Unterschiede
Hier werden die Unterschiede zwischen zwei Versionen angezeigt.
| Beide Seiten der vorigen RevisionVorhergehende ÜberarbeitungNächste Überarbeitung | Vorhergehende Überarbeitung | ||
| en:eingabe_der_schneckendaten:barrierezone [2024/11/11 13:02] – [Determination of duct widths] cschall | en:eingabe_der_schneckendaten:barrierezone [2026/09/17 09:24] (aktuell) – gelöscht - Externe Bearbeitung (Unbekanntes Datum) 127.0.0.1 | ||
|---|---|---|---|
| Zeile 1: | Zeile 1: | ||
| - | ====== Barrier section ====== | ||
| - | |||
| - | ===== General geometry of a barrier section ===== | ||
| - | |||
| - | Barrier zones are much more complex in their structure than feed, (de)compression and metering zones. In a barrier zone, a distinction is made between solid material and melt channel, as can be seen in the following illustrations. | ||
| - | |||
| - | {{ : | ||
| - | |||
| - | {{ : | ||
| - | |||
| - | While the main web comes from the previous zone and merges into the subsequent zone, there is a barrier web within the barrier zone that separates the solids channel from the melt channel. | ||
| - | |||
| - | At the beginning of the barrier zone, the solids channel predominates, | ||
| - | |||
| - | At the end of the barrier zone, the solids channel runs out and the melt channel predominates. Both the inlet and outlet can be selected to be closed (see figure above) or open. | ||
| - | |||
| - | In order to fully define a barrier screw, the information shown in the following schematic diagram is required. | ||
| - | |||
| - | {{ : | ||
| - | |||
| - | ^ Input identifier ^ Description | ||
| - | |L //or// L/D | Length of the zone | ||
| - | |δ (delta) | Screw clearance| | ||
| - | |b_i | Number of flights | | ||
| - | |t_h //or// t_h/ | ||
| - | |t_b //or// t_b/ | ||
| - | |e_h | Flight width of main section | | ||
| - | |e_b | Flight width of barrier section | | ||
| - | |s_0 and s_1 | Barrier gap at the start and end of the current zone | | ||
| - | |b_s_0 | Channel width of the melt channel (can only be entered at the start of the inlet) | | ||
| - | |h_f_0 and h_f_1 | Channel depth of the solids channel at the start and end of the current zone | | ||
| - | |h_s_0 and h_s_1 | Channel depth of the melt channel at the start and end of the current zone | | ||
| - | |r_f_tr | Radius active flight of main section | | ||
| - | |r_f_ntr | Radius non active flight of main section | | ||
| - | |r_s_tr | Radius active flight of barrier section | ||
| - | |r_s_ntr | Radius non active flight of barrier section | | ||
| - | |gamma_f | Flight angle of main section | | ||
| - | |gamma_s | Flight angle of barrier section | | ||
| - | |||
| - | It should be noted that a barrier zone **always** consists of an inlet, **at least** one main section and an outlet. Several main zones can be defined in succession in order to make gradual changes to the channel geometry. These can be added or removed using the " | ||
| - | |||
| - | ===== Notes ===== | ||
| - | |||
| - | **IMPORTANT**: | ||
| - | |||
| - | The division into the individual barrier zones is usually determined on the basis of changes in the channel gradient or changes in the channel depth profile. | ||
| - | |||
| - | {{ : | ||
| - | |||
| - | ===== Input mask ===== | ||
| - | |||
| - | < | ||
| - | {{ : | ||
| - | {{ : | ||
| - | {{ : | ||
| - | </ | ||
| - | |||
| - | ===== Determination of duct widths ===== | ||
| - | |||
| - | The calculation of the channel widths within the barrier feed section, main section | ||
| - | and outlet section has been revised in the REX version 6 and 18 respectively PSI version 4 and 16. | ||
| - | Therefore, the saved values of a barrier screw file in a previous PSI/REX version will | ||
| - | generally not correspond to the channel widths of a newly entered barrier screw | ||
| - | although the geometrical parameters that determine the channel width (e. g. pitch | ||
| - | etc.) are identical. | ||
| - | |||
| - | When loading a barrier screw file of a previous PSI/REX version, REX 6 respectively | ||
| - | PSI 4 does automatically update the saved solid and melt channel widths. If the user | ||
| - | does the calculation of this previously loaded barrier screw, the calculation is | ||
| - | executed with the “new” channel widths. | ||
| - | |||
| - | The barrier zone begins with the barrier walkway and ends with the barrier walkway. The position for determining the channel width is therefore on the barrier web. The position where the barrier web begins (in REX/PSI, i.e. where the initial width of the melt channel is specified) determines the initial aisle widths of the barrier zone (coordinate x=0 in the following figure). | ||
| - | |||
| - | {{ : | ||
| - | |||
| - | This means that the passive (non-driving flank) of the barrier web determines the position for determining the aisle width as a function of the coordinate x in the axial direction. However, as can be seen in the figure, the aisle width is always determined perpendicular to the main web. | ||
| - | |||
| - | In the entry and exit zones, only the aisle widths at the zone transition (b_f/s_00 and b_f/s_11) are specified. In barrier main sections, the widths are also specified at the positions at which the channels are first (b_f/s_01) and last (b_f/s_10) completely **within** the main section (see following figure). | ||
| - | |||
| - | {{ : | ||
| - | |||
| - | ===Further topics=== | ||
| - | ==Input of the screw== | ||
| - | * [[en: | ||
| - | * [[en: | ||
| - | * [[en: | ||
| - | * [[en: | ||
| - | * [[en: | ||
| - | * [[en: | ||
| - | * [[en: | ||
| - | * [[en: | ||
| - | * [[en: | ||
| - | |||
| - | ==Input of shearing and mixing parts== | ||
| - | * [[en: | ||
| - | * [[en: | ||
| - | * [[en: | ||
| - | * [[en: | ||
| - | * [[en: | ||
| - | * [[en: | ||
| - | * [[en: | ||
| - | * [[en: | ||
| - | |||
| - | ==Non-return valves (PSI)== | ||
| - | * [[en: | ||
| - | * [[en: | ||
| - | * [[en: | ||
| - | * [[en: | ||