Please wait a minute...
金属学报  1996, Vol. 32 Issue (10): 1063-1067    
  论文 本期目录 | 过刊浏览 |
钢的韧脆转变过程与临界空穴扩张状态
周利;苟文选
五邑大学;西北工业大学
CRITICAL VOID-GROWTH RATIO AND DUCTILE-BRITTLE TRANSITION OF STEELS
ZHOU Li(Wuyi University;Jiangmen 529020);GOU Wenxuan(Northwestern Polytechnical University;Xi'an 710072)(Departinent of Civil Engineering;Wuyi University;Jiangmen 529020)(Manuscript received 1995-12-22;in revised form 1996-06-09)
引用本文:

周利;苟文选. 钢的韧脆转变过程与临界空穴扩张状态[J]. 金属学报, 1996, 32(10): 1063-1067.
, . CRITICAL VOID-GROWTH RATIO AND DUCTILE-BRITTLE TRANSITION OF STEELS[J]. Acta Metall Sin, 1996, 32(10): 1063-1067.

全文: PDF(324 KB)  
摘要: 利用扫描电镜测量了BHW60钢、20钢和45钢拉伸试样断口心部的临界空穴扩张比Rc/Ro,并据此分析了由于环境温度和扭转预应变等因素引起的韧脆转变过程及其细观形态.在引入无延性、无脆性临界转变应力三锥度Tσ,ND和Tσ,NB的概念以后,分析了温度和应力状态的耦合效应对材料韧脆转变行为的影响.
关键词 临界空穴扩张比韧脆转变应力状态扭转预变形    
Abstract:The critical void-growth ratio,Rc/Ro,of steel BHW60,steel 20 or steel 45 was measured quantitatively under SEM,and the measured positions are at the core of fracture surface of cylindrical tensile specimens.The ductile-brittle transitions due to both temperature and torsional prestrain were discussed by means of the micoscopic parameter ln(Rc/Ro).The concepts of both nil-ductility trasition stress triaxiality Tσ,ND and nil-brittility transition stress triaxiality Tσ,NB were proposed and the coupled effect of temrepature and stress states on the ductile-brittle transition was analyzed
Key wordscritical void-growth ratio    ductile-brittle transition    stress states    torsional prestrain.
收稿日期: 1996-10-18     
1涂明旌.见:涂明旌、邓增杰,周惠久编.低合金钢低温脆性断裂论文集,西安:西安交通大学出版社,1985:12郑长卿,RadonJC.西北工业大学学报.1985;3:4093周利,郑长卿,丁富连.西北工业大学学报,1994;12:5234周利,郑长卿,卢智先,丁富连.金属学报,1993;29:A3785周利,刘建民.见:实验应力分析专业委员会编.全国第七届实验力学学术会议论文集,北京:北京大学出版社,1992:1281"
[1] 王迪, 贺莉丽, 王栋, 王莉, 张思倩, 董加胜, 陈立佳, 张健. Pt-Al涂层对DD413合金高温拉伸性能的影响[J]. 金属学报, 2023, 59(3): 424-434.
[2] 韩卫忠, 卢岩, 张雨衡. 体心立方金属韧脆转变机制研究进展[J]. 金属学报, 2023, 59(3): 335-348.
[3] 林艳丽, 何祝斌, 初冠南, 闫永达. 利用管状试样测试各向异性材料双向应力状态力学性能的新方法[J]. 金属学报, 2017, 53(9): 1101-1109.
[4] 张新宁,曲迎东,李荣德,尤俊华. 铁素体球墨铸铁低温冲击断裂裂纹形核及扩展机理*[J]. 金属学报, 2015, 51(11): 1333-1340.
[5] 郭建亭; 崔传勇 . 定向凝固NiAl合金的微观组织和高温力学性能Ⅰ.微观组织和韧脆转变温度[J]. 金属学报, 2000, 36(11): 1139-1143 .
[6] 王瑜;林栋梁;刘俊亮;C.C.Law. Ti-47Al-2Mn-2Nb-0.8TiB_2合金韧脆转变温度及其应变速率敏感性[J]. 金属学报, 1998, 34(3): 255-262.
[7] 王瑜;林栋梁;刘俊亮;C.C.LAW. 应变速率对近全片层组织γ-TiAl合金韧脆转变温度的影响[J]. 金属学报, 1997, 33(10): 1021-1027.
[8] 樊云昌;姜稚清. 球化高碳钢薄板在多向应力状态下的氢脆[J]. 金属学报, 1995, 31(10): 445-454.
[9] 陈黄浦;邓增杰. 高强度结构钢的韧性启裂和稳态扩展[J]. 金属学报, 1989, 25(6): 49-54.