Honey beverage container cleaning equipment
Through the combination of flexible skirt cleaning bag and atomizing spray head, the problem of difficulty in removing honey residue in the recycling container is solved, and efficient water-saving container cleaning is achieved, especially the comprehensive cleaning of narrow-mouth containers.
Patent Information
- Application Number
- CN202510733192.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-04
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2045-06-04
AI Technical Summary
Existing cleaning equipment is difficult to effectively remove honey residues in the recycled glass honey beverage container, which has problems such as large water consumption and cleaning blind spots.
The cleaning bag design with a flexible skirt is adopted, combined with atomized spray head and hot water, clean the inner wall of the container through the rotation process, use hot water to dissolve sticky substances such as honey, and increase the contact area to reduce dead corners by controlling the position and expansion of the cleaning bag.
It significantly improves the cleaning effect, reduces water resource consumption and equipment footprint, and realizes the transition from cleaning to usable state in a process, especially the problem of cleaning blind spots of narrow-mouth containers has been effectively solved.
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Figure CN120243581A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of cleaning equipment, and particularly to a cleaning device for honey beverage containers. Background Art
[0002] With the enhancement of environmental awareness and the increasing demand for resource recycling, the reuse of recycled glass honey beverage containers has become an industry trend. However, these recycled containers often have sticky substances such as honey remaining on the inner wall, and due to the complexity of the usage process and the recycling environment, the residual substances are more complex and stubborn, and the cleaning difficulty far exceeds that of the packaging containers before the first use.
[0003] Traditional cleaning equipment usually adopts simple spraying or brush cleaning methods. When dealing with recycled containers, the disadvantages become more obvious. When using the spraying method, due to the viscosity of honey and the possible mixture of various stains in the recycled containers, the normal-temperature cleaning liquid is difficult to fully penetrate and wash away the residual substances, and the water consumption is large; while the brush cleaning method cannot clean narrow-mouth beverage containers, there are not only cleaning dead ends and complex stains cannot be completely removed, but also bacteria are easily bred during long-term use of the brush, further contaminating the cleaned containers, seriously affecting the cleaning effect and container hygiene.
[0004] Therefore, a cleaning device for honey beverage containers is proposed. Summary of the Invention
[0005] The purpose of this application is to solve the technical problems of large water consumption and difficult treatment of cleaning dead ends existing in recycled glass honey beverage containers. Compared with the prior art, a cleaning device for honey beverage containers is provided, including a conveying mechanism and a cleaning mechanism arranged on a frame. The conveying mechanism is used to convey container bottles. The cleaning mechanism includes a YZ-axis linear module fixed on the frame. The output end of the YZ-axis linear module is fixed with a mounting frame. Both ends of the mounting frame are rotatably connected with rotating seats. The mounting frame is also provided with a driving mechanism for driving the two groups of rotating seats to rotate synchronously. A cleaning pipe and a pressure adjustment pipe are fixed in the rotating seats; A cleaning bladder adapted to the container bottle is sleeved at the bottom of the rotating seat. The cleaning bladder is provided with inner cavities separated and communicated by a plurality of inner pull membranes. The inner cavities are connected to a pressure adjustment mechanism through a pressure adjustment pipe and a rotary joint. A fitting sleeve pipe fixed on the cleaning bladder is arranged between the inner cavities. The bottom end of the cleaning pipe extends to one side of the bottom outer wall of the cleaning bladder through the fitting sleeve pipe and is communicated with an atomizing nozzle. The top end of the cleaning pipe is connected to a liquid supply mechanism through a rotary joint; A plurality of flexible skirt edges are further arranged on the outer wall of the cleaning bladder, and the flexible skirt edges are in a "7"-shaped spiral structure.
[0006] Further, the cleaning bladder, flexible skirt, inner draw film and fitting sleeve are all made of heat-resistant silica gel, and the elastic coefficient of the inner draw film is less than that of the cleaning bladder; The outer contour of the flexible skirt is larger than the inner contour of the container bottle, the outer contour of the cleaning bladder after being inflated and fully expanded is smaller than the inner contour of the container bottle, and the horizontal cross-sectional area of the cleaning bladder after exhausting and shrinking is smaller than the horizontal cross-sectional area of the bottle mouth of the container bottle.
