Page 26 - manuscript_ijb05589
P. 26

36.     Thalheim R, Willert A, Mitra D, Zichner R. Novel and efficient methodology for drop

                       placement accuracy testing of robot-guided inkjet  printing onto  3D objects.  Machines.
                       2023;11(5):568.

               37.     Antonopoulou E, Harlen O, Walkley M, Kapur N. Jetting behavior in drop-on-demand
                       printing:  Laboratory  experiments  and  numerical  simulations.  Physical  Review  Fluids.

                       2020;5(4):043603.

               38.     Krainer S, Smit C, Hirn U. The effect of viscosity and surface tension on inkjet printed
                       picoliter dots. RSC advances. 2019;9(54):31708-31719.

               39.     Cimpeanu R, Papageorgiou  DT. Three-dimensional  high  speed drop impact  onto  solid
                       surfaces at arbitrary angles. International Journal of Multiphase Flow. 2018;107:192-207.

               40.     Wijshoff  H.  The  dynamics  of  the  piezo  inkjet  printhead  operation.  Physics  reports.

                       2010;491(4-5):77-177.
               41.     Zhu Z, Guo SZ, Hirdler T, et al. 3D printed functional and biological materials on moving

                       freeform surfaces. Advanced Materials. 2018;30(23):1707495.
               42.     Zaca-Morán R, Amaxal-Cuatetl C, Zaca-Moran P, Castillo-Mixcóatl J, Ramos-Garcia R,

                       Padilla-Martinez JP. Thermocavitation: a mechanism to pulse fiber lasers. Optics Express.
                       2021;29(15):23439-23446.

               43.     Schoppink  JJ,  Alvarez-Chavez  JA,  Fernandez  Rivas  D.  Laser  beam  properties  and

                       microfluidic confinement control thermocavitation. Applied Physics Letters. 2024;124(1)
               44.     Derby B. Inkjet printing of functional and structural materials: fluid property requirements,

                       feature stability, and resolution. Annual Review of Materials Research. 2010;40(1):395-
                       414.

               45.     Chang J,  Sun X. Laser-induced  forward transfer based laser bioprinting  in  biomedical

                       applications. Frontiers in Bioengineering and Biotechnology. 2023;11:1255782.
               46.     Wang  X,  Ning  Z,  Lv  M,  Sun  C.  Machine  learning  for  predicting  the  bubble-collapse

                       strength as affected by physical conditions. Results in Physics. 2021;25:104226.
               47.     Xu C, Zhang M, Huang Y, Ogale A, Fu J, Markwald RR. Study of droplet formation

                       process  during  drop-on-demand  inkjetting  of  living  cell-laden  bioink.  Langmuir.

                       2014;30(30):9130-9138.
               48.     Tai J, Gan HY, Liang YN, Lok BK. Control of Droplet Formation in Inkjet Printing Using

                       Ohnesorge Number Category: Materials and Processes. IEEE; 2008:761-766.


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