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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Investigation on precision warm hydroforming with independent circumferential pressure of high-performance aluminum alloy parts with special-shaped bottom
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Investigation on precision warm hydroforming with independent circumferential pressure of high-performance aluminum alloy parts with special-shaped bottom

机译:具有特殊形状底部高性能铝合金零件独立圆周压力的精密温暖液压

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摘要

High-performance aluminum alloy is light, has high strength, but is very difficult to be formed. In the forming process of aluminum alloy parts with special-shaped bottom, there are defects such as poor fittability accuracy, instability, and cracking at the complex bottom, and the forming accuracy is an important performance index to characterize the forming quality. In this paper, a precision warm hydroforming scheme of pre-bulging and deep drawing is designed, and a method of applying independent circumferential pressure on the periphery of the flange in the later stage of pre-bulging is proposed to maintain the shape of the bottom and improve the fittability accuracy. The effects of temperature difference and independent circumferential pressure on the wall thickness and fittability of the part are studied. At the same time, response surface method is used to study the interaction among pre-bulging pressure, liquid chamber pressure, and circumferential pressure, and the optimal forming conditions are obtained after optimization and compared with the test piece. The results show that independent circumferential pressure can significantly improve the ability of the bottom of the pre-bulged part to maintain the acquired shape, and the temperature difference can effectively improve the plasticity of the sheet, the depth of drawing, and the quality of the part. After optimization by response surface method, the minimum wall thickness of the part is 0.8013 mm and the fittability is 94.2%. The forming quality parameters of the test piece are in good agreement with the numerical simulation parts, which indicates that this simulation can effectively predict forming situation of the part, and provides scientific guidance for precision forming of complex-shaped bottom parts.
机译:高性能铝合金是光线,具有高强度,但非常难以形成。在具有特殊形状底部的铝合金部件的成型过程中,在复杂的底部存在缺陷,缺陷如差,不稳定和开裂,形成精度是表征成形质量的重要性能指标。在本文中,设计了一种预凸出和深拉伸的精密温暖液压成型方案,并且提出了在预凸起的后期施加凸缘的周边上施加独立圆周压力的方法,以保持底部的形状并提高可接触性准确性。研究了温差和独立圆周压力对壁厚和件的可稳定性的影响。同时,响应面方法用于研究预凸出压力,液体压力和周向压力之间的相互作用,并且在优化后获得最佳形成条件并与试件相比。结果表明,独立的圆周压力可以显着提高预凸出部分的底部以保持所获得的形状的能力,并且温度差可以有效地提高片材的可塑性,绘图深度和质量部分。通过响应面法优化后,部分的最小壁厚为0.8013mm,可稳定性为94.2%。测试件的形成质量参数与数值模拟部件吻合良好,这表明该模拟可以有效地预测部分的形成情况,并为复合形底部的精确形成提供科学指导。

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