Honey refrigeration device for honey processing
By introducing a rapid crystallization mechanism and a water control mechanism into the honey refrigeration device, and using scraping and coolant combined with hot air to separate moisture, the problems of uneven crystallization and unstable moisture extraction during honey refrigeration are solved, achieving efficient refrigeration and moisture separation of honey, and improving the preservation quality of honey.
Patent Information
- Application Number
- CN202311735998.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-18
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2043-12-18
AI Technical Summary
Existing honey refrigeration devices have problems during the refrigeration process, such as uneven crystallization of immature honey and unstable water extraction, which leads to honey deterioration. In addition, the ice bag refrigeration and cooling are uneven, and it is impossible to effectively separate water and honey.
It adopts a rapid crystallization mechanism and a water control mechanism to promote honey crystallization by scraping the inner side of the heat transfer tank, and uses coolant and hot air to separate moisture. Combined with the lifting structure and scraping components, it ensures that the honey is evenly cooled and crystallized and the moisture evaporates.
It realizes the rapid crystallization of immature honey and the effective separation of water, improves the refrigeration effect of honey, prevents honey from deteriorating, and ensures the quality of honey during the refrigeration process.
Smart Images

Figure CN117502589B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of honey refrigeration, in particular to a honey refrigeration device for honey processing. Background Art
[0002] Honey may be contaminated by botulinum toxin during the brewing, transportation and storage process. There are mature honey and immature honey. Immature honey has a lower Baume degree and a high water content. It has higher requirements on environmental factors during storage, otherwise it will become sour and deteriorate, and the nutrients will be greatly damaged, thus losing its original value. Therefore, in order to extend the storage time of honey, it is usually placed in a refrigerator. However, the existing refrigerator only refrigerates honey, because honey contains a lot of water, which will accelerate the deterioration rate. In order to extend the refrigeration time of honey, it can usually be placed in a refrigerator. Water is extracted by taking advantage of the different densities of honey and water, but the existing extraction device extracts water at different heights by moving the bellows. The bellows are not stable enough, and it is difficult to control the force when the bellows move. The storage tank can store honey, but after a long time, the sealing of the cover at the feed pipe and the valve at the discharge pipe may be reduced, and oxygen may enter the tank, causing the honey to deteriorate. The defect of ice bag refrigeration and cooling is that the cold transfer is not uniform, and the honey cannot be evenly cooled and refrigerated. Generally, the storage conditions for honey are cool, dry, clean and ventilated places, and the air humidity does not exceed 75%.
[0003] The existing honey refrigeration device for honey processing has structural design defects, which have the problems of how to cool and crystallize the immature honey to quickly separate the water from the honey, and the problem of extracting the crystallized honey when extracting the moisture on the surface of the immature honey. Summary of the Invention
[0004] The present invention provides a honey refrigeration device for honey processing, which solves the problems mentioned in the above background technology.
[0005] To achieve the above objectives, the present invention is implemented through the following technical solutions: A honey refrigeration device for honey processing A honey refrigeration device for honey processing includes a base, the top of which is fixedly connected to a heat-insulating shell; and further includes:
[0006] The rapid crystallization mechanism is arranged on the surface of the heat-insulating shell. The inner side surface of the heat-insulating shell is fixedly connected to a heat transfer tank. The bottom of the heat transfer tank is fixedly connected to a delivery pump. The delivery pump delivers immature honey with a high water content into the interior of the heat transfer tank. The rapid crystallization mechanism promotes the crystallization of the honey by scraping the inner side surface of the heat transfer tank. The rapid crystallization mechanism includes an anti-sticking component and a matching rod. The surface of the anti-sticking component is fixedly connected to a sufficient scraping component. The sufficient scraping component scrapes the crystallized honey on the inner side surface of the heat transfer tank under the drive of the anti-sticking component. When the sufficient scraping component is at the bottom of the inner side surface of the heat transfer tank, the sufficient scraping component is driven by the matching rod to reciprocate and deflect, thereby promoting the crystallization process of the honey at the bottom position of the inner side surface of the heat transfer tank.
