Honey impurity removal device for honey product production

By introducing dynamic filtration design with eccentric blocks and spring structures into the honey impurity removal device, the problem of slow static filtration and feeding of honey is solved, and the efficiency of honey impurity removal and vibration noise are improved.

CN223158948UActive Publication Date: 2025-07-29BEIJING FENGZHEN SCIENTECH DEV
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202321289662.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2023-05-25
Publication Date
2025-07-29
Estimated Expiration
2033-05-25

AI Technical Summary

Technical Problem

The existing honey decomposition removal device is slow to discharge during static filtration, resulting in low honey decomposition removal efficiency and vibration noise problems.

Method used

A honey impurity removal device is designed. By setting an eccentric block and a spring structure in the filter box, the motor drives the rotary rod to drive the filter box up and down vibration, and dynamic impurity removal is combined with a multi-layer filter plate to improve the discharge speed and reduce vibration and noise.

Benefits of technology

The honey removal efficiency and vibration noise are improved. The eccentric block drives the filter box to vibrate up and down, which speeds up the honey filtration speed and springs provide buffering to reduce noise.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223158948U_ABST
    Figure CN223158948U_ABST
Patent Text Reader

Abstract

The utility model discloses a honey impurity removal device for honey product production, which comprises an impurity removal box and a filter box, the impurity removal box is provided with a feed port and a discharge port, and two upright posts are vertically mounted in the impurity removal box; the filter box is installed in the impurity removal box, a box door is arranged at the top of the filter box, a filter screen is arranged at the bottom of the filter box, sliding blocks are fixedly connected to the two opposite outer side walls of the filter box, and driving pieces which are symmetrical to each other are arranged on the other two outer side walls of the filter box; the two sliding blocks are arranged outside the two stand columns in a sliding and sleeving mode correspondingly, and the upper ends and the lower ends of the stand columns are sleeved with springs correspondingly. Each driving part is provided with a rotating rod driven by a motor to rotate, one end of each rotating rod is rotationally connected with the filter box through a bearing, and the other end of each rotating rod is fixedly connected with an eccentric block. The honey impurity removal device is reasonable in structural design, the filter box is driven to vibrate up and down through rotation of the eccentric block, the honey impurity removal efficiency is improved, the upper ends and the lower ends of the two stand columns are sleeved with the springs, and the vibration and noise reduction effect is achieved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of honey product processing. More specifically, the utility model relates to a honey impurity removal device for honey product production. Background Art

[0002] Honey is a natural sweet substance that bees collect nectar from the flowers of flowering plants and fully brew in the honeycomb. It has a strong and fragrant smell and a pure and sweet taste. Honey is a supersaturated solution of sugar. When the temperature is low, crystallization will occur. The part that crystallizes is glucose, and the part that does not crystallize is mainly fructose. During the production process of honey products, it is necessary to remove impurities from honey. The existing honey impurity removal devices are usually static impurity removal. Since honey is relatively thick, the feeding speed is slow during static filtration, reducing the working efficiency of honey impurity removal. A honey processing impurity removal device disclosed in the Chinese patent with the authorization announcement number CN216986465U stirs the honey through a stirring rod to make the impurities inside the honey evenly distributed. However, after stirring, it still uses an impurity removal filter screen for static impurity removal, resulting in a still slow filtration speed. Summary of the Utility Model

[0003] An object of the utility model is to solve at least the above problems and provide at least the advantages described later.

[0004] Another object of the utility model is to provide a honey impurity removal device for honey product production, which can effectively improve the impurity removal efficiency of honey and reduce vibration and noise during use.

[0005] To achieve these and other advantages of the present utility model, there is provided a honey impurity removal device for honey product production, including:

[0006] An impurity removal box, which is provided with a feed inlet and a discharge outlet, and two vertical columns are installed inside the impurity removal box;

[0007] A filtration box, which is installed inside the impurity removal box. The top of the filtration box is provided with a box door, the bottom is a filter screen, and sliding blocks are fixedly connected to the opposite two outer side walls, and symmetrical driving parts are arranged on the other two outer side walls;

[0008] Wherein, the two sliding blocks are respectively sleeved outside the two columns, and springs are sleeved at the upper and lower ends of the columns;

[0009] Each driving part is provided with a rotating rod driven by a motor to rotate. One end of the rotating rod is rotatably connected to the filtration box through a bearing, and the other end is fixedly connected with an eccentric block.

