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Influence of build orientation on static and axial fatigue properties of maraging steel specimens produced by additive manufacturing

机译:建立方向对添加剂制造生产的静态和轴向疲劳性能的影响

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Additive manufacturing involves a layer-by-layer build-up of mechanical parts and it is a manufacturing technology that can be adopted with different engineering metal materials like steels, aluminium and titanium alloys. Aim of the present investigation is to analyse the influence of the build orientation on static and axial fatigue properties of maraging steel specimens manufactured by Direct Metal Laser Sintering (DMLS) of EOS metal powders. After manufacturing, some of the specimens were subjected to age hardening heat treatment (490 °C for 6 hours, followed by air cooling). Both heat treated and as-manufactured specimens have been built at 0° as well as at 90° orientation with respect to the specimen's axis. Analyses of the crack initiation point are performed in order to investigate the fatigue failure mechanisms. Finally, the fatigue strength of the additively manufactured specimens was compared with that exhibited by vacuum melted specimens of the same steel reported in literature.
机译:添加剂制造涉及机械部件的层逐层积聚,是一种制造技术,可以用不同的工程金属材料采用钢,铝和钛合金。本研究的目的是分析建立方向对通过直接金属激光烧结(DMLS)制造的静态和轴向疲劳性能的静电烧结(DMLS)。制造后,将一些标本进行成效液冷热处理(490℃,6小时,然后是空气冷却)。热处理和制造的样品都在0°和相对于样品轴上以90°取向成立。进行裂缝引发点的分析以研究疲劳失效机制。最后,将添加剂的疲劳强度与在文献中报告的相同钢的真空熔化标本进行了比较。

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