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Research on transition zones of spherical surface parts in 3D rolling process

机译:三维轧制过程中球面零件过渡区的研究

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3D rolling is a novel technology for three-dimensional surface parts. In this process, by controlling the gap between the upper and lower forming rolls, the sheet metal is non-uniformly thinned in thickness direction, and the longitudinal elongation of the sheet metal is different along the transverse direction, which makes the sheet metal generate three-dimensional deformation. In this paper, the transition zones of spherical surface parts in 3D rolling process are investigated. Spherical surface parts with the same widths but different lengths are simulated in condition of the same roll gap, and their experimental results are presented. The forming precision of forming parts and the causes of transition zones in the head and tail regions are analyzed through simulated results. The simulated and experimental results show that the lengths of transition zones of spherical surfaces in the head and tail regions are fixed values in condition of the same sheet width and roll gap.
机译:3D轧制是三维表面零件的新技术。在该过程中,通过控制上层和下成形辊之间的间隙,金属板在厚度方向上是不均匀的薄,并且金属板的纵向伸长率沿横向不同,这使得金属板产生三个 - 尺寸变形。本文研究了三维轧制过程中球形表面部件的过渡区。在相同的辊隙的条件下模拟具有相同宽度但不同长度不同的球形表面部件,并提出了其实验结果。通过模拟结果分析形成部件的形成精度和头部和尾部区域的过渡区域的原因。模拟和实验结果表明,头部和尾部区域中的球面表面的过渡区域的长度是相同的片材宽度和辊隙的条件下的固定值。

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