Thread Draw-Off Nozzle having Notches Extending Radially to the Nozzle Bore
US-2018320292-A1 · Nov 8, 2018 · US
US10669649B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10669649-B2 |
| Application number | US-201615773582-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 2, 2016 |
| Priority date | Nov 6, 2015 |
| Publication date | Jun 2, 2020 |
| Grant date | Jun 2, 2020 |
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A thread draw-off nozzle for an open-end rotor spinning device includes a front surface, a nozzle bore, and a funnel-shaped yarn deflection surface connecting the front surface and the nozzle bore. The front surface adjoins the yarn deflection surface. The front surface and the yarn deflection surface form an effective diameter (D W ) of the thread draw-off nozzle. The effective diameter (D W ) of the thread draw-off nozzle is less than 8 mm, and the yarn deflection surface comprises a radius of curvature (R) of less than 2.5 mm.
Opening claim text (preview).
The invention claimed is: 1. A thread draw-off nozzle for an open-end rotor spinning device, comprising: a front surface; a nozzle bore; a funnel-shaped yarn deflection surface connecting the front surface and the nozzle bore, the front surface adjoining the yarn deflection surface; the front surface and the yarn deflection surface forming an effective diameter (D W ) of the thread draw-off nozzle; wherein the effective diameter (D W ) of the thread draw-off nozzle is less than 8 mm, and the yarn deflection surface comprises a radius of curvature (R) of less than 2.5 mm; and a head diameter (D K ) that is less than 10 mm. 2. The thread draw-off nozzle according to claim 1 , wherein the yarn deflection surface tangentially adjoins the front surface. 3. The thread draw-off nozzle according to claim 1 , wherein the yarn deflection surface comprises a plurality of macrostructures arranged in a radial manner. 4. The thread draw-off nozzle according to claim 3 , wherein the macrostructures comprise notches. 5. The thread draw-off nozzle according to claim 4 , wherein each notch comprises a radially outer notch inlet and a radially inner notch outlet, the radially inner notch outlets extending into the nozzle bore. 6. The thread draw-off nozzle according to claim 4 , wherein each notch comprises an inlet wall and a baffle wall, wherein the baffle wall is steeper than the inlet wall relative to a notch bottom arranged between the inlet wall and the baffle wall. 7. The thread draw-off nozzle according to claim 4 , wherein each notch comprises an inlet wall and a baffle wall, each notch further comprising a notch bottom arranged between the inlet wall and the baffle wall and comprising a width (B) of between 0.16 mm and 0.22 mm. 8. The thread draw-off nozzle according to claim 7 , wherein an angle (β) of the baffle wall to a center notch plane is between 32.5° and 47.5°. 9. The thread draw-off nozzle according to claim 7 , wherein a first angle (β 1 ) of a first part of the inlet wall or first part of the baffle wall to a center notch plane is between 32.5° and 47.5°, and a second angle (β 2 ) of a second part of the inlet wall or the baffle wall to the first part is between 10° and 20°. 10. The thread draw-off nozzle according to claim 5 , wherein the yarn deflection surface comprises, at an area of the radially outer notch inlets, a circumferential recess. 11. The thread draw-off nozzle according to claim 4 , wherein at least some of the notches comprise an inlet wall and a baffle wall, one or both of the inlet wall and the baffle wall being flat. 12. The thread draw-off nozzle according to claim 4 , wherein some of the notches comprise an inlet wall and a baffle wall, one or both of the inlet wall and the baffle wall is kinked or bent. 13. The thread draw-off nozzle according to claim 4 , wherein each notch comprises an inlet wall and a baffle wall, each notch further comprising a notch bottom arranged between the inlet wall and the baffle wall and comprising a depth (T) of the notch between 0.14 mm and 0.25 mm.
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