Claims
- 1. A method of refining a stock material, the method comprising the steps of:
- providing a pair of refining discs which confront one another, at least a first of the refiner discs having an axis of rotation;
- forming a plurality of refiner bars on each of the confronting discs, the refiner bars being axially protruding from the discs and radially extending along the confronting surfaces and being curved relative to a radial direction;
- rotating the first refiner disc in a first rotary direction;
- passing the stock material between the refiner discs in a direction flowing away from the axis of rotation; and
- alternately pumping the stock material radially outward away from the axis of rotation and then holding the flow of stock material from flowing radially outward between the discs.
- 2. The method according to claim 1, wherein the step of passing further comprises:
- passing the stock material between opposed first annular sections of the refiner discs, wherein at least one of the opposed first annular sections includes a plurality of first refiner bar segments having the refiner bars curved in the first rotary direction and a plurality of second refiner bar segments having the refiner bars curved opposite the first rotary direction and wherein the plurality of first and second refiner bar segments are alternatingly spaced around the at least one first annular section.
- 3. The method according to claim 2, wherein the step of passing further comprises:
- passing the stock material between opposed second annular sections which are disposed radially outward from the first annular sections, wherein at least one of the opposed second annular sections includes a plurality of third refiner bar segments having the refiner bars curved in the first rotary direction and a plurality of fourth refiner bar segments having the refiner bars curved opposite the first rotary direction and wherein the plurality of third and fourth refiner bar segments are alternatingly disposed around the at least one second annular section.
- 4. The method according to claim 2, wherein the step of forming further comprises:
- forming the refiner bars having a predetermined curvature so that the predetermined curvature increases relative to the radial direction moving away from the axis of rotation, and wherein the step of alternately pumping and holding is conducted via the predetermined curvature of the refiner bars.
- 5. The method according to claim 1, wherein the step of passing further comprises:
- passing the stock material between opposed first annular sections of the refiner discs, wherein each of the opposed first annular sections includes a plurality of first refiner bar segments having the refiner bars curved in the first rotary direction and a plurality of second refiner bar segments having the refiner bars curved opposite the first rotary direction and wherein the plurality of first and second refiner bar segments are alternatingly spaced around each of the opposed annular sections.
- 6. The method according to claim 5, wherein the step of passing further comprises:
- passing the stock material between opposed second annular sections which are disposed radially outward from the first annular sections, wherein each of the opposed second annular sections includes a plurality of third refiner bar segments having the refiner bars curved in the first rotary direction and a plurality of fourth refiner bar segments having the refiner bars curved opposite the first rotary direction and wherein the plurality of third and fourth refiner bar segments are alternatingly disposed around each of the second annular sections.
- 7. The method according to claim 5, wherein the step of passing further comprises:
- passing the stock between refiner bars having a predetermined curvature so that the predetermined curvature increases relative to the radial direction moving away from the axis of rotation, and wherein the step of alternately pumping and holding is conducted via the predetermined curvature of the refiner bars.
- 8. The method according to claim 1, further comprising the step of:
- rotating a second refiner disc of the pair of refiner discs in a second rotary direction opposite the first rotary direction about an axis of rotation concentric with the axis of rotation of the first refiner disc.
- 9. The method according to claim 1, wherein the step of alternately pumping and holding is conducted via a predetermined curvature of the plurality of curved refiner bars.
- 10. The method according to claim 9, wherein the step of forming further comprises:
- forming the predetermined curvature of the refiner bars so that the predetermined curvature increases relative to the radial direction moving away from the axis of rotation.
- 11. The method according to claim 1, wherein the step of passing further comprises:
- feeding a wood pulp stock material to the housing to be refined for the process of papermaking.
- 12. A method of refining a stock material, the method comprising:
- delivering the stock material to a housing of a disc refiner via a stock inlet, the disc refiner having an auger which rotates on an axis of rotation and moves the stock material axially toward and then radially outward to a pair of opposed refiner discs mounted concentrically relative to the axis of rotation adjacent one end of the auger;
- providing a plurality of curved refiner bars axially protruding from and radially extending on each of the pair of refiner discs, the refiner bars of each refiner disc facing one another and curved relative to a radial direction; and
- rotating at least one the refiner discs in a first rotational direction relative to the other refiner disc such that the stock material is alternately pumped radially outward from the auger between the refiner discs and then held from flowing radially outwardly.
- 13. The method according to claim 12, further comprising the step of:
- rotating each of the refiner discs relative to one another in opposite directions.
- 14. The method according to claim 12, wherein the step of providing further comprises:
- providing a first annular refiner disc section on each of the refiner discs, the first annular disc sections disposed opposite and confronting one another and having thereon a plurality of first refiner bar segments with the refiner bars curved in the first rotational direction and a plurality of second refiner bar segments with the refiner bars curved away from the first rotational direction, the first and second refiner bar segments alternately spaced around each of the refiner discs.
- 15. The method according to claim 14, wherein the step of providing further comprises:
- providing a second annular refiner disc section on each of the refiner discs spaced radially outward from the first annular disc sections, the second annular disc sections disposed opposite and confronting one another and having thereon a plurality of third refiner bar segments with the refiner bars curved in the first rotational direction and a plurality of fourth refiner bar segments with the refiner bars curved away from the first rotational direction, the third and fourth refiner bar segments alternately spaced around each of the refiner discs.
