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Click Add.
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Click Add.
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Click to expand the Layers section. In the table, enter the following settings:
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In the Model Builder window, under Component 1 (comp1)>Geometry 1 right-click Work Plane 1 (wp1) and choose Extrude.
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In the Model Builder window, under Component 1 (comp1)>Thin-Film Flow (tff) click Fluid-Film Properties 1.
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In the tree, select Built-in>Nylon.
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In the Show More Options dialog box, in the tree, select the check box for the node Physics>Equation-Based Contributions.
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Click OK.
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Click
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Click OK.
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Click OK.
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In the Model Builder window, under Study 1>Solver Configurations>Solution 1 (sol1) click Dependent Variables 2.
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In the Model Builder window, under Study 1>Solver Configurations>Solution 1 (sol1)>Dependent Variables 2 click Pressure (comp1.pfilm).
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In the Model Builder window, expand the Study 1>Solver Configurations>Solution 1 (sol1)>Stationary Solver 2 node.
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Right-click Study 1>Solver Configurations>Solution 1 (sol1)>Stationary Solver 2 and choose Fully Coupled.
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In the Settings window for Volume, click Replace Expression in the upper-right corner of the Expression section. From the menu, choose Component 1 (comp1)>Solid Mechanics>Displacement>solid.disp - Displacement magnitude - m.
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Click OK.
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In the Settings window for Surface, click Replace Expression in the upper-right corner of the Expression section. From the menu, choose Component 1 (comp1)>Thin-Film Flow>Wall and base properties>tff.h - Total gap height - m.
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Click OK.
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In the Settings window for Arrow Surface, click Replace Expression in the upper-right corner of the Expression section. From the menu, choose Component 1 (comp1)>Thin-Film Flow>Wall and base properties>tff.vbtx,...,tff.vbtz - Tangential velocity of base (spatial frame).
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