Honey extractor

By designing a detachable cylinder body and bottom structure, as well as a drive mechanism for the rotating frame, the problem of inconvenient cleaning of the cylinder in existing honey extractors has been solved, achieving stable honey extraction and convenient cleaning.

CN224069490UActive Publication Date: 2026-04-03ZANHUANG COUNTY TIANYUAN BEE FARMERS PROFESSIONAL COOP
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

The existing honey extractor has a one-piece structure, which makes cleaning inconvenient.

Method used

A honey extractor was designed, in which the cylinder body and the bottom of the cylinder are connected by a plug-in joint, and a fixing structure is set at the connection to limit axial movement. The rotating frame is rotated in conjunction with the cylinder body, and the drive mechanism drives the rotating frame to rotate. The honey is discharged through the discharge port. After use, the cylinder body and the bottom of the cylinder can be disassembled for easy cleaning.

Benefits of technology

It achieves stability and honey extraction effect during operation, while reducing the difficulty of cleaning the cylinder and improving the convenience of cleaning.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a honey extractor, which belongs to the technical field of honey processing and comprises a barrel, a rotating frame and a driving mechanism. The barrel comprises a barrel body and a barrel bottom; the barrel body is matched with the barrel bottom in an inserting manner and is provided with a discharge port; the rotating frame is arranged in the cylinder body; the rotating frame is in running fit with the barrel body and is provided with a placing space; the driving mechanism stretches across the top of the barrel body; a driving shaft of the driving mechanism is connected with a rotating shaft of the rotating frame to drive the rotating frame to rotate; a fixing structure is arranged on the outer side of the connecting position of the cylinder body and the cylinder bottom; a plurality of supporting legs are fixedly arranged at the bottom of the barrel bottom to support the barrel bottom and the barrel body; the supporting legs are arranged at the barrel bottom, so that a container can be placed below the discharging opening, and honey in the barrel body can be conveniently contained; after use, the rotating frame and the driving mechanism are detached from the barrel body, then the barrel body and the barrel bottom are separated through the fixing structure, the barrel body can be taken out from the barrel bottom, then the barrel body and the barrel bottom can be cleaned, and the cleaning difficulty is reduced.
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Description

Technical Field

[0001] This utility model belongs to the field of honey processing technology, specifically relating to a honey extractor. Background Technology

[0002] A honey extractor is a device specifically designed to separate honey from honeycombs; existing honey extractors include a cylinder, a rotating frame disposed within the cylinder, and a crank that drives the frame to rotate.

[0003] Before placing the honeycomb on the rack, the wax cap on the honeycomb needs to be removed with a honey-cutting knife. During the operation of the honey extractor, the honeycomb rotates with the rack, and the honey on the honeycomb is thrown onto the inner wall of the cylinder under the action of centrifugal force, thereby achieving the purpose of separating the honey from the honeycomb.

[0004] After using the honey extractor, it needs to be cleaned. Since the existing honey extractor has a one-piece structure, that is, the body and the bottom of the cylinder are one piece, it is difficult to clean the connection between the body and the bottom of the cylinder when cleaning the cylinder. Utility Model Content

[0005] This utility model provides a honey extractor, which aims to solve the technical problem of inconvenient cleaning of the cylinder of the honey extractor in the prior art.

[0006] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0007] A honey extractor is provided, comprising:

[0008] A cylindrical body includes a cylindrical body and a cylindrical bottom; the cylindrical body and the cylindrical bottom are inserted into each other, and the cylindrical body has a discharge port on its side wall near the cylindrical bottom;

[0009] A rotating frame is disposed inside the cylinder body; the rotating frame is rotatably engaged with the cylinder body, and the rotating frame has a placement space for placing honeycombs;

[0010] A drive mechanism spans the top of the cylinder; the drive shaft of the drive mechanism is connected to the rotation shaft of the rotating frame to drive the rotating frame to rotate.

