Ab'/> Correlation between softening mechanisms and deformation non-uniformity of laser-welded titanium alloy tube during gas bulging process
首页> 外文期刊>Materials Characterization >Correlation between softening mechanisms and deformation non-uniformity of laser-welded titanium alloy tube during gas bulging process
【24h】

Correlation between softening mechanisms and deformation non-uniformity of laser-welded titanium alloy tube during gas bulging process

机译:气膨胀过程中激光焊接钛合金管的软化机理与变形不均匀性的相关性

获取原文
获取原文并翻译 | 示例
       

摘要

AbstractIn this paper, post-weld annealing was carried out to adjust the flow stress difference between weld seam and base material (BM). Deformation non-uniformity of laser-welded titanium alloy tubes before and after annealing was evaluated by gas bulging at 800°C. Results show that after double annealing (950°C/2h, air cooling+600°C/2h, air cooling), weld seam and BM had similar peak stress at first during tensile test at 800°C, 0.001s?1, then the flow stress difference between them changed dynamically due to different softening rates. The maximum flow stress difference ratio was reduced from 36% to 17% after annealing. Deformation uniformity of the bulged tube was improved by 24.6% after annealing, but the higher softening rate of BM during gas bulging confined its further improvement. At early stage of gas bulging of the annealed tube, the main softening mechanism for weld seam was dynamic recovery and that for BM was globularization of secondary α and phase transformation of α to β. At middle-late stage of gas bulging, the main softening mechanism for weld seam was partial globularization of lamella α and that for BM was wide dynamic recrystallization.Highlights?A double annealing process was proposed to improve the deformation uniformity?Different softening mechanisms caused the flow stress difference between the weld seam and BM?Deformation uniformity of the bulged tube was improved by 24.6% after annealing?The higher softening rate of BM confined the further improvement of deformation uniformity.]]>
机译:<![cdata [ 抽象 在本文中,进行了后焊接退火,以调节焊缝和基材之间的流量应力差异(BM)。通过800℃的气体凸出评估退火前后激光焊接钛合金管的变形不均匀性。结果表明,双退火(950°C / 2H,空气冷却+ 600°C / 2H,空气冷却),焊缝和BM在800°C时首先在拉伸试验期间具有相似的峰值应力,0.001℃?1 ,然后它们之间的流应力差异由于不同的软化率而动态地改变。退火后的最大流量应力差率从36%降至17%。退火后凸出的管的变形均匀性将提高24.6%,但是气体凸起期间BM的软化率较高局限于进一步改善。在退火管的气体膨胀的早期阶段,焊缝的主要软化机理是动态回收,BM的次级α和α的相变为β的变化。在气膨胀的中期阶段,焊缝的主要软化机理是薄片α的部分球状,并且BM宽度的重结晶。 亮点 < CE:标签>? 提出了双退火过程,以改善变形均匀性 不同的软化机制导致流量应力差异焊缝和BM BM的较高软化率局限于变形均匀性的进一步提高。 ]]>

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号