Propolis grinding device capable of improving grinding quality
This propolis grinding device, with its internal rotating grinding blades and internal impurity-separating filter, solves the problems of uneven propolis grinding and low filtration efficiency, achieving high-efficiency propolis grinding and impurity separation.
Patent Information
- Application Number
- CN202423143544.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-19
AI Technical Summary
Existing propolis grinding equipment tends to form clumps during the circulating grinding process, resulting in uneven grinding and low filtration efficiency. This makes it difficult to effectively separate impurities and natural impurities, leading to low product purity.
It adopts an internal swirling grinding blade and an internal impurity-separating filter structure. The spiral auger structure stirs and grinds the propolis and retains impurities. At the same time, gravity filtration is carried out using a flow guide filter chamber to achieve multiple cycles of grinding and impurity separation of propolis.
It improves the grinding quality and purity of propolis, reduces equipment wear and energy consumption, lowers equipment costs, and increases filter residue efficiency.
Smart Images

Figure CN223602421U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to propolis grinding technical field relates to a kind of propolis grinding device of improving grinding quality. BACKGROUND
[0002] The existing propolis grinding device has some shortcomings in circulating grinding and residue filtering. Firstly, in terms of circulating grinding, propolis has high viscosity, which is easy to form clumps during grinding, leading to uneven grinding. In terms of residue filtering, it is difficult to completely separate the natural impurities in propolis and the tiny particles generated during grinding, resulting in low product purity. The conventional methods include increasing grinding time to ensure finer particle size, and using finer filter screens or centrifugal separation technology to improve residue filtering efficiency. However, these methods have disadvantages, such as increasing energy consumption and equipment wear by prolonging grinding time, and increasing equipment cost and not ideal efficiency in handling high-viscosity materials by using finer filter screens or centrifugal separation technology. Therefore, there is an urgent need for a propolis grinding device that improves grinding quality to solve the above problems. SUMMARY
[0003] In view of the deficiencies in the prior art, the utility model aims to provide a propolis grinding device that improves grinding quality to solve the problems raised in the background art.
[0004] The utility model realizes the following technical solutions: a propolis grinding device that improves grinding quality, comprising: a motor and an internal impurity separation filter cartridge. The motor is supported by a set of bases on its lower outer side, and the motor and the bases are fixed by bolt connection.
[0005] A recovery seat for intercepting impurities in propolis is arranged on the right upper end of the base. A set of grinding pots are arranged on the upper end of the recovery seat. An inlet hopper for receiving propolis to be ground is arranged on the upper end of the grinding pot, and the interior of the inlet hopper is in communication with the interior of the grinding pot.
[0006] The grinding pot and the recovery seat are fixed by a plurality of sets of connections and are in sealed communication. A grinding cavity for grinding propolis is arranged in the interior of the grinding pot. A set of internal rotary grinding blades for grinding propolis are arranged in the interior of the grinding cavity. A lower connecting rotary head for rotating the internal rotary grinding blades and stirring and grinding propolis is arranged on the lower end of the internal rotary grinding blades. The internal rotary grinding blades have a spiral auger structure. The inlet hopper receives propolis materials, and the internal rotary grinding blades stir and grind the propolis materials. During the stirring and grinding process, the internal impurity separation filter cartridge blocks the impurities in the propolis materials, and the fluid propolis is filtered and guided again by the flow guide filter cavity.
[0007] As a preferred embodiment, the inner side of the inner rotary grinding blade is provided with a set of inner impurity separation filter bowls for separating impurities during propolis grinding. The inner side of the inner rotary grinding blade is attached to the inner wall of the inner impurity separation filter bowl. The inner impurity separation filter bowl is arranged inside the grinding tank. The inner side of the grinding tank is provided with an inner heating ring for heating propolis.