[0011] The outer side of the connection between the cylinder body and the cylinder bottom is provided with a fixing structure, which is used to axially limit the cylinder body and the cylinder bottom.

[0012] In one possible implementation, the top of the bottom of the cylinder has a plug-in portion that is plugged into the cylinder body; wherein the outer peripheral wall of the plug-in portion contacts the inner peripheral wall of the cylinder body, and the top of the plug-in portion has a conical structure.

[0013] In one possible implementation, there are several fixing structures, which are spaced apart circumferentially along the cylinder body. Each fixing structure includes:

[0014] A first fixing component is connected to the outer peripheral wall of the bottom of the cylinder; the top of the first fixing component has a slot;

[0015] The second fixing component is connected to the outer peripheral wall of the cylinder; the second fixing component is inserted into the slot.

[0016] The second fixing component has a socket on its side, and the first fixing component has a through hole aligned with the socket on its side. A positioning rod is slidably disposed in the through hole, and the positioning rod is connected to the first fixing component through an elastic element. The positioning rod is inserted into the socket under the elastic force of the elastic element.

[0017] In one possible implementation, the fixing structure further includes a pull rope and a pin, one end of the pull rope being connected to the pin and the other end of the pull rope being connected to the positioning rod;

[0018] The outer peripheral wall of the bottom of the cylinder has a pin hole for insertion with a pin shaft. When the positioning rod is pulled away from the insertion hole, the pin shaft is inserted into the pin hole, and the pull rope provides tension to the positioning rod so that the positioning rod remains separated from the insertion hole.

[0019] In one possible implementation, one end of the pull rope is connected to the end of the positioning rod, or one end of the pull rope is connected to the outer peripheral wall of the positioning rod;

[0020] Wherein, when the pull rope is connected to the outer peripheral wall of the positioning rod, the pin hole can be set on the outer peripheral wall of the first fixing component.

[0021] In one possible implementation, the end of the positioning rod is rotatably provided with a push rod. When the positioning rod is separated from the insertion hole, the push rod can rotate to a position parallel to the positioning rod, and the end of the push rod abuts against the side of the first fixing member to keep the positioning rod separated from the insertion hole.

[0022] In one possible implementation, the rotating frame includes a rotating shaft and at least one frame body, the rotating shaft being connected to the frame body via a connecting rod; the top of the frame body has an insertion port, and the bottom of the frame body has a support plate; the side of the frame body has a baffle for limiting the honeycomb; wherein the side of the frame body facing the peripheral wall of the cylinder has at most one stop bar.

[0023] In one possible implementation, the drive mechanism includes:

[0024] A truss spans the top of the cylindrical body; both ends of the truss have arc-shaped grooves that fit into the cylindrical body.

[0025] A gearbox is connected to the truss; two meshing bevel gears are rotatably arranged inside the gearbox, a drive shaft is connected to the vertically arranged bevel gear, and a drive shaft is connected to the horizontally arranged bevel gear, one end of the drive shaft has a crank handle.

[0026] In one possible implementation, the truss has a support frame for supporting the drive shaft, and the drive shaft is connected to the support frame via bearings.

[0027] This utility model provides a honey extractor that, compared with the prior art, utilizes the rotation of the rotating frame to separate honey from the honeycomb under centrifugal force and discharge it through the discharge port, thus realizing the honey extraction process. The fixed structure between the cylinder body and the bottom of the cylinder can axially limit the cylinder body and bottom, ensuring the stability of the cylinder during operation and preventing axial displacement of the cylinder body and bottom during rotation, which would affect the honey extraction effect. After use, the rotating frame and drive mechanism can be removed from the cylinder body, and then the fixed structure can be used to separate the cylinder body and bottom, allowing the cylinder body to be removed from the bottom for separate cleaning, reducing cleaning difficulty. Attached Figure Description

[0028] Figure 1 A schematic diagram of a honey extractor provided for an embodiment of this utility model;

[0029] Figure 2 for Figure 1 Enlarged diagram of section A in the middle;

[0030] Figure 3 for Figure 2 Enlarged diagram of section B in the middle;

[0031] Figure 4 A schematic diagram of the cylinder portion of a honey extractor provided for an embodiment of this utility model;

[0032] Figure 5 for Figure 4 Enlarged diagram of section C;

[0033] Figure 6 A schematic diagram of the pull rope and pin portion of a honey extractor provided for an embodiment of this utility model;

[0034] Figure 7 This is a schematic diagram of the drive mechanism of a honey extractor provided in an embodiment of the present invention.

