Please wait a minute...
Acta Metall Sin  1994, Vol. 30 Issue (16): 169-174    DOI:
Current Issue | Archive | Adv Search |
INFLUENCE OF Ce IMPLANTATION ON OXIDATION BEHAVIOUR OF Ni20Cr ALLOY
LI Meishuan; PENG Hiao;MA Hinqing;LI Tiefan(Corrosion Science Laboratory;Institute of Corrosion and Protection of Metals;Chinese Academy of Sciences)(Manuscript received 10 May;1993)
Cite this article: 

LI Meishuan; PENG Hiao;MA Hinqing;LI Tiefan(Corrosion Science Laboratory;Institute of Corrosion and Protection of Metals;Chinese Academy of Sciences)(Manuscript received 10 May;1993). INFLUENCE OF Ce IMPLANTATION ON OXIDATION BEHAVIOUR OF Ni20Cr ALLOY. Acta Metall Sin, 1994, 30(16): 169-174.

Download:  PDF(413KB) 
Export:  BibTeX | EndNote (RIS)      
Abstract  Implantation of 2×1016,5×1016,1×1017Ce+/cm2 into Ni20Cr alloy can significantly decrease the oxidation rate at 1000 and 1100℃,and improve the adhesion of oxide scales.The changes of binding energy of alloy in elements in alloy surface after Ce implanting and in oxide scale formed at 1100℃ were measured using ion microperobe mass analyzer.The decrement of binding energy of Cr+on the alloy surface accelerate rapidly the formation of protective Cr2O3,however these of Cr+and Ni+ in the oxide scale increase,the outward diffusion of Cr3+and Ni2+through the scale are delayed.This seems to be the main reason for Ce implantation to decrease the oxidation rate of Ni20Cr at 1100℃.The oxide scales of Ce-implanted Ni20Cr alloy are dense,intact and well adhesive with the alloy.The oxide scales spall partially after 270 time during the cyclic oxidation at 1000℃,but the effect of Ce on the improvement of the oxide scale adherence is still obvious.Correspondent:LI Meishuan,assistant professor,(Institute of Corrosion and Protection of Metals,Chinese Academy of Sciences,Shenyang 110015)
Key words:  Ni20Cr alloy      oxidation      Ce      implantation      binding energy     
Service
E-mail this article
Add to citation manager
E-mail Alert
RSS
Articles by authors

URL: 

https://www.ams.org.cn/EN/     OR     https://www.ams.org.cn/EN/Y1994/V30/I16/169

