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Measurement and control of variable geometry during ring rolling

机译:环锭轧制过程中可变几何形状的测量和控制

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Ring-rolling is an industrial forming process for producing high-strength seamless metal rings up to 6m diameter. Thick-walled cylindrical rings of material, typically metallic alloys, are compressed between two or more internal and external rollers and rotated until a target geometry, often outer diameter, is achieved. A common plant configuration is that of a pair of radially acting rollers and a pair of axial rollers, the radial-axial ring rolling (RARR) machine. The most commonly produced product geometries have an axisymmetric cross-section profile. However, during the forming process the cross section is changed significantly as it passes through each pair of rollers. This irregular shape hinders geometry state measurement and this complicates modelling and control of the process. Recent developments in sensing capabilities offer high resolution measurement of ring geometry during forming. In this work, we present advances in these sensing techniques, a numerical method for storing and predicting the ring's geometrical state and control laws to achieve a non-axisymmetric cross-section profile in rolled rings using existing RARR plant hardware.
机译:环锭轧制是一种工业成型工艺,用于生产直径高达6m的高强度无缝金属环。材料的厚壁圆柱环,通常是金属合金,在两个或多个内部和外部辊之间被压缩并旋转,直到达到目标几何形状(通常是外径)为止。常见的设备配置是一对径向作用辊和一对轴向辊,即径向轴向环轧(RARR)机。最常生产的产品几何形状具有轴对称的横截面轮廓。但是,在成形过程中,横截面在通过每对辊时会发生明显变化。这种不规则的形状阻碍了几何状态的测量,并使过程的建模和控制变得复杂。传感功能的最新发展提供了在成型过程中对环几何形状的高分辨率测量。在这项工作中,我们介绍了这些传感技术的进展,这是一种使用现有的RARR工厂硬件,用于存储和预测环的几何状态和控制规律的方法,以实现轧制环的非轴对称截面轮廓。

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