Bottled beverage packaging machine
By heating water with a stainless steel hot water pump and preheating the labels with heat-applied hollow blocks, the problem of watermarks left after steam cooling is solved, achieving both aesthetic appeal and water conservation in bottled beverage packaging.
Patent Information
- Application Number
- CN202423164803.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-21
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-12-21
AI Technical Summary
Steam can leave watermarks after cooling on the film, affecting the appearance of bottled beverage packaging and making wiping inconvenient.
A stainless steel hot water pump is used to extract heated water, which is then used to preheat the label by applying a heat-bonded hollow block. The water-heat circulation is used to reduce water waste, thus enabling the label to be attached to the outer surface of bottled beverages.
It effectively prevents watermarks, improves the appearance of packaging, and reduces water waste through water-heat circulation.
Smart Images

Figure CN223561269U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to beverage packaging production line technical field, concretely is a bottled beverage packing machine. BACKGROUND
[0002] Bottled beverage packaging refers to a series of processing processes such as filling, sealing, marking and outer packaging of beverages in bottles, so as to store, transport and sell. The packaging of bottled beverages not only needs to ensure the quality and safety of the products, but also needs to consider the convenience of use of consumers, the brand image of products and marketing strategies.
[0003] For example, a bottled beverage packaging mechanism with publication number CN202022092567.X includes a conveyor belt and a sleeve labeling machine and a heat shrinkage furnace arranged in sequence along the conveying direction of the conveyor belt. The sleeve labeling machine is provided with a brush mechanism near one end of the heat shrinkage furnace. Two brush mechanisms are oppositely arranged on both sides of the conveyor belt. The mechanism also includes two or more steam nozzles connected to the steam source of the heat shrinkage furnace. The two or more steam nozzles are arranged between the brush mechanism and the conveyor belt, and the spray direction of the steam nozzle is towards the inside of the conveyor belt. The temperature range of the steam source of the heat shrinkage furnace is 100-120℃. This greatly reduces the heat shrinkage temperature and avoids the long-term high-temperature effect of bottled beverages in the heat shrinkage furnace.
[0004] In the above-mentioned patent, the brush mechanism operates at high speed to generate air negative pressure to attract the sprayed steam towards the two brush mechanisms, thereby preheating the sleeve film on the brush mechanism when the sleeve film is wrapped around the beverage bottle body. However, in actual use, the steam on the sleeve film is easily left with water marks on the surface of the sleeve film after cooling, affecting the appearance of the product packaging, and time is needed to wipe the surface of the bottled beverage, which is not very convenient to use.
[0005] Therefore, we propose a bottled beverage packaging machine to solve the above-mentioned problems. UTILITY MODEL CONTENTS
[0006] The utility model aims at providing a bottled beverage packaging machine to solve the problem of water marks left on the surface of the sleeve film after the steam on the sleeve film is cooled.
[0007] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a bottled beverage packaging machine, including a conveyor, a half-circular shell is installed on the inner side of the rack of the conveyor, a bottom groove is formed at the bottom end of the half-circular shell, an adjusting member and a temperature control member are installed on the bottom end surface of the conveyor and below the half-circular shell, the temperature control member is arranged on the outer side of the adjusting member, the half-circular shell is provided with two groups, and packaging member A and packaging member B are respectively installed in the inner sides of the two groups of half-circular shells.
[0008] The temperature control member comprises a U-shaped frame and a middle partition plate installed in the middle end of the inside of the U-shaped frame, the middle partition plate is provided with two groups, a short partition plate is installed between the two groups of the middle partition plate, a heating rod is installed on one side of the short partition plate and in the inside of the U-shaped frame, heat insulation plates are installed on both sides of the heating rod, a stainless steel hot water pump is installed on one side of the two groups of the heat insulation plates and in the inside of the U-shaped frame, water outlets are formed on the top of the stainless steel hot water pump and on both sides of the top end of the U-shaped frame, and external water pipes are installed on the top of the water outlets.
[0009] The packaging member A comprises a moving semicircular block and a hot-sticking hollow block installed on the inner wall of the moving semicircular block, and the top end of the moving semicircular block is provided with a water inlet hole and a drainage hole.
[0010] Preferably, a water inlet plug is installed on one side of the heat insulation plate and on the outer surface of the U-shaped frame, and a digital thermometer is installed on the outer surface of the U-shaped frame.
[0011] Preferably, the adjusting member comprises a bottom strip installed at the bottom end of the conveying machine, a top groove is formed at the top end of the bottom strip, a motor is installed at one end of the bottom strip, a forward and reverse toothed screw rod is installed at the output end of the motor, the forward and reverse toothed screw rod is movably installed in the inside of the top groove, a reverse T-shaped sliding strip is sleeved on the outer surface of the forward and reverse toothed screw rod and in the inside of the top groove, and the reverse T-shaped sliding strip is provided with two groups.
