This application is a U.S. national phase application of PCT/FI2021/050423 filed on Jun. 7, 2021, and claims priority on FI 20205607, filed Jun. 12, 2020, the disclosures of which are incorporated by reference herein.
Not applicable.
The invention relates to refiners for refining fibrous material and especially to a blade segment for a refiner for refining fibrous material.
Refiners used for refining fibrous material, such as refiners used for manufacturing mechanical pulp or in any low consistency refining, comprise typically two refining elements opposite to each other and turning relative to each other, i.e., one or both of them is/are rotating. The refining elements comprise refining surfaces provided with blade bars and blade grooves therebetween, the blade bars being intended to defiber and refine the material to be refined and the blade grooves being intended to convey the material to be refined forward along the refining surfaces. The refining surface of the refining element is typically formed of several blade segments fastened to a body of the respective refining element. The complete refining surface of the refining element is thus formed of the refining surfaces of several blade segments fastened next to each other in the refining element.
EP-publication 3401439 B1 discloses a blade segment comprising, on a front surface thereof, a refining surface comprising blade bars and blade grooves therebetween. The blade segment of EP3401439 B1 comprises at least at one side edge of the blade segment openings extending through a whole thickness of the blade segment and towards to the opposite side edge. The openings may be applied for supplying the fibrous material to be refined into a refining chamber between the oppositely positioned refining elements of the refiner, as well as to discharge the fibrous material already refined in the refining chamber out of the refining chamber.
An object of the present invention is to provide a novel blade segment for a refiner for refining fibrous material, as well as a novel refiner for refining fibrous material.
The invention is based on the idea of providing a height difference on a side of the background surface of the blade segment between the background surface at the first side edge and the background surface at the second side edge at least at the opening of the blade segment.
The height difference on the side of the background surface of the blade segment forms or provides a guide element or a guide surface that intensifies the feed of the material to be refined through the opening to the refining surface of the blade segment into the refining chamber of the refiner.
For the sake of clarity, the figures show some embodiments of the invention in a simplified manner. Like reference numerals identify like elements in the figures.
The refiner 1 of
The refiner 1 further comprises a rotatable refining element 6, i.e., a rotor 6, of the refiner 1. The rotor 6 comprises a hub 7. The rotor 6 further comprises two or more rotor blade segments 8 supported to the hub 7, each rotor blade segment 8 comprising blade bars and blade grooves therebetween. The blade bars and the blade grooves in each rotor blade segment 8 form a refining surface 9 of the respective blade segment 8, the refining surface 9 of each rotor blade segment 8 thereby providing a part of a refining surface of the rotor 6. A complete refining surface of the rotor 6 is formed of the refining surfaces 9 of a necessary number of the blade segments 8 fastened next to each other in the rotor 6 so that the complete refining surface 9 extending over the whole circumference of the rotor 6 is provided. For the sake of clarity, both the refining surface of each single rotor blade segment 8 as well as the complete refining surface of the rotor 6 are herein denoted with the same reference sign 9.
The hub 7 of the rotor 6 is connected to a driving motor 10 by a shaft 11 so that the rotor 6 can be rotated relative to the stator 3 in a direction of arrow RD, for instance, the arrow RD thus indicating an intended rotation direction RD of the rotor 6.
The refiner 1 may also comprise a loading device which, for the sake of clarity, is not shown in
The fibrous material to be refined is fed into the refiner 1 via a feed channel 13 in a manner shown by arrow F. In one embodiment most of the fibrous material fed into the refiner 1 passes, in a manner schematically shown by arrows P, through openings 14 formed in the rotor blade segments 8 into the refining chamber 12, wherein the fibrous material is to be refined. Furthermore, most of the already refined fibrous material is, in turn, discharged through openings 15 formed in the stator blade segments 4 into an intermediate space 16 between the frame 2 of the refiner 1 and the stator 3, wherefrom the refined material is removed via a discharge channel 17 from the refiner 1, as schematically shown by arrow D.
Since the space between the rotor 6 and the frame 2 of the refiner 1 of
In the embodiment of
It is emphasized that in addition to the conical refiner disclosed above the blade segment of the solution described herein may be applied in other kinds of conical refiners too. In addition to conical refiners the blade segment of the solution described herein is applicable to disc refiners and cylindrical refiners and to refiners comprising both a conical portion and a disc portion, as well.
The blade segment 4, 8 comprises an inner end edge 20 or a first end edge 20 to be directed towards the inner end 18 of the refining element 3, 6 having the smaller diameter. The blade segment 4, 8 further comprises an outer end edge 21 or a second end edge 21 to be directed towards the outer end 19 of the refining element 3, 6 having a larger diameter. The blade segment 4, 8 has a longitudinal axis extending from the inner end edge 20 to the outer end edge 21 and a width direction transversal to the longitudinal axis, the longitudinal axis of the blade segment being shown schematically by an arrow LA. When mounted in a refiner the longitudinal axis LA provides an axial direction of the refiner in the case of conical and cylindrical refiners and a radial direction of the refiner in the case of disc refiners.
