Multi-specification conveying line transition device and ceramic tile conveying system

By designing a multi-specification conveyor line transition device, the bumps and compatibility problems during tile transportation are solved, and a smooth transition and efficient production of multi-specification tiles are achieved, which reduces equipment maintenance and improves production efficiency.

CN223396835UActive Publication Date: 2025-09-30KEDA INDUSTRIAL GROUP CO LTD
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Patent Information

Application Number
CN202422767001.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-09-30
Estimated Expiration
2034-11-13

AI Technical Summary

Technical Problem

The existing tile conveyor line transition device is prone to causing tile bumps and tile blockage when connected to the edge grinding machine. It also has poor compatibility and is difficult to simultaneously convey tiles with large differences in specifications. In addition, water in the edge grinding machine can cause the device to rust and lock when in use, affecting production efficiency.

Method used

A multi-specification conveyor line transition device is designed, including a bracket and transition conveyor lines of various sizes. Each conveyor line consists of a belt bracket, a first transition wheel, a second transition wheel and a transition conveyor belt. The synchronization and stability are ensured by the transmission shaft and the seat bearing. The adjustment seat is set to adjust the height and gap to ensure that the conveyor belt is flush with the conveying surface of the edge grinder.

Benefits of technology

It achieves a smooth transition of tiles of various specifications, avoids brick blocking, improves production efficiency, reduces equipment maintenance frequency, and enhances the compatibility of the device.

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Abstract

The utility model discloses a multi-specification conveying line transition device and a ceramic tile conveying system. The conveying line transition device comprises a support and transition conveying lines of various sizes. All the transition conveying lines are mounted on the bracket; each transition conveying line comprises a belt supporting groove, a first transition wheel, a second transition wheel and a transition conveying belt. In each transition conveying line, the first transition wheel and the second transition wheel are connected with the two ends of the belt supporting groove correspondingly, and the first transition wheel, the second transition wheel and the belt supporting groove are sleeved with the transition conveying belt. The ceramic tile conveying system comprises the conveying line transition device. According to the ceramic tile conveying system, the transition conveying lines of various sizes are arranged, and the requirement that the ceramic tile conveying system conveys ceramic tiles with too large specification differences at the same time can be met.
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Description

Technical Field

[0001] The utility model belongs to the technical field of tile conveying, and in particular relates to a multi-specification conveying line transition device and a tile conveying system. Background Art

[0002] Currently, in the production of ceramic tiles, tiles need to be transported from the conveyor line's conveying surface to the edge grinding machine's conveying surface through a conveyor line transition device, and this conveying process must be smooth. However, when the existing tile conveyor line transition device is connected to the edge grinding machine, gaps exist between the conveyor pulleys, which can easily cause the tiles to jolt, causing them to deviate and leading to tile blockage. Furthermore, during the use of the edge grinding machine, a large amount of water will wash onto the conveyor line transition device, causing the bearings in the conveyor line transition device to rust and lock frequently. This requires a lot of time to repair and replace the equipment, affecting the efficiency of ceramic tile production.

[0003] The existing conveyor line transition device still has the problem of insufficient compatibility. When small-sized tiles need to be transported, the installation of the device will be more difficult, and it cannot meet the needs of simultaneously transporting tiles with large differences in specifications. Utility Model Content

[0004] The purpose of the utility model is to provide a multi-specification conveyor line transition device and a tile conveying system, which has transition conveyor lines of various sizes and can meet the needs of the tile conveying system for simultaneously conveying tiles with greatly different specifications.

[0005] In order to achieve the above-mentioned purpose of the utility model, the technical solution adopted by the utility model is as follows:

[0006] A multi-specification conveyor line transition device comprises a bracket and transition conveyor lines of various sizes; all the transition conveyor lines are mounted on the bracket; each of the transition conveyor lines comprises a belt bracket, a first transition wheel, a second transition wheel, and a transition conveyor belt; in each of the transition conveyor lines, the first transition wheel and the second transition wheel are respectively connected to the two ends of the belt bracket, and the transition conveyor belt is sleeved on the outside of the first transition wheel, the second transition wheel and the belt bracket.

[0007] The utility model discloses a multi-specification conveyor line transition device, which arranges transition conveyor lines of various sizes on a bracket, and each transition conveyor line includes a belt bracket, a first transition wheel, a second transition wheel, and a transition conveyor belt. The two transition wheels are connected at both ends of the belt bracket, and the rotation of the two transition wheels can drive the transition conveyor belt sleeved on the outside to rotate together, thereby meeting the transportation needs of ceramic tiles of various specifications in the ceramic tile conveying system.

