Dual auger shredder having low profile
10864524 ยท 2020-12-15
Inventors
Cpc classification
B02C18/0084
PERFORMING OPERATIONS; TRANSPORTING
B02C18/142
PERFORMING OPERATIONS; TRANSPORTING
B02C19/22
PERFORMING OPERATIONS; TRANSPORTING
B30B11/243
PERFORMING OPERATIONS; TRANSPORTING
International classification
B02C19/22
PERFORMING OPERATIONS; TRANSPORTING
B02C18/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An auger system adapted to shred large materials. An exemplary embodiment is comprised of dual opposing augers that are adapted to grab, compress, and shred the material, reducing the material size such that it may be discharged through a side outlet opening and/or an extrusion tube into, for example, a standard roll-off compaction container. An exemplary embodiment allows large material to be processed in a low speed device with reduced equipment dimensions, providing operator safety with low profile loading, lower noise level, reduced chances of material being expelled from the processing chamber, and ability to use conventional material transport (e.g., semi-trucks).
Claims
1. A system for shredding, comprising: a processing chamber comprised of a top, a bottom, and at least one side, said processing chamber further comprising an input opening configured to receive material to be shredded and a side discharge opening located in said at least one side that is configured to output shredded material; a first tapered auger positioned in said processing chamber such that an axis of said first tapered auger is aligned with said side discharge opening; and a second tapered auger positioned in said processing chamber, said second tapered auger opposing said first tapered auger such that said material is configured to be shredded between said first tapered auger and said second tapered auger; wherein said first tapered auger is configured to urge said shredded material forward through said side discharge opening; and wherein said to of said processing chamber is configured to be 10 feet or less above ground or floor level such that said side discharge opening is adapted to be aligned with an input opening of a standard roll-off container.
2. The system of claim 1 further comprising: a first hydraulic drive configured to power said first tapered auger; and a second hydraulic drive configured to power said second tapered auger.
3. The system of claim 2 wherein: said first hydraulic drive is comprised of a first direct drive hydraulic motor; and said second hydraulic drive is comprised of a second direct drive hydraulic motor.
4. The system of claim 1 wherein: said first tapered auger is configured to be powered by a first variable speed drive; and said second tapered auger is configured to be powered by a second variable speed drive.
5. The system of claim 1 wherein each of said first tapered auger and said second tapered auger is respectively comprised of a tapered shaft.
6. The system of claim 1 wherein each of said first tapered auger and said second tapered auger is respectively comprised of a tapered flight.
7. The system of claim 1 wherein each of said first tapered auger and said second tapered auger is respectively comprised of a tapered shaft and a tapered flight.
8. The system of claim 1 wherein each of said first tapered auger and said second tapered auger is respectively comprised of a flight having at least one tooth that extends from an edge of said flight.
9. The system of claim 1 wherein each of said first tapered auger and said second tapered auger is respectively comprised of a shaft such that said shafts are substantially parallel.
10. The system of claim 1 wherein said top of said processing chamber is configured to be 7.5 feet or less above ground or floor level.
11. The system of claim 1 wherein at least one of a respective rate and a respective direction of rotation of said first tapered auger and said second tapered auger is configured to be adjusted.
12. The system of claim 11 wherein each of said first tapered auger and said second tapered auger is configured to be adjusted with respect to said respective rate and said respective direction of rotation.
13. The system of claim 11 wherein said first tapered auger and said second tapered auger are configured to be independently adjusted with respect to at least one of said respective rate and said respective direction of rotation.
14. The system of claim 13 wherein each of said first tapered auger and said second tapered auger is configured to be independently adjusted with respect to said respective rate and said respective direction of rotation.
15. The system of claim 1 wherein at least one of said first tapered auger and said second tapered auger is configured to change direction of rotation.
16. The system of claim 1 wherein said first tapered auger is configured to rotate at a faster rate than said second tapered auger to facilitate discharge of said shredded material through said side discharge opening.
17. The system of claim 1 wherein each of said first tapered auger and said second tapered auger is configured to alternately rotate in forward and reverse directions to facilitate continual processing of said material substantially without discharge.
18. The system of claim 1 further comprising a hopper connected to said processing chamber, said hopper configured to direct said material to be shredded into said processing chamber.
19. The system of claim 18 wherein said hopper includes an elongated landing that extends horizontally away from said processing chamber to facilitate loading of said material to be shredded into said hopper.
20. The system of claim 1 further comprising a lock down base connected to said processing chamber.
21. The system of claim 1 wherein said side discharge opening is configured to be aligned with an input opening of a standard roll-off container.
22. The system of claim 1 further comprising a drop hopper wall associated with said processing chamber, said drop hopper wall configured to receive said material to be shredded and rotate upward such that said material to be shredded is directed into said processing chamber.
23. The system of claim 22 wherein said drop hopper wall is hydraulically or electrically actuated.
24. The system of claim 22 further comprising at least one partition configured to limit inadvertent travel underneath said drop hopper wall.
25. The system of claim 22 further comprising at least one hopper wall connected to and extending up from said processing chamber such that said at least one hopper wall extends at least partially around said input opening of said processing chamber.
26. The system of claim 1 further comprising at least one hopper wall connected to and extending up from said processing chamber such that said at least one hopper wall extends at least partially around said input opening of said processing chamber.
27. The system of claim 1 further comprising a conveyor configured to receive said shredded material that has been discharged from said processing chamber.
