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Electro-discharge drilling on DMLS parts in Co-Cr-Mo alloy

机译:CO-CR-MO合金中DMLS零件的电放电钻孔

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Cobalt-base alloys are generally used in applications that require wear, corrosion and heat resistance. In particular, Cobalt-Chromium-Molybdenum (Co-Cr-Mo) alloy is adopted in the aerospace and medical field. These applications are characterized by low volumes and high personalization, so they could take advantage by the employment of additive technologies, such as Direct Metal Laser Sintering (DMLS). This technology still has limitations for the manufacture of small cavities, such as holes with diameters below 0.6 mm and high aspect ratio, which require drilling of the additive manufactured part. Scope of this research is to investigate the effects of Electro-Dicharge Drilling (EDD) on surface and subsurface features of CoCrMo samples built by DMLS. High aspect ratio holes are produced with diameter of 0.6 mm and depth fifteen times higher. The attractiveness of ED machining for thin deep geometries stems from then absence of physical contact between tool and workpiece, which makes machining forces negligible and minimizes tool deformation. Micro features can be produced with a high accuracy irrespective of the material hardness and strength. Material Removal Rate (MRR), Electrode Wear (EW) and surface roughness are investigated versus the process parameters. Results are supported by the study of material removal mechanisms and surface morphology in the microscale, to account for the macroscopic trends.
机译:钴基合金通常用于需要磨损,腐蚀和耐热性的应用中。特别是,航空航天和医疗领域采用钴 - 铬 - 钼(CO-CR-MO)合金。这些应用的特点是低卷和高个性化,因此他们可以利用添加剂技术,例如直接金属激光烧结(DML)。该技术仍然具有制造小腔的限制,例如具有低于0.6mm和高纵横比的孔,其需要钻钻添加剂制造部分。本研究的范围是探讨电 - Dicharge钻井(EDD)对DML构建的Cocro样本的表面和地下特征的影响。高纵横比孔的直径为0.6毫米,深度越高。 ED加工对薄深几何形状的吸引力源于工具和工件之间的物理接触,这使得加工力可忽略不计,并最大限度地减少刀具变形。无论材料硬度和强度如何,都可以高精度生产微观特征。研究了材料去除率(MRR),电极磨损(EW)和表面粗糙度与过程参数相比。研究了微观尺度中材料去除机制和表面形态的研究得到了支持,以解释宏观趋势。

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