Unterschiede
Hier werden die Unterschiede zwischen zwei Versionen angezeigt.
| Beide Seiten der vorigen RevisionVorhergehende ÜberarbeitungNächste Überarbeitung | Vorhergehende Überarbeitung | ||
| en:installation_und_deinstallation:umgangberechnung [2024/09/13 09:26] – [Displaying and Comparing Results] neelest | en:installation_und_deinstallation:umgangberechnung [2025/04/15 10:37] (aktuell) – [Multigraphics and Result Comparison] cschall | ||
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| Zeile 5: | Zeile 5: | ||
| ===== Defining the Screw Position in the Calculation Settings ===== | ===== Defining the Screw Position in the Calculation Settings ===== | ||
| - | To simulate a process with different screw positions, it is necessary to configure | + | In PSI Next Generation, processes are only calculated in the entered |
| - | + | ||
| - | * | + | |
| - | * | + | |
| {{ : | {{ : | ||
| + | Alternatively, | ||
| ===== Batch Mode Calculation ===== | ===== Batch Mode Calculation ===== | ||
| Once the screw position is defined, the process can be started. The software runs the calculations in batch mode, meaning that two processes are calculated consecutively: | Once the screw position is defined, the process can be started. The software runs the calculations in batch mode, meaning that two processes are calculated consecutively: | ||
| - | | + | |
| - | * | + | * **Second step**: Calculation with the front screw position |
| + | * **Third step**: Calculation with the screw position at the rear (if selected) | ||
| - | {{ : | + | {{ : |
| - | .png?nolink |}} | + | |
| - | + | ||
| - | This two-step calculation process simulates the effects of the different screw positions on the process and generates the corresponding results. This allows the user to conduct a detailed analysis of the process behavior under different screw positions. | + | |
| + | This decoupled multi-stage calculation process simulates the effects of the different screw positions in the process and generates the corresponding results. This allows the user to carry out a detailed analysis of the process behaviour under different screw positions. | ||
| ===== Displaying and Comparing Results ===== | ===== Displaying and Comparing Results ===== | ||
| Once the calculations for both screw positions are completed, the results are available for analysis. There are several ways to view the results for the different screw positions: | Once the calculations for both screw positions are completed, the results are available for analysis. There are several ways to view the results for the different screw positions: | ||
| - | * ** Toolbar button**: | + | * ** Toolbar button**: |
| - | * | + | * |
| - | {{ : | ||
| - | ===== Multi-graphic | + | ===== Multigraphics |
| - | After selecting the results, a multi-graph | + | After selecting the results, a multigraphic |
| - | For a comprehensive analysis of the simulation results, you can also use the quick-access button | + | For a comprehensive analysis of the simulation results, you can also use the quick-access button |
| Zeile 46: | Zeile 42: | ||
| The visualization and simulation of screw positions in PSI Next Generation have been fundamentally improved to enable detailed and flexible simulation of processes with different screw positions. By adjusting the calculation settings, utilizing the automated batch mode, and employing the clear multi-graph comparison of results, the analysis of process impacts becomes more efficient and accurate. These innovations ensure that users can conduct an in-depth evaluation of their processes under various conditions, which is particularly beneficial in the field of plastics engineering. | The visualization and simulation of screw positions in PSI Next Generation have been fundamentally improved to enable detailed and flexible simulation of processes with different screw positions. By adjusting the calculation settings, utilizing the automated batch mode, and employing the clear multi-graph comparison of results, the analysis of process impacts becomes more efficient and accurate. These innovations ensure that users can conduct an in-depth evaluation of their processes under various conditions, which is particularly beneficial in the field of plastics engineering. | ||
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| + | ===Further topics=== | ||
| + | * [[en: | ||
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