[0007] Further, the driving mechanism includes a driving motor fixed to the bottom of the mounting frame. The output end of the driving motor is staggeredly sleeved with two groups of transmission chain belts, and belt wheels matching the transmission chain belts are fixed to the top of the rotating seat.
[0008] Further, connecting seats are fixed to both ends of the bottom of the mounting frame. A bottle mouth plug is vertically and slidably connected to the bottom of the connecting seat in a limited manner. The rotating seat is rotatably connected to the bottle mouth plug through a waterproof bearing. A plurality of discharge ports are provided at equal angular intervals at the bottom of the bottle mouth plug. The discharge ports are arranged between the bottle mouth of the container bottle and the upper port of the cleaning bladder. An annular discharge pipe communicating with the discharge ports is provided at the top of the bottle mouth plug. The output end of the annular discharge pipe is connected to a negative pressure liquid suction mechanism. Further, a limiting sliding ring is fixed to the bottom end of the connecting seat. A limiting sliding groove matching the limiting sliding ring is provided on the outer wall of the top of the bottle mouth plug. A buffer spring is fixedly clamped between the limiting sliding ring and the bottle mouth plug. The buffer spring has an elastic force that drives the bottle mouth plug to move downward away from the connecting seat.
[0009] Further, a plurality of turning shaft rods are evenly arranged at equal intervals on the circumferential side of the bottle mouth plug. Claw jaws are arranged in the turning shaft rods. A turning shaft hole matching the turning shaft rod is provided in the middle of the claw jaws. A bottle mouth ring is provided on the outer side of the bottle mouth of the container bottle. A clamping portion matching the bottle mouth ring is provided at the bottom end of the claw jaws. An adjusting groove is provided at the top end of the claw jaws. An adjusting rod matching the adjusting groove is provided on the circumferential side of the limiting sliding ring.
[0010] Further, two groups of self-cleaning mechanisms are symmetrically fixed on the frame. The arrangement spacing of the self-cleaning mechanisms is equal to twice the arrangement spacing of the cleaning bladders. The self-cleaning mechanism includes a self-cleaning barrel. A plurality of cleaning spray heads are evenly arranged at equal angular intervals in the self-cleaning barrel. The bottoms of the two self-cleaning barrels are communicated with a Y-shaped discharge pipe.
[0011] Further, the conveying mechanism includes a conveyor housing. Two groups of the conveyor housings are symmetrically fixed on both sides of the frame. A transmission belt is provided in each conveyor housing. A guiding mechanism is provided on the top of the conveyor housing. The guiding mechanism includes two groups of symmetrically arranged guiding rods one and two. The guiding rods one and two are spirally twisted and arranged between the opposite ends of the two transmission belts. A guiding rod three is further provided between the opposite ends of the two transmission belts. The guiding rod three has the same pitch as the guiding rods one and two.
[0012] Further, the outer wall of the container bottle is provided with a bottle waist and a bottle seat. The distance between the two guiding rods one is equal to the minimum diameter at the bottle waist. The distance between the two guiding rods two is less than the maximum diameter at the bottle seat. The guiding rod three is matched with the bottom of the container bottle; The number of spiral turns of the guiding rod one, the guiding rod two and the guiding rod three is 1 turn.
[0013] Further, a drying hot fan is fixed to the bottom side of the middle part of the conveying mechanism of the frame, and an ultraviolet germicidal lamp is fixed to the top side of the middle part of the conveying mechanism of the frame.