[0035] Explanation of reference numerals in the attached drawings: 1. Cylinder body; 11. Cylinder shaft; 12. Cylinder bottom; 13. Discharge port; 14. Insertion part; 2. Rotating frame; 21. Rotating shaft; 22. Frame body; 23. Support plate; 24. Baffle; 25. Stop bar; 3. Drive mechanism; 31. Truss; 311. Arc groove; 32. Gearbox; 33. Drive shaft; 34. Active shaft; 35. Handle; 36. Support frame; 4. Fixing structure; 41. First fixing component; 411. Slot; 42. Second fixing component; 43. Positioning rod; 44. Elastic element; 45. Pull rope; 46. Pin; 47. Top rod. Detailed Implementation

[0036] To make the technical problems, technical solutions, and beneficial effects of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0037] Please refer to the following: Figures 1 to 7 The present invention provides a honey extractor. The honey extractor includes a cylinder 1, a rotating frame 2, and a drive mechanism 3. The cylinder 1 includes a body 11 and a bottom 12; the body 11 and bottom 12 are inserted into each other, and the side wall of the body 11 near the bottom 12 has a discharge port 13. The rotating frame 2 is disposed inside the body 11; the rotating frame 2 is rotatably coupled to the body 11, and the rotating frame 2 has a space for placing honeycombs. The drive mechanism 3 spans the top of the body 11; the drive shaft of the drive mechanism 3 is connected to the rotation shaft of the rotating frame 2 to drive the rotating frame 2 to rotate. A fixing structure 4 is provided on the outer side of the connection between the body 11 and the bottom 12, which is used to axially limit the movement of the body 11 and the bottom 12. Multiple support legs are fixedly provided at the bottom of the bottom 12 to support the bottom 12 and the body 11. By providing support legs on the bottom 12, a container can be placed below the discharge port 13, thus facilitating the filling of the honey inside the cylinder.

[0038] The honey extractor provided by this utility model, compared with the prior art, utilizes the rotation of the rotating frame 2 to separate the honey from the honeycomb under the action of centrifugal force, and discharges it through the discharge port 13 to realize the honey extraction process; the fixing structure 4 between the cylinder body 11 and the cylinder bottom 12 can axially limit the cylinder body 11 and the cylinder bottom 12, ensuring the stability of the cylinder body 1 during operation and preventing axial displacement of the cylinder body 11 and the cylinder bottom 12 during rotation, which would affect the honey extraction effect; after use, the rotating frame 2 and the drive mechanism 3 are removed from the cylinder body 1, and then the fixing structure 4 is used to separate the cylinder body 11 and the cylinder bottom 12, so that the cylinder body 11 can be taken out from the cylinder bottom 12, and then the cylinder body 11 and the cylinder bottom 12 can be cleaned separately, reducing the cleaning difficulty.

[0039] In some embodiments, such as Figures 1 to 7 As shown, the top of the bottom of the cylinder 12 has a plug-in portion 14, which is plugged into the cylinder body 11; wherein, the outer peripheral wall of the plug-in portion 14 contacts the inner peripheral wall of the cylinder body 11, and the top of the plug-in portion 14 has a conical structure.

