CONVEYING CARRIAGE FOR A DISTRIBUTING CONVEYOR AND CONNECTING ARRANGEMENT FOR FASTENING A CONVEYING CARRIAGE TO A DRIVE MEANS OF A DISTRIBUTING CONVEYOR
20230077893 · 2023-03-16
Inventors
Cpc classification
B65G17/38
PERFORMING OPERATIONS; TRANSPORTING
B65G47/46
PERFORMING OPERATIONS; TRANSPORTING
B65G17/066
PERFORMING OPERATIONS; TRANSPORTING
B65G17/42
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A conveying carriage for a distributing conveyor, in particular a crossbelt sorter, which is configured to be conveyed along at least one guide element of the distributing conveyor in a conveying direction, includes a connecting arrangement for connecting the conveying carriage to a drive means of the distributing conveyor. With regard to a maximum freedom of movement of the conveying carriage relative to the drive means of the distributing conveyor, it is provided that the connecting arrangement has an articulated bearing.
Claims
1. A conveying carriage for a distributing conveyor, wherein the conveying carriage is configured to be conveyed along at least one guide element of the distributing conveyor in a conveying direction, wherein the conveying carriage comprises a connecting arrangement for connecting the conveying carriage to a drive means of the distributing conveyor, and wherein the connecting arrangement has an articulated bearing.
2. The conveying carriage according to claim 1, wherein the articulated bearing is a radial articulated bearing.
3. The conveying carriage according to claim 1, wherein the articulated bearing is installed in an articulated housing that is fixedly connected to the drive means of the distributing conveyor via a connecting element.
4. The conveying carriage according to claim 3, wherein the connecting element is a canted mounting link.
5. The conveying carriage according to claim 3, wherein the drive means of the distributing conveyor comprises a rubber block chain with through holes extending in a vertical orientation in an installed state of the rubber block chain, and wherein the connecting element is connected to the rubber block chain by at least one bolt guided through one of the through holes of the rubber block chain.
6. The conveying carriage according to claim 1, wherein the articulated bearing is seated with an articulated bearing inner ring on a slide bolt that is at least indirectly fixedly connected to the conveying carriage.
7. The conveying carriage according to claim 6, wherein the slide bolt is arranged between two lateral fastening elements that are fixedly connected to the conveying carriage.
8. The conveying carriage according to claim 6, wherein the articulated bearing has lateral play on the slide bolt.
9. The conveying carriage according to claim 6, wherein the connecting arrangement is configured in such a way that, in a neutral position of the articulated bearing on the slide bolt, a central axis of the conveying carriage, a central axis of the articulated bearing and a neutral axis of the drive means of the distributing conveyor are aligned with one another.
10. A connecting arrangement for fastening a conveying carriage of a distributing conveyor according to claim 1 on a drive means of the distributing conveyor, wherein the connecting arrangement has an articulated bearing.
11. The conveying carriage according to claim 1, wherein the distributing conveyor is a crossbelt sorter.
12. The conveying carriage according to claim 1, wherein the articulated bearing is a maintenance-free radial articulated bearing.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021] There are various possibilities for designing and developing the teaching of the present disclosure in an advantageous manner. In this regard, reference is made, on the one hand, to the dependent patent claims and, on the other, to the following explanation of preferred embodiments of the disclosure based upon the drawing. Generally preferred designs and developments of the teaching are also explained in conjunction with the explanation of the preferred exemplary embodiments of the disclosure with reference to the drawings. Illustrated are the following:
[0022]
[0023]
[0024]
[0025]
[0026]
[0027] In the figures, unless otherwise indicated, the same reference signs denote the same components or parts.
DETAILED DESCRIPTION
[0028]
[0029] As can be seen in
[0030] A motor, which transmits the energy to the drive means 6 in the form of a rubber block chain 12, ensures the required driving force. The carriers 3 are connected to this rubber block chain 12 by an articulated connecting arrangement 13 and are, accordingly, set in motion by the rubber block chain 12. In other words, the drive energy of the rubber block chain 12 is transmitted via the connecting arrangement 13 to the respective carrier 3. Thereby, the entire tensile force of the rubber block chain 12 is transmitted to the connecting arrangement 13.
[0031]
[0032] According to the exemplary embodiment illustrated in
[0033] As can also be seen in
[0034] The coordinate system illustrated in
[0035] The articulated bearing 14 installed in the housing 15 initially enables the conveying carriage 3 to rotate about the z-axis. These rotations about the z-axis are required for the cornering of the conveying carriage 3.
[0036] In practice, the rubber block chain 12 must be deflected by deflecting rollers that are fastened to a frame of the sorting conveyor 5. As a result, the rubber block chain 12 experiences a polygon effect, whereas the conveying carriages 3 travel an approximately optimal radius within a curve. The resulting offset between conveying carriage 3 and rubber block chain 12 can likewise be compensated for by the connecting arrangement 13 according to embodiments of the present disclosure. Specifically, this takes place via a linear displacement of the articulated bearing 14 in the direction of the x-axis. This movement is realized via the kinematics of the connection 13. As already described above, a slide bolt 20 is located within the inner ring of the articulated bearing 14, which slide bolt is in turn fixedly connected to the conveying carriage 3—for example, via the above-mentioned lateral fastening elements 21. The length of the slide bolt 20 is greater by a certain amount than the width of the articulated bearing 14 (seen in the x-direction), thus enabling the displacement.
[0037] In addition to compensating for the polygon effect of the rubber block chain 12, the linear degree of freedom in the x-direction is also always required, if the carrier 3 undergoes a displacement perpendicular to the conveying direction. Exemplary scenarios for this purpose are the introduction and discharge process or in the region of the drive.
[0038] The travel to another height level, whether via a straight line slope or via a coil slope, requires the rotational degrees of freedom around the x-, y-, and z-axes. According to embodiments of the present disclosure, all three rotations can also be realized via the articulated bearing 13, as indicated by the rotating arrows in
[0039]
[0040] The aligned arrangement is achieved by a specific configuration of the connecting element 17, which connects the articulated housing 15 to the rubber block chain 12. As can be seen in
[0041] With regard to other advantageous embodiments of the device according to the present disclosure, to avoid repetition, reference is made to the general part of the description and also to the accompanying claims.
[0042] Finally, it is expressly pointed out that the exemplary embodiments described above of the device according to the disclosure serve only to explain the claimed teaching, but do not limit it to the exemplary embodiments.
LIST OF REFERENCE SIGNS
[0043] 1 Sorting line [0044] 2 Feeding station (end point) [0045] 3 Conveying carriage [0046] 4 Belt conveyor [0047] 5 Distributing conveyor [0048] 6 Drive means [0049] 7 Roller assembly [0050] 8 Running roller [0051] 9 Lateral guide roller [0052] 10 Lower support roller [0053] 11 Coupling rod [0054] 12 Rubber block chain [0055] 13 Connecting arrangement [0056] 14 Articulated bearing [0057] 15 Housing [0058] 16 Screw connection [0059] 17 Connecting element [0060] 18 Mounting link [0061] 19 Bolt connection [0062] 20 Slide bolt [0063] 21 Fastening element [0064] M-FW Central axis of conveying carriages [0065] M-GLCentral axis of articulated bearings [0066] NF-GBK Neutral axis of rubber block chain
[0067] The various embodiments described above can be combined to provide further embodiments. These and other changes can be made to the embodiments in light of the above-detailed description. In general, in the following claims, the terms used should not be construed to limit the claims to the specific embodiments disclosed in the specification and the claims, but should be construed to include all possible embodiments along with the full scope of equivalents to which such claims are entitled.