Spray drying mechanism for camel milk powder drying equipment
The spray drying mechanism with a rotating ring-shaped filter and even air circulation system addresses localized heating issues in camel milk powder drying equipment, ensuring uniform heat distribution and effective drying.
Patent Information
- Application Number
- CN202421859680.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-02
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-08-02
AI Technical Summary
In the existing camel milk powder spray drying equipment, excessive local calories inside the equipment lead to inactivation of camel milk powder, which is seriously lacking in nutritional value.
A spray drying mechanism for camel milk powder drying equipment is adopted. Through the design of an annular plate and a moving plate, combined with a hot air fan and atomizer, the uniform distribution of hot air in the drying tower is achieved to avoid local heat excessive.
The uniform distribution of heat in the drying tower is achieved, the inactivation of camel milk powder is avoided, and the drying effect and nutritional value are ensured.
Smart Images

Figure CN223094678U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of drying for removing liquid from solid materials or products, and particularly relates to a spray drying mechanism for a camel milk powder drying device. Background Art
[0002] Camel milk is the milk of the Bactrian camel, a camelid animal, and camel milk powder is a powdered nutritional product made from camel milk. Due to its nutritional value, it has increasingly entered people's lives. Most existing camel milk powder spray drying devices directly heat the air in a fixed manner during use. This method is likely to cause excessive local heat inside the device, which in turn easily inactivates the camel powder and results in a relatively serious loss of nutritional value. Therefore, a spray drying mechanism for a camel milk powder drying device is needed to solve the above problems. Summary of the Utility Model
[0003] The purpose of the utility model is to solve the problems such as inactivation of camel powder caused by excessive local heat inside the device in the prior art, and thus a spray drying mechanism for a camel milk powder drying device is proposed.
[0004] To achieve the above purpose, the utility model adopts the following technical scheme: A spray drying mechanism for a camel milk powder drying device includes a drying tower. A number of legs are vertically and fixedly arranged on the outer side of the bottom of the drying tower, and the number of legs is arranged at equal intervals in a ring shape. An annular filter screen is vertically and fixedly arranged inside the drying tower, and an annular cavity is formed between the outer wall of the annular filter screen and the inner wall of the drying tower. A discharge hopper is fixedly arranged at the center of the bottom of the drying tower, and the top size of the discharge hopper is adapted to the bottom of the annular filter screen.
[0005] Further, a number of concave plates are fixedly arranged at equal intervals at the center of the outer side of the drying tower. An annular groove is opened inside the center of the drying tower, and the annular groove is located inside the number of concave plates. An annular plate is movably arranged inside the annular groove, and the annular plate is rotatably arranged at the center of the drying tower.
[0006] Further, annular T plates are fixedly arranged at both the upper and lower ends of the annular plate. Annular T grooves are opened at both the upper and lower ends of the annular groove, and the annular T plates are rotatably arranged inside the annular T grooves. A number of moving plates are vertically and fixedly arranged at equal intervals at the inner end of the annular plate, and the number of moving plates are all located inside the annular cavity. A number of through holes are opened at the end faces of the number of moving plates, and the number of through holes are arranged at equal intervals vertically.
[0007] Further, a toothed ring is annularly and fixedly arranged on the outer side of the annular plate. A fixed plate is horizontally and fixedly arranged at one end of the outer side of the drying tower. A motor is fixedly arranged at the center of the bottom of the fixed plate, and the output end of the motor is fixedly connected upwards with a gear, and the gear is located on the fixed plate. The gear is meshed with the toothed ring. A hot air blower is fixedly arranged on the outer side of the lower end of the drying tower, and the air outlet end of the hot air blower is communicated with the annular cavity.
[0008] Furthermore, a connecting block is fixedly arranged on the outer side of the upper end of the drying tower. The outer end of the connecting block is fixedly provided with a liquid storage tank. The top of the liquid storage tank is detachably provided with a tank cover. The center of the top of the tank cover is fixedly provided with a water pump. The bottom end of the water pump is fixedly provided with a water suction pipe. The water suction pipe is arranged inside the liquid storage tank. The top end of the water pump is fixedly provided with a liquid outlet pipe. One end of the liquid outlet pipe away from the liquid storage tank is fixedly provided with an atomizer, and the atomizer is located inside the top end of the drying tower.
