A stirring assembly and a production device for carbon-fixing wall thermal insulation materials

Through the detachable installation of components and material conveying mechanism, the problems of difficulty in replacing traditional mixing plates and uneven mixing are solved, and convenient replacement of mixing plates and uniform mixing of materials are achieved.

CN116272480BActive Publication Date: 2025-07-11THE SECOND CONSTR OF CHINA CONSTR EIGHTH ENG DIV +1
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202310416466.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-19
Publication Date
2025-07-11
Estimated Expiration
2043-04-19

AI Technical Summary

Technical Problem

The traditional stirring plate is fixedly welded on the stirring shaft, which makes it difficult to replace and the stirring effect unevenly, making it impossible to effectively improve the mixing uniformity of the material.

Method used

Using detachable mounting components and locking components, the mixing plate is detachably installed on the mixing shaft, and a material conveying mechanism is installed on the mixing plate to realize the up and down conveying of materials, and combining with the crushing components to improve the mixing effect.

Benefits of technology

It is convenient to replace the deformation stirring plate, improving the stirring uniformity and material mixing effect.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN116272480B_ABST
    Figure CN116272480B_ABST
Patent Text Reader

Abstract

The present invention relates to the technical field of stirring plates, and specifically to a stirring assembly and a production device for carbon-fixing wall thermal insulation materials, including a stirring plate. One end of the stirring plate is provided with an installation assembly, the surface of the installation assembly is provided with a locking assembly, the surface of the stirring plate is provided with a crushing assembly for crushing agglomerated materials, and the other end of the stirring plate is provided with a feeding mechanism for dispersing and mixing the materials at the other end of the stirring plate to the upper and lower sides; The beneficial effects are as follows: The stirring assembly and the production device for carbon-fixing wall thermal insulation materials proposed by the present invention adopt the installation assembly in cooperation with the locking assembly to realize the detachable installation of the stirring plate on the traditional stirring shaft, which is convenient for separately replacing the deformed stirring plate in the later stage; and a feeding mechanism is installed on the stirring plate to realize the transportation of the materials at the horizontal height where the stirring plate is located to the upper and lower sides, which is beneficial to improving the uniformity of the mixed materials of the stirring plate.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of stirring plates, and particularly to a stirring assembly and a production device for carbon-fixing wall thermal insulation materials. Background Art

[0002] Carbon fixation refers to measures to increase the carbon content in carbon pools other than the atmosphere, including physical carbon fixation and biological carbon fixation. Physical carbon fixation is to store carbon dioxide in oil and gas wells, coal seams, and deep seas that have been exploited for a long time. Biological carbon fixation is to convert inorganic carbon, that is, carbon dioxide in the atmosphere, into organic carbon, that is, carbohydrates, and fix it in plants or soil.

[0003] In the prior art, wall thermal insulation materials (also known as inorganic active wall thermal insulation materials) can greatly save wall materials, improve the wall thermal insulation performance, save resources, and reduce environmental pollution. They are new materials focusing on internal and external wall insulation; wooden materials can be used for most structures of any building, so as to achieve the purpose of carbon fixation and realize the goal of reducing carbon emissions. The greatest potential for carbon fixation can be achieved in external walls, floors, and roof structures. For example, a passive house designed for cold climates has two mutually replaceable building exterior wall systems: a wooden frame wall filled with thermal insulation materials and a concrete wall insulated with EPS external thermal insulation materials. When producing carbon-fixing wall thermal insulation materials, a stirring shaft is needed to mix materials.

[0004] However, the stirring plates on the surface of the traditional stirring shaft are all fixedly welded to the stirring shaft. When the stirring plates are deformed after long-term use and affect the stirring effect, it is not convenient to replace a single stirring plate. Moreover, when the traditional stirring plates rotate with the stirring shaft, they can only mix the materials at the horizontal height where the stirring plates are located, which is not convenient for improving the stirring uniformity. Summary of the Invention

[0005] The purpose of the present invention is to provide a stirring assembly and a production device for carbon-fixing wall thermal insulation materials to solve the problems raised in the above background art.

[0006] To achieve the above purpose, the present invention provides the following technical solution: A stirring assembly includes a stirring plate. An installation assembly is provided at one end of the stirring plate, a locking assembly is provided on the surface of the installation assembly, a crushing assembly is provided on the surface of the stirring plate for crushing agglomerated materials, and a feeding mechanism is provided at the other end of the stirring plate to disperse and mix the materials at the other end of the stirring plate to the upper and lower sides.