[0012] Preferably, grooves A and B are formed on both sides of the hot-sticking hollow block and on the outer surface of the moving semicircular block, and rollers are movably installed in the grooves A and B.
[0013] Preferably, the hot-sticking hollow block is provided with a plurality of upper partition strips and lower partition strips, the upper partition strips are installed at the top end of the inside of the hot-sticking hollow block, the lower partition strips are installed at the bottom end of the inside of the hot-sticking hollow block, and internal openings are formed in the inner wall of the hot-sticking hollow block and at the lower end of the water inlet hole and the drainage hole.
[0014] Preferably, a backwater hole is formed at the top end of the U-shaped frame and away from one side of the water outlet, and an external water pipe is installed between the backwater hole and the drainage hole.
[0015] Compared with the prior art, the bottle beverage packaging machine has the advantages that:
[0016] 1. The bottle beverage packaging machine disclosed by the utility model, after the heated water is extracted by the stainless steel hot water pump, the hot water preheats the hot-sticking hollow block, when the two groups of hot-sticking hollow blocks contact the outer wall of the bottled beverage, the mark is between the bottled beverage and the hot-sticking hollow block, the heat of the hot water acts on the mark surface through the hot-sticking hollow block, and the mark is conveniently pasted on the outer surface of the bottled beverage.
[0017] 2. The bottle beverage packaging machine has the advantages that the water after absorbing heat is discharged back to the inside of the U-shaped frame through the inner hole, the drain hole, the external water pipe and the water return hole, is discharged into the space between the two groups of heat insulation plates through the low partition plate, and is reheated by the heating rod, so that the water heat cycle of the device is realized, and the waste of water resources is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a whole three-dimensional structure schematic view of the utility model;
[0019] Figure 2 It is a three-dimensional structure schematic view of the adjusting component of the utility model;
[0020] Figure 3 It is a three-dimensional structure schematic view of the packaging component A of the utility model;
[0021] Figure 4 It is a three-dimensional structure schematic view of the temperature control component of the utility model.
[0022] In the figure: 1, conveyor; 2, packaging component A; 21, moving semicircular block; 22, slot A; 23, slot B; 24, roller; 25, water inlet hole; 26, drain hole; 27, hot paste hollow block; 271, upper partition strip; 272, lower partition strip; 273, inner hole; 3, external water pipe; 4, adjusting component; 41, bottom strip; 42, motor; 43, top slot; 44, positive and negative tooth screw; 45, inverted T-shaped slide bar; 5, temperature control component; 51, U-shaped frame; 52, middle partition plate; 53, low partition plate; 54, heating rod; 541, heat insulation plate; 55, water outlet hole; 56, water return hole; 57, stainless steel hot water pump; 58, water inlet plug; 59, digital thermometer; 6, packaging component B; 7, external semicircular shell; 8, bottom slot. DETAILED DESCRIPTION
[0023] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0024] Embodiment one: please refer to Figures 1-4The utility model provides a bottled beverage packaging machine, including conveyer 1, the inside of the frame of conveyer 1 is equipped with external semicircle shell 7, the bottom end of external semicircle shell 7 is equipped with bottom groove 8, the bottom end surface of conveyer 1 and the lower end of external semicircle shell 7 are equipped with adjusting component 4 and temperature control component 5, temperature control component 5 is arranged in the outside of adjusting component 4, external semicircle shell 7 is equipped with two groups, and the inside of two groups of external semicircle shell 7 is equipped with packaging component A2 and packaging component B6 respectively, and packaging component B6 is consistent with the structure of packaging component A2.
[0025] Temperature control component 5 includes U-shaped frame 51 and middle partition 52 installed in the inside middle end of U-shaped frame 51, and middle partition 52 is equipped with two groups, and the middle partition 52 between two groups is equipped with dwarf partition 53, and the one side of dwarf partition 53 and the inside of U-shaped frame 51 are equipped with heating rod 54, and the both sides of heating rod 54 are equipped with heat insulation plate 541, and the one side of two groups of heat insulation plate 541 and the inside of U-shaped frame 51 are equipped with stainless steel hot water pump 57, and the upper of stainless steel hot water pump 57 and the top end of both sides of U-shaped frame 51 are equipped with water outlet hole 55 respectively, and the top end of water outlet hole 55 is equipped with external water pipe 3, and water is heated using heating rod 54.
[0026] Packaging component A2 includes mobile semicircle block 21 and hot paste hollow block 27 installed in the inner wall of mobile semicircle block 21, and the both sides of the top end of mobile semicircle block 21 are equipped with water inlet hole 25 and drainage hole 26 respectively, and water outlet hole 55 is connected with water inlet hole 25 through external water pipe 3, and heated water is discharged into the inside of hot paste hollow block 27 using external water pipe 3.
