Unterschiede
Hier werden die Unterschiede zwischen zwei Versionen angezeigt.
| Beide Seiten der vorigen RevisionVorhergehende ÜberarbeitungNächste Überarbeitung | Vorhergehende Überarbeitung | ||
| en:eingabe_der_verfahrensparameter:eingabe_der_verfahrensparameter [2024/10/26 18:41] – neelest | en:eingabe_der_verfahrensparameter:eingabe_der_verfahrensparameter [2026/09/17 09:24] (aktuell) – gelöscht - Externe Bearbeitung (Unbekanntes Datum) 127.0.0.1 | ||
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| - | ======Define process parameters | ||
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| - | In REX/PSI Next Generation, the process parameters are defined centrally via the menu // | ||
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| - | =====Structure of the dialogue===== | ||
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| - | The dialogue for the process parameters is divided into two columns, each of which contains different categories of input values: | ||
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| - | * **Required parameters: | ||
| - | * **Optional parameters: | ||
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| - | This subdivision allows the user to control necessary process parameters manually, while less critical values can be determined automatically by the software, which increases user-friendliness. | ||
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| - | =====Pressure input and selection options===== | ||
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| - | A key function of the dialogue concerns the pressure input at the screw tip, which can be controlled in various ways depending on the process requirements. The user has three selection options: | ||
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| - | * **Manually enter back pressure:** If // | ||
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| - | * **Mould characteristic curve (selection //mould characteristic curve//):** This option activates the calculation of the pressure on the basis of a mould characteristic curve. The mould characteristic curve represents a mathematical description of the pressure curve as a function of throughput and speed, which enables precise simulation of the pressure build-up in specific moulds. This method is particularly suitable for complex moulds and variable process conditions. | ||
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| - | * **Tool (selection // | ||
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| - | **Note:** The selection of the options //mould curve// and //mould// is only available in REX. In each case, only one option can be selected for pressure input. As soon as a checkbox is activated, the input in the other fields is blocked to ensure that the pressure is only calculated using one of the defined methods. | ||
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| - | =====Calculation mode: circumferential speed or throughput===== | ||
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| - | In addition to the pressure input, the dialogue offers a choice between two calculation modes: | ||
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| - | * **Circumferential speed:** The user can set the process to calculate based on the circumferential speed of the screw. This method makes it possible to control and optimise the material flow via the speed of the screw circumference. | ||
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| - | * **Throughput: | ||
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| - | In both cases, the process is calculated with the specified data and the software ensures that a functioning process is simulated. | ||
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| - | =====Calculation of the cycle time===== | ||
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| - | Similar to the circumferential speed and throughput, the dialogue offers a selection option for calculating the cycle time: | ||
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| - | * **Cycle time based on speed:** In this mode, the cycle time is calculated based on the screw speed specified by the user. This is a common method to control the process speed directly by the screw speed. | ||
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| - | * **Cycle time based on time:** Alternatively, | ||
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| - | These options provide flexibility in optimising the cycle and allow either time-based or speed-based control of the process. | ||
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| - | =====Value range check and heating zone temperatures===== | ||
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| - | After leaving the process parameter dialogue, a value range validation is performed automatically, | ||
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| - | If the heating zone temperatures have not yet been defined in an earlier step, e.g. with the cylinder data, they must also be entered at this point. These temperatures are of great importance for material preparation and influence the melt quality as well as the entire process sequence. | ||
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