Mathematical models;
Electron emission;
Heating systems;
Temperature;
Tensors;
Cathodes;
Numerical models;
Dynamic temperature characteristics;
electron emission;
material strength;
smoothed particle hydrodynamics (SPH);
FIELD-EMISSION;
D O I:
10.1109/TDEI.2023.3280867
中图分类号:
TM [电工技术];
TN [电子技术、通信技术];
学科分类号:
0808 ;
0809 ;
摘要:
The study of dynamic temperature characteristics of cathode microprotrusion under electron emission would be essential to the development of high-voltage vacuum systems. Owing to the multiscale and multiphysics characteristics of the microprotrusions under the electron emission, smoothed particle hydrodynamics (SPH) method has become one of the feasible methods. In this article, the SPH method is introduced to study the dynamic temperature characteristics of a micrometer scale microprotrusion under the electron emission. First, the constitutive model and the equation of state with the material strength and the coupling effect of the heat conduction, Joule heating, Nottingham effect, and electron emission have been introduced into the SPH method. Then, an SPH model of the microprotrusion under the electron emission with considering the temperature correction is established by combining the SPH method and thermal-field emission heating model. Compared with the finite element method (FEM) and theoretical calculation, the SPH model of the microprotrusion under the electron emission is verified. Based on the SPH model of the microprotrusion, the dynamic temperature characteristics under the different conditions are quantitatively obtained and analyzed. The results of this article may provide some useful references for the vacuum insulation design and the insulation state evaluation of the high-voltage vacuum system.
机构:
North China Univ Technol, Sch Mech & Mat Engn, Beijing 100144, Peoples R ChinaNorth China Univ Technol, Sch Mech & Mat Engn, Beijing 100144, Peoples R China
Wang, X. J.
Huang, C.
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North China Univ Technol, Sch Mech & Mat Engn, Beijing 100144, Peoples R China
Ecole Polytech Montreal, Montreal, PQ, CanadaNorth China Univ Technol, Sch Mech & Mat Engn, Beijing 100144, Peoples R China
Huang, C.
Yan, W. H.
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North China Univ Technol, Sch Mech & Mat Engn, Beijing 100144, Peoples R ChinaNorth China Univ Technol, Sch Mech & Mat Engn, Beijing 100144, Peoples R China
Yan, W. H.
Aly, Abdelraheem M.
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机构:
King Khalid Univ, Coll Sci, Dept Math, Abha 61413, Saudi ArabiaNorth China Univ Technol, Sch Mech & Mat Engn, Beijing 100144, Peoples R China
Aly, Abdelraheem M.
Zhao, Q. L.
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North China Univ Technol, Sch Mech & Mat Engn, Beijing 100144, Peoples R ChinaNorth China Univ Technol, Sch Mech & Mat Engn, Beijing 100144, Peoples R China
Zhao, Q. L.
He, G. P.
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North China Univ Technol, Sch Mech & Mat Engn, Beijing 100144, Peoples R ChinaNorth China Univ Technol, Sch Mech & Mat Engn, Beijing 100144, Peoples R China
机构:
PLA, AMS, Inst Def Engn, Luoyang 471023, Peoples R ChinaPLA, AMS, Inst Def Engn, Luoyang 471023, Peoples R China
Zhuang, Tieshuan
Dong, Xiangwei
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机构:
China Univ Petr East China, Coll Mech & Elect Engn, 66 Changjiang Rd, Qingdao 266580, Peoples R ChinaPLA, AMS, Inst Def Engn, Luoyang 471023, Peoples R China
机构:
Univ Tokyo, Grad Sch Sci, Dept Phys, Bunkyo Ku, 7-3-1 Hongo, Tokyo 1130033, JapanUniv Tokyo, Grad Sch Sci, Dept Phys, Bunkyo Ku, 7-3-1 Hongo, Tokyo 1130033, Japan
Chiaki, Gen
Yoshida, Naoki
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Univ Tokyo, Grad Sch Sci, Dept Phys, Bunkyo Ku, 7-3-1 Hongo, Tokyo 1130033, Japan
Univ Tokyo, Inst Adv Study, Kavli Inst Phys & Math Universe WPI, Kashiwa, Chiba 2778583, JapanUniv Tokyo, Grad Sch Sci, Dept Phys, Bunkyo Ku, 7-3-1 Hongo, Tokyo 1130033, Japan
机构:
USAF, Res Lab, DEPE, Directed Energy Effects Res Branch, Kirtland AFB, NM 87117 USAUSAF, Res Lab, DEPE, Directed Energy Effects Res Branch, Kirtland AFB, NM 87117 USA
Chen, JK
Beraun, JE
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USAF, Res Lab, DEPE, Directed Energy Effects Res Branch, Kirtland AFB, NM 87117 USAUSAF, Res Lab, DEPE, Directed Energy Effects Res Branch, Kirtland AFB, NM 87117 USA