wiki:sns:sns2014:example_restraints
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wiki:sns:sns2014:example_restraints [2017/07/13 09:22] – claire | wiki:sns:sns2014:example_restraints [2023/12/13 13:47] (current) – [Related Tutorial Videos] michael | ||
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+ | ~~CLOSETOC~~ | ||
+ | {{TOC: | ||
+ | \\ | ||
+ | ======Example Restraints====== | ||
+ | Here are a few example restraints to help you get started. | ||
+ | |||
=====Applying Simply Supported Restraint to a Beam===== | =====Applying Simply Supported Restraint to a Beam===== | ||
A simply supported boundary condition can be modeled several ways in Scan& | A simply supported boundary condition can be modeled several ways in Scan& | ||
- | ====Example | + | ====Method |
The first method | The first method | ||
So while this method allows for rotation about the end, it does not fully allow the beam to extend at the ends. | So while this method allows for rotation about the end, it does not fully allow the beam to extend at the ends. | ||
- | {{ simply_supported_neutral_load.png? | + | {{ :simply_supported_neutral_load.png? |
- | {{ simply_supported_neutral_result.png? | + | {{ :simply_supported_neutral_result.png? |
- | ====Example | + | ====Method |
The second method relies on the symmetry of the beam loading. | The second method relies on the symmetry of the beam loading. | ||
For this loading, the best choice to restrain the model is where the slope of deflection will be zero. In this case, zero bending slope occurs at the mid-point of the beam because the loading is symmetric. | For this loading, the best choice to restrain the model is where the slope of deflection will be zero. In this case, zero bending slope occurs at the mid-point of the beam because the loading is symmetric. | ||
- | {{ simply_supported_eqlib_load.png? | + | {{ :simply_supported_eqlib_load.png? |
The static equilibrium loading produces the same bending shape and almost the same peak bending stress as the first case. In addition, the peak Z-direction deflections are also quite similar. | The static equilibrium loading produces the same bending shape and almost the same peak bending stress as the first case. In addition, the peak Z-direction deflections are also quite similar. | ||
- | + | {{ :simply_supported_eqlib_result.png? | |
- | {{ simply_supported_eqlib_result.png? | + | |
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A sliding restraint is applying as a " | A sliding restraint is applying as a " | ||
- | ---- | + | ==== Example |
- | ==== Case 1: asymmetric | + | |
in this case, the left footing of an arch if fully retrained in x,y, and z, directions (indicated by appearance of green, blue, and red colors), | in this case, the left footing of an arch if fully retrained in x,y, and z, directions (indicated by appearance of green, blue, and red colors), | ||
{{: | {{: | ||
- | ---- | ||
- | ==== Case 2: symmetric | + | |
+ | ==== Example | ||
The sliding can be made symmetric by adding an edge to the arch at the centerline, and applying an XY restraint to the edge (required for numerical stability), and Z restraints to the footings. Now both footings can slide in the x-y plane. \\ | The sliding can be made symmetric by adding an edge to the arch at the centerline, and applying an XY restraint to the edge (required for numerical stability), and Z restraints to the footings. Now both footings can slide in the x-y plane. \\ | ||
{{: | {{: | ||
- | This short video shows how to restrain edges in Scan& | + | =====Related Tutorial Videos===== |
- | {{http://www.youtube.com/v/8zEEzcVdd-4? | + | <WRAP half column> |
+ | This short video shows how to restrain edges in Scan& | ||
+ | |||
+ | {{youtube>8zEEzcVdd-4? | ||
+ | </ |
wiki/sns/sns2014/example_restraints.1499959367.txt.gz · Last modified: 2017/07/13 09:22 by claire