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作 者:彭发学 马麟[1] 田辉[1] 索红莉[1] 孟易辰[1] 梁雅儒[1] 刘婧[1] 钟志鹏
机构地区:[1]北京工业大学,北京100124
出 处:《稀有金属材料与工程》2017年第10期2975-2980,共6页Rare Metal Materials and Engineering
基 金:国家自然科学基金(51171002);北京市自然科学基金(2132011);2013年度北京市自然科学基金重点项目B类(KZ201310005003);高等学校博士学科点专项科研基金(20121103110012);北京市属高等学校创新团队建设与教师职业发展计划(IDHT20130510)
摘 要:采用光学显微镜(OM)、X射线四环衍射(XRD)、电子背散射衍射(EBSD)技术分析研究了形变细化晶粒、润滑轧制对Ni-9.3 at%W(Ni9.3W)合金基带立方织构形成的影响。结果表明,采用形变细化晶粒的方法能有效提高Ni9.3W合金基带的立方织构含量,并且随着初始形变量的增加,晶粒细化程度增大,立方织构含量增高,采用优化的形变细化晶粒工艺使得Ni9.3W合金基带立方织构含量提高了9.8%。另外,增加形变细化晶粒后的轧制总变形量,立方织构含量进一步提升了24.7%。相比非润滑轧制而言,采用润滑轧制,轧制织构中获得了较多的S取向与Copper取向,经再结晶退火后,润滑轧制基带的立方织构含量比非润滑轧制基带的立方织构含量高9.6%,达到了86.7%(<15°),而且孪晶界数量、小角度晶界含量均要优于非润滑轧制,说明润滑轧制对立方织构形成有着积极的影响。Influence of deformation refinement grain and lubrication rolling on the cube texture formation in Ni-9.3 at%W(Ni9.3 W) alloy substrate was analyzed by optical microscope(OM), X-ray diffraction(XRD) and electron backscattered diffraction(EBSD) technique. The results show that the method of deformation refinement grain can effectively improve the cube texture content in Ni9.3W alloy substrate. The grains are finer with the increase of deformation reduction, which results in a higher cube texture content in annealed substrate. The cube texture content by the optimized deformation refinement grain increases by 9.8% compared with that without deformation refinement grain in Ni9.3W alloy substrate. Besides, cube texture content increases by 24.7% through adding total rolling deformation after deformation refinement grain. Lubrication rolling is able to get more S and Copper orientation in rolling textures. After recrystallization annealing, cube texture content with lubrication rolling reaches 86.7%(15°), which is 9.6% higher than that without lubrication rolling. In addition, the twin boundary quantity and low angle grain boundary content by lubrication rolling is superior to that without lubrication rolling, which illustrates that lubrication rolling has a significant effect on the cube texture formation.
关 键 词:Ni9.3W 细化晶粒 润滑轧制 轧制织构 立方织构
分 类 号:TG146.15[一般工业技术—材料科学与工程] TG335[金属学及工艺—金属材料]
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