[0008] Preferably, a transmission shaft and a seat bearing are provided on the bracket; the seat bearing supports the transmission shaft; all the first transition wheels are passed through by the transmission shaft, and all the first transition wheels rotate coaxially through the transmission shaft.

[0009] The utility model provides a conveyor line transition device with multiple specifications. A transmission shaft is installed by arranging a seat bearing, and then all first transition wheels are driven to rotate coaxially by the transmission shaft, thereby ensuring the working synchronization of the conveyor line transition device.

[0010] Preferably, the bracket includes a first vertical beam and a second vertical beam; the first vertical beam and the second vertical beam are both provided with the seat bearing; all the transition conveyor lines are located between the first vertical beam and the second vertical beam; one end of the transmission shaft is installed on the seat bearing on the first vertical beam; the other end of the transmission shaft passes through the center of the first transition wheel of each of the transition conveyor lines one by one and is then installed on the seat bearing on the second vertical beam.

[0011] The utility model provides a multi-specification conveyor line transition device, which can ensure the rotational stability of the first transition wheel by arranging a transmission shaft to pass through the center of the first transition wheel of each transition conveyor line one by one, and both ends of the transmission shaft are respectively installed on the first vertical beam and the second vertical beam through seat bearings.

[0012] Preferably, the bracket includes a crossbeam; a gap is provided between the belt bracket of each transition conveyor line and the transition conveyor belt; one end of the crossbeam is installed on the first vertical beam; the other end of the crossbeam passes through each of the gaps one by one and is installed on the second vertical beam.

[0013] The utility model provides a multi-specification conveyor line transition device, which can facilitate the installation of the transition conveyor line by arranging gaps between the belt brackets of the transition conveyor line and the transition conveyor belt and passing the crossbeams through each gap one by one.

[0014] Preferably, the bracket further includes a plurality of adjustment seats; both ends of the cross beam are respectively mounted on the first vertical beam and the second vertical beam through the adjustment seats.

[0015] The utility model provides a multi-specification conveyor line transition device. A crossbeam is installed on a first vertical beam and a second vertical beam of a bracket through an adjusting seat, so that the installation height of the crossbeam can be adjusted.

[0016] Preferably, the adjustment seat includes a first adjustment member; the first adjustment member adjusts the height difference between the horizontal beam and the first vertical beam, and adjusts the height difference between the horizontal beam and the second vertical beam.

[0017] The utility model provides a transition device for a conveyor line with multiple specifications. The first adjusting member is provided to adjust the height difference between the cross beam and the first vertical beam and the second vertical beam, thereby adjusting the installation height of the transition conveyor line.

[0018] Preferably, the adjustment seat is provided between the crossbeam and each of the transition conveying lines.

[0019] The utility model provides a multi-specification conveyor line transition device. By arranging an adjustment seat between a crossbeam and each transition conveyor line, the distance between the crossbeam and the transition conveyor line can be adjusted.

[0020] Preferably, the adjustment seat further includes a second adjustment member; the second adjustment member adjusts the height difference between the beam and each of the transition conveying lines.

[0021] The utility model provides a multi-specification conveyor line transition device, which adjusts the height difference between the crossbeam and each transition conveyor line by setting a second adjusting member, thereby making the top surface of the transition conveyor line and the conveying surface of the edge grinding machine and the conveyor line on the same horizontal plane.

[0022] The utility model also provides a tile conveying system, including the above-mentioned multi-specification conveyor line transition device; the tile conveying system also includes an edge grinding machine and a conveyor line; the conveyor line transition device is arranged between the edge grinding machine and the conveyor line.

[0023] The utility model provides a ceramic tile conveying system, which can transfer the ceramic tiles conveyed on the conveying line to the edge grinding machine by arranging a conveying line transition device between the edge grinding machine and the conveying line.

[0024] Preferably, the edge grinding machine includes a first conveying surface; the transport line includes a second conveying surface; the first conveying surface is adjacent to one end of the top surface of the transition conveyor belt, and the first conveying surface is flush with the top surface of the transition conveyor belt; the second conveying surface is adjacent to the other end of the top surface of the transition conveyor belt, and the first conveying surface is flush with the top surface of the transition conveyor belt.

[0025] The utility model provides a tile conveying system, which can firstly transfer the tiles from the second conveying surface to the top surface of the transition conveying belt, and then transfer the tiles from the top surface of the transition conveying belt to the first conveying surface by arranging the first conveying surface, the second conveying surface and the top surface of the transition conveying belt on the same horizontal line.

