1 |
레이저 표면 용융공정으로 Al-Cr 코팅한 Zr합금의 미세조직 특성 김정민, 이재철, 김일현, 김현길 Korean Journal of Materials Research, 27(10), 563, 2017 |
2 |
Effects of ZrB2 on substructure and wear properties of laser melted in situ ZrB2p/6061Al composites Zeng YD, Chao YJ, Luo Z, Cai YC, Huang YX Applied Surface Science, 365, 1, 2016 |
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Characterization of AZ31 magnesium alloy by duplex process combining laser surface melting and plasma electrolytic oxidation Liu CC, Liang J, Zhou JS, Li QB, Wang LQ Applied Surface Science, 382, 47, 2016 |
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Influence of pre-heating on the surface modification of powder-metallurgy processed cold-work tool steel during laser surface melting Sturm R, Stefanikova M, Petrovic DS Applied Surface Science, 325, 203, 2015 |
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Effect of excimer laser surface melting on the corrosion performance of a SiCp/Al metal matrix composite Qian DS, Zhong XL, Hashimoto T, Yan YZ, Liu Z Applied Surface Science, 330, 280, 2015 |
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Effect of laser surface melting on microstructure and corrosion characteristics of AM60B magnesium alloy Liu CC, Liang J, Zhou JS, Wang LQ, Li QB Applied Surface Science, 343, 133, 2015 |
7 |
Effect of microstructure and chemical composition on localized corrosion resistance of a AISI 304L stainless steel after nanopulsed-laser surface melting Pacquentin W, Caron N, Oltra R Applied Surface Science, 356, 561, 2015 |
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Nanosecond laser surface modification of AISI 304L stainless steel: Influence the beam overlap on pitting corrosion resistance Pacquentin W, Caron N, Oltra R Applied Surface Science, 288, 34, 2014 |
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Study on feasibility of producing an amorphous surface layer of Fe49Cr18Mo7B16C4Nb3 by pulsed Nd:YAG laser surface melting Mojaver R, Mojtahedi F, Shahverdi HR, Torkamany MJ Applied Surface Science, 264, 176, 2013 |
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Microstructure and mechanical behavior of pulsed laser surface melted AISI D2 cold work tool steel Yasavol N, Abdollah-zadeh A, Ganjali M, Alidokht SA Applied Surface Science, 265, 653, 2013 |