[0009] Beneficial effects: By starting the motor, it is convenient to drive the gear to rotate. The rotation of the gear is convenient to drive the gear ring to rotate. The rotation of the gear ring is convenient to drive the annular plate to rotate in the annular groove. The rotation of the annular plate is convenient to drive a plurality of moving plates to rotate between the outer wall of the annular filter screen and the inner wall of the drying tower, so that a plurality of moving plates rotate in the annular cavity, thereby facilitating the uniform passage of the hot air in the annular cavity through the annular filter screen into the drying tower, and further facilitating the rapid evaporation of moisture and drying of the atomized camel milk liquid in the drying tower, so as to facilitate the uniform distribution of heat inside the equipment, and further solve the problem that the local heat inside the equipment is too high, which is likely to cause the inactivation of camel powder and serious loss of nutritional value. Therefore, the equipment has a better air distribution effect during use, avoiding the occurrence of coked powder to ensure the drying effect. Description of the Drawings
[0010] Figure 1 is a schematic diagram of the overall structure of the present invention;
[0011] Figure 2 is a schematic diagram of the main cross-sectional structure of the present invention;
[0012] Figure 3 is a schematic diagram of the side cross-sectional structure of the present invention;
[0013] Figure 4 is a schematic diagram of the structure of the annular plate in the present invention;
[0014] Figure 5 is a schematic diagram of the structure of the liquid storage tank in the present invention.
[0015] In the figure: 1 drying tower, 2 support legs, 3 annular filter screen, 4 discharge hopper, 5 annular groove, 6 annular plate, 7 concave plate, 8 annular T plate, 9 annular T groove, 10 moving plate, 11 through hole, 12 gear ring, 13 fixing plate, 14 motor, 15 gear, 16 hot air blower, 17 connecting block, 18 liquid storage tank, 19 tank cover, 20 water pump, 21 liquid outlet pipe, 22 atomizer. Detailed Embodiments
[0016] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments.
[0017] Referring to Figures 1 to 5 , this embodiment provides a spray drying mechanism for a camel milk powder drying device, including a drying tower 1. A plurality of legs 2 are vertically and fixedly arranged on the outer side of the bottom of the drying tower 1, and the plurality of legs 2 are arranged at equal intervals in a ring shape. An annular filter screen 3 is vertically and fixedly arranged inside the drying tower 1, and an annular cavity is formed between the outer wall of the annular filter screen 3 and the inner wall of the drying tower 1. A discharge hopper 4 is fixedly arranged at the center of the bottom of the drying tower 1, and the top size of the discharge hopper 4 is adapted to the bottom of the annular filter screen 3; preferably, by providing the drying tower 1, it is convenient to quickly dry the camel milk liquid into camel milk powder. By providing a plurality of legs 2, it is convenient to support and fix the drying tower 1. By providing the annular filter screen 3, it is convenient to filter the air entering the drying tower 1, so as to ensure that the air in the drying tower 1 can dry the camel milk liquid quickly, cleanly and conveniently. By providing the discharge hopper 4, it is convenient to discharge the dried camel milk powder in the drying tower 1 for collection, so as to conveniently dry the camel milk liquid into camel milk powder through the drying tower 1.
[0018] Furthermore, a plurality of concave plates 7 are fixedly arranged at equal intervals at the center of the outer side of the drying tower 1. An annular groove 5 is formed inside the center of the drying tower 1, and the annular groove 5 is located inside the plurality of concave plates 7. An annular plate 6 is movably arranged inside the annular groove 5, and the annular plate 6 is rotatably arranged at the center of the drying tower 1; preferably, by providing a plurality of concave plates 7, it is convenient to fix the upper and lower ends of the drying tower 1. By providing the annular groove 5, it is convenient to movably arrange the annular plate 6 inside the center of the drying tower 1. By providing the annular plate 6, it is convenient to rotate inside the annular groove 5, and thus convenient to rotate inside the center of the drying tower 1. By a plurality of concave plates 7, it is convenient to limit and fix the annular groove 5, so as to prevent the drying tower 1 from collapsing due to the annular groove 5.
