Energy-saving steam thermal shrinkage rubber cap machine

By introducing adjustment units and fixing units into the steam heat shrinking glue cap machine, the problem of uneven heat shrinkage of steam is solved, uniform heat shrinkage and stable clamping of the glue cap is achieved, adapting to the use needs of different operators and improving operating efficiency.

CN223150248UActive Publication Date: 2025-07-25CHENYANG HUGU YONGQUAN BEVERAGE CO LTD
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Patent Information

Application Number
CN202421746024.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-23
Publication Date
2025-07-25
Estimated Expiration
2034-07-23

AI Technical Summary

Technical Problem

The existing steam heat shrinking glue cap machines are not convenient to adjust the ventilation height of the through-hole group to the bottle glue cap during use, and are not convenient to fix the operation, resulting in uneven heat shrinkage effect and easy to wrinkle the glue cap.

Method used

A steam heat shrinking glue cap machine including an adjustment unit and a fixing unit is designed. The adjustment unit adjusts the height of the fixed block through components such as columns, connecting plates, hydraulic cylinders, telescopic columns, fixed blocks, heat shrink chambers, sealed rings and steam pipes. The fixing unit fixes the bottle body through a threaded rod and a clamping circular plate, and adjusts the height of the operating table to suit different operators.

Benefits of technology

The uniform heat shrinkage of the bottle glue cap is achieved, the heat shrinkage effect is improved, and the stable clamping operation is carried out through the fixed unit, which can adapt to the use needs of different operators and improve operating efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of mineral water production, and particularly relates to an energy-saving steam thermal shrinkage rubber cap machine which comprises an operation table and a connecting circular plate, the connecting circular plate is fixedly installed on the bottom face of the operation table, a steam mechanism is arranged on the upper surface of the operation table, and a lifting mechanism is arranged on the bottom face of the operation table. The adjusting unit comprises a stand column, a connecting plate, a second hydraulic cylinder, a telescopic column, a fixing block, a thermal shrinkage bin, a sealing ring, a steam pipe, a connecting block and a vent hole. According to the energy-saving steam thermal shrinkage rubber cap machine, by arranging the adjusting unit, the height of the fixing block can be adjusted when a bottle is subjected to thermal shrinkage rubber cap operation, overall wrapping thermal shrinkage operation can be conveniently conducted on the bottle rubber cap, the thermal shrinkage effect is improved, a plurality of threaded rods rotate and move to fix and clamp a bottle body, and the operation is kept stable; and the lifting mechanism is arranged to adjust the use height of the operation table, adjustment can be conducted according to the heights of different operators, the appropriate use height is matched, and the operation efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of mineral water production, in particular to an energy-saving steam heat-shrinking rubber cap machine. Background Technique

[0002] Mineral water is natural spring water gushing out from deep underground or artificially exposed underground mineral water that is unpolluted; it contains a certain amount of mineral salts, trace elements or carbon dioxide gas; under normal circumstances, the chemical composition, flow rate, water temperature, etc. are relatively stable within the natural fluctuation range. After the production of mineral water, the bottles need to be sealed and installed.

[0003] In the existing steam heat-shrinking rubber cap machine, hot steam is usually discharged in the shaping chamber, and the hot steam heats the wine bottles in the shaping chamber to shrink the rubber caps on the wine bottles. The hot steam is usually directly discharged in the shaping chamber, and the steam distribution is very uneven. Therefore, the temperature in the shaping chamber is also uneven, resulting in wrinkles on the rubber caps at the bottle mouths, poor heat-shrinking effect, and thus unable to effectively prevent insects or other miscellaneous bacteria from contacting the bottle mouths and corks.