[0007] The water control mechanism is arranged above the surface of the heat transfer tank. A liquid pipe is fixedly connected to the lower position of the surface of the heat insulation shell. The liquid pipe transports coolant into the gap between the heat transfer tank and the heat insulation shell. The honey is cooled and crystallized from bottom to top. The water control mechanism transports hot air to the top of the crystallized honey. The air flow carrying evaporated water vapor is discharged from the heat transfer tank to achieve water control of immature honey.
[0008] Preferably, the rapid crystallization mechanism also includes a lifting structure, the surface of the lifting structure is fixedly connected to the surface of the insulation shell, the surface of the lifting structure is fixedly connected to a connecting bent rod, the top of the connecting bent rod is fixedly connected to an electric cylinder, cooling water is filled between the heat transfer tank and the insulation shell through a liquid pipe, and the honey is cooled and crystallized through the heat transfer tank. The cooling crystallization effect of honey is best at 13 degrees to 14 degrees. The lifting structure controls the lifting and lowering of the anti-sticking component, and the anti-sticking component drives the full scraping component to lift and move close to the inner side of the heat transfer tank.
[0009] Preferably, the anti-sticking component includes an extension tube, one end of the extension tube is fixedly connected to the surface of the lifting structure, and the end of the extension tube away from the lifting structure is fixedly connected to a fixed body. The scraping component is fully scraped to push the honey crystallized at the upper position to the bottom of the inner side of the heat transfer tank, so that the heat transfer tank crystallizes from bottom to top, promotes the separation of moisture at the top of the honey, and prevents the moisture from being pressed inside the honey.
[0010] Preferably, the surface of the fixed body is rotatably connected to a sleeve, and the surface of the extension tube is fixedly connected to a telescopic cylinder near the fixed body. The end of the extension tube away from the lifting structure extends to the interior of the heat transfer tank. The lifting structure is composed of a driving motor, a screw rod and a sliding cylinder. When the driving motor drives the screw rod to rotate, the lifting force of the thread causes the sliding cylinder to slide up or down.
[0011] Preferably, the fully scraping assembly includes a slotted arc plate, the surface of the slotted arc plate near the edge is fixedly connected to the surface of the sleeve, and the surface of the slotted arc plate is provided with grooves.
[0012] Preferably, the surface of the slotted arc plate is slidably connected to a conical blade, a notch hole is opened on the surface of the conical blade near the sleeve, and a ring body is fixedly connected to the top of the conical blade. A large amount of moisture exists inside the immature honey, which will cause the honey to deteriorate. The space below the gap between the insulation shell and the heat transfer tank is large, and the honey is preferentially cooled and crystallized at the bottom of the heat transfer tank. The lifting structure drives the scraping assembly to move downward.
[0013] Preferably, the water control mechanism includes an inner hole sleeve, the surface of the inner hole sleeve is fixedly connected to the top of the heat transfer tank near the edge, the top of the heat transfer tank is fixedly connected to a hoist, and the top of the heat transfer tank near the middle is fixedly connected to a protective component.
[0014] Preferably, an exhaust duct is fixedly connected to the upper position of the surface of the heat transfer tank, a ventilation shell is fixedly connected to the top of the protective component, and an enhancement component is rotatably connected to the inner side of the ventilation shell. The honey is cooled and crystallized by the heat transfer tank. When the honey completes the crystallization process from bottom to top, the water body is separated at the top of the honey, and the coolant keeps the honey in a refrigerated state. The opening and closing machine controls the threaded pipe to rotate downward, so that the ventilation disk rotates to the inside of the water body, and the ventilation disk moves back and forth downward and upward inside the water body. At the same time, hot air is transported to the inside of the water body through the ventilation shell, the threaded pipe and the ventilation disk.
