首页> 外文期刊>Surface Engineering >PREDICTION AND OPTIMISATION OF WELD BEAD GEOMETRY OF PLASMA TRANSFERRED ARC HARDFACED VALVE SEAT RINGS
【24h】

PREDICTION AND OPTIMISATION OF WELD BEAD GEOMETRY OF PLASMA TRANSFERRED ARC HARDFACED VALVE SEAT RINGS

机译:等离子弧形加硬阀座环焊接球几何的预测与优化

获取原文
获取原文并翻译 | 示例
           

摘要

Automatic weld hardfacing is being employed increasingly in process and power industries. Plasma transferred arc welding (PTAW) has become a natural choice for automatic hardfacing due to its reliability, better process control, ease of use, low dilution and high volume production. Increasing the use of PTAW in its automatic mode, will increase dependence on the use of equations to predict the dimensions of the weld bead. The development of such mathematical equations using a five factor, five level factorial technique to predict the geometry of the weld in the deposition of Stellite 6 (Co-Cr-A) alloy onto carbon steel valve seat rings (ASTM A105) is presented. The developed models have been checked for their adequacy and significance by the F test and t test respectively. Main and interaction effects of the control factors on dilution and bead geometry are presented in a graphical form that aids rapid selection of the process parameters to achieve the desired quality of overlay. The results obtained from the mathematical models have been optimised and also tested using conformity test runs. Optimising the process parameters reduced the amount of metal deposited and enhanced the mechanical and metallurgical properties of the hardfaced layers.
机译:在过程和电力行业中,越来越多地使用自动焊接堆焊。等离子转移弧焊(PTAW)由于其可靠性,更好的过程控制,易用性,低稀释度和大批量生产而成为自动堆焊的自然选择。在自动模式下增加PTAW的使用将增加对方程式的依赖,以预测焊缝的尺寸。提出了使用五因子,五能级因子技术来发展此类数学方程式的方法,以预测将Stellite 6(Co-Cr-A)合金沉积到碳钢阀座环上的焊接几何形状(ASTM A105)。分别通过F检验和t检验检验了开发模型的充分性和重要性。控制因素对稀释度和微珠几何形状的主要影响和相互作用影响以图形形式显示,有助于快速选择工艺参数以获得所需的覆盖质量。从数学模型获得的结果已经过优化,并使用一致性测试运行进行了测试。优化工艺参数可减少沉积的金属量,并增强硬面层的机械和冶金性能。

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