WHEEL ASSEMBLY FOR A SOIL COMPACTOR
20230295890 · 2023-09-21
Inventors
- Christian WÜRNER (Tirschenreuth, DE)
- Rainer KROCKAUER (Plössberg, DE)
- Gerhard Mahler (Windischeschenbach, DE)
Cpc classification
E01C19/27
FIXED CONSTRUCTIONS
B60B37/10
PERFORMING OPERATIONS; TRANSPORTING
E02D3/026
FIXED CONSTRUCTIONS
International classification
Abstract
A wheel assembly for a soil compactor comprises a plurality of wheels (20) mounted in succession on a main wheel carrier (24) in the direction of an operating wheel axis of rotation (B), wherein at least one third wheel, which is arranged between a first wheel and a second wheel in the direction of the operating wheel axis of rotation (B), forms an auxiliary assembly wheel (20.sub.5) and is mounted on the main wheel carrier (24) by means of an auxiliary wheel carrier (34), wherein the auxiliary wheel carrier (34) is firmly coupled to the main wheel carrier (24) in an auxiliary wheel operating state and is pivotable about a pivot axis and displaceable in the direction of the pivot axis in relation to the main wheel carrier (24) in an auxiliary wheel assembly state.
Claims
1. A wheel assembly for a soil compactor, comprising a plurality of wheels mounted in succession on a main wheel carrier in the direction of an operating wheel axis of rotation, wherein at least one third wheel, which is arranged between a first wheel and a second wheel in the direction of the operating wheel axis of rotation, forms an auxiliary assembly wheel and is mounted on the main wheel carrier by an auxiliary wheel carrier, wherein the auxiliary wheel carrier is firmly coupled to the main wheel carrier and is pivotable about a pivot axis and displaceable in the direction of the pivot axis in relation to the main wheel carrier in an auxiliary wheel assembly state.
2. The wheel assembly according to claim 1, wherein the pivot axis is oriented substantially parallel to the operating wheel axis of rotation .
3. The wheel assembly according to claim 1, wherein the auxiliary wheel carrier is firmly coupled in a fixed coupling region to the main wheel carrier in the auxiliary wheel operating state by a plurality of coupling elements .
4. The wheel assembly according to claim 3, wherein the fixed coupling region comprises at least one first coupling plate on the auxiliary wheel carrier and at least one second coupling plate, which is coupleable to the at least one first coupling plate by the coupling elements, on the main wheel carrier .
5. The wheel assembly according to claim 1, wherein the auxiliary wheel carrier is coupled to the main wheel carrier in a pivot coupling region so that is pivotable about the pivot axis and be displaced in the direction of the pivot axis .
6. The wheel assembly according to claim 5, wherein the pivot coupling region comprises a pivoting/sliding shaft, which is longitudinally extended in the direction of the pivot axis, on the main wheel carrier and at least one pivoting/sliding sleeve, which is guided on the pivoting/sliding shaft so as to be pivotable about the pivot axis and displaceable in the direction of the pivot axis, on the auxiliary wheel carrier .
7. The wheel assembly according to claim 6, wherein the pivoting/sliding shaft is mounted on the main wheel carrier in each of its axial end regions by a shaft carrier element .
8. The wheel assembly according to claim 1, wherein the pivot axis is offset transversely to a vertical direction with respect to the operating wheel axis of rotation .
9. The wheel assembly according to claim 1, wherein the auxiliary wheel carrier is variable in length to change a distance between the pivot axis and an auxiliary wheel axis of rotation of the at least one auxiliary assembly wheel mounted on the auxiliary wheel carrier .
10. The wheel assembly according to claim 9, wherein the auxiliary wheel carrier comprises a first auxiliary wheel carrier element, which is mounted on the main wheel carrier so as to be pivotable about the pivot axis and be displaced in the direction of the pivot axis, and a second auxiliary wheel carrier element, which is displaceable on the first auxiliary wheel carrier element essentially in the direction of an auxiliary wheel carrier longitudinal axis with respect to the first auxiliary wheel carrier element .
11. The wheel assembly according to claim 10, wherein the second auxiliary wheel carrier element is lockable in an operating displacement position with respect to the first auxiliary wheel carrier element, and/or that the second auxiliary wheel carrier element is displaceable with respect to the first auxiliary wheel carrier element by an actuator .
