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A study of the influence of the friction conditions on the forging process of a blade with a tenon

机译:摩擦条件对榫头叶片锻造过程影响的研究

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In this paper, the influence of the friction conditions on the metal flow in the forging process of a blade with a tenon is analyzed using a 3D FEM code developed by the authors. In order to deal with the neutral-point problem in the process, an arctangent function is used as the friction model. The results obtained show the following: (1) The deformation in the tenon is virtually unaffected by friction, but the deformation in the blade body varies notably with various friction conditions; (2) With increase of the friction factor, the distribution of the velocity field in the left and right sides of the cavity becomes more even. In order to make it possible to fill different cross-sections in the blade body, the initial billet should be placed a little to the right of the cavity. The greater is the friction factor, the closer is the billet to the right side of the cavity; (3) The greater is the friction factor, the greater the equivalent strain and the gradient of the equivalent strain in the cross-sections. This study is of significance to understand and master the metal flow law of the forging process of a blade with a tenon under various friction conditions.
机译:在本文中,使用作者开发的3D FEM代码分析了摩擦条件对带有榫的叶片锻造过程中金属流动的影响。为了处理过程中的中性点问题,将反正切函数用作摩擦模型。得到的结果如下:(1)榫舌的变形实际上不受摩擦的影响,但是叶片主体的变形随各种摩擦条件而显着变化; (2)随着摩擦系数的增加,腔体左右两侧的速度场分布变得更均匀。为了能够填充叶片主体中的不同横截面,应将初始坯料放置在腔体右边一点。摩擦系数越大,坯料越靠近型腔右侧; (3)摩擦系数越大,当量应变和当量横截面的梯度越大。这项研究对于理解和掌握各种摩擦条件下榫头叶片锻造过程的金属流动规律具有重要意义。

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