[0014] Compared with the prior art, the advantages of this application are as follows: Through the design of the cleaning bag with a flexible skirt in this application, combined with the hot water sprayed by the atomizing nozzle, it can comprehensively and efficiently clean the inner wall of the container bottle during the rotation process. The hot water can better dissolve viscous substances such as honey. Compared with the normal temperature cleaning liquid, the cleaning effect is significantly improved, and the residual substances such as honey can be completely removed, improving the cleaning efficiency, reducing the floor area of the equipment and the production cost. The transformation of the container from the cleaning state to the usable state can be completed in one process, without the cooperation of multiple devices. By controlling the position and expansion degree of the cleaning bag, the flushing water consumption in the container bottle can be effectively reduced, and at the same time, the contact area between the flexible skirt and the inner part of the container bottle is increased. For the narrow-mouth container bottle, the cleaning dead angle can be effectively reduced and the cleaning effect can be improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is the overall structural schematic diagram of this application; Figure 2 is the structural schematic diagram of the cleaning mechanism proposed in this application; Figure 3 is the structural schematic diagram of the self-cleaning mechanism proposed in this application; Figure 4 is the structural schematic diagram when the cleaning bag and the self-cleaning mechanism proposed in this application cooperate; Figure 5 is the cross-sectional structural schematic diagram of the cleaning mechanism proposed in this application; Figure 6 is Figure 5 the enlarged structural schematic diagram of part A in Figure 7 is Figure 5 a schematic enlarged structure diagram of part B in Figure 8 a schematic bottom structure diagram of the cleaning bag proposed in this application; Figure 9 a schematic cross-sectional structure diagram of the interior of the cleaning bag proposed in this application; Figure 10 a schematic bottom structure diagram of the cleaning tube proposed in this application; Figure 11 a schematic exploded structure diagram of the cleaning mechanism proposed in this application; Figure 12 a schematic structure diagram of the clamping jaw proposed in this application; Figure 13 a schematic partial cross-sectional structure diagram of the cleaning mechanism proposed in this application; Figure 14 a schematic structure diagram of the guiding mechanism proposed in this application; Figure 15 a schematic diagram of the running direction of the container bottle in the guiding mechanism proposed in this application; Figure 16 a schematic cross-sectional structure diagram of the container bottle in the guiding mechanism proposed in this application.
[0016] Description of reference numerals in the figure: 1. Frame; 2. Conveying mechanism; 21. Conveyor housing; 22. Guiding mechanism; 221. First guiding rod; 222. Second guiding rod; 223. Third guiding rod; 23. Transmission belt; 3. Cleaning mechanism; 31. YZ-axis linear module; 32. Mounting frame; 33. Cleaning bag; 331. Flexible skirt; 332. Inner pull film; 333. Fitting sleeve; 34. Connecting seat; 341. Limiting slip ring; 342. Buffer spring; 343. Adjusting rod; 35. Self-cleaning mechanism; 351. Self-cleaning barrel; 352. Cleaning nozzle; 353. Y-shaped discharge pipe; 36. Clamping jaw; 361. Adjusting groove; 362. Swivel shaft hole; 363. Clamping part; 37. Bottle mouth plug; 371. Limiting chute; 372. Annular discharge pipe; 373. Swivel shaft rod; 374. Discharge port; 38. Waterproof bearing; 39. Rotating seat; 391. Pulley; 392. Cleaning tube; 3921. Atomizing nozzle; 393. Air pressure regulating tube; 4. Container bottle; 41. Bottle mouth ring; 42. Bottle waist; 43. Bottle seat; 5. Ultraviolet germicidal lamp; 6. Drying hot air fan; 7. Driving motor; 71. Transmission chain belt. Detailed implementation manners
[0017] The embodiments will be described clearly and completely in conjunction with the accompanying drawings of the specification. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative efforts shall fall within the scope of protection of the present application.
