Modular wallboard mechanism of tile press

Through modular design and gear meshing transmission, the problems of low installation accuracy and low efficiency of the wall panel mechanism of the tile press are solved, and high-precision and high-efficiency installation is achieved, which is suitable for the production of wall panel mechanism of the tile press.

CN222817686UActive Publication Date: 2025-05-02SHANGHAI ZHONGJI MACHINERY
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202420786360.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-04-16
Publication Date
2025-05-02
Estimated Expiration
2034-04-16

AI Technical Summary

Technical Problem

The existing tile press wall panel mechanism has low installation accuracy and low installation efficiency, which leads to inconvenient processing and difficult to ensure installation accuracy.

Method used

Adopting a modular design, the tile press wall panel mechanism is divided into front chamber, transition chamber and rear chamber. Each chamber is equipped with gears and worm shafts, transmit power through gear meshing, and adjust the gear spacing through worm shafts to achieve modular assembly and overall hoisting.

Benefits of technology

It improves the installation accuracy and efficiency of the wall panel mechanism of the tile press, which is simple and convenient to operate, has strong adaptability and better applicability.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222817686U_ABST
    Figure CN222817686U_ABST
Patent Text Reader

Abstract

The utility model discloses a modular wallboard mechanism of a tile press. The modular wallboard mechanism comprises a wallboard, a front bin, at least one transition bin and a rear bin which are independent of one another and arranged in sequence are defined by the wallboards. A transition bin driving gear and a transition bin driven gear which are meshed with each other are installed in the transition bin, the transition bin driving gear and the transition bin driven gear are installed on a transition bin driving shaft and a transition bin driven shaft respectively, and the transition bin driven shaft is fixedly sleeved with a transition bin turbine eccentric sleeve. A gear ring structure I is arranged on the peripheral surface of the transition bin turbine eccentric sleeve, and the transition bin is further provided with a transition bin worm shaft provided with an external thread structure I matched with the gear ring structure I; the structure of the front bin is basically the same as that of the transition bin, and the difference is that a front bin connecting gear meshed with the front bin driving gear and matched with the rear bin driving gear is further installed on the side communicated with the outside. The driving gears between the adjacent bins are meshed through transition gears between the bins. The mechanism is reasonable in structural design, convenient to assemble, good in adaptability and good in application prospect.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of cold-bending forming equipment for plates in a color steel plate production line, and relates to a modular wall panel mechanism for a tile pressing machine. Background Art

[0002] The tile press is a machine composed of unloading, forming, and post-forming cutting. Its color plate has a smooth and beautiful appearance, uniform paint pattern, high strength, and durability. It is widely used in industrial and civil buildings, such as factories, warehouses, gymnasiums, exhibition halls, theaters and other rooms and walls. The wall panel mechanism is an important component of the tile press. The operation of the tile press is directly related to the wall panel mechanism, which affects the strength and accuracy of the tile press. At present, the wall panel mechanism of the tile press is generally processed directly. If its length is too long, it is fixed by steel plate welding, which brings many inconveniences to the processing. It is not only time-consuming and labor-intensive, but also difficult to ensure the installation accuracy.

[0003] Therefore, it is of great practical significance to develop a tile press wall panel mechanism with high installation accuracy and convenient installation. Utility Model Content

[0004] Due to the above-mentioned defects in the prior art, the utility model provides a tile press wall panel mechanism with high installation precision and convenient installation. The utility model mainly modularizes the tile press wall panel mechanism, with a certain number of tracks as a group, which can be assembled according to needs in actual operation. After the assembly is completed, it can be hoisted as a whole to solve the problem of low installation precision and low installation efficiency of the current tile press wall panel mechanism.

