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 Conference Papers (Available on Advance Programs)  (Sort by: Date Descending)
 Results 1 - 20 of 25  /  [Next]  
Committee Date Time Place Paper Title / Authors Abstract Paper #
US 2022-07-29
16:00
Fukuoka Kyushu Univ. (Chikushi Campus) Measurement of mechanical properties of liquid droplet on substrate by oscillation analysis
Satoshi Ishida, Mika Iga (Nippon Paint Corporate Solutions), Shujiro Mitani, Keiji Sakai (Univ. Tokyo) US2022-27
 [more] US2022-27
pp.36-39
US 2022-07-29
16:25
Fukuoka Kyushu Univ. (Chikushi Campus) Fabrication of picoliter droplet of non-Newtonian viscous liquid
Shujiro Mitani (Univ. Tokyo), Satoshi Ishida (Nippon Paint Corporate Solutions), Keiji Sakai (Univ. Tokyo) US2022-28
A novel device for fabricating picoliter droplets has been developed that can be made highly viscous liquids into drople... [more] US2022-28
pp.40-43
US 2020-07-31
13:00
Online Online High-accuracy measurement of viscosity of alcohol beverages at low-shear rates by EMS rheometer
Taichi Hirano, Shujiro Mitani, Keiji Sakai (UTokyo) US2020-13
 [more] US2020-13
pp.1-4
US 2020-07-31
13:50
Online Online Modelings of microdroplets penetration into substrates
Ryohsuke Yokota, Taichi Hirano, Shujiro Mitani, Keiji Sakai (IIS) US2020-15
 [more] US2020-15
pp.11-15
EA, US
(Joint)
2020-01-22
16:15
Kyoto Doshisha Univ. Application of micro-gel beads generated by inkjet system for mimic bio-material
Shujiro Mitani, Taichi Hirano, Keiji Sakai (IIS, Univ.of Tokyo) US2019-90
Using a inkjet system, it is possible to generate microdroplets with uniform size, ~ 30 µm in diameter, and uniform shap... [more] US2019-90
pp.107-112
EA, US
(Joint)
2019-01-23
10:00
Kyoto Doshisha Univ. Fluidity measurement with EMS rheometer of micro-gel dispersions generated by original microdroplet technique
Taichi Hirano, Shujiro Mitani, Keiji Sakai (UTokyo) US2018-101
The Electro-Magnetically Spinning (EMS) method is an innovative and unique technique for measuring viscosity of fluids. ... [more] US2018-101
pp.107-110
US 2018-07-31
10:40
Kyoto   Observation of fast wetting of inkjet droplets on substrate
Ryohsuke Yokota, Taichi Hirano, Shujiro Mitani, Keiji Sakai (UTokyo) US2018-30
 [more] US2018-30
pp.1-4
US 2018-07-31
11:05
Kyoto   Measurement of liquid properties with high time resolution by inkjet system
Natsuki Yamaoka, Ryohsuke Yokota, Taichi Hirano, Shujiro Mitani, Keiji Sakai (UTokyo) US2018-31
Observation and measurement of parameters, which are determined with surface and interfacial physical properties of liqu... [more] US2018-31
pp.5-9
US, EA
(Joint)
2018-01-24
10:30
Osaka   Solvent viscosity dependence of dynamic surface tension
Ryo Asai, Ryohsuke Yokota, Taichi Hirano, Shujiro Mitani, Keiji Sakai (UTokyo) US2017-103
 [more] US2017-103
pp.115-118
US, EA
(Joint)
2018-01-24
10:55
Osaka   Measurement of dynamic interfacial tension by shape analysis of flying droplets
Natsuki Yamaoka, Ryohsuke Yokota, Ryo Asai, Taichi Hirano, Shujiro Mitani, Keiji Sakai (UTokyo) US2017-104
We developed a method for simultaneous measurement of dynamic surface and interfacial tension in the time range from hun... [more] US2017-104
