Compactor roller
10501903 · 2019-12-10
Assignee
Inventors
Cpc classification
E01C19/286
FIXED CONSTRUCTIONS
E02D3/026
FIXED CONSTRUCTIONS
International classification
E01C19/23
FIXED CONSTRUCTIONS
E02D3/026
FIXED CONSTRUCTIONS
Abstract
A compactor roller includes a roller jacket, at least one roller disk connected to the roller jacket, and a reinforcing arrangement with a reinforcing ring connected to the roller jacket and a reinforcing structural group connected to the roller disk and the reinforcing ring, the reinforcing structural group including: (i) at least one first reinforcing plate arranged eccentrically and connected to the roller disk and to the reinforcing ring, and a second reinforcing plate connected to the roller disk and arranged substantially parallel to the at least one first reinforcing plate, the second reinforcing plate intersecting a rotary roller axis, or (ii) reinforcing struts connected to the roller disk and to the reinforcing ring and arranged around the rotary roller axis, at least one of the reinforcing struts arranged with a longitudinal strut axis which is not parallel to the rotary roller axis.
Claims
1. A compactor roller, in particular for a soil compactor with at least one roller divided in the direction of a rotary roller axis, comprising a roller jacket surrounding a rotary roller axis and longitudinally extended in the direction of the rotary roller axis, and at least one roller disk connected to the roller jacket on its inner circumferential surface in the inner roller space surrounded by the roller jacket, wherein a reinforcing arrangement with a reinforcing ring arranged in the inner roller space at an axial interval to the roller disk and connected to the roller jacket on its inner circumferential surface, and with a reinforcing structural group connected to the roller disk and to the reinforcing ring is provided associated with the roller disk, wherein the reinforcing structural group comprises at least one first reinforcing plate arranged eccentrically as regards the rotary roller axis, wherein the at least one first reinforcing plate is connected in a first axial end area to the roller disk and in a second axial end area to the reinforcing ring, and wherein the reinforcing structural group comprises a second reinforcing plate connected to the roller disk and arranged substantially parallel to the at least one first reinforcing plate, wherein the second reinforcing plate intersects the rotary roller axis.
2. The compactor roller according to claim 1, wherein the roller disk comprises an annular disk body, wherein the disk body extends in a radial direction over at least 50% of the radial extent of the roller disk and/or that the reinforcing ring comprises an annular body, wherein the annular body has a shorter radial extent than a disk body of the roller disk and/or extends over less than 50% of the radial extent of the reinforcing ring.
3. The compactor roller according to claim 1, wherein the ring body has a greater radial extension in at least two first circumferential areas opposite one another relative to the rotary roller axis than in second circumferential areas located between two first circumferential areas.
4. The compactor roller according to claim 1, wherein at least one first reinforcing plate comprises in its second axial end area at its two radial end areas a connection web connected to the reinforcing ring.
5. The compactor roller according to claim 1, wherein at least one first reinforcing plate is connected in its radial end areas to the roller jacket at its inside circumferential surface.
6. The compactor roller according to claim 1, wherein the reinforcing structural group comprises two first reinforcing plates, wherein the first reinforcing plates are provided on both sides of the rotary roller axis and substantially parallel to one another.
7. The compactor roller according to claim 1, wherein the second reinforcing plate is not connected to the roller jacket and/or not connected to the reinforcing ring.
8. The compactor roller according to claim 6, wherein the second reinforcing plate is arranged between the first reinforcing plates.
9. The compactor roller according to claim 2, wherein the disk body extends in a radial direction over at least 60% of the radial extent of the roller disk.
10. The compactor roller according to claim 2, wherein the annular body extends over less than 30% of the radial extent of the reinforcing ring.
11. The compactor roller according to claim 1, wherein the roller disk has a thickness of at least 40 mm.
12. A compactor roller, in particular for a soil compactor with at least one roller divided in the direction of a rotary roller axis, comprising a roller jacket surrounding a rotary roller axis and longitudinally extended in the direction of the rotary roller axis, and at least one roller disk connected to the roller jacket on its inner circumferential surface in the inner roller space surrounded by the roller jacket, wherein a reinforcing arrangement with a reinforcing ring arranged in the inner roller space at an axial interval to the roller disk and connected to the roller jacked on its inner circumferential surface, and with a reinforcing structural group connected to the roller disk and to the reinforcing ring is provided associated with the roller disk, wherein the reinforcing structural group comprises a plurality of reinforcing struts connected to the roller disk and to the reinforcing ring and arranged around the rotary roller axis at an interval from each other, and wherein at least one of the reinforcing struts is arranged with a longitudinal strut axis which is not parallel to the rotary roller axis.
13. The compactor roller according to claim 12 wherein each reinforcing strut is arranged with a longitudinal strut axis which is not parallel to the rotary roller axis and intersects the rotary roller axis.
14. The compactor roller according to claim 12, wherein the roller disk has a thickness of at least 40 mm.
15. A soil compactor, comprising at least one compactor roller, said compactor roller comprising: a roller jacket surrounding a rotary roller axis and longitudinally extended in the direction of the rotary roller axis, and at least one roller disk connected to the roller jacket on its inner circumferential surface in the inner roller space surrounded by the roller jacket, wherein a reinforcing arrangement with a reinforcing ring arranged in the inner roller space at an axial interval to the roller disk and connected to the roller jacket on its inner circumferential surface, and with a reinforcing structural group connected to the roller disk and to the reinforcing ring is provided associated with the roller disk, wherein the reinforcing structural group comprises: at least one first reinforcing plate arranged eccentrically as regards the rotary roller axis, wherein the at least one first reinforcing plate is connected in a first axial end area to the roller disk and in a second axial end area to the reinforcing ring, and wherein the reinforcing structural group comprises a second reinforcing plate connected to the roller disk and arranged substantially parallel to the at least one first reinforcing plate, wherein the second reinforcing plate intersects the rotary roller axis or a plurality of reinforcing struts connected to the roller disk and to the reinforcing ring and arranged around the rotary roller axis at an interval from each other, at least one of the reinforcing struts being arranged with a longitudinal strut axis which is not parallel to the rotary roller axis.
