AEROSPACE SHANGHAI, Volume. 42, Issue 4, 136(2025)
Laser Processing Technology for Typical Materials and Components in the Aerospace Field and Its Research Progress
[1] L JIANG. Ultrafast laser application in buried blind vias PCBs. Proc SPIE (USA), 12501, 10(2022).
[2] A L BACHMANN, B HANRAHAN, M D DICKEY et al. Self-folding PCB kirigami:rapid prototyping of 3D electronics via laser cutting and forming. ACS Appl Mater Interfaces, 14, 14774-14782(2022).
[3] L X LI, Z X LI, Z G XING et al. Effect of femtosecond laser bionic texture on anti-wear properties of medical Ti-6Al-4V. Tribology International, 190, 12(2023).
[4] K A I F B K ADZMAN, A B M HALIL, M B I MUHAMMAD et al. Effect of laser process loops on the hole diameter and hole formation of laser micro drilling on TC4. J Phys, 2688(2024).
[5] A G DEMIR, B PREVITALI. Lasers in the manufacturing of cardiovascular metallic stents:Subtractive and additive processes with a digital tool. Procedia Comput Sci (Netherlands), 217, 604-613(2023).
[6] W F SUN, J Y YI, G MA et al. A vision-based method for dimensional in situ measurement of cooling holes in aero-engines during laser beam drilling process. International Journal of Advanced Manufacturing Technology, 119, 1-13(2022).
[7] J W LIANG, D B WU, S B LIU et al. Research on hybrid remanufacturing process chain of laser cladding,CNC machining and ultrasonic rolling for aero-engine blades. Journal of Manufacturing Processes, 110, 331-349(2024).
[10] N TEPYLO, X HUANG, P C PATNAIK. Laser-based additive manufacturing technologies for aerospace applications. Advanced Engineering Materials, 21, 1900617(2019).
[11] G Q XIN, M Z WANG, Y HUANG et al. Composition conversion and parameters influence of nanosecond ultraviolet laser cutting polystyrene film. Journal of Applied Polymer Science, 139, 51613(2022).
[15] Y S YAO, X P XU, C L ZHANG et al. Experimental study on laser cutting process of titanium-zirconium amorphous alloy. AIP Advances, 14(2024).
[17] A I KHDAIR, A A MELAIBARI. Experimental evaluation of cut quality and temperature field in fiber laser cutting of AZ31B magnesium alloy using response surface methodology. Optical Fiber Technology, 77, 103290(2023).
[18] S I KUZNETSOV, D M GUREEV, D S LEVIN et al. Laser-beam pattern cutting of carbon-carbon composites. Proc SPIE - Int Soc Opt Eng (USA), 4644, 83-88(2002).
[19] F A AL-SULAIMAN, B S YILBAS, M AHSAN. CO2 laser cutting of a carbon/carbon multi-lamelled plain-weave structure. Journal of Materials Processing Technology, 173, 345-351(2006).
[20] J KOHL, T WILL, T KLIER et al. Influence of material thickness and hatching strategies on laser cutting of epoxy mold composites. Journal of Laser Applications, 36, 1-7(2024).
[21] D SUN, F Z HAN, W S YING. The experimental investigation of water jet-guided laser cutting of CFRP. International Journal of Advanced Manufacturing Technology, 102, 719-729(2019).
[24] J R DEEPAK, P A R., S SARAN SUNDAR. Applications of lasers in industries and laser welding:A review. Materials Today:Proceedings, 2, 102(2023).
[27] Z LIU, X Q LI, L H PAN et al. Effects of weld penetration modes on laser welding characteristics of a novel ultra-high strength steel for aerospace application. Journal of Manufacturing Processes, 90, 111-124(2023).
[30] J Q SHEN, B LI, S S HU et al. Comparison of single-beam and dual-beam laser welding of Ti-22A1-25Nb/TA15 dissimilar titanium alloys. Optics and Laser Technology, 93, 118-126(2017).
[31] Y F HU, L B WU, P S ZHOU et al. Fiber laser welding of Ti-6Al-4V to Inconel 718 bimetallic structure via Cu/Ta multi-interlayer. Vacuum, 192, 110461(2021).
