A milk powder production workshop purification equipment

CN224794208UActive Publication Date: 2026-09-25SHANGHAI JIANGKEN IND CO LTD
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Patent Information

Application Number
CN202522379731.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-10
Publication Date
2026-09-25
Estimated Expiration
2035-11-10

AI Technical Summary

Technical Problem

[0004]然而,上述专利中的一种羊奶粉生产制备用包装设备存在以下不足:首先,上述装置中的漏斗始终是处于固定状态的,不便于对内壁进行净化清理,因此在使用久之后,每次奶粉通过后,漏斗内壁会残留薄层奶粉,且残留粉会吸附空气中的水分、微生物,从而成为污染源

Benefits of technology

本实用新型通过净化清理组件和喷淋组件的配合使用,清理时若干喷淋口将水流喷射到漏斗内壁,水流可起到辅助刮落作用,再在伺服电机二的传动端带动转轴旋转,因此可一同带动若干刮板对漏斗内壁进行刮除,达到净化清理的目的,进一步减少奶粉的积压和微生物的滋生。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to milk powder production technical field, concretely relates to a milk powder production workshop purification equipment, it includes connecting plate and dredging structure, is connected with the hopper through the removal subassembly on connecting plate, is connected with telescopic cylinder one through the support frame on connecting plate, and the output end of telescopic cylinder one is connected with dredging structure, and the one end away from support frame on connecting plate is provided with purification cleaning subassembly, is provided with spray subassembly on purification cleaning subassembly, and the collecting flow guide subassembly is correspondingly equipped with below purification cleaning subassembly on connecting plate, the utility model discloses the cooperation of using of purification cleaning subassembly and spray subassembly, if several spray nozzles spray the water flow to the inner wall of hopper when cleaning, the water flow can play the supplementary scraping off effect, and then the transmission end of servo motor no.
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Description

Technical Field

[0001] This utility model relates to the field of milk powder production technology, specifically to a purification device for a milk powder production workshop. Background Technology

[0002] Milk powder production refers to the process of turning liquid milk or raw milk into milk powder through a series of processing steps. It mainly includes raw material acceptance, pretreatment, spray drying, cooling, sieving, and packaging. During this process, nutritional fortifiers may be added, and strict hygiene and quality control are required to ensure compliance with food safety standards, ultimately producing milk powder products that can be consumed by different groups of people.

[0003] For example, Chinese utility model patent CN 214875674 U discloses a packaging device for producing goat milk powder. Its technical solution includes a base, a first support block fixedly connected to one side of the base, a first connecting plate on one side of the first support block, a rectangular groove on the top of the first connecting plate, a funnel fixedly connected inside the rectangular groove, a clearing structure on the top of the funnel, the clearing structure including the first connecting plate, two second support plates fixedly connected to the top of the first connecting plate, a connecting rod at the bottom of the partition plate, and a clearing component at the bottom of the connecting rod. The beneficial effect of this packaging device for producing goat milk powder is that, through the characteristic of the reciprocating screw driving the bearing seat to move up and down, and through the transmission stability between gears, the stirring rod can be made to stir back and forth inside the funnel, increasing the filling speed while clearing the bottom of the funnel, preventing the funnel opening from being too small, filling the goat milk powder too quickly, and reducing the problem of blockage at the bottom of the funnel.

[0004] However, the packaging equipment for producing goat milk powder in the above patent has the following shortcomings: First, the funnel in the above device is always in a fixed state, which makes it inconvenient to clean the inner wall. Therefore, after a long period of use, a thin layer of milk powder will remain on the inner wall of the funnel after each milk powder passes through, and the residual powder will absorb moisture and microorganisms in the air, thus becoming a source of pollution. Utility Model Content

[0005] The purpose of this utility model is to provide a reasonably designed purification equipment for milk powder production workshops, which can solve the above-mentioned defects and deficiencies of the existing technology.

[0006] To achieve the above objectives, the present invention adopts the following technical solution: it includes a connecting plate and a dredging structure. A funnel is connected to the connecting plate via a movable component. A telescopic cylinder is connected to the connecting plate via a support frame. The output end of the telescopic cylinder is connected to the dredging structure. A purification and cleaning component is provided at one end of the connecting plate away from the support frame. A spray component is provided on the purification and cleaning component. A collection and guiding component is correspondingly provided on the connecting plate below the purification and cleaning component.

