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The phrase "application of tensile" is correct and usable in written English.
It can be used in contexts related to engineering, materials science, or physics, particularly when discussing the use or implementation of tensile strength or properties in a specific scenario.
Example: "The application of tensile testing is crucial for determining the strength of materials used in construction."
Alternatives: "use of tensile" or "implementation of tensile".
Exact(19)
Amorphous ribbon crystallized under fast heating at simultaneous application of tensile stresses from 0 to 180 MPa along ribbon axis [18].
Such a large asymmetry implies that strain engineering of GNR-devices is only viable with application of tensile strain but difficult with compressive strain.
Both the neutron and X-ray studies show the application of tensile strain reduces the bulk elastic modulus.
Prior research has investigated the immediate response after application of tensile strain on annulus fibrosus (AF) cells for the past decade.
In summary, we experimentally observed that when manipulating the magnetoelastic energy through application of tensile stress and changing the magnetostriction constant and internal stresses of studied microwires, we significantly affected the domain wall dynamics in magnetically bistable microwires.
The in-situ investigations in Raman spectroscope indicated that the internal stresses, which were compressive at the beginning, can be reduced by the application of tensile load.
Similar(41)
Compared to specimens welded allowing free shrinkage and welded with an applied constant tensile pre-load, the specimens welded during the application of increasing tensile load show solidification cracks.
In the deployment of the tethered system the direction and value of the tensile strength of the tether vary and, if the point of application of the tensile strength does not coincide with the centre of mass of the body, a moment occurs which leads to oscillations of the body with variable amplitude and frequency.
Plastic deformation under compression reduces this amount, whereas the application of a tensile stress increases it.
Prediction of fatigue crack growth following the application of single tensile overloads was performed using a modified strip-yield model.
Additionally, experiments with the prototypes demonstrate that biofilm debonding can be achieved upon application of both tensile and compressive strains in the inner surface of the catheter.
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