Transfusion structure of clothes washing and bead condensing machine
By introducing ultraviolet lights into the laundry bead condensation manufacturing machine for disinfection and sterilization, and using output control components to adjust the liquid flow, the problem of traditional laundry bead condensation manufacturing machines being unable to adjust the output and lacking sterilization functions is solved, and product quality improvement and production efficiency optimization are achieved.
Patent Information
- Application Number
- CN202421938093.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-12
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-12
AI Technical Summary
Traditional laundry bead condensation manufacturing machines cannot adjust the output, resulting in waste of raw materials and uneven product quality, and lack of sterilization functions, which may lead to bacterial growth.
A infusion structure of a laundry bead condenser is designed, including a liquid storage tank, an ultraviolet lamp, an output control assembly and a ball valve. It is disinfected and sterilized through the ultraviolet lamp, and the liquid flow rate is adjusted through the output control assembly.
Effective disinfection and sterilization, reduce bacterial and microbial content, ensure product quality and washing effect, and at the same time, by adjusting liquid flow, avoid waste of raw materials and uneven product quality.
Smart Images

Figure CN223015458U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of laundry bead manufacturing, and more specifically, particularly relates to an infusion structure of a laundry bead machine. Background Art
[0002] Laundry beads are a new type of washing product that integrates various washing components such as detergents, fabric softeners, and disinfectants in a dissolvable film. When in use, only the beads need to be put into the washing machine. This product is welcomed by the market due to its convenience and high efficiency. In the manufacturing process of laundry beads, the rationality of the infusion structure is of great significance for product quality and production efficiency. In traditional laundry bead manufacturing machines, the design of the infusion structure often adopts a fixed flow rate method and cannot adjust the output according to actual needs. This method may cause waste of raw materials during the manufacturing process, or uneven product quality due to unstable output. In addition, the hygiene problem in the liquid storage tank is also a common problem. Bacteria are likely to breed during long-term use, affecting the hygiene and safety of the product, resulting in a decrease in the qualified rate of the product and causing economic losses to users. Content of the Utility Model
[0003] In order to solve the above technical problems, the utility model provides an infusion structure of a laundry bead machine to solve the technical problems in the prior art that in traditional laundry bead manufacturing machines, the output cannot be adjusted, resulting in unstable output and possible waste of raw materials. In addition, traditional laundry bead manufacturing machines do not have a sterilization function, which may lead to the breeding of bacteria.
[0004] The purpose and effect of the infusion structure of the laundry bead machine of the utility model are achieved by the following specific technical means:
[0005] An infusion structure of a laundry bead machine includes a support bottom plate, multiple support columns are arranged on the support bottom plate, multiple support rings are arranged between the multiple support columns, a liquid storage tank is arranged in the multiple support rings, an installation hole is opened on the liquid storage tank, and an ultraviolet lamp is installed in the installation hole; an installation shell is arranged on the support bottom plate, an output control component is arranged in the installation shell, one side of the output control component is connected to the liquid storage tank, a ball valve is sleeved on the other side of the output control component, and a drip head is arranged at the bottom of the ball valve.
[0006] According to a preferred embodiment, the output control component includes a first mounting plate, the first mounting plate is arranged above the support bottom plate, and a first through hole is opened on the first mounting plate.
[0007] According to a preferred embodiment, a second mounting plate is arranged opposite to the first mounting plate, a control housing is arranged between the first mounting plate and the second mounting plate, and multiple groups of second through holes are formed in the first mounting plate, the second mounting plate and the control housing.
[0008] According to a preferred embodiment, bolts are inserted into the second through holes, and the first mounting plate, the second mounting plate and the control housing are connected by the bolts; third through holes are formed in the upper and lower parts of the control housing, and a liquid inlet and a liquid outlet are respectively sleeved in the two groups of third through holes. The liquid inlet is connected to the liquid storage tank through a hose, and the liquid outlet is connected to the ball valve.
[0009] According to a preferred embodiment, sealing grooves are formed at both ends of the control housing, sealing tapes are arranged in the sealing grooves, and the two groups of sealing tapes are respectively connected to the first mounting plate and the second mounting plate.
