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Computed tomography for characterization of fatigue performance of selective laser melted parts

机译:计算机断层扫描以表征选择性激光熔化零件的疲劳性能

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摘要

Components manufactured by maturing additive manufacturing techniques like selective laser melting (SLM) find potential competence in several applications especially in automotive and aerospace industries as well as in medical applications like customized implants. The manufactured parts possess better, or at least comparable, yield strength and tensile strength values accompanied with a reduced fracture strain. Though their fatigue performance in the as-built condition is impaired due to surface roughness, it can be sufficiently improved by post-process surface treatments. Even then, there exists a high fatigue scatter due to remnant porosity. Characterization of remnant porosity is necessary for a reliable component design to be employed for cyclic applications. Computed tomography has been used in this study to evaluate the influence of porosity-incited stress concentration on the corresponding fatigue scatter. Microscopic analysis, tensile tests, fatigue tests with continuous load increase and constant amplitudes as well as finite element analysis have been used for this purpose. Critical pore characteristics and a modification in the process scanning strategy have been recommended so that the components can be reliably used in fatigue-loaded applications.
机译:通过成熟的增材制造技术(例如选择性激光熔化(SLM))制造的组件在多种应用中具有潜在的竞争力,尤其是在汽车和航空航天工业以及定制化植入物等医疗应用中。所制造的零件具有更好的屈服强度和抗拉强度值,或至少具有可比性,并且断裂应变降低。尽管由于表面粗糙度而削弱了它们在建成状态下的疲劳性能,但可以通过后处理表面处理充分改善其疲劳性能。即使这样,由于残留的孔隙率,仍存在较高的疲劳散布。残余孔隙度的表征对于用于循环应用的可靠组件设计是必要的。在这项研究中已使用计算机断层扫描技术来评估孔隙度引起的应力集中对相应疲劳散布的影响。为此,使用了微观分析,拉伸试验,具有不断增加的载荷和恒定振幅的疲劳试验以及有限元分析。推荐了关键的孔特性和工艺扫描策略的修改,以使这些组件可以可靠地用于疲劳载荷应用中。

著录项

  • 来源
    《Materials & design》 |2015年第15期|661-669|共9页
  • 作者单位

    Department of Materials Test Engineering (WPT), TU Dortmund University, Baroper Str. 303, D-44227 Dortmund, Germany,Higher Education Commission (HEC), Sector H-9, Islamabad, Pakistan;

    Department of Materials Test Engineering (WPT), TU Dortmund University, Baroper Str. 303, D-44227 Dortmund, Germany;

    Packaging & Interconnection Laboratory, University of Applied Sciences Aschaffenburg, Wuerzburger Str. 45, D-63743 Aschaffenburg, Germany;

    Packaging & Interconnection Laboratory, University of Applied Sciences Aschaffenburg, Wuerzburger Str. 45, D-63743 Aschaffenburg, Germany;

    Laser Zentrum Nord (LZN), Am Schleusengraben 14, D-21029 Hamburg, Germany;

    Laser Zentrum Nord (LZN), Am Schleusengraben 14, D-21029 Hamburg, Germany,Institute of Laser and System Technologies (iLAS), Hamburg University of Technology (TUHH), Denickestr. 17, D-21073 Hamburg, Germany;

    Department of Materials Test Engineering (WPT), TU Dortmund University, Baroper Str. 303, D-44227 Dortmund, Germany;

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

    Selective laser melting (SLM); Stress concentration factor; Porosity; Computed tomography; Fatigue; Regional re-melting;

    机译:选择性激光熔化(SLM);应力集中系数;孔隙率CT检查;疲劳;区域重熔;

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