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Thermal shock strength of a semi-infinite piezoelectric medium
Bao-Lin Wang
, Yu-Guo Sun
Western Sydney University
School of Engineering, Design & Built Environment
Research output
:
Contribution to journal
›
Article
›
peer-review
3
Citations (Scopus)
Overview
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Dive into the research topics of 'Thermal shock strength of a semi-infinite piezoelectric medium'. Together they form a unique fingerprint.
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Engineering
Piezoelectric
100%
Shock Strength
100%
Electric Field
100%
Thermal Stress
40%
Crack Perpendicular
20%
Intensity Factor
20%
Field Intensity
20%
Crack Size
20%
Crack Propagation
20%
Stress-Intensity Factor
20%
Boundary Value
20%
Crack Surface
20%
Tensile Stress σ
20%
Opposite Sign
20%
Maximum Stress Intensity Factor
20%
Piezoelectric Effect
20%
Surface Traction
20%
Ultimate Tensile Strength
20%
Catastrophic Failure
20%
Mechanical Problem
20%
Thermal Load
20%
Fracture Strength
20%
Physics
Piezoelectricity
100%
Thermal Shock
100%
Electric Field
100%
Stress Distribution
80%
Thermal Stress
40%
Ultimate Tensile Strength
40%
Stress Intensity Factor
40%
Boundary Value Problems
20%
Surface Crack
20%
Fracture Strength
20%
Piezoelectricity
20%
Crack Propagation
20%
Material Science
Piezoelectricity
100%
Thermal Shock
100%
Ultimate Tensile Strength
66%
Thermal Stress
66%
Stress Intensity Factor
66%
Surface Crack
33%
Crack Propagation
33%
Fracture Toughness
33%
Thermal Load
33%