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Formability, microstructure and mechanical properties of Ti-6A1-4V deposited by wire and arc additive manufacturing with different deposition paths

机译:线和电弧增材制造在不同沉积路径下沉积的Ti-6A1-4V的可成形性,微观结构和力学性能

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摘要

By means of wire and arc additive manufacturing (WAAM) in an inert environment, the Ti-6A1-4V thin-wall parts were fabricated. To explore the effect of different deposition paths of WAAM on formability, microstructure and mechanical properties, the samples were analyzed by surface profiler, optical microscope (OM), scanning electron microscopy (SEM), X-ray diffraction (XRD), Vickers hardness and universal testing machine. The results indicate that the side surface waviness (SW) of the samples from samples by reciprocating deposition path in both ends are higher than those in the middle, but SW of the samples by co-directional deposition path gradually rise from arc starting to arc stopping. Prior-p grains from the samples by co-directional deposition path are inclined relative to the building direction, and there are many winding prior-p grains in the samples by reciprocating deposition path. In the vertical direction, the strength of samples by co-directional deposition path is higher than those by reciprocating deposition path. Furthermore, the microstructure around the white band structure consists of fine basket-weave, colony a and coarse basket-weave in sequence from top to bottom. The white band region is a slight hardness drop (~20 HV_(0.2)). but it has almost no effect on tensile strength.
机译:通过在惰性环境中进行线材和电弧增材制造(WAAM),制造了Ti-6A1-4V薄壁零件。为了探索WAAM不同沉积路径对可成形性,微观结构和力学性能的影响,通过表面轮廓仪,光学显微镜(OM),扫描电子显微镜(SEM),X射线衍射(XRD),维氏硬度和万能试验机。结果表明,两端通过往复式沉积路径获得的样品的侧表面波纹度(SW)均高于中间位置,但通过同向沉积路径获得的样品的侧表面波纹度(SW)从电弧开始到电弧停止逐渐升高。来自样品的通过同向沉积路径的先验p晶粒相对于构建方向倾斜,并且通过往复运动的沉积路径在样品中有许多缠绕的先验p晶粒。在垂直方向上,通过同向沉积路径的样品的强度高于通过往复沉积路径的样品的强度。此外,白带结构周围的微观结构由上至下依次由精细的篮子编织,菌落a和粗糙的篮子编织组成。白带区域是轻微的硬度下降(〜20 HV_(0.2))。但对拉伸强度几乎没有影响。

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  • 来源
    《Materials Science and Engineering》 |2020年第20期|138654.1-138654.11|共11页
  • 作者单位

    College of Mechanical Engineering Yanshan University Qjnhuangdao 066004 PR China State Key Laboratory of Metastable Materials Science & Technology Yanshan University Qjnhuangdao 066004 PR China;

    College of Mechanical Engineering Yanshan University Qjnhuangdao 066004 PR China;

    Northwest Institute for Nonferrous Metal Research Xi'an 710016 PR China;

    Faculty of Materials Science and Engineering Kunming University of Science and Technology Kunming 650093 PR China;

    National ti Local Joint Engineering Laboratory for Slag Comprehensive Utilization and Environmental Technology Shaanxi University of Technology Hanzhong 723000 PR China;

    State Key Laboratory of Metastable Materials Science & Technology Yanshan University Qjnhuangdao 066004 PR China;

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

    WAAM; Deposition path; Formability; Microstructure; Mechanical properties;

    机译:WAAM;沉积路径;可成型性微观结构机械性能;

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