28. The system of claim 27 further comprising an outlet tube associated with said side discharge opening and configured to direct said shredded material onto said conveyor.
29. The system of claim 27 wherein said conveyor is configured to deliver said shredded material to a trailer.
30. The system of claim 1 further comprising a lift associated with said processing chamber, said lift comprising a rail system such that said lift is configured to lift and rotate said material to be shredded into said processing chamber.
31. The system of claim 30 wherein said rail system is aligned with said processing chamber.
32. The system of claim 30 further comprising: a bucket associated with said lift, said bucket configured to receive said material to be shredded; wherein said lift is configured to lift and rotate said bucket such that said material to be shredded is directed into said processing chamber.
33. The system of claim 30 further comprising: a drop hopper wall associated with said lift, said drop hopper wall configured to receive said material to be shredded when in a substantially horizontal position that extends away from said processing chamber; wherein said lift is configured to lift and rotate said drop hopper wall such that said material to be shredded is directed into said processing chamber.
34. The system of claim 30 further comprising at least one hopper wall connected to and extending up from said processing chamber such that said at least one hopper wall extends at least partially around said input opening of said processing chamber.
35. The system of claim 1 wherein said system is configured to output said shredded material into a semi-trailer.
36. The system of claim 1 wherein said first tapered auger is cantilevered.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF EXEMPLARY EMBODIMENT(S)
(12) Exemplary embodiments of the present invention are directed to a shredder system and method for operation. Exemplary embodiments may be particularly beneficial for shredding large scale items such as oversize crates, pallets, furniture, appliances, drums, telephone poles, railroad ties, and other large scale items. However, it is not intended to limit the invention to the shredding of any particular type of material unless expressly set forth otherwise.
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(14) By not discharging the shredded material out of the bottom of the processing chamber 12 and instead locating discharge opening 20 in a side 22 such as in this embodiment, system 10 may have a low profile to facilitate loading of material and increase safety. In an exemplary embodiment, there is no need to elevate the processing chamber 12 a significant amount above the ground or floor. Such features may also facilitate the discharge of shredded material into conventional material transport (e.g., semi-trucks, rail cars, etc.). For example, such as shown in the embodiment of
(15) Opposing augers 14 and 16 may have similar or dissimilar physical characteristics. In this example, the physical features of augers 14 and 16 are similar. For the sake of simplicity, features of this embodiment of auger 14 are described with reference to
(16) This exemplary embodiment particularly benefits from the use of dual opposing tapered augers. Nonetheless, some embodiments may only include one auger or screw, or three or more augers or screws. Further, the auger(s) or screw(s) of some embodiments may not be tapered. In this example, the shafts of the opposing augers are substantially parallel, which promotes shredding in a compact design. Nevertheless, some embodiments may have shafts that are not substantially parallel (e.g., embodiments that have augers that have dissimilar physical configurations).
(17) Augers 14 and 16 may utilize any suitable drive and control system. The example of
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(19) Exemplary embodiments may also be adapted to adjust the rate and/or direction of rotation of each auger, either in unison or independently. For example, in one mode of operation, primary auger 16 is adapted to rotate at a faster rate than auger 14 to facilitate a substantially continual discharge of suitably processed material from the processing chamber 12, while at the same time allowing for further circulation of material in the processing chamber 12 that has not yet been suitably processed. In another mode of operation (i.e., an agitation mode), each auger is adapted to alternately rotate in forward and reverse directions (either independently or unison) to continually process the material without, or substantially without, discharging it from the processing chamber. In an exemplary embodiment, by controlling and synchronizing the rate and direction of rotation of each auger (e.g., by repeating a sequence of grinding the material between the augers and then reversing the direction of rotation of each auger), desired agitation of the material in the processing chamber may be achieved. Such control modes or sequences are believed to be novel and unique ways to process material in a dual auger system having a side output such that material is either discharged from the processing chamber or retained therein (e.g., for agitation) without having to shut down the system.
(20) In this exemplary embodiment, discharge opening 20 may be aligned with an axis of cantilevered auger 16, such as shown in the example of
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(28) In view of the aforementioned exemplary embodiments, an exemplary embodiment of a dual auger system is adapted to process a crate or other large materials with two tapered auger screws, with one auger operating within the confines of the processing chamber independent of the primary auger, but in cooperation with the primary auger. In one exemplary embodiment, the primary auger is adapted to rotate at a faster rate than the former auger to facilitate a continual discharge of suitably processed material from the processing chamber, while at the same time allowing for further circulation of material in the processing chamber that has not yet been suitably processed. The dual augers grab, compress, and shred the material, reducing the material size so that the primary auger can compress the material through an outlet opening and/or an extrusion tube into, for example, a standard roll-off compaction container. An exemplary embodiment allows large material to be processed in a low speed device with reduced equipment dimensions, providing operator safety with low profile loading, lower noise level, reduced chances of material being expelled from the processing chamber, and ability to use conventional material transport (e.g., semi-trucks).
(29) Any embodiment of the present invention may include any of the optional or preferred features of the other embodiments of the present invention. The exemplary embodiments herein disclosed are not intended to be exhaustive or to unnecessarily limit the scope of the invention. The exemplary embodiments were chosen and described in order to explain some of the principles of the present invention so that others skilled in the art may practice the invention. Having shown and described exemplary embodiments of the present invention, those skilled in the art will realize that many variations and modifications may be made to the described invention, which will provide the same result and fall within the spirit of the invention. It is the intention, therefore, to limit the invention only as indicated by the scope of the claims.