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Surface Cleaning or Activation? Control of Surface Condition Prior to Thermo-Chemical Heat Treatment

机译:表面清洁或激活?在热化学热处理之前对表面状况的控制

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Actual heat treatment processes must face increasing specifications with reference to process quality, safety and results in terms of reproducibility and repeatability. They can be met only if the parts' surface condition is controlled during manufacturing and, especially, prior to the treatment. An electrochemical method for the detection of a steel part's surface condition is presented, together with results, consequences, and mechanisms concerning surface pre-treatment before the thermochemical process. A steel surface's activity or passivity can be detected electrochemically, independently from the chemical background. The selected method was the recording of potential vs. time curves at small constant currents, using a miniaturized electrochemical cell, a (nearly) non-destructive electrolyte and a potentio-galvanostatic setup. The method enables to distinguish types of surface contamination which do not interfere with the thermochemical process, from passive layers which do and must be removed. Whereas some types of passive layers can be removed using conventional cleaning processes and agents, others are so stable that their effects can only be overcome by applying an additional activation pre-treatment, e.g. oxynitriding.
机译:实际的热处理过程必须参考流程质量,安全性和可重复性方面的工艺质量,安全性和结果面临越来越多的规格。只有在制造期间控制零件的表面状况,尤其是在处理之前,才能遇到它们。呈现用于检测钢部分表面状况的电化学方法,以及在热化学过程之前的表面预处理的结果,后果和机制。可以独立于化学背景,电化学地检测钢表面的活动或钝化。所选择的方法是使用小型化电化学电池,(几乎)非破坏性电解质和恒温 - 电解质设置的小恒定电流下的电位与时间曲线的潜在与时间曲线的记录。该方法使得能够区分不会干扰热化学过程的表面污染的类型,从无源层且必须被移除。虽然可以使用常规清洁方法和药剂去除某些类型的无源层,但是其他类型的无源层,因此稳定的是,仅通过应用额外的激活预处理来克服它们的效果,例如,它们才能克服。氧氮化。

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