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

Surface Cleaning or Activation? Control of Surface Condition Prior to Thermo-Chemical Heat Treatment
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摘要 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 electrochenucalry, 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. 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 electrochenucalry, 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.
出处 《材料热处理学报》 EI CAS CSCD 北大核心 2004年第5期343-348,共6页 Transactions of Materials and Heat Treatment
基金 the financial support from AiF(Arbeitsgemeinschaft industieller Forschungsvereinigungen Otto von Guericke)and DFG(Deutsche Forschungsgemeinschaft)which made the work documented in this text possible.
关键词 热化学热处理 表面状况 表面清理 表面活化 thermochemical heat treatment, surface condition, surface cleaning, surface activation
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参考文献13

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