- 16. The method according to claim 12, further comprising the step of continuously overlapping the curved refiner bars of the refiner discs as at least one of the refiner discs rotates, and pumping the stock material, urging it radially outwardly, by movement of the overlapping curved refiner bars.
- 17. The method according to claim 12, further comprising the step of generating a varying refining angle from the curved refiner bars, wherein the varying refining angle decreases direct hits on the stock material, and wherein the curved refiner bars, the varying refining angle, and the decreased direct hits lower the energy consumption of the refiner for stock having a particular pulp quality.
- 18. A method of refining a stock material, the method comprising the steps of:
- mounting a first refiner disc within a refiner housing rotatable on an axis in a first rotational direction, the first refiner disc having a plurality of first refiner bar segments axially protruding from one face and radially extending along the one face and curving away from the first rotational direction and having a plurality of second refiner bar segments axially protruding from the one face and radially extending along the one face and curving in the first rotational direction, the first and second refiner bar segments alternately spaced around the first refiner disc;
- mounting a second refiner disc within the refiner housing rotatable on an axis in a second rotational direction opposite the first rotational direction, the second refiner disc having a plurality of third refiner bar segments axially protruding from one face and radially extending along the one face and curving in the second rotational direction and having a plurality of fourth refiner bar segments axially protruding from the one face and radially extending along the one face and curving in the first rotational direction, the third and fourth refiner bar segments alternately spaced around the second refiner disc and confronting and spaced from the first and second refiner bar segments of the first refiner disc;
- feeding a stock material to be refined into the housing between the first and second refiner discs;
- rotating at least the first refiner disc in the first rotational direction; and
- alternately pumping the stock material radially outwardly from the axis and then holding the stock material from flowing radially outwardly as the first refiner disc rotates.
- 19. The method according to claim 18, further comprising the step of:
- forming the curved refiner bar segments with a curvature that increases moving away from the axis of the refiner discs.
- 20. The method according to claim 18, further comprising the step of:
- rotating the second refiner disc in the second rotational direction.
- 21. The method according to claim 20, further comprising the step of rotating the first refiner disc and rotating the second refiner disc such that there is relative rotation between the first refiner disc and the second refiner disc.
- 22. The method according to claim 18, further comprising the step of forming the curved refiner bar segments of the first refiner disc and the second refiner disc with a radius of curvature that increases moving radially away from the axis of the refiner discs such that the step of alternately pumping and holding is conducted via the curvature of the refiner bar segments.
- 23. The method according to claim 22 wherein the radius of curvature of the curved refiner bar segments of one section of the first refiner disc is the same as the radius of curvature of the curved refiner bar segments of one section of the second refiner disc.
- 24. A method of refining a stock material comprising:
- a) providing a pair of refining discs that 1) have an inner periphery, 2) an outer periphery, and 3) oppose one another with i) at least one of the discs having an axis of rotation, ii) both of the discs having a plurality of upraised, spaced apart and generally radial refiner bars, and iii) wherein for at least one of the discs the bars have a first region wherein the refiner bars are curved toward a direction of rotation of the refining disc having the axis of rotation, and have a second region wherein the refiner bars are curved away from the direction of rotation of the refining disc having the axis of rotation;
- b) introducing the stock material between the refining discs; and
- c) rotating one of the discs relative to the other of the discs such that as refiner bars of one of the refining discs pass by the refiner bars of the other of the refining discs, the angle formed therebetween increases as the refiner bars extend from adjacent the inner periphery to adjacent the outer periphery.
- 25. The method according to claim 24 wherein both of the opposed refining discs have a first region wherein the refiner bars are curved toward the direction of rotation and have a second region wherein the refiner bars are curved away from the direction of rotation.
- 26. The method according to claim 25 wherein during step c) the steps further comprising 1) pumping the stock material radially outwardly when the first region of the bars of one of the refining discs generally overlies the second region of the other of the refining discs, and 2) retarding the radial outward flow of the stock material when the first region of the bars of one of the refining discs generally overlies the first region of the bars of the other of the refining discs.
- 27. The method according to claim 26 wherein during step c) the step further comprising retarding the radial outward flow of the stock material when the second region of the bars of one of the refining discs generally overlies the second region of the bars of the other of the refining discs.
- 28. The method according to claim 26 wherein the refiner bars in one of the regions of one of the refining discs has the same curvature as the refiner bars in one of the regions of the other of the refining discs.
- 29. The method according to claim 28 wherein both of the refining discs rotate during step c).
- 30. The method according to claim 25 wherein during step c) the steps further comprising 1) pumping the stock material radially outwardly when the region of bars of one of the refining discs that are curved in one direction relative to the direction of rotation generally overlies the region of bars of the other of the refining discs that are curved in an opposite direction relative to the direction of rotation, and 2) retarding the radial outward flow of the stock material when one of the regions of the bars of one of the refining discs i) generally overlies and ii) is curved in the same direction as one of the regions of the bars of the other of the refining discs.
- 31. The method according to claim 25 wherein both of the opposed refining discs are comprised of annular disc segments with each of the disc segments having a first region wherein the refiner bars are curved toward the direction of rotation and having a second region wherein the refiner bars are curved away from the direction of rotation.
Parent Case Info
This application is a continuation of U.S. application Ser. No. 08/557,510, filed Nov. 14, 1995, which issued Oct. 20, 1998, as U.S. Pat. No. 5,823,453.
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Feb 1982 |
JPX |
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Continuations (1)
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Number |
Date |
Country |
Parent |
557510 |
Nov 1995 |
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