Filling equipment for preparing vegetable protein adhesive
By designing a filling equipment for preparing plant protein adhesives, and utilizing a combination of heating elements and stirring rods, the problem of plant protein adhesives sticking together inside containers was solved, achieving efficient stirring and cleaning, and improving the operational stability of the equipment and the quality of the finished product.
Patent Information
- Application Number
- CN202423270780.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2034-12-30
AI Technical Summary
In traditional material mixing and preparation processes, plant protein adhesives tend to stick to the periphery of the reaction vessel due to heat dissipation, resulting in reduced quality and difficulty in cleaning. As operating time increases, cleaning becomes even more challenging.
The filling equipment consists of components such as a reference shell, a transmission main shell, a preparation main shell, a motor shell, and a stirring rod. The heating element maintains the material temperature, and the motor drives the rotating wheel and stirring rod for efficient mixing to prevent sticking. The filling and sealing are achieved through an inner spiral tube and an extrusion tube.
This effectively prevents plant protein adhesives from sticking together inside the container, improves cleaning efficiency, and ensures stable equipment operation and finished product quality.
Smart Images

Figure CN223921088U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of adhesive preparation and filling technology, specifically a filling device for preparing plant protein adhesive. Background Technology
[0002] Plant protein adhesives are environmentally friendly adhesives made from natural plant proteins through a special process. They possess excellent bonding properties, are non-toxic and harmless, and are suitable for bonding various materials such as wood, paper, and fibers. They are also resistant to aging and have strong water resistance, making them a green and environmentally friendly alternative to traditional synthetic adhesives.
[0003] The preparation of plant protein adhesives begins with selecting high-quality plant proteins as the main raw material, such as soybean protein and wheat protein. These proteins are typically rich in essential amino acids and possess good biocompatibility and adhesive properties. The plant protein is then thoroughly mixed with a specific cross-linking agent (such as carboxyphenylboronic acid) in a dispersion medium (such as water or an organic solvent). Stirring allows the protein molecules to chemically react with the cross-linking agent, forming a three-dimensional network structure. After mixing, the mixture is heated or an initiator is added to promote further cross-linking and curing, forming a stable adhesive. This step is crucial for improving the adhesive's strength and water resistance. To further enhance the adhesive's performance, the plant protein can undergo surface modification treatment, such as grafting with maleic anhydride, or the addition of other auxiliary components to enhance its water resistance, anti-mildew properties, etc. Throughout the production process, strict control of the raw material quality, reaction conditions, and the storage and transportation conditions of the final product is necessary to ensure the adhesive's stable and reliable performance. As the preparation of the plant protein adhesive is completed, the material gradually becomes sticky, and excessive cooling intervention should be avoided, as this increases the adhesive's brittleness and leads to poor product quality.
[0004] In traditional material mixing preparation, plant protein adhesives tend to stick to the periphery of the reaction vessel due to heat dissipation, resulting in reduced quality and easy adhesion to the surface, which becomes increasingly difficult to clean as the operating time increases. Utility Model Content
[0005] The purpose of this application is to provide a filling device for preparing plant protein adhesives, in order to solve the problem that, under the traditional material stirring preparation method mentioned above, plant protein adhesives tend to stick to the periphery of the reaction vessel due to heat dissipation, resulting in reduced quality and easy adhesion to the surface, which becomes increasingly difficult to clean as the running time increases.
[0006] The technical solution adopted in this application is as follows: A filling device for preparing plant protein adhesive includes a reference shell, a transmission main shell welded to the upper outer surface of the reference shell, a preparation main shell welded to the upper surface of the transmission main shell, a support column welded to the upper surface of the transmission main shell next to the preparation main shell, a motor shell fixedly connected to the support column corresponding to the upper outer surface of the preparation main shell, a rotating wheel fixedly connected to the outer surface of the output end of the motor shell, and a stirring rod welded to the lower surface of the middle of the rotating wheel.
[0007] By adopting the above technical solution, the reference shell provides a reference position for the filling of plant protein adhesive, the transmission main shell provides a support connection for the installation of the preparation parts, the material passes through the preparation main shell to complete the plant protein adhesive product, the heating element built into the preparation main shell ensures the storage temperature of the material, the rotation of the motor built into the motor shell drives the rotating wheel to rotate, the stirring rod provides higher efficiency stirring, and the outer cutting plate stirs the inner wall of the preparation main shell, avoiding the plant protein adhesive from sticking to the preparation main shell and causing adhesion, thus avoiding the difficulty of cleaning later.