1HindamH,WhittleDP.OxidMet,1982;18:2452MoonDP.MaterSciTechnol,1989;5:7543StringerJ.MaterSciEng,1989,A120:1294StootFH,PunniJS,WoodGC,DearnaleyG.IonImplantationIntoMetals.PergamonPress,1982:2455PrzybylskiK,Garratt-ReedAJ,YurekGJ.JElectrochemSoc,1988;135:5096CotellCM,YurekGJ,HusseyRJ,MitchchellDF,GrahamMJ.OxidMet,1990;34:173,2017万晓景,杨柯,曹名洲.金属学报,1986;22:A1898陈廉,刘树望,邹军军,邵玉霞,李裕光.质谱学报,1988:9:329GaoPeiyu.8thInternationalCongressonMetallicCorrosion,Vol.1,Mainz,Germany,InternationalCorrosionCouncil,EuropeanFederationofCorrosion,DechemaDeutscheGesellsehaftfurChemischesApparatewesene.V.Frankfurt//Main,1981:40610AbderrazikGB,MoulinG,HuntzAM,OxidMet,1990;33:191p
[1] WANG Lei, LIU Mengya, LIU Yang, SONG Xiu, MENG Fanqiang. Research Progress on Surface Impact Strengthening Mechanisms and Application of Nickel-Based Superalloys[J]. 金属学报, 2023, 59(9): 1173-1189.
[2] LI Jiarong, DONG Jianmin, HAN Mei, LIU Shizhong. Effects of Sand Blasting on Surface Integrity and High Cycle Fatigue Properties of DD6 Single Crystal Superalloy[J]. 金属学报, 2023, 59(9): 1201-1208.
[3] ZHENG Liang, ZHANG Qiang, LI Zhou, ZHANG Guoqing. Effects of Oxygen Increasing/Decreasing Processes on Surface Characteristics of Superalloy Powders and Properties of Their Bulk Alloy Counterparts: Powders Storage and Degassing[J]. 金属学报, 2023, 59(9): 1265-1278.
[4] CHANG Songtao, ZHANG Fang, SHA Yuhui, ZUO Liang. Recrystallization Texture Competition Mediated by Segregation Element in Body-Centered Cubic Metals[J]. 金属学报, 2023, 59(8): 1065-1074.
[5] MU Yahang, ZHANG Xue, CHEN Ziming, SUN Xiaofeng, LIANG Jingjing, LI Jinguo, ZHOU Yizhou. Modeling of Crack Susceptibility of Ni-Based Superalloy for Additive Manufacturing via Thermodynamic Calculation and Machine Learning[J]. 金属学报, 2023, 59(8): 1075-1086.
[6] LIU Wei, CHEN Wanqi, MA Menghan, LI Kailun. Review of Irradiation Damage Behavior of Tungsten Exposed to Plasma in Nuclear Fusion[J]. 金属学报, 2023, 59(8): 986-1000.
[7] SI Yongli, XUE Jintao, WANG Xingfu, LIANG Juhua, SHI Zimu, HAN Fusheng. Effect of Cr Addition on the Corrosion Behavior of Twinning-Induced Plasticity Steel[J]. 金属学报, 2023, 59(7): 905-914.
[8] ZHANG Bin, TIAN Da, SONG Zhuman, ZHANG Guangping. Research Progress in Dwell Fatigue Service Reliability of Titanium Alloys for Pressure Shell of Deep-Sea Submersible[J]. 金属学报, 2023, 59(6): 713-726.
[9] WANG Furong, ZHANG Yongmei, BAI Guoning, GUO Qingwei, ZHAO Yuhong. First Principles Calculation of Al-Doped Mg/Mg2Sn Alloy Interface[J]. 金属学报, 2023, 59(6): 812-820.
[10] HUANG Ding, QIAO Yanxin, YANG Lanlan, WANG Jinlong, CHEN Minghui, ZHU Shenglong, WANG Fuhui. Effect of Shot Peening of Substrate Surface on Cyclic Oxidation Behavior of Sputtered Nanocrystalline Coating[J]. 金属学报, 2023, 59(5): 668-678.
[11] WANG Hanyu, LI Cai, ZHAO Can, ZENG Tao, WANG Zumin, HUANG Yuan. Direct Alloying of Immiscible Tungsten and Copper Based on Nano Active Structure and Its Thermodynamic Mechanism[J]. 金属学报, 2023, 59(5): 679-692.
[12] ZHANG Zhefeng, LI Keqiang, CAI Tuo, LI Peng, ZHANG Zhenjun, LIU Rui, YANG Jinbo, ZHANG Peng. Effects of Stacking Fault Energy on the Deformation Mechanisms and Mechanical Properties of Face-Centered Cubic Metals[J]. 金属学报, 2023, 59(4): 467-477.
[13] XU Linjie, LIU Hui, REN Ling, YANG Ke. Effect of Cu on In-Stent Restenosis and Corrosion Resistance of Ni-Ti Alloy[J]. 金属学报, 2023, 59(4): 577-584.
[14] MA Zongyi, XIAO Bolv, ZHANG Junfan, ZHU Shize, WANG Dong. Overview of Research and Development for Aluminum Matrix Composites Driven by Aerospace Equipment Demand[J]. 金属学报, 2023, 59(4): 457-466.
[15] LI Dianzhong, WANG Pei. Tailoring Microstructures of Metals[J]. 金属学报, 2023, 59(4): 447-456.
No Suggested Reading articles found!