12. The wheel assembly according to claim 1, wherein a first pair of wheels is mounted on the main wheel carrier by a first wheel pair carrier, in that a second pair of wheels is mounted on the main wheel carrier by a second wheel pair carrier, and in that a wheel of the first pair of wheels forms the first wheel and a wheel of the second pair of wheels forms the second wheel.
13. A soil compactor comprising at least one wheel assembly according to claim 1.
14. The soil compactor according to claim 13, wherein two wheel assemblies are arranged one after the other in a longitudinal direction of the soil compactor on a compactor frame, wherein the wheels of a first wheel assembly of the two wheel assemblies are offset with respect to the wheels of a second wheel assembly of the two wheel assemblies in a soil compactor longitudinal direction which is substantially orthogonal to the soil compactor longitudinal direction .
15. The wheel assembly according to claim 2, wherein the auxiliary wheel carrier is firmly coupled in a fixed coupling region to the main wheel carrier in the auxiliary wheel operating state by a plurality of coupling elements.
16. The wheel assembly according to claim 15, wherein the fixed coupling region comprises at least one first coupling plate on the auxiliary wheel carrier and at least one second coupling plate, which is coupleable to the at least one first coupling plate by the coupling elements on the main wheel carrier.
Description
[0019] The present invention is described in detail below with reference to the attached figures. In the figures:
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027] In
[0028] It should be noted that the soil compactor 10 could also be constructed with two such wheel assemblies 16, wherein the wheels 20 of the individual wheel assemblies 16 can be offset from one another in the transverse direction Q of the soil compactor, so that when the soil to be compacted is driven over, the entire width of the soil compactor 10 can be detected and compacting can be performed over the entire width.
[0029] In order to steer the soil compactor 10, it is possible to mount the wheel assembly 16 and/or compactor roller 18 on a machine frame 12 so as to pivot about a respective pivot axis, so that, for example, the soil compactor 10 can be steered both by pivoting the wheel assembly 16 with respect to compactor frame 12 about a steering axis assigned thereto and by pivoting the compactor roller 22 or, if applicable, the additional wheel assembly 16 with respect to the soil compactor frame 12 about a steering axis assigned thereto. In an alternative embodiment, the soil compactor 10 or the compactor frame 12 thereof could be constructed with a front carriage and a rear carriage, which are pivotably connected to one another in the area of an articulated joint and trigger a steering movement of the soil compactor 10 by pivoting relative to one another. With such an embodiment, the wheel assembly 16 and the compactor roller 18 or possibly the further wheel assembly 16 can be mounted essentially rigidly on the front carriage or rear carriage, i.e., not be pivotable about a steering axis.
[0030]
[0031] The auxiliary wheel carrier 34 can be firmly coupled to the main wheel carrier 24 in a fixed coupling region generally designated as 36. For this purpose, the auxiliary wheel carrier 34 has a first coupling plate 40 which can be firmly connected or coupled to a second coupling plate 41 of the main wheel carrier 24 by means of a plurality of fastening elements 38 embodied, for example, as bolts. If this state of fixed coupling is established, the auxiliary wheel carrier 34 is in an auxiliary wheel operating state in which, in order to carry out a compaction operation or generally to move the soil compactor 10 over soil, all the wheels 20 of the wheel assembly 16 rotate about the same axis of rotation, namely the operating wheel axis of rotation B.
[0032] The auxiliary wheel carrier 34 is coupled to the main wheel carrier 24 by means of a pivot coupling region 42 in such a way that, in the auxiliary wheel assembly state, i.e., when the coupling is not established in the fixed coupling region 36, the auxiliary wheel carrier can be pivoted about a pivot axis S and is displaceable in the direction of the pivot axis S with respect to the main wheel carrier 24. For this purpose, the pivot coupling region 42 has a pivoting/sliding shaft 44 which is firmly mounted on the main wheel carrier 24 in its two axial end regions by means of a shaft carrier element 46, 48. A pivoting/sliding sleeve 50, which can be displaced in the direction of the pivot axis S and rotated about the pivot axis S on the pivoting/sliding shaft 44, is provided on the auxiliary wheel carrier 34.
