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首页> 外文期刊>Materials Science and Engineering >On the microstructural and mechanical properties of post-treated additively manufactured Inconel 718 superalloy under quasi-static and cyclic loading
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On the microstructural and mechanical properties of post-treated additively manufactured Inconel 718 superalloy under quasi-static and cyclic loading

机译:在准静态和循环载荷下后处理的增材制造的Inconel 718高温合金的显微组织和力学性能

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摘要

Inconel 718 specimens were additively manufactured via selective laser melting (SLM) and subjected to different post-process heat treatments. Performance under monotonic and cyclic loading in the low-cycle fatigue (LCF) regime was investigated at room temperature (RT). Hot isostatic pressing (HIP) was employed in order to reduce the porosity typically present after SLM. Prior functional encapsulation with a Ni-20Cr coating applied by cathodic arc deposition (Arc-PVD) was applied to achieve full densification. The results show that after Arc-PVD and HIP, the mechanical properties are not only affected by reduced porosity but also by substantial microstructural changes. Precipitates, Le. Laves phase, already present in the as-built condition can be dissolved by solution heat treatment. HIP leads to recrystallization and thus significantly changes microstructural appearance. Elongated grains and sub-micron sized cell structures stemming from SLM processing are eliminated by HIP. Aging leads to evolution of strengthening γ" precipitates. Concurrently, δ phase forms upon HIP and aging. In comparison to aged conditions that were not subjected to HIP, microstructure upon HIP and aging results in improved ductility under monotonic loading, however, concomitantly deteriorates fatigue properties at RT.
机译:Inconel 718标本通过选择性激光熔化(SLM)进行增材制造,并经过不同的后处理热处理。在室温(RT)下研究了低循环疲劳(LCF)情况下单调和循环载荷下的性能。为了降低SLM后通常存在的孔隙率,采用了热等静压(HIP)。使用通过阴极电弧沉积(Arc-PVD)施加的带有Ni-20Cr涂层的现有功能封装,以实现完全致密化。结果表明,经过Arc-PVD和HIP处理后,力学性能不仅受孔隙率降低的影响,而且还受到微观结构的实质性变化的影响。沉淀,勒。可以通过固溶热处理溶解已经存在的Laves相。 HIP导致重结晶,从而显着改变微观结构外观。通过SIP消除了源自SLM加工的细长晶粒和亚微米尺寸的孔结构。老化会导致强化的γ“析出物的发展。同时,HIP和时效会形成δ相。与未进行HIP的时效条件相比,HIP时效和时效后的微观结构可改善单调加载下的延展性,但同时也会使疲劳性恶化RT的属性。

著录项

  • 来源
    《Materials Science and Engineering》 |2016年第4期|246-258|共13页
  • 作者单位

    Paderborn University, Lehrstuhl fuer Werkstoffkunde (Materials Science), 33098 Paderborn, Germany ,Direct Manufacturing Research Center (DMRC), 33098 Paderborn, Germany;

    Paderborn University, Lehrstuhl fuer Werkstoffkunde (Materials Science), 33098 Paderborn, Germany ,Direct Manufacturing Research Center (DMRC), 33098 Paderborn, Germany;

    Paderborn University, Lehrstuhl fuer Werkstoffkunde (Materials Science), 33098 Paderborn, Germany ,Direct Manufacturing Research Center (DMRC), 33098 Paderborn, Germany;

    TU Dortmund, Institute of Materials Engineering, 44227 Dortmund, Germany;

    TU Dortmund, Institute of Materials Engineering, 44227 Dortmund, Germany;

    RIF e.V., Institut fuer Forschung und Transfer, 44227 Dortmund, Germany;

    University of Kassel, Institute of Materials Engineering, 34125 Kassel, Germany;

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

    Additive manufacturing; Selective laser melting; Nickel-based alloy; Microstructure; Fatigue;

    机译:添加剂制造;选择性激光熔化;镍基合金;微观结构疲劳;

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