[0008] In a preferred embodiment, the outer surface of the main body shell is welded with an outlet, and an inner spiral tube is movably sleeved on the lower surface of the outlet.
[0009] By adopting the above technical solution, the finished plant protein adhesive is stirred to the outlet and then discharged into the inner spiral tube.
[0010] In a preferred embodiment, a drive belt is movably connected to the inner surface of the inner spiral tube, and a drive pulley is movably connected to the outer surface of the drive belt.
[0011] By adopting the above technical solution, the internal threaded ring opens the drive wheel to drive the transmission belt and the internal spiral tube, extruding the plant protein adhesive into the extrusion tube.
[0012] In a preferred embodiment, an extrusion tube is movably sleeved on the lower surface of the inner spiral tube, and a support rod is welded to the lower surface of the extrusion tube.
[0013] By adopting the above technical solution, the plant protein adhesive is extruded and filled through the extrusion tube, and the support rod supports the extrusion tube to find the corresponding position.
[0014] In a preferred embodiment, a reciprocating rotary motor is provided on the outer surface of the reference housing, and a telescopic negative pressure motor is provided on the outer surface of the output end of the reciprocating rotary motor.
[0015] By adopting the above technical solution, the telescopic negative pressure motor adsorbs the packaging lid, and the reciprocating rotary motor rotates the corresponding packaging barrel, after which the telescopic negative pressure motor presses down to seal the packaging barrel and packaging lid.
[0016] In a preferred embodiment, the reference housing has a placement platform welded to the outer surface of the main housing on one side, and a placement box welded to the outer surface of the reference housing on the side away from the placement platform.
[0017] By adopting the above technical solution, the placement platform places the sealed packaging barrels and packaging lids, allowing them to cool naturally, and the placement box facilitates the placement of the packaging lids.
[0018] In a preferred embodiment, a support cylinder is welded to the lower surface of the main body shell, and a stepper motor is movably sleeved on the inner surface of the support cylinder.
[0019] By adopting the above technical solution, the stepper motor pushes the packaging barrel from the conveyor to the placement table by rotating a fixed angle each time.
[0020] In a preferred embodiment, the reference housing has a conveyor on its outer surface next to the placement platform, a packaging barrel is provided on the outer surface of the conveyor, and a packaging cover is provided on the outer surface of the placement box.
[0021] By adopting the above technical solution, the plant protein adhesive is stored in the packaging barrel by a conveyor, and then the packaging barrel is pushed to the placement platform by the rotation of a stepper motor.
[0022] In summary, due to the adoption of the above technical solution, the beneficial effects of this application are:
[0023] 1. The reference shell provides a reference position for filling the plant protein adhesive, the transmission body shell provides a support connection for the installation of the preparation parts, the material passes through the preparation body shell to complete the plant protein adhesive product, the preparation body shell has a built-in heating element to ensure the storage temperature of the material, the rotation of the motor inside the motor shell drives the rotating wheel to rotate, the stirring rod provides higher efficiency stirring, the outer cutting plate passes through the stirring of the inner wall of the preparation body shell to avoid the plant protein adhesive from sticking to the preparation body shell and causing adhesion, avoiding the difficulty of cleaning later;
[0024] Second, the overall structure of the equipment is simple, making it easy to clean and maintain. The rotation of the inner spiral tube effectively propels the finished plant protein adhesive. Through the action of the stepper motor, the equipment can be placed on the placement platform for natural cooling after filling, avoiding the reduction of the durability of the conveyor due to high temperature. Attached Figure Description
[0025] Figure 1 This is a front view of the overall shape of the device in this application;
[0026] Figure 2 This is a rear view of the overall shape of the equipment in this application;
[0027] Figure 3 This is a side view of the overall shape of the equipment in this application;
[0028] Figure 4 This is a schematic diagram of the external shape of the equipment fabrication structure in this application;
[0029] Figure 5 This is a schematic diagram showing the disassembly of the internal structure of the finished product propulsion system in this application.