[0010] According to a preferred embodiment, a rotating shaft is inserted into the first through hole, and a fixed shaft is arranged between the first mounting plate and the second mounting plate; two groups of fixing blocks are sleeved on the rotating shaft and the fixed shaft, and a first gear is sleeved on the rotating shaft and the fixed shaft, and the two groups of first gears are meshed with each other.
[0011] According to a preferred embodiment, a motor is installed in the installation housing, a second gear is connected to the end of the motor shaft, a third gear is arranged on the rotating shaft, and the second gear is meshed with the third gear.
[0012] According to a preferred embodiment, a cabinet door is installed on the installation housing, and the cabinet door is rotatably connected to the installation housing through a hinge; a liquid inlet pipe is arranged on the liquid storage tank, and a sealing cover is arranged on the liquid inlet pipe.
[0013] Compared with the prior art, the utility model has the following beneficial effects:
[0014] 1. First, the ultraviolet lamp installed on the liquid storage tank can effectively disinfect and sterilize the liquid during the storage of the laundry detergent beads. This is crucial for ensuring the quality of the laundry detergent beads. The disinfected liquid can reduce the presence of bacteria and other microorganisms, avoiding secondary pollution to the clothes during subsequent use, thereby improving the qualification rate of the laundry detergent beads. Moreover, this disinfection function is continuous and stable. As long as the ultraviolet lamp works properly, it can continuously purify the liquid in the storage tank. At the same time, the motor in the output control component drives the rotating shaft to rotate through a gear set. The rotating shaft, two fixed blocks on the fixed shaft, and structures such as the first gear that mesh with each other work together to regulate the liquid flow rate entering the control shell from the liquid inlet. By regulating the flow rate, the produced laundry detergent beads can all have a content that meets the standards, thereby improving the overall quality qualification rate of the product.
[0015] 2. Second, the sealing grooves opened at both ends of the control shell and the sealing belts arranged inside are connected to the first mounting plate and the second mounting plate, forming a good sealing effect. This sealing structure can effectively prevent liquid leakage, ensuring the normal operation and service life of the equipment. In addition, the cabinet door installed on the installation shell is rotatably connected to the installation shell through a hinge, facilitating the maintenance and repair of components such as the motor inside the equipment. The liquid inlet pipe and the sealing cover provided on the liquid storage tank also facilitate the addition of liquid into the liquid storage tank, and the sealing cover can ensure the sealing performance of the liquid in the liquid storage tank in the non-adding state, preventing external impurities from entering the liquid storage tank and polluting the liquid, further ensuring the quality of the laundry detergent liquid. Description of the Drawings
[0016] Figure 1 is the structural schematic diagram of the assembled utility model;
[0017] Figure 2 is the structural schematic diagram of the disassembled utility model;
[0018] Figure 3 is Figure 2 the enlarged structural schematic diagram at a in
[0019] Figure 4 is the structural schematic diagram of the disassembled output control component.
[0020] In the figure, the corresponding relationship between the component names and the drawing reference numbers is:
[0021] 11. Support bottom plate; 12. Support column; 13. Support ring; 14. Liquid storage tank; 15. Mounting hole; 16. Ultraviolet lamp; 17. Mounting shell; 18. Ball valve; 19. Dripping head; 21. First mounting plate; 22. First through hole; 23. Second mounting plate; 24. Control shell; 25. Second through hole; 26. Bolt; 27. Third through hole; 28. Liquid inlet; 29. Liquid outlet; 31. Sealing groove; 32. Sealing tape; 33. Rotating shaft; 34. Fixed shaft; 35. Fixed block; 36. First gear; 37. Motor; 38. Second gear; 39. Third gear; 41. Hose; 42. Cabinet door; 43. Hinge; 44. Liquid inlet pipe; 45. Sealing cover. Detailed implementation mode
[0022] The following further describes in detail the implementation mode of the present utility model in conjunction with the drawings and embodiments. The following embodiments are used to illustrate the technical solutions of the present utility model, but cannot be used to limit the protection scope of the present utility model.
