Robotic Aerosol Jet Printing of Conformal Microscale Circuits with In-situ Laser Sintering
DING Yi1,2, XU Chenyu1,2, HE Jiankang1,2, YUE Junyu1,2, YU Kun1,2, LI Jiaxin1,2, HUO Ziyao1,2, LI Dichen1,2
1. School of Mechanical Engineering, Xi'an Jiaotong University, Xi'an 710049; 2. State Key Laboratory for Manufacturing Systems Engineering, Xi'an Jiaotong University, Xi'an 710049
DING Yi, XU Chenyu, HE Jiankang, YUE Junyu, YU Kun, LI Jiaxin, HUO Ziyao, LI Dichen. Robotic Aerosol Jet Printing of Conformal Microscale Circuits with In-situ Laser Sintering[J]. Journal of Mechanical Engineering, 2026, 62(3): 282-297.
[1] LIU G F,LI X M,CHEN X L,et al. Printing high-resolution conformal electronics on meter-scale surfaces using template-confined microfluidics[J]. Materials Today,2025,83:166-180. [2] HUANG Y A,WU H,XIAO L,et al. Assembly and applications of 3D conformal electronics on curvilinear surfaces[J]. Materials Horizons,2019,6(4):642-683. [3] 刘秀利,苑博,孙凤林. 3D打印在智能蒙皮天线中的应用发展[J]. 电子工艺技术,2020,41(6):311-313,332. LIU Xiuli,YUAN Bo,SUN Fenglin. Development of application of 3D printing in intelligent skin antennas [J]. Electronic Technology,2020,41(6):311-313,332. [4] WU H,TIAN Y,LUO H B,et al. Fabrication techniques for curved electronics on arbitrary surfaces[J]. Advanced Materials Technologies,2020,5(8):2000093. [5] YU K,ZHANG W,FENG J,et al. Multi-material printing of 3D heterogeneous structures with embedded microscale conductive features for electromagnetic function[J]. Additive Manufacturing,2025,109:104890. [6] DAHIYA A S,CHRISTOU A,NETO J,et al. In tandem contact-transfer printing for high-performance transient electronics[J]. Advanced Electronic Materials,2022,8(9):2200170. [7] DING Y,XU C Y,ZHANG W Y,et al. Integration of electrohydrodynamic printing and hydroprinting for the cost-effective fabrication of microscale conformal transparent electrodes on diverse curved surfaces[J]. Small,2025,21(12):2410919. [8] PAULSEN J A,RENN M,CHRISTENSON K,et al. Printing conformal electronics on 3D structures with Aerosol Jet technology[C]// 2012 Future of Instrumentation International Workshop (FIIW) Proceedings,2012:1-4. [9] FENG J Q. Mist flow visualization for round jets in aerosol jet printing[J]. Aerosol Science and Technology,2018,53(1):45-52. [10] LI G,WANG S,ZHANG Z W,et al. Precision control of aerosol jet printing for conformal electronics fabrication with ultra-fine and wide-range resolution[J]. Advanced Materials Technologies,2025,10(9):2402114. [11] WILKINSON N J,SMITH M A,KAY R W,et al. A review of aerosol jet printing-a non-traditional hybrid process for micro-manufacturing[J]. International Journal of Advanced Manufacturing Technology,2019,105(11):4599-4619. [12] GOH G L,DIKSHIT V,KONERU R,et al. Fabrication of design-optimized multifunctional safety cage with conformal circuits for drone using hybrid 3D printing technology[J]. International Journal of Advanced Manufacturing Technology,2022,120(3-4):2573-2586. [13] RURUP J D,SECOR E B. Understanding oblique deposition in aerosol jet printing for conformal electronics fabrication[J]. Journal of Manufacturing Processes,2024,120:1231-1240. [14] JIGNASU A,RURUP J D,SECOR E B,et al. Conformal aerosol jet printing using a 3-axis printer[J]. Manufacturing Letters,2023,35:523-528. [15] 朱涛,张远明,宋时雨,等. 气溶胶微喷射曲面共形打印影响因素的仿真分析与实验研究[J]. 