Droplet-on-demand metal additive manufacturing using a magnetostrictive actuator
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[1] Hongcheng Lian,et al. Drop-on-demand printing of recyclable circuits by partially embedding molten metal droplets in plastic substrates , 2021 .
[2] E. Papazoglou,et al. On the Modeling and Simulation of SLM and SLS for Metal and Polymer Powders: A Review , 2021, Archives of Computational Methods in Engineering.
[3] R. Ramanujam,et al. Development of Biomedical Implants through Additive Manufacturing: A Review , 2021, Journal of Materials Engineering and Performance.
[4] Alexander Rassau,et al. Advances in Metal Additive Manufacturing: A Review of Common Processes, Industrial Applications, and Current Challenges , 2021, Applied Sciences.
[5] Callie E. Zawaski,et al. Design of a low-cost, high-temperature inverted build environment to enable desktop-scale additive manufacturing of performance polymers , 2020 .
[6] Wan-Sik Woo,et al. Laser-Assisted Machining of Ti-6Al-4V Fabricated by DED Additive Manufacturing , 2020, International Journal of Precision Engineering and Manufacturing-Green Technology.
[7] Fahimeh Dini,et al. A review of binder jet process parameters; powder, binder, printing and sintering condition , 2020 .
[8] C. Heinzel,et al. Reproducibility of High-Throughput Sample Properties Produced by a High-Temperature Molten Metal Droplet Generator , 2020, Metals.
[9] O. Salomons,et al. Towards digital metal additive manufacturing via high-temperature drop-on-demand jetting , 2019, Additive Manufacturing.
[10] Shahir Mohd Yusuf,et al. Review: The Impact of Metal Additive Manufacturing on the Aerospace Industry , 2019 .
[11] S. Pasebani,et al. A Review on Binder Jet Additive Manufacturing of 316L Stainless Steel , 2019, Journal of Manufacturing and Materials Processing.
[12] S. Biamino,et al. Application of Directed Energy Deposition-Based Additive Manufacturing in Repair , 2019, Applied Sciences.
[13] M. Arora,et al. Induction Heating Based 3D Metal Printing of Eutectic Alloy Using Vibrating Nozzle , 2019, AHFE.
[14] L. Mädler,et al. A High Temperature Drop-On-Demand Droplet Generator for Metallic Melts , 2019, Micromachines.
[15] Oluwadamilola O. Taiwo,et al. Multi-metal 4D printing with a desktop electrochemical 3D printer , 2019, Scientific Reports.
[16] Andres L. Carrano,et al. Comparison of Stainless Steel 316L Parts Made by FDM- and SLM-Based Additive Manufacturing Processes , 2018, JOM.
[17] Mostafa Yakout,et al. A Review of Metal Additive Manufacturing Technologies , 2018, Solid State Phenomena.
[18] E. Furlani,et al. Magnetohydrodynamic Drop-on-Demand Liquid Metal Additive Manufacturing: System Overview and Modelling , 2018, Proceedings of the 5th International Conference of Fluid Flow, Heat and Mass Transfer (FFHMT'18).
[19] Yulin Hao,et al. Additive Manufacturing of Titanium Alloys by Electron Beam Melting: A Review , 2018 .
[20] W. Xiong,et al. Formation of uniform metal traces using alternate droplet printing , 2017 .
[21] Jun Luo,et al. Direct fabrication of unsupported inclined aluminum pillars based on uniform micro droplets deposition , 2017 .
[22] F. Romeiro,et al. Additive manufacturing tooling for the automotive industry , 2017 .
[23] Zhiwei Luo,et al. Drop-on-demand electromagnetic printing of metallic droplets , 2017 .
[24] Lehua Qi,et al. Impact-driven ejection of micro metal droplets on-demand , 2016 .
[25] Mohsen Seifi,et al. Metal Additive Manufacturing: A Review of Mechanical Properties , 2016 .
[26] Yusheng Shi,et al. Differences in microstructure and properties between selective laser melting and traditional manufacturing for fabrication of metal parts: A review , 2015, Frontiers of Mechanical Engineering.
[27] Hejun Li,et al. Effect of process parameters on copper droplet ejecting by pneumatic drop-on-demand technology , 2014 .
[28] Hyun Wook Kang,et al. Breakup behavior of a molten metal jet , 2014 .
[29] Hejun Li,et al. Remelting and bonding of deposited aluminum alloy droplets under different droplet and substrate temperatures in metal droplet deposition manufacture , 2013 .
[30] Lehua Qi,et al. 3D numerical simulation of successive deposition of uniform molten Al droplets on a moving substrate and experimental validation , 2012 .
[31] Jiming Zhou,et al. Printing solder droplets for micro devices packages using pneumatic drop-on-demand (DOD) technique , 2012 .
[32] Kwang-Young Kim,et al. Drop-on-Demand Solder Droplet Jetting System for Fabricating Microstructure , 2008, IEEE Transactions on Electronics Packaging Manufacturing.
[33] Qingbin Liu,et al. High precision solder droplet printing technology and the state-of-the-art , 2001 .
[34] W. Yeong,et al. 3D printing of metals in rapid prototyping of biomaterials: Techniques in additive manufacturing , 2020 .
[35] Glen Bright,et al. A Study on State of the Art Technology of Laminated Object Manufacturing (LOM) , 2016 .