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首页> 外文期刊>Journal of Laser Applications >Wear and corrosion resistant laser coatings for hydraulic piston rods
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Wear and corrosion resistant laser coatings for hydraulic piston rods

机译:用于液压活塞杆的耐磨和耐腐蚀激光涂层

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摘要

Hydraulic piston rods on oil and gas drilling platforms, hydro-power stations, chemical plants, and underground mines are exposed to severe tribo-corrosive conditions under static and dynamic mechanical loads. Piston rods made of carbon, quenched and tempered (QT) and stainless steels are frequently surface coated with methods such as thermal spraying, hard chrome plating, and overlay welding. Unfortunately, several premature failures have been reported particularly in marine applications due to insufficient coating properties. Laser cladding has recently drawn lot of attention in this field due to high coating quality and significant improvements in productivity. In this study, several potential Fe-, Ni-, and Co-based alloys were laser clad on carbon and QT steels. Their corrosion and mechanical performances were explored in long-term salt spray, immersion, hardness, abrasive wear, and four-point bending fatigue tests. Most of the laser coatings outperformed hard chrome in corrosion properties, but hardness values were somewhat lower. In single point abrasion tests (scratch tests), the hardest laser coatings, however, outperformed hard chrome due to brittle nature of hard chrome layers. Postmachining induced significant superficial hardness increases in laser coatings, which was the main reason for good wear performance. Fatigue performance was strongly dependent on material pairs, presence of cladding defects, and applied loads. (C) 2015 Laser Institute of America.
机译:油气钻井平台上的液压活塞杆,水力电站,化工厂和地下矿井暴露于静态和动态机械负荷下的严重摩擦腐蚀条件。由碳,淬火和回火(QT)和不锈钢制成的活塞杆经常涂有热喷涂,硬铬镀层和覆盖焊接的方法。不幸的是,由于涂层性能不足,尤其在海洋应用中报告了几种过早失败。由于高涂层质量和生产率的显着改善,激光熔覆最近在该领域中提出了很多关注。在该研究中,碳和QT钢上的几种潜在的Fe-,Ni-和Co基合金是激光包覆的。它们的腐蚀和机械性能在长期盐雾,浸泡,硬度,磨料和四点弯曲疲劳试验中探讨。大多数激光涂层在腐蚀性能下表现出硬质铬,但硬度值略低。在单点磨损试验(划痕试验)中,最硬的激光涂层,由于硬铬层的脆性,由于硬铬层的脆性而表现优于硬铬。后加工诱导激光涂料的显着浅表硬度增加,这是良好磨损性能的主要原因。疲劳性能强烈依赖于材料对,存在包层缺陷和施加的载荷。 (c)2015年激光研究所。

著录项

  • 来源
    《Journal of Laser Applications》 |2015年第2期|a9022009.1-022009.12|共13页
  • 作者单位

    Tampere Univ Technol Dept Mat Sci FI-33720 Tampere Finland;

    Tampere Univ Technol Dept Mat Sci FI-33720 Tampere Finland|Technol Ctr Ketek Ltd FI-67100 Kokkola Finland;

    Tampere Univ Technol Dept Mat Sci FI-33720 Tampere Finland;

    Tampere Univ Technol Dept Engn Design FI-33720 Tampere Finland;

    Technol Ctr Ketek Ltd FI-67100 Kokkola Finland;

    Tampere Univ Technol Dept Mat Sci FI-33720 Tampere Finland;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    laser cladding; hydraulic; corrosion; wear; fatigue;

    机译:激光包层;液压;腐蚀;磨损;疲劳;

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