Unterschiede
Hier werden die Unterschiede zwischen zwei Versionen angezeigt.
| Beide Seiten der vorigen RevisionVorhergehende ÜberarbeitungNächste Überarbeitung | Vorhergehende Überarbeitung | ||
| en:berechnungen:druckverlauf [2025/06/26 08:59] – cschall | en:berechnungen:druckverlauf [2025/07/03 13:34] (aktuell) – cschall | ||
|---|---|---|---|
| Zeile 7: | Zeile 7: | ||
| and [[en: | and [[en: | ||
| Additionally, | Additionally, | ||
| + | The same equations as those used in the throughput calculation are applied. | ||
| - | The pressure profile is calculated from the screw tip back to the location of the melt vortex | + | The pressure profile is calculated from the screw tip back to the location of the melt pool formation. Before this location, solid conveying takes place, which shows an exponential pressure build-up. |
| The pressure profile calculation begins at the screw tip. Based on the calculated throughput, the pressure drop within a computation interval is determined and added to the previous absolute pressure. In injection molding machines, the pressure in the screw antechamber (at the screw tip) results from the set back pressure. | The pressure profile calculation begins at the screw tip. Based on the calculated throughput, the pressure drop within a computation interval is determined and added to the previous absolute pressure. In injection molding machines, the pressure in the screw antechamber (at the screw tip) results from the set back pressure. | ||
| Zeile 17: | Zeile 18: | ||
| Barrier screws can only be calculated analytically under the simplifying assumption of an equal pressure gradient in the melt and solid channels. Although this allows for rapid calculation, | Barrier screws can only be calculated analytically under the simplifying assumption of an equal pressure gradient in the melt and solid channels. Although this allows for rapid calculation, | ||
| - | === Network Calculation / Node Method | + | === Network Calculation / Matrix Model === |
| - | To eliminate the above-mentioned simplifying assumption, the so-called | + | |
| + | To eliminate the above-mentioned simplifying assumption, the so-called | ||
| This method is optionally available for barrier screws as an alternative to the equal pressure gradient assumption but is always used for wave screws. | This method is optionally available for barrier screws as an alternative to the equal pressure gradient assumption but is always used for wave screws. | ||
| - | A network is generated from the screw geometry, consisting of simple geometries (rectangular channels). For each of these simple geometries, a //voltage source// (drag flow) and a resistance (pressure flow) are defined. From the network of voltage sources and resistances, | + | A network is generated from the screw geometry, consisting of simple geometries (rectangular channels). For each of these simple geometries, a //voltage source// (drag flow) and a resistance (pressure flow) are defined. From the network of voltage sources and resistances, |
| {{ : | {{ : | ||
| - | To solve the resulting system of equations | + | To solve the resulting system of equations, it must be reduced by incorporating boundary conditions. |
| - | For a closed barrier zone, the mass flow into the closed inlet or out of the closed outlet can be set to zero. For an open barrier | + | For a closed barrier zone, the mass flow into the closed inlet or out of the closed outlet can be set to zero. For an open barrier |
| {{ : | {{ : | ||
| - | |||
| ===Further topics=== | ===Further topics=== | ||
| Zeile 40: | Zeile 41: | ||
| * [[en: | * [[en: | ||
| * [[en: | * [[en: | ||
| + | * [[en: | ||
| * [[en: | * [[en: | ||
| * [[en: | * [[en: | ||