[0015] Preferably, the protection assembly includes a fixed rail, the bottom of which is fixedly connected to a position near the middle of the top of the heat transfer tank, and the inner side surface of the fixed rail is rotatably connected to a belt roller.
[0016] Preferably, a barrier strip is wound on the surface of the winding roller, and a limiting tube is fixedly connected to the surface of the barrier strip. A cylinder is fixedly connected to the middle position of the inner side of the fixed rail. When the honey crystallizes, the notch hole enables the conical blade to be close to the inner side of the heat transfer tank when it moves downward. When the annular body moves upward, the conical blade can be reset and not scrape the honey. When the slotted arc plate is located at the bottom of the inner side of the heat transfer tank, the matching rod moves close to the cylinder under the push of the electric cylinder. At the same time, the matching rod moves downward, thereby causing the slotted arc plate to deflect toward the bottom of the heat transfer tank.
[0017] Preferably, the enhancement component includes an open-porous body, the surface of the open-porous body is rotatably connected to the inner side of the ventilation shell, the bottom of the open-porous body is fixedly connected to a threaded tube, and the bottom end of the threaded tube is fixedly connected to a ventilation disk.
[0018] Preferably, holes are formed on the surfaces of the perforated body and the vent disc, a flaring piece is fixedly connected to the lower portion of the surface of the threaded tube, and a rib is fixedly connected to the top of the vent disc.
[0019] The present invention provides a honey refrigeration device for honey processing, which has the following beneficial effects:
[0020] 1. In the honey refrigeration device for honey processing, the scraping assembly scrapes the inner side of the heat transfer tank from top to bottom, thereby scraping the crystal particles on the inner side of the heat transfer tank to the bottom of the heat transfer tank. When the scraping assembly is at the bottom of the heat transfer tank, the electric cylinder pushes the matching rod away. At the same time, the matching rod moves downward with the connecting bent rod, realizing the reciprocating deflection of the scraping assembly, thereby promoting the rapid crystallization of honey from bottom to top, solving the problem of how to make immature honey cool and crystallize so as to quickly separate water from honey.
[0021] 2. In the honey refrigeration device for honey processing, when the conical blade is pushed downward, the bottom of the conical blade deflects toward the inner side of the heat transfer tank, so that the bottom of the conical blade is in direct contact with the inner side of the heat transfer tank. The sliding cylinder moves downward, and the bottom of the conical blade pushes the crystallized honey particles on the inner side of the heat transfer tank to the bottom position, preventing the external honey crystallization particles from hindering the cooling and crystallization process of the internal honey, thereby increasing the overall crystallization speed of the honey.
[0022] 3. In the honey refrigeration device for honey processing, when the honey is completely crystallized, the ventilation shell will pass hot air into the interior of the heat transfer tank. At this time, the crystallized honey will hinder the heating of the honey inside. The hot air is transported to the interior of the synergistic component. Then, the hot air is transported to the interior of the separated water body through the synergistic component, thereby promoting the evaporation of the water body. The evaporated water vapor is discharged from the exhaust pipe with the air flow, which solves the problem that the crystallized honey will be extracted when the moisture on the surface of the immature honey is extracted.
[0023] 4. In the honey refrigeration device used for honey processing, hot air carries the evaporated water vapor. At this time, the switch valve on the inner side of the exhaust pipe is in the open state, and the water vapor is discharged from the switch valve along with the gas. The barrier belt is set just above the opening of the heat transfer tank to prevent impurities from entering the heat transfer tank through the opening, while promoting the hot air to carry water vapor out of the exhaust pipe. The molecules of honey components are heavier and cannot be discharged with the air flow. The thin ventilation plate and the disturbance of the ribs effectively promote the evaporation process of honey separation water.
