Sugar liquid recycling device for dried fruit processing

By introducing a filter screen, pump body, and motor drive system into the sugar syrup recycling device for dried fruit processing, all-round cleaning of the filter screen is achieved, solving the problem of inconvenient cleaning of traditional devices, improving filtration efficiency and product quality, and reducing cleaning costs.

CN223846331UActive Publication Date: 2026-01-30FUJIAN HAILITIAN FOOD CO LTD
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Patent Information

Application Number
CN202520276635.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-20
Publication Date
2026-01-30
Estimated Expiration
2035-02-20

AI Technical Summary

Technical Problem

Traditional fruit drying processing sugar syrup recycling devices cannot perform a complete cleaning operation, resulting in reduced filtration efficiency and affecting product quality.

Method used

A sugar solution recycling device for dried fruit processing was designed. By setting up a filter screen, pump body, rinsing nozzle, second and third drive motors and other components inside the device, the filter screen is cleaned with clean water and solvent, achieving all-round cleaning and avoiding the need to remove the filter screen from the inside of the device for cleaning.

Benefits of technology

It improves filtration efficiency and product quality, reduces cleaning costs, and enhances ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of dried fruit production and processing, and discloses a sugar liquid recycling device for dried fruit processing, which comprises a device shell and a connecting cover plate arranged on the device shell, pump bodies are mounted on two sides of the top of the connecting cover plate, and flushing nozzles are additionally arranged on two sides of the bottom of the connecting cover plate; side blocking plates are additionally arranged on the two sides of the device shell, a second rotating shaft is installed on the tops of the side blocking plates, and a second driving motor is connected to the end of the second rotating shaft; a third rotating shaft is mounted at the bottom of the flow guide side plate, and a third driving motor is connected to the end part of the third rotating shaft. According to the sugar liquid recycling device for dried fruit processing, clean water is conveyed to a flushing spray head through a pump body to be sprayed out, a second driving motor drives a second rotating shaft to enable a side blocking plate to rotate outwards, a third driving motor drives a third rotating shaft to enable a flow guide side plate to face inwards, and the clean water drives impurities and sugar liquid to flow outwards. And the filter screen plate can be conveniently and comprehensively cleaned.
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Description

TECHNICAL FIELD

[0001] The utility model relates to dried fruit production and processing technical field, specifically is a kind of sugar solution recycling device for dried fruit processing. BACKGROUND

[0002] Dried fruit is a kind of food made from fresh fruit by sunning, drying or freeze-drying, and its moisture content is usually within 12%, which makes it easy to store, and it can be directly consumed by people or used as raw material for replicated food. Dried fruit retains most of the original flavor and nutrients of fruit, and because of the reduction of moisture, the taste becomes more crisp. Dried fruit should be stored in a dry, cool and well-ventilated place to avoid direct sunlight and humid environment. In order to improve resource utilization efficiency, reduce production cost, reduce environmental pressure and improve product quality, sugar solution recycling device is needed in the production and processing of dried fruit.

[0003] Common sugar solution recycling device for dried fruit processing is usually composed of sugar solution collection system, filtration system, concentration and recovery system, control system and other auxiliary equipment. The sugar solution collection system is used to collect waste sugar solution generated during the processing of dried fruit. The filtration system is used to remove impurities and undesirable flavor components from the waste sugar solution. The concentration and recovery system is used to concentrate the purified sugar solution for recycling. The control system is used to control and monitor the entire sugar solution recycling device. Other auxiliary equipment includes delivery pump, heating device, cooling device, etc.

[0004] The traditional sugar solution recycling device for dried fruit processing uses a filter screen in the filtration system. When the sugar solution passes through the filter screen, impurities are filtered and separated, ensuring the quality and flavor of the sugar solution. However, due to the adhesive nature of sugar solution, it not only accumulates sugar solution residues on the filter screen, but also reduces the filtration efficiency. To solve the above problems, some sugar solution recycling devices for dried fruit processing add a heating system, such as electric heating tube, to increase the temperature of the filter screen, reduce the viscosity of the sugar solution and enhance its flowability, thereby reducing sugar solution residues and ensuring filtration efficiency. However, this method cannot be fully cleaned as the filter screen is usually installed inside the device, which affects product quality. Therefore, a sugar solution recycling device for dried fruit processing is proposed. SUMMARY

[0005] (I) Technical problems solved

[0006] To solve the technical problems of the prior art, the present utility model provides a sugar solution recycling device for dried fruit processing.

