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Use of ultrasonic consolidation for fabrication of multi-material structures

机译:超声固结用于制造多材料结构

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Purpose - Ultrasonic consolidation (UC) is a novel additive manufacturing process developed for fabrication of metallic parts from foils. While the process has been well demonstrated for part fabrication in Al alloy 3003, some of the potential strengths of the process have not been fully explored. One of them is its suitability for fabrication of parts in multi-materials. This work aims to examine this aspect. Design/methodology/approach - Multi-material UC experiments were conducted using Al alloy 3003 foils as the bulk part material together with a number of engineering materials (foils of Al-Cu alloy 2024, Ni-base alloy Inconel 600 AISI 347 stainless steel, and others). Deposit microstructures were studied to evaluate bonding between various materials. Findings - It was found that most of the materials investigated can be successfully bonded to alloy Al 3003 and vice versa. SiC fibers and stainless wire meshes were successfully embedded in an Al 3003 matrix. The results suggest that the UC process is quite suitable for fabrication of multi-material structures, including fiber-reinforced metal matrix composites. Originality/value - This work systematically examines the multi-material capability of the UC process. The findings of this work lay a strong foundation for a wider and more efficient commercial utilization of the process.
机译:目的-超声波固结(UC)是一种新颖的增材制造工艺,用于从箔片制造金属零件。尽管已经很好地证明了该工艺可用于铝合金3003的零件制造,但尚未充分探索该工艺的某些潜在优势。其中之一是它适合制造多种材料的零件。这项工作旨在研究这一方面。设计/方法/方法-使用铝合金3003箔作为主体材料以及多种工程材料(铝铜合金2024的箔,镍基合金Inconel 600 AISI 347不锈钢,和别的)。研究了沉积物的微结构,以评估各种材料之间的结合。发现-发现大多数被研究的材料都可以成功地结合到Al 3003合金上,反之亦然。 SiC纤维和不锈钢丝网已成功嵌入Al 3003基体中。结果表明,UC工艺非常适合制造多种材料的结构,包括纤维增强的金属基复合材料。原创性/价值-这项工作系统地检查了UC流程的多种材料功能。这项工作的发现为该工艺的更广泛,更有效的商业利用奠定了坚实的基础。

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