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In case of elastic deformation when the applyed stress disappears, the material returns in its initial form. In case of plastic deformation a remaining shape change occurs.

Until a stress value - what is property of individual material - called flow stress, the material deforms elastically, afterwards plastically.

You can find information about it for example in the following page:

http://www.Virginia.edu/bohr/mse209/chapter6.htm

## Please somebody correct my awful english, thanx ##

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What is the difference between Hooke's Law and elastic potential energy?

Hooke's Law is a principle that describes the relationship between the force applied to a spring and the resulting deformation or stretch of the spring. Elastic potential energy, on the other hand, is the energy stored in a stretched or compressed spring due to its deformation. In simpler terms, Hooke's Law explains how a spring behaves when a force is applied to it, while elastic potential energy refers to the energy stored in the spring when it is stretched or compressed.


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Related Questions

What is anelastic deformation?

Anelastic deformation is a type of deformation in materials where they exhibit some degree of recovery after the stress is removed, similar to elastic deformation. However, anelastic deformation involves some permanent rearrangement of the material's structure, causing it to not return completely to its original shape. This behavior is typically seen in materials like polymers and some metals.


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