[0018] Embodiment: The present invention provides a cleaning device for a honey beverage container. Please refer to Figures 1 - 16 , which includes a conveying mechanism 2 and a cleaning mechanism 3 arranged on a frame 1. Among them, the conveying mechanism 2 is used to convey a container bottle 4, and the cleaning mechanism 3 is used to clean the inner wall of the container bottle 4. Specifically, please refer to Figures 2 - 7 , the cleaning mechanism 3 includes a YZ-axis linear module 31 fixed on the frame 1. The YZ-axis linear module 31 can move in the Y-axis and Z-axis directions, and its output end is fixed with a mounting frame 32. Both ends of the mounting frame 32 are rotatably connected with rotating seats 39. A driving mechanism for driving the two groups of rotating seats 39 to rotate synchronously is further arranged on the mounting frame 32. The driving mechanism includes a driving motor 7 fixed at the bottom of the mounting frame 32. The output ends of the driving motor 7 are staggeredly sleeved with two groups of transmission chain belts 71. The tops of the rotating seats 39 are both fixed with belt pulleys 391 matching the transmission chain belts 71. The driving motor 7 drives the transmission chain belts 71, and further drives the rotating seats 39 to rotate. Please refer to Figures 4 - 9 , a cleaning pipe 392 and a pressure adjustment pipe 393 are fixed inside the rotating seat 39. A cleaning bladder 33 is sleeved at the bottom of the rotating seat 39. The outer contour of the cleaning bladder 33 matches the inner contour of the container bottle 4. A plurality of inner pull membranes 332 are arranged inside the cleaning bladder 33. The inner pull membranes 332 divide the inside of the cleaning bladder 33 into a plurality of interconnected inner cavities. The inner cavities are connected to a pressure adjustment mechanism through the pressure adjustment pipe 393 and a rotary joint. The pressure adjustment mechanism can control the expansion and contraction of the cleaning bladder 33; a fitting sleeve 333 is fixed between the plurality of inner cavities. The bottom end of the cleaning pipe 392 extends to one side of the bottom outer wall of the cleaning bladder 33 through the fitting sleeve 333 and is communicated with an atomizing nozzle 3921. The top end of the cleaning pipe 392 is connected to a liquid supply mechanism through a rotary joint.
[0019] In this embodiment, the liquid supply mechanism includes a hot water tank, a heating device, and a hot water pump. The hot water tank is used to store cleaning water. The heating device can heat the water in the tank to a suitable cleaning temperature. The hot water pump then conveys the hot water in the hot water tank to the atomizing nozzle 3921 through the cleaning pipe 392, and the hot water sprayed by the atomizing nozzle 3921 cleans the inner wall of the container bottle 4.
[0020] To further improve the cleaning effect, a number of flexible skirts 331 are provided on the outer wall of the cleaning capsule 33. The flexible skirts 331 are in a "7"-shaped spiral structure. When the cleaning capsule 33 rotates, the flexible skirts 331 can better fit the inner wall of the container bottle 4, enhancing the cleaning effect. At the same time, during the rotation of the cleaning capsule 33, the spiral flexible skirts 331 can helically push up the impurities scraped by the flexible skirts 331 to reduce the residual amount of impurities in the container bottle 4 and further improve the cleaning effect. Please refer to Figure 6 It should be noted that connecting seats 34 are fixed at both bottom ends of the mounting frame 32. A bottle mouth plug 37 is vertically and slidably connected to the bottom of the connecting seat 34 in a limited manner. The rotating seat 39 is rotatably connected to the bottle mouth plug 37 through a waterproof bearing 38. A number of equally angularly divided discharge ports 374 are provided at the bottom of the bottle mouth plug 37. The discharge ports 374 are arranged between the mouth of the container bottle 4 and the upper port of the cleaning capsule 33. An annular discharge pipe 372 communicating with the discharge ports 374 is provided at the top of the bottle mouth plug 37. The output end of the annular discharge pipe 372 is connected to a negative pressure liquid suction mechanism for sucking the waste liquid after cleaning.
[0021] A limit sliding ring 341 is fixed to the bottom end of the connecting seat 34. A limit sliding groove 371 matching the limit sliding ring 341 is provided on the outer wall of the top of the bottle mouth plug 37. A buffer spring 342 is fixedly clamped between the limit sliding ring 341 and the bottle mouth plug 37. The buffer spring 342 has an elastic force to drive the bottle mouth plug 37 to move downward away from the connecting seat 34. When the YZ-axis linear module 31 moves downward to drive the bottle mouth plug 37 to abut against the mouth of the container bottle 4, the retraction amount of the buffer spring 342 is used to buffer the downward pressure on the container bottle 4. On the one hand, it plays a role in protecting the container bottle 4, and on the other hand, it improves the sealing performance when the bottle mouth plug 37 is butted against the bottle mouth.
