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首页> 外文期刊>Tribology International >Comparative analysis of dry, flood, MQL and cryogenic CO2 techniques during the machining of 15-5-PH SS alloy
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Comparative analysis of dry, flood, MQL and cryogenic CO2 techniques during the machining of 15-5-PH SS alloy

机译:15-5-pH SS合金加工过程中干燥,洪水,MQL和低温CO2技术的比较分析

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摘要

The Precipitation Hardening (PH) Stainless Steel (SS) is considered as a promising alternative for aerospace and marine sectors owing to its good mechanical properties with high corrosion resistance. But the lower thermal conductivity and the presence of precipitates lower its machinability in terms of rapid tool wear. In this context, this study aims to analyze the dry, flood, MQL (Minimum Quantity Lubrication), and cryogenic machining with LCO2 in terms of tool wear for the turning tests of 15-5 PH SS. Apart from progressive flank wear, the machining performance of different cutting fluid strategies is compared by analyzing the crater wear, progressive power consumption, and surface roughness, microhardness, and microstructure of machined surface and chip. The performance of sustainable cryogenic machining is found superior in terms of lower tool wear, power consumption, subsurface microhardness. The relatively finer grain size and helical chip with smaller diameter are produced in the cryogenic machining while the better surface finish is observed for the flood machining in contrast to other cutting fluid strategies.
机译:沉淀硬化(pH)不锈钢(SS)被认为是由于其具有高耐腐蚀性的良好机械性能的航空航天和海洋部门的有希望的替代方案。但是导热性较低,沉淀物的存在在快速工具磨损方面降低了其可加工性。在这种情况下,本研究旨在分析干燥,洪水,MQL(最小数量润滑),以及LCO2在工具磨损方面与LCO2的低温加工,用于15-5 pH SS的转弯试验。除了渐进式侧面磨损外,通过分析火山口磨损,渐进功耗和表面粗糙度,微硬度和加工表面和芯片的微观结构来比较不同切削液策略的加工性能。可持续低温加工的性能在较低的刀具磨损,功耗,地下微硬度方面具有优越。在低温加工中产生具有较小直径的相对更精细的晶粒尺寸和螺旋芯片,而与其他切削液策略相比,观察到更好的表面光洁度。

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