首页> 外文会议>International Conference on the Technology of Plasticity >Enhancing the applicability of Al-Mg compounds by using forming and welding technologies
【24h】

Enhancing the applicability of Al-Mg compounds by using forming and welding technologies

机译:通过使用成型和焊接技术提高Al-Mg化合物的适用性

获取原文

摘要

The role of oxide layers in the formation of a sufficient bonding between aluminum (Al) and magnesium (Mg) as a compound is essential, due to their impediment of the diffusion process. For this investigation into the formability and weldability of such compounds, specimens with an Mg core and an Al cladding were prepared by chemically removing the oxide layers. The specimens were joined mechanically in an inert atmosphere and then forged at 400°C. The bonding quality was investigated by optical microscopy and compared to co-extruded specimens. It was shown that a complete interface between the materials was formed. Furthermore, FE simulation was used for the investigation into the material flow during the forging process and for a comparison with the co-extruded specimens. For the welding experiments, a unique concept for in-line surface treatment and diffusion bonding was used to treat and transfer specimens under inert atmosphere into a diffusion bonding chamber, thereby improving the diffusivity, especially at lower temperatures. The results showed, that the bonding temperature was decreased to almost the forging temperature, while the interface of the diffusion-bonded Al-Mg compounds exhibited nearly no imperfections. Furthermore, no significant increase in hardness was measured at the interface.
机译:氧化物层在铝(Al)和镁(Mg)之间形成足够的键合的作用是必需的,由于它们的扩散方法的障碍是必需的。对于该化合物的可成形性和可焊性的研究,通过化学除去氧化物层制备具有Mg核和Al包层的样品。该样品在惰性气氛中机械地连接,然后在400℃下锻造。通过光学显微镜研究键合质量并与共挤出样品相比。结果表明,形成了材料之间的完整界面。此外,Fe模拟用于调查锻造过程中的材料流动,并与共挤出样品进行比较。对于焊接实验,用于在线表面处理和扩散键合的独特概念用于将惰性气氛下的样品处理和转移到扩散粘合室中,从而提高扩散性,尤其是在较低温度下。结果表明,键合温度降低至几乎锻造温度,而扩散键合的Al-Mg化合物的界面几乎没有缺陷。此外,在界面上测量硬度显着增加。

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