[32] Z LIU, X Q LI, L H PAN et al. Effects of weld penetration modes on laser welding characteristics of a novel ultra-high strength steel for aerospace application. Journal of Manufacturing Processes, 90, 111-124(2023).
[34] C Y YEO, S C TAM, S JANA et al. A technical review of the laser drilling of aerospace materials. Journal of Materials Processing Technology, 42, 15-49(1994).
[35] Q LI, L YANG, C HOU et al. Surface ablation properties and morphology evolution of K24 nickel based superalloy with femtosecond laser percussion drilling. Optics and Lasers in Engineering, 114, 22-30(2019).
[36] S AHMAD SOBRI, R HEINEMANN, D WHITEHEAD. Development of laser drilling strategy for thick carbon fibre reinforced polymer composites (CFRP). Polymers, 12, 2674(2020).
[37] C LIU, X ZHANG, G WANG et al. New ablation evolution behaviors in micro-hole drilling of 2.5D Cf/SiC composites with millisecond laser. Ceramics International, 47, 29670-29680(2021).
[38] F ZHANG, J WANG, X WANG et al. Experimental study of nickel-based superalloy IN792 with femtosecond laser drilling method. Optics & Laser Technology, 143, 107335(2021).
[39] V EBRAHIMZADE, H UCHTMANN, L SINGHEISER. Microstructure and cyclic oxidation behavior of APS TBC systems drilled with various laser methods. Surface and Coatings Technology, 378, 125018(2019).
[40] L SUBASI, M I GOKLER, U YAMAN. A process modeling approach for micro drilling of aerospace alloys with a waterjet guided laser system. Optics & Laser Technology, 148, 107682(2022).
[41] L SUBASI, M I GOKLER, U YAMAN. A comprehensive study on water jet guided laser micro hole drilling of an aerospace alloy. Optics & Laser Technology, 164, 109514(2023).
[43] R FAN, X MEI, J CUI. Process in laser drilling of deep microholes without taper on metal materials. Science China Technological Sciences, 67, 37-59(2024).
[46] K H RICHTER, S ORBAN, S NOWOTNY. Laser cladding of the titanium alloy TI6242 to restore damaged blades(2004).
[47] J Y GU, X SU, W Q LI et al. Process and mechanism of paint stripping on CFRP by UV nanosecond laser. Optics and Laser Technology, 171, 110461(2024).
[48] Z C LI, D H ZHANG, X SU et al. Removal mechanism of surface cleaning on TA15 titanium alloy using nanosecond pulsed laser. Optics and Laser Technology, 139, 106998(2021).
[49] J OUYANG, P MATIVENGA, N GOFFIN et al. Energy consumption and performance optimisation of laser cleaning for coating removal. Cirp Journal of Manufacturing Science and Technology, 37, 245-257(2022).
[50] Y J YUAN, X LI, L JIANG et al. Laser maskless fast patterning for multitype microsupercapacitors. Nature Communications, 14, 3967(2023).
[51] J LI, J YAN, L JIANG et al. Nanoscale multi-beam lithography of photonic crystals with ultrafast laser. Light:Science & Applications, 12, 164(2023).
[53] X Q HAO, H L LI, Y F YANG et al. Experiment on cutting performance of textured cemented carbide tools with various wettability levels. International Journal of Advanced Manufacturing Technology, 103, 757-768(2019).
[54] L M ZHANG, S S LI, A N XIA et al. Fabrication of polycrystalline diamond micro-milling cutter with different grain sizes by picosecond laser. Ceramics International, 50, 13924-13934(2024).
[55] X N AI, J TAN, H SUN et al. Effect of tool coatings on machining properties of compacted graphite iron. Micromachines, 13, 1781(2022).
[56] L LU, J TAN, X A AI et al. Influence of tool structure on turning performance of compacted graphite iron. International Journal of Advanced Manufacturing Technology, 124, 3553-3565(2023).
[57] J J HAN, R MA, L L KONG et al. Investigation on self-fabricated PCD cutter and its application in deep-and-narrow micro-grooves. International Journal of Advanced Manufacturing Technology, 119, 6743-6760(2022).
