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Advanced Manufacturing and Social Integration Research Core
Advanced Manufacturing and Social Integration Research Core
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Prof. Chiaki SATO |
| Room |
G2 |
Mail-Box |
G2-20 |
| TEL |
045-924-5062 |
| E-mail |
sato.c(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
https://www.adhesion.first.iir.isct.ac.jp/ |
| Research Field |
Adhesion technology, Solid mechanics |
| Objective |
Development and implementation of adhesion technology |
| Current Topics |
- Adhesion for car structures
- Adhesion for aircraft and maritime structures
- Adhesion of plastics
- Adhesion for electronics
- Adhesion for everything
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Direct bonding of FRTP and metal
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Prof. Tadahiko SHINSHI |
| Room |
R2 |
Mail-Box |
R2-38 |
| TEL |
045-924-5095 |
| E-mail |
shinshi.t.ab(at)m.titech.ac.jp Please replace “(at)” with “@”. |
| HomePage |
https://www.precisionmechatronics.mech.e.titech.ac.jp/ |
| Research Field |
Mechanical devices and systems using magnetic force |
| Objective |
Realization of novel mechanical devices and systems using magnetic force |
| Current Topics |
- Artificial heart with bearingless motor integrating magnetic bearings and motor
- MEMS actuators and energy harvesters using micro permanent magnets
- High-response, high-torque, multi-degree-of-freedom actuators for industrial applications
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| Centrifugal blood pump using bearingless slice motor |
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| Ultra-high response steering mirrors for laser scanning |
2-DOF MEMS linear motor |
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Assoc. Prof. Yu SEKIGUCHI |
| Room |
R2 |
Mail-Box |
R2-31 |
| TEL |
045-924-5012 |
| E-mail |
sekiguchi.y(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
https://www.adhesion.first.iir.isct.ac.jp/ |
| Research Field |
mechanics of materials, fracture mechanics, surface/interface |
| Objective |
mechanical evaluation and durability/reliability improvement of adhesive joints |
| Current Topics |
- crack propagation of adhesively bonded joints (impact, creep, fatigue, environmental, etc)
- peeling of adhesive tapes
- adhesion phenomena in contact mechanics
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Bio-inspired adhesive devices
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Directional diperdency of adhesion force |
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Assoc. Prof. Kotaro TADANO |
| Room |
R2 |
Mail-Box |
R2-46 |
| TEL |
045-924-5032 |
| E-mail |
tadano.k.4245(at)m.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
http://www.k-k.pi.titech.ac.jp/ |
| Research Field |
Robotics, Human-Machine Systems |
| Objective |
Realization of Advanced Human Support Systems |
| Current Topics |
- Surgical Robot Systems
- Teleoperation Systems
- Pneumatic Driven Systems
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Master-Slave System with Force-Sensing Abilities using Pneumatic Actuators for Laparoscopic Surgery |
Master-Slave Manipulator for Reconstructive Surgery |

Pneumatic laparoscope holder controlled by head movement |

Robotic Holder for Ophthalmic Endoscope |
| Surgical robot systems being studied |
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Assoc. Prof. Yuki HIRATA |
| Room |
R2 |
Mail-Box |
R2-37 |
| TEL |
045-924-5105 |
| E-mail |
hirata.y.0575(at)m.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
https://www.mpsl.first.iir.isct.ac.jp/ |
| Research Field |
Surface Engineering, Nanomaterials, Bioengineering, Plasma Engineering, Tribology |
| Objective |
Development of innovative devices for medical applications based on materials science |
| Current Topics |
- Synthesis of graphene-hBN based multi-heterostructure and the development of its applications
- Development of 3-Dimensional DLC film coating technique
- Development of environmentally friendly superlubrication technology
- Elucidation of thin film growth mechanisms through machine learning simulations
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Connecting nanomaterials for next-generation nanodevice potential

An oscillating bubble cluster in a stationary sound field
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Asst. Prof. Ruixi ZHANG |
| Room |
R2 |
Mail-Box |
R2-37 |
| TEL |
045-924-5099 |
| E-mail |
ruixi.zhang(at)first.iir.isct.ac.jp Please replace “(at)” with “@”. |
| HomePage |
https://www.mpsl.first.iir.isct.ac.jp/ |
| Current Topics |
- Preparation of Element-doped Hard Carboneous (Diamond-like Carbon, DLC) Coatings and Their Tribological Properties
- Synthesis and Structural Characterization of One-Dimensional Heteronanotubes
- Improvement of Oxidation Resistance for DLC coating & Related Development of Surface Modification Techniques
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