[0040] It should be noted that the above-mentioned design makes the connection between the cylinder body 11 and the cylinder bottom 12 tighter and more stable; the conical structure can play a guiding role in the insertion process, which facilitates the assembly of the cylinder body 11 and the cylinder bottom 12, and also increases the tightness of the connection, preventing loosening between the cylinder body 11 and the cylinder bottom 12 during rotation, which could lead to problems such as honey leakage; when honey falls onto the conical structure, the conical structure can also guide the honey, causing it to flow to the edge of the cylinder body 11, which makes it easier for the honey to be discharged from the discharge port 13.

[0041] In some embodiments, such as Figures 1 to 7 As shown, there are several fixing structures 4, which are spaced apart along the circumference of the cylinder body 11. Each fixing structure 4 includes a first fixing component 41 and a second fixing component 42. The first fixing component 41 is connected to the outer peripheral wall of the cylinder bottom 12. The top of the first fixing component 41 has a slot 411. The second fixing component 42 is connected to the outer peripheral wall of the cylinder body 11. The second fixing component 42 is inserted into the slot 411. The side of the second fixing component 42 has an insertion hole, and the side of the first fixing component 41 has a through hole aligned with the insertion hole. A positioning rod 43 is slidably provided in the through hole. The positioning rod 43 is connected to the first fixing component 41 through an elastic member 44. The positioning rod 43 is inserted into the insertion hole under the elastic force of the elastic member 44.

[0042] It should be noted that the above-mentioned configuration makes the connection between the cylinder body 11 and the cylinder bottom 12 more secure and reliable, and facilitates disassembly. When cleaning or maintenance is required, the cylinder body 11 and the cylinder bottom 12 can be easily separated, making it convenient to clean the cylinder body 11 and the cylinder bottom 12, thus solving the problem of inconvenient cleaning of the integrated cylinder body 1 in the prior art.

[0043] Alternatively, the elastic element 44 can be a spring, which is sleeved on the positioning rod 43. A baffle is fixedly provided on the outer end of the positioning rod 43, and the two ends of the spring are respectively fixed to the baffle and the first fixing component 41. After the cylinder body 11 and the cylinder bottom 12 are inserted and engaged, the second fixing component 42 can be inserted and engaged with the first fixing component 41, and the positioning rod 43 can be inserted and engaged with the insertion hole on the second fixing component 42. Therefore, the second fixing component 42 can be fixed on the first fixing component 41, which plays an axial limiting role for the cylinder body 11 and the cylinder bottom 12.

[0044] In some embodiments, such as Figures 1 to 7As shown, the fixing structure 4 also includes a pull rope 45 and a pin 46. One end of the pull rope 45 is connected to the pin 46, and the other end of the pull rope 45 is connected to the positioning rod 43. The outer peripheral wall of the bottom of the cylinder 12 has a pin hole for insertion and engagement with the pin 46. When the positioning rod 43 is pulled away from the insertion hole, the pin 46 engages with the pin hole, and the pull rope 45 provides tension to the positioning rod 43 so that the positioning rod 43 remains separated from the insertion hole.

[0045] It should be noted that the above-mentioned settings further facilitate the disassembly of the cylinder body 11 and the cylinder bottom 12. With the cooperation of the pull rope 45 and the pin 46, the positioning rod 43 can be pulled away from the insertion hole more stably and kept in a separated state, avoiding the positioning rod 43 from accidentally springing back into the insertion hole due to the elastic force of the elastic element 44 during the disassembly process, thus improving the convenience and safety of disassembly.

[0046] In some embodiments, such as Figures 1 to 7 As shown, one end of the pull rope 45 is connected to the end of the positioning rod 43, or one end of the pull rope 45 is connected to the outer peripheral wall of the positioning rod 43; wherein, when the pull rope 45 is connected to the outer peripheral wall of the positioning rod 43, the pin hole can be set on the outer side wall of the first fixing member 41.

[0047] It should be noted that the above connection method increases the flexibility of the connection between the pull rope 45 and the positioning rod 43, and different connection positions can be selected according to actual design requirements. If the pull rope 45 is connected to the outer peripheral wall of the positioning rod 43 and the pin hole is set on the outer side wall of the first fixing component 41, the structural layout can be optimized, making the entire fixing structure 4 more compact, reducing space occupation, and also improving the convenience of disassembly operation.