[0005] In order to achieve the above purpose, the utility model provides the following technical solutions:

[0006] A modular wall panel mechanism for a tile pressing machine, comprising a wall panel;

[0007] The wall panels are enclosed into a plurality of independent and sequentially arranged chambers, the two chambers at the edge are respectively the front chamber and the rear chamber, and the chamber between the front chamber and the rear chamber is the transition chamber;

[0008] The transition chamber is provided with a transition chamber active gear and a transition chamber passive gear meshing with each other, and the transition chamber active gear and the transition chamber passive gear are respectively installed on the transition chamber active shaft and the transition chamber passive shaft, and a transition chamber turbine eccentric sleeve is fixedly mounted on the outer sleeve of the transition chamber passive shaft, and a gear ring structure I is provided on the outer peripheral surface of the transition chamber turbine eccentric sleeve, and the transition chamber is also provided with a transition chamber worm shaft, and an external thread structure I matching the gear ring structure I is provided on the transition chamber worm shaft, and the spacing between the transition chamber active gear and the transition chamber passive gear can be adjusted by rotating the transition chamber worm shaft;

[0009] The structure of the rear bin is basically the same as that of the transition bin, except that the driving gear of the rear bin is partially exposed to the wall panel;

[0010] The structure of the front compartment is basically the same as that of the transition compartment, except that a front compartment connecting gear meshing with the front compartment driving gear is also installed on the side communicating with the outside world, and the front compartment connecting gear matches the rear compartment driving gear;

[0011] Inter-bin transition gears are installed between the front bin and the transition bin, between adjacent transition bins, and between the transition bin and the rear bin. The inter-bin transition gears are respectively meshed with driving gears of two adjacent bins.

[0012] The modular wall panel mechanism of the tile pressing machine of the utility model has a reasonable structural design. A front bin, a transition bin and a rear bin are arranged in a single modular wall panel mechanism. The gear in the front bin is transmitted to the rear bin through the transition bin. At the same time, the front bin connecting gear in the front bin can be matched with the rear bin active gear. The modular wall panel mechanism II is assembled to the front end of the modular wall panel mechanism I, and the front bin connecting gear of the modular wall panel mechanism I is meshed with the rear bin active gear of the modular wall panel mechanism II. Technical personnel in this field can assemble it according to their needs. The operation is simple and convenient and the adaptability is good. In addition, the design inside the bin is reasonable, and the worm shaft arranged cooperates with the turbine eccentric sleeve, so that the vertical position of the passive shaft can be adjusted, that is, the spacing between the active gear and the passive gear is adjusted, which gives it a certain adjustment ability, better applicability and good application prospects.

[0013] As the preferred technical solution:

[0014] In the modular wall panel mechanism of a tile press as described above, the number of the transition chambers is 2 to 4. They can be grouped into 4 or 6, and molded into modular wall panel units. After the wall panel units are assembled, they can be hoisted as a whole and spliced ​​and matched at will, and the power is transmitted through gear meshing.

[0015] In the modular wall panel mechanism of a tile pressing machine as described above, the transition bin worm shaft is installed on the top of the transition bin and its end with an external thread structure I penetrates into the transition bin from the outside.

[0016] In the modular wall panel mechanism of a tile press as described above, the transition bin worm shaft, the front bin worm shaft and the rear bin worm shaft are all installed on the same side.

[0017] In the modular wall panel mechanism of a tile press as described above, the transition bin driving gear, the front bin driving gear, the rear bin driving gear, the front bin connecting gear and the inter-bin transition gear are installed on the same horizontal plane.

[0018] In the modular wall panel mechanism of a tile press as described above, the transition bin worm shaft, the front bin worm shaft and the rear bin worm shaft are arranged vertically.

[0019] In the modular wall panel mechanism of a tile press as described above, the passive gear of the transition bin is installed just above the active gear of the transition bin;

[0020] The front chamber passive gear is installed just above the front chamber active gear;

[0021] The rear compartment passive gear is installed just above the rear compartment active gear.

[0022] The above technical solution is only a feasible technical solution of the present utility model, and the protection scope of the present utility model is not limited thereto. Those skilled in the art can reasonably adjust the specific design according to actual needs.