[0030] The markings in the diagram are: 1. Base shell; 2. Transmission main shell; 3. Preparation main shell; 4. Support column; 5. Motor shell; 6. Rotating wheel; 7. Outer cutting plate; 8. Stirring rod; 9. Outlet; 10. Inner spiral tube; 11. Transmission belt; 12. Extrusion tube; 13. Support rod; 14. Reciprocating rotary motor; 15. Telescopic negative pressure motor; 16. Placement platform; 17. Placement box; 18. Stepper motor; 19. Support cylinder; 20. Conveyor; 21. Drive wheel; 22. Packaging barrel; 23. Packaging lid. Detailed Implementation
[0031] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions in the embodiments of this application will be clearly and completely described below in conjunction with the embodiments of this application. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0032] Example:
[0033] Reference Figure 1-4 A filling device for preparing plant protein adhesive includes a reference shell 1, a transmission main shell 2 welded to the upper outer surface of the reference shell 1, a preparation main shell 3 welded to the upper surface of the transmission main shell 2, a support column 4 welded to the upper surface of the transmission main shell 2 next to the preparation main shell 3, a motor shell 5 fixedly connected to the support column 4 corresponding to the upper outer surface of the preparation main shell 3, a rotating wheel 6 fixedly connected to the outer surface of the output end of the motor shell 5, and a stirring rod 8 welded to the lower surface of the middle of the rotating wheel 6.
[0034] The reference shell 1 provides a reference position for filling the plant protein adhesive, the transmission body shell 2 provides a support connection for the installation of the preparation components, the material passes through the preparation body shell 3 to complete the plant protein adhesive product, the preparation body shell 3 has a built-in heating element to ensure the storage temperature of the material, the rotation of the motor built into the motor shell 5 drives the rotating wheel 6 to rotate, the stirring rod 8 provides higher efficiency stirring, the outer cutting plate 7 stirs the inner wall of the preparation body shell 3 to avoid the plant protein adhesive from sticking to the preparation body shell 3 and causing adhesion, avoiding the difficulty of cleaning later.
[0035] Reference Figure 1-5The outer surface of the main body shell 3 is welded with an outlet 9, and an inner spiral tube 10 is movably sleeved on the lower surface of the outlet 9.
[0036] The finished plant protein adhesive is stirred and discharged through outlet 9 into inner spiral tube 10.
[0037] Reference Figure 1-5 The inner surface of the inner spiral tube 10 is movably connected to a transmission belt 11, and the outer surface of the transmission belt 11 is movably connected to a drive wheel 21.
[0038] The internal threaded ring drives the transmission belt 11 and the inner spiral tube 10 by opening the drive wheel 21, which in turn extrudes the plant protein adhesive into the extrusion tube 12.
[0039] Reference Figure 1-5 An extrusion tube 12 is movably sleeved on the lower surface of the inner spiral tube 10, and a support rod 13 is welded to the lower surface of the extrusion tube 12.
[0040] The extrusion tube 12 extrudes and fills the plant protein adhesive, and the support rod 13 supports the extrusion tube 12 to find the corresponding position.
[0041] Reference Figure 1-3 A reciprocating rotary motor 14 is provided on the outer surface of the reference housing 1, and a telescopic negative pressure motor 15 is provided on the outer surface of the output end of the reciprocating rotary motor 14.
[0042] The telescopic negative pressure motor 15 adsorbs the packaging cover 23, and the reciprocating rotary motor 14 rotates the corresponding packaging barrel 22. After that, the telescopic negative pressure motor 15 presses down to seal the packaging barrel 22 and the packaging cover 23.
[0043] Reference Figure 1-3 The reference shell 1 has a placement platform 16 welded to the outer surface of the main shell 3 on one side, and a placement box 17 welded to the outer surface of the reference shell 1 away from the placement platform 16.
[0044] The placement platform 16 places the sealed packaging barrel 22 and packaging lid 23 for natural cooling, and the placement box 17 facilitates the placement of the packaging lid 23.
[0045] Reference Figure 1-3 A support cylinder 19 is welded to the lower surface of the main body shell 3, and a stepper motor 18 is movably sleeved on the inner surface of the support cylinder 19.
[0046] The stepper motor 18 pushes the packaging barrel 22 from the conveyor 20 to the placement table 16 by rotating a fixed angle each time.
