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en:eingabe_der_verfahrensparameter:eingabe_der_verfahrensparameter [2025/05/14 15:36] – [Inputs for calculating the closing time of the non-return valve] cschallen:eingabe_der_verfahrensparameter:eingabe_der_verfahrensparameter [2025/06/27 13:13] (aktuell) – [Disperse melting at] cschall
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       * **Required parameters:** These values must be specified by the user as they are essential for the calculation.       * **Required parameters:** These values must be specified by the user as they are essential for the calculation.
       * **Optional parameters:** These values can be specified by the user, but are not mandatory. If these values are not entered, they are calculated automatically by the software. An example of this are parameters such as the location of the melt pool formation (OSW).       * **Optional parameters:** These values can be specified by the user, but are not mandatory. If these values are not entered, they are calculated automatically by the software. An example of this are parameters such as the location of the melt pool formation (OSW).
-      * **PSI only**: Inputs for cycle time calculation+      * **PSI only**: Inputs for [[..:berechnungen:zykluszeitberechnung|cycle time calculation]] 
       * **PSI only**: Inputs for calculating the closing time of the non-return valve       * **PSI only**: Inputs for calculating the closing time of the non-return valve
  
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 REX can calculate the [[en:berechnungen:aufschmelzverlauf|melting]] in the conventional way (Maddok model) or using a disperse melting model. Dispersive melting always starts with shear and mixing elements as well as wave zones. The change from the conventional melting model to the disperse melting model can be set to an **earlier** point using the optional input made possible here. REX can calculate the [[en:berechnungen:aufschmelzverlauf|melting]] in the conventional way (Maddok model) or using a disperse melting model. Dispersive melting always starts with shear and mixing elements as well as wave zones. The change from the conventional melting model to the disperse melting model can be set to an **earlier** point using the optional input made possible here.
 +
 +==== Start Temperatur ====
 +
 +As an additional optional input parameter, the starting temperature can be specified. This temperature corresponds to the temperature of the melt vertex at the location where the melt vertex is formed and represents the temperature at which the [[en:berechnungen:temperaturverlauf|Temperature calculation]] begins.
 ==== Throughput (with given screw speed) ==== ==== Throughput (with given screw speed) ====
  
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 The 3 inputs are only used to calculate the closing time of the non-return valve. The 3 inputs are only used to calculate the closing time of the non-return valve.
  
-  * The injection pressure must be specified. The injection pressure is one of the forces that presses the closing ring against the pressure ring. A [[en:eingabe_eines_werkzeugs:eingabe_eines_werkzeugs_psi|tool/nozzle_backpressure]] is also required as a counterpart to the injection pressure.+  * The injection pressure must be specified. The injection pressure is one of the forces that presses the closing ring against the pressure ring. A [[en:eingabe_eines_werkzeugs:eingabe_eines_werkzeugs_psi|nozzle and die]] is also required as a counterpart to the injection pressure.
   * Holding pressure   * Holding pressure
   * Holding pressure time   * Holding pressure time
  
 The holding pressure and holding pressure time are not absolutely necessary. They are only required if the locking ring of the ring non-return valve closes after the injection phase and therefore within the holding pressure phase. This is not a sensible operating point. The holding pressure and holding pressure time are not absolutely necessary. They are only required if the locking ring of the ring non-return valve closes after the injection phase and therefore within the holding pressure phase. This is not a sensible operating point.