[0033] To carry out maintenance work or repair work on wheels 20.sub.2 or 20.sub.3 or on the auxiliary assembly wheel 20.sub.5 or to change at least one of these wheels, the fixed coupling of the auxiliary wheel carrier 34 to the main wheel carrier 24 can be removed for an auxiliary wheel carrier 34 in the auxiliary wheel operating state by loosening the fastening elements 38. The auxiliary wheel carrier is then in its auxiliary wheel assembly state, in which it is coupled to the main wheel carrier 24 only by means of the pivot coupling region 42. By pivoting the auxiliary wheel carrier 34 about the pivot axis S and/or by displacing the auxiliary wheel carrier 34 along the pivot axis S, it can, as indicated in
[0034] The auxiliary wheel carrier 34 can then be pivoted together with the auxiliary assembly wheel 20.sub.5 completely out of the area of the other wheels 20.sub.1, 20.sub.2, 20.sub.3, 20.sub.4 of the wheel assembly 16. If, for example, the second wheel 20.sub.3 is to be changed, after the auxiliary assembly wheel 20.sub.5 has been pivoted completely out of the area of the other wheels, the auxiliary wheel carrier 34 can be displaced in the direction of the pivot axis S towards the first pair of wheels 30 until the auxiliary assembly wheel 20.sub.5 at least partially overlaps the first wheel 20.sub.2 in the direction of the operating wheel axis of rotation B. The auxiliary assembly wheel 20.sub.5 can then be supported on the outer periphery of the first wheel 20.sub.2. No further measures are required to hold the auxiliary wheel carrier 34 or the auxiliary assembly wheel 20.sub.5 in this assembly position. Alternatively or for increased safety, a chain or the like can be hooked into an eyelet 52 of the auxiliary wheel carrier 34, by means of which chain the auxiliary wheel carrier 34 is held in the assembly position.
[0035] After the maintenance or assembly work has been carried out or a wheel has been changed, the auxiliary wheel carrier 34 can be moved back or pivoted back into a position in which it can be firmly coupled to the main wheel carrier 24 by means of the fixed coupling region 36 and the fastening elements 38 of same, so that the auxiliary wheel axis of rotation H again corresponds to the operating wheel axis of rotation B and all wheels 20 of the wheel assembly 16 can again rotate about the common operating wheel axis of rotation B.
[0036] In order to avoid lifting the soil compactor 10 in the region of the wheel assembly 16 in order to move the auxiliary wheel carrier 34 or the auxiliary assembly wheel 20.sub.5 mounted thereon into the assembly position, the auxiliary wheel carrier 34 can be designed to be variable in length, as shown in
[0037] In order to ensure stable, defined positioning of the two auxiliary wheel carrier elements 54, 56 in the auxiliary wheel operating state, they can be firmly coupled to one another by one or more coupling components 60. These coupling components 60 can be designed, for example, as coupling bolts passing through the two auxiliary carrier elements 54, 56. To change the length of the auxiliary wheel carrier 34, these coupling components 60 can be removed, whereupon the second auxiliary wheel carrier element 56 can be pulled toward or into the first auxiliary wheel carrier element 54 by activating the actuator 58. As a result, the auxiliary assembly wheel 20.sub.5 lifts off the soil U, while the other wheels 20.sub.1, 20.sub.2, 20.sub.3, 20.sub.4 of the wheel assembly 16 remain on the soil U. Subsequently, as already explained above, the auxiliary wheel carrier 34, and with it the auxiliary assembly wheel 20.sub.5, can be brought into its assembly position by pivoting about the pivot axis S or displacing in the direction of the pivot axis S.
[0038] Finally, it should be pointed out that when the operating wheel axis of rotation B is discussed in the context of the present invention, this is basically the wheel axis of rotation about which the wheels of a wheel assembly rotate when a soil compactor is traveling straight ahead, i.e., in the non-articulated state. In the embodiment of a wheel assembly described above and shown in the figures, in which, for example, the main wheel carrier 24 for steering the soil compactor is mounted on the compactor frame 28 of same so that it can pivot about a steering axis, all wheels of such a wheel assembly rotate about the common operating wheel axis of rotation B in the steering state, as well.
[0039] In principle, with the wheel assembly shown in