Rotor refiner plate element for counter-rotating refiner having curved bars and serrated leading edges
US-2017275819-A1 · Sep 28, 2017 · US
US10927499B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10927499-B2 |
| Application number | US-201816186803-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 12, 2018 |
| Priority date | Nov 14, 2017 |
| Publication date | Feb 23, 2021 |
| Grant date | Feb 23, 2021 |
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A refiner segment for a refiner comprising refining zones provided with a pattern of bars arranged at a respective pumping feeding angle within a respective refining zone, and intermediate grooves between the bars, and dams extending between the bars and protruding above the surface of the grooves. The dams are arranged at least at the ends of at least some of the bars at the borders between the refining zones. Openings are formed at the borders between the refining zones, radially outside of the dams, where the openings are arranged such that a respective angle is formed between an imaginary line connecting the openings and a line which is perpendicular to a radius of the refiner segment, where the angle is directed towards the inner edge of the refiner segment, thereby allowing steam to pass through the openings and flow towards an inner edge of the refiner segment.
Opening claim text (preview).
The invention claimed is: 1. A refiner segment arrangeable on a refiner element in a refiner intended for refining fibrous material, the refiner segment comprising: a radially inner edge; a radially outer edge; a plurality of refining zones configured to refine the fibrous material and having at least one border positioned between adjacent refining zones; a plurality of bars comprising respective bars arranged at a respective feeding angle within a respective refining zone, the feeding angle changing between refining zones such that a refining zone at the radially inner edge has a larger feeding angle than a refining zone at the radially outer edge; a plurality of intermediate grooves between the plurality of bars; a plurality of dams extending between at least some of the respective bars and protruding above a surface of the plurality of intermediate grooves; and a plurality of openings comprising respective openings within a respective refining zone; wherein the refiner segment is configured to travel in a first circumferential direction corresponding to an intended rotational direction of the refiner element when the refiner segment is arranged on the refiner element, wherein the respective feeding angle is formed between a line extending along the respective bars in a direction opposite the first circumferential direction and a line extending along a radius of the refiner segment through the respective bars, wherein the plurality of dams are arranged at radially outer ends of at least some of the plurality of bars at the at least one border positioned between adjacent refining zones such that the plurality of openings are formed at the at least one border and positioned radially outside of the plurality of dams with respect to the radially inner edge of the refiner segment, wherein the respective openings are arranged such that a respective angle is formed between an imaginary line connecting the respective openings at a radially inner border of the respective refining zone, and a line which is perpendicular to the radius of the refiner segment, where the respective angle is directed towards the inner edge of the refiner segment. 2. The refiner segment according to claim 1 , wherein the plurality of dams are inclined such that a trailing end, with respect to the first circumferential direction of the refiner segment, of a dam is arranged closer to the inner edge of the refiner segment than a leading end of the dam. 3. The refiner segment according to claim 1 , wherein the dams are arranged within a respective refining zone at a second respective angle larger than 90° relative to the bars. 4. The refiner segment according to claim 3 , wherein the second respective angle between the dams and the bars is between 90° and 110°. 5. The refiner segment according to claim 1 , wherein the respective feeding angle and the respective angle increase towards the inner edge of the refiner segment for each respective refining zone. 6. The refiner segment according to claim 5 , wherein each respective feeding angle is between 5° and 45°. 7. The refiner segment according to claim 5 , wherein each respective angle is between 5° and 45°. 8. The refiner segment according to claim 1 , wherein a radially inner end of every other bar is connected to a dam. 9. The refiner segment according to claim 1 , wherein at least some of the dams have a smaller height than the bars. 10. The refiner segment according to claim 1 , wherein the plurality of intermediate grooves and the plurality of openings comprise a free passage through all of the plurality of refining zones for steam to flow towards the radially inner edge of the refiner segment. 11. A refiner element for refining fibrous material, comprising at least one refiner segment according to claim 1 . 12. A refiner for refining fibrous material, comprising at least one refiner segment according to claim 1 .
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