[0027] The one side of the outer surface of U-shaped frame 51 and heat insulation plate 541 is equipped with water inlet plug 58, and the outer surface of U-shaped frame 51 is equipped with digital thermometer 59, and the monitoring end of digital thermometer 59 is between two groups of heat insulation plate 541, and the temperature of water is monitored.
[0028] Adjusting component 4 includes bottom strip 41 installed in the bottom end of conveyer 1, and the top end of bottom strip 41 is equipped with top groove 43, and one end of bottom strip 41 is equipped with motor 42, and the output end of motor 42 is equipped with positive and negative toothed screw rod 44, and positive and negative toothed screw rod 44 is movably installed in the inside of top groove 43, and inverted T-shaped sliding strip 45 is sleeved on the outside surface of positive and negative toothed screw rod 44 in the inside of top groove 43, and inverted T-shaped sliding strip 45 is equipped with two groups, and the center line of top groove 43 is aligned with bottom groove 8, and the upper end of inverted T-shaped sliding strip 45 penetrates the inside of bottom groove 8, and the top end of inverted T-shaped sliding strip 45 is installed in the bottom end of packaging component A2 and packaging component B6.
[0029] The both sides of the outer surface of mobile semicircle block 21 and hot paste hollow block 27 are equipped with slot A22 and slot B23 respectively, and roller shaft 24 is movably installed in the inside of slot A22 and slot B23, and the setting roller shaft 24 protects the mark.
[0030] In the embodiment, two kinds of labels are provided for the packaged products, and the labels pass through the slots A22 and B23 in the two groups of moving semicircular blocks 21, respectively, enter from the slot A22 and move out from the slot B23. The rollers 24 arranged in the slots A22 and B23 protect the labels. Before the bottled beverages are transported and packaged, the water between the two groups of heat insulation plates 541 is heated by the heating rod 54, and the heated water is pumped out by the stainless steel water pump 57, discharged through the water outlet hole 55 and the external water pipe 3, and then introduced into the hollow block 27 of the heat-sticking block to preheat the heat-sticking block 27. The bottled beverages are transported by the conveyor 1. When the bottled beverages move between the packaging component A2 and the packaging component B6, the motor 42 operates, and the two groups of inverted T-shaped sliding strips 45 move towards each other when the positive and negative screw rods 44 rotate in the top groove 43, i.e., the two groups of moving semicircular blocks 21 move towards each other. When the two groups of heat-sticking hollow blocks 27 contact the outer wall of the bottled beverages, the labels are between the bottled beverages and the heat-sticking hollow blocks 27. The heat of the hot water acts on the label surface through the heat-sticking hollow block 27, so that the label is easily stuck to the outer surface of the bottled beverages.
[0031] Embodiment two: This embodiment is an improvement based on embodiment one. For details, please refer to Figures 2-4 The heat-sticking hollow block 27 is internally provided with a plurality of upper partition strips 271 and lower partition strips 272. The upper partition strips 271 are arranged at the top end of the heat-sticking hollow block 27, and the lower partition strips 272 are arranged at the bottom end of the heat-sticking hollow block 27. The inner wall of the heat-sticking hollow block 27 is provided with inner holes 273 below the water inlet hole 25 and the water outlet hole 26. The length of the upper partition strips 271 and the lower partition strips 272 is less than the internal space height of the heat-sticking hollow block 27, and the inner parts of the two groups of inner holes 273 are respectively communicated with the inner parts of the water inlet hole 25 and the water outlet hole 26.
[0032] The U-shaped frame 51 is provided with a water return hole 56 at the top end and away from the water outlet hole 55. The external water pipe 3 is arranged between the water return hole 56 and the water outlet hole 26. The hot water in the heat-sticking hollow block 27 is absorbed and heated, and then returns to the inside of the U-shaped frame 51 through the water outlet hole 26, the external water pipe 3 and the water return hole 56.
[0033] In the embodiment, the heating rods 54 heat the water between the two groups of heating rods 54 during the packaging process, the monitoring end of the digital thermometer 59 monitors the water temperature, and the water temperature is displayed through the digital thermometer 59 to avoid the water temperature being too high to affect the taste of the beverage. After the hot water enters the inside of the hot-sticking hollow block 27 through the water inlet hole 25, the flow path of the water is increased through the upper partition strip 271 and the lower partition strip 272 installed inside the hot-sticking hollow block 27, so that the heat of the hot water is fully absorbed by the hot-sticking hollow block 27. The water after being heated is discharged back to the inside of the U-shaped frame 51 through the inner hole 273, the drain hole 26, the external water pipe 3 and the water return hole 56. When the water level of the recycled water is higher than the low partition plate 53, the recycled water is discharged between the two groups of heat insulation plates 541 through the low partition plate 53, and the water is reheated by the heating rods 54 to realize the water heat circulation of the device and reduce the waste of water resources.
