Please wait a minute...
Acta Metall Sin  1997, Vol. 33 Issue (3): 309-314    DOI:
Current Issue | Archive | Adv Search |
DISSOLUTION FACILITATING LOCAL PLASTIC DEFORMATION FOR BRASS IN AMMONIA SOLUTION
ZHANG Tiancheng; CHU Wuyana (University of Science and Technology Beijing;Beijing 100083)SHI Xunqing; ZHU Wanxu; LIU Baochen (Tsinghua University;Bejing 100084)
Cite this article: 

ZHANG Tiancheng; CHU Wuyana (University of Science and Technology Beijing;Beijing 100083)SHI Xunqing; ZHU Wanxu; LIU Baochen (Tsinghua University;Bejing 100084). DISSOLUTION FACILITATING LOCAL PLASTIC DEFORMATION FOR BRASS IN AMMONIA SOLUTION. Acta Metall Sin, 1997, 33(3): 309-314.

Download:  PDF(2157KB) 
Export:  BibTeX | EndNote (RIS)      
Abstract  The variations of displacement field and strain field around notch tip of brass specimen during stress corrosion crack in 1mol/L NH4OH+5g/L CuC12 solution were investigated by the laser moire interferometry method. The results indicate that the anodic dissolution (corrosion) increases the plastic zone around notch tip of specimen and the plastic deformation amounts of the various points in plastic zone i.e. the anodic dissolution can facilitate the local plastic deformation around the notch tip of specimen.
Key words:  laser moire interferometry      brass      SCC      facilitation of deformation by dissolution     
Received:  18 March 1997     
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/Y1997/V33/I3/309