[0007] (II) Technical solutions

[0008] In order to realize the above-mentioned purpose, the utility model provides the following technical scheme: a kind of sugar liquid recycling device for dried fruit processing, including

[0009] Device shell, and the connecting cover plate being set to the top of device shell, and the top of connecting cover plate is equipped with pump body on both sides, and flush spray head is additionally provided on the bottom of connecting cover plate on both sides;

[0010] Filter screen, set to the central position of the inner chamber of device shell, and the center of device shell is additionally provided with side baffle on both sides, and second rotating shaft is installed on the top of side baffle, and the end of second rotating shaft is coaxially connected with second driving motor;

[0011] Flow guide side plate, set to the lower center of device shell on both sides, and third rotating shaft is installed on the bottom of flow guide side plate, and third driving motor is coaxially connected to the end of third rotating shaft. Sugar liquid is filtered and recovered after entering the device shell by filter screen, and pump body can suck clean water from outside into the inside of flush spray head and spray downward, second driving motor drives second rotating shaft on device shell, so that second rotating shaft drives side baffle to rotate outward of device shell, third driving motor drives third rotating shaft on device shell, so that third rotating shaft drives flow guide side plate to rotate to the inner chamber of device shell, and the top of two groups of flow guide side plates is formed into a triangle, when clean water contacts filter screen, part of clean water drives impurities on the top of filter screen to be discharged outside device shell through side baffle, and part of clean water can drive residual sugar liquid to drop along filter screen by its own heat or added dissolving agent, and make clean water drive sugar liquid to flow outward along flow guide side plate. On the one hand, it is convenient to clean filter screen comprehensively, and the filtering effect and product quality are guaranteed, on the other hand, the filter screen does not need to be taken out from the inside of device shell for cleaning operation, which reduces the cleaning cost and improves the convenience of use.

[0012] Preferably, the top center of the connecting cover plate is connected with the feed pipe, and the flush spray head and the pump body are connected, and the side link is connected between adjacent flush spray heads. Sugar liquid can be delivered into the device shell through the feed pipe, and liquid can be delivered into the inside of flush spray head through the pump body, and the side link can drive the connected flush spray head to move in the same direction.

[0013] Preferably, the surface of the side link is provided with a driven wheel, and the end of the side link is rotatably connected with a side link seat, and the side link seat is connected with the connecting cover plate. The driven wheel can drive the side link to move in the same direction on the side link seat, and the side link can move with the connecting cover plate through the side link seat.

[0014] Preferably, the inner wall of the device housing is connected with a driving wheel on both sides, and the driving wheel is engaged with the driven wheel, and the end of the driving wheel is coaxially connected with a motor. The motor drives the driving wheel on the device housing, so that the driving wheel drives the driven wheel, and the driven wheel drives the flushing nozzle through the side connecting rod to rotate and adjust, thereby increasing the spraying range of the flushing nozzle and improving the cleaning effect.

[0015] Preferably, the upper part of the two sides of the device housing is rotatably connected with a first rotating shaft, and the end of the first rotating shaft is coaxially connected with a first driving motor, and a flow dividing plate is installed on the surface of the first rotating shaft, and the surface of the flow dividing plate is uniformly provided with flow dividing holes. The first driving motor drives the first rotating shaft on the device housing, and the first rotating shaft drives the flow dividing plate to rotate in the same direction, so that the two flow dividing plates are separated and attached. Not only can the flow dividing plate be cleaned by the flushing nozzle, but also the position of the flow dividing plate can be adjusted to avoid affecting the cleaning effect of the flushing nozzle on the filter screen plate. At the same time, the flow dividing plate can divide the incoming sugar solution, so that the sugar solution uniformly passes through the filter screen plate, thereby ensuring the filtering effect of the sugar solution.