[0023] Embodiment:
[0024] As Figure 1 、 2, as shown in FIGS. 3, an infusion structure of a laundry detergent pod machine includes a support base plate 11, which serves as the basic support component of the entire infusion structure of the laundry detergent pod machine, bearing the weight of multiple support columns 12 and other components above, ensuring the stability of the entire structure, providing a solid planar foundation for the installation and normal operation of each component, enabling the entire infusion structure to work in a relatively stable state. Multiple support columns 12 are provided on the support base plate 11, connecting the support base plate 11 and the support ring 13, playing a role in supporting and fixing the support ring 13, enabling the support ring 13 to be stably at a certain height, thereby providing a suitable installation position for the liquid storage tank 14, ensuring that the liquid storage tank 14 will not affect the storage and transportation of liquid due to improper position during operation, and also contributing to the reasonable spatial layout of the overall structure. Multiple support rings 13 are provided between multiple support columns 12 for fixing the liquid storage tank 14, surrounding and fixing the liquid storage tank 14 from multiple directions, preventing the liquid storage tank 14 from shaking or displacing during operation, ensuring the firm installation of the liquid storage tank 14, and meeting the production requirements of a certain amount of laundry detergent pods within a certain period of time. A liquid storage tank 14 is provided in multiple support rings 13, which is mainly used to store the liquid required for laundry detergent pods. An installation hole 15 is provided on the liquid storage tank 14, and an ultraviolet lamp 16 is installed in the installation hole 15. Installed in the installation hole 15 of the liquid storage tank 14, it emits ultraviolet rays to sterilize the liquid in the liquid storage tank 14, reducing the content of bacteria and microorganisms in the liquid, preventing these bacteria and microorganisms from contaminating clothes during the subsequent production and use of laundry detergent pods, thereby ensuring the quality and washing effect of the laundry detergent pods. An installation shell 17 is provided on the support base plate 11, providing an installation space and protection for the output control component, preventing external dust, debris, etc. from entering the interior of the output control component and affecting its normal operation. An output control component is provided in the installation shell 17. One side of the output control component is connected to the liquid storage tank 14, and a ball valve 18 is sleeved on the other side of the output control component. As a control valve, it controls the on-off of the liquid by rotating. In the infusion structure of the laundry detergent pod machine, the ball valve 18 can open or close the flow of the liquid at any time according to production needs. A drip head 19 is provided at the bottom of the ball valve 18, enabling the liquid to be dripped into the production mold of the laundry detergent pod or the corresponding position according to certain specifications and requirements.
[0025] As Figure 4 shown, the output control component includes a first mounting plate 21, which, as a part of the output control component, provides an installation foundation for components such as the rotating shaft 33 and the fixed shaft 34. The first through hole 22 opened therein is used to pass through the rotating shaft 33, enabling the rotating shaft 33 to rotate stably therein, and at the same time, together with the second mounting plate 23, connecting the control shell 24 through bolts 26 to provide support and fixation for the control shell 24. The first mounting plate 21 is arranged above the support base plate 11, and the first through hole 22 is opened on the first mounting plate 21.
[0026] A second mounting plate 23 is provided opposite to the first mounting plate 21. It is arranged opposite to the first mounting plate 21 and acts together with the first mounting plate 21. The control housing 24 is connected and fixed by bolts 26, providing support and fixation for the control housing 24 in the front and rear directions, ensuring that the control housing 24 will not displace or shake during operation. Moreover, the space between it and the first mounting plate 21 is used to install components such as the rotating shaft 33 and the fixed shaft 34, providing a suitable installation environment for the normal operation of these components. A control housing 24 is arranged between the first mounting plate 21 and the second mounting plate 23, which plays a role in controlling the liquid flow path and flow rate. The third through holes 27 opened up and down provide installation positions for the liquid inlet 28 and the liquid outlet 29. Multiple groups of second through holes 25 are opened on both the first mounting plate 21, the second mounting plate 23, and the control housing 24.
