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Electrochemical corrosion of steel balls in wet grinding
引用本文:谢恒星,李松仁,李定或. Electrochemical corrosion of steel balls in wet grinding[J]. 中国有色金属学会会刊, 2003, 13(4)
作者姓名:谢恒星  李松仁  李定或
作者单位:College of Resource and Environment Engineering,School of Resources Processing and Bioengineering,Department of Mineral Engineering Wuhan University of Technology,Wuhan 430070,China,Department of Mineral Engineering,Wuhan Institute of Chemical Technology,Wuhan 430073,China,Central South University,Changsha 410083,China,Wuhan Institute of Chemical Technology,Wuhan 430073,China
摘    要:1 CORROSIONCELLOFSTEELBALLSteelballsusedinthe practiceofgrindingaregenerallymadefrommetaloralloymaterials .Theircorrosioncourseandbehavioraresubjecttothelawsofmetalliccorrosion .Theballcorrosionisessentiallyakindofoxidation reductiontakingplaceonitssur face .Thisreactionmayoccurintwoways :chemicalcorrosionandelectrochemicalcorrosion .Intheelectrochemicalcorrosion ,theoxidation reductioniscarriedoutbytheanodicreaction (oxida tion)andcathodicreaction (reduction)occurringsi multaneousl…


Electrochemical corrosion of steel balls in wet grinding
XIE Heng xing ,,LI Song ren ,LI Ding huo. Electrochemical corrosion of steel balls in wet grinding[J]. Transactions of Nonferrous Metals Society of China, 2003, 13(4)
Authors:XIE Heng xing     LI Song ren   LI Ding huo
Affiliation:XIE Heng xing 1,3,LI Song ren 2,LI Ding huo 3
Abstract:Rest potentials for the steel ball electrode and the pyrite electrode as well as the combination potentials and the galvanic currents developed in the pyrite-steel ball couple were measured. The data demonstrate that the galvanic couples are going to form between the pyrite particles and the steel balls when they contact with each other. The initial combination potential and the initial galvanic current of the pyrite-ball couple while bubbling with oxygen are greater than those in aeration of air. The combination potential and the galvanic current decrease more quickly with time while bubbling with oxygen than they do in aeration of air. In an experiment of simulating wear differences, a galvanic current, which is smaller than that developed in the pyrite-ball couple, exists between two different ball electrodes in wear degree on the surface of them. Under different grinding time conditions, the equivalent corrosion current density calculated from marked ball wear data by applying Faraday's law correlates well with those estimated from polarization curves of pyrite and ball electrodes, and the former is always greater than the latter.
Keywords:electrochemical corrosion  grinding medium  steel ball wear  wet grinding
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