[0024] 5. The honey refrigeration device used in honey processing has a conical blade that scrapes the crystallized honey at the bottom of the heat transfer tank to prevent the crystallized honey from hindering the cooling and crystallization process of the internal honey. During this process, the winding roller controls the barrier belt to move above the heat transfer tank, and the matching rod slides on the inner side of the limiting tube to prevent impurities from falling into the heat transfer tank and prevent the cold air from escaping from the heat transfer tank when the honey crystallizes. When the honey is dehydrated, it prevents hot air from escaping through the opening of the heat transfer tank, resulting in poor water vapor discharge effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1A perspective view of the top of the honey refrigeration device for honey processing according to the present invention;
[0026] Figure 2 A perspective view of the entire interior of a honey refrigeration device for honey processing according to the present invention;
[0027] Figure 3 Schematic diagram of the structure of the rapid crystallization mechanism of the present invention;
[0028] Figure 4 Schematic diagram of the structure of the anti-sticking component of the present invention;
[0029] Figure 5 This is a schematic structural diagram of the fully scraping assembly of the present invention;
[0030] Figure 6 Schematic diagram of the structure of the water control mechanism of the present invention;
[0031] Figure 7 It is a structural schematic diagram of the protection component of the present invention;
[0032] Figure 8 Schematic diagram of the structure of the synergistic component of the present invention.
[0033] Figure 1: 1. Base; 2. Insulation shell; 3. Rapid crystallization mechanism; 31. Lifting structure; 32. Anti-sticking assembly; 321. Extension tube; 322. Telescopic cylinder; 323. Fixed body; 324. Sleeve; 33. Full scraping assembly; 331. Slotted arc plate; 332. Conical blade; 333. Notch hole; 334. Ring body; 34. Connecting bent rod; 35. Electric cylinder; 36. Matching rod; 4. Heat transfer tank ; 5. Water control mechanism; 51. Inner hole sleeve; 52. Exhaust duct; 53. Protective component; 531. Fixed rail; 532. Winding roller; 533. Barrier belt; 534. Limiting pipe; 535. Cylinder; 54. Ventilation shell; 55. Opening and closing machine; 56. Efficiency enhancement component; 561. Opening body; 562. Threaded pipe; 563. Ventilation disc; 564. Rib plate; 565. Expanding piece; 6. Delivery pump; 7. Liquid pipe. DETAILED DESCRIPTION
[0034] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0035] First embodiment: Figure 1-Figure 3As shown, the present invention provides a technical solution: a honey refrigeration device for honey processing, comprising a base 1, a heat-insulating shell 2 fixedly connected to the top of the base 1; and further comprising:
[0036] The rapid crystallization mechanism 3 is arranged on the surface of the heat-insulating shell 2. The inner side surface of the heat-insulating shell 2 is fixedly connected to the heat-transfer tank 4. The bottom of the heat-transfer tank 4 is fixedly connected to the delivery pump 6. The delivery pump 6 delivers immature honey with a high water content into the heat-transfer tank 4. The rapid crystallization mechanism 3 promotes the crystallization of the honey by scraping the inner side surface of the heat-transfer tank 4. The rapid crystallization mechanism 3 includes an anti-sticking component 32 and a matching rod 36. The surface of the anti-sticking component 32 is fixedly connected to a sufficient scraping component 33. The sufficient scraping component 33 scrapes the crystallized honey on the inner side surface of the heat-transfer tank 4 under the drive of the anti-sticking component 32. When the sufficient scraping component 33 is at the bottom of the inner side surface of the heat-transfer tank 4, the sufficient scraping component 33 is driven by the matching rod 36 to reciprocate and deflect, thereby promoting the crystallization process of the honey at the bottom position of the inner side surface of the heat-transfer tank 4.