精密成形工程,2023,15(11):187-198. ZHU Tao,ZHANG Yuanming,SONG Shiyu,et al Simulation analysis and experimental study on influencing factors of aerosol micro jet surface conformal printing [J]. Precision Forming Engineering,2023,15(11):187-198 [16] HOBBIE H A,DOHERTY J L,SMITH B N,et al. Conformal printed electronics on flexible substrates and inflatable catheters using lathe-based aerosol jet printing[J]. Npj Flexible Electronics,2024,8(1):54. [17] BAO C,KIM T H,HASSANPOOR K A,et al. A 3D-printed neuromorphic humanoid hand for grasping unknown objects[J]. iScience,2022,25(4):104119. [18] BAO C,MOEINNIA H,KIM T H,et al. 3D Structural electronics via multi-directional robot 3D printing[J]. Advanced Materials Technologies,2022,8(5):2201349. [19] BENEVENTI D,GRAZIANO A,FURIA G,et al. Optimization of trajectory processing algorithms to print 3D circuit boards using piezo ink jet and 6-axis robots[J]. Journal of Manufacturing Processes,2023,101:1497-1507. [20] FURIA G,TRICOT F,CHAUSSY D,et al. Use of a 6-axis robot and ink piezo-jetting to print conductive paths on 3D objects. Printed circuit geometry,and conductivity predictive model[J]. CIRP Journal of Manufacturing Science and Technology,2021,35:855-863. [21] 丁泽宇,罗书轩,何瑞博,等. 纳米银导电墨水的制备及其在高精度柔性电路打印中的应用[J]. 稀有金属材料与工程,2023,52(10):3530-3538. DING Zeyu,LUO Shuxuan,HE Ruibo,et al. Preparation of nano silver conductive ink and its application in high-precision flexible circuit printing [J]. Rare Metal Materials and Engineering,2023,52(10):3530-3538. [22] 丁毅,岳峻宇,陈昱桦,等. 微纳电子静电打印:原理、工艺及应用[J]. 电加工与模具,2025(2):1-14. DING Yi,YUE Junyu,CHEN Yuhua,et al. Micro nano electronic electrostatic printing:Principles,processes,and applications [J]. Electrical Processing and Molds,2025(2):1-14. [23] LI J,WANG Y,XIANG G Z,et al. Hybrid additive manufacturing method for selective plating of freeform circuitry on 3D printed plastic structure[J]. Advanced Materials Technologies,2019,4(2):1800529. [24] GANDHIRAMAN R P,SINGH E,DIAZ-CARTAGENA D C,et al. Plasma jet printing for flexible substrates[J]. Applied Physics Letters,2016,108(12):123103. [25] WAŁPUSKI B,SŁOMA M. Additive manufacturing of electronics from silver nanopowders sintered on 3D printed low-temperature substrates[J]. Advanced Engineering Materials,2021,23(4):2001085. [26] ERMAK O,ZENOU M,TOKER G B,et al. Rapid laser sintering of metal nano-particles inks[J]. Nanotechnology,2016,27(38):385201. [27] YU J C,HU C X,WANG Z,et al. Printing three-dimensional refractory metal patterns in ambient air:Toward high temperature sensors[J]. Advanced Science,2023,10(31):2302479. [28] YANG Y P,LI Z,YANG S,et al. Multiscale simulation study of laser sintering of inkjet-printed silver nanoparticle inks[J]. International Journal of Heat and Mass Transfer,2020,159:120110. [29] ZHENG B J D,ZHAO G,YAN Z,et al. Direct freeform laser fabrication of 3D conformable electronics[J]. Advanced Functional Materials,2023,33(1):2210084. [30] LI J X,GU B S,CHANG J K,et al. One-step laser-assisted electrohydrodynamic printing of microelectronic scaffolds for electrophysiological monitoring of aligned cardiomyocytes[J]. Acs Nano,2025,19(16):15775-15788. [31] RAMESH S,MAHAJAN C,GERDES S,et al. Numerical and experimental investigation of aerosol jet printing[J]. Additive Manufacturing,2022,59:103090. [32] JEONG H,LEE J H,KIM S,et al. Optimization of process parameters in micro-scale pneumatic aerosol jet printing for high-yield precise electrodes[J]. Scientific Reports,2023,13(1):21297. [33] 朱涛,张远明,宋时雨,等. 气溶胶微喷射打印柔性电路成形工艺研究[J]. 