[0027] Bolts 26 are inserted through the second through holes 25 for connecting the first mounting plate 21, the second mounting plate 23, and the control housing 24. By tightening the bolts 26, these three components are firmly fixed together, ensuring the structural stability and sealing performance of the entire output control assembly. The first mounting plate 21, the second mounting plate 23, and the control housing 24 are connected by bolts 26. Third through holes 27 are opened up and down on the control housing 24. The liquid inlet 28 and the liquid outlet 29 are respectively sleeved in two groups of the third through holes 27. The liquid inlet 28 is connected to the liquid storage tank 14 through a hose 41, introducing the liquid in the liquid storage tank 14 into the control housing 24. Its position and size design on the control housing 24 ensure that the liquid can flow smoothly into the control housing 24. The liquid outlet 29 is connected to the ball valve 18, outputting the regulated liquid in the control housing 24 to the ball valve 18. Its position and size design on the control housing 24 should cooperate with the liquid inlet 28 to ensure that the liquid can flow in the control housing 24 according to the set process.
[0028] Sealing grooves 31 are opened at both ends of the control housing 24. Sealing strips 32 are arranged in the sealing grooves 31. They are arranged in the sealing grooves 31 of the control housing 24 and are respectively connected to the first mounting plate 21 and the second mounting plate 23, playing a sealing role to prevent liquid from leaking at the connection between the control housing 24 and the first mounting plate 21 and the second mounting plate 23. The two groups of sealing strips 32 are respectively connected to the first mounting plate 21 and the second mounting plate 23.
[0029] A rotating shaft 33 passes through the first through hole 22, and a fixed shaft 34 is arranged between the first mounting plate 21 and the second mounting plate 23. Two sets of fixing blocks 35 are sleeved on the rotating shaft 33 and the fixed shaft 34. The fixing blocks are sleeved on the rotating shaft 33 and the fixed shaft 34, and their main function is to position and fix the first gears 36 mounted on the rotating shaft 33 and the fixed shaft 34, prevent the first gears 36 from axially displacing during rotation, ensure that the two sets of first gears 36 can always be accurately meshed, and thus achieve stable power transmission and liquid flow control. The first gears 36 are sleeved on the rotating shaft 33 and the fixed shaft 34, and the two sets of first gears 36 mesh with each other.
[0030] A motor 37 is installed in the installation shell 17 to provide a power source for the entire output control assembly. A second gear 38 is connected to the shaft end of the motor 37, and a third gear 39 is arranged on the rotating shaft 33. The second gear 38 meshes with the third gear 39.
[0031] A cabinet door 42 is installed on the installation shell 17 to facilitate the maintenance and repair of the components inside the installation shell 17. The cabinet door 42 is rotatably connected to the installation shell 17 through a hinge 43. A liquid inlet pipe 44 is arranged on the liquid storage tank 14, which is a channel for adding liquid raw materials into the liquid storage tank 14. A sealing cover 45 is arranged on the liquid inlet pipe 44 to seal the liquid inlet pipe 44 and prevent the liquid in the liquid storage tank 14 from leaking or being polluted.
[0032] The specific usage mode and function of this embodiment:
[0033] First, add liquid to the liquid storage tank 14 through the liquid inlet pipe 44 and seal it with the sealing cover 45. The liquid storage tank 14 is surrounded and fixed by multiple sets of support rings 13 to prevent it from shaking or displacing. The ultraviolet lamp 16 on the liquid storage tank 14 sterilizes the liquid to reduce the content of bacteria and microorganisms to ensure the quality of the laundry beads and the washing effect. The liquid in the liquid storage tank 14 enters the control shell 24 from the liquid inlet 28 through the hose 41. The motor 37 in the installation shell 17 is started. The second gear 38 at the shaft end of the motor 37 drives the third gear 39 on the rotating shaft 33 to rotate, causing the rotating shaft 33 to rotate. The first gears 36 on the rotating shaft 33 and the fixed shaft 34 are meshed to achieve power transmission and liquid flow control. The liquid is adjusted in the control shell 24 and then output to the ball valve 18 from the liquid outlet 29. The ball valve 18 controls the on-off of the liquid by rotation. When it is opened, the liquid drips from the drip head 19 at the bottom of the ball valve 18 into the laundry bead making mold or the corresponding position according to the specification requirements. The support bottom plate 11, the support columns 12, and the support rings 13 play a role in supporting and fixing, ensuring the structural stability, providing a solid foundation for the installation and operation of each component, and ensuring the proper position and firm installation of the liquid storage tank 14. The installation shell 17 can protect the output control assembly and prevent foreign dust, debris, etc. from entering. The cabinet door 42 facilitates the maintenance and repair of the internal components.