[0022] Furthermore, please refer to Figures 10 - 13 A number of turning shaft rods 373 are equally spaced on the circumferential side of the bottle mouth plug 37. Claw chucks 36 are provided in the turning shaft rods 373. A turning shaft hole 362 matching the turning shaft rod 373 is provided in the middle of the claw chuck 36. A bottle mouth ring 41 is provided on the outer side of the mouth of the container bottle 4. A clamping portion 363 matching the bottle mouth ring 41 is provided at the bottom end of the claw chuck 36. An adjustment groove 361 is provided at the top end of the claw chuck 36. An adjustment rod 343 matching the adjustment groove 361 is provided on the circumferential side of the limit sliding ring 341; The opening and closing of the claw 36 can be controlled by the adjusting rod 343 to fix the container bottle 4. Specifically, when the YZ-axis linear module 31 drives the connecting seat 34 and the bottle mouth plug 37 to move downward, when the bottle mouth plug 37 does not touch the bottle mouth, the bottle mouth plug 37 moves downward away from the connecting seat 34 by the elastic force of the buffer spring 342. At this time, the adjusting rod 343 is located at the top of the adjusting groove 361, and then the claw 36 turns outwards, making it easier for the bottle mouth ring 41 at the bottle mouth to be caught between the claws 36. When the bottle mouth plug 37 touches the bottle mouth, the continuous downward movement of the connecting seat 34 causes the adjusting rod 343 to move down to the bottom of the adjusting groove 361, pressing the claw 36 to turn inwards and making the clamping portion 363 catch into the bottom of the bottle mouth ring 41. Combining with the bottle mouth plug 37's contact with the bottle mouth, the bottle mouth plug 37 can fix the container bottle 4 more firmly and is not likely to loosen during the cleaning process. When the cleaning is completed, the connecting seat 34 moves upward, and the adjusting rod 343 is again located at the top of the adjusting groove 361, and the claw 36 turns outwards in an automatic unlocking state. Further, please refer to Figures 3 - 5 There are also two groups of self-cleaning mechanisms 35 symmetrically fixed on the frame 1. The arrangement spacing of the self-cleaning mechanisms 35 is equal to twice the arrangement spacing of the cleaning bags 33. The self-cleaning mechanism 35 includes a self-cleaning barrel 351. There are several cleaning nozzles 352 evenly arranged at equal angles in the self-cleaning barrel 351. The cleaning nozzles 352 are connected to the liquid supply mechanism through pipelines, and clean hot water is also provided for the cleaning nozzles 352. The bottoms of the two groups of self-cleaning barrels 351 are connected with a Y-shaped discharge pipe 353 for discharging sewage. The liquid supply mechanism transports hot water through pipelines to the cleaning nozzles 352 in the self-cleaning barrel 351. The cleaning nozzles 352 spray hot water to clean the cleaning bags 33 that have contacted the inner wall of the container bottle 4, and use the cleaning ability of the hot water to remove the stains and bacteria attached to the surface of the cleaning bags 33. The waste liquid after cleaning is discharged through the Y-shaped discharge pipe 353.
[0023] In this embodiment, when the YZ-axis linear module 31 drives a group of cleaning bags 33 to move downward to the container bottle 4, the other group of cleaning bags 33 enters the self-cleaning barrel 351. During the synchronous rotation of the two groups of cleaning bags 33, the cleaning bags 33 in the container bottle 4 perform the cleaning operation inside the bottle, and the cleaning bags 33 in the self-cleaning barrel 351 cooperate with the cleaning nozzles 352 to perform the self-cleaning operation. After the self-cleaning is completed, the YZ-axis linear module 31 drives the two groups of cleaning bags 33 to move upward and translate in the opposite direction synchronously, so that the cleaning bags 33 that have completed the cleaning operation inside the bottle enter the self-cleaning barrel 351 on the other side, and the cleaning bags 33 that have completed the self-cleaning operation enter the next container bottle 4 to be cleaned, running in sequence reciprocally, effectively improving the cleaning efficiency and reducing the possibility of cross-spread of pollution sources.