[0026] Beneficial effects:

[0027] The utility model discloses a multi-specification conveyor line transition device and a tile conveying system, which arranges transition conveyor lines of various sizes on a bracket, and each transition conveyor line includes a belt bracket, a first transition wheel, a second transition wheel, and a transition conveyor belt. The two transition wheels are connected to the two ends of the belt bracket, and the rotation of the two transition wheels can drive the transition conveyor belt sleeved on the outside to rotate together, thereby meeting the transportation needs of tiles of various specifications in the tile conveying system. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 Shown is a structural diagram of a multi-specification conveyor line transition device according to an embodiment;

[0029] Figure 2 Shown is a top view of a tile conveying system according to an embodiment;

[0030] Figure 3 Shown is a front view of a tile conveying system according to an embodiment;

[0031] Figure 4 for Figure 3 A partial enlarged view of part A.

[0032] Reference numerals

[0033] 10. Bracket; 101. First vertical beam; 102. Second vertical beam; 11. Belt seat bearing; 12. First transition wheel; 13. First toothed belt; 14. Second toothed belt; 15. Crossbeam; 151. Adjustment seat; 152. Second adjustment member; 16. First belt bracket; 17. Second belt bracket; 18. Second transition wheel; 19. Support roller; 20. Edge grinder; 21. Ceramic tile; 22. First conveying surface; 30. Transport line; 31. Second conveying surface. DETAILED DESCRIPTION

[0034] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the specific implementation methods of the present invention will be described below with reference to the accompanying drawings. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings and other implementation methods can be obtained based on these drawings without inventive work.

[0035] The technical solution of the present utility model is described in detail below with reference to specific embodiments.

[0036] Example 1

[0037] like Figure 1As shown, a multi-specification conveyor line transition device of this embodiment includes a bracket 10 and transition conveyor lines of various sizes; all transition conveyor lines are installed on the bracket 10; each transition conveyor line includes a belt bracket, a first transition wheel 12, a second transition wheel 18, and a transition conveyor belt; in each transition conveyor line, the first transition wheel 12 and the second transition wheel 18 are respectively connected to the two ends of the belt bracket, and the transition conveyor belt is sleeved on the outside of the first transition wheel 12, the second transition wheel 18 and the belt bracket.

[0038] Preferably, a transmission shaft and a seat bearing 11 are provided on the bracket 10; the seat bearing 11 supports the transmission shaft; all the first transition wheels 12 are passed through by the transmission shaft, and all the first transition wheels 12 rotate coaxially through the transmission shaft.

[0039] Preferably, the bracket 10 includes a first vertical beam 101 and a second vertical beam 102; a seat bearing 11 is provided on the first vertical beam 101 and the second vertical beam 102; all transition conveyor lines are located between the first vertical beam 101 and the second vertical beam 102; one end of the transmission shaft is installed on the seat bearing 11 on the first vertical beam 101; the other end of the transmission shaft passes through the center of the first transition wheel 12 of each transition conveyor line one by one and then is installed on the seat bearing 11 on the second vertical beam 102.

[0040] Preferably, the bracket 10 includes a crossbeam 15; a gap is provided between the belt bracket of each transition conveyor line and the transition conveyor belt; one end of the crossbeam 15 is mounted on the first vertical beam 101; the other end of the crossbeam 15 passes through each gap one by one and is then mounted on the second vertical beam 102.

[0041] Preferably, the bracket 10 further includes a plurality of adjustment seats 151 ; both ends of the cross beam 15 are respectively mounted on the first vertical beam 101 and the second vertical beam 102 through the adjustment seats 151 .

[0042] Preferably, the adjustment seat 151 includes a first adjustment member; the first adjustment member adjusts the height difference between the horizontal beam 15 and the first vertical beam 101 , and adjusts the height difference between the horizontal beam 15 and the second vertical beam 102 .

[0043] Preferably, an adjustment seat 151 is provided between the crossbeam 15 and each transition conveying line.

[0044] Preferably, the adjustment seat 151 further includes a second adjustment member 152 ; the second adjustment member 152 adjusts the height difference between the crossbeam 15 and each transition conveying line.

[0045] A multi-specification conveyor line transition device of this embodiment is provided by arranging transition conveyor lines of various sizes on a bracket 10, and each transition conveyor line includes a belt bracket, a first transition wheel 12, a second transition wheel 18, and a transition conveyor belt. The two transition wheels are connected to the two ends of the belt bracket, and the rotation of the two transition wheels can drive the transition conveyor belt mounted on the outside to rotate together, thereby meeting the transportation requirements of ceramic tiles of various specifications in the ceramic tile conveying system.