[0004] For example, an energy-saving steam heat-shrinking rubber cap machine disclosed in Chinese Patent CN206969105U. In this energy-saving steam heat-shrinking rubber cap machine, the conveying mechanism passes through the shaping chamber, and a channel is arranged in the shaping chamber along the running direction of the conveying mechanism; the steam box is communicated with the steam furnace through a steam delivery pipe; the steam box is arranged in the shaping chamber and its height is adjustable; the steam box includes two and is symmetrically arranged on both sides of the channel; through-hole groups are arranged on the surface of the steam box facing the channel; a temperature sensor is also arranged in the shaping chamber, and the temperature sensor is connected to the temperature controller. This steam heat-shrinking rubber cap machine makes the hot steam evenly distributed in the shaping chamber, the position and height of the steam box are adjustable, suitable for bottles of different heights, greatly improving the heat-shrinking effect of the rubber caps, and exhausting gas through the through-hole groups can save energy.

[0005] However, when this energy-saving steam heat-shrinking rubber cap machine is in use, it is not convenient to adjust the ventilation height of the through-hole groups for the rubber caps of the bottles and it is not convenient to fix the bottles that need to have their rubber caps heat-shrunk.

[0006] Therefore, we propose an energy-saving steam heat-shrinking rubber cap machine to solve the above problems. Content of the Utility Model

[0007] The purpose of the utility model is to provide an energy-saving steam heat-shrinking rubber cap machine to solve the problems raised in the above background technique.

[0008] To achieve the above purpose, the utility model provides the following technical solution: an energy-saving steam heat-shrinking rubber cap machine, including an operation table and a connecting circular plate, the connecting circular plate is fixedly installed on the bottom surface of the operation table, a steam mechanism is arranged on the upper surface of the operation table, and a lifting mechanism is arranged on the bottom surface of the operation table;

[0009] The steam mechanism includes an adjustment unit and a fixing unit. The adjustment unit includes a column, a connecting plate, a second hydraulic cylinder, a telescopic column, a fixing block, a heat shrinkage chamber, a sealing ring, a steam pipe, a connecting block, and a ventilation hole. The column is fixedly installed on the upper surface of the operating table. The connecting plate is fixedly installed on the upper surface of the column. The second hydraulic cylinder is fixedly installed on the upper surface of the connecting plate. The telescopic column is installed at the output end of the second hydraulic cylinder. The fixing block is fixedly installed on the bottom surface of the telescopic column. The heat shrinkage chamber is opened on the bottom surface of the fixing block. The sealing ring is fixedly installed on the lower part of the inner wall of the heat shrinkage chamber. The steam pipe is fixedly installed on the side surface of the fixing block. The connecting block is connected to the surface of one end of the steam pipe. The ventilation hole is opened on the surface of one end of the connecting block. The fixing unit includes a circular seat, a placement groove, a through hole, a threaded rod, a clamping circular plate, and a handle. The circular seat is fixedly installed on the upper surface of the operating table. The placement groove is opened on the upper surface of the circular seat. The through hole penetrates through the inner wall of the placement groove. The threaded rod is installed inside the through hole. The clamping circular plate is installed on the surface of one end of the threaded rod. The handle is fixedly connected to the surface of one end of the threaded rod.

[0010] Preferably, the lifting mechanism includes a lifting member, a first hydraulic cylinder, and a fixed base. The upper end of the lifting member is fixedly connected to the bottom surface of the connecting circular plate. The first hydraulic cylinder is installed at the lower end of the lifting member. The fixed base is fixedly installed on the bottom surface of the first hydraulic cylinder.

[0011] Preferably, the columns are symmetrically distributed at the inner four corners of the upper surface of the operating table. A circular hole penetrates through the middle position of the upper surface of the connecting plate. The upper end of the telescopic column passes through the circular hole and is connected to the output end of the second hydraulic cylinder.

[0012] Preferably, the through holes are sequentially distributed at equal intervals on the inner wall of the placement groove. The inner wall of the through hole is provided with threads and meshes with the outer surface of the threaded rod. The diameter of the clamping circular plate is smaller than the height of the inner wall of the placement groove.

[0013] Preferably, the connecting circular plates are symmetrically distributed at the four corners of the bottom surface of the operating table. The lower end of the lifting member is connected to the output end of the first hydraulic cylinder.

