Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example...

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Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy • First and second Piola- Kirchhoff • Example for 1D strain and stress • Green-Naghdi stress rate cm_part4

Transcript of Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example...

Page 1: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.

Continuum Mechanics, part 4

Stress_1• Engineering and Cauchy

• First and second Piola-Kirchhoff• Example for 1D strain and stress• Green-Naghdi stress rate

cm_part4

Page 2: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.

Stress measures, notation and terminology

The elementary forceresponsible for the deformation

In deriving a ‘proper’ stress measure we require its independence of rigid body motion.

The engineering stress does

not posses this property.

S t r e s s v e c t o r s C a u c h y ( t r u e ) E n g i n e e r i n g

AP

Tt

A

t

t t0d d

dlim

t

AP

Tt

A

t

00d

0 dd

lim0

C a u c h y f o r m u l a p r o v i d e s t h e i r r e l a t i o n t o s t r e s s t e n s o r

j

t

ji

t

ti

t

t nT jji

t

i

t nT 0

00

Page 3: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
Page 4: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
Page 5: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
Page 6: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
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This choice will lead to the first Piola-Kirchhoff stress tensor

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Motivation for the definition of a fictive force in reference configuration

In the current configuration we know the applied forces, but the deformed geometry is unknown. The stress measure is clearly defined (Cauchy or true stress) but cannot be directly computed.

Inventing a fictive force ‘acting’ in the reference configuration (related in a systematic way to the actual force in the current configuration) allows to define a new suitable measure of stress in the reference configuration, (e.g. Piola-Kirchhoff) to compute it and relate it back to the the true stress. Such a stress should be independent of rigid body motion and of the choice of coordinate system.

The true stress is the only measure which is of final interest from engineering point of view.

Other measures are just useful tools to get the true stress.

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Page 12: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
Page 13: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
Page 14: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
Page 15: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
Page 16: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.

Example for 1D strain and stress

Page 17: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
Page 18: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
Page 19: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
Page 20: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
Page 21: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
Page 22: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
Page 23: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
Page 24: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
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11 components only!

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The same physical phenomenon – different strain measures?

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Page 29: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
Page 30: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
Page 31: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
Page 32: Continuum Mechanics, part 4 Stress_1 Engineering and Cauchy First and second Piola-Kirchhoff Example for 1D strain and stress Green-Naghdi stress rate.
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Understandingcorotational stress

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Green-Naghdi stress rate tensor

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