[0016] Preferably, the inner cavity of the device housing is installed with a flow guide bottom plate, and the lower part of the outer side of the device housing is additionally provided with a discharge baffle, and a limiting clamping plate is attached to the surface of the discharge baffle, and the limiting clamping plate is rotatably connected with the device housing. The limiting clamping plate can be rotated on the device housing, so that the limiting clamping plate is separated from the discharge baffle, and then the discharge baffle is separated from the device housing. The flow guide bottom plate can discharge the filtered sugar solution to the outside of the device housing for recycling operation.

[0017] (Three) beneficial effects

[0018] Compared with the prior art, the sugar solution recycling device for dried fruit processing has the following beneficial effects:

[0019] The sugar liquid recycling device for dried fruit processing, through the filter screen plate, the sugar liquid entering the device shell is filtered and recycled, the pump body can suck clean water from outside and deliver it to the inside of the flushing nozzle to be sprayed downward, the second driving motor drives the second shaft on the device shell, so that the second shaft drives the side baffle plate to rotate to the outside of the device shell, the third driving motor drives the third shaft on the device shell, so that the third shaft drives the flow guide side plate to rotate to the inner cavity of the device shell, the top ends of the two groups of flow guide side plates are abutted to form a triangle, when the clean water contacts the filter screen plate, part of the clean water first drives the impurities on the top of the filter screen plate to be discharged to the outside of the device shell through the side baffle plate, and part of the clean water can drive the residual sugar liquid to drop along the filter screen plate by the heat of the clean water or the added dissolving agent, and the clean water drives the sugar liquid to flow outward along the flow guide side plate. Not only is the overall cleaning operation of the filter screen plate facilitated, but also the filtering effect and product quality are ensured. Meanwhile, the filter screen plate does not need to be taken out from the inside of the device shell for cleaning operation, so that the cleaning cost is reduced and the use convenience is improved. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is a whole structure schematic view of the utility model;

[0021] Figure 2 It is a connecting cover plate and its connecting structure schematic view of the utility model;

[0022] Figure 3 It is a device shell cutaway right side structure schematic view of the utility model;

[0023] Figure 4 It is a driving wheel and its connecting structure schematic view of the utility model.

[0024] In the drawing: 1, device shell; 2, connecting cover plate; 3, feed pipe; 4, pump body; 5, flushing nozzle; 6, side connecting rod; 7, side connecting seat; 8, driven wheel; 9, driving wheel; 10, motor; 11, first shaft; 12, first driving motor; 13, flow dividing plate; 14, flow dividing hole; 15, filter screen plate; 16, side baffle plate; 17, second shaft; 18, second driving motor; 19, flow guide side plate; 20, third shaft; 21, third driving motor; 22, flow guide bottom plate; 23, discharge baffle plate; 24, limiting clamping plate. DETAILED DESCRIPTION

[0025] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0026] The utility model provides a technical scheme, a sugar solution recycling device for dried fruit processing, include: Figure 1 , device casing 1 and set up in device casing 1 top connecting cover plate 2, and the top both sides of connecting cover plate 2 are equipped with pump body 4, and are equipped with flush spray head 5 in the bottom both sides of connecting cover plate 2;

[0027] Please refer to Figure 3 Filter screen plate 15 is set up in the inner chamber center position of device casing 1, and the center both sides of device casing 1 are equipped with side baffle 16, and second rotating shaft 17 is installed on the top of side baffle 16, and the end of second rotating shaft 17 is coaxially connected with second drive motor 18;