[0014] Preferably, holes penetrate through the inner wall of the heat shrinkage chamber and are symmetrically distributed on both sides of the inner wall of the heat shrinkage chamber. One end of the steam pipe passes through the hole and is connected to the surface of one end of the connecting block. The other end of the steam pipe is connected to the steam box.

[0015] Preferably, one end surface of the connecting block is connected to the inner wall of the heat shrinkage chamber. The ventilation holes are sequentially distributed at equal intervals on one end surface of the connecting block. Arranging multiple ventilation holes on one end surface of the connecting block can increase the coverage area of the steam and improve the heat shrinkage effect.

[0016] Compared with the prior art, the beneficial effects of the present utility model are:

[0017] 1. The energy-saving steam heat-shrinkable rubber cap machine can adjust the height of the fixed block during the heat-shrinkable rubber cap operation on the bottle through the setting of the adjustment unit, which is convenient for the overall wrapping and heat-shrinking operation of the bottle rubber cap, improving the heat-shrinking effect. The setting of the fixing unit can rotate and move multiple threaded rods to fix and clamp the bottle body to keep the operation stable.

[0018] 2. The energy-saving steam heat-shrinkable rubber cap machine can adjust the use height of the operating table through the setting of the lifting mechanism, which can be adjusted according to the height of different operators to match the appropriate use height and improve the operation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 is the front view structural schematic diagram of the present utility model;

[0020] Figure 2 is Figure 1 the partial enlarged structural schematic diagram at A in

[0021] Figure 3 the structural schematic diagram of the steam mechanism of the present utility model;

[0022] Figure 4 the structural schematic diagram of the lifting mechanism of the present utility model.

[0023] In the figure: 1, operating table; 2, connecting circular plate; 3, lifting member; 301, first hydraulic cylinder; 302, fixed base; 4, circular seat; 401, placement groove; 402, through hole; 403, threaded rod; 404, clamping circular plate; 405, handle; 406, column; 407, connecting plate; 408, round hole; 409, second hydraulic cylinder; 410, telescopic column; 411, fixed block; 412, heat-shrinkage chamber; 413, sealing ring; 414, steam pipe; 415, connecting block; 416, ventilation hole. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0024] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.

[0025] Please refer to Figures 1 - 4 , the present utility model provides a technical solution:

[0026] Embodiment 1: An energy-saving steam heat-shrinking rubber cap machine, including an operating table 1 and a connecting circular plate 2, the connecting circular plate 2 is fixedly installed on the bottom surface of the operating table 1, a steam mechanism is arranged on the upper surface of the operating table 1, and a lifting mechanism is arranged on the bottom surface of the operating table 1;

[0027] The steam mechanism includes an adjusting unit and a fixing unit. The adjusting unit includes a column 406, a connecting plate 407, a second hydraulic cylinder 409, a telescopic column 410, a fixing block 411, a heat-shrinking chamber 412, a sealing ring 413, a steam pipe 414, a connecting block 415 and a ventilation hole 416. The column 406 is fixedly installed on the upper surface of the operating table 1, the connecting plate 407 is fixedly installed on the upper surface of the column 406, the second hydraulic cylinder 409 is fixedly installed on the upper surface of the connecting plate 407, the telescopic column 410 is installed at the output end of the second hydraulic cylinder 409, the fixing block 411 is fixedly installed on the bottom surface of the telescopic column 410, the heat-shrinking chamber 412 is opened on the bottom surface of the fixing block 411, the sealing ring 413 is fixedly installed on the lower part of the inner wall of the heat-shrinking chamber 412, the steam pipe 414 is fixedly installed on the side surface of the fixing block 411, the connecting block 415 is connected to the surface of one end of the steam pipe 414, and the ventilation hole 416 is opened on the surface of one end of the connecting block 415. The fixing unit includes a circular seat 4, a placing groove 401, a through hole 402, a threaded rod 403, a clamping circular plate 404 and a handle 405. The circular seat 4 is fixedly installed on the upper surface of the operating table 1, the placing groove 401 is opened on the upper surface of the circular seat 4, the through hole 402 penetrates through the inner wall of the placing groove 401, the threaded rod 403 is installed inside the through hole 402, the clamping circular plate 404 is installed on the surface of one end of the threaded rod 403, and the handle 405 is fixedly connected to the surface of one end of the threaded rod 403.