[0037] The rapid crystallization mechanism 3 further includes a lifting structure 31, the surface of the lifting structure 31 is fixedly connected to the surface of the heat-insulating shell 2, the surface of the lifting structure 31 is fixedly connected to a connecting bent rod 34, and the top end of the connecting bent rod 34 is fixedly connected to an electric cylinder 35;
[0038] The water control mechanism 5 is arranged above the surface of the heat transfer tank 4. A liquid pipe 7 is fixedly connected to the lower surface of the heat insulation shell 2. The liquid pipe 7 transports coolant into the gap between the heat transfer tank 4 and the heat insulation shell 2. The honey is cooled and crystallized from bottom to top. The water control mechanism 5 transports hot air to the top of the crystallized honey. The airflow carrying evaporated water vapor is discharged from the heat transfer tank 4 to achieve water control of the immature honey.
[0039] During use, cooling water is filled between the heat transfer tank 4 and the insulation shell 2 through the liquid pipe 7, and the honey is cooled and crystallized through the heat transfer tank 4. The cooling and crystallization effect of honey is best at 13 degrees to 14 degrees. The lifting structure 31 controls the lifting and lowering of the anti-sticking component 32. The anti-sticking component 32 drives the sufficient scraping component 33 to lift and move close to the inner side of the heat transfer tank 4. The sufficient scraping component 33 scrapes the inner side of the heat transfer tank 4 from top to bottom, thereby scraping the crystal particles on the inner side of the heat transfer tank 4 to the bottom of the heat transfer tank 4. When the sufficient scraping component 33 is at the bottom of the heat transfer tank 4, the electric cylinder 35 pushes the matching rod 36 away from the movement. At the same time, the matching rod 36 moves downward with the connecting bent rod 34, realizing the reciprocating deflection of the sufficient scraping component 33, thereby promoting the rapid crystallization of honey from bottom to top, solving the problem of how to cool and crystallize immature honey and thus quickly separate water from honey.
[0040] Second embodiment: Figure 3 、 Figure 4 、 Figure 5As shown, the anti-sticking component 32 includes an extension tube 321, one end of the extension tube 321 is fixedly connected to the surface of the lifting structure 31, the end of the extension tube 321 away from the lifting structure 31 is fixedly connected to a fixed body 323, the surface of the fixed body 323 is rotatably connected to a sleeve 324, the surface of the extension tube 321 near the fixed body 323 is fixedly connected to a telescopic cylinder 322, the end of the extension tube 321 away from the lifting structure 31 extends to the interior of the heat transfer tank 4, and the full scraping component 33 includes a slotted arc plate 331, the surface of the slotted arc plate 331 near the edge is fixedly connected to the surface of the sleeve 324, the surface of the slotted arc plate 331 is provided with a groove, the surface of the slotted arc plate 331 is slidably connected to a conical blade 332, the surface of the conical blade 332 near the sleeve 324 is provided with a notch hole 333, and the top of the conical blade 332 is fixedly connected to a circular ring body 334.
[0041] When in use, the lifting structure 31 is composed of a driving motor, a screw rod and a sliding cylinder. When the driving motor drives the screw rod to rotate, the lifting force of the thread causes the sliding cylinder to slide up or down. When the sliding cylinder moves downward, the fixed body 323 moves downward close to the inner side of the heat transfer tank 4 under the push of the extension tube 321, and the telescopic cylinder 322 pushes the rigid annular body 334 to move downward. The thin sheet structure of the conical blade 332 gives it a strong plastic deformation ability. When the conical blade 332 is pushed downward, the bottom of the conical blade 332 deflects toward the inner side of the heat transfer tank 4, so that the bottom of the conical blade 332 is in direct contact with the inner side of the heat transfer tank 4. The sliding cylinder moves downward, and the bottom of the conical blade 332 pushes the honey particles crystallized on the inner side of the heat transfer tank 4 to the bottom position, preventing the external honey crystallization particles from hindering the cooling and crystallization process of the internal honey, thereby increasing the overall crystallization speed of the honey.
