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Study on Thickness Thinning Ratio of the Forming Parts in Single Point Incremental Forming Process

机译:单点增量成型过程中成型部件厚度稀薄比的研究

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摘要

An excessive thickness-reducing ratio of the deformation zone in single point incremental forming of the metal sheet process has an important influence on the forming limit. Prediction of the deformation zone thickness is an important approach to control the thinning ratio. Taking the 1060 aluminum as the research object, the principle of thickness deformation in the single point incremental forming process was analyzed; the finite element model was established using ABAQUS. A formula with high accuracy to predict the deformation zone thickness was fitted with the simulation results, and the influences of process parameters, such as tool diameter, step down, feeding speed, sheet thickness, and forming angle, on thinning ratio were analyzed. The accuracy of the finite element simulation was verified by experiment. A method to control the thinning rate by changing the forming trajectory was proposed. The results showed that the obtained value by using the fitted formula is closer to the experimental results than that obtained by the sine theorem. The thinning rate of the deformation zone increases with the increase of tool diameter, forming angle, and sheet thickness and decreases with the increase of step down, while the feeding speed had no significant effect on the thinning ratio. The most important factor of the thinning ratio is the forming angle, and the thinning ratio can be effectively reduced by using the forming trajectory with a uniformly distributed pressing point.
机译:金属板工艺的单点增量成形中的变形区的过度厚度降低比率对成形极限具有重要影响。变形区厚度的预测是控制稀释比的重要方法。以1060铝为研究对象,分析了单点增量成型过程中厚变形原理;使用ABAQU建立有限元模型。分析了具有高精度的配方,采用仿真结果,分析了仿真结果,分析了工艺参数的影响,例如工艺参数,如刀具直径,下降,进给速度,板材厚度和形成角度。通过实验验证了有限元模拟的准确性。提出了通过改变成形轨迹来控制变薄速率的方法。结果表明,通过使用拟合式配方的所得值更接近实验结果,而不是由正弦定理获得的实验结果。随着刀具直径,成形角度和片材厚度的增加,变形区的稀释率随着较低的增加而减小,而进料速度对稀薄比没有显着影响。更薄的比率的最重要因素是成形角度,并且通过使用具有均匀分布的按键的形成轨迹可以有效地减小稀释比。

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