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首页> 外文期刊>Journal of Manufacturing Processes >Wire and arc additive manufacturing of aluminum alloy lattice structure
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Wire and arc additive manufacturing of aluminum alloy lattice structure

机译:铝合金格架结构的电弧和电弧增材制造

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摘要

Wire and arc additive manufacturing (WAAM) has been used to manufacture ER2319 aluminum alloy lattice structure, whereas a relationship of the struts diameter of lattice structure with the size and number of droplets, struts angle with the inter-layer lift and offset of the arc torch was developed. The manufacturing strategy of lattice structure by WAAM was formulated, and the aluminum alloy lattice structure demonstration was prepared where compressive properties were measured. The results show that the size of the droplet can be controlled by adjusting the current, voltage, and period within a pulse period; and then the struts diameter can be controlled by adjusting the size and number of droplets. The struts with a diameter of no less than 2.50mm were manufactured by WAAM, and its relative error was less than 2.0%. The struts angle can be controlled by adjusting the inter-layer lift and offset of the arc torch. The angle of the strut was from 15 degrees to 90 degrees, and its relative error was below 4.0%. A 3-layer pyramid lattice structure demonstration of the aluminum alloy composed of struts with a diameter of 3 mm and an angle of 45 degrees was fabricated by WAAM. The average compressive strength of ER2319 aluminum Alloy lattice structure was 58.53 MPa.
机译:线和电弧增材制造(WAAM)已用于制造ER2319铝合金晶格结构,而晶格结构的支杆直径与液滴的大小和数量,支杆角度与层间升力和电弧偏移之间的关系火炬被开发出来。制定了WAAM制备晶格结构的策略,并准备了铝合金晶格结构的演示,并对其压缩性能进行了测量。结果表明,可以通过调节脉冲周期内的电流,电压和周期来控制液滴的大小。然后可以通过调整液滴的大小和数量来控制支柱的直径。 WAAM公司生产直径不小于2.50mm的支柱,其相对误差小于2.0%。支杆角度可以通过调节层间升力和电弧炬的偏移量来控制。支柱的角度为15度到90度,其相对误差低于4.0%。 WAAM制造了由直径为3 mm,角度为45度的支柱组成的铝合金的三层金字塔晶格结构演示。 ER2319铝合金晶格结构的平均抗压强度为58.53 MPa。

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