1褚武扬.氢损伤与滞后断裂北京:冶金工业出版社,1988:361
2 Sieradzki K.Newman R C.Philos Mag,1985;A51:95
3 Magniu T,Chierayatti R,Oltra R.Acta Metall Mater,1990;38:1313
4 Kanfman M J,Fink J J Acta Metall, 1985;36:2213
5 Joones D A.Metall Trans,1985:16A:1133
6 Revie R W, Uhlig H H Acta Metall, 1974;22:619
7黄彦良,曹楚南,林海潮金属学报,1993;29: BZ12
8 GuB,Chu W Y,Qiao L J,Hsiao C M.Scr Metall Mater,1994;31:161
9 GuB,Zhang J W,Wan F R,Chu W Y.Scr Metall Mater,1995;32:637
10黄一中,陈奇志,褚武扬,袁昌言.金属学报,1994;30:8453
11高克玮,褚武扬,肖纪美.金属学报,1995;31:B477
12 Post D.Optical Eng,1982;21:3
13 Nelson J C, Oriani R A Corros Sci,1993;34:307&
[1] Maocheng YAN,Shuang YANG,Jin XU,Cheng SUN,Tangqing WU,Changkun YU,Wei KE. STRESS CORROSION CRACKING OF X80 PIPELINE STEEL AT COATING DEFECT IN ACIDIC SOIL[J]. 金属学报, 2016, 52(9): 1133-1141.
[2] Min SUN,Xiaogang LI,Jin LI. STRESS CORROSION CRACKING BEHAVIOR OF A NEW KIND OF ULTRAHIGH STRENGTH STEEL Cr12Ni4Mo2Co14 IN ACID ENVIRONMENT[J]. 金属学报, 2016, 52(11): 1372-1378.
[3] Ju KANG,Jichao LI,Zhicao FENG,Guisheng ZOU,Guoqing WANG,Aiping WU. INVESTIGATION ON MECHANICAL AND STRESS CORROSION CRACKING PROPERTIES OF WEAKNESS ZONE IN FRICTION STIR WELDED 2219-T8 Al ALLOY[J]. 金属学报, 2016, 52(1): 60-70.
[4] XUE Yingyu, TANG Jiancheng, ZHUO Haiou, YE Nan, WU Tong, ZHOU Xusheng. MICROSTRUCTURES AND PROPERTIES OF LEAD-FREE FREE-CUTTING GRAPHITE-BRASS PREPARED BY GRAPHITIZATION OF CEMENTITE[J]. 金属学报, 2015, 51(2): 223-229.
[5] YAN Maocheng, WANG Jianqiu, HAN En-hou, SUN Cheng, KE Wei. CHARACTERISTICS AND EVOLUTION OF THIN LAYER ELECTROLYTE ON PIPELINE STEEL UNDER CATHODIC PROTECTION SHIELDING DISBONDED COATING[J]. 金属学报, 2014, 50(9): 1137-1145.
[6] MO Yongda, JIANG Yanbin, LIU Xinhua, XIE Jianxin. MECHANICAL PROPERTIES AND WORK HARDENING BEHAVIOR OF COLUMNAR-GRAINED HAl77-2 BRASS[J]. 金属学报, 2014, 50(11): 1367-1376.
[7] HAO Wenkui,LIU Zhiyong,LI Xiaogang,DU Cuiwei. STRESS CORROSION CRACKING AND ITS MECHANISM OF 16Mn STEEL AND HEAT-AFFECTED ZONE IN ALKALINE SULFIDE SOLUTIONS[J]. 金属学报, 2013, 49(7): 881-889.
[8] LIU Zhiyong WANG Changpeng DU Cuiwei LI Xiaogang. EFFECT OF APPLIED POTENTIALS ON STRESS CORROSION CRACKING OF X80 PIPELINE STEEL IN SIMULATED YINGTAN SOIL SOLUTION[J]. 金属学报, 2011, 47(11): 1434-1439.
[9] DAN Tichun LU Zhanpeng WANG Jianqiu HAN Enhou SHOJI Testuo KE Wei. CRACK GROWTH BEHAVIOR FOR STRESS CORROSION CRACKING OF 690 ALLOY IN HIGH TEMPERATURE WATER[J]. 金属学报, 2010, 46(10): 1267-1274.
[10] KANG Mokuang ZHANG Mingxing LIU Feng ZHU Ming. OVERALL ACTIVATION ENERGY OF ISOTHERMAL TRANSFORMATION IN METAL ALLOY AND ITS MECHANISM II. Isothermal Transformation in β Brasses[J]. 金属学报, 2009, 45(1): 32-36.
[11] LIU Zhi-yong; Xiaogang LI. SCC OF X70 PIPELINE STEEL IN SIMULATED ACID SOIL ENVIRONMENT[J]. 金属学报, 2008, 44(2): 209-214 .
[12] GAO Kewei; QIAO Lijie; CHU Wuyang(Department of Materials Physics; University of Science and Technology Beijing; Beijing 100083)LUO Kingli(Department of Chemical and Materials Engineering; University of Alberta; Alberta; Canada; T6G; 2G6)Correspondent: GAO Kewei; associate professor Tel. (010)62332906; Fax: (010)62327283;E-mail: ljqiao public.bta.net.cn. FRACTOGRAPHIC STUDY OF SCC OF 321 AUSTENITIC STAINLESS STEEL SINGLE CRYSTAL[J]. 金属学报, 1998, 34(8): 888-891.
[13] CHU Wuyang; LU Rongbang;QIAO Lijie; WANG Yanbin (Department of Materials Physics; University of Science & Technology Beijing; Beijing 100083)CHENG Yihuan; CHEN Hongxing(Baoshan Iron and Steel Corporation; Shanghai 201900);GUAN Yongsheng; YAN Yinglong; SUN Wei(Tianjin Steel Pipe Corporation; Tianjin 300310)Correspondent:CHU Wuyang; professor Tel: (010)62332906; Fax: (010)62327283;E-mail: ljqiao@public.bta.net.cn. THE THRESHOLD STRESS FOR HYDSOGEN-INDUCED CRACKING OF C90 TUBULAR STEELS[J]. 金属学报, 1998, 34(10): 1077-1083.
[14] LIU Su'e; ZHU Ziyong; KE Wei (State Key Laboratory for Corrosion and Metals;Institute of Corrosion and Protection of Metals; Chinese Academy of Sciences;Shenyang 110015). EFFECT OF NaOH CONCENTRATION AND AlO_2~- SPECIES ON CAUSTIC STRESS CORROSION CRACKING OF A LOW ALLOY STEEL AT 260℃[J]. 金属学报, 1997, 33(2): 143-149.
[15] GUAN Kezhi; FAN Bailin; ZHOU Jihua(University of Science and Technology Beijing; Beijing 100083)(Manuscript received 1995-10-30; in revised form 1996-03-26). FLOW STRESS OF BRASS AT HOT DEFORMATION[J]. 金属学报, 1996, 32(7): 749-754.
No Suggested Reading articles found!