...
首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Technology-Based Recontouring of Blade Integrated Disks After Weld Repair
【24h】

Technology-Based Recontouring of Blade Integrated Disks After Weld Repair

机译:焊接修复后基于技术的刀片集成磁盘轮廓修复

获取原文
获取原文并翻译 | 示例

摘要

The widespread adoption of blade integrated disks (blisks) made of titanium demands tailored regeneration processes to increase sustainability and economic efficiency. High standards regarding geometrical accuracy and functional properties as well as the unique characteristics of each type of damage complicate the repair. Thus, flexible and well-designed processes are necessary. Typically, material deposit is followed by a or grinding process to restore the original shape. Here, the individual repair processes not only have to he controlled but also their interaction. For example, depending on the resulting microstructure of the welded seam, the recontouring process needs to be adapted to minimize tool wear as well as shape deviations of the complex blade geometries. In this paper, the process chain for a patch repair is examined, consisting of a tungsten inert gas (TIC) welding process followed by five-axis ball nose end milling. Conventional TIC as well as a modified TIG process producing a liner grain structure and enhanced mechanical properties of deposited material was investigated. Grain refinement was achieved by SiC particles added to the weld pool. Based on the characteristics of the fusion material and static stiffness of the component, a methodology is introduced to minimize shape deviation induced by the subsequent milling process. Special attention is given to tool orientation, which has a significant impact on the kinematics and resulting process forces during milling. An electromagnetic guided machine tool is used for compensation of workpiece deflection.
机译:钛制成的刀片集成磁盘(叶盘)的广泛采用要求定制的再生过程以提高可持续性和经济效率。有关几何精度和功能特性以及每种损坏类型的独特特征的高标准使维修变得复杂。因此,必须有灵活且设计良好的过程。通常,在材料沉积之后进行研磨工艺以恢复原始形状。在这里,不仅必须控制各个维修过程,而且还必须控制它们之间的相互作用。例如,取决于所得到的焊缝的微观结构,需要调整轮廓加工过程以使工具磨损以及复杂叶片几何形状的形状偏差最小化。在本文中,检查了修补程序的过程链,该过程链由钨极惰性气体(TIC)焊接过程以及随后的五轴球头立铣刀组成。研究了常规的TIC以及改进的TIG工艺,该工艺产生了衬里晶粒结构并增强了沉积材料的机械性能。通过将SiC颗粒添加到焊缝池中可以实现晶粒细化。根据融合材料的特性和组件的静态刚度,引入了一种方法,以最小化后续铣削过程引起的形状偏差。特别注意刀具的定向,这在铣削过程中对运动学和所产生的加工力有重大影响。电磁导向机床用于补偿工件的挠度。

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