首页> 外文期刊>Journal de Physique, IV: Proceedings of International Conference >Liquid metal embrittlement studies on model systems with respect to the spallation target technology: The importance of nanometre-thick films
【24h】

Liquid metal embrittlement studies on model systems with respect to the spallation target technology: The importance of nanometre-thick films

机译:关于剥落目标技术的模型系统的液态金属脆化研究:纳米厚膜的重要性

获取原文
获取原文并翻译 | 示例
           

摘要

Liquid metal embrittlement (LME) is illustrated on the Cu-Bi and Cu-PbBi systems at 300 ℃ using either constant strain-rate tests at 10~(-4) s~(-1) or constant load tests at 25% of yield stress. Intergranular penetration was studied in the Ni-Bi system at 700 ℃ and was shown to result in the formation of slowly growing micrometre-thick and rapidly growing nanometre-thick films. Both induce very strong intergranular brittleness but only micrometre-thick films are visible by SEM on polished cross-sections. Nanometre-thick films were analysed by Auger electron spectroscopy after "in situ" fractures within the spectrometer; in particular, a series of analyses on an Ni bicrystal proved the constant thickness of this film over several hundreds of microns. The severity of embrittlement due to bismuth penetration was confirmed in the analysis of the Ni-PbBi system. Based on these results, it is underlined that technological systems like T91 steel/Pb or T91/PbBi should work at temperatures below the wetting transition temperature (T_W), i.e. in the temperature range where intergranular films can't form. If it is not the case, nanometre-thick films should be taken into account, both in the evaluation of the kinetics of embrittlement and in the modelling of intergranular penetration and LME.
机译:在300℃的Cu-Bi和Cu-PbBi系统上,使用10〜(-4)s〜(-1)的恒定应变率测试或屈服25%的恒定载荷测试,说明了液态金属脆化(LME)强调。在700℃的Ni-Bi体系中研究了晶间渗透,结果表明形成了缓慢生长的微米厚膜和快速生长的纳米厚膜。两者均引起非常强的晶间脆性,但通过SEM在抛光的横截面上仅可见微米厚的膜。在光谱仪内“原位”断裂后,通过俄歇电子能谱分析纳米级的薄膜。特别是对镍双晶体的一系列分析证明,该膜的厚度恒定在数百微米。 Ni-PbBi体系的分析证实了由于铋渗透引起的脆化的严重性。基于这些结果,强调了T91钢/ Pb或T91 / PbBi之类的技术系统应在低于润湿转变温度(T_W)的温度下工作,即在不能形成晶间膜的温度范围内工作。如果不是这种情况,则在评估脆化动力学以及在晶间渗透和LME建模中都应考虑纳米级的薄膜。

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