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基于金属液滴水平重叠沉积工艺对表面形貌和内部质量优化研究
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1.西安科技大学;2.西安科技大学,西安交通大学

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Outstanding Youth science Fund of Xi "an university of Science and Technology” (No.2018YQ3-06).


Process optimization to surface morphology and internal quality on metal droplets horizontal lapped deposition
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State key laboratory for manufacturing systems engineering of Xi’an Jiao tong university

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    摘要:

    在铝熔滴在铝基板上沉积、凝固过程中,研究了不同工艺参数下的对成形表面形貌和内部质量的影响规律。通过对单一金属液滴沉积行为研究,建立了横向搭接沉积数值模型,并对两个,三个,四个熔融液滴重叠形态的进化和温度变化过程进行分析和实验验证。实验表明:数值模拟与实验结果有良好的一致性,从而得到了最优参数。该研究对实现金属微液滴重叠沉积生产的有效过程控制至关重要,为液滴水平重叠沉积复杂金属提供了技术支持和参考。

    Abstract:

    During horizontal lapped deposition with solidification of an aluminum molten droplet onto an aluminum substrate, the effects of the surface morphology and interior quality of the specimens under different process parameters were studied in this paper. By research of the single metal droplet deposition behavior, the horizontal lapped deposition of numerical model was established, and the evolution of morphology and temperature of one, two, three and four molten droplets horizontal lapped deposition impacting a substrate surface at different time respectively and multiple droplets successively deposition experiments under the different simulation parameters were carried out. In order to confirm the numerical simulations and experimental verification, the comparison between numerical simulations and experiments shows a good agreement. The optimal parameters are obtained. This investigation is essential to implement effective process control in metal micro-droplet deposition manufacture and it provides technical support and reference for the complex metal parts of molten droplets horizontal lapped deposition process.

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李素丽,杨来侠、卢秉恒.基于金属液滴水平重叠沉积工艺对表面形貌和内部质量优化研究[J].稀有金属材料与工程,2019,48(8):2460~2467.[SuLi LI, laixia yang, bingheng lu. Process optimization to surface morphology and internal quality on metal droplets horizontal lapped deposition[J]. Rare Metal Materials and Engineering,2019,48(8):2460~2467.]
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  • 收稿日期:2018-02-12
  • 最后修改日期:2018-04-01
  • 录用日期:2018-08-31
  • 在线发布日期: 2019-09-05
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