[0008] As a preferred embodiment, the lower end of the inner impurity separation filter bowl is connected and fixed to the upper end of the recovery seat. The inner impurity separation filter bowl includes an inner bowl, an inner filter shell, and a flow guide filter cavity. The inner bowl is a cylindrical structure, and the inner side of the inner bowl is provided with a plurality of inner flow guide holes for guiding the flow of propolis fluid.
[0009] As a preferred embodiment, the inner wall of the inner bowl is provided with a set of inner filter shells for filtering propolis impurities. The inner filter shell is provided with a set of flow guide filter cavities for thoroughly mixing propolis. The bottom of the flow guide filter cavity is provided with a set of conical-shaped resting seats.
[0010] As a preferred embodiment, the inner side of the resting seat is provided with a plurality of bottom holes for guiding the flow of propolis. When the inner impurity separation filter bowl is located inside the grinding tank, the lower end of the resting seat is located at the upper end of the left side of the material guide pipe and is in communication with each other.
[0011] As a preferred embodiment, the right lower end of the grinding tank is provided with a set of material guide pipes for guiding the flow of propolis. The right side of the material guide pipe is provided with a set of material guide faucets for discharging propolis. The upper end of the material guide pipe is provided with a set of backflow pipes for circulating and grinding the material. When the grinding of propolis is completed, the staff discharges the ground propolis through the material guide pipe and the material guide faucet, and observes the standard of the ground propolis. If multiple grinding is still needed, the propolis can be re-introduced into the feeding hopper through the backflow pipe for secondary circulation grinding through the three-way valve to meet the relevant standards.
[0012] As a preferred embodiment, the backflow pipe is provided with a set of three-way valves at the connection with the material guide pipe. The lower end of the motor is provided with a driving end. The outer side of the driving end is provided with a set of transmission belts. The transmission belts are connected to the lower connection rotary head and the driving end.
[0013] The beneficial effects of the present application are as follows: the propolis material in the feeding hopper is received by the grinding tank, and the propolis material is stirred and ground by the inner rotary grinding vane; the impurities in the propolis material are blocked by the inner impurity filtering bowl during the stirring and grinding process, and the fluid propolis is subjected to gravity filtering and guiding again by the flow guiding filter cavity; when the propolis grinding is completed, the ground propolis is guided out by the material guiding pipe and the material guiding faucet, and the standard of the ground propolis is observed; if the propolis needs to be ground again, the propolis can be guided into the feeding hopper again through the three-way valve and the backflow pipe for secondary circulation grinding, so as to reach the relevant standard. BRIEF DESCRIPTION OF DRAWINGS
[0014] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0015] Fig. 1 It is a front view structure schematic diagram of the propolis grinding device of the present application.
[0016] Fig. 2 It is a left oblique front view structure schematic diagram of the guide rod in the propolis grinding device of the present application.
[0017] Fig. 3 It is a front view structure schematic diagram of the inner impurity filtering bowl in the propolis grinding device of the present application.
[0018] In the drawings: 100-motor, 110-base, 120-recovery seat, 130-grinding tank, 140-connection seat, 150-backflow pipe, 160-material guiding pipe, 170-material guiding faucet, 180-feeding hopper, 190-inner rotary grinding vane, 200-inner impurity filtering bowl.
[0019] 20a-inner bowl, 20b-inner filter shell, 20c-flow guiding filter cavity. DETAILED DESCRIPTION
[0020] The technical solutions in the embodiments of the present application will be described clearly and completely in combination with the drawings of the embodiments of the present application. Obviously, the described embodiments are only some embodiments of the present application, not all embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.
[0021] Referring to Figs. 1-3 A propolis grinding device for improving grinding quality, comprising a motor 100, a grinding tank 130 and an internal impurity separation filter 200, a group of bases 110 for supporting the motor 100 are arranged on the outer side of the lower end of the motor 100, and the motor 100 is fixedly connected with the base 110 through bolts;
[0022] A group of recovery seats 120 for intercepting propolis impurities are arranged on the right upper end of the base 110, a group of grinding tanks 130 are arranged on the upper end of the recovery seat 120, a group of feed hoppers 180 for supporting the propolis to be ground are arranged on the upper end of the grinding tank 130, and the inside of the feed hopper 180 is in communication with the inside of the grinding tank 130.
