Unterschiede
Hier werden die Unterschiede zwischen zwei Versionen angezeigt.
| Beide Seiten der vorigen RevisionVorhergehende ÜberarbeitungNächste Überarbeitung | Vorhergehende Überarbeitung | ||
| en:grafische_darstellung_der_ergebnisse:leistung [2025/01/20 10:19] – cschall | en:grafische_darstellung_der_ergebnisse:leistung [2025/09/05 10:26] (aktuell) – [Analysis of the performance curve] neelest | ||
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| ======Power profile ====== | ======Power profile ====== | ||
| - | Under the graphical representation | + | -> [[en: |
| + | |||
| + | ===== Presentation | ||
| {{ : | {{ : | ||
| - | =====Performance parameters in the graphic===== | + | =====Interpretation of the curves===== |
| - | The graph shows various important performance values that are decisive for the operation and efficiency of the screw extruder. The calculations start from the first heating zone and cover the entire length of the screw. The following performance parameters are recorded in the graphical representation: | + | |
| - | * **Drive power**: The drive power represents the mechanical energy provided by the extruder' | + | * **Red curve**: The red curve represents the drive power from the screw shaft to the corresponding position in the curve. The drive power therefore starts at 0 kW at the screw shaft. The total drive power of the screw is represented by the value at the tip of the screw. |
| - | * **Torque**: Torque is another critical parameter that describes | + | * **Blue curve**: The blue curve represents |
| - | * **Heating power**: | + | |
| - | * **Total power**: The total power is the sum of the various power contributions that are introduced into the process both mechanically | + | |
| - | * **Specific drive power**: | + | |
| - | =====Start of the power calculation===== | + | ===== Interpretation |
| - | The power calculation usually starts at the first heating zone of the screw extruder. | + | * **Drive power**: |
| - | =====Characteristics | + | * **Torque**: The torque results from the drive power and the screw speed |
| + | * **Specific drive power**: The specific drive power is a characteristic value that relates | ||
| + | * **Heating power**: | ||
| + | * **Total power**: The total power is the sum of the various | ||
| - | The totalised power curve along the length of the screw generally shows a continuous increase in the amount of energy applied to the material. Typical features | + | ===== Analysis |
| - | * A moderate increase in output in the area of the first zones in which the material | + | * **Power curve (red curve)**: The performance curve shows which screw zone is feeding which power into the plastic. The power increases more in the melting |
| - | * A stronger increase in power in the areas where the material is melted. This is the area where both the mechanical shear energy and the heating energy increase significantly to support | + | * **Heat flux density (blue curve)**: The heat flux density curve shows the heating or cooling power that occurs along the screw. High heat flux densities should |
| - | * Plateaus or stabilisation zones can occur when the heating | + | * **Drive power and torque**: It must be checked whether the potentially used extruder has a sufficiently powerful drive unit. The torque is also relevant for calculating the [[spannungsanalyse|Screw strength]]. |
| - | * A flattening of the curve can be observed | + | * **Specific drive power**: The specific drive power represents |
| ===Further topics=== | ===Further topics=== | ||
| Zeile 40: | Zeile 41: | ||
| * [[en: | * [[en: | ||
| * [[en: | * [[en: | ||
| + | * [[faserlaengenabbau|]] | ||
| + | * [[faserlaengenverteilung|]] | ||
| + | * [[spannungsanalyse|]] | ||
| + | * [[kennlinienfeld|]] | ||
| + | * [[entgasung|]] | ||
| + | * [[zykluszeit|]] | ||
| * [[en: | * [[en: | ||
| * [[en: | * [[en: | ||