pp.119-123
US 2017-07-27
10:10
Okayama   Molecular adsorption process of surfactant aqueous solution
Ryo Asai, Ryohsuke Yokota, Daichi Hayakawa, Shujiro Mitani, Keiji Sakai (Univ. of Tokyo) US2017-32
 [more] US2017-32
pp.11-15
EA, US
(Joint)
2017-01-26
14:05
Kyoto Doshisha Univ. Surface dynamics in collision of microdroplets fully covered with surfactant
Ryohsuke Yokota, Ryo Asai, Daichi Hayakawa, Shujiro Mitani, Keiji Sakai (UTokyo) US2016-115
When two flying microdroplets collide to each other, dynamic liquid process such as fusion or fabrication of capsule str... [more] US2016-115
pp.215-218
EA, US
(Joint)
2017-01-26
14:30
Kyoto Doshisha Univ. Wide time range measurement of dynamic surface tension with inkjet system
Ryo Asai, Ryohsuke Yokota, Daichi Hayakawa, Shujiro Mitani, Keiji Sakai (The Univ. of Tokyo) US2016-116
 [more] US2016-116
pp.219-222
US 2016-07-29
14:20
Fukuoka Chikushi Campus, Kyushu University A new method for accurate size measurement of microdroplets by light scattering and its applications
Daichi Hayakawa, Yusuke Matsuura, Shujiro Mitani, Keiji Sakai (Univ. of Tokyo) US2016-32
The physical characteristics of airborne microdroplets generated by inkjet system are peculiar in that they are small ye... [more] US2016-32
pp.7-10
US 2016-07-29
16:35
Fukuoka Chikushi Campus, Kyushu University Development and application of new type viscometer
Shujiro Mitani, Miki Hirano, Taichi Hirano, Keiji Sakai (UTokyo) US2016-37
The Electro-Magnetically Spinning (EMS) method is a novel technique for measuring shear viscosity of liquid. Typical typ... [more] US2016-37
pp.27-29
US, EA
(Joint)
2016-01-28
13:25
Osaka Kansai University, Centenary Memorial Hall Observation of Light Scattering Pattern of Airborne Microdroplets
Daichi Hayakawa, Toko Hamaguchi, Yuji Shimokawa, Shujiro Mitani, Keiji Sakai (UTokyo) US2015-84
A concise, prompt, and accurate method for measuring the size of airborne microdroplets has been distinguished. A drople... [more] US2015-84
pp.7-11
US, EA
(Joint)
2015-01-28
13:25
Kyoto Doshisha Univ. Measurement of Dynamic Surface Tension with Observation of Oscillation of Flying Micro-droplets
Touko Hamaguchi, Yuji Shimokawa, Shujiro Mitani, Keiji Sakai (Univ. of Tokyo) US2014-75
In the printing system, a droplet impacts onto the substrate within time shorter than 1 ms after the emission. Adsorptio... [more] US2014-75
pp.5-7
US 2014-07-11
14:00
Tokyo Kyoto Electronics, Tokyo sales Office Ripplon Spectroscopic Study on Thermally Non-equilibrium Liquid Surface
Toshiyuki Koga, Shujiro Mitani, Keiji Sakai (Univ. of Tokyo) US2014-27
 [more] US2014-27
pp.9-13
US 2013-11-12
10:00
Ishikawa Kanazawa Inst. Tech. Measurement of Physical Property of Droplet by Analysis of Forced Oscillation
Tomoki Ishiwata, Shujiro Mitani, Keiji Sakai (Univ. of Tokyo) US2013-63
 [more] US2013-63
pp.53-56
US 2013-07-30
10:40
Fukuoka Chikushi Campus, Kyushu University Measurement of liquid properties with high surface tension and high viscosity
Shujiro Mitani, Keiji Sakai (Univ. of Tokyo) US2013-35
 [more] US2013-35
pp.73-76
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