The blade segment 4, 8 further comprises a first side edge 22 or a leading side edge 22 extending from the inner end edge 20 of the blade segment 4, 8 up to the outer end edge 21 of the blade segment 4, 8 and providing the side edge of the blade segment 4, 8 which is the first to meet an edge of a counter blade segment during rotation of the rotor 6, thus it provides the side edge of the blade segment to be directed towards the intended rotation direction RD of the rotor 6. The blade segment 4, 8 further comprises a second side edge 23 or a trailing side edge 23 opposite to the first side edge 22 in the width direction of the blade segment 4, 8. The second side edge 23 extends from the inner end edge 20 of the blade segment 4, 8 up to the outer end edge 21 of the blade segment 4, 8 and provides the side edge of the blade segment 4, 8 which is the last to meet the edge of the counter blade segment during rotation of the rotor 6, thus it provides the side edge of the blade segment to be directed towards the direction that is opposite to the intended rotation direction RD of the rotor 6. The inner 20 and the outer 21 end edges together with the first 22 and second 23 side edges define a periphery of the blade segment 4, 8.
The blade segment 4, 8 comprises a body 24 having a front surface 25 to be directed towards the refining chamber 12 of the refiner 1 and a background or rear surface 26 to be directed towards the hub 7 of the rotor 6, as shown for example in
The blade segment of the solution disclosed herein comprises an opening 14, 15 at least on one side edge 22, 23 thereof. The opening 14, 15 may have the form of an indent as schematically shown in
In the blade segment 4, 8 of
Between the shoulder members 32, 34 on the first side edge 22 of the blade segment 8a, 8b the first side edge 22 comprises a number of longer edge portions 22a connected by elbows 22b therebetween, i.e., there is the elbow 22b between two successive longer edge portions 22a. The longer edge portions 22a and the elbows 22b are arranged to deviate from the direction of the longitudinal axis LA of the blade segment 8a, 8b such that a substantially continuous slit-like or bay-like opening 14 is arranged at the first side edge 22 of the blade segment 8a, 8b.
In the embodiment of
Similar longer edge portions and elbows as disclosed above may also be applied on the second side edge 23 of the blade segment 23, whereby the slit-like or bay-like openings 14 on the first side edge 22 and/or the second side edge 23 of the blade segments 8a, 8b provide the substantially continuous slit-like or bay-like openings 14, having a form of a kind of zig-zag, between the neighboring blade segments 8a, 8b in the rotor 6.
Similar construction of the blade segments as disclosed in
The embodiments of the blade segments 4, 4a, 4b, 8, 8a, 8b of
Referring to
In the embodiment of
In the embodiment of
The projection 30 disclosed provides on the side of the background or rear surface 26 of the blade segment 8, 8a, 8b a height difference between the background surface 26 at the first side edge 22 of the blade segment 8, 8a, 8b and the background surface 26 at the second side edge 23 of the blade segment 8, 8a, 8b at the opening 14, and preferably at least at each opening 14, of the blade segment 8. In other words, the projection 30 disclosed provides at the opening 14 on the side of the background surface 26 of the blade segment 8, 8a, 8b a height difference between the background surface 26 at the first wall 14a of the opening 14 and the background surface 26 at the second wall 14b of the opening 14, and preferably at least at each opening 14, of the blade segment 8.
The height difference between the background surface 26 at the first side edge 22 and the background surface 26 at the second side edge 23 of the blade segment 8, 8a, 8b is considered in respect of a reference level provided by a level or plane of the background surface 26 the blade segment 8, 8a, 8b not taking into account possible protrusions in the body 24 of the blade segment 8, 8a, 8b intended for example for supporting the blade segment 8, 8a, 8b to the hub 7 of the rotor 6 or cavities or pockets in the body 24 of the blade segment 8, 8a, 8b intended to lighten a structure of the body 24 of the blade segment 8, 8a, 8b.
The height difference provided by the projection 30 forms on the side of the background surface 26 of the blade segment 8, 8a, 8b a wing-like structure or a guide element or a guide surface that during operation of the refiner intensifies the feed of the material to be refined through the opening 14 from the background surface 26 side of the blade segment to the front surface 25 side of the blade segment, i.e., to the refining surface 9 of the blade segment 8, 8a, 8b or into the refining chamber 12 between the stator 3 and the rotor 6 by guiding the flow of material towards the opening 14. The feed direction of the material to be refined inside the rotor 6 is shown schematically with an arrow FI.
The improved flow of the material to be refined into the refining chamber 12 has the effect that the material to be refined does not plug the openings 14, which, in turn, has the effect that the overall refining result is more constant. Furthermore, the operating pressure of the refiner is maintained better such that there is higher pressure after the refiner than previously, which provides higher capacity in the refining. The higher capacity to be achieved means also that the same capacity as earlier may be obtained even if an open area of the opening 14 would be reduced. This, in turn, makes it possible to increase a cutting-edge length of the blade bars 27 of the blade segment 8, 8a, 8b for improving especially hardwood refining.
