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Springback Theory of Plane Bending and the Progress of Study on Its Engineering Application

机译:平面弯曲回弹理论及其工程应用研究进展

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With the rapid development of science and technology as well as increasingly fierce competition in product manufacturing, the accurate prediction, and precise control of bending springback have been the key issue to solve. Springback is the most common metal forming phenomenon. In the past few decades, a lot of research work was concentrated in the plane pure bending of straight beam. This paper made the plane curved beam with any cross-section as studying object, carried out a systematic theoretical study based on the unloading law of classical elastic-plastic theory and the characteristic of strain superposition. The theoretical derivation was built on basic assumptions which are widely applicable. The plane bending geometric constraint equation and the springback equation were established. The springback theory of plane bending was built. The springback theory was used to these techniques as expanding roundness setting, compression roundness setting, over-bending roundness setting, large pipe straightening, and profile stretch-bending. The analytic results and the results obtained by computer numerical simulations and physical experiments agreed well. The theory not only further enriches the content of the classical theory of elastic-plastic bending, but also provides a theoretical basis and technical support for the springback prediction in engineering problems.
机译:随着科学技术的飞速发展以及产品制造竞争的日趋激烈,弯曲回弹的准确预测和精确控制已成为解决的关键问题。回弹是最常见的金属成型现象。在过去的几十年中,许多研究工作集中在平面直梁的纯弯曲上。本文以任意截面的平面弯曲梁为研究对象,根据经典弹塑性理论的卸载规律和应变叠加特性,进行了系统的理论研究。理论推导基于广泛适用的基本假设。建立了平面弯曲几何约束方程和回弹方程。建立了平面弯曲的回弹理论。回弹理论用于这些技术,如扩展圆度设置,压缩圆度设置,过度弯曲的圆度设置,大的管道矫直和轮廓拉伸弯曲。分析结果与通过计算机数值模拟和物理实验获得的结果吻合良好。该理论不仅进一步丰富了经典的弹塑性弯曲理论的内容,而且为工程问题中的回弹预测提供了理论基础和技术支持。

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