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Junjie Hao

University of Science and Technology Beijing

30 Xueyuan Road, Haidian District

beijing, 100083

China

SCHOLARLY PAPERS

3

DOWNLOADS

146

TOTAL CITATIONS

0

Scholarly Papers (3)

1.

Effects of Gas Mach Number on the Flow Field of Close-Coupled Gas Atomization, Particle Size and Cooling Rate of As-Atomized Powder: Simulation and Experiment

Number of pages: 64 Posted: 28 Sep 2022
University of Science and Technology Beijing, University of Science and Technology Beijing - State Key Laboratory for Advanced Metals and Materials, University of Science and Technology Beijing - Key Laboratory for Advanced Materials Processing of Ministry of Education and University of Science and Technology Beijing
Downloads 98 (704,534)

Abstract:

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Close-coupled atomization, Mach number, CFD simulation, Cooling rate

2.

Structure–Performance Relationship and Electrolysis Behavior of Tape-Cast Titanium Porous Transport Layers via Particle Size Regulation

Number of pages: 26 Posted: 07 Oct 2025
affiliation not provided to SSRN, affiliation not provided to SSRN, affiliation not provided to SSRN, affiliation not provided to SSRN, affiliation not provided to SSRN, affiliation not provided to SSRN, affiliation not provided to SSRN, University of Science and Technology Beijing and affiliation not provided to SSRN
Downloads 31 (1,304,549)

Abstract:

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PEMWE, PTL, tape casting, Sintering, Structure-performance relationship

3.

Effects of Dc Pulse Mode on the Performance of Nitride Coatings: A Case Study of Nbn Coatings

Number of pages: 36 Posted: 10 Jun 2025
affiliation not provided to SSRN, affiliation not provided to SSRN, University of Science and Technology Beijing, affiliation not provided to SSRN, affiliation not provided to SSRN, affiliation not provided to SSRN, affiliation not provided to SSRN, University of Science and Technology Beijing, affiliation not provided to SSRN, affiliation not provided to SSRN, affiliation not provided to SSRN and affiliation not provided to SSRN
Downloads 17 (1,481,165)

Abstract:

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PEMWE, Ti substrate, NbN coatings, DC pulse mode