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Prediction of Forming Limit Diagram for Seamed Tube Hydroforming Based on Thickness Gradient Criterion

机译:基于厚度梯度标准的缝合管液压成形成形限制图预测

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This study establishes the forming limit diagram (FLD) for QSTE340 seamed tube hydroforming by finite element method (FEM) simulation. FLD is commonly obtained from experiment, theoretical calculation and FEM simulation. But for tube hydroforming, both of the experimental and theoretical means are restricted in the application due to the equipment costs and the lack of authoritative theoretical knowledge. In this paper, a novel approach of predicting forming limit using thickness gradient criterion (TGC) is presented for seamed tube hydroforming. Firstly, tube bulge tests and uniaxial tensile tests are performed to obtain the stress-strain curve for tube three parts. Then one FE model for a classical tube free hydroforming and another FE model for a novel experimental apparatus by applying the lateral compression force and the internal pressure are constructed. After that, the forming limit strain is calculated based on TGC in the FEM simulation. Good agreement between the simulation and experimental results is indicated. By combining the TGC and FEM, an alternative way of predicting forming limit with enough accuracy and convenience is provided.
机译:本研究通过有限元法(FEM)模拟建立了QSTE340缝合管液压成型的成型极限图(FLD)。 FLD通常从实验,理论计算和有限元模拟中获得。但是对于管液,由于设备成本和缺乏权威理论知识,这两种实验和理论手段都受到限制。本文介绍了使用厚度梯度准则(TGC)预测形成极限的新方法,用于缝合管液压成形。首先,进行管凸起试验和单轴拉伸试验以获得管三个部分的应力 - 应变曲线。然后,构造了一种用于经典管自由换热器的FE模型和新型实验装置的另一种Fe模型通过施加横向压缩力和内部压力。之后,基于FEM模拟中的TGC计算成形限位应变。仿真与实验结果之间的良好一致性。通过组合TGC和FEM,提供了一种以足够的精度和便利性预测形成极限的替代方法。

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