[0028] Flow guide side plate 19 is set up in the center lower both sides of device casing 1, and third rotating shaft 20 is installed on the bottom of flow guide side plate 19, and third drive motor 21 is coaxially connected on the end of third rotating shaft 20. The sugar solution in device casing 1 is filtered and recovered after the filter screen plate 15, and the pump body 4 can suck the clean water outside into the inside of flush spray head 5 and spray downward, the second drive motor 18 drives second rotating shaft 17 on device casing 1, so that second rotating shaft 17 drives side baffle 16 to rotate to the outside of device casing 1, third drive motor 21 drives third rotating shaft 20 on device casing 1, so that third rotating shaft 20 drives flow guide side plate 19 to rotate to the inner chamber of device casing 1, and the top of two groups of flow guide side plate 19 is formed into a triangle, when clean water contacts filter screen plate 15, part of clean water drives the impurities on the top of filter screen plate 15 to discharge to the outside of device casing 1 through side baffle 16, and part of clean water can drive the residual sugar solution to descend along filter screen plate 15 by its heat or added dissolving agent, and make clean water drive sugar solution to flow to the outside along flow guide side plate 19. On the one hand, not only convenient to clean filter screen plate 15, but also ensure the filtering effect and product quality, on the other hand, the filter screen plate 15 does not need to be taken out from the inside of device casing 1 to clean, not only reduces the cleaning cost, but also improves the convenience of use.

[0029] Please refer to Figure 2The top center of the connecting cover plate 2 is connected with the feed pipe 3, and the flush nozzle 5 is connected with the pump body 4, and the side connecting rod 6 is connected between the adjacent flush nozzles 5. The sugar solution can be transported into the device shell 1 through the feed pipe 3, and the liquid can be transported into the flush nozzle 5 through the pump body 4, and the side connecting rod 6 can drive the connected flush nozzle 5 to move in the same direction. The surface of the side connecting rod 6 is provided with a driven wheel 8, and the end of the side connecting rod 6 is rotatably connected with a side connecting seat 7, and the side connecting seat 7 is connected with the connecting cover plate 2. The driven wheel 8 can drive the side connecting rod 6 to move in the same direction on the side connecting seat 7, and the side connecting rod 6 can move with the connecting cover plate 2 through the side connecting seat 7.

[0030] Please refer to Figure 4 The inner wall of the device shell 1 is connected with a driving wheel 9 on both sides, and the driving wheel 9 is engaged with the driven wheel 8, and the end of the driving wheel 9 is coaxially connected with a motor 10. The motor 10 drives the driving wheel 9 on the device shell 1, so that the driving wheel 9 drives the driven wheel 8, and the driven wheel 8 drives the flush nozzle 5 to rotate and adjust, so as to increase the spraying range of the flush nozzle 5 and improve the cleaning effect.

[0031] Please refer to Figure 3 The upper part of the device shell 1 is rotatably connected with a first rotating shaft 11 on both sides, and the end of the first rotating shaft 11 is coaxially connected with a first driving motor 12, and the surface of the first rotating shaft 11 is provided with a flow dividing plate 13, and the surface of the flow dividing plate 13 is uniformly provided with flow dividing holes 14. The first driving motor 12 drives the first rotating shaft 11 on the device shell 1, and the first rotating shaft 11 drives the flow dividing plate 13 to rotate in the same direction, so that the two groups of flow dividing plates 13 are separated and attached. The flow dividing plate 13 can be cleaned by the flush nozzle 5, and the position of the flow dividing plate 13 can be adjusted to avoid affecting the cleaning effect of the flush nozzle 5 on the filter screen plate 15, and the flow dividing plate 13 can divide the incoming sugar solution, so that the sugar solution uniformly passes through the filter screen plate 15, thereby ensuring the filtering effect of the sugar solution. The inner cavity of the device shell 1 is provided with a flow guide bottom plate 22, and the lower part of the outer side of the device shell 1 is provided with a discharge baffle 23, and the surface of the discharge baffle 23 is attached with a limiting clamping plate 24, and the limiting clamping plate 24 is rotatably connected with the device shell 1. The limiting clamping plate 24 can be rotated on the device shell 1, so that the limiting clamping plate 24 is separated from the discharge baffle 23, and the discharge baffle 23 is separated from the device shell 1, and the flow guide bottom plate 22 can discharge the filtered sugar solution to the outside of the device shell 1 for recycling.

