欢迎登录材料期刊网

材料期刊网

高级检索

研究了固溶处理AL6XN超级奥氏体钢在温度773-973 K以及3.3×10-5~3.3×10-3s-1应变速率范围的高温拉伸力学行为.结果表明,AL6XN奥氏体钢在以上实验条件下(不包括873 K,3.3×10-5 s-1)均存在动态应变时效,具体表现为在真应力-真应变曲线上出现锯齿形,同时屈服强度在773~973 K范围呈现平台区;临界应变量随着温度从773 K升高到923 K逐渐降低,并且在此温度范围激活能为304 kJ/mol,说明动态应变时效的机制为AL6XN奥氏体钢中Cr和Mo等置换原子与位错的交互作用.透射电镜分析同时表明AL6XN奥氏体钢形变后位错结构呈平面滑移特征.

The tensile behavior of solution-treated AL6XN austenitic steels was investigated at 773-973 K and strain rates from 3.3×10-5 to 3.3×10-3 s-1.The results show that the serrated flow and plateaus in flow stress is observed for AL6XN steel during the hightemperature tensile-tests at above conditions(excluding 873 K,3.3×10-5 s-1),suggesting the occurance of dynamic strain aging.The critical strain of the serrated flow decreases with temperature increasing from 773 to 923 K,and the activation energy for the interaction between substitutional solutes,such as chromium,and molybdenum and dislocations is 304 kJ/mol,which is considered as the mechanism of dynamic strain aging.TEM observations reveal a planar slip mode for dislocations in the deformed AL6XN austenitic steel.

参考文献

[1] 李满昌,王明利.超临界水冷堆开发现状与前景展望[J].核动力工程,2006(02):1-4,44.
[2] 程旭,刘晓晶.超临界水冷堆国内外研发现状与趋势[J].原子能科学技术,2008(02):167-172.
[3] Ehrlich K;Konys J;Heikinheimo L .Materials for high performance light water reactors[J].Journal of Nuclear Materials: Materials Aspects of Fission and Fusion,2004(2/3):140-147.
[4] Abed FH;Voyiadjis GZ .Plastic deformation modeling of AL-6XN stainless steel at low and high strain rates and temperatures using a combination of bcc and fcc mechanisms of metals[J].International Journal of Plasticity,2005(8):1618-1639.
[5] A. C. STAUFFER;D. A. KOSS;J. B. McKIRGAN .Microstructural Banding and Failure of a Stainless Steel[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,2004(4):1317-1324.
[6] Brian Metrovich;John W. Fisher;Ben T. Yen .Fatigue strength of welded AL-6XN superaustenitic stainless steel[J].International Journal of Fatigue,2003(9/11):1309-1315.
[7] Seong-Gu Hong;Keum-Oh Lee;Soon-Bok Lee .Dynamic strain aging effect on the fatigue resistance of type 316L stainless steel[J].International Journal of Fatigue,2005(10/12):1420-1424.
[8] Hornqvist M;Karlsson B .Temperature and strain rate dependence of the dynamic strain aging effect in an Al-Zn-Mg alloy[J].Materials Science and Technology: MST: A publication of the Institute of Metals,2006(2):213-222.
[9] J. Y. Huang;J. J. Yeh;R. C. Kuo .Effect of dynamic strain aging on fatigue crack growth behaviour of reactor pressure vessel steels[J].Materials Science and Technology: MST: A publication of the Institute of Metals,2006(8):944-954.
[10] Myung Ho Lee;Jun Hwan Kim;Byoung Kwon Choi .Mechanical properties and dynamic strain aging behavior of Zr-1.5Nb-0.4Sn-0.2Fe alloy[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2007(1/2):99-105.
[11] 彭开萍,陈文哲,钱匡武.18-8型奥氏体不锈钢动态应变时效后的微观组织[J].材料热处理学报,2005(05):109-112.
[12] 彭开萍,陈文哲,钱匡武.3004铝合金动态应变时效的微观机理[J].材料热处理学报,2005(06):57-61.
[13] 郭伟国.4种新型舰艇钢的塑性流变应力及其本构模型[J].金属学报,2006(05):463-468.
[14] Prasad K;Varma V K .Serrated flow behaver in a near alpha titanium alloy IMI 834[J].Science and Engineering:A Struct Mater,2008,486(1-2):158-166.
[15] Charnock W .The apparent activation energy for serrated yielding[J].Philosophical Magazine,1969,20:209-211.
[16] Vani Shankar;M. Valsan;K. Bhanu Sankara Rao .Effects of Temperature and Strain Rate on Tensile Properties and Activation Energy for Dynamic Strain Aging in Alloy 625[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,2004(10):3129-3139.
[17] Tamhankar R;Pleteau J;Crussard C .Etude de la deformation plastique à chaud d'un fer doux et d'une austenite stable au nickel-chrome[J].Revue De Metallurgie,1958,55:383.
[18] Mannan S L;Samuel K G;Rodriguez P .Dynamic strain ageing in type 316 stainless steel[J].Transactions of the Indian Institute of Metals,1983,36(4-5):313-320.
[19] Samuel K G;Mannan S L;Rodriguez P .Serrated yielding in AISI 316 stainless steel[J].Acta Metallurgica,1987,36(08):2323-2327.
[20] Almeida LH;Emygdio P R O .Activation energy calculation and dynamic strain aging in austenitic stainless steel[J].Scripta Materialia,1994,31(05):505-510.
[21] Rodriguez P .Serrated plastic flow[J].Bulletin of Materials Science,1984,6(04):653-663.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%