共 110 条
- [1] Schopphoven T(2016)Investigations on ultra-high-speed laser material deposition as alternative for hard chrome plating and thermal spraying J Laser Appl 28 022501-1-022501-9
- [2] Gasser A(2021)Effect of metallurgical behavior on microstructure and properties of FeCrMoMn coatings prepared by high-speed laser cladding Opt Laser Technol 144 107431-022511-4
- [3] Wissenbach K(2020)High-temperature oxidation behaviour of high chromium superalloys additively manufactured by conventional or extreme high-speed laser metal deposition Corros Sci 176 108922-022511-9
- [4] Poprawe R(2019)High speed laser cladding of an iron based alloy developed for hard chrome replacement J Laser Appl 31 022511-1-5
- [5] Yang J(2019)Comparative study of stainless steel AISI 431 coatings prepared by extreme-high-speed and conventional laser cladding J Laser Appl 31 022511-1-044501-7
- [6] Bai B(2023)Microstructural evolution and high-temperature oxidation of TiC/IN625 coatings fabricated by multi-layer extreme high-speed laser cladding Opt Laser Technol 158 108838-455
- [7] Ke H(2013)COMMISSION REGULATION (EU) No 348/2013 of 17 April 2013 amending Annex XIV to Regulation (EC) No 1907/2006 of the European Parliament and of the Council on the Registration Evaluation, Authorisation and Restriction of Chemicals (REACH) Off J Eur Union 56 1-2973
- [8] Cui Z(2022)Perspectives for conventional coating processes using high-speed laser cladding J Manuf Sci E – T ASME 144 044501-1-315
- [9] Liu Z(1995)Carbide-reinforced coatings on AISI 316L stainless steel by laser surface alloying Surf Coat Technol 76-77 450-5238
- [10] Zhou Z(1992)Chromium carbide laser-beam surface-alloying treatment on stainless steel J Mater Sci 27 2967-133