Abstract Characteristics of microstructure and stresses and their effects on interfacial fracture behavior for laser-deposited maraging steel
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Characteristics of microstructure and stresses and their effects on interfacial fracture behavior for laser-deposited maraging steel

机译:激光沉积马氏体时效钢的组织和应力特性及其对界面断裂行为的影响

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摘要

AbstractLaser cladding is one of the most attractive ways to repair or remanufacture high-added-value engineering components. The present paper describes the effect of microstructure and residual stresses on the interfacial fracture behavior of laser-deposited maraging steel. The multi-layer overlapped cladding material was deposited on maraging steel substrates using laser hot-wire deposition. Residual stress profile was measured by X-ray diffraction. Temperature evolution and the induced phase transformation during the process were investigated to reveal the generation mechanism of residual stresses. A novel testing method was developed to analyze the interfacial fracture behavior and evaluate the bonding strength with specially designed T-shaped samples. The compressive stresses derived from martensitic expansion was presented in the clad layer, and tensile stresses in the heat affected zone up to a depth of 4mm, which was caused by thermal shrinkage. Both the solidification micro-voids and steep stress gradient appearing in the interface contributed to the propagation of interfacial crack that will critically affect the mechanical properties of laser deposited material.Graphical abstractDisplay OmittedHighlightsCompressive stress existed in clad layer, and tensile in HAZ with a depth of 4mm.Stress profile resulted from interaction between thermal shrinkage and martensitic expansion.Fracture morphology presents recognizable boundaries along laser scanning direction.Solidification voids and steep stress gradient facilitated interfacial crack propagation.
机译: 摘要 激光熔覆是修复或再制造高附加值工程组件的最有吸引力的方法之一。本文描述了显微组织和残余应力对激光沉积马氏体时效钢界面断裂行为的影响。使用激光热线沉积将多层重叠的包层材料沉积在马氏体时效的钢基底上。残余应力分布通过X射线衍射测量。研究过程中的温度演变和诱导相变,以揭示残余应力的产生机理。开发了一种新颖的测试方法来分析界面断裂行为并评估与特殊设计的T形样品的结合强度。马氏体膨胀产生的压缩应力出现在覆层中,而热影响区中的热应力引起的拉伸应力则高达4mm,这是由热收缩引起的。界面中出现的凝固微孔和陡峭的应力梯度均会导致界面裂纹的扩展,从而严重影响激光沉积材料的机械性能。 < / ce:abstract> 图形摘要 省略显示 突出显示 < ce:simple-para id =“ sp0135” view =“ all”> 复合层中存在压应力,HAZ中的拉伸应力为4mm。 热收缩和马氏体膨胀之间的相互作用导致应力分布。 断裂形态呈现沿激光扫描方向可识别的边界。 凝固空洞和陡峭的应力梯度促进了界面裂纹的扩展。 < / ce:abstract-sec>

著录项

  • 来源
    《Materials & design》 |2018年第1期|56-67|共12页
  • 作者单位

    State Key Laboratory of Tribology, Tsinghua University,Beijing Key Lab of Precision/Ultra-precision Manufacturing Equipments and Control, Tsinghua University;

    State Key Laboratory of Tribology, Tsinghua University,Beijing Key Lab of Precision/Ultra-precision Manufacturing Equipments and Control, Tsinghua University;

    State Key Laboratory of Tribology, Tsinghua University,Beijing Key Lab of Precision/Ultra-precision Manufacturing Equipments and Control, Tsinghua University;

    Mechanical and Energy Engineering Department, South University of Science and Technology of China;

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

    Laser direct deposition; Microstructure analysis; Residual stress; Interfacial strength; Fracture behavior;

    机译:激光直接沉积;显微组织分析;残余应力;界面强度;断裂行为;
  • 入库时间 2022-08-17 13:16:54

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