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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Forming characteristics analysis and springback prediction of bi-directional trapezoidal sandwich panels in the multi-point bend-forming
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Forming characteristics analysis and springback prediction of bi-directional trapezoidal sandwich panels in the multi-point bend-forming

机译:在多点弯曲成型中形成双向梯形夹层板的形成特征分析和回弹预测

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摘要

Bend-forming is an efficient and economical method to manufacture curved sandwich panels, and the major concerns for fabricating precise products are forming characteristics and springback prediction. In this paper, numerical simulation, analytical approach, and forming experiments were conducted to assess the multi-point cylindrical bend-forming process of bi-directional trapezoidal sandwich panel. Analysis was performed on the deformation characteristics. regularity, and forming defects of sandwich panel in the early stage. And afterwards, equivalent elastic constants of the core layer were deduced by the semi-analytic approach combined with finite element method (FEM). On this basis, a theoretical model was established to calculate bending moments and predict springback within formable range. The results indicate that the stress of face sheet in the welded area was obviously lower than that in the suspended area. The core cell was primarily deformed by changing the angle between the inclined plane and the platform, and the deformation of the cell layer mainly occurred in the transition surface area. The dimple and straight plane effect are the most common forming defects during the bending process. The main factors that affect the forming defects are face sheet thickness and bending radius. The springback amount of the sandwich panel approximates the equivalent thickness plate. Thus, it is easy to control the forming precision for small springback, and the springback ratio increases with the increase of bending curvature radius. The springback in theoretical model and experiment has an error of less than 1.0 mm, verifying the accuracy of the theoretical prediction model.
机译:弯曲成形是制造弯曲夹层板的有效且经济的方法,以及制造精确产品的主要问题是形成特征和回弹预测。在本文中,进行了数值模拟,分析方法和形成实验,以评估双向梯形夹层板的多点圆柱形弯曲成型过程。对变形特征进行分析。在早期阶段中三明治板的规律性和形成缺陷。之后,通过半分析方法与有限元方法(FEM)结合使用核心层的等效弹性常数。在此基础上,建立了理论模型,以计算弯曲时刻并预测可在线范围内的回弹。结果表明,焊接区域中面料的应力明显低于悬浮区域。芯电池主要通过改变倾斜平面和平台之间的角度而变形,并且电池层的变形主要发生在过渡表面区域中。凹坑和直平面效应是弯曲过程中最常见的成型缺陷。影响成形缺陷的主要因素是面板厚度和弯曲半径。夹层面板的回弹量近似于等效厚度板。因此,易于控制小回弹的成形精度,并且回弹比随着弯曲曲率半径的增加而增加。在理论模型和实验中的回弹具有小于1.0 mm的误差,验证了理论预测模型的准确性。

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