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Weihua Jiang

Researcher at Nagaoka University of Technology

Publications -  323
Citations -  4490

Weihua Jiang is an academic researcher from Nagaoka University of Technology. The author has contributed to research in topics: Pulsed power & Thin film. The author has an hindex of 35, co-authored 306 publications receiving 4055 citations. Previous affiliations of Weihua Jiang include Texas Tech University & Tsinghua University.

Papers
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Compact solid-State switched pulsed power and its applications

TL;DR: Semiconductor switches have greatly extended the scales of pulsed power parameters, especially in repetition rate and lifetime, and have enabled new areas of pulsing power applications, such as accelerators, flue-gas treatment, and gas lasers.
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Pulsed wire discharge for nanosize powder synthesis

TL;DR: In this paper, the peak current of /spl sim/10 kA, the pulse length of 20 /spl mu/s, and the pulse energy of 80 J were achieved for a typical powder production rate of 5 mg/pulse, with the results of surface area measurement have given the average powder sizes in the range of 20/spl sim /70 nm, depending on the material of the powder.
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Magnetic properties of nanosize NiFe2O4 particles synthesized by pulsed wire discharge

TL;DR: In this article, NiFe2O4 has been successfully synthesized by pulsed wire discharge (PWD), where wires of Ni and Fe were simultaneously discharged in a chamber filled with oxygen, and the particles floating in the ambient gas were collected by pumping the gas through a membrane filter.
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Insulating polymer nanocomposites with high-thermal-conduction routes via linear densely packed boron nitride nanosheets

TL;DR: In this paper, an electric field switching and the application of fillers with various aspect ratios enables the rearrangement of the hexagonal boron nitride (BN) nanosheets into linear densely packed BN structures (LDPBNs).
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Modification of BN nanosheets and their thermal conducting properties in nanocomposite film with polysiloxane according to the orientation of BN

TL;DR: A facile technique was developed to modify boron nitride (BN) nanosheets with iron oxides in order to fabricate highly oriented polysiloxane/BN nanosheet composite films and their thermal properties were evaluated according to the orientation of BN.