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Process control and development in wire and arc additive manufacturing

机译:电线和电弧增材制造的过程控制和开发

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摘要

This thesis describes advancements in the modelling, optimisation, process control and mechanical performance of novel high deposition rate gas metal arc welding processes for large scale additive manufacturing applications. One of the main objectives of this study was to develop fundamental understanding of the mechanisms involved during processing with particular focus on single layer welds made of carbon steel using both pulsed-current gas metal arc welding and cold metal transfer processes. The effects of interactions between critical welding process variables and weld bead and plate fusion characteristics are studied for single and multi-layers. It was shown that several bead and plate fusion characteristics are strongly affected by the contact tip to work distance, TRIM, wire feed speed, wire feed speed to travel speed ratio, and wire diameter in pulsed-current gas metal arc welding. The arc-length control, dynamic correction and the contact tip to work distance are shown to strongly influence the weld bead geometry in the cold metal transfer process. This fundamental knowledge was essential to ensure the successful development of predictive interaction models capable of determining the weld bead geometry from the welding process parameters. The models were developed using the least-squares analysis and multiple linear regression method.The gas tungsten constricted arc welding process was utilised for the first time for out-of-chamber fabrication of a large scale and high-quality Ti-6Al-4V component. The main focus was, however, in the use of the cold metal transfer process for improving out-of-chamber deposition of Ti-6Al-4V at much higher deposition rates. The effect of the cold metal transfer process on the grain refinement features in the fusion zone of single layer welds under different torch gas shielding conditions was investigated. It was shown that significant grain refinement occurs with increasing helium content. The morphological features and static mechanical performance of the resulting multi-layered Ti-6Al-4V walls were also examined and compared with those in gas tungsten constricted arc welding. The results show that a considerable improvement in static tensile properties is obtained in both testing directions with cold metal transfer over gas tungsten constricted arc welding. It was suggested that this improvement in the mechanical behaviour could be due to the formation of more fine-grained structures,which are therefore more isotropic. The average ultimate tensile strength and yield strength of the as-deposited Ti-6Al-4V material processed via cold metal transfer meet the minima specification values recommended for most Ti-6Al-4V products.Neutron diffraction technique was used to establish the effect of repeated thermo-mechanical cycling on the generation, evolution and distribution of residual stresses during wire and arc additive manufacturing. The results show a significant redistribution of longitudinal residual stresses along both the substrate and multi-bead with repeated deposition. However, a nearly complete relaxation occurs along the built, once the base plate constraint is removed.
机译:本文介绍了用于大规模增材制造应用的新型高沉积速率气体保护金属电弧焊工艺在建模,优化,过程控制和机械性能方面的进展。这项研究的主要目的之一是对加工过程中所涉及的机理有基本的了解,尤其侧重于使用脉冲电流气体金属电弧焊和冷金属转移工艺的碳钢单层焊接。对于单层和多层,研究了关键焊接工艺变量与焊缝和板熔合特性之间相互作用的影响。结果表明,在脉冲电流气体金属电弧焊中,接触点到工作距离,TRIM,焊丝进给速度,焊丝进给速度与行进速度之比以及焊丝直径对焊道和板的几种熔合特性有很大影响。弧长控制,动态校正和触头到工作距离的变化显示出对冷金属转移过程中焊缝几何形状的强烈影响。这些基础知识对于确保成功开发能够根据焊接工艺参数确定焊缝几何形状的预测相互作用模型至关重要。使用最小二乘分析和多元线性回归方法开发了模型。首次使用气体钨丝压缩电弧焊工艺进行大批量,高质量的Ti-6Al-4V组件的室外制造。但是,主要重点是使用冷金属转移工艺以更高的沉积速率改善Ti-6Al-4V的腔外沉积。研究了在不同的焊炬气体保护条件下,冷金属转移工艺对单层焊缝熔合区晶粒细化特征的影响。结果表明,随着氦含量的增加,晶粒明显细化。还检查了所得多层Ti-6Al-4V壁的形貌特征和静态力学性能,并将其与气体钨丝压缩电弧焊中的相比。结果表明,与气体钨极电弧焊相比,通过冷金属转移,在两个测试方向上均获得了静态拉伸性能的显着提高。有人认为,这种机械性能的改善可能是由于形成了更细的结构,因此具有更大的各向同性。经冷金属转移处理的沉积Ti-6Al-4V材料的平均极限抗拉强度和屈服强度满足大多数Ti-6Al-4V产品推荐的最低规格值。中子衍射技术用于确定重复的效果热机械循环,用于线和电弧增材制造过程中残余应力的产生,演化和分布。结果表明,重复沉积,沿基板和多焊道的纵向残余应力有明显的重新分布。但是,一旦移除了基板约束,沿建筑物就会发生几乎完全的松弛。

著录项

  • 作者

    Sequeira Almeida P. M.;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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