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Improving Linear Weld Density in Ultrasonically Consolidated Parts

机译:提高超声综合零件中的线性焊接密度

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Ultrasonic consolidation is a novel additive manufacturing process with immense potential for fabrication of complex shaped three-dimensional metallic objects from metal foils. The proportion of bonded area to unbonded area along the layer interface, termed linear weld density (LWD), is perhaps the most important quality attribute of ultrasonically consolidated parts. Part mechanical properties largely depend on LWD and a high level of LWD must be ensured in parts intended for load-bearing structural applications. It is therefore necessary to understand what factors influence LWD or defect formation and devise methods to enhance bond formation during ultrasonic consolidation. The current work examines these issues and proposes strategies to ensure near 100% LWD in ultrasonically consolidated aluminum alloy 3003 parts. The work elucidates the effects of various process parameters on LWD and a qualitative understanding of the effects of process parameters on bond formation during ultrasonic consolidation is presented. The beneficial effects of using elevated substrate temperatures and its implications on overall manufacturing flexibility are discussed. A preliminary understanding of defect morphologies and defect formation is presented, based on which a method (involving surface machining) for minimizing defect incidence during ultrasonic consolidation is proposed and demonstrated. Finally, trade-offs between part quality and build time are discussed.
机译:超声波固结是一种新的添加剂制造方法,其具有来自金属箔的复合形三维金属物体的制造巨大潜力。沿着层界面沿层界面的粘合区域与未粘合区域的比例称为线性焊接密度(LWD),也许是超声综合零件的最重要的质量属性。部件机械性能在很大程度上取决于LWD和高水平的LWD,必须确保用于承载结构应用的部件。因此,有必要了解什么是影响LWD或缺陷的形成和设计方法,以提高超声波固结期间增强键形成的方法。目前的工作审查了这些问题,并提出了在超声综合铝合金3003份接近100%LWD的策略。作品阐明了各种工艺参数对LWD的影响,并提出了超声波固结过程中对工艺参数对键合形成的定性理解。讨论了使用升高的基板温度及其对整体制造灵活性的影响的有益效果。提出并证明了基于其中用于最小化超声波固结期间最小化缺陷发生率的方法(涉及表面加工)的初步理解。最后,讨论了部件质量和建筑时间之间的权衡。

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