[0028] The columns 406 are symmetrically distributed at the inner four-corner positions on the upper surface of the operating table 1. A circular hole 408 penetrates through the middle position of the upper surface of the connecting plate 407. The upper end of the telescopic column 410 passes through the circular hole 408 and is connected to the output end of the second hydraulic cylinder 409. The through holes 402 are equidistantly and sequentially distributed on the inner wall of the placing groove 401. The inner wall of the through hole 402 is threaded and meshes with the outer surface of the threaded rod 403. The diameter of the clamping circular plate 404 is smaller than the height of the inner wall of the placing groove 401. The inner wall of the heat-shrinking chamber 412 is penetrated by holes, and the holes are symmetrically distributed on both sides of the inner wall of the heat-shrinking chamber 412. One end of the steam pipe 414 passes through the hole and is connected to the surface of one end of the connecting block 415. The other end of the steam pipe 414 is connected to a steam box. The surface of one end of the connecting block 415 is connected to the inner wall of the heat-shrinking chamber 412. The ventilation holes 416 are equidistantly and sequentially distributed on the surface of one end of the connecting block 415. By setting the adjusting unit, the height of the fixing block 411 can be adjusted during the heat-shrinking rubber cap operation on the bottle, which is convenient for the overall wrapping and heat-shrinking operation of the bottle rubber cap and improves the heat-shrinking effect. By setting the fixing unit, the bottle body can be fixedly clamped by rotating and moving a plurality of threaded rods 403 to keep the operation stable.

[0029] Place the bottle on the inner bottom surface of the placement groove 401. Rotate the handle 405 from multiple directions to drive the threaded rod 403 to rotate. Through the rotation and movement of the inner wall of the through hole 402 engaged therewith, the clamping circular plate 404 is pushed forward to fixedly clamp the bottle body to maintain the stability of processing. Connect one end of the steam pipe 414 to the steam box and transport steam. The second hydraulic cylinder 409 pushes the telescopic column 410 to drive the fixed block 411 to descend, so that the bottle cap enters the heat shrinkage chamber 412. At the same time, the sealing ring 413 seals the connection between the bottle body and the heat shrinkage chamber 412. The steam pipe 414 transports the steam to the connection block 415, and the steam is vented through a plurality of vent holes 416 to perform heat shrinkage treatment on the bottle cap.

[0030] Embodiment 2: Based on Embodiment 1, the lifting mechanism includes a lifting member 3, a first hydraulic cylinder 301 and a fixed base 302. The upper end of the lifting member 3 is fixedly connected to the bottom surface of the connecting circular plate 2. The first hydraulic cylinder 301 is installed at the lower end of the lifting member 3. The fixed base 302 is fixedly installed on the bottom surface of the first hydraulic cylinder 301.

[0031] The connecting circular plates 2 are symmetrically distributed at the four corners of the bottom surface of the operating table 1. The lower end of the lifting member 3 is connected to the output end of the first hydraulic cylinder 301. By setting the lifting mechanism, the use height of the operating table 1 can be adjusted, and it can be adjusted to match the appropriate use height according to the heights of different operators, thereby improving the operation efficiency.

[0032] The operator operates the first hydraulic cylinder 301 to make the first hydraulic cylinder 301 push the lifting column inside the lifting column cylinder of the lifting member 3 to move. The four lifting columns move up simultaneously to adjust the use height of the operating table 1 to a suitable position and then perform the operation.

[0033] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "including a..." does not exclude the existence of additional identical elements in the process, method, article or device including the said element.

