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Investigations on the fracture behavior of Inconel 718 superalloys obtained from cast and additive manufacturing processes

机译:对由铸造和添加剂制造工艺获得的Inconel 718超合金的断裂行为的研究

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摘要

This paper examines the effects of manufacturing processes on the fracture behavior of Inconel 718 alloy at room temperature. This comparative study was conducted on specimens obtained from cast and PBF (Power Bed Fusion) additive manufacturing. Mechanical testing was conducted on single edge notch specimens in bending. In order to quantify the influence of the manufacturing process on the fracture behavior, the J-R curves were obtained from the energy per unit of fracture surface area needed to drive crack growth in agreement with the ASTM standard E1820-01. Depending on the specimen type and the location of the initial notch with respect to the lasing planes, crack initiation significantly differs resulting from specific microstructures. These differences may explain why AM specimens have much higher fracture toughness at initiation (about 70-100%) and subsequent crack propagation. The in situ crack propagation was studied via the observations of the crack path along with the mechanical loading. An original picture analysis was developed to monitor the crack growth based on the location of the crack tip at specimen surface.
机译:本文研究了制造过程对室温下载718合金的断裂行为的影响。在由铸造和PBF(功率床融合)添加剂制造中获得的标本上进行该比较研究。机械测试在弯曲的单边缘凹口标本上进行。为了量化制造过程对裂缝行为的影响,从每单位裂缝表面区域获得J-R曲线,以与ASTM标准E1820-01达成一致性的裂缝表面积。根据样品类型和初始凹口相对于激光平面的位置,裂纹引发显着不同于特定的微观结构。这些差异可以解释为什么AM标本在引发时具有更高的断裂韧性(约70-100%)和随后的裂纹繁殖。通过裂缝路径的观察以及机械负载来研究原位裂缝繁殖。开发了原始图片分析,以基于样品表面的裂缝尖端的位置监测裂缝生长。

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  • 来源
    《Materials Science and Engineering》 |2020年第jul14期|139666.1-139666.12|共12页
  • 作者单位

    GPM INSA Rouen Normandie UMR CNRS 6634 Universite de Rouen 76800 St Etienne du Rouvray France;

    GPM INSA Rouen Normandie UMR CNRS 6634 Universite de Rouen 76800 St Etienne du Rouvray France;

    GPM INSA Rouen Normandie UMR CNRS 6634 Universite de Rouen 76800 St Etienne du Rouvray France;

    GPM INSA Rouen Normandie UMR CNRS 6634 Universite de Rouen 76800 St Etienne du Rouvray France;

    GPM INSA Rouen Normandie UMR CNRS 6634 Universite de Rouen 76800 St Etienne du Rouvray France Volum-E 1 Chemin de la Fonderie 76340 Blangy-sur-Bresle France;

    GPM INSA Rouen Normandie UMR CNRS 6634 Universite de Rouen 76800 St Etienne du Rouvray France;

    GPM INSA Rouen Normandie UMR CNRS 6634 Universite de Rouen 76800 St Etienne du Rouvray France;

    GPM INSA Rouen Normandie UMR CNRS 6634 Universite de Rouen 76800 St Etienne du Rouvray France;

    Volum-E 1 Chemin de la Fonderie 76340 Blangy-sur-Bresle France;

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

    Fracture toughness; Ductility; Cast; Additive manufacturing; Microstructure;

    机译:骨折韧性;延展性;投;添加剂制造;微观结构;

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