首页> 外文期刊>鉄と鋼/Journal of the Iron and Steel Institute of Japan. >Experimental and Theoretical Investigation on Tilting in Bar and Rod Rolling Using Diamond-Square Pass and Square-Oval Pass
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Experimental and Theoretical Investigation on Tilting in Bar and Rod Rolling Using Diamond-Square Pass and Square-Oval Pass

机译:金刚石-方形通过和方形椭圆通过在棒材和棒材轧制中的倾斜实验和理论研究

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摘要

Metals under bar and rod rolling often exhibit tilting, due to smaller width height ratio of bar and wire rod under rolling. Design of calibers and rolling conditions to reduce tilting of stock is of industrial importance, as tilting may result in wrinkling and overfilling of rolled product, or miss rolling of bar and wire rod. Characteristics of tilting under bar rolling are investigated experimentally and analytically, aiming to clarify threshold for the occurrence of overturning and restoration resulting from tilting. Tilting of bar under rolling can be classified into two modes. Mode I tilting is resulting from steady-state twisting deformation in roll bite. This mode takes place even though position of entrance cross-section is constrained strongly by guide or previous stand, and this mode can be directly analyzed by steady-state FE analysis. Mode 2 tilting takes place in the bar before rolling, when constraint from guide or previous stand is relatively small. This mode can be evaluated using normalized moment acting to entrance of bar obtained by FE analysis. Steady-state FE analysis of bar under rolling is successfully applied to predict tilting of bar in Square-Diamond Pass and Square-Oval Pass. Predicted results agree well with the experimental measurements for tilting of mode I as well as mode 2. It can be concluded that FE analysis is helpful to the design of calibers and rolling conditions for bar rolling and rod rolling.
机译:棒材和线材轧制过程中的金属通常会出现倾斜,这是因为棒材和线材在轧制过程中的宽度高度比较小。设计口径和轧制条件以减少坯料的倾斜在工业上具有重要意义,因为倾斜可能会导致轧制产品起皱和过度填充,或者导致棒材和线材的轧制不正确。对棒材轧制过程中的倾斜特性进行了实验和分析研究,旨在弄清倾斜引起的倾覆和恢复的阈值。轧制杆的倾斜可分为两种模式。模式I的倾斜是由于咬合的稳态扭曲变形引起的。即使入口截面的位置受到导向装置或先前支架的强烈限制,也会发生此模式,并且可以通过稳态有限元分析直接分析此模式。模式2的倾斜发生在轧制前的导板中,此时来自导轨或先前机架的约束相对较小。可以使用作用于通过有限元分析获得的钢筋入口的归一化矩来评估此模式。轧制棒材的稳态有限元分析已成功地用于预测方形金刚石轧制和方形椭圆轧制中钢筋的倾斜。预测的结果与模式I和模式2的倾斜度的实验测量结果非常吻合。可以得出结论,有限元分析有助于棒材轧制和棒材轧制的口径和轧制条件的设计。

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