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        Finite Element Analysis and Dynamics Simulation of Mechanical Flux-Varying PM Machines with Auto-Rotary PMs

        Huang, Chaozhi,Zhang, Zhixuan,Liu, Xiping,Xiao, Juanjuan,Xu, Hui The Korean Institute of Power Electronics 2019 JOURNAL OF POWER ELECTRONICS Vol.19 No.3

        A new type of auto-rotary PM mechanical flux-varying PM machine (ARPMMFVPMM) is proposed in this paper, which can overcome the problem where the air-gap magnetic field of a PM machine is difficult to freely adjust. The topology structures of the machine and the mechanical flux-adjusting device are given. In addition, the operation principle of flux-adjusting is analyzed in detail. Furthermore, the deformation of a spring with the speed variation is obtained by virtual prototype technology. Electromagnetic characteristics including the flux distribution, air gap flux density, flux linkage, electromagnetic-magnetic-force (EMF), and flux weakening ability are computed by 2D finite element method (FEM). Results show that the machine has some advantages such as the good field control ability.

      • KCI등재

        Effects of Ni, Co, B, and Ge on the Microstructures and Mechanical Properties of Nb-Ti-Si Ternary Alloys

        Qiang Huang,Yongwang Kang,Jinxia Song,Shiyu Qu,Yafang Han,Xiping Guo 대한금속·재료학회 2014 METALS AND MATERIALS International Vol.20 No.3

        Nb-Si in situ composites with a nominal composition of Nb-22Ti-12Si-X (at.%, X represents Ni, Co, B, or Ge)are prepared using non-consumable arc melting technology. The effects of the alloying elements on themicrostructures and mechanical properties are investigated. The Nb-22Ti-12Si ternary alloy consists of Nbss andNb3Si. A new phase of Ti2Ni or Ti2Co is introduced into the ternary system after adding Ni or Co. The addition of6% Ge promotes the formation of Nb5Si3 and creates significantly finer microstructures. The values of the hightemperature strength and room temperature fracture toughness of Nb-22Ti-12Si-6Ge are 566.33MPa and12.81MPa·m1/2, respectively, which are approximately 88.2% and 18.5% higher than those of Nb-22Ti-12Si(300.98 MPa and 10.81 MPa·m1/2). The addition of 3% B changed the morphological features and inducedthe appearance of large fine rosettes, which is favorable for restraining the crack propagation, and it also leadsto a 22.3% increase in room temperature fracture toughness compared with the Nb-22Ti-12Si ternaryalloy.

      • KCI등재

        Finite Element Analysis and Dynamics Simulation of Mechanical Flux-Varying PM Machines with Auto-Rotary PMs

        Chaozhi Huang,Zhixuan Zhang,Xiping Liu,Juanjuan Xiao,Hui Xu 전력전자학회 2019 JOURNAL OF POWER ELECTRONICS Vol.19 No.3

        A new type of auto-rotary PM mechanical flux-varying PM machine (ARPMMFVPMM) is proposed in this paper, which can overcome the problem where the air-gap magnetic field of a PM machine is difficult to freely adjust. The topology structures of the machine and the mechanical flux-adjusting device are given. In addition, the operation principle of flux-adjusting is analyzed in detail. Furthermore, the deformation of a spring with the speed variation is obtained by virtual prototype technology. Electromagnetic characteristics including the flux distribution, air gap flux density, flux linkage, electromagnetic-magnetic-force (EMF), and flux weakening ability are computed by 2D finite element method (FEM). Results show that the machine has some advantages such as the good field control ability.

      • KCI등재

        Application of cascaded H-bridge multilevel inverter in the speed regulation of medium- and high-voltage asynchronous motor

        Weiliang Wu,Xiping Liu,Jianwei Liang,Zhangqi Liu,Chaozhi Huang 전력전자학회 2024 JOURNAL OF POWER ELECTRONICS Vol.24 No.3

        Medium- and high-voltage motors are characterized by high power and large inertia, and are widely used in industrial frequency conversion. The cascaded H-bridge multilevel (CHB-ML) inverter adopts a modular design concept to realize high-voltage and high-power functions by cascading multiple identical low-voltage conversion units. Moreover, the harmonic content of the output current of the inverter is small. For this purpose, a multilevel inverter consisting of eight H-bridge inverter units cascaded in each phase is introduced to drive medium- and high-voltage asynchronous motors for starting and frequency regulation. The carrier phase-shifted sinusoidal pulse-width modulation technique, DC voltage equalization control of power unit, and speed sensorless vector control strategy based on a voltage–current hybrid chain observer are mainly introduced. The simulation and experimental results of the real-time digital simulation system (RTDS) of the asynchronous motor dragged by the inverter verify that the CHB-ML inverter with the proposed control strategy has good starting and frequency regulation performance. These findings provide a technical guarantee for the field of medium- and high-voltage high-power drives.

      • KCI등재

        A DC Charging Pile for New Energy Electric Vehicles

        Wu Weiliang,Liu Xiping,Huang Chaozhi 대한전기학회 2023 Journal of Electrical Engineering & Technology Vol.18 No.6

        New energy electric vehicles will become a rational choice to achieve clean energy alternatives in the transportation field, and the advantages of new energy electric vehicles rely on high energy storage density batteries and efficient and fast charging technology. This paper introduces a DC charging pile for new energy electric vehicles. The DC charging pile can expand the charging power through multiple modular charging units in parallel to improve the charging speed. Each charging unit includes Vienna rectifier, DC transformer, and DC converter. The feasibility of the DC charging pile and the effectiveness of the control strategies of each component of the charging unit are verified by simulation and experimental results. This DC charging pile and its control technology provide some technical guarantee for the application of new energy electric vehicles.

      • KCI등재

        A COST-EFFECTIVE PROCESS FOR SYNTHESIZING MAGNESIUM BORATE NANORODS AND ITS MECHANICAL PROPERTY FOR REINFORCED NYLON-6 COMPOSITES

        LICONG WANG,YUAN LIU,YUSHAN ZHANG,DAN CHEN,YUQI WANG,ZELIANG DONG,YONGCHAO LU,XIPING HUANG 성균관대학교(자연과학캠퍼스) 성균나노과학기술원 2014 NANO Vol.9 No.7

        Magnesium borate (Mg 2 B 2 O 5 Þ nanorods were synthesized by a two-step process, includingsolution-chemical technology and a ternary-°ux method, using concentrated seawater and H 3 BO 3as raw materials. X-ray di®raction (XRD) showed that the sample had triclinic structure. Scanning electron microscopy (SEM) and high resolution transmission electron microscopy (HR-TEM) indicated that it consisted of rod-like particles with an average diameter of 100 – 150 nmand length over 5 ? m. Di®erential thermal analysis (DTA) con¯rmed that the melting point ofthe ternary-°ux and the formation temperature of Mg 2 B 2 O 5 were lower than single-°ux process. The formation of Mg 2 B 2 O 5 nanorods was more e±cient by ternary-°ux than single-°ux. Me-chanical property of Mg 2 B 2 O 5 nanorods reinforced Nylon-6 composites showed that KH550 wasthe optimal coupling agent and made the strength of the composites to be improved to differentdegrees.

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