Shredder blade assembly
11794194 · 2023-10-24
Assignee
Inventors
Cpc classification
B02C2210/02
PERFORMING OPERATIONS; TRANSPORTING
B02C18/184
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A shredder blade assembly is disclosed having a rotor configured to be mounted on a rotating shaft, the rotor having opposing faces with a plurality of angled knife receptacles and a plurality of knife inserts mounted within the plurality of knife receptacles. Each knife insert has two opposing faces and each opposing face comprises three cutting edges such that each knife insert has six cutting edges. Only one of the cutting edges is exposed at an outer peripheral edge of the shredder blade assembly during use. The knife inserts are configured to be removed, rotated (and flipped as needed), and re-mounted within the plurality of knife receptacles to expose another of the cutting edges at the outer peripheral edge of the shredder blade assembly. The knife insert may be triangular and mounted to expose one vertex to create a plurality of tooth/hook projections.
Claims
1. A shredder blade, comprising: a rotor comprising: one or more knife receptacles, the one or more knife receptacles being recessed into a first face of the rotor and a second face of the rotor, the first face of the rotor and the second face of the rotor being disposed on opposing sides of the rotor, and the one or more knife receptacles being recessed into the first face of the rotor and the second face in the rotor such that one or more planar surfaces are disposed in the one or more knife receptacles and are offset from the first face of the rotor and the second face of the rotor and into the rotor to a depth substantially equal to a thickness of one or more knife inserts, where at least a portion of the rotor is disposed between one or more knife receptacles recessed into the first face of the rotor and one or more knife receptacles recessed into the second face of the rotor, and one or more knife mounting holes; and the one or more knife inserts being polygonal in shape, and comprising: one or more mounting holes, and a cutting edge disposed on the polygonal shaped one or more knife inserts.
2. The shredder blade of claim 1, wherein the one or more knife inserts are attached to the first face of the rotor via the knife mounting holes in the rotor and the one or more mounting holes in the knife insert.
3. The shredder blade of claim 2, wherein a fastener attaches the knife insert to the first face of the rotor via the knife mounting holes in the rotor and the one or more mounting holes in the knife insert.
4. The shredder blade of claim 1, wherein the one or more knife receptacles are positioned on a first face of the rotor to expose the cutting edge disposed on the one or more knife inserts when the knife insert is attached to the rotor.
5. The shredder blade of claim 4, wherein another of the one or more knife receptacles are positioned on an opposing face of the rotor, which is opposite the first face of the rotor, to expose the cutting edge disposed on the one or more knife inserts when the knife insert is attached to the opposing face of the rotor.
6. The shredder blade of claim 5, wherein the one or more knife receptacles positioned on the first face of the rotor position the knife insert to expose a cutting edge of the knife insert at a position that is staggered from the position of a knife insert attached to the one or more knife receptacles positioned on the opposing face of the rotor.
7. The shredder blade of claim 1, wherein the one or more knife inserts each include a plurality of cutting edges.
8. The shredder blade of claim 7, wherein the plurality of cutting edges are disposed along a first edge of the one or more knife inserts.
9. The shredder blade of claim 8, wherein the plurality of cutting edges are disposed along a first surface of the first edge of the one or more knife inserts.
10. The shredder blade of claim 8, wherein the plurality of cutting edges are disposed along a second surface of the first edge of the one or more knife inserts.
11. The shredder blade of claim 1, wherein at least one of the one or more polygonal shaped knife inserts are shaped to be received into at least one of the knife receptacles on the rotor.
12. The shredder blade of claim 11, wherein the at least one of the knife receptacles on the rotor is disposed to accept the at least one of the one or more polygonal shaped knife inserts in at least a first position and a second position, the second position being a clockwise or counterclockwise rotation of the knife insert.
13. The shredder blade of claim 11, wherein the at least one of the knife receptacles on the rotor is disposed to accept the at least one of the one or more polygonal shaped knife inserts in a first position and a second position, the second position being a flipped rotation of the knife insert.
14. A shredder machine, comprising, a first shredder blade, comprising one or more knife receptacles and one or more knife mounting holes in a first rotor, the one or more knife receptacles being recessed into a first face of the first rotor and a second face of the first rotor, the first face of the first rotor and the second face of the first rotor being disposed on opposing sides of the first rotor, and the one or more knife receptacles being recessed into the first face of the first rotor and the second face in the first rotor such that one or more planar surfaces are disposed in the one or more knife receptacles and are offset from the first face of the first rotor and the second face of the first rotor and into the first rotor to a depth substantially equal to a thickness of one or more knife inserts, where at least a portion of the first rotor is disposed between one or more knife receptacles recessed into the first face of the first rotor and one or more knife receptacles recessed into the second face of the first rotor; a second shredder blade, comprising one or more knife receptacles and one or more knife mounting holes in a second rotor, the one or more knife receptacles being recessed into a first face of the second rotor and a second face of the second rotor, the first face of the second rotor and the second face of the second rotor being disposed on opposing sides of the second rotor, and the one or more knife receptacles being recessed into the first face of the second rotor and the second face in the second rotor such that one or more planar surfaces are disposed in the one or more knife receptacles and are offset from the first face of the second rotor and the second face of the second rotor and into the second rotor to a depth substantially equal to a thickness of one or more knife inserts, where at least a portion of the second rotor is disposed between one or more knife receptacles recessed into the first face of the second rotor and one or more knife receptacles recessed into the second face of the second rotor; the one or more knife inserts being polygonal in shape and comprising one or more mounting holes and a cutting edge disposed on the polygonal shaped one or more knife inserts.
