Forming device for wine propolis production

By designing a molding device for the production of wine-processed propolis, the automated transportation and storage of molds were realized, solving the problem of low efficiency in manual operation and improving production efficiency and product quality.

CN223667253UActive Publication Date: 2025-12-16YANGZHOU SANBANG NATURAL HEALTH FOODS
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Patent Information

Application Number
CN202423235724.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2025-12-16
Estimated Expiration
2034-12-26

AI Technical Summary

Technical Problem

In the current production of wine-based propolis, the operation of placing the mold in a freezing device after feeding the material into the mold relies on manual labor, which leads to low efficiency and is prone to operational errors, affecting product quality.

Method used

Design a molding device for producing wine-based propolis, including a molding mechanism, a pushing mechanism, a storage mechanism, and a lifting mechanism. Driven by an electric push rod and a motor, the device automatically feeds the mold into and changes the position of the placement rack. With the help of gear and toothed plate transmission, the device realizes the automated transportation and storage of the mold.

Benefits of technology

It improves operational convenience and work efficiency, reduces labor intensity, ensures mold stability and freezer space utilization, and enhances product quality and production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of propolis manufacturing, in particular to a forming device for wine-made propolis production, which comprises a forming mechanism, a conveying mechanism and a forming mechanism, the pushing mechanism is fixed to the outer wall of one side of the conveying unit; the storage mechanism is fixed to the position, opposite to the pushing mechanism, of the conveying unit and can store and cool the raw materials, and the storage mechanism comprises a mold; and the jacking mechanism is fixed to the bottom of the storage mechanism and can feed the mold into the storage mechanism. According to the utility model, the spur gear is driven by the motor to rotate to be meshed with the toothed plate, so that the positions among the plurality of placing racks can be quickly changed, and when one placing rack is filled with molds, the position can be changed, so that the placing rack without the molds is moved to the jacking mechanism, the molds can be conveniently and continuously loaded, and the efficiency of loading the molds into the placing racks is effectively improved; meanwhile, a plurality of placing racks are arranged, so that the internal space of the freezer can be fully utilized, more molds can be loaded into the freezer, and the utilization rate of the internal space of the freezer is effectively improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to propolis production technology field, and specifically is a kind of forming device for wine propolis production. BACKGROUND

[0002] In the field of bee product processing, wine propolis has wide application value due to its rich nutritional ingredients and bioactive substances, and its market demand continues to grow. The production process of wine propolis involves multiple key processes, and the operation link after discharging to the mold has an important influence on the quality and production efficiency of the final product.

[0003] Under normal circumstances, after discharging to the mold, although there are some simple conveying devices to assist in transporting the mold to the vicinity of the refrigeration device, the subsequent operation of placing the mold in the refrigeration device is mostly completed by manual operation. This manual operation mode has obvious disadvantages. On the one hand, the process of manually placing the mold is inefficient, and workers need to carry and accurately place the mold in the refrigeration device one by one, which not only consumes a lot of manpower and time, but also is prone to operation errors due to human factors, such as inaccurate mold placement position, collision, etc., thereby affecting the quality of the propolis sheet forming and solidification. SUMMARY

[0004] The purpose of the utility model is to provide a forming device for wine propolis production to solve the problems raised in the background art.

[0005] To achieve the above purpose, the utility model provides the following technical scheme:

[0006] A forming device for wine propolis production, comprising:

[0007] A forming mechanism, comprising a conveying unit;

[0008] A pushing mechanism fixed to one side of the outer wall of the conveying unit;

[0009] A storage mechanism fixed to the conveying unit at a position opposite to the pushing mechanism, capable of storing and cooling raw materials, the storage mechanism comprising a mold;

[0010] A jacking mechanism fixed to the bottom of the storage mechanism, capable of feeding the mold into the storage mechanism.

[0011] Further, the pushing mechanism comprises:

[0012] An electric push rod one fixed to the outer wall of the conveying unit, one end of the electric push rod one being fixedly connected with a square rod.

[0013] Preferably, the storage mechanism comprises:

[0014] A freezer fixed to the outer wall of the conveying unit;

[0015] The placing frame is arranged with four, which are all sliding in the ice cabinet, and two adjacent placing frames are fixedly connected;

[0016] The long rod is arranged with two, which are fixedly arranged at the one side of the placing frame.

[0017] Preferably, the storage mechanism comprises:

[0018] The tooth plate is arranged with two, which are fixedly arranged at the both sides between the bottom of the four placing frames;

[0019] The motor is fixedly arranged on the outer wall of the ice cabinet, the rotating shaft of the motor is fixedly connected with the round rod, the outer wall of the both ends of the round rod is fixedly connected with the spur gear, and the spur gear is in meshing transmission with the tooth plate.

