Differential temperature primary stresses

Differential temperature primary stresses

Anonymous
Not applicable
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Message 1 of 5

Differential temperature primary stresses

Anonymous
Not applicable

Hi,

 

I would like to know how the sofware determine the primary stresses and the relaxing forces fot the differential (Z) temperature.

I tried to find the same explanations that exisit for the differential shrinkage (where each fiber value are explains)

 

In my case, I have 2 dilatation coefficients very differents... that's why I want to check what is done.

 

Thanks.

 

 

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Message 2 of 5

simon_hooper
Autodesk
Autodesk
Accepted solution

Hi Gregory

 

The software calculates the differential temperature relaxing moments and forces by dividing each section element into a number of horizontal strips.  The strain at the centroid of each strip is determined using the profile temperature at that height multiplied by the coefficient of expansion.

 

As noted in the help, if the top or bottom surface of the section is not horizontal, the calculations will not be realistic, and a simplified model of the section may be more appropriate.

 

 

Thanks

Simon




Simon Hooper
Software Development

Message 3 of 5

Anonymous
Not applicable

Simon,

 

Thanks for your answer.

OK for me, I manually find same results in my particular case.

 

So I have : {N, M} and {epsilon, psi} 

 

I wonder now how the software determine stresses along the beam (analytically like it is done for differential shrinkage)

 

Thank you again.

 

 

 

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Message 4 of 5

Anonymous
Not applicable

Simon,

 

I finally manage to manually check the software results.

 

I think that the calculation details are usefull when click "RESULTS" (it seem only t be the "epsilon" and the "psi" associate to N & M)

 

Thanks again. I accept your response as solution and keep at disposal for who try to find this details.

 

G. PAJOT

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Message 5 of 5

Anonymous
Not applicable

Hi  Everyone,

 

           Thanks for sharing the information.

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