15. The shredder machine of claim 14, wherein the first shredder blade is mounted on a first shaft and the second shredder blade is mounted on a second shaft.
16. The shredder machine of claim 15, wherein the first shredder blade mounted on the first shaft rotates in a first direction and wherein the second shredder blade mounted on the second shaft rotates in a second direction, opposite the first direction.
17. The shredder machine of claim 16, further comprising a third shredder blade comprising one or more knife receptacles and one or more knife mounting holes mounted on the first shaft and separated from the first shredder blade by a spacer, wherein at least a portion of the second shredder blade is disposed between the first shredder blade and the third shredder blade as the second shredder blade rotates on the second shaft.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In order that the manner in which the above-recited and other features and advantages of the invention are obtained will be readily understood, a more particular description of the invention briefly described above will be rendered by reference to specific embodiments thereof that are illustrated in the appended drawings. Understanding that these drawings depict only typical embodiments of the invention and are not therefore to be considered to be limiting of its scope, the invention will be described and explained with additional specificity and detail through the use of the accompanying drawings in which:
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DETAILED DESCRIPTION OF THE INVENTION
(9) The present embodiments of the present invention will be best understood by reference to the drawings, wherein like parts are designated by like numerals throughout. It will be readily understood that the components of the present invention, as generally described and illustrated in the figures herein, could be arranged and designed in a wide variety of different configurations. Thus, the following more detailed description of the shredder blade assembly, is not intended to limit the scope of the invention, as claimed, but is merely representative of present embodiments of the invention.
(10) The disclosed invention relates to a shredder blade assembly having interchangeable knife inserts. One non-limiting embodiment of a shredder blade assembly 100 is shown in
(11) The knife inserts 120 are mounted to the rotor using suitable fasteners 130. The fasteners 130 may be screws, such as socket head cap screws. As shown, each rotor may be mounted using screws in a symmetrical screw hole pattern. A symmetrical hole pattern enables correct placement and bolting of the knife insert 120 onto the rotor 110 despite being rotated and flipped. In one disclosed embodiment, three fasteners 130 are used to mount each knife insert 120. In another embodiment, a single centrally located fastener may be used to mount each knife insert 120. It is understood that precise number of holes and fasteners used may vary.
(12) The disclosed knife inserts 120 are preferably made in the shape of an equilateral triangle. They are mounted in a way to expose one vertex of the triangle to create a positive angle tooth/hook 140, 142 much like a saw tooth, that pulls material through the opposing cutting edges more efficiently than other shredder blade insert types. It will be understood that the shape of the knife inserts may be modified to another polygonal shape and still provide six cutting and shearing edges. For instance, the knife insert may have a modified triangular shape, such as a hexagonal shape. As used herein, a modified triangular shape includes a shape that still has three dominant sides or edges, but may not be “technically” a triangle. A modified triangular shape that is hexagonal may be achieved by removing a portion of each vertex of the equilateral triangle. The precise angle and amount removed from each vertex may vary.
(13) In one non-limiting embodiment, the knife inserts are staggered on the each side of the rotor so that the teeth/hooks 140, 142 are offset to create a smoother flow of material into the shredder blade assemblies as they cut, shear, and shred the material. Without being bound by theory, it is believed that the smoother flow of material into the blade assembly produces less stress and wear on the gears and motors that drive the shredder.
(14) Rotary shredders comprise pairs of counter-rotating, intermeshing, serrating and shearing blade assemblies.
(15) Each shaft rotates in an opposite direction, as shown by arrows 150, 152 so that the article to be shredded is drawn into a shredding zone indicated by arrow 154. Within the shredding zone 154, the exposed outer edge of knife inserts on one blade assembly 100 (identified as “A” in
(16) The parallel blade assemblies are separated by spacers 160 to allow proper spacing and intermeshing of an opposing set of parallel blade assemblies on another shaft. The width or thickness of the spacers may vary as needed to ensure that opposing blade assemblies interact to produce the cutting, shearing, or shredding function. A representative example of a blade assembly spacer is shown in
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(18) Each knife receptacle includes one or more holes 172 disposed in a symmetrical hole pattern to receive suitable fasteners used to mount a knife insert. As described above, the symmetrical hole pattern enables correct placement and bolting of knife insert onto the rotor 110 despite being rotated and flipped.
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(21) The ability to use a knife insert with six cutting or shearing edges greatly extends the useful life of the knife insert. This can reduce operating and maintenance costs for the shredder.
(22) The knife inserts 120 are mounted to the rotor by fasteners 130 using holes 180 arranged in a symmetrical hole pattern that enables correct placement and bolting of the knife insert 120 onto the rotor 110 despite being rotated and flipped, as described above.
(23) The knife inserts are preferably fabricated of a high alloy steel and/or hardened tool steel. The knife inserts may optionally be coated with wear resistant surface coatings. In a non-limiting embodiment, the knife inserts are fabricated with carbide wear edges.
(24) While specific embodiments and examples of the present invention have been illustrated and described, numerous modifications come to mind without significantly departing from the spirit of the invention, and the scope of protection is only limited by the scope of the accompanying claims.