[0007] Preferably, the installation assembly includes a hoop plate, an embedding groove, a rubber clamping strip, and a positioning plug. The positioning plug is fixed on the inner ring surface of the hoop plate. There are two groups of embedding grooves, and the two groups of embedding grooves are symmetrically distributed with respect to the positioning plug. Both groups of embedding grooves are opened on the inner ring surface of the hoop plate. The rubber clamping strip is fixed in the embedding groove, and the width of the rubber clamping strip is greater than the depth of the embedding groove.

[0008] Preferably, the locking assembly includes a reserved groove, a connecting slot, a connecting plug-in, a through-hole, a block and an elastic traction belt. The reserved groove is provided with two groups, and the two groups of reserved grooves are respectively opened on the top surface of the plate body at both ends of the hoop plate, and the connecting slot is opened on the bottom surface of the reserved groove. The connecting plug-in is a "π"-shaped plate structure. The connecting plug-in includes two parallel side panels and a top plate fixed on the two groups of side panels. The two parallel side panels of the connecting plug-in are respectively movably plugged into the two groups of connecting slots, and the top plate of the connecting plug-in overlaps the reserved groove.

[0009] Preferably, the through-opening is opened on the end plate body of the hoop plate, the through-opening and the reserved groove correspond one to one, and the through-opening and the reserved groove are connected, the block is movably inserted in the through-opening, and the block extends into the reserved groove after passing through the through-opening. When the top plate of the connecting plug-in is overlapped on the reserved groove, the block is above the top plate of the connecting plug-in, thereby realizing anti-detachment limiting of the connecting plug-in.

[0010] Preferably, the top surface of one end of the block extending into the reserved groove is provided with a slope, and the center of the other end of the block is fixed on the intersection node of the elastic traction belt. The elastic traction belt is a "cross" shaped plate structure, and the four ends of the elastic traction belt are fixed on the end plate surface of the hoop plate.

[0011] Preferably, the crushing assembly includes a mounting port and a cutting blade. The mounting port is opened on the surface of the stirring plate. There are multiple mounting ports, and the multiple mounting ports are arranged and distributed along the long side of the stirring plate. The cutting blade is a diamond column structure, and the cutting blade is fixed on the surface of the mounting port, and the blade of the cutting blade protrudes from the mounting port.

[0012] Preferably, the feeding mechanism includes a mounting groove, a motor, a sealing plate, a spiral feeding shaft, a protective cover, a support column, a discharge port and a feed guide pipe. Two groups of mounting grooves are provided, and the two groups of mounting grooves are respectively opened on the top surface and the bottom surface of the stirring plate. The motor is fixed in the mounting groove, and the shaft of the motor passes through the inner ring opening of the sealing plate. The sealing plate has an annular plate structure, and the sealing plate is fixed at the notch of the mounting groove, and the spiral feeding shaft is fixed on the shaft of the motor.

[0013] Preferably, the protective cover is sleeved on the outside of the spiral feed shaft, a plurality of support columns are fixed to one end of the protective cover, one end of the support columns is fixed to the surface of the stirring plate, the discharge port is opened on the surface of the protective cover, the feed guide pipe is fixed on the outer wall of the protective cover, and the feed guide pipe and the protective cover are connected, and a power supply component is provided at the other end of the stirring plate to provide power to the motor.

[0014] Preferably, the power supply assembly includes a battery compartment, a battery and a baffle, the battery compartment is opened at the other end of the stirring plate, the battery is fixed in the battery compartment, the battery is connected to the motor through a wire, the baffle is fixed to the other end of the stirring plate by screws, and the baffle seals the battery compartment.

[0015] A production device for a carbon-fixing wall thermal insulation material, including the stirring assembly described above.

[0016] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0017] The stirring assembly and the production device for the carbon-fixing wall thermal insulation material proposed by the present invention adopt an installation assembly in cooperation with a locking assembly to realize the detachable installation of the stirring plate on a traditional stirring shaft, which is convenient for separately replacing the deformed stirring plate in the later stage; and a feeding mechanism is installed on the stirring plate to realize the transportation of the materials at the horizontal height where the stirring plate is located to the upper and lower sides, which is beneficial to improving the uniformity of the mixed materials of the stirring plate. Description of the Drawings

[0018] Figure 1 It is a schematic structural diagram of the present invention;

[0019] Figure 2 is Figure 1 an enlarged schematic diagram of the structure at A in

[0020] Figure 3 It is a schematic structural diagram of the present invention after the baffle is installed;

[0021] Figure 4 It is a half-sectional schematic diagram of the structure of the present invention;

[0022] Figure 5 It is a schematic diagram of the structure of the stirring plate of the present invention;

[0023] Figure 6 It is a schematic diagram of the structure of the hoop plate of the present invention;

[0024] Figure 7 It is a schematic diagram of the structure of the protective cover of the present invention;

[0025] Figure 8 It is a schematic diagram of the structure of the connection plug of the present invention.