[0020] The square plate is arranged with two, which are fixedly arranged at the both sides of the bottom of the outer wall of the one placing frame.

[0021] Preferably, the storage mechanism comprises:

[0022] The sliding groove is arranged with two, which are arranged at the both sides of the inner wall of the bottom of the placing frame, and the inclined block one is slidingly inserted into the sliding groove.

[0023] The spring one is fixedly arranged between the outer wall of the inclined block one and the inner wall of the sliding groove.

[0024] Preferably, the storage mechanism comprises:

[0025] The sliding rail is arranged with two, which are fixedly arranged at the both sides of the inner wall of the one end of the placing frame, and the square hole is arranged at the center of the outer wall of the sliding rail.

[0026] The sliding plate is slidingly arranged in the square hole.

[0027] The inclined block two is slidingly arranged in the sliding rail, and the spring two is fixedly connected between the outer wall of the inclined block two and the inner wall of the sliding rail.

[0028] Preferably, the jacking mechanism comprises:

[0029] The second electric push rod is fixedly connected with the bottom wall of the placing frame, and the T-shaped plate is fixedly connected with the one end of the second electric push rod.

[0030] Compared with the prior art, the utility model has the advantages of:

[0031] 1. The pushing mechanism and the jacking mechanism are matched, so that the mold loaded with raw materials on the conveying unit transmission belt can be quickly sent into the placing frame, personnel operation is not needed during the period, operation convenience and work efficiency are effectively improved, labor intensity is reduced, the inclined block one is arranged, the mold sent into the placing frame is limited, sliding out is prevented, and stability is effectively improved.

[0032] 2. The straight gear is driven to rotate by the motor, the positions of the multiple placing racks are quickly replaced, when the inside of one placing rack is full of molds, the position is replaced, the placing rack without the molds is moved to the jacking mechanism, the molds are conveniently loaded, the efficiency that the molds are loaded into the placing rack is effectively improved, meanwhile, multiple placing racks are arranged, the inside space of the freezer is fully utilized, more molds can be loaded, and the utilization rate of the inside space of the freezer is effectively improved.

[0033] 3. The slide plate is arranged, personnel can conveniently operate the slide plate to release the limiting of one end of the placing rack, and the molds in the placing rack are taken out, and the operation convenience is effectively improved. BRIEF DESCRIPTION OF DRAWINGS

[0034] Figure 1 It is the overall structure schematic view of the utility model;

[0035] Figure 2 It is the overall structure schematic view of the utility model;

[0036] Figure 3 It is the structure schematic view of the placing rack in the utility model;

[0037] Figure 4 It is the structure schematic view of the bottom of the placing rack in the utility model;

[0038] Figure 5 It is the structure schematic view of the jacking mechanism in the utility model;

[0039] Figure 6 It is the structure schematic view of the mold in the utility model;

[0040] Figure 7 It is the structure schematic view of the section of the placing rack in the utility model;

[0041] Figure 8 It is the structure schematic view of the section of the placing rack in the utility model;

[0042] Figure 9 It is the structure schematic view of the inclined block two in the utility model.

[0043] In the figure: 100, forming mechanism; 110, conveying unit; 200, pushing mechanism; 210, electric push rod one; 211, square rod; 300, storage mechanism; 310, freezer; 320, placing rack; 321, sliding groove; 322, inclined block one; 323, spring one; 324, sliding rail; 325, square hole; 326, sliding plate; 327, inclined block two; 328, spring two; 329, long rod; 330, motor; 331, straight gear; 332, toothed plate; 333, square plate; 334, round rod; 340, mold; 400, jacking mechanism; 410, electric push rod two; 411, T-shaped plate. DETAILED DESCRIPTION