[0048] In some embodiments, such as Figures 1 to 7 As shown, the end of the positioning rod 43 is rotatably provided with a push rod 47. When the positioning rod 43 is separated from the insertion hole, the push rod 47 can rotate to a position parallel to the positioning rod 43, and the end of the push rod 47 abuts against the side of the first fixing member 41 so that the positioning rod 43 remains separated from the insertion hole.

[0049] It should be noted that the above-mentioned configuration provides an additional guarantee, ensuring that the positioning rod 43 can stably remain separated from the insertion hole during disassembly; when the positioning rod 43 acts as a insertion limit, the push rod 47 rotates away from the first fixing component 41; when the cylinder body 11 needs to be disassembled, the push rod 47 rotates to a position that abuts against the first fixing component 41, which can ensure that the positioning rod 43 is always separated from the second positioning component, preventing the positioning rod 43 from resetting during disassembly, and improving the reliability and safety of the disassembly process.

[0050] In some embodiments, such as Figures 1 to 7As shown, the rotating frame 2 includes a rotating shaft 21 and at least one frame body 22. The rotating shaft 21 is connected to the frame body 22 via a connecting rod. The top of the frame body 22 has an insertion port, and the bottom of the frame body 22 has a support plate 23. The side of the frame body 22 has a baffle 24 for limiting the honeycomb. The frame body 22 has at most one stop bar 25 on the side facing the periphery of the cylinder 11.

[0051] It should be noted that the above settings enable the rotating frame 2 to better place and fix the honeycomb; the tray 23 can support and position the honeycomb, the baffle 24 can prevent the honeycomb from shifting during rotation, and the setting of at most one baffle 25 can reduce the obstruction of the baffle 25 to the honeycomb, making it easier for the honey to be thrown out of the honeycomb under the action of centrifugal force, thus improving the efficiency of honey extraction.

[0052] In some embodiments, such as Figures 1 to 7 As shown, the drive mechanism 3 includes a truss 31 and a gearbox 32; the truss 31 spans the top of the cylinder 11; both ends of the truss 31 have arc-shaped grooves 311 that are inserted into the cylinder 11; the gearbox 32 is connected to the truss 31; two meshing bevel gears are rotatably arranged inside the gearbox 32, the vertically arranged bevel gear is connected to the drive shaft 33, and the horizontally arranged bevel gear is connected to the drive shaft 34, one end of the drive shaft 34 has a rocker handle 35.

[0053] It should be noted that the above settings make the honey extractor drive more stable and reliable. The insertion and engagement of the truss 31 and the cylinder 11 increases the stability of the drive mechanism 3. The transmission of the bevel gear can effectively transmit the rotation of the crank handle 35 to the rotating frame 2, enabling the rotating frame 2 to rotate stably, thereby ensuring the smooth progress of the honey extraction process.

[0054] For example, the output direction can be changed by two meshing bevel gears. When the operator rotates the drive shaft 34, the drive shaft 33 can be rotated, which in turn can rotate the rotating frame 2, so that the honey on the honeycomb can be thrown onto the inner circumferential wall of the cylinder 11.

[0055] In some embodiments, such as Figures 1 to 7 As shown, the truss 31 has a support frame 36 for supporting the drive shaft 34, and the drive shaft 34 is connected to the support frame 36 by bearings.

[0056] It should be noted that the above configuration can better support the drive shaft 34, reduce friction and wear of the drive shaft 34 during rotation, and improve the service life of the drive mechanism 3; the use of bearings enables the drive shaft 34 to rotate more flexibly, ensuring effective power transmission, thereby improving the overall performance and working efficiency of the honey extractor.