[0047] Reference Figure 1-3 A conveyor 20 is provided on the outer surface of the reference housing 1 next to the placement platform 16, a packaging barrel 22 is provided on the outer surface of the conveyor 20, and a packaging cover 23 is provided on the outer surface of the placement box 17.
[0048] The plant protein adhesive is stored in the packaging barrel 22 by the conveyor 20, and then the packaging barrel 22 is pushed to the placement platform 16 by the rotation of the stepper motor 18.
[0049] The implementation principle of an embodiment of a filling device for preparing plant protein adhesives according to this application is as follows:
[0050] In use, the material is processed into a finished plant protein adhesive through the main body shell 3. The main body shell 3 has a built-in heating element to ensure the storage temperature of the material. The rotation of the motor inside the motor shell 5 drives the rotating wheel 6 to rotate. The stirring rod 8 provides more efficient stirring. The outer cutting plate 7 stirs the inner wall of the main body shell 3 to prevent the plant protein adhesive from sticking to the main body shell 3 and causing adhesion, thus avoiding the difficulty of cleaning later. The finished plant protein adhesive is stirred to the outlet 9 and then discharged into the inner spiral tube 10. The internal threaded ring drives the transmission belt 11 and the inner spiral tube 10 through the drive wheel 21 to extrude the plant protein adhesive into the extrusion tube 12. The conveyor 20 drives the packaging barrel 22 to store the plant protein adhesive. Then, the stepper motor 18 rotates to push the packaging barrel 22 to the placement platform 16. The telescopic negative pressure motor 15 adsorbs the packaging cap 23. After the reciprocating rotary motor 14 rotates the corresponding packaging barrel 22, the telescopic negative pressure motor 15 presses down to seal the packaging barrel 22 and the packaging cap 23.
[0051] The above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this application.
Claims
1. A filling device for preparing plant protein adhesive, comprising a reference shell (1), characterized in that: The upper outer surface of the reference shell (1) is welded with a transmission main shell (2), the upper surface of the transmission main shell (2) is welded with a preparation main shell (3), the upper surface of the transmission main shell (2) is welded with a support column (4) next to the preparation main shell (3), the support column (4) is fixedly connected to the upper outer surface of the preparation main shell (3) with a motor shell (5), the outer surface of the output end of the motor shell (5) is fixedly connected with a rotating wheel (6), and the lower surface of the middle of the rotating wheel (6) is welded with a stirring rod (8).
2. The filling equipment for preparing plant protein adhesive as described in claim 1, characterized in that: The outer surface of the main body shell (3) is welded with an outlet (9), and an inner spiral tube (10) is movably sleeved on the lower surface of the outlet (9).
3. The filling equipment for preparing plant protein adhesive as described in claim 2, characterized in that: The inner surface of the inner spiral tube (10) is movably connected to a transmission belt (11), and the outer surface of the transmission belt (11) is movably connected to a drive wheel (21).
4. The filling equipment for preparing plant protein adhesive as described in claim 2, characterized in that: The lower surface of the inner spiral tube (10) is movably sleeved with an extrusion tube (12), and a support rod (13) is welded to the lower surface of the extrusion tube (12).
5. The filling equipment for preparing plant protein adhesive as described in claim 1, characterized in that: The outer surface of the reference housing (1) is provided with a reciprocating rotary motor (14), and the outer surface of the output end of the reciprocating rotary motor (14) is provided with a telescopic negative pressure motor (15).
6. The filling equipment for preparing plant protein adhesive as described in claim 1, characterized in that: The reference shell (1) has a placement platform (16) welded to the outer surface of the main shell (3) on one side, and a placement box (17) welded to the outer surface of the reference shell (1) away from the placement platform (16).
7. The filling equipment for preparing plant protein adhesive as described in claim 1, characterized in that: The lower surface of the main body shell (3) is welded with a support cylinder (19), and a stepper motor (18) is movably sleeved on the inner surface of the support cylinder (19).
8. The filling equipment for preparing plant protein adhesive as described in claim 6, characterized in that: The reference housing (1) has a conveyor (20) on its outer surface next to the placement platform (16), a packaging barrel (22) on its outer surface, and a packaging cover (23) on its outer surface.