期刊文献+

交叉轧制钼带成形过程显微裂纹的原位研究 被引量:2

In-situ Research on Microcracks of Cross-rolling Molybdenum Strip in Forming Process
下载PDF
导出
摘要 采用光学显微镜和热场发射高分辨率电镜对厚度为0.2 mm交叉轧制钼带及其冷拉深成形和高应变速率激光冲击成形试件的微观组织及显微裂纹进行观察和分析。结果表明:交叉轧制钼带由排列紧凑相互搭接的纤维状细长晶粒组成,拉伸断口呈薄层韧性断裂且晶内显微裂纹相互搭接;多晶钼带内部产生的显微裂纹均发生在晶间结合较弱的厚度方向中间区域,沿纤维晶界且相互搭接,仅在内部产生的拉应力大于弱界面结合强度时,弱界面将产生显微裂纹。 Using optical microscopy and field emission high-resolution electron microscopy, the microstructure and micro-cracks of the 0.2 mm thick cross-rolled molybdenum strip, its cold deep drawing parts and laser shock forming parts under high strain rate were ob- served and analyzed. The results showed that the cross-rolled molybdenum strip was composed with mutual overlapping and compact slender fibrous grains. Tensile fracture exhibited thin layers of ductile fracture and microcracks overlapping each other within the fibrous grains of polycrystalline molybdenum strip. And the microcracks appeared in the middle region of the thickness direction where interg- ranular combination was weak. Only when internal tensile stress was greater than the bonding strength of weak interface, microcracks were generated on the weak interface.
出处 《四川大学学报(工程科学版)》 EI CAS CSCD 北大核心 2012年第6期186-190,共5页 Journal of Sichuan University (Engineering Science Edition)
基金 国家自然科学基金资助项目(51175231)
关键词 钼带 塑性变形 显微裂纹 显微组织 molybdenum strip plastic deformation microcracks microstructure
  • 相关文献

参考文献15

  • 1Cockeram B V. The role of stress state on the fracture tough- ness and toughening mechanisms of wrought molybdenum and rnolvbdeniiin alloys[ J]. Materials Science and Engineer- ng:A,2010,528( 1 ) :288 -308.
  • 2Mrotzek T, Hoffmann A, Martin U. Hardening mechanismsand recrystallization behaviour of" several molybdenum alloys [ J]. International Journal of Refractory Metals & Hard Ma- terials, 2006,24 ( 2 ) : 298 - 305.
  • 3申智慧,曾建辉.稀土钼板材断裂行为的研究[J].稀有金属与硬质合金,2010,38(2):45-48. 被引量:2
  • 4牛荣梅,张国君,孙军,魏建峰,孙院军,赵宝华,杨刘晓,马保平.纯钼微观断裂过程的扫描电镜原位观察[J].稀有金属材料与工程,2006,35(4):559-561. 被引量:6
  • 5Oertel C G, Huensche I,Skrotzki W,et al. Plastic anisotropy of straight and cross rolled molybdenum sheets [ J ]. Materials Science and Engineering:A ,2008,483/484( 1/2 ) :79 - 83.
  • 6Kim H K,Hong S K. FEM-based optimum design of muhi- stage deep drawing process of molybdenum sheet[ J ]. Jour- nal of Materials Processing Technology, 2007, 184 ( 1/3 ) : 354 - 362.
  • 7Ocana J L , Morales M, Porro J A, et al. Laser shock micro- forming of thin metal sheets with ns lasers[J]. Physics Pro- cedia,2011,12(B) :201 - 206.
  • 8Marya M, Edwards G R. A study on the laser fi)rming of near-alpha and metastable beta titanium 'alloy sheets [J] Journal of Materials Processing Technology. ,2001,108 (3) : 376 - 383.
  • 9Oeana J L, Morales M, Garera-Ballesteros J J, et al. Laser shock microfi)rming of thin metal sheets[ J ]. Applied Surface Science, 2009,255 ( 10 ) :5633 - 5636.
  • 10罗新民,苑春智,任旭东,陈康敏,张永康.激光冲击超高应变率对钛板形变微结构的影响[J].材料热处理学报,2010,31(6):116-121. 被引量:9

二级参考文献54

共引文献33

同被引文献21

引证文献2

二级引证文献11

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