top of page
1720162435266.jpg

2023-24 season member

staff

Professor: Yukio Tada

Affiliation: Department of Science and Engineering, Department of Mechanical Engineering

Specialty: Thermal engineering, Heat transfer engineering, Thermal energy conversion, Control of micro-solidification

Professor: Masashi Haruki

Affiliation: Department of Science and Engineering, Department of Mechanical Engineering

Specialty: Thermal engineering, Control of thermal and electrical properties of polymer materials, Chemical engineering properties, Unit operations

thumbnail_多田_edited.jpg
yw0lz2b5.png

Students

M2/Keito Izumitani

Evaluation of heat dissipation characteristics of yttrium sulfate chemical heat storage material

M2/Kyoka Sakamoto

High-quality food thawing using high-frequency ultrasound

M2/Wang Shuoyang

Effect of magnetic field on the dispersion state of highly thermally conductive fillers in polymer solutions

M2/Masaki Yokomachi

Research on Frost Reduction Using Adsorbent-Applied Heat Exchangers

M1/Hayachika Iza

Changes in thermal conductivity and mechanical properties of hexagonal boron nitride/polyimide composite sheets by adding carbon nanofibers

M1/Kazuma Sugiura

Development of an energy harvesting system combining latent heat storage and thermoelectric power generation

M1/Naohiro Sugimoto

Improving the mechanical properties of lanthanum sulfate/thermally expanded graphite chemical heat storage material by silica coating

M1/YiQing Zhao

Thermal conductivity and heat storage/release behaviors of rare-earth chemical heat storage materials

B4/Rikuto Endo

Preparation of carbon nanofibers by electrspinning method

B4/Rihito Tanii

Thermal conductivity of rare-earth types of chemical heat storage materials

B4/Mizuki Tomita

Effects of alternating magnetic and electric fields on the freezing of tissue cells

B4/Haruna Mizumaki

Thermal conductivity and mechanical properties of hexagonal boron nitride + carbon nanofiber/polyimide composite sheets

M2/Koki Kawai

High performance thermoacoustic engine using gas-liquid phase change

M2/Yasushi Hanai

Improving thermal conductivity of graphite/polyimide composite sheets by treatment with a direct current electric field

M2/GE WENQIAN

Research on Performance Improvement of Heat Pump Systems Using Blade-Tube Heat Exchangers

M1/Aoto Ikeda

Increasing the thermal conductivity of polyimide sheets by using a mixed filler of carbon nanofiber and graphite

M1/Kotaro Osaka

Improvement of performance of thermoacoustic engine using multi-stage heat storage

M1/Taisei Sugimoto

Improving the performance of thermoacoustic refrigerators by improving the stack structure

M1/Hiroto Tomomori

Fundamental study on measurement of thermal conductivity of fluids using unsteady hot wire method

M1/Yuzuki Hayashi

Control of electrical properties of highly thermally conductive polymer composite sheets

B4/Naohiro Takahashi

Preparation of highly thermally conductive polyimide composite sheets by dynamic magnetic field treatment

B4/Eimu Tuchida

High-quality food thawing using high-frequency ultrasound

B4/Ryoto Nakai

Enhancement of supercooling using alternating magnetic and electric fields

B4/Yuki Miyazawa

High performance thermoacoustic engine using gas-liquid phase change

bottom of page