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Surface Effect Mechanism Analysis for Vibrational Rotary Forging

机译:振动旋转锻造的表面效应机理分析

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As a contact of vibrational rotary forging is highly nonlinear, the contact area and boundary between rotary toolhead and workpiece had more accurate calculation, made the contact boundary more tally with the actual situation. For a surface effect is of complexity for vibrational rotary forging, a vibrational rotary forging visco-elasticity plasticity model was built, and the visco-elasticity spatial matrix and the visco-plasticity spatial matrix were derived by the generalized Hooke's law in elasticity theory and the increase theory in mechanics of plasticity, then by the finite element founction of MATLAB for the surface effect analyzed during the vibrational rotary forging deformation, it is shown as blow: the surface effect should be appeared with high frequency vibration or low frequency vibration, but there are some conditions for surface effect produced during plastic process, and then the hypothesis that the friction vector is reversal of deformation load, and it is benefit to deformation process during the part of time in vibration period is validated.
机译:由于振动旋转锻造的接触是高度非线性的,因此旋转工具头和工件之间的接触面积和边界具有更精确的计算,使接触边界更加严重,具有实际情况。对于表面效应具有振动旋转锻造的复杂性,构建了振动旋转锻造粘弹性塑性塑性模型,并且通过广义的胡克斯的弹性理论和粘合性空间矩阵和粘合塑性空间基质。增加塑性力学理论,然后通过MATLAB的有限元件进行振动旋转锻造变形分析的表面效果,它显示为吹来:应出现高频振动或低频振动的表面效果,但在那里是在塑料过程中产生的表面效果的一些条件,然后摩擦载体是变形负荷反转的假设,并且在振动时段的一部分时间内有益处变形过程。

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