[0024] Please refer to Figure 1 and Figures 14 - 16, the conveying mechanism 2 includes a conveyor housing 21. Two groups of conveyor housings 21 are symmetrically fixed on both sides of the frame 1. A conveyor belt 23 is provided inside each conveyor housing 21. A guiding mechanism 22 is provided on the top of the conveyor housing 21. The guiding mechanism 22 includes two groups of symmetrically arranged guiding rods one 221 and guiding rods two 222. The guiding rods one 221 and guiding rods two 222 are spirally twisted and arranged between the opposite ends of the two conveyor belts 23. A guiding rod three 223 is further provided between the opposite ends of the two conveyor belts 23. The pitch of the guiding rod three 223 is equal to that of the guiding rods one 221 and guiding rods two 222.
[0025] The outer wall of the container bottle 4 is provided with a bottle waist 42 and a bottle base 43. The distance between the two groups of guiding rods one 221 is equal to the minimum diameter at the bottle waist 42. The distance between the two groups of guiding rods two 222 is less than the maximum diameter at the bottle base 43. The guiding rod three 223 matches the bottom of the container bottle 4. The number of spiral turns of the guiding rods one 221, guiding rods two 222 and guiding rod three 223 is 1 turn. The container bottle 4 can be stably conveyed through the guiding mechanism 2. It should be noted that a rotating chuck is further provided on one side of the conveying mechanism 2 and the cleaning mechanism 3 for equidistantly conveying the container bottle 4 to the bottom of the cleaning capsule 33 to achieve accurate docking. The container bottle 4 after cleaning sequentially enters the spiral rotating part of the guiding mechanism 2. By using the extrusion action of the subsequent entering container bottle 4, it moves forward in the guiding mechanism 2. The guiding mechanism 2 of the conveying mechanism 2 adopts guiding rods arranged in a spiral twist, which can stably convey the container bottle 4, avoid the container bottle 4 from shifting or toppling during the conveying process, improve the stability and reliability of the equipment operation, and ensure the smooth progress of the cleaning process. A drying hot fan 6 is fixed to the bottom side of the middle part of the conveying mechanism 2 of the frame 1, and an ultraviolet germicidal lamp 5 is fixed to the top side of the middle part of the conveying mechanism 2 of the frame 1. Cooperating with the spiral rotating part of the guiding mechanism 2, on the one hand, it enables the container bottle 4 to perform a 360° rotation action, which can effectively drain the residual water in the container bottle 4. On the other hand, through the rotation action of the container bottle 4, a full-range sterilization and drying treatment of the container bottle 4 is realized. In this application, the container bottle 4 is conveyed by the conveyor belt 23 of the conveying mechanism 2. Under the action of the guiding mechanism 2, it accurately enters the cleaning position. When the container bottle 4 reaches the cleaning position, the YZ-axis linear module 31 drives the mounting frame 32 and the cleaning capsule 33 to descend. The bottle mouth plug 37 is tightly attached to the mouth of the container bottle 4 under the action of the buffer spring 342. At the same time, the claw 36 catches the mouth ring 41 under the action of the adjusting rod 343 to fix the container bottle 4. The liquid supply mechanism transports hot water to the atomizing nozzle 392 through the cleaning pipe 392. The atomizing nozzle 392 atomizes the hot water and sprays it into the inner wall of the container bottle 4. The air pressure regulating mechanism inflates the inner cavity of the cleaning bladder 33 through the air pressure regulating pipe 393, causing the cleaning bladder 33 to expand. Its outer contour is smaller than the inner wall of the container bottle 4, thereby effectively reducing the input amount of the cleaning hot water and achieving the purpose of water conservation. At the same time, the flexible skirt 331 tightly adheres to the inner wall of the container bottle 4 by means of the expansion of the cleaning bladder 33. At this time, the drive motor 7 drives the rotating seat 39 and the cleaning bladder 33 to rotate through the transmission chain belt 71 and the pulley 391. During the rotation process, the flexible skirt 331 wipes and cleans the inner wall of the container bottle 4. The atomized hot water fully penetrates and flushes the inner wall. Utilizing the high temperature and dissolution characteristics of the hot water, it can more effectively remove residual viscous substances such as honey. At the same time, by means of the spiral conveying action of the flexible skirt 331, the waste liquid containing impurities is sucked out by the negative pressure liquid suction mechanism through the discharge port 374 and the annular discharge pipe 372. After the cleaning is completed, the air pressure regulating mechanism exhausts the cleaning bladder 33, causing it to contract. The YZ-axis linear module 31 drives the cleaning bladder 33 to rise and leave the container bottle 4. The container bottle 4 continues to be conveyed forward. When it passes through the ultraviolet germicidal lamp 5, ultraviolet germicidal treatment is carried out, and then it is dried under the action of the drying hot fan 6 to complete the complete cleaning operation of the container bottle 4.