[0007] Preferably, the moving component includes a servo motor connected to a connecting plate, a lead screw is provided on the transmission end of the servo motor, a moving plate is movably mounted on the thread of the lead screw, the moving plate is fixedly connected to the funnel, a moving plate is provided on the end of the funnel opposite to the moving plate, a guide post is provided on the end of the connecting plate away from the lead screw, and the moving plate is movably connected to the guide post.

[0008] Preferably, the purification and cleaning assembly includes a support platform mounted on a connecting plate, a fixed plate mounted on the support platform, a telescopic cylinder II mounted on the fixed plate, a rectangular plate mounted on the output end of the telescopic cylinder II, symmetrically arranged stabilizing columns on the rectangular plate, two stabilizing columns slidably connected to the fixed plate, a rotating shaft rotatably mounted on the rectangular plate, a driven gear mounted on the rotating shaft, a servo motor II mounted on one side of the rotating shaft on the rectangular plate, a driving gear mounted on the transmission end of the servo motor II, the driving gear meshing with the driven gear, a power supply mounted above the servo motor II on the rectangular plate, a telescopic cylinder III connected to the rotating shaft, a movable disk mounted on the output end of the telescopic cylinder III, the movable disk slidably connected to the rotating shaft, a base plate mounted at the bottom of the rotating shaft, several scrapers hinged to the base plate, a drive rod hinged to the scraper, and the end of the drive rod away from the scraper hinged to the movable disk.

[0009] Preferably, the spray assembly includes a water tank connected to a connecting plate, a water pump is provided above the water tank, the input end of the water pump is connected to the water tank, the output end of the water pump is connected to a dispersion pipe through a water outlet pipe, the dispersion pipe is provided on a support platform, and a plurality of spray nozzles are provided on the dispersion pipe, with the plurality of spray nozzles corresponding to the funnel.

[0010] Preferably, the collection and diversion assembly includes a vertical plate fixedly connected to the connecting plate, a collection seat is provided on the vertical plate, the collection seat corresponds to the funnel, a diversion pipe is connected to the bottom of the collection seat, and one end of the diversion pipe away from the collection seat is connected to the vertical plate.

[0011] The beneficial effects of this utility model after adopting the above structure are: This invention utilizes a combination of a purification and cleaning component and a spraying component. During cleaning, several spray nozzles spray water onto the inner wall of the funnel, and the water flow assists in scraping off the powder. The servo motor drives the shaft to rotate, which in turn drives several scrapers to scrape off the inner wall of the funnel, achieving the purpose of purification and cleaning, and further reducing the accumulation of milk powder and the growth of microorganisms.

[0012] This invention, by setting up a moving component, allows the transmission end of a servo motor to drive a lead screw to rotate, thus keeping the funnel in an active state and ensuring the subsequent purification and cleaning of the funnel's inner wall.

[0013] This invention features a collection and diversion component that allows the mixture of scraped-off milk powder and water to fall into the collection seat, where it is then guided by the diversion pipe into the corresponding container, facilitating subsequent processing by staff. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a schematic diagram of the structure of the mobile component of this utility model; Figure 3 This is a schematic diagram of the structure of the purification and cleaning component of this utility model; Figure 4 This is a schematic diagram of the structure of the spray assembly of this utility model; Figure 5 This is a schematic diagram of the structure of the collection and diversion component of this utility model; Figure 6 This is a schematic diagram of the position and structure of the funnel when it is in the purification and cleaning working state.

