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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >A prediction model for bending springback of AZM120 sheet metal and mechanical compensation of CNC automatic panel bender
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A prediction model for bending springback of AZM120 sheet metal and mechanical compensation of CNC automatic panel bender

机译:AZM120钣金弯曲回弹及数控自动折弯机机械补偿预测模型

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摘要

Sheet springback and structural deformation of the folding mechanism are key issues in the sheet metal-forming process. Elastic-plastic bending theory and numerical simulation are applied to study the forming performance of sheet metal. First, a springback prediction model under general assumptions is established, based on the constitutive relationship of the elastic-plastic linear hardening material. In addition, the influences of processing parameters, such as sheet thickness and forming angle on springback, are analysed according to the theoretical model and verified by experiments. Then, a laser tracker is used to acquire the folding trajectory, and the structural deformation of the folding mechanism is confirmed by trajectory comparison. On this basis, numerical simulations are performed to collect deformation parameters, and a formula for mechanical compensation is obtained by linear fitting to the simulation data. Finally, experimental tests are carried out to verify the accuracy of the compensation model. The results show that the forming precision of the sheet metal can be controlled in the range of +/- 10'. The proposed method is generally applicable to linear hardening materials and operation conditions where the sheet thickness ranges from 0.8 to 3 mm.
机译:板材回弹和折叠机构的结构变形是钣金成型工艺中的关键问题。应用弹塑性弯曲理论和数值模拟研究了钣金的成形性能。首先,基于弹塑性线性硬化材料的本构关系,建立了一般假设下的回弹预测模型;此外,根据理论模型分析了板材厚度和成型角度等加工参数对回弹的影响,并通过实验进行了验证。然后,利用激光跟踪仪获取折叠轨迹,通过轨迹对比确认折叠机构的结构变形;在此基础上,对变形参数进行数值模拟采集,并通过对仿真数据进行线性拟合得到机械补偿公式。最后,通过实验测试验证了补偿模型的准确性。结果表明,钣金件的成形精度可以控制在+/- 10'范围内。所提出的方法一般适用于板材厚度范围为0.8-3 mm的线性硬化材料和操作条件。

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