A Compact Microwave-Driven UV Lamp for Dental Light Curing

被引:0
|
作者
Liu, Siyuan [1 ]
Huang, Yuqing [1 ]
Guo, Qinggong [1 ]
机构
[1] Sichuan Univ, Coll Elect & Informat Engn, Chengdu 610065, Peoples R China
关键词
dental light curing; microwave-driven UV lamp; miniaturization; Drude mode; PLASMA;
D O I
10.3390/pr11092651
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The size of current microwave-driven UV lamps limits their direct application in dental light curing. This article proposes a coaxial structure to miniaturize the UV lamp. First, the Drude model and the finite difference time domain algorithm were used to analyze the multi-physical field coupling and the complex field distribution within the lamp. Second, the dimensional parameters of the lamp were optimized, which enabled the lamp to be miniaturized and operate with high performance. Third, to analyze the sensitivity of the lamp, the effects of input power, gas pressure, and gas composition on its performance were investigated. It was found that an input power of 6 watts was enough to light the bulb with over 90% energy utilization. Finally, to verify the feasibility, an experimental system was set up. The lamp was successfully lit in the experiment, and its spectral output was tested. The results show that the microwave-driven UV lamp based on a coaxial structure is miniaturized and broad-spectrum, making it suitable for clinical dental light curing.
引用
收藏
页数:15
相关论文
共 50 条
  • [31] Nonlinear impedance of a microwave-driven Josephson junction with noise
    Coffey, WT
    Déjardin, JL
    Kalmykov, YP
    PHYSICAL REVIEW B, 2000, 62 (05): : 3480 - 3487
  • [32] Application of microwave-driven chemistry to chemical syntheses and detoxification
    Wada, Yuji
    Nihon Enerugi Gakkaishi/Journal of the Japan Institute of Energy, 2005, 84 (06): : 480 - 485
  • [33] Microwave-driven inductively coupled plasmas for analytical spectroscopy
    Giersz, J.
    Jankowski, K.
    Ramsza, A.
    Reszke, E.
    SPECTROCHIMICA ACTA PART B-ATOMIC SPECTROSCOPY, 2018, 147 : 51 - 58
  • [34] Temporal and spatial evolution of nanosecond microwave-driven plasma
    Chang, C.
    Chen, X. Q.
    Zhu, M.
    Pu, Y. K.
    PHYSICS OF PLASMAS, 2018, 25 (06)
  • [35] Continuous measurement of a microwave-driven solid state qubit
    Barrett, SD
    Stace, TM
    PHYSICAL REVIEW LETTERS, 2006, 96 (01)
  • [36] MICROWAVE-DRIVEN SET-BOX WITH SUPERCONDUCTING ISLAND
    HADICKE, A
    KRECH, W
    PHYSICA B, 1995, 210 (3-4): : 439 - 445
  • [37] Microwave-driven persistent currents in a nanoscale quantum ring
    Zhitlukhina, Elena
    Belogolovskii, Mikhail
    Seidel, Paul
    APPLIED NANOSCIENCE, 2022, 12 (03) : 377 - 383
  • [38] A MICROWAVE-DRIVEN BEAT WAVE ACCELERATOR FOR SCALED EXPERIMENTS
    DEANGELIS, U
    DEMENNA, L
    FEDELE, R
    MIANO, G
    NAPPI, C
    VACCARO, VG
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 1987, 15 (02) : 179 - 185
  • [39] Design and Results of a Microwave-Driven Gasdynamic Mirror Experiment
    Tang, Ricky
    Gallimore, Alec D.
    Kammash, Terry
    JOURNAL OF PROPULSION AND POWER, 2013, 29 (03) : 507 - 519
  • [40] MICROWAVE-DRIVEN HIGH-INTENSITY ARC LAMPS
    LAPATOVICH, W
    JOURNAL OF MICROWAVE POWER AND ELECTROMAGNETIC ENERGY, 1989, 24 (03) : 159 - 164