[0032] The scheme: the sugar solution can be transported into the device housing 1 through the feed pipe 3, the sugar solution entering the device housing 1 is filtered and recovered through the filter screen plate 15, the pump body 4 can suck the clean water outside into the inside of the flushing nozzle 5 and spray downward, the motor 10 drives the driving wheel 9 on the device housing 1, the driving wheel 9 drives the driven wheel 8, and the driven wheel 8 drives the flushing nozzle 5 to rotate and adjust through the side connecting rod 6, the second driving motor 18 drives the second rotating shaft 17 on the device housing 1, so that the second rotating shaft 17 drives the side blocking plate 16 to rotate to the outside of the device housing 1, the third driving motor 21 drives the third rotating shaft 20 on the device housing 1, so that the third rotating shaft 20 drives the flow guide side plate 19 to rotate to the inner cavity of the device housing 1, the top of the two groups of flow guide side plates 19 is formed into a triangle, when the clean water contacts the filter screen plate 15, part of the clean water first drives the impurities on the top of the filter screen plate 15 to be discharged outside the device housing 1 through the side blocking plate 16, and part of the clean water can drive the residual sugar solution to descend along the filter screen plate 15 by its heat or added dissolving agent, and make the clean water drive the sugar solution to flow outside along the flow guide side plate 19. The first driving motor 12 drives the first rotating shaft 11 on the device housing 1, and the first rotating shaft 11 drives the flow dividing plate 13 to rotate in the same direction, so that the two groups of flow dividing plates 13 are separated and abutted.

[0033] It should be noted that, in the present document, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0034] Although the embodiments of the present application have been shown and described, it is to be understood that for the purpose of the present application, the embodiments change, modify, replace and vary in many ways without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A device for recycling sugar syrup in dried fruit processing, characterized in that, Include: The device shell (1), and the connecting cover plate (2) is arranged on the top of the device shell (1), and the connecting cover plate (2) is installed on both sides of the top, and the flush nozzle (5) is additionally provided on both sides of the bottom of the connecting cover plate (2); Filter screen (15), set in the inner cavity center position of device shell (1), and the center of device shell (1) is additionally provided with side baffle (16), and the second rotating shaft (17) is installed on the top of side baffle (16), and the end of second rotating shaft (17) is coaxially connected with second driving motor (18); Flow guide side plate (19), set in the center of the lower part of the device shell (1), and the third rotating shaft (20) is installed on the bottom of the flow guide side plate (19), and the third driving motor (21) is coaxially connected with the end of the third rotating shaft (20).

2. The sugar solution recycling device for dried fruit processing according to claim 1, characterized in that: The top center of the connecting cover plate (2) is connected with the feed pipe (3), and the flush nozzle (5) and the pump body (4) are connected, and the side connecting rod (6) is connected between the adjacent flush nozzles (5).

3. The sugar solution recycling device for dried fruit processing according to claim 2, characterized in that: The surface of the side connecting rod (6) is provided with a driven wheel (8), and the end of the side connecting rod (6) is rotatably connected with a side connecting seat (7), and the side connecting seat (7) is connected between the connecting cover plate (2).

4. The sugar solution recycling device for dried fruit processing according to claim 3, characterized in that: The inner wall back of the device shell (1) is connected with a driving wheel (9), and the driving wheel (9) is engaged with the driven wheel (8), and the end of the driving wheel (9) is coaxially connected with a motor (10).

5. The sugar solution recycling device for dried fruit processing according to claim 1, characterized in that: The upper part of both sides of the device shell (1) is rotatably connected with a first rotating shaft (11), and the end of the first rotating shaft (11) is coaxially connected with a first driving motor (12), and the surface of the first rotating shaft (11) is provided with a flow dividing plate (13), and the surface of the flow dividing plate (13) is uniformly provided with a flow dividing hole (14).

6. The sugar solution recycling device for dried fruit processing according to claim 1, characterized in that: The inner cavity bottom of the device shell (1) is provided with a flow guide bottom plate (22), and the lower part of the outer side of the device shell (1) is additionally provided with a discharge baffle (23), and the surface of the discharge baffle (23) is attached with a limiting clamping plate (24), and the limiting clamping plate (24) and the device shell (1) are rotatably connected.