[0042] The third embodiment: Figure 3 、 Figure 6 As shown, a scraping assembly 33 is fixedly connected to the surface of the anti-sticking assembly 32. Driven by the anti-sticking assembly 32, the scraping assembly 33 scrapes the crystallized honey on the inner surface of the heat transfer tank 4. When the scraping assembly 33 is at the bottom of the inner surface of the heat transfer tank 4, the scraping assembly 33 is driven by the matching rod 36 to reciprocate, thereby promoting the crystallization process of the honey at the bottom of the inner surface of the heat transfer tank 4.
[0043] The rapid crystallization mechanism 3 also includes a lifting structure 31, the surface of the lifting structure 31 is fixedly connected to the surface of the insulation shell 2, the surface of the lifting structure 31 is fixedly connected to a connecting bent rod 34, the top of the connecting bent rod 34 is fixedly connected to an electric cylinder 35, the water control mechanism 5 includes an inner hole sleeve 51, the surface of the inner hole sleeve 51 is fixedly connected to the top of the heat transfer tank 4 near the edge, the top of the heat transfer tank 4 is fixedly connected to a gate 55, the top of the heat transfer tank 4 is fixedly connected to a protective component 53 near the middle, the upper position of the surface of the heat transfer tank 4 is fixedly connected to an exhaust duct 52, the top of the protective component 53 is fixedly connected to a ventilation shell 54, and the inner side of the ventilation shell 54 is rotatably connected to an efficiency-enhancing component 56.
[0044] During use, a large amount of moisture inside the immature honey may cause the honey to deteriorate. The space below the gap between the insulation shell 2 and the heat transfer tank 4 is large, and the honey is preferentially cooled and crystallized at the bottom of the heat transfer tank 4. The lifting structure 31 drives the scraping component 33 to move downward, and the scraping component 33 pushes the crystallized honey at the upper position to the bottom of the inner side of the heat transfer tank 4, so that the heat transfer tank 4 crystallizes from bottom to top, promotes the separation of moisture at the top of the honey, and prevents the moisture from being pressed inside the honey. When the honey is completely crystallized, the ventilation shell 54 passes hot air into the interior of the heat transfer tank 4. At this time, the crystallized honey will hinder the heating of the honey inside. The hot air is transported to the interior of the synergistic component 56, and then the hot air is transported to the interior of the separated water body through the synergistic component 56, thereby promoting the evaporation of the water body. The evaporated water vapor is discharged from the exhaust pipe 52 with the air flow, which solves the problem that the crystallized honey will be extracted when the moisture on the surface of the immature honey is extracted.
[0045] Fourth embodiment: Figure 6 、 Figure 7 、 Figure 8 As shown, the protective component 53 includes a fixed rail 531, the bottom of the fixed rail 531 is fixedly connected to the top of the heat transfer tank 4 near the middle, the inner side of the fixed rail 531 is rotatably connected to the belt roller 532, the surface of the belt roller 532 is wound with a barrier belt 533, the surface of the barrier belt 533 is fixedly connected to the limiting tube 534, the middle position of the inner side of the fixed rail 531 is fixedly connected to the cylinder 535, the efficiency enhancement component 56 includes an open hole body 561, the surface of the open hole body 561 is rotatably connected to the inner side of the ventilation shell 54, the bottom of the open hole body 561 is fixedly connected to the threaded tube 562, the bottom end of the threaded tube 562 is fixedly connected to the ventilation disk 563, the surfaces of the open hole body 561 and the ventilation disk 563 are both provided with holes, the lower position of the surface of the threaded tube 562 is fixedly connected to the expansion piece 565, and the top of the ventilation disk 563 is fixedly connected to the rib plate 564.
