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大功率半导体激光相变硬化U74钢轨的实验研究 被引量:4
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作者 王智勇 苏国强 +1 位作者 张辉 左铁钏 《铁道科学与工程学报》 CAS CSCD 北大核心 2007年第1期63-67,共5页
使用自主研制的新型高光束质量大功率半导体激光器对U74钢轨进行相变硬化,并对硬化结果进行分析。分析结果表明,经过半导体激光处理后的表面区域晶粒结构明显细化,硬化层硬度HV10/20可以达到800~900,比基体硬度提高3~4倍,沿半导... 使用自主研制的新型高光束质量大功率半导体激光器对U74钢轨进行相变硬化,并对硬化结果进行分析。分析结果表明,经过半导体激光处理后的表面区域晶粒结构明显细化,硬化层硬度HV10/20可以达到800~900,比基体硬度提高3~4倍,沿半导体激光器光斑的不同轴向扫描对硬化层有很大影响,沿慢轴方向扫描得到的硬化层深度要远高于快轴方向的硬化层深度,硬度沿深度方向在过渡区附近迅速下降至基体硬度。实验表明,慢轴方向的相变硬化效率约为快轴方向的4倍。 展开更多
关键词 大功率半导体激光器(hpdl) 相变硬化 U74钢轨
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Laser Surface Modification of Lean-alloyed Austenitic Stainless Steel for Corrosion Resistance
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作者 Chan W K Kwok C T +1 位作者 Chan M C Lo K H 《腐蚀与防护》 北大核心 2012年第S1期55-61,共7页
In order to reduce the cost of the austenitic stainless steels(ASSs),the expensive austenite former(nickel) is often substituted by manganese.However,manganese is generally seen to have a detrimental effect on the cor... In order to reduce the cost of the austenitic stainless steels(ASSs),the expensive austenite former(nickel) is often substituted by manganese.However,manganese is generally seen to have a detrimental effect on the corrosion resistance.In the present study,the feasibility of laser surface modification of a lean-alloyed ASS(FeCrMn) for enhancing pitting corrosion resistance was investigated.Laser surface modification of FeCrMn was successfully achieved by a 2.3 kW high power diode laser(HPDL).Cyclic polarization tests for FeCrMn after laser surface modification in 3.5% NaCl solution at 25 ℃ were performed by using a potentiostat.The pitting resistance of the laser-modified specimens was found to be significantly improved as reflected by the noble shift in pitting potential.This could be attributed to redistribution of manganese sulphide leading to a more homogenous and refined microstructure.Pitting corrosion resistance of the laser-treated FeCrMn followed by subsequent citric acid passivation was found to be further improved as reflected by the noble shift in pitting potential to 0.18 V. 展开更多
关键词 laser surface melting hpdl lean-alloyed austenite stainless steel pitting corrosion citric acid passivation
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