[0046] A multi-specification conveyor line transition device of this embodiment is configured to install a transmission shaft by providing a seat bearing 11, and then drive all first transition wheels 12 to rotate coaxially through the transmission shaft, thereby ensuring the working synchronization of the conveyor line transition device.

[0047] A multi-specification conveyor line transition device of this embodiment is configured to ensure the rotational stability of the first transition wheel 12 by arranging a transmission shaft to pass through the center of the first transition wheel 12 of each transition conveyor line one by one, and both ends of the transmission shaft are respectively mounted on the first vertical beam 101 and the second vertical beam 102 through seat bearings 11.

[0048] A multi-specification conveyor line transition device of this embodiment can facilitate the installation of the transition conveyor line by setting a gap between the belt bracket of the transition conveyor line and the transition conveyor belt, and passing the crossbeam 15 through each gap one by one.

[0049] This embodiment provides a multi-specification conveyor line transition device. The crossbeam 15 is installed on the first vertical beam 101 and the second vertical beam 102 of the bracket 10 through the adjustment seat 151, so that the installation height of the crossbeam 15 can be adjusted.

[0050] A multi-specification conveyor line transition device of this embodiment can adjust the height difference between the cross beam 15 and the first vertical beam 101 and the second vertical beam 102 by setting a first adjusting member, thereby adjusting the installation height of the transition conveyor line.

[0051] A multi-specification conveyor line transition device of this embodiment can adjust the distance between the crossbeam 15 and each transition conveyor line by providing an adjustment seat 151 between the crossbeam 15 and each transition conveyor line.

[0052] Specifically, the first transition wheel 12 of this embodiment is larger than the second transition wheel 18; the conveyor line transition device of this embodiment is set to three, of which the two conveyor line transition devices located on the periphery include a first toothed belt 13 and a first belt bracket 16, and the one located in the middle includes a second toothed belt 14 and a second belt bracket 17; wherein the size of the second belt bracket 17 is larger than the first belt bracket 16, that is, the size of the second toothed belt 14 is also larger than the first toothed belt 13.

[0053] Specifically, the seat bearing 11 of this embodiment is installed on the bracket 10 of the conveyor line transition device; both ends of the transmission shaft are installed on the seat bearing 11; the first transition wheel 12 is installed on the transmission shaft; the crossbeam 15 is installed on the bracket 10 through the adjustment seat 151; the first belt bracket 16 and the second belt bracket 17 are installed on the crossbeam 15 through the adjustment seat 151.

[0054] Specifically, the first belt bracket 16 and the second belt bracket 17 are both equipped with a protective plate for mounting the second transition wheel 18. A supporting wheel 19 is also mounted on the outside of each belt bracket.

[0055] Specifically, the second transition wheel 18 is also sealed by a skeleton oil seal.

[0056] Example 2

[0057] like Figures 2-4 As shown, a tile conveying system of this embodiment includes a conveyor line transition device of multiple specifications of embodiment one; the tile conveying system also includes an edge grinding machine 20 and a conveyor line 30; the conveyor line transition device is arranged between the edge grinding machine 20 and the conveyor line 30.

[0058] Preferably, the edge grinding machine 20 includes a first conveying surface 22; the conveying line includes a second conveying surface 31; the first conveying surface 22 is adjacent to one end of the top surface of the transition conveyor belt, and the first conveying surface 22 is flush with the top surface of the transition conveyor belt; the second conveying surface 31 is adjacent to the other end of the top surface of the transition conveyor belt, and the first conveying surface 22 is flush with the top surface of the transition conveyor belt.

[0059] A tile conveying system of this embodiment can transfer the tiles 21 conveyed on the transport line 30 to the edge grinding machine 20 by arranging a transport line transition device between the edge grinding machine 20 and the transport line 30 .

[0060] A tile conveying system of this embodiment, by arranging the first conveying surface 22, the second conveying surface 31, and the top surface of the transition conveyor belt on the same horizontal line, can first transition the tiles 21 from the second conveying surface 31 to the top surface of the transition conveyor belt, and then transition from the top surface of the transition conveyor belt to the first conveying surface 22.

[0061] Specifically, the supporting wheel 19 is arranged at one end of the belt bracket close to the edge grinding machine 20, and the supporting wheel 19 can more stably transfer the tiles.

[0062] Specifically, this embodiment adjusts the first adjustment member to align the upper end surfaces of the first and second toothed belts 13, 14 with the belt surface of the edge grinder 20. This embodiment tensions the first and second toothed belts 13, 14 by adjusting the second adjustment member 152. This embodiment also allows the transition conveyor line to be moved left or right to adjust the spacing between the belts. The various sizes of transition conveyor line devices accommodate tiles 21 of varying specifications.