[0026] In the figure: stirring plate 1, hoop plate 2, embedding groove 3, rubber clamping strip 4, positioning plug 5, reserved groove 6, connection slot 7, connection plug 8, through hole 9, stop block 10, elastic traction belt 11, installation port 12, slitting knife plate 13, installation groove 14, motor 15, sealing plate 16, spiral feeding shaft 17, protective cover 18, support column 19, discharge port 20, guiding pipe 21, battery compartment 22, storage battery 23, baffle 24. Detailed Embodiments

[0027] In order to clearly and completely describe the purpose, technical solution of the present invention and make its advantages more clearly understood, the following further details the embodiments of the present invention with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are part of the embodiments of the present invention, rather than all of the embodiments, and are only used to explain the embodiments of the present invention, not to limit the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.

[0028] Embodiment 1

[0029] Please refer to Figure 1 、 Figures 3 to 5 The present invention provides a technical solution: a stirring assembly, including a stirring plate 1. One end of the stirring plate 1 is provided with an installation assembly, the surface of the installation assembly is provided with a locking assembly, the surface of the stirring plate 1 is provided with a crushing assembly for crushing agglomerated materials, and the other end of the stirring plate 1 is provided with a feeding mechanism for dispersing and mixing the materials at the other end of the stirring plate 1 to the upper and lower sides; the installation assembly is combined with the locking assembly to realize the detachable installation of the stirring plate 1 on the traditional stirring shaft, which is convenient for separately replacing the deformed stirring plate 1 in the later stage; and a feeding mechanism is installed on the stirring plate 1 to realize the transportation of the materials at the horizontal height where the stirring plate 1 is located to the upper and lower sides, which is beneficial to improving the uniformity of the mixed materials of the stirring plate 1.

[0030] Embodiment 2

[0031] Refer to the attached Figure 2 、 Figure 6 And Figure 8On the basis of the first embodiment, in order to realize the hanging installation of the stirring plate 1 on the traditional stirring shaft, a hole for the positioning plug 5 to be inserted is pre-opened on the surface of the stirring shaft, and the installation component includes a hoop plate 2, an embedding groove 3, a rubber clamp 4 and a positioning plug 5, the positioning plug 5 is fixed on the inner ring surface of the hoop plate 2, and the embedding groove 3 is provided with two groups, the two groups of embedding grooves 3 are symmetrically distributed about the positioning plug 5, and the two groups of embedding grooves 3 are both provided on the inner ring surface of the hoop plate 2, the rubber clamp 4 is fixed in the embedding groove 3, and the width of the rubber clamp 4 is greater than the depth of the embedding groove 3, the locking component includes a reserved groove 6, a connecting slot 7, a connecting plug 8, a through-hole 9, a stopper 10 and an elastic traction belt 11, the reserved groove 6 is provided with two groups, the two groups of reserved grooves 6 are respectively opened on the top surface of the plate body at both ends of the hoop plate 2, the connecting slot 7 is opened on the bottom surface of the reserved groove 6, the connecting plug 8 is a "π"-shaped plate structure, and the connecting plug Component 8 includes two parallel side panels and a top panel fixed on the two groups of side panels. The two parallel side panels of the connecting plug-in 8 are respectively movably inserted in the two groups of connecting slots 7. The top panel of the connecting plug-in 8 is overlapped on the reserved groove 6. The through-hole 9 is arranged on the end plate of the hoop plate 2. The through-hole 9 corresponds to the reserved groove 6 one by one, and the through-hole 9 is connected to the reserved groove 6. The stopper 10 is movably inserted in the through-hole 9. The stopper 10 penetrates the through-hole 9 and then extends into the reserved groove 6. When the top panel of the connecting plug-in 8 is overlapped on the reserved groove 6, the stopper 10 is located above the top panel of the connecting plug-in 8, so as to realize the anti-dropping limit of the connecting plug-in 8; the top surface of one end of the stopper 10 extending into the reserved groove 6 is provided with an inclined surface, and the center of the other end of the stopper 10 is fixed on the intersection node of the elastic traction belt 11. The elastic traction belt 11 is a "cross" plate-shaped structure, and the four ends of the elastic traction belt 11 are fixed on the end plate surface of the hoop plate 2.

