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Numerical simulation of the roller hemming process based on pressure-viscosity effect

机译:基于压力粘度效应的滚子下床过程的数值模拟

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摘要

In the roller hemming process, the high-viscosity adhesive has affected the forming process of metal sheets, especially lightweight materials. However, the effect and mechanism are not clear. In this paper, the hemming adhesive is taken as a viscous Newtonian fluid. First of all, the pressure-viscosity effect in the model of parallel-panel squeeze is investigated, while the adhesive flow is simulated by smooth particle hydrodynamics (SPH) method, and the results are compared and verified by analytical solutions. Then, the roller hemming process of aluminum alloy sheet AA6106-T4 with adhesive is simulated by using the fluid-solid coupling method, while the adhesive is modeled by SPH and the aluminum alloy sheet is modeled by finite element method (FEM). The accuracy of the simulation model is verified by a comparison of roll-in/out in experiment and the effect and mechanism is studied based on the pressure-viscosity effect. The results show that adhesive thickness is the most important factor of the pressure-viscosity effect. The roll-in value of aluminum alloy sheet sample with 0.2-mm thick adhesive is relatively less than that without under the same conditions, and the roll-in of aluminum alloy sheet raises with an increase of the adhesive layer thickness. The evaluated roll-in/out of samples with different thickness of adhesive can obtain zero value theoretically after final hemming.
机译:在滚筒折叠过程中,高粘度粘合剂影响了金属板的成形过程,特别是轻质材料。但是,效果和机制尚不清楚。在本文中,用折叠粘合剂作为粘性牛油液。首先,研究了平行面板挤压模型中的压力粘度效应,同时通过光滑的颗粒流体动力学(SPH)方法模拟粘合剂,并通过分析溶液进行比较和验证结果。然后,通过使用流体固偶联方法模拟具有粘合剂的铝合金片AA6106-T4的滚子悬臂过程,而粘合剂通过SPH建模,铝合金片由有限元法(FEM)建模。通过实验中的滚入/输出比较验证了模拟模型的准确性,并且基于压力粘度效应研究了效果和机制。结果表明,粘合剂厚度是压力粘度效应的最重要因素。铝合金片样品的轧制值与0.2mm厚的粘合剂相对小于不相同条件的粘合剂,并且铝合金片的卷载随着粘合剂层厚度的增加而升高。具有不同厚度粘合剂的评估的滚入/输出样品可以在最终下擦拭后理论上可以从理论上获得零值。

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