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Publication search results
found 95 matches
- 2024
- Hossein R. Najafabadi, Bruno M. Verona, Tiago G. Goto, Thiago C. Martins, Ahmad Barari, Marcos de Sales Guerra Tsuzuki:
Precision refined: Integrating micromachining constraints for enhanced product accuracy through topology optimization. Expert Syst. Appl. 254: 124247 (2024) - Zhen Zhang, Zenan Yang, Chenchong Wang, Wei Xu:
Accelerating ultrashort pulse laser micromachining process comprehensive optimization using a machine learning cycle design strategy integrated with a physical model. J. Intell. Manuf. 35(1): 449-465 (2024) - 2023
- Akshay Saxena, Partha Sarathi Mallick, Karali Patra:
Fabrication and characterization of wearable sensing system using mechanical micromachining process. AIR 2023: 17:1-17:5 - Anila Puthoor, Megha Agrawal, Varshini K. M., Koushik K. Rao:
Enhancement of Glass micromachining using selective copper electroplating. ICST 2023: 1-5 - 2022
- Vinay Shankar, Ryunosuke Matsuo, Minato Onishi, Daisuke Ishihara:
2.5-dimensional insect-mimetic wing model for flapping wing nano air vehicles and design window search for manufacturable solutions using polymer micromachining. NEMS 2022: 306-311 - Anjali V. Kulkarni:
On the Simulation of Electrochemistry Aspect of Electrochemical Spark Micromachining Process. SIMULTECH 2022: 172-177 - 2021
- Reza Aulia Rahman, Tsutomu Uenohara, Yasuhiro Mizutani, Yasuhiro Takaya:
First Step Toward Laser Micromachining Realization by Photonic Nanojet in Water Medium. Int. J. Autom. Technol. 15(4): 492-502 (2021) - 2020
- Jianguo Lei, Bin Xu, Likuan Zhu:
Experimental Study on the Fabrication of 3D Microelectrodes for Electrochemical Micromachining. IEEE Access 8: 97056-97063 (2020) - Zeyad Yousif Abdoon Al-Shibaany, Pavel Penchev, John Hedley, Stefan S. Dimov:
Laser Micromachining of Lithium Niobate-Based Resonant Sensors towards Medical Devices Applications. Sensors 20(8): 2206 (2020) - Sara Mingu, Ihor Pavlov, Çagdas Devrim Son, Alpan Bek:
The Behaviour of Neuro-2A Cells on Silicon Substrates with Various Topographies Generated by Femtosecond Laser Micromachining. BIOIMAGING 2020: 192-199 - Ziqiang Qu, Huafeng Liu, Hao Ouyang, Chenyuan Hu, Liang Cheng Tu:
A High-sensitivity Optical MEMS Accelerometer based on SOI Double-side Micromachining. IEEE SENSORS 2020: 1-4 - 2019
- Jian Qiao, Qinghua Lu, Wenbao Zhang, Xiangyao Xue:
The research about micromachining accuracy control based on fuzzy evaluation algorithm. Concurr. Comput. Pract. Exp. 31(10) (2019) - Anurag Mahajan, Sagil James:
Analytical modelling and experimental study of machining of smart materials using submerged abrasive waterjet micromachining process. Int. J. Manuf. Res. 14(3): 278-294 (2019) - Benito Granados-Rojas, Mario Alfredo Reyes-Barranca, Luis Martín Flores-Nava, Griselda Stephany Abarca-Jimenez, Miguel Ángel Aleman-Arce, Yesenia Eleonor González-Navarro:
Composition of Metal Layers in CMOS-MEMS Micromachining Process. CCE 2019: 1-4 - Yang Lu, Chien-Hsing Chen, Chao-Tsung Ma, Cheng-Ling Lee:
A Hollow Core Fiber Fabry-Perot Interferometer Micromachining by Femtosecond Laser. OECC/PSC 2019: 1-3 - Niharika Mirji, Swetlana Mishra, Debashis Maji:
PDMS micromachining for flexible 3D microdevice realization using Kapton Tape as hard mask. TENCON 2019: 57-61 - 2018
- S. P. Leo Kumar:
Automation of tool path generation in multi-process micromachine tool for micromachining of prismatic and rotational parts. Int. J. Comput. Integr. Manuf. 31(1): 49-70 (2018) - Xichun Luo:
Hybrid micromachining - a paradigm shift in micromanufacturing. ICAC 2018: 1 - 2017
- Wang Xin, Binzhen Zhang, Junlin Wang, Junping Duan:
100 GHz waveguide band-pass filter employing UV-LIGA micromachining process. Microelectron. J. 69: 101-105 (2017) - N. Scott Barker, Matthew F. Bauwens, Arthur W. Lichtenberger, Robert M. Weikle:
Silicon-on-Insulator Substrates as a Micromachining Platform for Advanced Terahertz Circuits. Proc. IEEE 105(6): 1105-1120 (2017) - Roberta Ramponi:
Femtosecond laser micromachining: An enabling tool for quantum technologies. ICTON 2017: 1 - 2016
- Shaolin Xu, Shinsaku Osawa, Ryuichi Kobayashi, Keita Shimada, Masayoshi Mizutani, Tsunemoto Kuriyagawa:
Minimizing Burrs and Defects on Microstructures with Laser Assisted Micromachining Technology. Int. J. Autom. Technol. 10(6): 891-898 (2016) - Won-Young Uhm, Tae-Jong Beak, Keun-Kwan Ryu, Sung-Chan Kim:
Reduced Hybrid Ring Coupler Using Surface Micromachining Technology for 94-GHz MMIC Applications. J. Inform. and Commun. Convergence Engineering 14(4) (2016) - Binh Xuan Cao, Munju Bae, Hyonkee Sohn, Jiyeon Choi, Youngduk Kim, Jeng-o Kim, Jiwhan Noh:
Design and Performance of a Focus-Detection System for Use in Laser Micromachining. Micromachines 7(1): 2 (2016) - Nguyen Van Toan, Masaya Toda, Takahito Ono:
An Investigation of Processes for Glass Micromachining. Micromachines 7(3): 51 (2016) - 2015
- Zhen Yu, Quanjie Gao, Ding-Fang Chen:
Study on mathematical model of cutting force in micromachining. Int. J. Model. Simul. Sci. Comput. 6(4): 1550039:1-1550039:20 (2015) - Daniel Teixidor, Maciej Grzenda, Andrés Bustillo, Joaquim Ciurana:
Modeling pulsed laser micromachining of micro geometries using machine-learning techniques. J. Intell. Manuf. 26(4): 801-814 (2015) - Ilya Alexeev, Johannes Heberle, Kristian Cvecek, Konstantin Yu. Nagulin, Michael Schmidt:
High Speed Pump-Probe Apparatus for Observation of Transitional Effects in Ultrafast Laser Micromachining Processes. Micromachines 6(12): 1914-1922 (2015) - Simas Butkus, Aleksandr Alesenkov, Domas Paipulas, Eugenijus Gaizauskas, Andrius Melninkaitis, Dalia Kaskelyte, Martynas Barkauskas, Valdas Sirutkaitis:
Analysis of the Micromachining Process of Dielectric and Metallic Substrates Immersed in Water with Femtosecond Pulses. Micromachines 6(12): 2010-2022 (2015) - Lamia E. L. Fissi, Victor Xhurdebise, Laurent A. Francis:
Effects of Laser Operating Parameters on Piezoelectric Substrates Micromachining with Picosecond Laser. Micromachines 6(1): 19-31 (2015)
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