[0010] Preferably, the rotating rod includes a first rotating rod portion, a first gear, and a second rotating rod portion that are coaxially and fixedly connected in sequence. The free end of the first rotating rod portion is rotatably connected to the outer side wall of the filter box through a bearing. The eccentric block is fixedly connected to the curved side wall of the second rotating rod portion. The rotating shaft of the motor is connected to a second gear through a speed reducer, and the first gear and the second gear are meshed with each other.

[0011] Preferably, the first gear is a complete gear, and the second gear is an incomplete gear.

[0012] Preferably, motor brackets are further installed on the two outer side walls of the filter box, and two motors are symmetrically installed on the two motor brackets.

[0013] Preferably, the box door is an electric door.

[0014] Preferably, two partition plates are provided on the bottom wall inside the impurity removal box, dividing the bottom inside the impurity removal box into a middle filtering area and two side column areas on both sides. The bottoms of the two columns are respectively located in the column areas on both sides, and the bottom of the filter box is in the filtering area.

[0015] Preferably, multiple filter plates are further provided inside the filter box.

[0016] The utility model has at least the following beneficial effects: The structure of the utility model is reasonably designed. By rotating the polarization block, the filter box is driven to vibrate up and down, improving the blanking speed and accelerating the impurity removal efficiency. Springs are sleeved on the upper and lower ends of the two columns, so that the filter box is buffered when vibrating up and down, achieving the purpose of vibration reduction and noise reduction.

[0017] Other advantages, objectives, and features of the utility model will be partially reflected by the following description, and partially will be understood by those skilled in the art through the research and practice of the utility model. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic structural diagram of a technical solution of the utility model;

[0019] Figure 2 It is a schematic structural diagram of the impurity removal box in a technical solution of the utility model;

[0020] Figure 3 It is a schematic structural diagram of the driving member in a technical solution of the utility model. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0021] The following further detailed description of the utility model is made in conjunction with the accompanying drawings and the specific embodiments, so that those skilled in the art can implement it according to the description in the specification.

[0022] It should be understood that terms such as "having", "including", and "comprising" used herein do not exclude the presence or addition of one or more other elements or combinations thereof.

[0023] It should be noted that the experimental methods described in the following embodiments are all conventional methods unless otherwise specified, and the reagents and materials can be obtained from commercial channels unless otherwise specified; in the description of the present utility model, it should be noted that unless otherwise clearly defined and limited, the terms "installed", "connected", and "set" should be understood in a broad sense. For example, they can be fixedly connected and set, or detachably connected and set, or integrally connected and set. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances. The orientation or positional relationship indicated by terms such as "lateral", "longitudinal", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present utility model.

[0024] As Figures 1 to 3 shown, the present utility model provides a honey impurity removal device for honey product production, including:

[0025] An impurity removal box 100, which is provided with a feed inlet 101 and a discharge outlet 102, and two vertical columns 103 are installed vertically in the impurity removal box 100;

[0026] A filter box 200, which is installed inside the impurity removal box 100, the top of the filter box 200 is provided with a box door 201, the bottom is a filter screen, and sliding blocks 202 are fixedly connected to the opposite two outer side walls, and symmetrically arranged driving members are provided on the other two outer side walls;

[0027] Among them, the two sliding blocks 202 are respectively sleeved outside the two columns 103, and springs 203 are respectively sleeved at the upper and lower ends of the columns 103;

[0028] Each driving member is provided with a rotating rod 205 driven by a motor 204 to rotate. One end of the rotating rod 205 is rotatably connected to the filter box 200 through a bearing, and the other end is fixedly connected with an eccentric block 206.