[0019] Furthermore, annular T-shaped plates 8 are fixedly arranged at both the upper and lower ends of the annular plate 6. Annular T-shaped grooves 9 are formed at both the upper and lower ends of the annular groove 5, and the annular T-shaped plates 8 are rotatably arranged in the annular T-shaped grooves 9. A plurality of moving plates 10 are fixedly arranged at equal intervals vertically at the inner end of the annular plate 6, and a plurality of moving plates 10 are all located in the annular cavity. A plurality of through holes 11 are formed in the end faces of the plurality of moving plates 10, and the plurality of through holes 11 are distributed at equal intervals vertically; preferably, by providing the annular T-shaped plates 8, it is convenient to enhance the stability of the rotation of the annular plate 6 in the annular groove 5. By providing the annular T-shaped grooves 9, it is convenient for the annular T-shaped plates 8 to rotate in the upper and lower ends of the annular groove 5. By providing a plurality of moving plates 10, it is convenient to push the air in the annular cavity formed by the outer wall of the annular filter screen 3 and the inner wall of the drying tower 1, so as to facilitate the uniform distribution of the air in the drying tower 1. By providing a plurality of through holes 11, it is convenient to conduct diversion for the moving plates 10, so as to facilitate the uniform distribution of the air in the annular cavity formed by the outer wall of the annular filter screen 3 and the inner wall of the drying tower 1, and thus it is convenient to push the hot air to be evenly distributed in the drying tower 1 through a plurality of moving plates 10.
[0020] Furthermore, a toothed ring 12 is fixedly arranged annularly on the outer side of the annular plate 6. A fixed plate 13 is fixedly arranged horizontally at one end on the outer side of the drying tower 1. A motor 14 is fixedly arranged at the center of the bottom of the fixed plate 13. The output end of the motor 14 is fixedly connected upward with a gear 15, and the gear 15 is located on the fixed plate 13. The gear 15 is meshed with the toothed ring 12. A hot air blower 16 is fixedly arranged on the outer side of the lower end of the drying tower 1, and the air outlet end of the hot air blower 16 is communicated with the annular cavity; preferably, by providing the toothed ring 12, it is convenient to drive the annular plate 6 to rotate in the annular groove 5. By providing the fixed plate 13, it is convenient to fixedly install the motor 14 on one side of the outer end of the drying tower 1. By providing the motor 14, it is convenient to drive the gear 15 to rotate on the fixed plate 13. By providing the gear 15, it is convenient to drive the toothed ring 12 to rotate, so as to facilitate driving the annular plate 6 to rotate in the drying tower 1. By providing the hot air blower 16, it is convenient to generate hot air, so as to facilitate the hot air generated to enter the annular cavity formed by the outer wall of the annular filter screen 3 and the inner wall of the drying tower 1, so that the hot air enters the drying tower 1 through the annular filter screen 3, and thus it is convenient to dry the camel milk powder in the drying tower 1.
[0021] Furthermore, a connecting block 17 is fixedly arranged on the outer side of the upper end of the drying tower 1. The outer end of the connecting block 17 is fixedly provided with a liquid storage tank 18. The top of the liquid storage tank 18 is detachably provided with a tank cover 19. The center of the top of the tank cover 19 is fixedly provided with a water pump 20. The bottom end of the water pump 20 is fixedly provided with a water suction pipe, and the water suction pipe is arranged inside the liquid storage tank 18. The top end of the water pump 20 is fixedly provided with a liquid outlet pipe 21. One end of the liquid outlet pipe 21 away from the liquid storage tank 18 is fixedly provided with an atomizer 22, and the atomizer 22 is located inside the top end of the drying tower 1. Preferably, the connecting block 17 is provided to facilitate the fixed installation of the liquid storage tank 18 on the outer side of the upper end of the drying tower 1. The liquid storage tank 18 is provided to facilitate the storage of camel milk liquid, so as to facilitate subsequent drying. The tank cover 19 is provided to facilitate opening or closing the liquid storage tank 18, so as to facilitate putting the camel milk liquid into the liquid storage tank 18. The water pump 20 is provided to facilitate pumping out the camel milk liquid in the liquid storage tank 18. The liquid outlet pipe 21 is provided to facilitate transporting the pumped-out camel milk liquid. The atomizer 22 is provided to facilitate atomizing the pumped-out camel milk liquid, so as to facilitate spraying the atomized camel milk liquid into the drying tower 1, and further facilitate quickly drying the atomized camel milk liquid.