[0044] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0045] Please refer to Figures 1-9 In the embodiments of the present application, a forming device for wine propolis production includes a forming mechanism 100, the forming mechanism 100 includes a conveying unit 110 and the following parts: a pushing mechanism 200 is fixed to one side of the outer wall of the conveying unit 110; and a storage mechanism 300 is fixed to the conveying unit 110 at a position opposite to the pushing mechanism 200, which can store and cool raw materials, the storage mechanism 300 includes a mold 340, a jacking mechanism 400 is fixed to the bottom of the storage mechanism 300, which can send the mold 340 into the storage mechanism 300, the pushing mechanism 200 includes the following parts: an electric push rod one 210 is fixed to the outer wall of the conveying unit 110, a square rod 211 is fixedly connected to one end of the electric push rod one 210, the storage mechanism 300 includes the following parts: two sliding grooves 321 are arranged on the inner walls of the bottom of the placing rack 320, an inclined block one 322 is slidably inserted into the sliding groove 321, a spring one 323 is fixed between the outer wall of the inclined block one 322 and the inner wall of the sliding groove 321, the jacking mechanism 400 includes the following parts: an electric push rod two 410 is fixed to the bottom wall of the placing rack 320, a T-shaped plate 411 is fixedly connected to one end of the electric push rod two 410, the outer wall of the T-shaped plate 411 is slidably inserted into the bottom wall of the freezer 310, and the mold 340 with raw materials on the conveying unit 110 can be quickly sent into the placing rack 320 by the pushing mechanism 200 cooperating with the jacking mechanism 400.

[0046] The storage mechanism 300 comprises the following parts: the ice cabinet 310 is fixed with the outer wall of the conveying unit 110, the placing racks 320 are provided with four, are slid in the inside of the ice cabinet 310, and two adjacent placing racks 320 are fixedly connected, the long rods 329 are provided with two, are fixedly arranged at the one side of the placing rack 320 at equal intervals, the gear plates 332 are provided with two, are fixed between the bottoms of the four placing racks 320 at the two sides respectively, the motor 330 is fixed on the outer wall of the one side of the ice cabinet 310, the round rod 334 is fixedly connected with the rotating shaft of the motor 330, the spur gears 331 are fixedly connected with the outer walls of the two ends of the round rod 334, the spur gears 331 are meshed with the gear plates 332, the square plates 333 are provided with two, are fixed at the bottom of the one side of one of the placing racks 320 at the two sides respectively, the spur gears 331 are driven to rotate and meshed with the gear plates 332 by the motor 330, a plurality of positions between the placing racks 320 can be quickly replaced, when the one of the placing racks 320 is filled with the molds 340, the position is replaced, the placing rack 320 without the mold 340 is moved to the jacking mechanism 400.

[0047] The storage mechanism 300 comprises the following parts: the slide rails 324 are provided with two, are fixed at the two sides of the one end of the placing rack 320, the square holes 325 are formed through the outer walls of the slide rails 324 at the centers, the sliding plates 326 are slid in the inside of the square holes 325, the inclined blocks two 327 are slid in the inside of the slide rails 324, the springs two 328 are fixed between the outer walls of the inclined blocks two 327 and the inner walls of the slide rails 324, the sliding plates 326 are arranged, the personnel can conveniently operate the sliding plates 326 to release the limiting of the one end of the placing rack 320, and the mold 340 in the inside of the placing rack 320 is taken out.

[0048] Specifically, in operation, the conveying unit 110 drives the mold 340 loaded with raw materials to move close to the storage mechanism 300, the electric push rod one 210 drives the square rod 211 to extend outward, pushing the mold 340 on the conveying belt of the conveying unit 110 to move into the ice cabinet 310, and the T-shaped plate 411 is inserted, the electric push rod two 410 drives the inserted mold 340 to move upward, the outer wall of the mold 340 contacts the inclined block one 322 of the corresponding storage rack 320, the inclined block one 322 is extruded to slide into the sliding groove 321, and the mold 340 is continuously pushed to move into the storage rack 320 until the inclined block one 322 is separated from the mold 340, and the spring one 323 rebounds to limit the mold 340 inside, through the cooperation of the pushing mechanism 200 and the jacking mechanism 400, the work is repeated until the corresponding storage rack 320 is filled with the mold 340, at this time, the motor 330 drives the spur gear 331 to rotate and engage with the toothed plate 332, driving the four storage racks 320 together to move into the ice cabinet 310 below the next storage rack 320 to align with the jacking mechanism 400, and the mold 340 is continuously loaded, when the storage rack 320 is filled with the mold 340, the motor 330 drives the spur gear 331 to engage with the toothed plate 332, driving the storage rack 320 to move into the ice cabinet 310, until all the storage racks 320 enter the ice cabinet 310, the outer wall of the storage rack 320 close to the outermost is provided with a sealing element and a square plate 333, which can prevent the leakage of cold air when the ice cabinet 310 is sealed, when the raw materials on the mold 340 are solidified and formed, the motor 330 drives the spur gear 331 to rotate and engage with the toothed plate 332, driving the storage rack 320 to move out of the ice cabinet 310, the staff inserts the sliding plate 326 into the square hole 325, during which one end of the sliding plate 326 contacts the inclined block two 327, the inclined block two 327 is extruded to slide into the sliding rail 324, releasing the limit of one end of the storage rack 320, and the staff can take out the mold 340 in the storage rack 320 from here to move to the next process.