[0029] In the honey impurity removal device for honey product production provided by this technical solution, an impurity removal box 100 is provided, and a filter box 200 is arranged inside the impurity removal box 100. Sliders 202 are installed on the left and right sides of the filter box 200. Through holes are provided on the sliders 202, and upright columns 103 are inserted through the through holes. The two upright columns 103 inserted through the two sliders 202 are respectively located on the left and right sides inside the impurity removal box 100, and the upper and lower ends of each upright column 103 are fixedly connected to the top wall and the bottom wall of the impurity removal box 100 respectively. Springs 203 are sleeved on the outer periphery of each upright column 103 respectively on the upper and lower sides of the slider 202; Driving members are symmetrically installed on the front and rear sides of the filter box 200. The driving member is a rotating rod 205 rotatably connected to the filter box 200. An eccentric block 206 is fixedly connected to the end of the rotating rod 205 away from the filter box 200. The eccentric block 206 is a weight block with a sector structure. The rotating rod 205 is driven to rotate by a motor 204; A feed inlet 101 is arranged at the top of the impurity removal box 100, and a funnel-shaped discharge outlet 102 is arranged at the bottom. A box door 201 is arranged at the top of the filter box 200, and the bottom is a filter screen structure. During use, the honey to be decontaminated is injected into the filter box 200 through the feed inlet 101 and the box door 201. The box door 201 is closed, and the motors 204 of the two driving members are started synchronously to drive the two rotating rods 205 to rotate synchronously. The rotation of the eccentric block 206 generates an eccentric force on the filter box 200. Restricted by the up and down sliding of the slider 202 outside the upright column 103 and the compression force of the spring 203, the filter box 200 is driven to vibrate up and down, so as to accelerate the filtering and discharging speed of the honey. The decontaminated honey is discharged and collected through the discharge outlet 102, and the impurity removal work of the honey is completed. By setting the rotation of the eccentric block 206 and combining with the elastic action of the spring 203, the filter box 200 is driven to vibrate up and down to perform dynamic impurity removal on the honey, accelerate the discharging speed, and improve the impurity removal efficiency of the honey; Springs 203 are arranged at both the upper and lower ends of the upright column 103 to buffer and damp the vibration of the filter box 200, achieving the purpose of noise reduction.

[0030] In another technical solution, the rotating rod 205 includes a first rotating rod portion 210, a first gear 211, and a second rotating rod portion 212 that are coaxially and fixedly connected in sequence. The free end of the first rotating rod portion 210 is rotatably connected to the outer side wall of the filter box 200 through a bearing. The eccentric block 206 is fixedly connected to the curved side wall of the second rotating rod portion 212. The rotating shaft of the motor 204 is connected to a second gear 213 through a speed reducer. The first gear 211 and the second gear 213 are meshed. In this technical solution, the first rotating rod portion 210 is close to the filter box 200 and rotatably connected to the outer side wall of the filter box 200. The second rotating rod portion 212 is away from the filter box 200 and fixedly connected to the eccentric block 206. The first gear 211 in the middle is meshed with the second gear 213. The second gear 213 is driven by the motor 204, so as to drive the rotating rod to rotate. While rotating, the eccentric block 206 generates an up-and-down force on the filter box 200, and jointly acts with the springs 203 on both sides of the filter box 200 to drive the filter box 200 to vibrate up and down, accelerating the blanking rate, thereby improving the dust removal efficiency of honey.

[0031] In another technical solution, the first gear 211 is a complete gear, and the second gear 213 is an incomplete gear. In this technical solution, the second gear 213 is an incomplete gear, which can be designed as a half or one-third incomplete gear, indirectly driving the first gear 211 to rotate. When the eccentric wheel rotates to the highest point, it can rotate freely. When the eccentric wheel rotates to the lowest point, it is driven again to drive the filter box 200 to vibrate up and down, improving the blanking speed.

[0032] In another technical solution, motor brackets 214 are further installed on the two outer side walls of the filter box 200. The two motors 204 are symmetrically installed on the two motor brackets 214. In this technical solution, the motor brackets 214 are provided to improve the installation stability of the motor 204 and prevent it from shaking when the filter net vibrates up and down.

[0033] In another technical solution, the box door 201 is an electric door. In this technical solution, the box door 201 can be designed as an electrically controlled door, and its opening and closing are controlled by a motor, which is convenient for feeding.

