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Effect of post-deposition heat treatment on laser-TIG hybrid additive manufactured Al-Cu alloy

机译:沉积热处理对激光 - TIG杂化添加剂制造的Al-Cu合金的影响

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摘要

After solution + artificial aging treatment (T6 heat treatment) of 2219 aluminum alloy fabricated by laser-tungsten inert gas (TIG) hybrid method, more interestingly, we found that both the strength and elongation were improved. The strengthening mechanism has been analysed in details. Results showed that each layer was divided into the arc zone (AZ) and laser zone (LZ) before and after heat treatment. After T6 heat treatment, the columnar crystal grain morphologies remained the same as the as-deposited condition, while the microstructure presented a strong {001} texture along the building direction. Moreover, the high density of the needle-shaped theta '' phases were uniformly precipitated after artificial aging. Distinct grain morphology, increased the mass fraction of Cu in the Al matrix, and nano-precipitates in the AZ and LZ improved the tensile properties, which exhibited a yield strength of 242.1 +/- 19.6 MPa, an ultimate tensile strength of 407.1 +/- 31.1 MPa, respectively.
机译:通过激光 - 钨惰性气体(TIG)杂种法制造的2219铝合金(T6热处理),更有趣的是,我们发现强度和伸长率改善了。 在细节中分析了强化机制。 结果表明,在热处理之前和之后,将每层分成电弧区(AZ)和激光区(LZ)。 在T6热处理之后,柱状晶粒形态与沉积条件保持相同,而微观结构沿建筑方向呈现出强的{001}纹理。 此外,在人工老化后,针状θ'阶段的高密度均匀地沉淀。 明显的晶粒形态,增加了Al基质中Cu的质量分数,并在AZ和LZ中纳米沉淀物改善了拉伸性能,其屈服强度为242.1 +/- 19.6MPa,最终拉伸强度为407.1 + / - 31.1 MPA。

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