[0023] Compared with the prior art, the above utility model has the following advantages or beneficial effects:

[0024] (1) The modular wall panel mechanism of the tile press of the utility model has a reasonable structural design. A front bin, a transition bin and a rear bin are arranged in a single modular wall panel mechanism. The gear in the front bin is transmitted to the rear bin through the transition bin. At the same time, the front bin connecting gear in the front bin can be matched with the rear bin driving gear. The modular wall panel mechanism II is assembled to the front end of the modular wall panel mechanism I. The front bin connecting gear of the modular wall panel mechanism I is meshed with the rear bin driving gear of the modular wall panel mechanism II. The technicians in this field can assemble it according to their needs. The operation is simple and convenient and the adaptability is good.

[0025] (2) The modular wall panel mechanism of the tile press of the utility model has reasonable designs in each bin, and the worm shaft and the turbine eccentric sleeve cooperate with each other to adjust the vertical position of the passive shaft, that is, to adjust the distance between the active gear and the passive gear, which gives it a certain adjustment ability, better applicability and good application prospects. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] The present invention and its features, appearance and advantages will become more apparent by reading the detailed description of the non-limiting embodiments with reference to the following drawings. The same reference numerals indicate the same parts in all the drawings. The drawings are not drawn to scale, and the emphasis is on illustrating the subject matter of the present invention.

[0027] Figure 1 It is a structural schematic diagram of the modular wall panel mechanism of the tile pressing machine of the utility model;

[0028] Figure 2 It is a schematic diagram of the assembly of two modular wall panels of a tile press;

[0029] Among them, 1 is a transition bin, 11 is a transition bin driving gear, 12 is a transition bin passive gear, 13 is a transition bin worm shaft, 2 is a front bin, 21 is a front bin driving gear, 22 is a front bin passive gear, 23 is a front bin worm shaft, 24 is a front bin turbine eccentric sleeve, 3 is a rear bin, 31 is a rear bin driving gear, 32 is a rear bin passive gear, 32 is a rear bin worm shaft, 4 is a wall panel, 5 is a front bin connecting gear, 6 is an inter-bin transition gear, 7 is a modular wall panel mechanism I of a tile press, and 8 is a modular wall panel mechanism II of a tile press. DETAILED DESCRIPTION

[0030] The structure of the present invention is further described below in conjunction with the accompanying drawings and specific embodiments, but is not intended to limit the present invention.

[0031] Example 1

[0032] A modular wall panel mechanism for a tile press, such as Figure 1 As shown, it includes a wall panel 4;

[0033] The wall panels are surrounded by multiple independent and sequentially arranged chambers. The two chambers at the edge are the front chamber 2 and the rear chamber 3. The chamber between the front chamber 2 and the rear chamber 3 is the transition chamber 1. There are two transition chambers in total.

[0034] A transition chamber 1 is provided with a transition chamber driving gear 11 and a transition chamber passive gear 12 meshing with each other, the transition chamber passive gear 12 is provided just above the transition chamber driving gear 11, the transition chamber driving gear 11 and the transition chamber passive gear 12 are provided on the transition chamber driving shaft and the transition chamber passive shaft respectively, a transition chamber turbine eccentric sleeve is fixedly sleeved on the outer surface of the transition chamber passive shaft, a gear ring structure I is provided on the outer circumferential surface of the transition chamber turbine eccentric sleeve, the transition chamber 1 is also provided with a transition chamber worm shaft 13, an external thread structure I matching the gear ring structure I is provided on the transition chamber worm shaft 13, the transition chamber worm shaft 13 is provided with the top of the transition chamber 1 and the end with the external thread structure I penetrates into the transition chamber 1 from the outside, and the distance between the transition chamber driving gear 11 and the transition chamber passive gear 12 can be adjusted by rotating the transition chamber worm shaft 13;

