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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Control Method for Centering Rolls in Radial-Axial Ring Rolling Process
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Control Method for Centering Rolls in Radial-Axial Ring Rolling Process

机译:向心环轧制过程中对中辊的控制方法

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The control method of centering rolls was developed to ensure the circularity of rings and remove the process instability during a radial-axial ring rolling (RARR) process. The position control method is determined by the growth velocity of rolling rings and mathematical correlations among the key process variables, such as ring geometries, roll shapes, and feed rates of rolls. The moving coordinate of centering rolls were calculated by the growing velocity of an outer radius of the ring, V_R, and the angle between the links of the ring's center with the mandrel's center and with the centering roll's center, a, in the RARR process. The growth behavior of a ring and the angle provided moving coordinates for the centering rolls in real time. The hydraulic adjustment mechanism for establishing a successful RARR process is also proposed using the parameter design of the linkage assembly and beam bending theory. In order to verify the reliability of the control method, the FE-simulation under a FORGE software environment and ring rolling experiments of 42CrMo4 rings with an outer diameter of 510mm. The results show that these methods provided a high ring circularity and process stability.
机译:开发了对中辊的控制方法,以确保环的圆度并消除径向-轴向环轧(RARR)过程中的过程不稳定性。位置控制方法取决于轧环的生长速度以及关键工艺变量之间的数学相关性,例如环的几何形状,轧辊形状和轧辊进给速度。定心辊的移动坐标是通过环的外半径V_R的增长速度以及环的中心与心轴中心以及定心辊的中心a之间的夹角之间的夹角来计算的。环的生长行为和角度为定心辊提供了实时的移动坐标。利用连杆机构的参数设计和梁弯曲理论,提出了用于建立成功的RRRR过程的液压调节机构。为了验证控制方法的可靠性,在FORGE软件环境下进行了有限元模拟,并对外径为510mm的42CrMo4环进行了轧制实验。结果表明,这些方法具有较高的环圆度和工艺稳定性。

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