[0063] Furthermore, when the conveyor line transition device of this embodiment is in use, the pulley of the conveyor line 30 is installed on the drive shaft, and the power transmitted by the pulley of the conveyor line 30 is used to realize the synchronous operation of the first transition wheel 12, the second transition wheel 18, the first toothed belt 13 and the second toothed belt 14.

[0064] Furthermore, when the conveyor line transition device of this embodiment is in use, the support wheel 19 can eliminate the distance between the second transition wheel 18 and the edge grinding machine 20, so that the tiles 21 can transition smoothly.

[0065] The above describes in detail the embodiments of the multi-specification conveyor line transition device and tile conveying system provided by the present invention. This article uses specific examples to illustrate the principles and implementation methods of the present invention. The description of the above embodiments is only intended to help understand the core concept of the present invention. It should be noted that those skilled in the art can make various improvements and modifications to the present invention without departing from the principles of the present invention, and such improvements and modifications also fall within the scope of protection of the claims of the present invention.

Claims

1. A multi-specification conveyor line transition device, characterized in that: include: Bracket (10); Transition conveyor lines of various sizes; the transition conveyor lines are installed on the bracket (10); The transition conveyor line includes a belt bracket, a first transition wheel (12), a second transition wheel (18), and a transition conveyor belt; in each of the transition conveyor lines, the first transition wheel (12) and the second transition wheel (18) are respectively connected to the two ends of the belt bracket, and the transition conveyor belt is sleeved on the outside of the first transition wheel (12), the second transition wheel (18) and the belt bracket.

2. The conveyor line transition device according to claim 1, characterized in that: A transmission shaft and a seat bearing (11) are provided on the bracket (10); the seat bearing (11) supports the transmission shaft; the first transition wheel (12) is passed through by the transmission shaft, and the first transition wheel (12) rotates coaxially with the transmission shaft.

3. The conveyor line transition device according to claim 2, characterized in that: The bracket (10) includes a first vertical beam (101) and a second vertical beam (102); the first vertical beam (101) and the second vertical beam (102) are both provided with the seat bearing (11); all the transition conveyor lines are located between the first vertical beam (101) and the second vertical beam (102); one end of the transmission shaft is mounted on the seat bearing (11) on the first vertical beam (101); the other end of the transmission shaft passes through the center of each of the first transition wheels (12) one by one and is then mounted on the seat bearing (11) on the second vertical beam (102).

4. The conveyor line transition device according to claim 3, characterized in that: The bracket (10) includes a crossbeam (15); a gap is provided between the belt bracket of each transition conveyor line and the transition conveyor belt; one end of the crossbeam (15) is mounted on the first vertical beam (101); the other end of the crossbeam (15) passes through each of the gaps one by one and is then mounted on the second vertical beam (102).

5. The conveyor line transition device according to claim 4, characterized in that: The bracket (10) further comprises a plurality of adjustment seats (151); the two ends of the crossbeam (15) are respectively mounted on the first vertical beam (101) and the second vertical beam (102) through the adjustment seats (151).

6. The conveyor line transition device according to claim 5, characterized in that: The adjustment seat (151) includes a first adjustment member; the first adjustment member adjusts the height difference between the cross beam (15) and the first vertical beam (101), and adjusts the height difference between the cross beam (15) and the second vertical beam (102).

7. The conveyor line transition device according to claim 5, characterized in that: The adjustment seat (151) is provided between the crossbeam (15) and each transition conveying line.

8. The conveyor line transition device according to claim 7, characterized in that: The adjustment seat (151) further comprises a second adjustment member (152); the second adjustment member (152) adjusts the height difference between the crossbeam (15) and each of the transition conveying lines.

9. A tile conveying system, characterized in that: It comprises a multi-specification conveyor line transition device as described in any one of claims 1 to 8; the tile conveying system also comprises an edge grinding machine (20) and a conveyor line (30); the conveyor line transition device is arranged between the edge grinding machine (20) and the conveyor line (30).

10. The tile conveying system according to claim 9, characterized in that: The edge grinding machine (20) includes a first conveying surface (22); the transport line (30) includes a second conveying surface (31); the first conveying surface (22) is adjacent to one end of the top surface of the transition conveyor belt, and the first conveying surface (22) is flush with the top surface of the transition conveyor belt; the second conveying surface (31) is adjacent to the other end of the top surface of the transition conveyor belt, and the first conveying surface (22) is flush with the top surface of the transition conveyor belt.