,以揭示和测量轮廓止损标记前后的前端和后端开发。最初讨论了从实验分析中获得的数据,参考坯料皮肤污染和电荷焊接演化,然后与工业经验相比,文献中可用的理论和经验方法和有限元的结果,以评估每个评估方法的利弊。

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