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  • 學位論文

竹碳運用於不鏽鋼的電解複合拋光效果之研究

A study on effect of electrolytic composite polishing on stainless steel using by bamboo carbon

指導教授 : 顏炳華
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摘要


本文是運用竹碳對不鏽鋼進行電解拋光結合機械拋光的複合加工,以改善不鏽鋼上的表面粗糙度和竹碳電極的磨耗率。 竹碳具備植物多孔且緻密的微結構特性,其微細孔道具有高吸附能力,本文研究希望竹碳與工業技術做結合,以提升竹碳所附加的經濟價值。 本文使用電解複合拋光對加工時間、研磨粒種類、增加荷重、研磨粒濃度、拋光盤轉速、電極速度、電壓等製程參數進行實驗,並針對實驗後的不鏽鋼表面粗糙度、竹碳電極磨耗率、表面形貌,來進行結果分析探討。

關鍵字

竹碳 電解拋光 複合加工 不鏽鋼

並列摘要


This research is focus on electrolytic composite polishing combining with electro-polishing and mechanical polishing to optimize the surface roughness of stainless steel and the wear rate of bamboo carbon electrode. Bamboo carbons’ microstructure are comparatively porous and dense, its micro-pores possess high adsorption capacity. In this article, we expect bamboo carbon could enhance the additional values by combing with existing industrial technologies. The electrolytic composite polishing in this article are experimented with the parameters of machining time, abrasive, increasing load, concentration of abrasive, polishing plate speed, electrode speed and voltage of electrolytic composite polishing. And the roughness of stainless steel, the wear rate of bamboo carbon electrode and the surface morphology of the results are investigated and analyzed.

參考文獻


[12]彭國芳,「電泳沉積輔助竹碳拋光效果之研究」,國立中央大學,碩士論文,民國101年
[15]藍浩繁、賴宏亮、鄧維豐,「孟宗竹竹炭性質之研究」,作物、環境與生物資訊,第五期,180~186頁,97年9月
[1]H.Yamaguchietal, “Magnetic abrasive finishing of cutting tools for machining of titanium alloys”, CIRP Annals, Manufacturing Technology, Vol. 61, pp. 311–314, 2012
[2]E. Beltowska-Lehman, et al., ”Electrodeposition and characterisation of nanocrystalline Ni–Mo coatings”, Surface & Coatings Technology, Vol. 211, pp. 67–71, 2012
[3]J. Ma, W. Cheng, ”Deposition and packing study of sub-micron PZT ceramics usingelectrophoretic deposition”, Materials Letters, Vol. 56, pp. 721–727, November 2002

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