Unterschiede
Hier werden die Unterschiede zwischen zwei Versionen angezeigt.
| Beide Seiten der vorigen RevisionVorhergehende ÜberarbeitungNächste Überarbeitung | Vorhergehende Überarbeitung | ||
| en:rueckstromsperren:ring-rueckstrom-sperre [2025/05/05 09:58] – cschall | en:rueckstromsperren:ring-rueckstrom-sperre [2026/06/15 09:02] (aktuell) – cschall | ||
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| Zeile 3: | Zeile 3: | ||
| =====Annular non-return valve===== | =====Annular non-return valve===== | ||
| - | The ring non-return valve (NRV) is a screw component that is only available in PSI. In injection moulding screws, it prevents the molten material from flowing back into the screw during the injection process. The NRV has a three-part design. It consists of the pressure ring, the locking | + | The ring non-return valve (NRV) is a screw component that is only available in PSI. In injection moulding screws, it prevents the molten material from flowing back into the screw during the injection process. The NRV has a three-part design. It consists of the pressure ring, the screw tip and the closing |
| + | |||
| + | The ring non-return valve is generated with default values when the zone is inserted into the screw, in order to provide a dummy geometry without the need for manual input. The values can be changed afterwards as usual. | ||
| **Function** | **Function** | ||
| - | The function of the NRV is basically as follows: During dosing, the material in the screw is conveyed | + | The function of the NRV is basically as follows: During dosing, the material in the screw is conveyed |
| When dosing starts again, the material conveyed forwards by the auger pushes the locking ring forwards again so that the auger chamber can be filled. | When dosing starts again, the material conveyed forwards by the auger pushes the locking ring forwards again so that the auger chamber can be filled. | ||
| Zeile 13: | Zeile 15: | ||
| **Structure** | **Structure** | ||
| - | As mentioned above, the ring non-return valve is basically made up of three parts. In addition to the main components pressure ring, locking | + | As mentioned above, the ring non-return valve is basically made up of three parts. In addition to the main components pressure ring, closing |
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| - | The NRV begins with the design of the pressure ring. Its task is to seal the screw against backflowing material | + | The NRV begins with the design of the pressure ring. Its task is to seal the screw against backflowing material in combination with the closing |
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| - | The design of this cone is of decisive importance for the functionality of the lock, as it forms the sealing surface for the locking | + | The design of this cone is of decisive importance for the functionality of the lock, as it forms the sealing surface for the clsoing |
| - | The centre pieces follow | + | The middle parts are following to the pressure ring. Depending on the original geometry used, it is possible to assemble the middle parts from different individual geometries. |
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| - | The centre piece forms the connection between the pressure ring and the barrier | + | The middle part forms the connection between the pressure ring and the screw tip. Together with the closing |
| - | The centre section | + | The middle part is then followed by the screw tip. It is designed as a wing tip. This allows the melt to flow through the tip during dosing when the locking ring is in the front position and into the screw antechamber. It should be designed to allow the melt to flow as freely as possible into the screw antechamber, avoiding dead zones. The rear side of the wings serves as a contact surface for the clsoing |
| - | The number of vanes is freely selectable. It should be selected in combination with the vane geometry so that the resulting flow cross-section is sufficient for the required | + | The number of wings is freely selectable. It should be selected in combination with the wing geometry so that the resulting flow cross-section is sufficient for the required melt throughput. As can be seen in the schematic diagram, the geometry is differentiated according to whether a $R_{Flg}$ is specified or not. |
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| - | The last component is the locking | + | The last component is the closing |
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| - | It initially rests against the locking | + | It initially rests against the screw tip or, when closing, against the pressure |
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