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Investigation of surface modification and tool wear on milling Nimonic 80A under hybrid lubrication

机译:杂交润滑下铣削弯曲80a的表面改性和工具磨损研究

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摘要

Friction at cutting interfaces deteriorates the nascent surfaces and influences the wear of tool (tool life) that causes the cost of manufacturing. Hybrid cooling/lubrication has been used to machine Nimonic 80A which is challenging to machine conventionally due to its poor heat diffusivity and superior chemical attraction. The focus was on the surface modification (roughness, topography, residual stress, microhardness) and wear phenomenon of the tools under the hybrid cryogenic minimum quantity lubrication (CMQL) approach. Compressive residual stress, increased microhardness (4-9%), and less tool wear (22-71%) were few benefits of CMQL compared to the traditional approach. Concurrent action of chilling and lubrication enabled lower temperatures, higher compressive residual stress, microhardness, and surface quality. Abrasion and adhesion were dominant wear modes.
机译:切削界面处的摩擦会恶化新生表面,并影响刀具磨损(刀具寿命),从而导致制造成本。混合冷却/润滑已被用于加工Nimonic 80A,由于其热扩散性差和优越的化学吸引力,对常规加工具有挑战性。重点是在混合低温最小量润滑(CMQL)方法下刀具的表面改性(粗糙度、形貌、残余应力、显微硬度)和磨损现象。与传统方法相比,压缩残余应力、显微硬度增加(4-9%)和刀具磨损减少(22-71%)对CMQL几乎没有好处。冷却和润滑的同时作用使温度降低,压缩残余应力、显微硬度和表面质量提高。磨损和粘着是主要的磨损方式。

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