[0034] In another technical solution, two partition plates 110 are provided on the bottom wall inside the impurity removal box 100, dividing the bottom inside the impurity removal box 100 into a middle filtration area 111 and two side column areas 112 on both sides. The bottoms of the two columns 103 are respectively located in the side column areas 112 on both sides, and the bottom of the filtration box 200 is located in the filtration area 111. In this technical solution, two partition plates 110 are provided at the bottom of the impurity removal box 100 to separate the bottoms of the two columns 103 from the bottom of the filtration box 200. The height of the partition plate 110 is lower than the lowest height when the two sliders 202 slide, so as to avoid hindering the sliding of the sliders 202. The filtration box 200 is located in the middle filtration area 111, and the discharge port 102 is located at the bottom of the filtration area 111, so that the honey after impurity removal and filtration leaks from the filter screen at the bottom of the filtration box 200 to the filtration area 111 and is discharged from the discharge port 102, preventing it from accumulating at the bottom dead corners of the two columns 103 or adhering to the outer periphery of the spring to form a stubborn residue that is difficult to remove.

[0035] In another technical solution, multiple filter plates are further provided inside the filtration box 200. In this technical solution, the multiple filter plates are arranged horizontally inside the filtration box 200 and can be parallel to each other or installed alternately in an inclined manner, dividing the filtration box 200 into multiple layers to perform multi-layer filtration on the honey and improve the impurity removal effect.

[0036] Although the embodiments of the present utility model have been disclosed as above, it is not limited to only the applications listed in the description and the embodiments. It can be fully applied to various fields suitable for the present utility model. For those familiar with the field, additional modifications can be easily made. Therefore, without departing from the general concept defined by the claims and the equivalent scope, the present utility model is not limited to the specific details and the illustrated and described examples here.

Claims

1. Honey impurity removal device for honey product production, characterized in that, Comprising: An impurity removal box, which is provided with a feed inlet and a discharge outlet, and two vertical columns are installed inside the impurity removal box; A filtration box, which is installed inside the impurity removal box. The top of the filtration box is provided with a box door, the bottom is provided with a filter screen, and sliding blocks are fixedly connected to the opposite two outer side walls, and symmetrically arranged driving members are provided on the other two outer side walls; Wherein, the two sliding blocks are respectively sleeved outside the two columns, and springs are respectively sleeved at the upper and lower ends of the columns; Each driving member is provided with a rotating rod driven by a motor. One end of the rotating rod is rotatably connected to the filtration box through a bearing, and the other end is fixedly connected with an eccentric block, and the eccentric block is a counterweight block with a fan-shaped structure.

2. The honey impurity removal device for honey product production according to claim 1, characterized in that, The rotating rod includes a first rotating rod part, a first gear and a second rotating rod part which are coaxially and fixedly connected in sequence. The free end of the first rotating rod part is rotatably connected to the outer side wall of the filtration box through a bearing. The eccentric block is fixedly connected to the curved side wall of the second rotating rod part. The rotating shaft of the motor is connected with a second gear through a speed reducer, and the first gear and the second gear are meshed.

3. The honey impurity removal device for honey product production according to claim 2, characterized in that, The first gear is a complete gear, and the second gear is an incomplete gear.

4. The honey impurity removal device for honey product production according to claim 1, characterized in that, Motor brackets are also installed on the two outer side walls of the filtration box, and two motors are symmetrically installed on the two motor brackets.

5. The honey impurity removal device for honey product production according to claim 1, characterized in that, The box door is an electric door.

6. The honey impurity removal device for honey product production according to claim 1, wherein, Two partition plates are arranged on the bottom wall inside the impurity removal box, dividing the bottom inside the impurity removal box into a middle filtration area and two side column areas on both sides. The bottoms of the two columns are respectively located in the column areas on both sides, and the bottom of the filtration box is in the filtration area.

7. The honey impurity removal device for honey product production according to claim 1, characterized in that, Multiple filter plates are also arranged inside the filtration box.

Citation Information

Patent Citations

  • Impurity removal device for honey processing

    CN216986465U