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Design and manufacture of an automotive hybrid aluminum/composite drive shaft

机译:汽车混合铝/复合驱动轴的设计和制造

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Substituting composite structures for conventional metallic structures has many advantages because of higher specific stiffness and higher specific strength of composite materials. In this work, one-piece automotive hybrid aluminum/composite drive shaft was developed with a new manufacturing method, in which a carbon fiber epoxy composite layer was co-cured on the inner surface of an aluminum tube rather than wrapping on the outer surface to prevent the composite layer from being damaged by external impact and absorption of moisture. The optimal stacking sequence of the composite layer was determined considering the thermal residual stresses of interface between the aluminum tube and the composite layer calculated by finite element analysis. Press fitting method for the joining of the aluminum/composite tube and steel yokes was devised to improve reliability and to reduce manufacturing cost, compared to other joining methods such as adhesively bonded, bolted or riveted and welded joints. Protrusion shapes on the inner surface of steel yoke were created to increase the torque capability of the press fitted joint. From experimental results, it was found that the developed one-piece automotive hybrid aluminum/composite drive shaft had 75% mass reduction, 160% increase in torque capability compared with a conventional two-piece steel drive shaft. It also had 9390 rpm of natural frequency which was higher than the design specification of 9200 rpm.
机译:由于复合材料的更高的比刚度和更高的比强度,用复合材料结构代替常规金属结构具有许多优点。在这项工作中,采用一种新的制造方法开发了一件式汽车混合铝/复合驱动轴,其中,碳纤维环氧复合材料层在铝管的内表面上共固化,而不是在外表面上包裹以固化。防止复合层被外部冲击和水分吸收损坏。考虑有限元分析计算的铝管与复合层界面的热残余应力,确定复合层的最佳堆积顺序。与诸如胶接,螺栓或铆接和焊接接头之类的其他连接方法相比,设计了用于铝/复合管和钢轭铁连接的压装方法,以提高可靠性并降低制造成本。在钢轭内表面上形成突起形状,以增加压配合接头的扭矩能力。从实验结果发现,与传统的两件式钢制驱动轴相比,开发的一体式汽车混合铝/复合驱动轴的质量降低了75%,扭矩能力提高了160%。它还具有9390 rpm的固有频率,高于9200 rpm的设计规格。

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