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The uniaxial stress at complete fracture is assumed to be given by
By its basic definition the uniaxial stress is given by:
Uniaxial stress is expressed by
Uniaxial stress
In the case of uniaxial stress or simple tension, , the von Mises criterion simply reduces to
Uniaxial tests do not provide lateral restraint during testing and thus tests the sample under uniaxial stress conditions.
The classical creep curve represents the evolution of strain as a function of time in a material subjected to uniaxial stress at a constant temperature.
Laplace DLTS in combination with uniaxial stress results in a splitting of the defect energy level.
This type of stress may be called (simple) normal stress or uniaxial stress; specifically, (uniaxial, simple, etc.) tensile stress.
It is defined as the ratio of the uniaxial stress over the uniaxial strain in the range of stress in which Hooke's Law holds.
In Optics, we can make an experimental derivative to the wavelength of incident ray, the E field to the sample, temperature, pressure, uniaxial stress etc. for getting more physical property.
The microscopic model and most optical properties of ensembles of the N-V centers have been firmly established in the 1970s based on the optical measurements combined with uniaxial stress and on the electron paramagnetic resonance.
To separate shrinkage from creep, the compliance function , defined as the stress-produced strain (i.e., the total strain minus shrinkage) caused at time t by a unit sustained uniaxial stress applied at age , is measured as the strain difference between the loaded and load-free specimens.