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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Heat-induced molten pool boundary softening behavior and its effect on tensile properties of laser additive manufactured aluminum alloy
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Heat-induced molten pool boundary softening behavior and its effect on tensile properties of laser additive manufactured aluminum alloy

机译:热诱导的熔融池边界软化行为及其对激光添加剂制造铝合金拉伸性能的影响

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摘要

Changes in the microstructure and the mechanical properties of AlSi10 Mg alloy fabricated by selective laser melting combined with the subsequent heat treatment have been studied. The influence of the heat treatment on the molten pool boundary softening, microstructure evolution and the resultant mechanical properties has been elucidated. The as-fabricated specimens exhibited the various Si phase patterns within the different regions of the molten pool corresponding to the columnar perpendicular to the molten pool boundary and cellular columnar in the upper center region due to the various thermal behaviors. The solubility of Si atoms was decreased and rejected into fine Si particles with the formation of the molten pool boundary softening and the homogeneous distribution in the heat induced part, playing a key role in the mechanical properties of AlSi1 0 Mg alloy. The ultimate tensile strength decreased from 476.8 MPa for the as-fabricated part to 320.5 MPa while, the fracture ductility significantly increased from 7.33% to 13.3% as the test specimens were heat treated at 573 K for 2 h. It indicated that the microstructure evolution and tensile properties of the as-fabricated AlSi10 Mg alloy could be tailored through molten pool softening and size and morphology of the Si phase at the suitable heat treatments.
机译:研究了通过选择性激光熔化与随后的热处理合并的AlSi10mg合金的微观结构和机械性能的变化。阐明了热处理对熔池界界软化,微观结构演化和所得机械性能的影响。由于各种热行为,所以制造的样本在与熔池边界的柱状和上部中心区域中的柱状柱的不同区域内的各种Si相形图表达了与上部中心区域中的柱状柱的不同区域。将Si原子的溶解度降低并被排出到细Si颗粒中,形成熔池边界软化和热诱导部分中的均匀分布,在Alsi1 0 mg合金的机械性能下发挥关键作用。对于AS制造部分至320.5MPa的476.8MPa,极限拉伸强度降低,裂缝延展性显着增加到7.33%至13.3%,因为试样在573k中处理2小时。结果表明,通过在合适的热处理的Si相的熔融池软化和尺寸和形貌中可以定制由制造的AlSi10mg合金的微观结构演化和拉伸性能。

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