[58] Y LU, J X DENG, J X WU et al. Influence of micro-grooves processed by laser with different incident angle on the properties of TiAlSiN coatings. Surface & Coatings Technology, 446, 128793(2022).
[59] Z WU, X L TAN, G C LI et al. Tribological properties of groove-textured Ti-6Al-4V alloys with solid lubricants in dry sliding against GCr15 steel balls. Micromachines, 14, 1978(2023).
[60] Y Q XING, M Y ZHU, Z WU et al. High-temperature tribological properties of Si3N4/TiC ceramic with bionic surface textures and DLC coatings. Tribology International, 186, 108648(2023).
[61] Y Q XING, C LUO, M Y ZHU et al. Assessment of self-lubricating coated cutting tools fabricated by laser additive manufacturing technology for friction-reduction. Journal of Materials Processing Technology, 318, 118010(2023).
[62] S F LIU, C F SUN, K D ZHANG et al. Fog collection efficiency of superhydrophobic surfaces with different water adhesion prepared by laser grid texturing. Optics and Laser Technology, 172, 110523(2024).
[63] K D ZHANG, H S LI, C ZHANG et al. Effect of ion beam etching on the tribological performance of laser textured Co-Cr-Mo alloy. Optics and Laser Technology, 160, 109097(2023).
[64] H MITSURU, S TATSUYA. Development of cutting tools with micro-textured surface for high speed machining of Ti-6Al-4V(2021).
[65] P C SUN, X Q HAO, Y K JIN et al. Heterogenous slippery surfaces:enabling spontaneous and rapid transport of viscous liquids with viscosities exceeding 10 000 mPa∙s. Small, 19(2023).
[66] B H LI, L JIANG, X W LI et al. Self-propelled Leidenfrost droplets on femtosecond-laser-induced surface with periodic hydrophobicity gradient. International Journal of Extreme Manufacturing, 6(2024).
[67] Y H HUA, B S GUO, L JIANG et al. Controllable multi-scale hydrophobic structures on titanium alloy by polarization-dependent femtosecond laser fabrication and magnetron sputtering. Journal of Materials Research and Technology-Jmr&T, 27, 2237-2248(2023).
[68] M N WU, L JIANG, T Y LI et al. Efficient fabrication of infrared antireflective microstructures on a curved Diamond-ZnS composite surface by using femtosecond Bessel-like beams. Optics Express, 31, 28670-28682(2023).
[69] Q K LIU, J ZHANG, P C SUN et al. Achieving ultralong directional liquid transportation spontaneously with a high velocity. Journal of Materials Chemistry A, 11, 11(2023).
[70] Y S YAO, T PENG, Y B PENG et al. Femtosecond-laser-patterned origami Janus membrane toward enhanced water fog harvesting. Nanoscale, 15, 17068-17075(2023).
[71] J L CUI, H Z KANG, J DOU et al. High-quality fabrication of diamond straight microchannels heat sink with large aspect ratio microchannels using UV nanosecond laser based on multi-feed method. Optics and Laser Technology, 171, 110429(2024).
[72] Y H SU, M Y CHU, L FANG et al. Laser-induced hierarchical microcone arrays for flexible tactile sensors with high sensitivity and ultrabroad detection range. Advanced Engineering Materials, 25, 2300739(2023).
[73] H Z YUE, J SCHNEIDER, J X DENG. Laser surface texturing for ground surface:frictional effect of plateau roughness and surface textures under oil lubrication. Lubricants, 12, 22(2024).
[74] Y LU, J X DENG, Z H ZHANG et al. The cutting performance of saw blades with textured structures on the rake face,main flank face,and secondary flank face. International Journal of Advanced Manufacturing Technology, 131, 4915-4933(2024).
[75] Y LU, J X DENG, Z H ZHANG et al. Cutting performance of saw blades with microtextured rougher and finisher sawteeth. Advances in Manufacturing, 12, 317-334(2024).
[76] Y C BAO, J X DENG, K X MA et al. Thick-film printing of TaS2 soft films on the textured surface to enhance wear life. Surface & Coatings Technology, 476, 130231(2024).
[77] M H ZHU, J L OUYANG, Y J TIAN et al. Understanding factors affecting the process efficiency,quality and carbon emission in laser drilling of CFRP composite via tailored sequence multiple-ring scanning. Composites Part B-Engineering, 272, 1-15(2024).
