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首页> 外文期刊>Journal of Manufacturing Processes >Influence of duplex jets MQL and nano-MQL cooling system on machining performance of Nimonic 80A
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Influence of duplex jets MQL and nano-MQL cooling system on machining performance of Nimonic 80A

机译:双相喷头MQL和纳米MQL冷却系统对尼苏径80A加工性能的影响

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摘要

Nickel based super alloys are considered as difficult to machine materials. These days, the sustainable cooling system are applied at the cutting zone for enhancing the machining performance of nickel based super alloys. Therefore, the present work focusses on the machining aspects of Nimonic 80A under different cooling conditions. Moreover, the turning experiments were performed under dry, minimum quantity lubrication (MQL different positions) and nano-MQL (different positions) conditions and the influence of nozzle position during MQL and nano-MQL were investigated. The tool wear, surface roughness, mechanism promoting tool wear, power consumption and chips morphology were investigated under these subjected conditions. The outcomes of this study state that the position of MQL nozzles plays an important role to improve the machining performance of Nimonic-80 alloy. The total tool wear is approximately 60% better for nano-MQL (mixed direction) than dry conditions. The results also stated that abrasion and adhesion are prompting tool wear mechanisms observed under dry conditions.
机译:基于镍的超合金被认为是难以机材料的。如今,可持续冷却系统应用于切割区,以提高基于镍的超合物的加工性能。因此,本作者在不同冷却条件下侧重于鼻窦80a的加工方面。此外,在干燥的最小量润滑(MQL不同位置)和纳米-MQL(不同位置)条件下进行转弯实验,并研究了MQL和纳米MQ1期间喷嘴位置的影响。在这些受试情况下,研究了刀具磨损,表面粗糙度,促进工具磨损,功耗和芯片形态。该研究结果的结果是MQL喷嘴的位置起到提高Nimonic-80合金的加工性能的重要作用。对于纳米MQL(混合方向)而言,总工具磨损比干燥条件更好。结果还表明,磨损和粘合性促使在干燥条件下观察到的工具磨损机制。

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