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Study of residual stress and microstructural evolution in as-deposited and inter-pass rolled wire plus arc additively manufactured Inconel 718 alloy after ageing treatment

机译:在沉积和通段轧制线上的残余应力和微观结构演化的研究加弧弧弧弧形处理后的418合金

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摘要

The manufacture of structural components made from nickel-based super alloys would benefit from the commercial advantages of Wire + Arc Additive Manufacturing (WAAM), as it is commonly expensive to process using other conventional techniques. The two major challenges of WAAM are process residual stress and undesired microstructure. Residual stress causes part distortion and build failures, while the as-deposited microstructure does not allow the common heat-treatment to be effective in achieving the desired mechanical properties. This paper focuses on understanding the microstructural features, phase formation and three-dimensional residual stress state variation in as-deposited and inter-pass rolled conditions and after solutionising, quenching and ageing. The thermal history from successive deposition and cold working were correlated to the phase formation and macro residual stress formation and subsequent evolution. The {311} family of crystallographic planes were used as atomic strain gauge to determine the macrostrain and analysis of three dimensional stress state in different processing conditions. The measured strain were corrected for the compositional variation by measuring EDM machined do specimens manufactured under similar processing conditions. While the as-deposited part show significant stress redistribution and distortion after removal from the main fixture, inter-pass rolling was found to reduce part distortion significantly, the residual stress profile after inter-pass rolling showed highest tensile magnitude near the substrate while near the top of the deposit it was compressive as can be expected from the rolling process. The other two beneficial effects of inter-pass rolling on the microstructure are mitigation of the formation of undesired Laves-phase, thereby improving the response to solution treatment and aging together with significantly reduced grain size and texture. The application of inter-pass rolling reduces the potential part complexity, which however does not prevent the manufacture of common candidate parts, which are typically 1-to-l replacements of forged, cast or machined from solid.
机译:制造由镍基超合金制成的结构部件将受益于电线+弧添加制造(WAAM)的商业优势,因为使用其他常规技术通常是昂贵的。 WAAM的两个主要挑战是过程残留应力和不期望的微观结构。残留应力导致部分扭曲和构建故障,而沉积的微观结构不允许常见的热处理能够有效地实现所需的机械性能。本文侧重于理解沉积和遍布轧制条件和溶解,淬火和老化后的微观结构特征,相形成和三维残余应力状态变化。从连续沉积和冷加工的热历史与相形成和宏残余应力形成和随后的进化相关。 {311}晶体晶体晶体族被用作原子应变仪,以确定在不同加工条件下的三维应力状态的宏观棘轮和分析。通过测量在类似加工条件下制造的EDM机加工DO标本来校正测量的菌株。虽然沉积的部分显示出显着的应力再分布和失真从主夹具去除后,发现互通轧制显着降低了部分失真,但在互通轧制后的残余应力曲线显示出在基板附近附近的最高拉伸幅度从轧制过程中可以预期,沉积物的顶部是压缩的。相互通过轧制在微观结构上的其他两个有益效果是对不期望的熔化阶段形成的减轻,从而改善了对溶液处理和老化的响应以及显着降低的粒度和质地。间隙间轧制的施加降低了电位部件复杂性,然而,不防止普通候选部件的制造,其通常是由固体的锻造,铸造或加工的1-L替换。

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  • 来源
    《Materials Science and Engineering》 |2021年第13期|140368.1-140368.13|共13页
  • 作者单位

    Welding Engineering and Laser Processing Centre Cranfield University MK43 OAL Cranfield UK;

    National Structural Integrity Research Centre TW1 Ltd Granta Park Great Abington Cambridge CB21 6AL UK Department of Mechanical Engineering University of Bristol Bristol BS8 1TR UK;

    Welding Engineering and Laser Processing Centre Cranfield University MK43 OAL Cranfield UK;

    Welding Engineering and Laser Processing Centre Cranfield University MK43 OAL Cranfield UK;

    Institut Laue-Langevin 71 Avenue des Martyrs 38000 Grenoble France;

    Department of Mechanical Engineering University of Bristol Bristol BS8 1TR UK;

    Welding Engineering and Laser Processing Centre Cranfield University MK43 OAL Cranfield UK;

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

    Additive manufacture; Neutron diffraction; Nickel; Residual stress; Microstructure;

    机译:添加剂制造;中子衍射;镍;残余压力;微观结构;

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