[0023] The grinding tank 130 is connected and fixed with the recovery seat 120 through a plurality of groups, and the inside is in sealed communication, the grinding tank 130 is internally provided with a grinding cavity for grinding propolis, a group of internal rotary grinding blades 190 for grinding propolis are arranged in the grinding cavity, a group of lower connection rotary heads for driving the internal rotary grinding blades 190 to rotate and stirring and grinding propolis are arranged on the lower end of the internal rotary grinding blades 190, and the internal rotary grinding blades 190 are in a spiral auger structure.
[0024] A group of internal impurity separation filter 200 for separating impurities during propolis grinding are arranged on the outer side of the internal rotary grinding blades 190, the outer side of the internal rotary grinding blades 190 is attached to the inner wall of the internal impurity separation filter 200, the internal impurity separation filter 200 is arranged in the grinding tank 130, and the grinding tank 130 is internally provided with an internal heating ring for heating propolis.
[0025] The lower outer side of the internal impurity separation filter 200 is fixedly connected with the inner upper end of the recovery seat 120, the internal impurity separation filter 200 comprises an inner container, an inner filter shell and a flow guide filter cavity, the inner container is in a cylindrical structure, and a plurality of groups of inner flow guide holes for guiding the flow of propolis fluid are arranged in the inner container.
[0026] An inner filter shell for filtering propolis impurities is arranged on the inner wall of the inner container, a group of flow guide filter cavities for fully mixing propolis are arranged in the inner filter shell, and a group of static seats in a conical structure are arranged on the bottom of the flow guide filter cavities.
[0027] A plurality of groups of bottom holes for guiding the flow of propolis are arranged in the static seat, when the internal impurity separation filter 200 is located in the grinding tank 130, the lower end of the static seat is located on the left upper end of the material guide pipe 160, and they are in communication.
[0028] A group of material guide pipes 160 for guiding the flow of propolis are arranged on the right lower end of the grinding tank 130, a group of material guide cocks 170 for discharging propolis are arranged on the right side of the material guide pipe 160, and a group of backflow pipes 150 for circulating and grinding the material of propolis are arranged on the upper end of the material guide pipe 160.
[0029] The reverse flow pipe 150 is provided with a group of three-way valves at the connection position of the material guide pipe 160, and the lower end of the motor 100 is provided with a driving end, and a group of transmission belts are arranged outside the driving end and connected with the lower connecting screw and the driving end.
[0030] Please refer to Figs. 1-3 , as the first embodiment of the present application: when the propolis needs to be ground, first, the propolis to be ground is placed in the feed hopper 180, then introduced into the grinding tank 130 through the feed hopper 180, the propolis material in the feed hopper 180 is received by using the grinding tank 130, and the propolis material is stirred and ground by the inner rotating grinding blade 190, in the stirring and grinding process, the impurities in the propolis material are blocked by the inner impurity filter 200, and the fluid propolis is filtered again by the flow filter cavity, that is, the impurities in the propolis are filtered multiple times, and the impurities in the propolis are left in the inner tank to ensure the grinding quality of the propolis.
[0031] Please refer to Figs. 1-3 , as the second embodiment of the present application: based on the above embodiment, further, the grinding tank 130 is provided with a group of material guide pipes 160 on the right side and the lower end for guiding the propolis, the material guide pipe 160 is provided with a group of material guide taps 170 on the right side for discharging the propolis, and the material guide pipe 160 is provided with a group of reverse flow pipes 150 on the upper end for circulating and grinding the propolis, when the propolis grinding is completed, the staff discharges the ground propolis through the material guide pipe 160 and the material guide tap 170, and observes the standard of the material guide grinding, if multiple grinding is needed, the propolis can be introduced into the feed hopper 180 again through the reverse flow pipe 150 to achieve the related standard.