[0046] During use, the honey is cooled and crystallized in the heat transfer tank 4. When the honey completes the crystallization process from bottom to top, the water separates at the top of the honey. The coolant keeps the honey refrigerated. The opening and closing machine 55 controls the threaded tube 562 to rotate downward, causing the vent plate 563 to rotate to the inside of the water. The vent plate 563 moves back and forth downward and upward inside the water. At the same time, hot air is transported to the inside of the water through the ventilation shell 54, the threaded tube 562 and the vent plate 563. The hot air carries the evaporated water vapor. At this time, the switch valve on the inner side of the exhaust pipe 52 is in the open state, and the water vapor is discharged from the switch valve along with the gas. The barrier strip 533 is set just above the opening of the heat transfer tank 4 to prevent impurities from entering the heat transfer tank 4 through the opening, while promoting the hot air to carry water vapor out of the exhaust pipe 52. The molecules of the honey components are heavy and cannot be discharged with the air flow. The disturbance of the thin vent plate 563 and the ribs 564 effectively promotes the evaporation process of the honey separating from the water.
[0047] Fifth embodiment: Figure 5 、 Figure 7 As shown, the surface of the slotted arc plate 331 near the edge is fixedly connected to the surface of the sleeve 324, the surface of the slotted arc plate 331 is provided with a groove, the surface of the slotted arc plate 331 is slidably connected to the conical blade 332, the surface of the conical blade 332 near the sleeve 324 is provided with a notch hole 333, the top of the conical blade 332 is fixedly connected to the annular body 334, the bottom of the fixed rail 531 is fixedly connected to the top of the heat transfer tank 4 near the middle, the inner side surface of the fixed rail 531 is rotatably connected to the winding roller 532, the surface of the winding roller 532 is wound with a barrier belt 533, the surface of the barrier belt 533 is fixedly connected to the limiting tube 534, and the middle position of the inner side surface of the fixed rail 531 is fixedly connected to the cylinder 535.
[0048] When in use, when honey crystallizes, the notch hole 333 allows the conical blade 332 to move downward and close to the inner side of the heat transfer tank 4. When the annular body 334 moves upward, the conical blade 332 can return to its original position and stop scraping the honey. When the slotted arc plate 331 is located at the bottom of the inner side of the heat transfer tank 4, the matching rod 36 is pushed by the electric cylinder 35 and moves close to the cylinder 535. At the same time, the matching rod 36 moves downward, thereby causing the slotted arc plate 331 to deflect toward the bottom of the heat transfer tank 4, and the conical blade 332 can return to its original position and stop scraping the honey. The blade 332 scrapes the crystallized honey at the bottom of the heat transfer tank 4 to prevent the crystallized honey from hindering the cooling and crystallization process of the internal honey. During this process, the winding roller 532 controls the barrier belt 533 to move to the upper position of the heat transfer tank 4, and the matching rod 36 slides on the inner side of the limiting tube 534 to prevent impurities from falling into the heat transfer tank 4. At the same time, it prevents the cold air from escaping from the heat transfer tank 4 when the honey crystallizes. When the honey is dehydrated, it prevents hot air from escaping through the opening of the heat transfer tank 4, resulting in poor water vapor discharge effect.
[0049] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device that includes a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions. The sentence "including an element defined by..." does not exclude the presence of other identical elements in the process, method, article or device that includes the element."
Claims
1. A honey refrigeration device for honey processing, comprising a base (1), the top of which is fixedly connected to a heat-insulating shell (2); characterized in that: Also includes: A rapid crystallization mechanism (3) is arranged on the surface of a heat-insulating shell (2); the inner side surface of the heat-insulating shell (2) is fixedly connected to a heat transfer tank (4); the bottom of the heat transfer tank (4) is fixedly connected to a delivery pump (6); the delivery pump (6) delivers immature honey with a high water content to the interior of the heat transfer tank (4); the rapid crystallization mechanism (3) promotes honey crystallization by scraping the inner side surface of the heat transfer tank (4); the rapid crystallization mechanism (3) includes an anti-sticking component (32) and a matching The anti-sticking component (32) is fixedly connected to a scraping component (33) on its surface. The scraping component (33) scrapes the crystallized honey on the inner side surface of the heat transfer tank (4) under the drive of the anti-sticking component (32). When the scraping component (33) is at the bottom of the inner side surface of the heat transfer tank (4), the scraping component (33) deflects back and forth under the drive of the matching rod (36), thereby promoting the crystallization process of the honey at the bottom position of the inner side surface of the heat transfer tank (4); The water control mechanism (5) is arranged above the surface of the heat transfer tank (4). A liquid pipe (7) is fixedly connected to the lower position of the surface of the heat insulation shell (2). The liquid pipe (7) transports cooling liquid to the gap between the heat transfer tank (4) and the heat insulation shell (2). The honey is cooled and crystallized from bottom to top. The water control mechanism (5) transports hot air to the top of the crystallized honey. The air flow carrying evaporated water vapor is discharged from the heat transfer tank (4) to achieve water control of the immature honey.
