首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructure, residual stress and tensile properties control of wire-arc additive manufactured 2319 aluminum alloy with laser shock peening
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Microstructure, residual stress and tensile properties control of wire-arc additive manufactured 2319 aluminum alloy with laser shock peening

机译:激光冲击钢丝焊接2319铝合金丝弧添加剂的微观结构,残余应力和拉伸性能控制

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摘要

Wire-arc additive manufacturing can fabricate components with complex geometries efficiently compared with other manufacturing methods. However, the uncontrolled grain size and tensile residual stress in as-fabricated components have limited their applications. In this study, laser shock peening, an innovative surface treatment technique, was specially-combined with wire-arc additive manufacturing to refine microstructure, modify stress state and enhance tensile properties of as-printed 2319 aluminum alloy. After peening, the average grain size decreased from 59.7 mu m to 46.7 mu m, and the percentage of grains with low angle boundaries increased from 34% to 70%. High density of dislocations and mechanical twins were generated and resulted in the increase of micro-hardness. Residual stresses were modified from tensile to compressive state with a maximum value around 100 MPa. Yield strength was remarkably increased by 72%. This combined printing and peening manufacturing strategy provides microstructure and quality control of manufactured components for practical applications. (c) 2018 Elsevier B.V. All rights reserved.
机译:线弧添加剂制造可以用其他制造方法将具有复杂几何形状的组件有效地制造成分。然而,在制造的组分中不受控制的晶粒尺寸和拉伸残余应力限制了它​​们的应用。在这项研究中,激光冲击喷丸,一种创新的表面处理技术,与线弧添加剂制造专门结合,改进微观结构,改变应力状态,增强印刷2319铝合金的拉伸性能。 Peening后,平均晶粒尺寸从59.7μmm〜46.7μm降低,低角度边界的颗粒百分比增加到34%至70%。产生高密度的脱位和机械双胞胎,导致微硬度的增加。将残留应力从拉伸到压缩状态改性,最大值约为100MPa。产量强度显着增加72%。这种合并的印刷和喷丸制造策略为实际应用提供了制造部件的微观结构和质量控制。 (c)2018年elestvier b.v.保留所有权利。

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