[0015] Explanation of reference numerals in the attached figures: 1. Connecting plate; 2. Moving component; 21. Servo motor one; 22. Lead screw; 23. Moving plate one; 24. Moving plate two; 25. Guide column; 3. Funnel; 4. Telescopic cylinder one; 5. Unblocking structure; 6. Purification and cleaning component; 61. Support platform; 62. Fixed plate; 63. Telescopic cylinder two; 64. Rectangular plate; 65. Stabilizing column; 66. Servo motor two; 67. Power supply; 68. Drive gear; 69. Rotating shaft; 610. Driven gear; 611. Telescopic cylinder three; 612. Moving disc; 613. Base plate; 614. Scraper; 615. Drive rod; 7. Spraying component; 71. Water tank; 72. Water pump; 73. Water outlet pipe; 74. Dispersion pipe; 75. Spray nozzle; 8. Collection and diversion component; 81. Vertical plate; 82. Collection seat; 83. Diversion pipe. Detailed Implementation

[0016] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0017] like Figures 1-6As shown, the present invention proposes a purification equipment for a milk powder production workshop, which includes a connecting plate 1 and a dredging structure 5. The dredging structure 5 has been fully disclosed in the above-cited patent, so it will not be described again. A funnel 3 is connected to the connecting plate 1 through a moving component 2. A telescopic cylinder 4 is connected to the connecting plate 1 through a support frame. The output end of the telescopic cylinder 4 is connected to the dredging structure 5. A purification and cleaning component 6 is provided at one end of the connecting plate 1 away from the support frame. A spray component 7 is provided on the purification and cleaning component 6. A collection and guiding component 8 is provided on the connecting plate 1 below the purification and cleaning component 6. In order to move the funnel 3 from the unblocking structure 5 to the bottom of the purification and cleaning component 6, a moving component is required. The moving component 2 includes a servo motor 21 connected to the connecting plate 1. A lead screw 22 is provided on the transmission end of the servo motor 21. A moving plate 23 is movably installed on the thread of the lead screw 22. The moving plate 23 is fixedly connected to the funnel 3. A moving plate 24 is provided on the end of the funnel 3 opposite to the moving plate 23. A guide post 25 is provided on the end of the connecting plate 1 away from the lead screw 22. The moving plate 24 is movably connected to the guide post 25 to further ensure the stability of the funnel 3 during the movement process. Then, in order to purify and clean the inner wall of funnel 3, thereby reducing the accumulation of milk powder and the growth of microorganisms, a purification and cleaning component 6 is required. This component includes a support platform 61 mounted on the connecting plate 1, providing stable support for the entire component. A fixing plate 62 is mounted on the support platform 61 to facilitate the installation of the telescopic cylinder 63. The telescopic cylinder 63 is mounted on the fixing plate 62, and a rectangular plate 64 is mounted at the output end of the telescopic cylinder 63. Symmetrical stabilizing columns 65 are mounted on the rectangular plate 64, and the two stabilizing columns 65 are slidably connected to the fixing plate 62, thus further ensuring the lifting stability of the rectangular plate 64. A rotating shaft 69 is rotatably mounted on the rectangular plate 64, and a driven gear 610 is mounted on the rotating shaft 69. A servo motor 66 is mounted on one side of the rotating shaft 69 on the rectangular plate 64, and a driving gear 68 is mounted on the transmission end of the servo motor 66. It meshes with the driven gear 610, so when the transmission end of the servo motor 66 rotates, it can drive the rotating shaft 69 to rotate together. The rectangular plate 64 is provided with a power supply 67 above the servo motor 66. The power supply 67 can provide power to the servo motor 66 independently. The rotating shaft 69 is connected to the telescopic cylinder 611. The output end of the telescopic cylinder 611 is provided with a moving disk 612. The moving disk 612 is slidably connected to the rotating shaft 69. The bottom of the rotating shaft 69 is provided with a base plate 613. Several scrapers 614 are hinged on the base plate 613. The scrapers 614 are hinged with driving rods 615. The driving rods 615 have a pulling function. Moreover, when the rotating shaft 69 rotates, the connection strength between the driving rods 615 and the scrapers 614 will not affect the scraping and cleaning operation of the scrapers 614. The end of the driving rod away from the scrapers 614 is hinged to the moving disk 612. Next, in order to assist in scraping off the milk powder and to facilitate a cleaner cleaning of the inner wall of the funnel 3, a spray assembly 7 is required. The spray assembly 7 includes a water tank 71 connected to the connecting plate 1 for storing water. A water pump 72 is installed above the water tank 71 for transmission. The input end of the water pump 72 is connected to the water tank 71, and the output end of the water pump 72 is connected to a dispersion pipe 74 through a water outlet pipe 73, which can further disperse the water source and transmit it to each spray nozzle 75. The dispersion pipe 74 is installed on the support platform 61 and has several spray nozzles 75. The spray nozzles 75 correspond to the funnel 3, so the spray nozzles 75 can spray water onto the inner wall of the funnel 3. Finally, in order to collect and process the mixture of milk powder and water, a collection and guiding component 8 is required. The collection and guiding component 8 includes a vertical plate 81 fixedly connected to the connecting plate 1, which serves as the foundation for the installation of the collection seat 82. The collection seat 82 is provided on the vertical plate 81 and corresponds to the funnel 3. Therefore, the mixture flowing out from below the funnel 3 can fall into the collection seat 82. The bottom of the collection seat 82 is connected to a guiding pipe 83, and the end of the guiding pipe 83 away from the collection seat 82 is connected to the vertical plate 81.

