Xingbin Zhao

Ningbo University

China

SCHOLARLY PAPERS

3

DOWNLOADS

52

TOTAL CITATIONS

0

Scholarly Papers (3)

1.

Carbon Vacancy Induced Metallicity and Lattice Distortion for Superior Mechanical Properties in Niobium Carbide

Number of pages: 17 Posted: 12 Nov 2024
Ningbo University, Chinese Academy of Sciences (CAS) - Beijing Synchrotron Radiation Facility, Ningbo University - Institute of High Pressure Physics, Ningbo University, Ningbo University, Ningbo University, Ningbo University, Chinese Academy of Sciences (CAS) - China Spallation Neutron Source, Chinese Academy of Sciences (CAS) - Beijing Synchrotron Radiation Facility and Ningbo University - Institute of High Pressure Physics
Downloads 19 (1,174,777)

Abstract:

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Niobium carbide, Nonstoichiometric, Hardness, Fracture toughness, High temperature and high pressure

2.

Pressure Driven Grains Fusion and Mechanical Properties Improvement of High-Entropy (Ti0.2zr0.2nb0.2hf0.2ta0.2)C Ceramics

Number of pages: 26 Posted: 19 Apr 2024
Ningbo University, Shenzhen Technology University, Ningbo University - Institute of High Pressure Physics, Jilin University (JLU), University of Alabama at Birmingham, Chinese Academy of Sciences (CAS) - China Spallation Neutron Source, Ningbo University, Ningbo University, Ningbo University, Ningbo University, Jilin University (JLU) - State Key Laboratory of Super Hard Materials and Ningbo University - Institute of High Pressure Physics
Downloads 17 (1,199,518)

Abstract:

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High-entropy Ceramic, Ultrahigh pressure, Hardness, Fracture toughness

3.

Pressure-Driven Grain Fusion and Mechanical Properties Improvement of High-Entropy (Ti0.2zr0.2nb0.2hf0.2ta0.2)C Ceramics

Number of pages: 17 Posted: 30 Dec 2024
Ningbo University, Shenzhen Technology University, University of Alabama at Birmingham, Ningbo University - Institute of High Pressure Physics, Ningbo University, Ningbo University, Ningbo University, Ningbo University, Ningbo University, Ningbo University - Institute of High Pressure Physics and affiliation not provided to SSRN
Downloads 16 (1,211,543)

Abstract:

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High-entropy ceramic, Ultrahigh pressure, Hardness, Indentation fracture toughness