首页> 外文会议>International Conference on Environmental Degradation of Materials in Nuclear Power Systems - Water Reactors >TRIBOCORROSION PHENOMENA IN CO- AND FE-BASED HARDFACING ALLOYS EVALUATED USING PIN-IN-ON-DISC WEAR TESTS IN A SIMULATED PWR ENVIRONMENT
【24h】

TRIBOCORROSION PHENOMENA IN CO- AND FE-BASED HARDFACING ALLOYS EVALUATED USING PIN-IN-ON-DISC WEAR TESTS IN A SIMULATED PWR ENVIRONMENT

机译:在模拟PWW环境中使用引脚盘式磨损试验评估了二氧化碳的硬裂合金中的Tribocolion现象

获取原文

摘要

The like-on-like sliding wear behavior of hardfacingalloys Tristelle 5183, RR2450, Stellite 6 and Stellite 3 wasinvestigated at 20°C and 250°C using a pin-on-discapparatus in a simulated PWR environment. Stellite 3wears considerably less than Stellite 6 at 20 and 250°Cbut both exhibit an increase in wear with increasingtemperature; the total mass loss increases approximately20 times. At 20°C, the iron-based alloys, especially 5183,wear more than the Stellite alloys but both iron-basedalloys show a smaller increase in wear with increasingtemperature. At 250°C, Stellite 6, 5183 and RR2450 havestatistically similar mass losses post wear testing.Tristelle 5183 does not exhibit a significant increase inwear with respect to increasing temperature whereas theincrease in wear for RR2450 is approximately four-fold.In the Stellite alloys, it is the increasing severity of atribocorrosion mechanism that principally dictates theincrease in rate of material removal with respect toincreasing temperature. In Tristelle 5183, plasticitydominated wear occurs at 20°C but at 250°C theformation of an additional oxide-based tribofilmcounteracts other high temperature wear mechanisms. Asimilar mechanism is also believed to operate in RR2450.
机译:硬折叠的类似滑动磨损行为合金三塞尔勒5183,RR2450,Stellite 6和Stellite 3是在20°C和250°C下使用销钉调查在模拟PWW环境中的装置。斯蒂特3.在20和250°C时磨损比钝齿6更小但两者都随着越来越多的磨损而言温度;总质量损失大约增加20次。在20°C时,铁基合金,尤其是5183,穿着的磨损合金超过铁矿石合金随着越来越长,合金显示出较小的磨损温度。在250°C时,Stellite 6,5183和RR2450具有耐磨性测试的统计上类似的质量损失。Tristelle 5183没有表现出显着增加磨损越来越多的温度而RR2450磨损的增加约为四倍。在粗糙的合金中,它是越来越严重的FACTOOCORION机制主要决定了增加材料率的速度越来越多的温度。在Tristelle 5183中,可塑性主导的磨损发生在20°C,但在250°C时形成额外的氧化物基呋喃木抵消其他高温磨损机制。一种在RR2450中也据信类似机制。

著录项

相似文献

  • 外文文献
  • 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