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Friction stir channeling: An innovative technique for heat exchanger manufacturing.

机译:摩擦搅拌通道:一种用于热交换器制造的创新技术。

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摘要

Friction stir processing (FSP) is an emerging processing technique based on the principles of friction stir welding (FSW), which is a relatively new solid-state metal joining process developed by The Welding Institute, UK. Some of the unique features of FSW such as the low amount of heat generated, extensive plastic deformation and controlled flow of material is being exploited to develop new material modification and manufacturing processes. Friction stir channeling (FSC) is one such adaptation of FSP that can produce continuous and stable internal channels for application in heat exchanging equipment. Friction stir channeling produces these channels if the defect formation and material flow are controlled during the FSW/P. Channel formation is also affected by other factors, including the process parameters, tool design, and material properties. A good understanding of the process forces, material flow, and metallurgy is therefore necessary to control and optimize the channel formation for use in heat exchangers.;The process forces acting on the tool during channeling were analyzed to study the channel formation mechanism and correlate the channel features to the process parameters and geometric features of the pin. A mechanistic model of the process specific energy was then developed and correlated to the channel size. Finally, the performance of the channels was experimentally determined by measuring the pressure drop across the channels and calculating the friction factor and heat transfer coefficient for different flow rates. These results will help develop the manufacturing process that will enable better control of the channel profile.
机译:搅拌摩擦加工(FSP)是一种基于搅拌摩擦焊接(FSW)原理的新兴加工技术,该技术是英国The Welding Institute开发的一种相对较新的固态金属连接工艺。 FSW的一些独特功能,例如产生的热量少,塑性变形大和材料的流动受控,被用于开发新的材料改性和制造工艺。摩擦搅拌通道(FSC)是FSP的一种改进,可以产生连续且稳定的内部通道,以用于热交换设备。如果在FSW / P期间控制了缺陷的形成和材料的流动,则摩擦搅拌通道会产生这些通道。通道的形成还受到其他因素的影响,包括工艺参数,工具设计和材料特性。因此,必须充分了解过程力,物料流和冶金学,才能控制和优化热交换器中使用的通道形成。;分析了在引导过程中作用在工具上的过程力,以研究通道形成机理并将其关联将通道特征传递给工艺参数和引脚的几何特征。然后,建立了过程比能量的机械模型,并将其与通道尺寸相关联。最后,通过测量通道两端的压降并计算不同流速下的摩擦系数和传热系数,通过实验确定通道的性能。这些结果将有助于开发制造工艺,从而更好地控制通道轮廓。

著录项

  • 作者

    Balasubramanian, Nagarajan.;

  • 作者单位

    Missouri University of Science and Technology.;

  • 授予单位 Missouri University of Science and Technology.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 88 p.
  • 总页数 88
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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