plastic strain sentence in Hindi
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- Hollomon's equation is a power law relationship between the stress and the amount of plastic strain:
- The plastic strain introduced by laser peening is much lower than that introduced by other impact peening technologies.
- As a result, the residual plastic strain has much greater thermal stability than the more heavily cold worked microstructures.
- One of the advantages to using shape-memory alloys is the high level of recoverable plastic strain that can be induced.
- On the other hand, for stress levels higher than \ sigma _ 0, plastic strain becomes progressively larger than elastic strain.
- Sevillano's research has focused on the mechanical stress strain response, structural evolution, texture development and fracture of materials undergoing large plastic strains.
- Due to the power-law relationship between stress and plastic strain, the Ramberg Osgood model implies that plastic strain is present even for very low levels of stress.
- Due to the power-law relationship between stress and plastic strain, the Ramberg Osgood model implies that plastic strain is present even for very low levels of stress.
- Nevertheless, for low applied stresses and for the commonly used values of the material constants \ alpha and n, the plastic strain remains negligible compared to the elastic strain.
- The drawing and blowing cause the film to be thinner than the extruded tube, and also preferentially aligns the polymer molecular chains in the direction that sees the most plastic strain.
- If a material has been subjected to prior deformation ( at low temperature ) then the yield stress will be increased by a factor depending on the amount of prior plastic strain " ? 0 ":
- The latter generally increases with temperature, and materials where m reaches a value greater than ~ 0.5 tend to exhibit super plastic behavior . m can be found from a log-log plot of yield strength at a fixed plastic strain versus the strain rate.
- The magnitude of the plastic strain decreases with distance from the surface as the peak pressure of the shock wave attenuates, i . e ., decreases, and becomes zero when the peak pressure falls below the HEL . After the shock wave passes, the residual plastic strain creates a compressive residual stress gradient below the target surface, highest at or immediately below the surface and decreasing with depth.
- The magnitude of the plastic strain decreases with distance from the surface as the peak pressure of the shock wave attenuates, i . e ., decreases, and becomes zero when the peak pressure falls below the HEL . After the shock wave passes, the residual plastic strain creates a compressive residual stress gradient below the target surface, highest at or immediately below the surface and decreasing with depth.
- Where \ alpha is a parameter, c _ \ mathrm { y } is the value of c when the plastic strain is zero ( also called the "'initial cohesion yield stress "'), \ psi is the angle made by the yield surface in the "'Rendulic plane "'at high values of p ( this angle is also called the "'dilation angle "'), and G ( \ phi, \ theta ) is an appropriate function that is also smooth in the deviatoric stress plane.
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