[0026] In the present application, the outer contour of the cleaning bladder 33 matches the inner contour of the container bottle 4, and is provided with a flexible skirt 331. In cooperation with the hot water sprayed by the atomizing nozzle 3921, it can comprehensively and efficiently clean the inner wall of the container bottle 4 during the rotation process. The hot water can better dissolve viscous substances such as honey. Compared with the normal temperature cleaning liquid, the cleaning effect is significantly improved. It can completely remove residual substances such as honey, improve the cleaning efficiency, reduce the floor area of the equipment and the production cost. The transformation of the container from the cleaning state to the usable state can be completed in one process without the cooperation of multiple devices. By controlling the position and expansion degree of the cleaning bladder 33, the flushing water consumption inside the container bottle 4 can be effectively reduced. At the same time, the contact area between the flexible skirt 331 and the inside of the container bottle 4 is also increased. For the container bottle 4 with a narrow mouth, the cleaning dead angle can be effectively reduced and the cleaning effect can be improved.
[0027] The above is only the best implementation mode adopted by the present application in combination with the current actual needs, but the protection scope of the present application is not limited thereto.
Claims
1. A cleaning device for honey beverage containers, comprising a conveying mechanism (2) and a cleaning mechanism (3) arranged on a frame (1), wherein the conveying mechanism (2) is used for conveying container bottles (4), and is characterized in that, The cleaning mechanism (3) includes a YZ-axis linear module (31) fixed to the frame (1). An installation frame (32) is fixed to the output end of the YZ-axis linear module (31). Rotating seats (39) are rotatably connected to both ends of the installation frame (32). A driving mechanism for driving the two groups of rotating seats (39) to rotate synchronously is further provided on the installation frame (32). A cleaning pipe (392) and a pneumatic pressure regulating pipe (393) are fixed inside the rotating seat (39). A cleaning bladder (33) adapted to the container bottle (4) is sleeved at the bottom of the rotating seat (39). The cleaning bladder (33) is provided with inner cavities separated and communicated by a number of inner draw films (332). The inner cavities are connected to a pneumatic pressure regulating mechanism through the pneumatic pressure regulating pipe (393) and a rotary joint. A fitting sleeve pipe (333) fixed to the cleaning bladder (33) is arranged between the inner cavities. The bottom end of the cleaning pipe (392) extends to one side of the bottom outer wall of the cleaning bladder (33) through the fitting sleeve pipe (333) and is communicated with an atomizing nozzle (3921). The top end of the cleaning pipe (392) is connected to a liquid supply mechanism through a rotary joint. A number of flexible skirt edges (331) are further arranged on the outer wall of the cleaning bladder (33). The flexible skirt edges (331) are in a "7"-shaped spiral structure.
2. The cleaning device for a honey beverage container according to claim 1, characterized in that, The cleaning bladder (33), the flexible skirt edges (331), the inner draw films (332) and the fitting sleeve pipe (333) are all made of heat-resistant silica gel structure. The elastic coefficient of the inner draw film (332) is less than that of the cleaning bladder (33). The outer contour of the flexible skirt edge (331) is larger than the inner contour of the container bottle (4). The outer contour of the cleaning bladder (33) after being fully inflated with air is smaller than the inner contour of the container bottle (4). The horizontal cross-sectional area of the cleaning bladder (33) after exhausting and shrinking is smaller than the horizontal cross-sectional area of the bottle mouth of the container bottle (4).
3. The cleaning device for a honey beverage container according to claim 1, characterized in that, The driving mechanism includes a driving motor (7) fixed to the bottom of the installation frame (32). Two groups of transmission chain belts (71) are staggeredly sleeved at the output end of the driving motor (7). Pulley wheels (391) matched with the transmission chain belts (71) are fixed to the tops of the rotating seats (39).