[0057] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A honey extractor, characterised in that, The application relates to a honeycomb drying device. The device comprises a barrel, a rotating frame, a driving mechanism and a fixed structure. The barrel comprises a barrel body and a barrel bottom; the barrel body and the barrel bottom are insertedly connected; the barrel body is provided with a discharging port on the side wall close to the barrel bottom; The rotating frame is arranged in the barrel body; the rotating frame is rotationally connected with the barrel body; the rotating frame is provided with a placing space for placing honeycombs; The driving mechanism is arranged on the top of the barrel body; the driving shaft of the driving mechanism is connected with the rotating shaft of the rotating frame to drive the rotating frame to rotate; 2. A honey extractor as claimed in claim 1, wherein, The fixed structure is arranged on the outer side of the connecting position of the barrel body and the barrel bottom; the fixed structure is used for axially limiting the barrel body and the barrel bottom.

3. A honey extractor as claimed in claim 2, wherein the drive means comprises a motor and a belt drive. The top of the barrel bottom is provided with an inserted part which is insertedly connected with the barrel body; the outer peripheral wall of the inserted part is in contact with the inner peripheral wall of the barrel body; the top of the inserted part is a conical structure. The fixed structure comprises a plurality of fixed structures which are arranged at intervals along the circumference of the barrel body; each fixed structure comprises a first fixed component and a second fixed component. The first fixed component is connected with the outer peripheral wall of the barrel bottom; the top of the first fixed component is provided with an insertion slot; The second fixed component is connected with the outer peripheral wall of the barrel body; the second fixed component is insertedly connected with the insertion slot; 4. A honey extractor as claimed in claim 3, wherein The side of the second fixed component is provided with an insertion hole; the side of the first fixed component is provided with a through hole which is aligned with the insertion hole; a positioning rod is slidably arranged in the through hole; the positioning rod is connected with the first fixed component through an elastic element; the positioning rod is insertedly connected with the insertion hole under the elastic force of the elastic element. The fixed structure further comprises a pull rope and a pin shaft; one end of the pull rope is connected with the pin shaft; the other end of the pull rope is connected with the positioning rod; 5. A honey extractor as claimed in claim 4, wherein the drive means comprises a motor and a belt drive. The outer peripheral wall of the barrel bottom is provided with a pin hole which is insertedly connected with the pin shaft; when the positioning rod is pulled away from the insertion hole, the pin shaft is insertedly connected with the pin hole; the pull rope provides a pulling force to the positioning rod to keep the positioning rod separated from the insertion hole. One end of the pull rope is connected with the end of the positioning rod or the outer peripheral wall of the positioning rod; 6. A honey extractor as claimed in claim 3, wherein When the pull rope is connected with the outer peripheral wall of the positioning rod, the pin hole can be arranged on the outer side wall of the first fixed component.

7. A honey extractor as claimed in claim 1 wherein, The end of the positioning rod is rotationally provided with a top rod; when the positioning rod is separated from the insertion hole, the top rod can be rotated to a position parallel to the positioning rod; the end of the top rod is in abutment with the side of the first fixed component to keep the positioning rod separated from the insertion hole.

8. A honey extractor as claimed in claim 7, wherein the drive means comprises a motor and a belt drive. The rotating frame comprises a rotating shaft and at least one frame body; the rotating shaft is connected with the frame body through a connecting rod; the top of the frame body is provided with an insertion port; the bottom of the frame body is provided with a supporting plate; the side of the frame body is provided with a baffle for limiting the honeycombs; the frame body has at most one blocking rod on the side facing the barrel peripheral wall. The driving mechanism comprises a truss which is arranged on the top of the barrel body; the two ends of the truss are provided with arc-shaped slots which are insertedly connected with the barrel body. Gear box, connected on the truss; two bevel gears are arranged in rotation in the gear box and mesh with each other, a driving shaft is connected on the vertically arranged bevel gear, a main shaft is connected on the horizontally arranged bevel gear, and the main shaft has a crank handle at one end.

9. A honey extractor as claimed in claim 8, wherein the drive means comprises a motor and a belt drive. The truss has a support frame for supporting the main shaft, and the main shaft is connected with the support frame through a bearing.