[0022] In the present utility model, during use, when it is necessary to dry camel milk powder, the camel milk powder raw material can be first placed in the liquid storage tank 18. At this time, the motor 14, the hot air blower 16 and the water pump 20 can be started. Under the action of the water pump 20, the camel milk powder raw material is pumped out from the liquid storage tank 18, and then transmitted to the atomizer 22 through the liquid outlet pipe 21. After being atomized by the atomizer 22, it is sprayed into the interior of the drying tower 1. At the same time, the hot air generated under the action of the hot air blower 16 enters the annular cavity formed between the outer wall of the annular filter screen 3 and the inner wall of the drying tower 1. At this time, when the motor 14 is started, the gear 15 is driven to rotate on the fixed plate 13. The rotation of the gear 15 drives the toothed ring 12 to rotate. The rotation of the toothed ring 12 drives the annular plate 6 to rotate in the annular groove 5. The rotation of the annular plate 6 drives the two annular T-shaped plates 8 to rotate in the two annular T-shaped grooves 9, thereby enhancing the stability of the annular plate 6 rotating in the annular groove 5. While the annular plate 6 rotates, it drives a plurality of moving plates 10 to rotate in the annular cavity formed between the outer wall of the annular filter screen 3 and the inner wall of the drying tower 1, so as to facilitate pushing the hot air in the annular cavity to uniformly pass through the annular filter screen 3 and enter the drying tower 1. At this time, the hot air is uniformly distributed in the drying tower 1 and mixed with the camel milk powder raw material. The moisture of the camel milk powder raw material is quickly evaporated and discharged from the discharge hopper 4 in the form of powder, so as to facilitate the uniform distribution of the heat inside the equipment, and further solve the problem that the local heat inside the equipment is too high, which easily causes the inactivation of camel powder and serious loss of nutritional value. Thus, the air distribution effect of the equipment during use is better, and the occurrence of coked powder is avoided to ensure the drying effect.
[0023] The above are only the preferred specific embodiments of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution of the present utility model and its inventive concept, makes equivalent substitutions or changes, and should be covered within the protection scope of the present utility model.
Claims
1. A spray drying mechanism for a camel milk powder drying device, comprising a drying tower (1), and a plurality of legs (2) are vertically and fixedly arranged on the outer side of the bottom of the drying tower (1), and the plurality of legs (2) are arranged at equal intervals in a ring shape, and it is characterized in that: Inside the drying tower (1), an annular filter screen (3) is fixedly arranged vertically, and an annular cavity is formed between the outer wall of the annular filter screen (3) and the inner wall of the drying tower (1). At the center of the bottom of the drying tower (1), a discharge hopper (4) is fixedly arranged, and the top size of the discharge hopper (4) is adapted to the bottom of the annular filter screen (3). At equal intervals on the outer side center of the drying tower (1), a number of concave plates (7) are fixedly arranged. An annular groove (5) is formed inside the center of the drying tower (1), and the annular groove (5) is located inside a number of concave plates (7). An annular plate (6) is movably arranged inside the annular groove (5), and the annular plate (6) is rotatably arranged at the center of the drying tower (1). On the outer side of the annular plate (6), a toothed ring (12) is fixedly arranged annularly. At one end of the outer side of the drying tower (1), a fixing plate (13) is fixedly arranged horizontally. At the center of the bottom of the fixing plate (13), a motor (14) is fixedly arranged. The output end of the motor (14) is fixedly connected upward with a gear (15), and the gear (15) is located on the fixing plate (13). The gear (15) is meshed with the toothed ring (12). On the outer side of the lower end of the drying tower (1), a hot air blower (16) is fixedly arranged, and the air outlet end of the hot air blower (16) is communicated with the annular cavity.
2. The spray drying mechanism for camel milk powder drying equipment according to claim 1, wherein, On the upper and lower ends of the annular plate (6), annular T-shaped plates (8) are fixedly arranged. On the upper and lower ends of the annular groove (5), annular T-shaped grooves (9) are formed, and the annular T-shaped plates (8) are rotatably arranged inside the annular T-shaped grooves (9). On the inner end of the annular plate (6), a number of moving plates (10) are fixedly arranged vertically at equal intervals, and a number of moving plates (10) are all located inside the annular cavity. On the end faces of a number of moving plates (10), a number of through holes (11) are formed, and a number of through holes (11) are distributed vertically at equal intervals.
3. The spray drying mechanism for the camel milk powder drying equipment according to claim 1, characterized in that, On the outer side of the upper end of the drying tower (1), a connecting block (17) is fixedly arranged. On the outer end of the connecting block (17), a liquid storage tank (18) is fixedly arranged. On the top of the liquid storage tank (18), a tank cover (19) is detachably arranged. At the center of the top of the tank cover (19), a water pump (20) is fixedly arranged. The bottom end of the water pump (20) is fixedly provided with a water suction pipe, and the water suction pipe is arranged inside the liquid storage tank (18). The top end of the water pump (20) is fixedly provided with a liquid outlet pipe (21). One end of the liquid outlet pipe (21) away from the liquid storage tank (18) is fixedly provided with an atomizer (22), and the atomizer (22) is located inside the top end of the drying tower (1).