ROTOR FOR A DISINTEGRATION DEVICE
20180280985 ยท 2018-10-04
Inventors
Cpc classification
B02C2013/2808
PERFORMING OPERATIONS; TRANSPORTING
B02C13/04
PERFORMING OPERATIONS; TRANSPORTING
International classification
B02C13/04
PERFORMING OPERATIONS; TRANSPORTING
B02C13/16
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A rotor for a device for disintegrating feed material, comprising a drive shaft, a plurality of rotor disks mounted on the drive shaft, and disintegration tools arranged in the region of the outer circumference of the rotor disks. A holding flange is provided for each rotor disk for connecting the rotor disk to the drive shaft, wherein the holding flange is permanently connected to the drive shaft and detachably connected to the rotor disk. Devices for disintegrating feed material, in particular impact hammer mills, may thus be operated with a rotor, in which the risk of a shaking out and a lateral wandering of the rotor disks is largely eliminated.
Claims
1. A rotor for a device for disintegrating feedstock, comprising a drive shaft, a plurality of rotor disks which sit on the drive shaft and disintegration tools which are arranged in the region of the outer circumference of the rotor disks, wherein at least one retaining flange is provided for each rotor disk for connecting the rotor disk to the drive shaft, wherein the at least one retaining flange is connected non-detachably to the drive shaft and is connected detachably to the rotor disk.
2. The rotor as claimed in claim 1, wherein the rotor disks are connected to the respective retaining flanges by means of a screw connection.
3. The rotor as claimed in claim 1, wherein the retaining flanges are connected to the drive shaft by means of a weld connection.
4. The rotor as claimed in claim 1, wherein precisely one retaining flange is provided for each rotor disk, wherein the retaining flange is realized in a circular manner about the drive shaft, each rotor disk rests with fit by way of its radial inner side, which is provided by a hub bore, on the radial outer side of the corresponding retaining flange, and each rotor disk and the corresponding retaining flange are connected together in a non-positive manner to at least one connecting element by means of the respective screw connection.
5. The rotor as claimed in claim 4, wherein each retaining flange comprises open recesses which are distributed over the outer circumference, wherein every two adjacent flange recesses leave between them a flange web, the rotor disk, which is assigned to the respective retaining flange, comprises open disk recesses and disk webs, which are distributed over its an inner circumference of the rotor disk and correspond to the flange recesses and flange webs, wherein with the rotor in the assembled state, the radial sides of the flange webs and of the corresponding disk webs rest one on top of another as centering surfaces with fit, and wherein for simplifying an assembly step, which comprises pushing the rotor disk in an axial manner onto the assigned retaining flange, the extents of the flange recesses provided along the circumference are dimensioned such that in at least one position of the rotor disk, rotated in relation to the assembled state, with respect to the retaining flange, each flange recess has situated opposite thereto a disk web with a smaller extent provided along the circumference.
6. The rotor as claimed in claim 5, wherein the rotor disks are congruent to one another, the retaining flanges are congruent to one another, the flange recesses are distributed uniformly on the circumference of every retaining flange and are congruent to one another, the disk recesses are congruent to one another, and the extent of the flange recess provided along the outer circumference is greater than the extent of the flange web provided along the outer circumference.
7. The rotor as claimed in claim 1, wherein hammers are provided as disintegration tools, wherein the hammers are pivotably arranged on axial rods which penetrate the rotor disks.
8. A device for disintegrating feedstock comprising a rotor as claimed in claim 1.
9. The device for disintegration as claimed in claim 8, wherein the disintegration tools of the rotor are hammers, and the rotor has assigned thereto an impact hammer mill stator.
10. The rotor as claimed in claim 6, wherein the extent of the flange recess provided along the outer circumference is greater, by an extent of approximately 0.5% to 10%, than the extent of the flange web provided along the outer circumference.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The invention is explained in more detail by way of the following figures, in which:
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0023]
[0024]
[0025] In
[0026]
[0027] The position shown in
[0028] In contrast to the assembly position from
[0029] As is apparent from the foregoing specification, the invention is susceptible of being embodied with various alterations and modifications which may differ particularly from those that have been described in the preceding specification and description. It should be understood that I wish to embody within the scope of the patent warranted hereon all such modifications as reasonably and properly come within the scope of my contribution to the art.
LIST OF REFERENCES
[0030] 1 Rotor [0031] 2 Rotor disk [0032] 3 Axial hole [0033] 4 Drive shaft [0034] 5 Retaining flange [0035] 6 Connecting element [0036] 7 Screw [0037] 8 Nut [0038] 9 Flange recess [0039] 10 Flange web [0040] 11 Disk recess [0041] 12 Disk web