[0018] The principle and usage process of this utility model: When it is necessary to clean the inner wall of the funnel 3, the staff first needs to start the telescopic cylinder 4. The output end of the telescopic cylinder 4 drives the unblocking structure 5 to rise, thereby moving the unblocking structure 5 away from the funnel 3. So the funnel 3 can be moved at this time. Then, the servo motor 21 needs to be started. The transmission end of the servo motor 21 drives the lead screw 22 to rotate, which in turn drives the moving plate 23 to move. Then the moving plate 24 at the other end of the funnel 3 moves on the guide post 25 to ensure the stability of the funnel 3 during the movement. When the funnel 3 moves below the purification and cleaning component 6, the servo motor 1 21 is turned off, and then the telescopic cylinder 2 63 is activated. The output end of the telescopic cylinder 2 63 drives the rectangular plate 64 to descend. During the descent, the stabilizing columns 65 at both ends further enhance the stability of the rectangular plate 64 during the lifting and lowering process. Then, when the rectangular plate 64, along with several scrapers 614 below, descends into the funnel 3, the telescopic cylinder 3 611 is activated. The output end of the telescopic cylinder 3 611 drives the moving disk 612 to rise. During the rising process, several hinged drive rods 615 drive the scrapers 614 to continuously approach the inner wall of the funnel 3 (the distance between the scrapers 614 and the inner wall of the funnel 3 can also be adjusted according to usage requirements). After approaching, it does not affect the use of the scrapers 614. Subsequently, the servo motor 2 66 is activated. Since the driving gear 68 and the driven gear 610 are meshed, the transmission end of the servo motor 2 66 can drive the entire rotating shaft 69 to rotate. Several scrapers 614 can be driven to move within the funnel 3. Before the scrapers 614 rotate, the water pump 72 (ISG20-110 stainless steel centrifugal pump) needs to be started. The input end of the water pump 72 draws water into the water tank 71, and then delivers it from the output end to the circular dispersion pipe 74 through the water outlet pipe 73. The dispersion pipe 74 then delivers the water flow to several spray nozzles 75, which face the funnel 3. The water flow continuously sprays into the funnel 3 from the spray nozzles 75. Under the rotation of the scrapers 614, all the milk powder adhering to the inner wall of the funnel 3 is further scraped off. Moreover, the entire operation process can also purify and clean the inner wall of the funnel 3, reducing the accumulation of milk powder and the growth of microorganisms. Then, since the bottom of the funnel 3 corresponds to the collection seat 82, the mixture of milk powder and water falls into the collection seat 82 together, and then flows into the corresponding container under the guidance of the guide pipe 83 for subsequent processing. After the inner wall of funnel 3 is cleaned, the servo motor 66 is turned off first. The shaft 69 stops rotating. Then the telescopic cylinder 611 is started. The output end of the telescopic cylinder 611 drives the moving plate 612 to descend. Then, through several driving rods 615, the scraper 614 is moved away from the inner wall of funnel 3. The telescopic cylinder 63 is started again to drive the rectangular plate 64 to rise. Then, several scrapers 614 are moved upward to move away from funnel 3. Then the servo motor 21 is started again. Finally, the funnel 3 is moved to the bottom of the unblocking structure 5. Then, the unblocking structure 5 is lowered and moved into the funnel 3 by the telescopic cylinder 4 to ensure the subsequent milk powder filling operation. Before use, the corresponding amount of water must be injected into the water tank 71 to ensure the subsequent spraying operation. In addition, a container that can hold the mixture should be placed at the end of the guide pipe 83 to facilitate the subsequent processing of the mixture of milk powder and water.

