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Microstructure homogenizations of Ti-6Al-4V alloy manufactured by hybrid selective laser melting and laser deposition manufacturing

机译:混合选择性激光熔化与激光沉积制造Ti-6Al-4V合金的组织均匀化

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摘要

Recent researches on the addictive manufacturing (AM) of titanium alloys have shown the significant advantages in fabricating complex constructions. Laser deposition manufacturing (LDM) and selective laser melting (SLM) are two representative AM technologies, Ti-6Al-4V alloy samples for the complex structure and functional integration application were fabricated by LDM-SLM hybrid manufacturing process in present research. The microstructure of LDM-SLM hybrid fabrication Ti-6Al-4V components can be divided into three regions: LDM zone mainly composed of the alpha laths, SLM zone which is fully alpha' martensitic and a large number of irregular crystals are distributed in the bonding area between the LDM zone and SLM zone, which is named heat affect zone (HAZ). The inhomogeneous microstructure leads to the discrepancy in mechanical behavior, after multiple cyclic thermal treatment at 750 degrees C/10min - 960 degrees C/10min, the original alpha' martensitic is complete converted to the mixture of alpha-phase and beta-phase and the growth of the thick alpha laths was restrained. The microstructure and mechanical properties of LDM zone and SLM zone tend to be equivalent at all of cycle-treatement. After cyclic thermal treatment, the strength of LDM samples and hybrid fabricated samples vary slightly, but the plasticity of LDM is improved significantly. The morphology features of alpha phase and evolutions of crystallographic orientation are the dominant factors of microstructure homogenizations during cyclic thermal treatments, related information was found in the EBSD investigation.
机译:钛合金上瘾制造(AM)的最新研究表明,在制造复杂结构方面具有显着的优势。激光沉积制造(LDM)和选择性激光熔化(SLM)是两种代表性的增材制造技术,本研究通过LDM-SLM混合制造工艺制造了用于复杂结构和功能集成应用的Ti-6Al-4V合金样品。 LDM-SLM混合制造Ti-6Al-4V零件的微观结构可分为三个区域:主要由α板条组成的LDM区,完全为α'马氏体的SLM区和大量不规则晶体分布在键合区中LDM区域和SLM区域之间的区域,称为热影响区(HAZ)。不均匀的微观结构导致机械性能的差异,在750摄氏度/ 10分钟<-> 960摄氏度/ 10分钟的多次循环热处理之后,原始的α'马氏体完全转化为α相和β相的混合物厚的阿尔法板条的生长受到抑制。 LDM区和SLM区的微观结构和力学性能在所有循环处理中趋于相同。经过循环热处理后,LDM样品和混合制造样品的强度略有不同,但是LDM的可塑性得到了显着提高。 α相的形态特征和晶体学取向的演变是循环热处理过程中微观结构均质化的主要因素,有关的信息可在EBSD研究中找到。

著录项

  • 来源
    《Materials Science and Engineering》 |2019年第24期|404-414|共11页
  • 作者单位

    Sch Mech Engn, Key Lab Fundamental Sci Natl Def Aeronaut Digital, Shenyang 110136, Liaoning, Peoples R China;

    Sch Mech Engn, Key Lab Fundamental Sci Natl Def Aeronaut Digital, Shenyang 110136, Liaoning, Peoples R China;

    Sch Mech Engn, Key Lab Fundamental Sci Natl Def Aeronaut Digital, Shenyang 110136, Liaoning, Peoples R China;

    Sch Mech Engn, Key Lab Fundamental Sci Natl Def Aeronaut Digital, Shenyang 110136, Liaoning, Peoples R China;

    Sch Mech Engn, Key Lab Fundamental Sci Natl Def Aeronaut Digital, Shenyang 110136, Liaoning, Peoples R China;

    Sch Mech Engn, Key Lab Fundamental Sci Natl Def Aeronaut Digital, Shenyang 110136, Liaoning, Peoples R China;

    Sch Mech Engn, Key Lab Fundamental Sci Natl Def Aeronaut Digital, Shenyang 110136, Liaoning, Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ti-6Al-4V; LDM-SLM hybrid fabrication; Microstructure homo-genizations; Mechanical property;

    机译:Ti-6Al-4V;LDM-SLM混合制造;组织均匀化;力学性能;
  • 入库时间 2022-08-18 04:19:11

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