4. The cleaning device for a honey beverage container according to claim 1, characterized in that, Connection seats (34) are fixed to both ends of the bottom of the installation frame (32). A bottle mouth plug (37) is vertically and limit-slidingly connected to the bottom of the connection seat (34). The rotating seat (39) is rotatably connected inside the bottle mouth plug (37) through a waterproof bearing (38). A number of discharge ports (374) evenly arranged at equal angles are provided at the bottom of the bottle mouth plug (37). The discharge ports (374) are arranged between the bottle mouth of the container bottle (4) and the upper port of the cleaning bladder (33). An annular discharge pipe (372) communicated with the discharge ports (374) is provided at the top of the bottle mouth plug (37). The output end of the annular discharge pipe (372) is connected to a negative pressure liquid suction mechanism.
5. The cleaning device for a honey beverage container according to claim 4, characterized in that, A limiting slip ring (341) is fixed to the bottom end of the connecting seat (34). A limiting chute (371) matching the limiting slip ring (341) is provided on the outer wall of the top of the bottle mouth plug (37). A buffer spring (342) is fixedly clamped between the limiting slip ring (341) and the bottle mouth plug (37). The buffer spring (342) has an elastic force that drives the bottle mouth plug (37) to move downward and away from the connecting seat (34).
6. The cleaning device for a honey beverage container according to claim 5, wherein, A number of turning shaft rods (373) are equally spaced and evenly distributed on the circumferential side of the bottle mouth plug (37). Claw catches (36) are provided inside the turning shaft rods (373). A turning shaft hole (362) matching the turning shaft rod (373) is provided in the middle of the claw catch (36). A bottle mouth ring (41) is provided on the outer side of the bottle mouth of the container bottle (4). A clamping portion (363) matching the bottle mouth ring (41) is provided at the bottom end of the claw catch (36). An adjusting groove (361) is provided at the top end of the claw catch (36). An adjusting rod (343) matching the adjusting groove (361) is provided on the circumferential side of the limiting slip ring (341).
7. A cleaning device for a honey beverage container according to claim 1, characterized in that, Two groups of self-cleaning mechanisms (35) are symmetrically fixed on the frame (1). The arrangement spacing of the self-cleaning mechanisms (35) is equal to twice the arrangement spacing of the cleaning bags (33). The self-cleaning mechanism (35) includes a self-cleaning barrel (351). A number of cleaning spray heads (352) evenly arranged at equal angles are provided inside the self-cleaning barrel (351). A Y-shaped discharge pipe (353) is connected to the bottoms of the two self-cleaning barrels (351).
8. A cleaning device for a honey beverage container according to claim 1, characterized in that, The conveying mechanism (2) includes a conveyor housing (21). The two conveyor housings (21) are symmetrically fixed on both sides of the frame (1). Transmission belts (23) are provided inside the conveyor housings (21). A guiding mechanism (22) is provided on the top of the conveyor housing (21). The guiding mechanism (22) includes two groups of symmetrically arranged guiding rods one (221) and guiding rods two (222). The guiding rods one (221) and guiding rods two (222) are spirally arranged between the opposite ends of the two transmission belts (23). A guiding rod three (223) is further provided between the opposite ends of the two transmission belts (23). The guiding rod three (223) has the same pitch as the guiding rods one (221) and guiding rods two (222).
9. A cleaning device for a honey beverage container according to claim 8, characterized in that, The outer wall of the container bottle (4) is provided with a bottle waist (42) and a bottle seat (43). The spacing between the two guiding rods one (221) is equal to the minimum diameter at the bottle waist (42). The spacing between the two guiding rods two (222) is less than the maximum diameter at the bottle seat (43). The guiding rod three (223) matches the bottom of the container bottle (4); The number of spiral turns of the guiding rod one (221), guiding rod two (222) and guiding rod three (223) is 1 turn.
10. A cleaning device for a honey beverage container according to claim 8, characterized in that, A drying hot fan (6) is fixed to the bottom side of the middle part of the conveying mechanism (2) on the frame (1). An ultraviolet germicidal lamp (5) is fixed to the top side of the middle part of the conveying mechanism (2) on the frame (1).
Citation Information
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