Claims

1. An energy-saving steam heat-shrinking rubber cap machine, comprising an operating table (1) and a connecting circular plate (2), the connecting circular plate (2) is fixedly installed on the bottom surface of the operating table (1), and is characterized in that: A steam mechanism is provided on the upper surface of the operating table (1), and a lifting mechanism is provided on the bottom surface of the operating table (1). The steam mechanism includes an adjusting unit and a fixing unit. The adjusting unit includes a column (406), a connecting plate (407), a second hydraulic cylinder (409), a telescopic column (410), a fixing block (411), a heat-shrinkable chamber (412), a sealing ring (413), a steam pipe (414), a connecting block (415), and a ventilation hole (416). The column (406) is fixedly installed on the upper surface of the operating table (1). The connecting plate (407) is fixedly installed on the upper surface of the column (406). The second hydraulic cylinder (409) is fixedly installed on the upper surface of the connecting plate (407). The telescopic column (410) is installed at the output end of the second hydraulic cylinder (409). The fixing block (411) is fixedly installed on the bottom surface of the telescopic column (410). The heat-shrinkable chamber (412) is opened on the bottom surface of the fixing block (411). The sealing ring (413) is fixedly installed on the lower part of the inner wall of the heat-shrinkable chamber (412). The steam pipe (414) is fixedly installed on the side surface of the fixing block (411). The connecting block (415) is connected to the surface of one end of the steam pipe (414). The ventilation hole (416) is opened on the surface of one end of the connecting block (415). The fixing unit includes a circular seat (4), a placement groove (401), a through hole (402), a threaded rod (403), a clamping circular plate (404), and a handle (405). The circular seat (4) is fixedly installed on the upper surface of the operating table (1). The placement groove (401) is opened on the upper surface of the circular seat (4). The through hole (402) penetrates through the inner wall of the placement groove (401). The threaded rod (403) is installed inside the through hole (402). The clamping circular plate (404) is installed on the surface of one end of the threaded rod (403). The handle (405) is fixedly connected to the surface of one end of the threaded rod (403).

2. The energy-saving steam heat-shrinking rubber cap machine according to claim 1, wherein: The lifting mechanism includes a lifting member (3), a first hydraulic cylinder (301), and a fixed base (302). The upper end of the lifting member (3) is fixedly connected to the bottom surface of the connecting circular plate (2). The first hydraulic cylinder (301) is installed at the lower end of the lifting member (3). The fixed base (302) is fixedly installed on the bottom surface of the first hydraulic cylinder (301).

3. The energy-saving steam heat-shrinking rubber cap machine according to claim 1, wherein: The columns (406) are symmetrically distributed at the inner four-corner positions on the upper surface of the operating table (1). A circular hole (408) penetrates through the middle position of the upper surface of the connecting plate (407). The upper end of the telescopic column (410) passes through the circular hole (408) and is connected to the output end of the second hydraulic cylinder (409).

4. An energy-saving steam heat-shrinking rubber cap machine according to claim 1, characterized in that: The through holes (402) are sequentially distributed at equal intervals on the inner wall of the placement groove (401). The inner wall of the through hole (402) is provided with threads and meshes with the outer surface of the threaded rod (403). The diameter of the clamping circular plate (404) is smaller than the height of the inner wall of the placement groove (401).

5. An energy-saving steam heat-shrinking rubber cap machine according to claim 2, characterized in that: The connecting circular plates (2) are symmetrically distributed at the four-corner positions on the bottom surface of the operating table (1). The lower end of the lifting member (3) is connected to the output end of the first hydraulic cylinder (301).

6. The energy-saving steam heat-shrinking rubber cap machine according to claim 1, wherein: The inner wall of the heat shrinkage bin (412) is penetrated by holes, and the holes are symmetrically distributed on both sides of the inner wall of the heat shrinkage bin (412). One end of the steam pipe (414) passes through the hole and is connected to the surface of one end of the connection block (415), and the other end of the steam pipe (414) is connected to the steam box.

7. An energy-saving steam heat-shrinking rubber cap machine according to claim 1, wherein: The surface of one end of the connection block (415) is connected to the inner wall of the heat shrinkage bin (412), and the ventilation holes (416) are sequentially distributed at equal intervals on the surface of one end of the connection block (415).

Citation Information

Patent Citations

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