首页> 外文会议>International ESAFORM Conference on Material Forming >Analysis of Extruded Pins Manufactured by Friction Stir Forming for multi-material joining purposes
【24h】

Analysis of Extruded Pins Manufactured by Friction Stir Forming for multi-material joining purposes

机译:多材料加入用摩擦搅拌形成制造的挤出销的分析

获取原文

摘要

Nowadays the application of multi-material parts has become a standard in several sectors, such as in transportation where the use of dissimilar material contributes to reduce the weight of structural components, as well as to decrease fuel consumption and CO2 emissions. The scientific literature proposes various methods for combining dissimilar materials, but when there are too incompatible, the process becomes a real challenge. To this aim and to propose an alternative joining technique, which does not require the use of additional external parts, the authors investigated a method based on the Friction Stir Forming (FSF) technology. FSF is a process, where a rotating tool moves on a metal sheet pushing the material through the holes of a forming die positioned under the worked sheet. In the current study, the authors aimed at improving the quality of the aluminium extruded pins, which leads to the improvement of the connection with composite materials. To this aim, a specific equipment has been manufactured and installed on a general purpose milling machine and an experimental plan has been designed. Both process (i.e. spindle speed, forming velocity) and geometrical parameters (i.e. hole diameter and the distance between the holes) have been considered. A deep analysis has been carried out on the extruded aluminium pins in terms of internal structure. Specifically, an X-ray micro-tomographic analysis has been performed to investigate, qualitatively and quantitatively, the distribution of the material within the manufactured pins. The void content and the final height of the pins have been measured aiming at understanding how these outputs can be affected by the investigated parameters.
机译:如今,多材料部件的应用已成为若干部门的标准,例如在不同材料的运输中有助于减少结构部件的重量,以及降低燃料消耗和二氧化碳排放。科学文献提出了各种组合异种材料的方法,但当出现太不相容时,该过程成为一个真正的挑战。为此目的并提出一种替代连接技术,该技术不需要使用额外的外部部件,该作者研究了一种基于摩擦搅拌形成(FSF)技术的方法。 FSF是一种方法,其中旋转工具在将材料推动材料通过定位在工作板下方的成型模具的孔上的金属板上移动。在目前的研究中,作者旨在提高铝挤出销的质量,从而导致改善与复合材料的连接。为此目的,已经制造并安装了一种特定的设备并安装在通用铣床上,并设计了实验计划。已经考虑了过程(即主轴速度,形成速度)和几何参数(即孔直径和孔之间的距离)。在内部结构方面,在挤出的铝销上进行了深度分析。具体地,已经进行了一种X射线微断层分析以研究制造销内材料的分布,定性和定量地进行研究。已经测量了空隙内容和引脚的最终高度,旨在了解这些输出如何受调查参数的影响。

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