Comminution device
11278907 ยท 2022-03-22
Assignee
Inventors
Cpc classification
B02C13/14
PERFORMING OPERATIONS; TRANSPORTING
B02C13/18
PERFORMING OPERATIONS; TRANSPORTING
B02C13/288
PERFORMING OPERATIONS; TRANSPORTING
B02C13/282
PERFORMING OPERATIONS; TRANSPORTING
International classification
B02C13/18
PERFORMING OPERATIONS; TRANSPORTING
B02C13/282
PERFORMING OPERATIONS; TRANSPORTING
B02C13/14
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a device (10; 50) for mechanically comminuting materials, including a vertically extending comminuting chamber (14) having an upwardly extending supply side (15) and a downwardly extending discharge side. The comminuting chamber is enclosed by an circular cylindrical and/or conical downwardly expanded comminuting chamber wall (12), and in which at least one rotor (16, 18) rotating about a vertical rotor axis (R) is arranged, which is provided with striking tools (38) that extend radially into the comminuting chamber, at least during operation. The rotors (16, 18) are held in a stationary manner with respect to a support base (20) of the device, and the comminuting chamber wall is supported on the support base. According to the invention, the comminuting chamber wall is held in place by way of a lifting device in the direction of the rotor axis (R) in a height adjustable manner relative to the support base (20). The lifting device (36) has a working position, in which the lower edge of the comminuting chamber wall (12) is arranged close to the support base (20) or to a part connected thereto, and a maintenance position, in which the lower edge (32) of the comminuting chamber wall (12) is vertically raised above at least one of the striking tools (22, 24). The invention allows easy maintenance and an uncomplicated exchange of the striking tools of the comminuting device.
Claims
1. A comminution device for the mechanical crushing of materials that has a working position and a maintenance position, the comminution device comprising: at least one rotor rotating around a vertical rotation axis (R) located in a crushing chamber having an upper end and a bottom end, the crushing chamber being supported by a supporting base, whereby the at least one rotor is held at the bottom end of the crushing chamber in a fixed stationary position in relation to the supporting base, the crushing chamber has an inlet at the upper end for infeed of materials and an outlet at the bottom end for outfeed of materials, the crushing chamber includes a plurality of striking tools which project radially into the crushing chamber and a crushing chamber wall that encloses the crushing chamber, the crushing chamber wall being movable between a working position wherein a bottom edge of the crushing chamber wall rests on a feeder plate of the supporting base against which the bottom edge fits tightly to create a hermetic seal and a maintenance position wherein the bottom edge of the crushing chamber wall is lifted vertically along the vertical rotation axis (R) above the supporting base such that the bottom edge of the crushing chamber wall is located vertically above a top of all of the plurality of striking tools and at least one rotor to expose all of the plurality of striking tools and the at least one rotor, a lifting device is secured between the supporting base and the crushing chamber wall and selectively moves the crushing chamber wall between the working position and the maintenance position, the lifting device is connected to a side of the crushing chamber wall by a plurality of horizontal support arms which project radially from and are attached to the crushing chamber wall, the lifting device is height-adjustable relative to the supporting base so as to lift the crushing chamber wall between the working position and the maintenance position.
2. The comminution device according to claim 1, wherein the lifting device comprises at least one hydraulic cylinder.
3. The comminution device according to claim 1, wherein the lifting device has between two and four vertically arranged, parallel hydraulic cylinders.
4. The comminution device according to claim 3, wherein the between two and four vertically arranged, hydraulic cylinders are arranged equidistantly around an axis of the crushing device.
5. The comminution device according to claim 1, wherein a bottom side of the lifting device is connected to the supporting base.
6. The comminution device according to claim 1, wherein an electrical circuit breaker is in contact with the supporting base or partially connected to the supporting base, or in contact with a circular cylindrical and/or conically flared crushing chamber wall or partially connected to the circular cylindrical and/or conically flared crushing chamber wall.
7. The comminution device according to claim 1, wherein a circular cylindrical and/or conically flared crushing chamber wall is a cylinder wall with a circular or polygonal footprint.
8. The comminution device according to claim 1, wherein the crushing chamber is arranged vertically, with the infeed side on top and the outlet side on the bottom.
9. The comminution device according to claim 1, further comprising a loading cone arranged at the infeed side in connection with the crushing chamber, the loading cone is moved by the lifting device either separately and/or in conjunction with a circular cylindrical and/or conically flared crushing chamber wall.
10. The comminution device according to claim 9, further comprising a feed hopper attached to the infeed side of the crushing chamber wall, and that distance between the feed hopper and the loading cone can be adjusted by an adjusting device via activation of the lifting device.
11. The comminution device according to claim 1, further comprising an airflow device for conveying a mix of air and particles generated in the crushing chamber, the airflow device is arranged in connection with the crushing chamber and comprises at least one fan rotor arranged coaxially to the axis of the crushing chamber, the fan rotor is powered by a fan drive enabling the at least one fan rotor to rotate independently of the at least one rotor of the crushing chamber, whereby the at least one fan rotor is located below the bottom edge of a circular cylindrical and/or conically flared crushing chamber wall when the circular cylindrical and/or conically flared crushing chamber wall is raised up into a maintenance position of the lifting device.
12. The comminution device according to claim 11, wherein the fan rotor is located at the supporting base at a height of an outlet.
13. The comminution device according to claim 11, wherein the bottom edge of the crushing chamber wall while in the maintenance position of the lifting device is lifted above a fastening point of the plurality of striking tools.
14. The comminution device according to claim 1, wherein the bottom edge of a circular cylindrical and/or conically flared crushing chamber wall; while in a working position of the lifting device, is in contact with the supporting base.
15. The comminution device according to claim 1, wherein the crushing chamber has at least two successive sections arranged in an axial direction, whereby the at least one rotor is arranged coaxially to the crushing chamber, and whereby each rotor of the at least one rotor at least during operation comprises the plurality of striking tools.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention is described in the following e.g. by the schematic drawings:
(2)
(3)
(4)
DETAILED DESCRIPTION OF THE INVENTION
(5) The crushing device 10 contains a plain cylindrical crushing chamber wall 12 enveloping the crushing chamber 14, whose vertical central axis features two rotors 16, 18 (
(6) During operation, the crushing chamber wall 12 is located in the working position portrayed in
(7)
(8) After adjusting the infeed slot to the desired size by activating the lifting device, it is now time to set the adjusting device 56. At this point, the lifting device is lifted again to move the loading cone and the crushing chamber wall 12 together with the feed hopper 54, which makes it possible to raise the crushing chamber wall up into the maintenance position and to lower it down into the working position.
(9) The embodiment 50 shown in
LIST OF REFERENCE SIGNS
(10) 10 Crushing device (first embodiment) 12 Crushing chamber wall 14 Crushing chamber 15 Infeed side 16 Top rotor 18 Bottom rotor 20 Supporting base 22 Top striking tools 24 Bottom striking tools 26 Fan rotor 28 Frame 30 Feeder plate 32 Bottom edge of the crushing chamber wall 34 Housing 36 Hydraulic cylinder 40 Support arms 50 Crushing device (second embodiment) 52 Infeed side 54 Feed hopper 56 Adjusting device 58 Loading cone 60 Mounting arms 62 Fan rotor 64 Fan rotor blades 66 Outlet