[78] Z LI, O ALLEGRE, L LI. Realising high aspect ratio 10 nm feature size in laser materials processing in air at 800 nm wavelength in the far-field by creating a high purity longitudinal light field at focus. Light:Science & Applications, 11, 3028-3043(2022).
[79] Y LIU, M Y WU, Z Y ZHANG et al. Preparation of multifunctional protective coating on alloy surface by laser-electrodeposition additive-subtractive hybrid manufacturing. Journal of Materials Processing Technology, 326, 118340(2024).
[80] Y Z LI, Y X FANG, Y H HUANG et al. Ultra-wideband,polarization-insensitive flexible metamaterial absorber base on laser printed graphene using equivalent circuit design method. Carbon, 212, 118166(2023).
[81] Y X XU, D Y ZHANG, J Y DENG et al. Numerical simulation in the melt pool evolution of laser powder bed fusion process for Ti6Al4V. Materials, 15, 7585(2022).
[82] X P WU, D Y ZHANG, D H YI et al. Interfacial characterization and reaction mechanism of Ti/Al multi-material structure during laser powder bed fusion process. Materials Characterization, 192, 112195(2022).
[83] A TEMMLER, D LIU, J LUO et al. Influence of pulse duration and pulse frequency on micro-roughness for laser micro polishing (LμP) of stainless steel AISI 410. Applied Surface Science, 510, 1-24(2020).
[84] T C LI, L L ZHANG, G CHEN et al. A combined heat source model for the prediction of residual stress post extreme high-speed laser material deposition. Journal of Manufacturing Processes, 78, 265-277(2022).
[85] D D GU, X Y SHI, R POPRAWE et al. Material-structure-performance integrated laser-metal additive manufacturing. Science, 372, 932(2021).
[86] Y QIN, P WEN, H GUO et al. Additive manufacturing of biodegradable metals:Current research status and future perspectives. Acta Biomaterialia, 98, 3-22(2019).
[88] Y WANG, Q D PENG, G L WU et al. Effect of auxiliary laser irradiation on characteristics and properties of micro-arc oxidation coating on Ti6Al4V alloy. Ceramics International, 50, 19412-19423(2024).
[89] G L WU, Y Y YIN, L B ZHU et al. Photoactive TiO2 ceramic coatings obtained by laser-assisted plasma electrolytic oxidation on commercial pure titanium. Ceramics International, 50, 6229-6240(2024).
[90] Y M CHI, D H QIAN, L LU et al. Interfacial characteristics and wear properties of laser fabricated Fe-Al coatings on 6061 aluminum alloy. Journal of Materials Science, 59, 7547-7560(2024).
[91] Y X JIAN, Y K LIU, H J QI et al. Effects of scanning speed on the microstructure,hardness and corrosion properties of high-speed laser cladding Fe-based stainless coatings. Journal of Materials Research and Technology-Jmr&T, 29, 3380-3392(2024).
[92] J DU, X XU, H ZHANG et al. Microstructure and wear resistance of CoCrFeNiMn coatings prepared by extreme-high-speed laser cladding. Surface & Coatings Technology, 470, 18(2023).
[93] J W LEE, Y C SHIN. Crack-free tungsten coating on ODS plate via a modified laser-based additive technique:Offset laser cladding. Surface & Coatings Technology, 476, 130285(2024).
[94] T WANG, H B TANG, Y Y ZHU et al. Laser additive manufacturing of new α+β titanium alloy with high strength and ductility. Journal of Materials Research and Technology-Jmr&T, 26, 7566-7582(2023).
Get Citation
Copy Citation Text
Xiuqing HAO, Simin CHEN, Lingchen MENG, Kewei FU, Liyuan XU, Huangcheng ZHU, Guoqiang GUO, Ning HE. Laser Processing Technology for Typical Materials and Components in the Aerospace Field and Its Research Progress[J]. AEROSPACE SHANGHAI, 2025, 42(4): 136
Category: Speciality Discussion
Received: Aug. 23, 2024
Accepted: --
Published Online: Sep. 29, 2025
The Author Email: