首页> 外文OA文献 >Laser surface modification of UNS S31603 stainless steel using NiCrSiB alloy for enhancing cavitation erosion resistance
【2h】

Laser surface modification of UNS S31603 stainless steel using NiCrSiB alloy for enhancing cavitation erosion resistance

机译:使用NiCrSiB合金对UNS S31603不锈钢进行激光表面改性以增强抗气蚀性

摘要

Laser surface modification using NiCrSiB alloy (Ni -16.5Cr -15.5Fe -3.5Si -3.8B -0.1C) on austenitic stainless steel UNS S31603 (Fe -17.6Cr -11.2Ni -2.5Mo -1.4Mn -1.4Cu -0.4Si -0.03C) was achieved by using a 2 kW continuous wave Nd-YAG laser. The cavitation erosion and pitting corrosion characteristics of the laser surface modified UNS S31603 in 3.5% NaCl solution at 23 °C were studied by means of a 20 kHz ultrasonic vibrator at a peak-to-peak amplitude of 30 μm and a potentiostat, respectively. The NiCrSiB alloy layer was flame sprayed on the surface of UNS S31603 stainless steel. The surface was then scanned with the laser beam. The melt depth and dilution of the sprayed layer with the substrate material increased with the decrease of scanning speed. At low dilution ratio of sprayed layer thickness to melt depth, less secondary phases such as CrB, CrB2, Fe2B and M7(CB)3 and low hardness were observed in the laser-modified layer. The cavitation erosion resistance Re (reciprocal of the mean depth of penetration) of the laser-modified specimen with a dilution ratio of 0.65 was improved by 2.7 times as compared with that of the as-received UNS S31603 specimen. In addition, the pitting potential was close to that of the as-received UNS S31603 and the protection potential shifted in the noble direction by a substantial amount (from -3 to 121 mV). The Re of the laser surface modified specimen with dilution ratio of 0.88 was improved by four times as compared with that of the as-received UNS S31603 and very close to that of super duplex stainless steel UNS S32760 (Fe -25.6Cr -7.2Ni -4Mo -0.6Mn -0.7Cu -0.8W -0.3Si -0.2N -0.03C). However, its pitting potential was lowered from 359 to 50 mV and its protection potential shifted in the active direction from -3 to -238 mV. On the other hand, the degree of pitting damage as judged from the pitting morphology was less severe in the laser surface modified specimens. The Re of laser surface modified UNS S31603 was found to be linearly related to hardness. The deformation mechanism by cavitation erosion of the laser-modified specimens was also investigated.
机译:使用NiCrSiB合金(Ni -16.5Cr -15.5Fe -3.5Si -3.8B -0.1C)在奥氏体不锈钢UNS S31603(Fe -17.6Cr -11.2Ni -2.5Mo -1.4Mn -1.4Cu -0.4Si -0.03C)是通过使用2 kW连续波Nd-YAG激光器实现的。分别使用20 kHz超声振动器,峰峰值振幅为30μm的恒电位仪研究了经表面改性的UNS S31603在3.5%NaCl溶液中于23°C的激光空化腐蚀和点蚀的特性。将NiCrSiB合金层火焰喷涂在UNS S31603不锈钢的表面上。然后用激光束扫描表面。随着扫描速度的降低,熔体深度和喷涂层被基材的稀释度增加。在喷涂层厚度与熔体深度的稀释比较低的情况下,在激光改性层中观察到较少的次生相(如CrB,CrB2,Fe2B和M7(CB)3)和较低的硬度。稀释比例为0.65的激光改性样品的抗气蚀性Re(平均穿透深度的倒数)与所接收的UNS S31603样品相比提高了2.7倍。另外,点蚀电位接近于所接收的UNS S31603的点蚀电位,并且保护电位沿贵族方向大量移动(从-3到121mV)。稀释比为0.88的激光表面改性样品的Re值比原先的UNS S31603提高了四倍,非常接近超双相不锈钢UNS S32760(Fe -25.6Cr -7.2Ni- 4Mo -0.6Mn -0.7Cu -0.8W -0.3Si -0.2N -0.03C)。但是,其点蚀电位从359降至50 mV,保护电位沿有效方向从-3转移至-238 mV。另一方面,根据点蚀形态判断的点蚀损伤程度在激光表面改性试样中不那么严重。发现经激光表面改性的UNS S31603的Re与硬度线性相关。还研究了空化侵蚀激光改性试样的变形机理。

著录项

  • 作者

    Kwok CT; Cheng FT; Man HC;

  • 作者单位
  • 年度 1998
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

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