Unterschiede
Hier werden die Unterschiede zwischen zwei Versionen angezeigt.
| Beide Seiten der vorigen RevisionVorhergehende ÜberarbeitungNächste Überarbeitung | Vorhergehende Überarbeitung | ||
| en:materialdaten:mischungen:gasgefuelltes_polymer [2025/12/05 21:11] – deppe2 | en:materialdaten:mischungen:gasgefuelltes_polymer [2026/01/10 19:52] (aktuell) – neelest | ||
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| ====== Gas-loaded Polymer ====== | ====== Gas-loaded Polymer ====== | ||
| - | ===== Gas-loaded Polymer | + | ===== Components |
| **Path:** Main menu > Material > Create gas-loaded polymer…. Tab: Components\\ | **Path:** Main menu > Material > Create gas-loaded polymer…. Tab: Components\\ | ||
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| - | **Figure:** Dialog gas-loaded polymer | + | The calculation of all material data except of the viscosity is based on linear mixing rules. |
| - | + | ===== Viscosity ===== | |
| - | The calculation of all material | + | **Path:** Main menu > Material > Create gas-loaded Polymer…. Tab: Viscosity\\ |
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| + | **Path:** Main menu > Material > Edit Material (file)…. Tab: Viscosity\\ | ||
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| + | There is only one option to calculate the viscosity of a gas-loaded polymer in SIGMA. So, the Carreau function is preselected for the viscosity function. | ||
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| + | Carreau: | ||
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| + | $n = \frac{A \cdot a_T \cdot a_{gas}}{(1 + B \cdot a_T \cdot a_{gas} \cdot \dot{\gamma})^C}$ | ||
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| + | You can choose from different temperature dependence. | ||
| + | * WLF ($T_b, T_s$) | ||
| + | * WLF ($C_1, C_2$) | ||
| + | * Arrhenius | ||
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| + | These different models for the temperature shift factor a_T are described in detail in subchapter rheological data. | ||