According to an embodiment, at least one side edge of the blade segment is at least on a portion of its thickness direction inclined towards or away from the neighboring wall 14a, 14b at the opening 14 of the blade segment. According to this embodiment, the first side edge 22 of the blade segment 8, 8a, 8b, i.e., the first wall 14a of the opening 14, and/or the second side edge 23 of the blade segment 8, 8a, 8b, i.e., the second wall 14b of the opening 14, are/is at least on a portion of its thickness direction inclined at least at the opening(s) 14 of the blade segment 8, 8a, 8b.
In the embodiment of
According to an embodiment the side edges of the blade segment are at least on a portion of their thickness direction inclined at substantially different angles from each other at least at each opening of the blade segment. According to this embodiment, the first side edge 22 of the blade segment 8, 8a, 8b, i.e., the first wall 14a of the opening 14, and the second side edge 23 of the blade segment 8, 8a, 8b, i.e., the second wall 14b of the opening 14, are at least on a portion their thickness direction inclined at substantially different angles from each other at least at each opening 14 of the blade segment 8, 8a, 8b.
According to this embodiment the inclination angle of the first side edge 22 and the inclination angle of the second side edge 23 of the blade segment 8, 8a, 8b are at least on a portion of the thickness direction of the side edges 22, 23 different from each other at least at each opening 14 of the blade segment 8, 8a, 8b, thus deviating from the embodiment of
The effect of this embodiment is a change in a cross-sectional open area of the opening 14 along at least a portion of the wall 14a, 14b. This provides further means to affect the flow of the material to be refined through the opening 14 into the refining chamber 12.
According to an embodiment at least one side edge of the blade segment is curved at least on a portion of its thickness direction at least at each opening of the blade segment. According to this embodiment, the first side edge 22 of the blade segment 8, 8a, 8b, i.e., the first wall 14a of the opening 14, and/or the second side edge 23 of the blade segment 8, 8a, 8b, i.e., the second wall 14b of the opening 14, are/is at least on a portion of its thickness direction curved at least at each opening 14 of the blade segment 8, 8a, 8b.
In the embodiment of
This curved arrangement of the blade segment side edges 22, 23 in
In the embodiment of
The bevel 31 may for example be formed by removing the material of the blade segment 8, 8a, 8b on the side of the background surface 26 at the second side edge 23 of the blade segment 8, 8a, 8b at least at each opening 14. According to another example, the bevel 31 may be formed by excluding the material of the blade segment 8, 8a, 8b on the side of the background surface 26 at the second side edge 23 of the blade segment 8, 8a, 8b at least at each opening 14.
The bevel 31 also provides on the side of the background surface 26 of the blade segment 8, 8a, 8b the height difference between the background surface 26 at the first side edge 22 of the blade segment 8, 8a, 8b and the background surface 26 at the second side edge 23 of the blade segment 8, 8a, 8b at least at each opening 14 of the blade segment 8, 8a, 8b such that the first side edge 22 of the blade segment 8, 8a, 8b extends farther towards the direction where the background surface 26 of the blade segment 8, 8a, 8b faces to than the second side edge 23 of the blade segment 8, 8a, 8b. Similarly to the embodiments of
Referring back to the feed groove 29 and
In the embodiment of the blade segment of
According to an embodiment of the blade segment, the feed groove is curved along its direction of extension. The second end of the curved feed groove may be either at a same or a different position in the longitudinal direction of the blade segment, denoted by the longitudinal axis LA of the blade segment than the first end of the feed groove. The advantageous effect of this embodiment is that the material to be fed onto the refining surface of the blade segment may be directed substantially freely at desired portions of the refining surface.
Referring back to the feed groove 29 and the embodiment of
According to an embodiment into opposite directions directed interlaced ends of the interlaced blade bars comprise downwards descending sloping ends arranged to form the feed groove opening upwards.
The interlacing of the blade bars at the feed groove provides at the feed groove a strong blade bar configuration wherein the interlaced blade bars give support to each other, thereby preventing a buckling of the blade bars at the feed groove.
It will be obvious to a person skilled in the art that, as the technology advances, the inventive concept can be implemented in various ways. The invention and its embodiments are not limited to the examples described above but may vary within the scope of the claims.
Number | Date | Country | Kind |
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20205607 | Jun 2020 | FI | national |
Filing Document | Filing Date | Country | Kind |
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PCT/FI2021/050423 | 6/7/2021 | WO |
Publishing Document | Publishing Date | Country | Kind |
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WO2021/250320 | 12/16/2021 | WO | A |
Number | Name | Date | Kind |
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1329742 | Bausman | Feb 1920 | A |
2035994 | Sutherland, Jr. | Mar 1936 | A |
11142869 | Sjostrom et al. | Oct 2021 | B2 |
20070084952 | Sjostrom | Apr 2007 | A1 |
20170191218 | Tichy et al. | Jul 2017 | A1 |
20180327970 | Sjöström | Nov 2018 | A1 |
Number | Date | Country |
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3401439 | Oct 2019 | EP |
Entry |
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International Search Report for PCT/FI2021/050423 dated Sep. 3, 2021. |
Written Opinion of the International Searching Authority for PCT/FI2021/050423 dated Sep. 3, 2021. |
Number | Date | Country | |
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20230243098 A1 | Aug 2023 | US |