金属旋压成形铝碗的辊尖半径及毛坯厚度分析

S. Subagiyo, S. Sarjiyana, S. Hadi, S. Suyanta, Asrori Asrori
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引用次数: 0

摘要

金属纺丝是通过高速旋转毛坯,然后使用滚轮定期施加压力,形成圆形金属板。因此,它的形状将遵循模具或芯轴的形状。在印度尼西亚,仍有一些制碗工业使用金属纺丝法。一般情况下,还是采用手工的方法。本研究的目的是找到正确和有效的参数,以产生预期的碗的厚度和高度。本研究采用实验数据收集的方法。本研究使用了2毫米、4毫米和6毫米的滚轮尖端半径变化,以及1毫米、1.2毫米和1.4毫米的毛坯厚度变化。本研究的结果是良好的相互作用结果,即2 mm的辊尖半径和1.4的坯料厚度产生最合适的成形性,其中2 mm的辊尖半径导致工件的高伸长率。金属工件在不损坏或撕裂的情况下经历变形塑性,在厚度为1.4 mm的情况下,与初始毛坯位置相比,面积增加了44.6%。
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Analysis of Roller Tip Radius and Blank Thickness on The Aluminium Bowl Forming by Metal Spinning Method
Metal spinning is used to form a circular metal plate by rotating the blank at high speed and then applying pressure using a roller regularly. So that, its shape will follow the shape of the mold or mandrel. There are still a few bowl-making industries in Indonesia that use the metal spinning method. In general, still use the manual method. The purpose of this study is to find the right and efficient parameters to produce the thickness and height of the bowl as expected. The method used in this study uses experimental data collection. This study uses variations in the radius of the roller tip with variations of 2 mm, 4 mm, and 6 mm, and variations in the blank thickness of 1 mm, 1.2 mm, and 1.4 mm. The results obtained from this study are good interaction results, namely a roller tip radius of 2 mm and a blank thickness of 1.4 produces the most appropriate formability, where a roller tip radius of 2 mm results in high elongation of the workpiece. The metal workpiece is given to experience deformation plastic without being damaged or torn and at a thickness of 1.4 mm experienced an increase in an area up to 44.6% from the initial blank position.
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