[0049] Embodiment one

[0050] As Figure 1 , Figure 5 and Figure 7As shown, in this embodiment, the pushing mechanism 200 comprises the following parts: the electric push rod one 210 is fixed with the outer wall of the conveying unit 110, a square rod 211 is fixedly connected at one end of the electric push rod one 210, the storage mechanism 300 comprises the following parts: two chute 321 are arranged, which are respectively arranged at the inner walls of the two sides of the bottom of the placing rack 320, the inclined block one 322 is slidingly inserted in the chute 321, the spring one 323 is fixed between the outer wall of the inclined block one 322 and the inner wall of the chute 321, and the jacking mechanism 400 comprises the following parts: the electric push rod two 410 is fixed with the bottom wall of the placing rack 320, and a T-shaped plate 411 is fixedly connected at one end of the electric push rod two 410, and the outer wall of the T-shaped plate 411 is slidingly inserted with the bottom wall of the freezer 310.

[0051] In this embodiment, the conveying unit 110 drives the mold 340 containing raw materials to move to the position close to the storage mechanism 300, the electric push rod one 210 drives the square rod 211 to extend outward, pushes the mold 340 on the conveying belt of the conveying unit 110 to move to the inside of the freezer 310, and is inserted with the T-shaped plate 411, the electric push rod two 410 drives the inserted mold 340 to move upward, the outer wall of the mold 340 contacts with the inclined block one 322 of the corresponding placing rack 320, the inclined block one 322 is extruded to slide to the inside of the chute 321, the mold 340 is continuously pushed to move to the inside of the placing rack 320 to separate the inclined block one 322 from the mold 340, and is limited in the inside by the spring one 323, the mold 340 containing raw materials on the conveying belt of the conveying unit 110 can be quickly sent into the inside of the placing rack 320 by the pushing mechanism 200 cooperating with the jacking mechanism 400, during which, no personnel operation is required, the operation convenience and working efficiency are effectively improved, and the labor intensity is reduced, and the inclined block one 322 is arranged to limit the mold 340 sent into the inside of the placing rack 320, prevent sliding out, and effectively improve the stability.

[0052] As shown in the figure, Figures 2-4 In this embodiment, the storage mechanism 300 comprises the following parts: the freezer 310 is fixed with the outer wall of the conveying unit 110, the placing rack 320 is provided with four, which are slidingly arranged in the freezer 310, and two adjacent placing racks 320 are fixedly connected, the long rod 329 is provided with two, which are fixed at the one side of the placing rack 320 at equal intervals, the toothed plate 332 is provided with two, which are fixed between the bottoms of the four placing racks 320 at the two sides, and the motor 330 is fixed on the outer wall of one side of the freezer 310, the round rod 334 is fixedly connected with the rotating shaft of the motor 330, the straight gears 331 are fixedly connected with the outer walls of the two ends of the round rod 334, the straight gears 331 are in meshing transmission with the toothed plates 332, the square plates 333 are provided with two, which are respectively fixed on the outer wall bottoms of the two sides of one of the placing racks 320.

[0053] In practice, the pushing mechanism 200 works repeatedly with the lifting mechanism 400 until the corresponding placement rack 320 is filled with molds 340. At this point, the motor 330 drives the spur gear 331 to rotate and mesh with the toothed plate 332, moving the four fixed placement racks 320 together into the freezer 310 until they are aligned with the lifting mechanism 400. The motor 330 drives the spur gear 331 to rotate and mesh with the toothed plate 332, allowing for quick changes in the position of multiple placement racks 320. When one of the placement racks 320 is filled with molds 340, it will change position, moving the placement rack 320 without molds 340 to the lifting mechanism 400 for continued loading. This effectively improves the efficiency of loading molds 340 into the placement racks 320. At the same time, the multiple placement racks 320 fully utilize the internal space of the freezer 310, allowing more molds 340 to be loaded, thus effectively improving the utilization rate of the internal space of the freezer 310.

[0054] Example 2

[0055] like Figures 8-9 As shown, in this embodiment, the storage mechanism 300 includes the following parts: it has two slide rails 324, which are respectively fixed to one end of the placement rack 320 located on the inner walls of both sides. A square hole 325 is provided through the outer wall of the slide rail 324 at the center. The slide plate 326 slides inside the square hole 325. The second inclined block 327 slides inside the slide rail 324. A second spring 328 is fixedly connected between the outer wall of the second inclined block 327 and the inner wall of the slide rail 324.