[0034] Working principle: the heated water is extracted by the stainless steel hot water pump 57, the hot water preheats the hot-sticking hollow block 27, the two groups of hot-sticking hollow blocks 27 contact the outer wall of the bottled beverage, the mark is between the bottled beverage and the hot-sticking hollow block 27, the heat of the hot water acts on the surface of the mark through the hot-sticking hollow block 27, and the mark is convenient to stick on the outer surface of the bottled beverage.
[0035] The contents not described in detail in the specification belong to the prior art known to those skilled in the art.
[0036] Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or make equivalent replacement to part of the technical features, and any modification, equivalent replacement, improvement, etc. within the spirit and principles of the utility model should be included in the protection scope of the utility model.
Claims
1. A bottling machine for packaging beverages, comprising a conveyor (1), characterized in that: The frame of the conveyor (1) is internally provided with two groups of external semicircular shells (7), the bottom end of the external semicircular shell (7) is provided with a bottom groove (8), the bottom end surface of the conveyor (1) and the lower end of the external semicircular shell (7) are provided with an adjusting member (4) and a temperature control member (5), the temperature control member (5) is arranged outside the adjusting member (4), the external semicircular shell (7) is provided with two groups, and the inner part of the two groups of external semicircular shells (7) is respectively provided with a packaging member A (2) and a packaging member B (6); The temperature control member (5) comprises a U-shaped frame (51) and a middle partition plate (52) installed in the middle end of the U-shaped frame (51), the middle partition plate (52) is provided with two groups, and the middle partition plate (52) between the two groups is provided with a short partition plate (53), one side of the short partition plate (53) and the inside of the U-shaped frame (51) are provided with a heating rod (54), both sides of the heating rod (54) are provided with a heat insulation plate (541), one side of the two groups of heat insulation plates (541) and the inside of the U-shaped frame (51) are provided with a stainless steel hot water pump (57), and the upper side of the stainless steel hot water pump (57) and both sides of the top end of the U-shaped frame (51) are respectively provided with water outlets (55), and the top end of the water outlet (55) is provided with an external water pipe (3). The packaging member A (2) comprises a movable semicircular block (21) and a hot paste hollow block (27) installed on the inner wall of the movable semicircular block (21), and the top end of the movable semicircular block (21) is respectively provided with a water inlet hole (25) and a drain hole (26).
2. A bottling machine for packaging beverages as claimed in claim 1, characterized in that: The outer surface of the U-shaped frame (51) and one side of the heat insulation plate (541) are provided with a water inlet plug (58), and the outer surface of the U-shaped frame (51) is provided with a digital thermometer (59).
3. A bottling machine according to claim 1, characterized in that: The adjusting member (4) comprises a bottom strip (41) installed at the bottom end of the conveyor (1), the top end of the bottom strip (41) is provided with a top groove (43), one end of the bottom strip (41) is provided with a motor (42), the output end of the motor (42) is provided with a positive and negative toothed screw rod (44), the positive and negative toothed screw rod (44) is movably installed in the inside of the top groove (43), the inside of the top groove (43) and the outer surface of the positive and negative toothed screw rod (44) are sleeved with a inverted T-shaped sliding bar (45), and the inverted T-shaped sliding bar (45) is provided with two groups.
4. A bottling machine according to claim 1, characterized in that: The outer surface of the movable semicircular block (21) and both sides of the hot paste hollow block (27) are respectively provided with a slot A (22) and a slot B (23), and the inside of the slot A (22) and the slot B (23) is movably provided with a roller shaft (24).
5. A bottling machine for packaging beverages as claimed in claim 4, characterized in that: The inside of the hot paste hollow block (27) is provided with an upper partition strip (271) and a lower partition strip (272), the upper partition strip (271) and the lower partition strip (272) are provided with multiple groups, the upper partition strip (271) is installed at the top end of the hot paste hollow block (27), the lower partition strip (272) is installed at the bottom end of the hot paste hollow block (27), and the inner wall of the hot paste hollow block (27) and the lower end of the water inlet hole (25) and the drain hole (26) are provided with an inner hole (273).
6. A bottling machine for packaging beverages as claimed in claim 2, characterized in that: The U-shaped frame (51) is provided with a backwater hole (56) at the top end and the side away from the water outlet hole (55), and the external water pipe (3) is installed between the backwater hole (56) and the drain hole (26).
Citation Information
Patent Citations
Fire extinguishing device for fire rescue of dangerous goods in airport
CN213252699U