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Publications by Seisuke Okubo
Study on the Progressive Failure Characteristics of Coal in Uniaxial and Triaxial Compression Conditions Using 3d-Digital Image Correlation
Energies
Control
Electronic Engineering
Energy Engineering
Renewable Energy
Energy
Fuel Technology
Sustainability
Optimization
Electrical
Power Technology
the Environment
Related publications
Study on Damage Evolution Characteristics of Coal and Rock Uniaxial Compression Based on the Acoustic Emission
Brief Communication: Full-Field Deformation Measurement for Uniaxial Compression of Sea Ice by Using the Digital Image Correlation Method
Correction To: Uniaxial Experimental Study of the Acoustic Emission and Deformation Behavior of Composite Rock Based on 3D Digital Image Correlation (DIC)
Acta Mechanica Sinica/Lixue Xuebao
Computational Mechanics
Mechanical Engineering
Deformation and Failure Characteristics of Weathered Granite Under Uniaxial Compression
AIP Advances
Nanotechnology
Astronomy
Physics
Nanoscience
A Study on the Characteristics of Microseismic Signal During Deformation and Failure of Different Materials Under Uniaxial Compression
Shock and Vibration
Mechanics of Materials
Geotechnical Engineering
Condensed Matter Physics
Mechanical Engineering
Civil
Engineering Geology
Structural Engineering
Microscopic Identification of Progressive Fracturing in Granite Under Triaxial and Uniaxial Stress Conditions From Bátaapáti Radwaste Repository
Periodica Polytechnica: Civil Engineering
Civil
Geotechnical Engineering
Engineering Geology
Structural Engineering
Measurement of Resistance Curves in the Longitudinal Failure of Composites Using Digital Image Correlation
Composites Science and Technology
Composites
Engineering
Ceramics
Image Recognition by Using the Progressive Wavelet Correlation
International Journal of Image, Graphics and Signal Processing
Influence of Water-Soaking Time on the Acoustic Emission Characteristics and Spatial Fractal Dimensions of Coal Under Uniaxial Compression
Thermal Science
Renewable Energy
the Environment
Sustainability