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Finite element analysis and simulation study of CFRP/Ti stacks using ultrasonic additive manufacturing

机译:超声添加剂CFRP / TI堆栈的有限元分析及仿真研究

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摘要

The hybrid laminar composite stack of carbon fiber reinforced polymer (CFRP) and titanium (Ti) are widely used in several critical engineering applications, including aerospace and automobile sectors. The joining of CFRP and Ti through conventional methods has several limitations such as weight additional, material damage, and lower fatigue life. Ultrasonic additive manufacturing (UAM) is a solid-state manufacturing process capable of joining layers of dissimilar materials. Experimental studies have successfully demonstrated the welding of CFRP and Ti through UAM process. However, there is a lack of understanding of the exact bonding process and influence of process parameter on weld quality during UAM. The present study investigates the bonding process and the effects of critical parameters in the UAM process of CFRP and Ti layers using finite element analysis and simulation technique. The simulation study reveals that the CFRP/titanium stacks encounter interfacial cyclic shear stresses and shear strains. The study found that the vibrational amplitude and surface roughness of the substrates play a critical role in achieving a proper weld. The simulation results are validated using experimentation. The finding of this study can help advance the commercialization of UAM process for welding dissimilar materials and composites.
机译:碳纤维增强聚合物(CFRP)和钛(TI)的混合层状复合叠层广泛用于几种关键工程应用,包括航空航天和汽车领域。 CFRP和Ti通过常规方法的连接具有若干限制,例如重量额外,物质损坏和较低的疲劳寿命。超声添加剂制造(UAM)是一种能够连接不同材料层的固态制造方法。通过UAM工艺成功地证明了CFRP和TI的焊接。然而,缺乏了解UAM期间焊接质量的精确粘接过程和过程参数的影响。本研究通过有限元分析和仿真技术研究了CFRP和TI层UAM过程中的键合过程和临界参数的影响。仿真研究表明,CFRP /钛堆遇到界面循环剪切应力和剪切菌株。研究发现,基板的振动幅度和表面粗糙度在实现适当的焊缝方面发挥着关键作用。仿真结果是使用实验验证的。该研究的发现可以帮助推进UAM工艺的商业化,用于焊接异种材料和复合材料。

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