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Characteristics of Wall Thickness Increase in Pipe Reduction Process Using Planetary Rolls

机译:使用行星辊的管道减少工艺壁厚度增加的特性

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In recent years, global warming has become a worldwide problem. The reduction of carbon dioxide emissions is a top priority for many companies in the manufacturing industry. In the automobile industry as well, the reduction of carbon dioxide emissions is one of the most important issues. Technology to reduce the weight of automotive parts improves the fuel economy of automobiles, and is an important technology for reducing carbon dioxide. Also, even if this weight reduction technology is applied to electric automobiles rather than gasoline automobiles, reducing energy consumption remains an important issue. Plastic processing of hollow pipes is one important technology for realizing the weight reduction of automotive parts. Ohashi et al. [1-2] present an example of research on pipe formation in which a process was carried out to enlarge a pipe diameter using a lost core, achieving the suppression of wall thickness reduction and greater pipe expansion than hydroforming. In this study, we investigated a method to increase the wall thickness of a pipe through pipe compression using planetary rolls. The establishment of a technology whereby the wall thickness of a pipe can be controlled without buckling the pipe is an important technology for the weight reduction of products. Using the finite element analysis method, we predicted that it would be possible to increase the compression of an aluminum pipe with a 3mm wall thickness by approximately 20%, and wall thickness by approximately 20% by pressing the hollow pipe with planetary rolls.
机译:近年来,全球变暖已成为全球问题。减少二氧化碳排放是制造业许多公司的首要任务。在汽车工业中,还原二氧化碳排放是最重要的问题之一。减少汽车部件重量的技术提高了汽车的燃油经济性,是减少二氧化碳的重要技术。此外,即使将这种重量减轻技术应用于电动汽车而不是汽油汽车,也减少了能量消耗仍然是一个重要问题。空心管的塑料加工是实现汽车零部件重量减轻的重要技术。 ohashi等。 [1-2]介绍了对管道形成的研究的一个例子,其中进行了使用丢失的芯来扩大管道直径的过程,实现了壁厚减小和比液压成形更大的管膨胀抑制。在这项研究中,我们研究了一种通过使用行星辊通过管压缩增加管道壁厚的方法。建立一种技术,即可以控制管道的壁厚而不屈曲,管道是产品重量减轻的重要技术。使用有限元分析方法,我们预测,通过用行星辊压紧空心管,可以将铝管厚度的铝管与3mm壁厚的压缩增加约20%,壁厚约20%。

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