[0034] The above has shown and described the basic principles, main features and advantages of the present utility model. For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above-mentioned exemplary embodiments.
Claims
1. A liquid infusion structure of a washing machine, comprising a supporting bottom plate (11), characterized in that: A plurality of groups of support columns (12) are arranged on the support base plate (11), a plurality of groups of support rings (13) are arranged between the plurality of groups of support columns (12), a liquid storage tank (14) is arranged in the plurality of groups of support rings (13), a mounting hole (15) is opened on the liquid storage tank (14), and an ultraviolet lamp (16) is installed in the mounting hole (15); a mounting shell (17) is arranged on the support base plate (11), an output control component is arranged in the mounting shell (17), one side of the output control component is connected to the liquid storage tank (14), and the other side of the output control component is sleeved with a ball valve (18), and a dripper (19) is arranged at the bottom of the ball valve (18).
2. The liquid infusion structure of the washing bead machine according to claim 1, characterized in that: The output control assembly comprises a first mounting plate (21), the first mounting plate (21) being arranged above the supporting base plate (11), and a first through hole (22) being provided on the first mounting plate (21).
3. The liquid infusion structure of the washing bead machine according to claim 2, characterized in that: A second mounting plate (23) is arranged opposite to the first mounting plate (21), a control shell (24) is arranged between the first mounting plate (21) and the second mounting plate (23), and a plurality of groups of second through holes (25) are provided on the first mounting plate (21), the second mounting plate (23) and the control shell (24).
4. The liquid infusion structure of the washing bead machine according to claim 3, characterized in that: A bolt (26) is inserted into the second through hole (25), and the first mounting plate (21), the second mounting plate (23) and the control housing (24) are connected via the bolt (26); the control housing (24) is provided with third through holes (27) at the top and bottom, and two groups of the third through holes (27) are respectively provided with a liquid inlet (28) and a liquid outlet (29); the liquid inlet (28) is connected to the liquid storage tank (14) via a hose (41), and the liquid outlet (29) is connected to the ball valve (18).
5. The liquid infusion structure of the washing bead machine according to claim 4, characterized in that: Both ends of the control housing (24) are provided with sealing grooves (31), and sealing belts (32) are arranged in the sealing grooves (31). Two groups of the sealing belts (32) are respectively connected to the first mounting plate (21) and the second mounting plate (23).
6. The liquid infusion structure of the washing bead machine according to claim 5, characterized in that: A rotating shaft (33) is inserted into the first through hole (22), and a fixed shaft (34) is arranged between the first mounting plate (21) and the second mounting plate (23); two groups of fixed blocks (35) are sleeved on the rotating shaft (33) and the fixed shaft (34), and a first gear (36) is sleeved on the rotating shaft (33) and the fixed shaft (34), and the two groups of the first gears (36) are meshed with each other.
7. The liquid infusion structure of the washing bead machine according to claim 6, characterized in that: A motor (37) is installed in the installation shell (17), a second gear (38) is connected to the shaft end of the motor (37), a third gear (39) is arranged on the rotating shaft (33), and the second gear (38) is meshed with the third gear (39).
8. The liquid infusion structure of a washing bead machine according to claim 1, characterized in that: A cabinet door (42) is installed on the installation shell (17), and the cabinet door (42) is rotatably connected to the installation shell (17) via a hinge (43); a liquid inlet pipe (44) is provided on the liquid storage tank (14), and a sealing cover (45) is provided on the liquid inlet pipe (44).