[0032] The above is only a preferred embodiment of the present application, and is not used to limit the present application, any modification, equivalent replacement, improvement, etc. within the spirit and principle of the present application should be included in the protection scope of the present application.
Claims
1. A propolis grinding device for improving grinding quality, comprising: The motor (100), grinding tank (130), reflux pipe (150), inner rotating grinding blade (190) and inner impurity filter (200) are characterized in that: a set of bases (110) for supporting the motor (100) is provided on the outer side of the lower end of the motor (100), and the motor (100) and the bases (110) are fixed by bolts; The upper right side of the base (110) is provided with a set of recycling seats (120) for intercepting impurities in the propolis. The upper end of the recycling seat (120) is provided with a set of grinding tanks (130). The upper end of the grinding tanks (130) is provided with a set of feeding hoppers (180) for receiving the propolis to be ground. The inside of the feeding hoppers (180) is connected to the inside of the grinding tanks (130). The grinding tank (130) and the recycling seat (120) are fixed by several sets of connections and are internally sealed and connected. The grinding tank (130) is provided with a grinding chamber for grinding propolis. The grinding chamber is provided with a set of inner rotating grinding blades (190) for grinding propolis. The lower end of the inner rotating grinding blades (190) is provided with a set of lower connecting heads for driving them to rotate and stirring and grinding propolis. The inner rotating grinding blades (190) are a spiral auger structure.
2. The propolis grinding device for improving grinding quality according to claim 1, characterized in that: The outer side of the inner swirling grinding blade (190) is provided with a set of inner impurity filter (200) for separating impurities during the grinding process of propolis. The outer side of the inner swirling grinding blade (190) is attached to the inner wall of the inner impurity filter (200). The inner impurity filter (200) is set inside the grinding tank (130). The grinding tank (130) is provided with an inner heating ring for heating the propolis.
3. The propolis grinding device for improving grinding quality according to claim 2, characterized in that: The lower outer side of the inner filter cartridge (200) is connected and fixed to the upper inside of the recovery seat (120). The inner filter cartridge (200) includes an inner cartridge (20a), an inner filter shell (20b), and a flow guiding filter cavity (20c). The inner cartridge (20a) is a cylindrical structure, and the inner cartridge (20a) is provided with a number of internal flow guiding holes for guiding the propolis fluid.
4. The propolis grinding device for improving grinding quality according to claim 3, characterized in that: The inner wall of the inner liner (20a) is provided with a set of inner filter shells (20b) for filtering propolis impurities. Inside the inner filter shells (20b) is a set of flow guiding filter chambers (20c) for fully mixing propolis. At the bottom of the flow guiding filter chambers (20c) is a set of stationary seats with a conical structure.
5. The propolis grinding device for improving grinding quality according to claim 4, characterized in that: The settling seat is provided with several sets of bottom holes for guiding the propolis. When the inner impurity filter (200) is located inside the grinding tank (130), the lower end of its settling seat is located at the upper left side of the feed pipe (160) and they are interconnected.
6. The propolis grinding device for improving grinding quality according to claim 5, characterized in that: The lower right side of the grinding tank (130) is provided with a set of feed pipes (160) for guiding the propolis flow. The right side of the feed pipes (160) is provided with a set of feed taps (170) for discharging the propolis. The upper end of the feed pipes (160) is provided with a set of backflow pipes (150) for circulating and grinding the propolis.
7. The propolis grinding device for improving grinding quality according to claim 4, characterized in that: The reflux pipe (150) is connected to the feed pipe (160) with a set of three-way valves. The motor (100) has a drive end at its lower end. A set of transmission belts is provided on the outside of the drive end. The transmission belts are connected to the lower connecting head and the drive end for power connection.