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核电用1Cr13厚壁管材内表面裂纹产生原因分析
引用本文:苏国跃,张振. 核电用1Cr13厚壁管材内表面裂纹产生原因分析[J]. 金属学报, 2011, 0(9): 1153-1154
作者姓名:苏国跃  张振
作者单位:中国科学院金属研究所;
摘    要:分析了热轧后空冷产生的淬火效应、退火缓冷引起的回火脆性和轧制对裂纹生长方向的影响.不合理的热处理制度使材料发生马氏体相变和回火脆性,在冲击性冷轧后产生开裂.而轧制压扁造成的内表面切向拉应力是产生纵向裂纹的原因.

关 键 词:1Cr13  回火脆性  裂纹

ANALYSIS OF CRACK FORMATION AT INNER SURFACE OF lCrl3 THICK WALL TUBE APPLIED IN NUCLEAR REACTOR
SU Guoyue,ZHANG Zhen Institute of Metal Research,Chinese Academy of Sciences,Shenyang. ANALYSIS OF CRACK FORMATION AT INNER SURFACE OF lCrl3 THICK WALL TUBE APPLIED IN NUCLEAR REACTOR[J]. Acta Metallurgica Sinica, 2011, 0(9): 1153-1154
Authors:SU Guoyue  ZHANG Zhen Institute of Metal Research  Chinese Academy of Sciences  Shenyang
Affiliation:SU Guoyue,ZHANG Zhen Institute of Metal Research,Chinese Academy of Sciences,Shenyang 110016
Abstract:Tempering brittleness is an important reason for microcrack formation and cracking in thick wall tube made by steel 1Cr13 which is applied in reactor driving mechanism.This article analysed the quenching effect caused by hot rolling followed by air cooling,tempering brittleness caused by annealing followed by slow cooling,and influence of rolling on the cracking direction.Improper heat treatment condition derives martensite transformation and tempering brittleness,which make the steel cracking when rapidly ...
Keywords:steel 1Cr13  residual stress  crack  
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