Unterschiede
Hier werden die Unterschiede zwischen zwei Versionen angezeigt.
| Beide Seiten der vorigen RevisionVorhergehende ÜberarbeitungNächste Überarbeitung | Vorhergehende Überarbeitung | ||
| en:scale-up_modul [2026/01/11 18:18] – neelest | en:scale-up_modul [2026/04/14 15:57] (aktuell) – [Calculation of the Exponents] pka | ||
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| ====== Scale-Up Module ====== | ====== Scale-Up Module ====== | ||
| + | The scale-up module serves for the transfer of processes to machines with larger and smaller diameters respectively. Starting from a so called model process, the geometry of the master design and the respective process parameters are calculated on the basis of transfer rules. The starting point of the scale-up is a user-defined complete process. A scale-up of processes with more than one feeding barrel is possible with SIGMA. | ||
| - | | + | ===== Selection of the Target Machine ===== |
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| - | The scale-up module serves for the transfer | + | The Scale-up button opens the dialogue box shown in the illustration. The upper part of this box displays the machine data for the output process. An Explorer window allows you to select the machine to which the current process is to be transferred. |
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| + | The procedure for selecting the elements is defined in the lower third of the dialogue box. The default setting is ‘Use existing elements only’. This ensures that only the screw and cylinder elements stored in the element library are used. With this procedure, the quality of the transfer depends heavily on the number of elements available in the library. | ||
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| + | Alternatively, | ||
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| + | In the latter case, the generation | ||
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| + | * Equal number of kneading discs in main and model machine | ||
| + | * Constant staggering angle α | ||
| + | * Constant staggering angle and constant number of discs | ||
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| + | Especially energy input, melting behavior, and degree of mixing are strongly influenced by the chosen law. The results have to be evaluated by the user for the unique | ||
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| + | ===== Setting of the Exponents ===== | ||
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| + | After pressing the // | ||
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| + | The pitch depth exponent (PSI) is calculated | ||
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| + | SIGMA is programmed so that the L/D ratio of the model design is adopted as a suggestion for the main design. Nevertheless, | ||
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| + | It is also possible to consider the L/D ratio of the main design as a free variable. This is done by selecting the // | ||
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| + | If you specify an L/D ratio for the main design or accept the value suggested by SIGMA, you must select a boundary condition for the transfer of the operating point in the Speed Exponent (CHI) column. There are five options to choose from here: | ||
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| + | * Constant specific energy input (s. [[en: | ||
| + | * Constant heat flow density (s. [[en: | ||
| + | * Constant shear rate | ||
| + | * Constant barrel temperature | ||
| + | * Constant residence time (s. [[en: | ||
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| + | The choice of boundary condition has a significant influence on speed and throughput. However, the values to be achieved are also a function of the PSI depth of cut exponent. For this reason, the selected transfer conditions must be assessed on a case-by-case basis. However, it can be said that in practice, process transfer | ||
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| + | It should be noted that as the throughput increases, so do the requirements for heat transfer. This can lead to large temperature inhomogeneities in the melt, which may result in a significant increase in the mass temperature. | ||
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| + | {{ :en:scale-up_modul: | ||
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| + | ===== Calculation of the Exponents ===== | ||
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| + | By activating the **Next** button an iterative calculation of the model law exponents is carried out. On the basis of these exponents, at first the process | ||
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| + | ===== Calculation | ||
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| + | Subsequently, | ||
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| + | All steps carried out during the configuration of the screw and the barrel | ||
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| + | After confirming again, a preview of the simulation results is shown in a multi-graphic form (see figure). This enables a first comparison of both processes. Additionally, | ||
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| + | ===== Complete ===== | ||
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| + | After closing the preview, the newly generated process can be saved by specifying a name and by pressing the **Finish** button afterwards. | ||
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| + | The generated process is independent and can be loaded, changed and saved anew like any SIGMA process. | ||