Crusher unit and method for adjusting the crushing gap of a crusher unit
US-2024139751-A1 · May 2, 2024 · US
US11117747B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11117747-B2 |
| Application number | US-202016893519-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 5, 2020 |
| Priority date | Jun 11, 2019 |
| Publication date | Sep 14, 2021 |
| Grant date | Sep 14, 2021 |
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The invention relates to a feed unit for a processing plant, in particular for a crushing or screening station, having a feed chute which has a chute beam ( 90 ), wherein the chute beam ( 90 ) has a bottom ( 92 ), wherein the bottom ( 92 ) extends in the conveying direction (V) of the feed chute, wherein at least one beam ( 130 ) extending in the conveying direction (V) is arranged in the area of the underside of the bottom ( 92 ) and supports the bottom ( 92 ), wherein furthermore a bracket ( 140 ) is provided, which supports at least one vibration exciter ( 150 ), and wherein the bracket ( 140 ) is connected to the beam ( 130 ). A particularly resilient and in continuous operation durable feed unit is created according to the invention by the beam forming a closed hollow section or at least a wall segment of the beam ( 130 ) in conjunction with a reinforcing section ( 120 ) connected thereto forming a closed hollow section, and the hollow section extending with an angular deviation in the range of +/−15° in the direction of the excitation direction.
Opening claim text (preview).
The invention claimed is: 1. A feed unit fora processing plant, comprising: a feed chute including a chute bottom extending in a conveying direction of the feed chute; at least one beam supporting the chute bottom; a bracket attached to the at least one beam; at least one vibration exciter supported from the bracket and configured to generate a vibration in an excitation direction; and wherein the at least one beam includes a closed hollow section extending in a direction of longitudinal extension within a range of plus or minus 15 degrees of the excitation direction. 2. The feed unit of claim 1 , wherein: the closed hollow section includes first and second end segments at its longitudinal ends, the first end segment being connected to the chute bottom and the second end segment being connected to the bracket. 3. The feed unit of claim 1 , wherein: the direction of longitudinal extension of the closed hollow section extends at an angle less than 90 degrees to the chute bottom. 4. The feed unit of claim 1 , wherein: the direction of longitudinal extension of the closed hollow section extends at an angle in a range of from about 20 degrees to about 50 degrees to the chute bottom. 5. The feed unit of claim 1 , wherein: the direction of longitudinal extension of the closed hollow section extends at an angle in a range of from about 25 degrees to about 35 degrees to the chute bottom. 6. The feed unit of claim 1 , further comprising: at least one bracing element connected both to an outside of the hollow section and to the bracket, the bracing element projecting laterally beyond the outside of the hollow section at least in some areas. 7. The feed unit of claim 1 , wherein: the at least one beam includes a wall segment and a reinforcing section, the reinforcing section including: a reinforcing section segment; and first and second spacers connected to the wall segment and holding the reinforcing section segment at a distance from the wall segment to define an interior space of the hollow section between the wall segment and the reinforcing section segment. 8. The feed unit of claim 7 , wherein: the reinforcing section segment includes a depression recessed toward the interior space of the hollow section. 9. The feed unit of claim 7 , wherein: the reinforcing section segment includes first and second wall elements connected to the first and second spacers, respectively, the first and second wall elements being arranged at an angle to one another. 10. The feed unit of claim 9 , wherein: the reinforcing section segment further includes first and second connection segments interconnecting the first and second wall elements, respectively, the first and second connection segments being arranged at an angle to one another. 11. The feed unit of claim 1 , wherein: the at least one beam includes a wall element and a reinforcing section connected to the wall element to form the closed hollow section; and the reinforcing section engages a side surface of the wall element and is welded to the side surface of the wall element with weld seams extending in the direction of longitudinal extension of the hollow section. 12. The feed unit of claim 1 , further comprising: a plurality of ribs extending transversely to the conveying direction and connected to the chute bottom. 13. The feed unit of claim 12 , wherein: the ribs are welded to an outside of the hollow section. 14. The feed unit of claim 12 , wherein: at least two of the ribs are connected to one another by at least one connection segment extending in the conveying direction. 15. The feed unit of claim 12 , wherein: at least two of the ribs are connected to one another by a flange; and the feed unit further includes a spring connected to the flange. 16. The feed unit of claim 1 , wherein: the at least one beam includes first and second beams including first and second hollow sections, respectively, the first and second hollow sections being spaced apart from one another by a transverse spacing transverse to the conveying direction. 17. The feed unit of claim 16 , wherein: the bracket has a bracket width transverse to the conveying direction; and a component width equal to the transverse spacing plus a transverse width of the first and second hollow sections is at least 70% of the bracket width. 18. The feed unit of claim 1 in combination with a mobile crushing or screening station.
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