精密成形工程,2023,15(6):183-192. ZHU Tao,ZHANG Yuanming,SONG Shiyu,et al. Research on the forming process of flexible circuits by aerosol micro jet printing [J]. Precision Forming Engineering,2023,15(6):183-192. [34] CHEN L,LIU P,FENG B,et al. Dry-transferable photoresist enabled reliable conformal patterning for ultrathin flexible electronics[J]. Advanced Materials,2023,35(38):2303513. [35] LIU Z,HUANG J,LI P,et al. High-precision inkjet 3D printing of curved multi-material structures:Morphology evolution and optimization[J]. Additive Manufacturing,2024,94:104497. [36] PENG X,KUANG X,ROACH D J,et al. Integrating digital light processing with direct ink writing for hybrid 3D printing of functional structures and devices[J]. Additive Manufacturing,2021,40:101911. [37] LI H,LI Y,ZHANG G,et al. Directly printing high-resolution,high-performance 3D curved electronics based on locally polarized electric-field-driven vertical jetting[J]. Additive Manufacturing,2024,96:104579. [38] ZHAO Y H,SUN W Y,WANG Q,et al. Effect of beam energy density characteristics on microstructure and mechanical properties of Nickel-based alloys manufactured by laser directed energy deposition[J]. Journal of Materials Processing Technology,2023,319:118074. [39] CRUMP C,GJOKAJ V,WRIGHT B,et al. UV flash sintering of aerosol jet printed silver conductors for microwave circuit applications[J]. IEEE Transactions on Components Packaging and Manufacturing Technology,2021,11(2):342-350. [40] RATNAYAKE D,CURRY A,QU C,et al. Optimizing the conductivity of a new nanoparticle silver ink for aerosol jet printing and demonstrating its use as a strain gauge[J]. IEEE Journal on Flexible Electronics,2023,2(3):248-255. [41] TURAN N,SAEIDI-JAVASH M,CHEN J H,et al. Atmospheric pressure and ambient temperature plasma jet sintering of aerosol jet printed silver nanoparticles[J]. Acs Applied Materials & Interfaces,2021,13(39):47244-47251. [42] MOSA M A,JO J Y,KWON K S. Enhanced aerosol jet printing:Leveraging jet visualization for increased stand-off distances[J]. Journal of Manufacturing Processes,2024,131:694-706. [43] GUYLL B I,PETERSEN L D,PINT C L,et al. Enhanced resolution,throughput,and stability of aerosol jet printing via in line heating[J]. Advanced Functional Materials,2024,34(28):2316426. [44] CHEN I M,LIU Y T,YU X W,et al. Aerosol printing and flash sintering of conformal conductors on 3D nonplanar surfaces[J]. Manufacturing Letters,2022,31:119-123. [45] SKYLAR-SCOTT M A,GUNASEKARAN S,LEWIS J A. Laser-assisted direct ink writing of planar and 3D metal architectures[J]. Proceedings of the National Academy of Sciences of the United States of America,2016,113(22):6137-6142. [46] ZHANG G M,YU Z H,SONG D S,et al. Directly printed standing ceramic circuit boards for rapid prototyping of miniaturization and high-power of electronics[J]. Nature Communications,2025,16(1):5258. [47] WANG H Y,YE D,LI A K,et al. Self-driven,monopolar electrohydrodynamic printing via dielectric nanoparticle layer[J]. Nano Letters,2024,24(31):9511-9519. [48] 范琳,陈建升,胡爱军,等. 高性能聚酰亚胺材料的研究进展[J]. 材料工程,2007(S1):160-163. FAN Lin,CHEN Jiansheng,HU Aijun,et al. Research progress on high-performance polyimide materials [J]. Materials Engineering,2007(S1):160-163 [49] SONG J F,ZHU Y,TONG K,et al. A note on the optic characteristics of daylighting system via PMMA fibers[J]. Solar Energy,2016,136:32-34. [50] BARKHAD M S,ABU-JDAYIL B,MOURAD A H I,et al. Thermal insulation and mechanical properties of polylactic acid (PLA) at different processing conditions[J]. Polymers,2020,12(9):2091. [51] 邓丽君,宣文韬,钟博,等. 涡轮叶片表面温度场及综合冷却效果试验研究[J]. 南京航空航天大学学报,2021,53(3):442-448. DENG Lijun,XUAN Wentao,ZHONG Bo,et al. Experimental study on surface temperature field and comprehensive cooling effect of turbine blades [J]. Journal of Nanjing University of Aeronautics and Astronautics,2021,53(3):442-448. [52] 王婧,廉一龙,韩秀峰,等. 航空发动机用聚酰亚胺复合材料研究与应用[J]. 航空制造技术,2017(15):85-91. WANG Jing,LIAN Yilong,HAN Xiufeng,et al. Research and application of polyimide composite materials for aircraft engines[J]. Aerospace Manufacturing Technology,2017(15):85-91.