Singh Raghuvir, Chowdhury S Ghosh, Tiwari S K, Dahotre Narendra B
National Metallurgical Laboratory, Jamshedpur 831007, India.
J Mater Sci Mater Med. 2008 Mar;19(3):1363-9. doi: 10.1007/s10856-007-3263-7. Epub 2007 Oct 4.
Laser surface processing was carried out in gaseous nitrogen atmosphere at ambient temperature. The laser scan speed was varied (50-150 cm/min) at constant power of 1500 watts and resulting changes such as microstructural evolution, hardness, and electrochemical response of modified surface in Ringer's physiological solution at varying pH were studied. Increase in laser scanning speed was found to reduce the thickness of alloyed zone from 258 to 87 microm. The microstructure of laser-modified surface contains dendrites grown perpendicular to the laser traverse direction, beneath which basket weave structure of acicular alpha (martensite) was prevalent. Hardness at the top surface of laser-processed at 50 cm/min was approximately 1137 kg/mm2 that reduced with increase in the laser scan speed (577 kg/mm2 at 150 cm/min). Laser surface processing shifted the corrosion potential of Ti6Al4V towards noble side as compared to untreated alloy; the maximum shift by approximately 494 mV was recorded in pH approximately 9 solution. Passivation after laser surface modification was improved as currents were at least 1/3 of the untreated Ti6Al4V in passive region. While the pitting potential of untreated material was found to increase from 1.84 V for 4.0 pH to >2.5 V for 9.0 pH, the pitting potential after laser treatment was observed to drop from maximum of 74% for 4.0 pH (at 100 cm/min) to maximum of 42% for 9.0 pH (at 150 cm/min).
激光表面处理在室温下的气态氮气氛中进行。在1500瓦的恒定功率下改变激光扫描速度(50 - 150厘米/分钟),并研究了诸如微观结构演变、硬度以及在不同pH值的林格氏生理溶液中改性表面的电化学响应等所产生的变化。发现激光扫描速度的增加会使合金化区域的厚度从258微米减小到87微米。激光改性表面的微观结构包含垂直于激光扫描方向生长的树枝晶,其下方针状α(马氏体)的篮状编织结构较为普遍。在50厘米/分钟的激光加工速度下,激光处理表面顶部的硬度约为1137千克/平方毫米,随着激光扫描速度的增加而降低(在150厘米/分钟时为577千克/平方毫米)。与未处理的合金相比,激光表面处理使Ti6Al4V的腐蚀电位向正方向移动;在pH约为9的溶液中记录到最大移动约494毫伏。激光表面改性后的钝化性能得到改善,因为在钝化区域电流至少是未处理的Ti6Al4V的1/3。未处理材料的点蚀电位从4.0 pH时的1.84伏增加到9.0 pH时的>2.5伏,而激光处理后的点蚀电位则从4.0 pH(100厘米/分钟)时的最大值74%下降到9.0 pH(150厘米/分钟)时的最大值42%。