[0035] A rear warehouse driving gear 31 and a rear warehouse passive gear 32 meshing with each other are installed in the rear warehouse 3. The rear warehouse passive gear 32 is installed just above the rear warehouse driving gear 31. Part of the rear warehouse driving gear 31 is exposed to the wall panel. The rear warehouse driving gear 31 and the rear warehouse passive gear 32 are respectively installed on the rear warehouse driving shaft and the rear warehouse passive shaft. A rear warehouse turbine eccentric sleeve is fixed on the outer sleeve of the rear warehouse passive shaft. A gear ring structure II is provided on the outer peripheral surface of the rear warehouse turbine eccentric sleeve. The rear warehouse worm shaft 33 is also installed in the rear warehouse 3. The rear warehouse worm shaft 33 is provided with an external thread structure II matching the gear ring structure II. The rear warehouse worm shaft 33 is installed on the top of the rear warehouse 3 and its end with the external thread structure II penetrates into the rear warehouse 3 from the outside. The distance between the rear warehouse driving gear 31 and the rear warehouse passive gear 32 can be adjusted by rotating the rear warehouse worm shaft 33.

[0036] A front warehouse driving gear 21 and a front warehouse passive gear 22 meshing with each other are installed in the front warehouse 2, and the front warehouse passive gear 22 is installed just above the front warehouse driving gear 21. A front warehouse connecting gear 5 meshing with the front warehouse driving gear 21 is also installed on the side communicating with the outside world, and the front warehouse connecting gear 5 matches with the rear warehouse driving gear 31. The front warehouse driving gear 21 and the front warehouse passive gear 22 are respectively installed on the front warehouse driving shaft and the front warehouse passive shaft, and a front warehouse turbine eccentric sleeve 24 is fixed on the outer sleeve of the front warehouse passive shaft, and a gear ring structure III is provided on the outer peripheral surface of the front warehouse turbine eccentric sleeve 24. The front warehouse 2 is also equipped with a front warehouse worm shaft 23, and the front warehouse worm shaft 23 is provided with an external thread structure III matching the gear ring structure III. The front warehouse worm shaft 23 is installed on the top of the front warehouse 2 and its end with the external thread structure III penetrates into the front warehouse 2 from the outside, and the spacing between the front warehouse driving gear 21 and the front warehouse passive gear 22 can be adjusted by rotating the front warehouse worm shaft 23;

[0037] The transition bin worm shaft 13, the front bin worm shaft 23 and the rear bin worm shaft 33 are all installed on the same side;

[0038] Inter-bin transition gears 6 are installed between the front bin 2 and the transition bin 1, between the adjacent transition bins 1, and between the transition bin 1 and the rear bin 3. The inter-bin transition gears 6 are respectively meshed with the driving gears of the two adjacent bins. The transition bin driving gear 11, the front bin driving gear 21, the rear bin driving gear 31, the front bin connecting gear 5 and the inter-bin transition gear 6 are installed on the same horizontal plane, and the transition bin worm shaft 13, the front bin worm shaft 23 and the rear bin worm shaft 33 are arranged vertically.

[0039] Adjacent tile press modular wall panel mechanism assembly Figure 2 As shown, the rear bin driving gear of the modular wall panel mechanism I 7 of the tile press is meshed with the front bin connecting gear of the modular wall panel mechanism II 8 of the tile press.

[0040] In summary, the present application provides a modular wall panel mechanism for a tile press with a reasonable structural design. A front bin, a transition bin and a rear bin are provided in a single modular wall panel mechanism. The gear in the front bin is transmitted to the rear bin through the transition bin. At the same time, the front bin connecting gear in the front bin can be matched with the rear bin driving gear. The modular wall panel mechanism II is assembled to the front end of the modular wall panel mechanism I, and the front bin connecting gear of the modular wall panel mechanism I is meshed with the rear bin driving gear of the modular wall panel mechanism II. Technical personnel in this field can assemble it according to their needs. The operation is simple, convenient and adaptable. The design inside the bin is reasonable, and the worm shaft and the turbine eccentric sleeve are matched to adjust the vertical position of the passive shaft, that is, to adjust the distance between the active gear and the passive gear, which gives it a certain adjustment ability, better applicability and good application prospects.