16. The soil compactor according to claim 15, wherein the least one compactor roller is two compactor rollers following each other in the direction of the rotary roller axis.
17. The soil compactor according to claim 15, wherein the roller disk has a thickness of at least 40 mm.
Description
(1) The present invention is described in detail in the following with reference made to the attached figures. In the drawings:
(2)
(3)
(4)
(5)
(6)
(7)
(8) The
(9) The compactor roller 10 shown in the
(10) In order to make the compactor roller 10 available with sufficiently high rigidity, the roller disk 18, which, just as substantially all other structural components and structural groups of the compactor roller 10 shown in the figures, is preferably constructed of steel material, has a thickness of at least 40 mm. Such a large thickness of the roller disk 18, by which the compactor roller 10 can be connected to a roller drive, then results, if such a roller disk 18 is provided only in an area of the compactor roller 10 which is close to an axial end area 16 of the roller jacket 12, in such a high rigidity that a deformation of the compactor roller 10 can be substantially excluded during the rotary operation under the forces produced especially upon the occurrence of oscillation movements generated by a corresponding mechanism.
(11) In order to make the compactor roller 10 available with sufficiently high rigidity, a reinforcing arrangement designated in general by 28 can be alternatively or additionally provided in the inside roller space 14. In the exemplary embodiment shown in the
(12) The reinforcing ring 30 comprises a ring body 34 which has a greater radial extension radially inward on two first circumferential areas 36, starting from its outer circumferential area 38, and which oppose one another relative to the rotary roller axis A than in two circumferential areas 40 located between the first circumferential areas 36. Even in these first circumferential areas 36 with a greater radial extension the ring body 34 is constructed with a radial extension which is smaller than the radial extension of the disk body 20 of the roller disk 18, in particular is less than 50% of the radius of the reinforcing ring 30, preferably smaller than 30% of this radius. It can be recognized that the central opening 22 formed in the roller disk 18, starting from the rotary roller axis A, has a distinctly smaller radial extension than a central opening 42 formed in the reinforcing ring 30.
(13) The reinforcing ring 30 is connected by its outside circumferential area 40, for example by welding, to the inside circumferential surface 26 of the roller jacket 12.
(14) A reinforcing structural group designated in general by 44 is provided between the roller disk 18 and the reinforcing ring 30. This group comprises two first reinforcing plates 46 which are arranged on both sides of the rotary roller axis A, extend parallel to one another in the direction of this rotary roller axis A and have substantially the same interval. Each of the first reinforcing plates 46 is connected in a first axial end area 48 of it to the roller disk 18, for example by welding, wherein the two radial end areas 50, 52 of the first reinforcing plates 46 lie in the area of the outside circumferential area 24 of the roller disk 18. Therefore, these radial end areas 50, 52 of the first reinforcing plates 46 extend in the direction of the rotary roller axis A substantially parallel to it along the inside circumferential surface 26 of the roller jacket 12 and are connected to the latter by welding.
(15) The first reinforcing plates 46 have a connection web 56, 58 in their two radial end areas 50, 52 in their second axial end areas 54 following the reinforcing ring 30. Each of the connection webs 56, 58 have an approximate width which corresponds to the radial extension of the reinforcing ring 30 in its second circumferential areas 40. The first reinforcing plates 46 on the reinforcing ring 30 are connected to the two connection webs 56, 58 by welding. It is pointed out that the welding connection is made preferably where the first reinforcing plates 46 rest with their axial end areas 48, 54 on the roller disk 18 and on the reinforcing ring 30 along the entire contact area, which welding connection is preferably made available by substantially uninterrupted, continuous welding seams or with welding seam systems or welding points arranged at an interval from each other. Even where the first reinforcing plates 46 rest with the radial end areas 50, 52 on the inside circumferential surface 26 of the roller jacket 12 and/are connected to it, a welding connection is preferably made over the entire axial extension of the first reinforcing plates 46.
(16) A second reinforcing plate 60 is provided between the two first reinforcing plates 46. This second reinforcing plate has a distinctly shorter extension in the radial direction as well as in the axial direction than the first reinforcing plates 46, so that it is positioned substantially resting only on the roller disk 18 and is connected in this area to the roller disk 18 by welding. The second reinforcing plate 60, which could also be constructed as a beam, therefore contacts neither the reinforcing ring 30 nor the roller jacket 12 and is preferably arranged in such a manner that it intersects the rotary axis A in order to bring about an optimal reinforcing of the roller disk 18.
(17) Making the two first reinforcing plates 46 of the second reinforcing plates 60 and of the reinforcing ring 30 in the inside roller space 26 leaves sufficient structural space, with a substantial reinforcing of the compactor roller 10, for system areas to be arranged in the inside roller space 26. Such system areas comprise components which serve for the rotary driving of the compactor roller 10 as well as also comprise components which can be used to product an oscillation movement or a vibration movement of the compactor roller 10.
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(19) Even in the case of the compactor roller 10 shown in the
(20) A divided roller to be provided on a soil compactor can comprise two compactor rollers 10 similar to those shown in the