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Adsorption and reaction layers when turning AISI 304 using various cooling strategies

机译:使用各种冷却策略转动AISI 304时的吸附和反应层

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This paper deals with the surface chemistry of face-turned workpieces of AISI 304 using various cooling conditions.The workpieces were machined by means of LN2 cooling,CO2 snow cooling,conventional emulsion,sub-zero MWF as well as dry machining.With regard to the machining process,the tool temperature,the process forces,and the surface topography are investigated.The surface chemistry is studied using X-ray photoelectron spectroscopy(XPS).These investigations focus firstly on a detection of the elements occurring on the surface,their concentration and the dominant binding state of the main components.Especially the oxidation state of the surface due to the thermal load in the tool-work interface during machining is analyzed on the basis of O ls and Fe 2p3 core level photoelectron spectra.Secondly,sputter depth profiling using XPS is performed in order to qualitatively analyze the surface depth distribution of the detected elements.Adsorption and reaction layers can occur during turning of AISI 304 up to a depth of approximately 7 nm depending on the cooling conditions used.The use of emulsion,CO2 snow and dry machining results in a slightly higher carbon concentration.Regarding the oxidation in the reaction layer it can be concluded,that the higher the temperatures in the tool at distance of 1 mm to the contact zone during machining,the more oxidation occurs in these layers.
机译:本文处理了使用各种冷却条件的AISI 304的脸部转动工件的表面化学。通过LN2冷却,CO2冷却,常规乳液,亚零MWF以及干燥加工,工件加工工件。研究加工过程,刀具温度,工艺力和表面形貌。使用X射线光电子谱(XPS)研究了表面化学。这些调查首先侧重于检测到表面上发生的元素,其浓度和主要成分的主导结合状态。基于O LS和Fe 2P3核心水平光电子谱分析了在加工过程中工具工作界面中的热负荷导致的表面的氧化状态。第二,溅射使用XPS进行深度分析,以便定性地分析检测到的元件的表面深度分布。在转动期间可能发生吸收和反应层根据所使用的冷却条件,AISI 304高度约为7nm的深度。乳液,CO2雪和干加工的使用导致略高的碳浓度。可以得出略高的碳浓度。可以得出反应层中的氧化,可以得出结论,即在加工过程中,在接触区域的距离下工具中的温度越高,在这些层中发生的氧化越多。

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