[0041] Those skilled in the art should understand that those skilled in the art can implement variations by combining the prior art and the above embodiments, which will not be described in detail here. Such variations do not affect the essential content of the present utility model, and will not be described in detail here.

[0042] The above describes the preferred embodiments of the utility model. It should be understood that the utility model is not limited to the above-mentioned specific implementation methods, and the devices and structures that are not described in detail should be understood to be implemented in a common manner in the art; any technician familiar with the art can use the above-disclosed methods and technical contents to make many possible changes and modifications to the technical solutions of the utility model without departing from the scope of the technical solution of the utility model, or modify them into equivalent embodiments of equivalent changes, which does not affect the essential content of the utility model. Therefore, any simple modification, equivalent change and modification made to the above embodiments based on the technical essence of the utility model without departing from the content of the technical solution of the utility model still falls within the scope of protection of the technical solution of the utility model.

Claims

1. A modular wall panel mechanism for a tile press, characterized in that: Including wall panels; The wall panels are enclosed into a plurality of independent and sequentially arranged chambers, the two chambers at the edge are respectively the front chamber and the rear chamber, and the chamber between the front chamber and the rear chamber is the transition chamber; The transition chamber is provided with a transition chamber active gear and a transition chamber passive gear meshing with each other, and the transition chamber active gear and the transition chamber passive gear are respectively installed on the transition chamber active shaft and the transition chamber passive shaft, and a transition chamber turbine eccentric sleeve is fixedly mounted on the outer sleeve of the transition chamber passive shaft, and a gear ring structure I is provided on the outer peripheral surface of the transition chamber turbine eccentric sleeve, and the transition chamber is also provided with a transition chamber worm shaft, and an external thread structure I matching the gear ring structure I is provided on the transition chamber worm shaft, and the spacing between the transition chamber active gear and the transition chamber passive gear can be adjusted by rotating the transition chamber worm shaft; The structure of the rear bin is basically the same as that of the transition bin, except that the driving gear of the rear bin is partially exposed to the wall panel; The structure of the front compartment is basically the same as that of the transition compartment, except that a front compartment connecting gear meshing with the front compartment driving gear is also installed on the side communicating with the outside world, and the front compartment connecting gear matches the rear compartment driving gear; Inter-bin transition gears are installed between the front bin and the transition bin, between adjacent transition bins, and between the transition bin and the rear bin. The inter-bin transition gears are respectively meshed with driving gears of two adjacent bins.

2. A modular wall panel mechanism for a tile pressing machine according to claim 1, characterized in that: The number of the transitional bins is 2 to 4.

3. A modular wall panel mechanism for a tile pressing machine according to claim 1, characterized in that: The transition bin worm shaft is installed on the top of the transition bin and one end thereof with an external thread structure I penetrates into the transition bin from the outside.

4. A modular wall panel mechanism for a tile pressing machine according to claim 3, characterized in that: The transition bin worm shaft, the front bin worm shaft and the rear bin worm shaft are all installed on the same side.

5. A modular wall panel mechanism for a tile pressing machine according to claim 1, characterized in that: The transition bin driving gear, the front bin driving gear, the rear bin driving gear, the front bin connecting gear and the inter-bin transition gear are installed on the same horizontal plane.

6. A modular wall panel mechanism for a tile pressing machine according to claim 5, characterized in that: The transition bin worm shaft, the front bin worm shaft and the rear bin worm shaft are arranged vertically.

7. A modular wall panel mechanism for a tile pressing machine according to claim 6, characterized in that: The passive gear of the transition chamber is installed just above the active gear of the transition chamber; The front chamber passive gear is installed just above the front chamber active gear; The rear compartment passive gear is installed just above the rear compartment active gear.