[1] YAO Y F, LU SH ZH, LIU Y X, et al.. Research on automated micro-liquid dispensing technology[J]. Journal of Mechanical Engineering, 2013, 49(14): 140-153.(in Chinese)
[3] KUNCHALA P, KAPPAGANTULA K. 3D printing high density ceramics using binder jetting with nanoparticle densifiers[J]. Materials & Design, 2018, 155: 443-450.
[4] SUN D H, GAO J CH, DU J, et al.. Advances in fluid dispensing technology for micro-electronics packaging[J]. China Mechanical Engineering, 2011, 22(20): 2513-2519.(in Chinese)
[5] YAO Y F, LU SH ZH, LIU Y X, et al.. Research on automated micro-liquid dispensing technology[J]. Journal of Mechanical Engineering, 2013, 49(14): 140-153.(in Chinese)
[7] KHAN S, NGUYEN T P, LUBEJ M, et al.. Low-power printed micro-hotplates through aerosol jetting of gold on thin polyimide membranes[J]. Microelectronic Engineering, 2018, 194: 71-78.
[8] NGUYEN Q H, HAN Y M, CHOI S B, et al.. Dynamic characteristics of a new jetting dispenser driven by piezostack actuator[J]. IEEE Transactions on Electronics Packaging Manufacturing, 2008, 31(3): 248-259.
[9] LU S, JIANG H, GU SH D, et al.. Experiment and design for the hydraumatic and piezoelectric driven jet dispensing value[J]. Journal of Sichuan University(Engineering Science Edition), 2015, 47(3): 167-173.(in Chinese)
[11] DENG G L, CUI W J, ZHOU C, et al.. A piezoelectric jetting dispenser with a pin joint[J]. Optik, 2018, 175: 163-171.
[12] MITCHELL-SMITH J, SPEIDEL A, BISTEROV I, et al.. Electrolyte multiplexing in electrochemical jet processing[J]. Procedia CIRP, 2018, 68: 483-487.
[13] YU Y Q, LI Q Q. On the design, manufacturing and experiment of a new type flexural joint[J]. Journal of Mechanical Engineering, 2018, 54(13): 79-85.(in Chinese)