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Friction and wear of Inconel 690 and Inconel 600 for steam generator tube in room temperature water

机译:Inconel 690和Inconel 600在室温水中的蒸汽发生器管的摩擦磨损

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摘要

In the steam generators of nuclear power plants, the flow of cooling water can cause the tubes to vibrate, resulting in fretting wear damage due to contacts between these tubes and their supports. The tubes are made of Inconel 690 and Inconel 600 and the supports are made of STS 304. In this paper, fretting wear tests in water were performed using the materials Inconel 690 and Inconel 600 in contact with STS 304. Fretting tests using a cross-cylinder type set up were conducted under various vibrating amplitudes and applied normal loads in order to measure friction forces and wear volumes. Also, conventional sliding tests using a pin-on-disk type set up were carried out to compare these test results. In the fretting tests, friction force was found to be strongly dependent on normal load and vibrating amplitude. Coefficients of friction decreased with an increase in the normal load and a decrease in the vibrating amplitude applied. Also, the wear of Inconel 600 and Inconel 690 was predicted using a work rate model. Depending on the normal load and vibrating amplitude applied, distinctively different wear mechanisms and often drastically different wear rates occurred. It was found that the fretting wear coefficients for Inconel 600 and Inconel 690 were 9.3 x 10~(-15) and 16.2 x 10~(-15) Pa~(-1), respectively. This study shows that Inconel 690 can result in lesser friction forces and exhibits less wear resistance than Inconel 600 in room temperature water.
机译:在核电站的蒸汽发生器中,冷却水的流动会导致管道振动,由于这些管道及其支撑之间的接触而导致微动磨损损坏。试管由Inconel 690和Inconel 600制成,支架由STS 304制成。在本文中,使用Inconel 690和Inconel 600与STS 304接触的材料在水中进行微动磨损测试。气缸类型的设置是在各种振动幅度和正常载荷下进行的,以测量摩擦力和磨损量。此外,还进行了使用针盘式设置的常规滑动测试,以比较这些测试结果。在微动试验中,发现摩擦力很大程度上取决于法向载荷和振动幅度。摩擦系数随着法向载荷的增加和所施加振动幅度的减小而减小。另外,使用工作率模型预测了Inconel 600和Inconel 690的磨损。取决于所施加的正常负载和振动幅度,会出现截然不同的磨损机制,并且磨损率通常大不相同。结果发现,Inconel 600和Inconel 690的微动磨损系数分别为9.3 x 10〜(-15)和16.2 x 10〜(-15)Pa〜(-1)。这项研究表明,与Inconel 600在室温水中相比,Inconel 690可以产生较小的摩擦力并显示出较低的耐磨性。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2003年第2期|p.97-105|共9页
  • 作者单位

    School of Mechanical Engineering, Sungkyunkwan University, Chang-An-Gu, Chun-Ghun-Dong 300, Suwon, Kyung-Gi-Do 440 746, South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子能技术;
  • 关键词

  • 入库时间 2022-08-18 00:49:04

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