期刊文献+

动态拉伸条件下TWIP钢的断裂机制 被引量:9

FRACTURE MECHANISM OF TWIP STEEL UNDER DYNAMIC TENSILE CONDITION
下载PDF
导出
摘要 采用SEM检测了TWIP钢动态拉伸后的组织形态。结果发现,TWIP钢具有典型的延性断裂断口特征,其变形和断裂过程为微孔洞的形核、长大和聚合。含有第二相的TWIP钢的断裂机制为:第二相和奥氏体相界面聚合力的减弱或第二相本身加工硬化导致的开裂促使微孔形核,形变过程中产生的应力集中使微孔长大、聚合直至发生断裂。全奥氏体的TWIP钢的断裂机制为:形变过程中位错的运动受孪晶界的阻碍,形变孪晶与位错的交互作用使微孔形核于孪晶界处,应力集中使微孔长大、聚合直至材料发生断裂。 The microstructure of TWIP steels after dynamic tension test was observed by SEM. It was found that the fracture of TWIP steel was typical ductile fracture pattern and its deformation and fracture processes were the formation, growth and coalescence of microvoids. The fracture mechanism of TWIP steel which contained second phase was that the microvoids nucleated due to the decreasing of binding force between austenite and second-phase or the second phase dehiscence caused by strain hardening, then the microvoids grew, got together and broke by the stress concentration during deformation. The fracture mechanism of the whole austenite TWIP steel was that the moving of dislocations was blocked by twin boundary during deformation, the microvoids nucleated at boundary of deformed twins by the interaction between deformed twins and dislocations, the microvoids grew, got together and broke by the stress concentration during deformation.
出处 《上海金属》 CAS 2008年第5期12-15,共4页 Shanghai Metals
基金 先进钢铁材料技术国家工程研究中心科技发展基金 国家自然科学基金资助项目(50671061)
关键词 孪晶诱发塑性钢 动态拉伸 微孔洞 断裂机制 TWIP Steel, Dynamic Tensile, Microvoid, Fracture Mechanism
  • 相关文献

参考文献3

  • 1许珞萍,邵光杰,李麟,张恒华.汽车轻量化用金属材料及其发展动态[J].上海金属,2002,24(3):1-7. 被引量:91
  • 2Comette. D, Cugy. P, Hildenbrand. A. et al. Super-high strength Fe-Mn TWIP steel of automotive [ J ]. La Revue de Metallurgie, 2005 (12): 905-918.
  • 3韦习成.Si-Mn系相变诱发塑性钢的动态力学性能[D].上海大学博士学位论文.2002.10.

二级参考文献10

共引文献91

同被引文献48

  • 1李德君,宋生印,刘强,白强,武刚,吕能,吕依依,冯耀荣,任凤章.Nb微合金化Fe-25Mn-3Si-3Al TWIP钢的组织与力学性能[J].材料热处理学报,2015,36(3):105-111. 被引量:4
  • 2曹圣泉,张津徐,吴建生,陈家光.IF钢织构与晶界特征分布的研究[J].金属学报,2004,40(10):1045-1050. 被引量:37
  • 3王卫国,周邦新,冯柳,张欣,夏爽.冷轧变形Pb-Ca-Sn-Al合金在回复和再结晶过程中的晶界特征分布[J].金属学报,2006,42(7):715-721. 被引量:53
  • 4王利,杨雄飞,陆匠心.汽车轻量化用高强度钢板的发展[J].钢铁,2006,41(9):1-8. 被引量:156
  • 5Graseel O, Frommeyer G, Derder C, et al. Phase Transformation and Mechanical Properties of Fe-Mn-Si-A1 TRIP-Steel [J]. Jphys Iv France, 1997 ,C5(3) : 178.
  • 6Grassel O, Kruger L, Frommeyer G, et al. High Strength Fe- Mn- (Al, Si) TRIP/TWIP Steels Development-Properties-Application [J]. International Journal of Plasticity,2006,16(3): 1391.
  • 7Georg Frommeyer, Udo Brux, Peter Neumann. Supra-Ductile and High-Strength Manganese-TRIP/TWIP Steels for High Energy Absorption Purposes [J]. ISIJ International,2003,3 (43) :438.
  • 8Mahajan S, Williams D F. Deformation Twinning in Metals and Alloys [J]. Acta Metall,1978(18):43.
  • 9Pande C S, Rath B B, Imam M A. Effect of Annealing Twins on Hall-Petch Relation in Polycrystalline Materials [J]. Materials Science and Engineering A, 2004,367 :171.
  • 10Graseel O, Frommeyer G, Derder C, et al. Phase transformation and mechanical properties of Fe-Mn-Si-Al TRIP-steels [ J]. Phys Ⅳ France, 1997, C5:383.

引证文献9

二级引证文献27

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部