Rchr
J-GLOBAL ID:202001018706999291   Update date: Jun. 19, 2024

Deqing Kong

コウ トクキョウ | Deqing Kong
Affiliation and department:
Homepage URL  (1): http://www3.muroran-it.ac.jp/asken/index.html
Research field  (2): Electrical power engineering ,  Mechanics and mechatronics
Research keywords  (4): 非線形音響 ,  圧電 ,  メディカルマイクロロボット ,  超音波
Research theme for competitive and other funds  (8):
  • 2021 - 2025 Development of hybrid ultrasonic levitation system for 6-DOF acrobatic manupilation
  • 2022 - 2023 サファイア弾性表面波アクチュエータによる高耐久性高精度位置決めリニアガイドシステム
  • 2020 - 2023 Ultrasonic Self-propelled Vascular Robot Propulsion System
  • 2022 - 2023 官民による若手研究者発掘支援事業/マッチングサポートフェーズ/超音波推進力による液中自走式ロボット
  • 2021 - 2022 2021年度 弾性表面波霧化による呼吸器投薬スプレーノズル 補助事業
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Papers (48):
  • Kaito Murai, Deqing Kong, Hideki Tamura, Manabu Aoyagi. Hollow cylindrical linear stator vibrator using a traveling wave of longitudinal axisymmetric vibration mode. Ultrasonics. 2023
  • Laixin Huang, Juan Zhou, Deqing Kong, Fei Li. Phononic-Crystal-Based Particle Sieving in Continuous Flow: Numerical Simulations. Micromachines. 2022
  • Kohei Aono, Deqing Kong, Hiroki Matsumoto, Manabu Aoyagi. Observation of jet emitted from through-hole in cylinder placed near vibrating surface. Symp. Ultrasonic Electronics. 2022
  • Ryo Tanimura, Deqing Kong, Minoru Kuribayashi Kurosawa, Manabu Aoyagi. Characteristics of surface acoustic wave propulsion system at 10 MHz. Symp. Ultrasonic Electronics. 2022
  • Takumi Hirata, Deqing Kong, Fei Li, Minoru Kurosawa, Manabu Aoyagi. Acoustic Underwater Propulsion System via a 36° Y-cut LN Thickness- vibration-mode Transduce. Symp. Ultrasonic Electronics. 2022
more...
MISC (1):
  • 孔 徳卿, 西尾 一輝, 宮岡 洋平, 黒澤 実. Study on self-propelled underwater propulsion system using ultrasonics. 超音波テクノ. 2020. 32. 4. 13-17
Patents (1):
  • 液中推進装置
Lectures and oral presentations  (74):
  • Performance test and backward motion suppression of a walking type piezoelectric actuator
    (The 19th International Conference on Precision Engineering)
  • Observation of jet emitted from through-hole in cylinder placed near vibrating surface
    (Symp. Ultrasonic Electronics)
  • Characteristics of surface acoustic wave propulsion system at 10 MHz
    (Symp. Ultrasonic Electronics)
  • Underwater Characteristics of a Lead-free BNBT15-BNM Transducer
    (Symp. Ultrasonic Electronics)
  • Acoustic Underwater Propulsion System via a 36° Y-cut LN Thickness- vibration-mode Transduce
    (Symp. Ultrasonic Electronics)
more...
Education (1):
  • - 2018 Tokyo Institute of Technology Graduate School, Division of Integrated Science and Engineering 物理情報システム
Professional career (1):
  • 博士(工学) (東京工業大学)
Association Membership(s) (4):
精密工学会 ,  音響学会 ,  超音波医学会 ,  IEEE
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