[0019] It should be understood that the above-described specific embodiments of this utility model are merely illustrative or explanatory of the principles of this utility model and do not constitute a limitation thereof. Therefore, any modifications, equivalent substitutions, improvements, etc., made without departing from the spirit and scope of this utility model should be included within the protection scope of this utility model. Furthermore, the appended claims are intended to cover all variations and modifications falling within the scope and boundaries of the appended claims, or equivalent forms of such scope and boundaries.

Claims

1. A purification device for a milk powder production workshop, comprising a connecting plate (1) and a dredging structure (5), characterized in that: A funnel (3) is connected to the connecting plate (1) via a moving component (2). A telescopic cylinder (4) is connected to the connecting plate (1) via a support frame. The output end of the telescopic cylinder (4) is connected to the unblocking structure (5). A purification and cleaning component (6) is provided on the end of the connecting plate (1) away from the support frame. A spray component (7) is provided on the purification and cleaning component (6). A collection and guiding component (8) is provided on the connecting plate (1) below the purification and cleaning component (6).

2. The purification equipment for a milk powder production workshop according to claim 1, characterized in that: The moving component (2) includes a servo motor (21) connected to the connecting plate (1). A lead screw (22) is provided on the transmission end of the servo motor (21). A moving plate (23) is movably installed on the thread of the lead screw (22). The moving plate (23) is fixedly connected to the funnel (3). A moving plate (24) is provided at one end of the funnel (3) opposite to the moving plate (23). A guide post (25) is provided at one end of the connecting plate (1) away from the lead screw (22). The moving plate (24) is movably connected to the guide post (25).

3. The purification equipment for a milk powder production workshop according to claim 2, characterized in that: The purification and cleaning component (6) includes a support platform (61) mounted on a connecting plate (1), a fixed plate (62) mounted on the support platform (61), a telescopic cylinder (63) mounted on the fixed plate (62), a rectangular plate (64) mounted on the output end of the telescopic cylinder (63), symmetrically arranged stabilizing columns (65) on the rectangular plate (64), the two stabilizing columns (65) being slidably connected to the fixed plate (62), a rotating shaft (69) rotatably mounted on the rectangular plate (64), a driven gear (610) mounted on the rotating shaft (69), a servo motor (66) mounted on the rectangular plate (64) on one side of the rotating shaft (69), and a drive end of the servo motor (66) being provided with... A drive gear (68) meshes with a driven gear (610). A power supply (67) is provided on the rectangular plate (64) above the servo motor (66). A telescopic cylinder (611) is connected to the rotating shaft (69). A movable disk (612) is provided at the output end of the telescopic cylinder (611). The movable disk (612) is slidably connected to the rotating shaft (69). A base plate (613) is provided at the bottom of the rotating shaft (69). Several scrapers (614) are hinged on the base plate (613). A drive rod (615) is hinged on the scraper (614). One end of the drive rod (615) away from the scraper (614) is hinged to the movable disk (612).

4. The purification equipment for a milk powder production workshop according to claim 3, characterized in that: The spray assembly (7) includes a water tank (71) connected to the connecting plate (1). A water pump (72) is provided above the water tank (71). The input end of the water pump (72) is connected to the water tank (71). The output end of the water pump (72) is connected to a dispersion pipe (74) through a water outlet pipe (73). The dispersion pipe (74) is provided on the support platform (61). A plurality of spray nozzles (75) are provided on the dispersion pipe (74). The plurality of spray nozzles (75) correspond to the funnel (3).

5. The purification equipment for a milk powder production workshop according to claim 4, characterized in that: The collection and diversion assembly (8) includes a vertical plate (81) fixedly connected to the connecting plate (1). A collection seat (82) is provided on the vertical plate (81). The collection seat (82) corresponds to the funnel (3). A diversion pipe (83) is connected to the bottom of the collection seat (82). One end of the diversion pipe (83) away from the collection seat (82) is connected to the vertical plate (81).

Citation Information

Patent Citations

  • Packaging equipment for goat milk powder production and preparation

    CN214875674U