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Effect of Cryogenic Grinding on Fatigue Life of Additively Manufactured Maraging Steel

机译:低温研磨对加肥大制造钢疲劳寿命的影响

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摘要

Additive manufacturing (AM) is replacing conventional manufacturing techniques due to its ability to manufacture complex structures with near-net shape and reduced material wastage. However, the poor surface integrity of the AM parts deteriorates the service life of the components. The AM parts should be subjected to post-processing treatment for improving surface integrity and fatigue life. In this research, maraging steel is printed using direct metal laser sintering (DMLS) process and the influence of grinding on the fatigue life of this additively manufactured material was investigated. For this purpose, the grinding experiments were performed under two different grinding environments such as dry and cryogenic conditions using a cubic boron nitride (CBN) grinding wheel. The results revealed that surface roughness could be reduced by about 87% under cryogenic condition over dry grinding. The fatigue tests carried out on the additive manufactured materials exposed a substantial increase of about 170% in their fatigue life when subjected to cryogenic grinding.
机译:由于其制造具有近净形状和降低的材料浪费的复杂结构的能力,添加剂制造(AM)正在取代常规制造技术。然而,AM部件的差的表面完整性劣化了部件的使用寿命。 AM部件应进行后处理处理,以改善表面完整性和疲劳寿命。在这项研究中,使用直接金属激光烧结(DMLS)工艺印刷钢制钢,并研究了研磨对这种含有加值材料的疲劳寿命的影响。为此目的,在两个不同的研磨环境下进行研磨实验,例如使用立方氮化硼(CBN)砂轮的干燥和低温条件。结果表明,在干燥研磨的低温条件下,表面粗糙度可以减少约87%。在添加的添加剂上进行的疲劳试验在受到低温研磨时暴露在疲劳寿命中大幅增加约170%。

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