[0056] In practice, after the raw material on the mold 340 has solidified, the motor 330 drives the spur gear 331 to rotate and mesh with the toothed plate 332, which moves the placement rack 320 out of the freezer 310. The operator holds the slide plate 326 and inserts it into the square hole 325. During this process, one end of the slide plate 326 contacts the inclined block 327. The inclined block 327 is squeezed and slides into the slide rail 324, releasing the limit at one end of the placement rack 320. The operator can then remove the mold 340 from the placement rack 320 and move it to the next process. By providing the slide plate 326, it is convenient for the operator to operate the slide plate 326 to release the limit at one end of the placement rack 320 and remove the mold 340 from the placement rack 320, which effectively improves the ease of operation.

[0057] It is apparent for a person skilled in the art that the present application is not limited to the details of the above-described exemplary embodiments, but that it can be implemented in other concrete forms without departing from the spirit or the essential characteristics of the present application. Therefore, the embodiments should be considered as exemplary and non-limiting, the scope of the present application being defined by the claims appended hereto rather than by the above description, and all the changes which fall within the meaning and the scope of the equivalent elements of the claims are intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the claims to the figures in which the reference signs are used.

[0058] Furthermore, it should be understood that although the present specification describes exemplary embodiments, not every embodiment contains only one independent technical solution, and the present specification is described in this way only for the sake of clarity, and a person skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that a person skilled in the art can understand.

Claims

1. A molding device for producing wine-based propolis, characterized in that, include: The forming mechanism (100) includes a conveying unit (110); The pushing mechanism (200) is fixed to the outer wall of one side of the conveying unit (110); The storage mechanism (300) is fixed on the conveying unit (110) at the opposite position to the pushing mechanism (200) and is capable of storing and cooling raw materials. The storage mechanism (300) includes a mold (340). The lifting mechanism (400) is fixed to the bottom of the storage mechanism (300) and can send the mold (340) into the storage mechanism (300).

2. The molding device for producing wine-processed propolis according to claim 1, characterized in that, Push organizations (200) include: Electric push rod 1 (210) is fixed to the outer wall of the conveying unit (110), and a square rod (211) is fixedly connected to one end of electric push rod 1 (210).

3. The molding device for producing wine-processed propolis according to claim 2, characterized in that, Storage facility (300) includes: The freezer (310) is fixed to the outer wall of the conveying unit (110); There are four racks (320), all of which slide inside the freezer (310), and two adjacent racks (320) are fixedly connected. Two long rods (329) are provided and are fixed at equal intervals on one side of the placement frame (320).

4. The molding device for producing wine-processed propolis according to claim 3, characterized in that, Storage facility (300) includes: Two toothed plates (332) are provided, which are respectively fixed between the bottoms of the four placement racks (320) on both sides; The motor (330) is fixed on the outer wall of one side of the freezer (310). The rotating shaft of the motor (330) is fixedly connected to a round rod (334). Both ends of the round rod (334) are fixedly connected to spur gears (331). The spur gears (331) mesh with the toothed plate (332) for transmission. Two square plates (333) are provided, and are respectively fixed to the bottom of one side of the outer wall of one of the placement racks (320) located on both sides.

5. A molding device for producing wine-processed propolis according to claim 4, characterized in that, Storage facility (300) includes: There are two slides (321), which are respectively opened on the inner walls of the bottom two sides of the placement rack (320). A slanted block (322) is slidably inserted into the slide (321); Spring 1 (323) is fixed between the outer wall of inclined block 1 (322) and the inner wall of slide groove (321).

6. The molding device for producing wine-processed propolis according to claim 5, characterized in that, Storage facility (300) includes: There are two slide rails (324), which are fixed to one end of the placement frame (320) on the inner wall on both sides respectively. A square hole (325) is opened through the outer wall of the slide rail (324) at the center. The slide plate (326) slides inside the square hole (325); The second inclined block (327) slides inside the slide rail (324), and the second spring (328) is fixedly connected between the outer wall of the second inclined block (327) and the inner wall of the slide rail (324).

7. A molding device for producing wine-processed propolis according to claim 6, characterized in that, The lifting mechanism (400) includes: The electric push rod 2 (410) is fixed to the bottom wall of the placement rack (320). One end of the electric push rod 2 (410) is fixedly connected to a T-shaped plate (411). The outer wall of the T-shaped plate (411) is slidably inserted into the bottom wall of the freezer (310).