首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >An investigation on roll adjusting radius in three-dimensional rolling process for three-dimensional surface parts
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An investigation on roll adjusting radius in three-dimensional rolling process for three-dimensional surface parts

机译:三维表面零件三维轧制过程中轧辊调节半径的研究

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摘要

Three-dimensional rolling is a novel forming process for three-dimensional surface parts, which combines the rolling process with multi-point forming technology. This process employs a pair of forming rolls as a forming tool; the residual stress of sheet metal makes the sheet metal generate three-dimensional deformation by controlling the nonuniform distribution of roll gap of the forming rolls. In this article, two types of forming processes are investigated for three-dimensional surface parts with the same target shape in different roll adjusting radius. The roll adjusting radius of a forming process is much larger than the target transverse curvature radius of the forming part, and the roll adjusting radius of another forming process is equal to the target transverse curvature radius of the forming part. Finite element analysis models are established; spherical and saddle surfaces are simulated. The corresponding experimental results are obtained. The dimensional accuracy of the forming parts using the two types of forming processes is compared, and the difference between the two types of forming processes for forming parts is analyzed through simulated results. The bendable roll rotates around its bent axis easily if its bending deformation is small; therefore, the forming process that the roll adjusting radius is much larger than the target transverse curvature radius of the surface part has relatively extensive application prospect. The comparison and analysis of the forming results may provide useful guidance on optimizing the three-dimensional rolling process for three-dimensional surface parts.
机译:三维轧制是一种新颖的三维表面零件成形工艺,它将轧制工艺与多点成形技术相结合。该方法采用一对成形辊作为成形工具。金属板的残余应力通过控制成形辊的辊缝的不均匀分布,使金属板产生三维变形。在本文中,研究了针对具有相同目标形状,不同的轧辊调节半径的三维表面零件的两种类型的成形工艺。成形过程的辊调节半径远大于成形部件的目标横向曲率半径,另一成形过程的辊调节半径等于成形部件的目标横向曲率半径。建立了有限元分析模型;模拟球形和鞍形表面。获得了相应的实验结果。比较了使用两种成形工艺的成形零件的尺寸精度,并通过仿真结果分析了两种用于成形零件的成形工艺之间的差异。如果弯曲变形较小,则可弯曲辊容易绕其弯曲轴旋转。因此,轧辊调节半径远大于表面部分的目标横向曲率半径的成型工艺具有相对广阔的应用前景。成形结果的比较和分析可为优化三维表面零件的三维轧制工艺提供有用的指导。

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