2. A honey refrigeration device for honey processing according to claim 1, characterized in that: The rapid crystallization mechanism (3) further comprises a lifting structure (31), the surface of the lifting structure (31) being fixedly connected to the surface of the heat-insulating shell (2), the surface of the lifting structure (31) being fixedly connected to a connecting bent rod (34), and the top end of the connecting bent rod (34) being fixedly connected to an electric cylinder (35).
3. A honey refrigeration device for honey processing according to claim 2, characterized in that: The anti-sticking component (32) comprises an extension tube (321), one end of the extension tube (321) is fixedly connected to the surface of the lifting structure (31), and one end of the extension tube (321) away from the lifting structure (31) is fixedly connected to a fixing body (323).
4. A honey refrigeration device for honey processing according to claim 3, characterized in that: The surface of the fixed body (323) is rotatably connected to a sleeve (324), and the surface of the extension tube (321) is fixedly connected to a telescopic cylinder (322) at a position close to the fixed body (323). The end of the extension tube (321) away from the lifting structure (31) extends to the interior of the heat transfer tank (4).
5. A honey refrigeration device for honey processing according to claim 4, characterized in that: The fully scraping assembly (33) comprises a slotted arc plate (331), the surface of the slotted arc plate (331) being fixedly connected to the surface of the sleeve (324) at a position close to the edge thereof, and the surface of the slotted arc plate (331) is provided with slots.
6. A honey refrigeration device for honey processing according to claim 5, characterized in that: The surface of the slotted arc plate (331) is slidably connected to a conical blade (332), a notch hole (333) is provided on the surface of the conical blade (332) near the sleeve (324), and the top of the conical blade (332) is fixedly connected to a circular ring (334).
7. A honey refrigeration device for honey processing according to claim 1, characterized in that: The water control mechanism (5) comprises an inner hole sleeve (51), the surface of the inner hole sleeve (51) is fixedly connected to a position near the edge of the top of the heat transfer tank (4), a hoist (55) is fixedly connected to the top of the heat transfer tank (4), and a protective component (53) is fixedly connected to a position near the middle of the top of the heat transfer tank (4).
8. A honey refrigeration device for honey processing according to claim 7, characterized in that: An exhaust pipe (52) is fixedly connected to the upper position of the surface of the heat transfer tank (4), a ventilation shell (54) is fixedly connected to the top of the protection component (53), and an enhancement component (56) is rotatably connected to the inner side of the ventilation shell (54).
9. A honey refrigeration device for honey processing according to claim 8, characterized in that: The enhancement component (56) includes an open-pored body (561), the surface of the open-pored body (561) is rotatably connected to the inner side surface of the ventilation shell (54), the bottom of the open-pored body (561) is fixedly connected to a threaded tube (562), and the bottom end of the threaded tube (562) is fixedly connected to a ventilation disk (563).
10. The honey refrigeration device for honey processing according to claim 9, characterized in that: The surfaces of the perforated body (561) and the vent disc (563) are both provided with holes, a flaring piece (565) is fixedly connected to the lower position of the surface of the threaded tube (562), and a rib plate (564) is fixedly connected to the top of the vent disc (563).
Citation Information
Patent Citations
Honey refrigerating device for honey processing
CN213020478U
Honey refrigeration device for honey processing
CN214903595U