[0032] The hoop plate 2 is opened from both ends and buckled on the traditional stirring shaft. During this process, the positioning plug 5 is aligned with the hole opened on the surface of the stirring shaft to form a locking structure, and then the connecting plug 8 is pushed down along the inclined surface of the block 10, and the block 10 slides along the through-opening 9 and tensions the elastic traction belt 11. After the side plate of the connecting plug 8 is inserted into the connecting slot 7, the top plate of the connecting plug 8 is overlapped on the reserved groove 6, and the elastic traction belt 11 rebounds to pull the block 10 to reset. The block 10 blocks one side of the connecting plug 8 to prevent the side plate of the connecting plug 8 from slipping out of the connecting slot 7. In this way, the connecting plug 8 is connected to the two end plates of the hoop plate 2, and the hoop plate 2 is fixed on the stirring shaft.

[0033] Embodiment 3

[0034] On the basis of Embodiment 2, in order to break up agglomerated materials during the stirring process, the crushing assembly includes an installation opening 12 and a slitting knife plate 13. The installation opening 12 is formed on the surface of the stirring plate 1. There are multiple installation openings 12, and the multiple installation openings 12 are arranged and distributed along the long side of the stirring plate 1. The slitting knife plate 13 has a rhombic prism structure. The slitting knife plate 13 is fixed on the surface of the installation opening 12, and the cutting edge of the slitting knife plate 13 protrudes from the installation opening 12. During the rotation of the stirring plate 1 following the stirring shaft, the cutting edge of the slitting knife plate 13 cuts up the agglomerated materials.

[0035] Embodiment 4

[0036] Refer to the attached Figure 7 , on the basis of Embodiment 3, in order to disperse the materials at the horizontal height where the stirring plate 1 is located to the upper and lower sides, the material conveying mechanism includes an installation groove 14, a motor 15, a sealing plate 16, a spiral feeding shaft 17, a protective cover 18, a support column 19, a discharge port 20 and a guiding pipe 21. There are two groups of installation grooves 14, and the two groups of installation grooves 14 are respectively formed on the top surface and the bottom surface of the stirring plate 1. The motor 15 is fixed in the installation groove 14. The shaft body of the motor 15 penetrates through the inner ring opening of the sealing plate 16. The sealing plate 16 has an annular plate structure. The sealing plate 16 is fixed at the notch of the installation groove 14, and the spiral feeding shaft 17 is fixed on the shaft body of the motor 15. The protective cover 18 is sleeved outside the spiral feeding shaft 17. One end of the protective cover 18 is fixed with a plurality of support columns 19, and one end of the support column 19 is fixed on the surface of the stirring plate 1. The discharge port 20 is formed on the surface of the protective cover 18. The guiding pipe 21 is fixed on the outer wall of the protective cover 18, and the guiding pipe 21 is communicated with the protective cover 18. There is a power supply assembly at the other end of the stirring plate 1 to supply power to the motor 15. The power supply assembly includes a battery compartment 22, a storage battery 23 and a baffle 24. The battery compartment 22 is formed at the other end of the stirring plate 1. The storage battery 23 is fixed in the battery compartment 22. The storage battery 23 is connected to the motor 15 through a wire. The baffle 24 is fixed at the other end of the stirring plate 1 by screws, and the baffle 24 blocks the battery compartment 22.

[0037] During the process of the stirring plate 1 rotating following the stirring shaft to mix the materials, the motor 15 is started to drive the spiral feeding shaft 17 to rotate. The spiral feeding shaft 17 conveys the materials close to the stirring plate 1 to the discharge port 20, and the conveyed materials are discharged through the guiding pipe 21. In this way, the materials at the horizontal height where the stirring plate 1 is located are evacuated to both sides in the vertical direction, which is convenient for improving the mixing uniformity of the materials.

[0038] Embodiment 5

[0039] A carbon sequestration wall thermal insulation material production device includes a stirring assembly.

[0040] Although embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A stirring assembly, comprising a stirring plate (1), characterized in that: One end of the stirring plate (1) is provided with a mounting assembly, the surface of the mounting assembly is provided with a locking assembly, the surface of the stirring plate (1) is provided with a crushing assembly for crushing agglomerated materials, and the other end of the stirring plate (1) is provided with a feeding mechanism for dispersing and mixing materials at the other end of the stirring plate (1) to the upper and lower sides; the mounting assembly comprises a hoop plate (2), an embedding groove (3), a rubber clamping strip (4) and a positioning plug-in block (5), the positioning plug-in block (5) being fixed on the inner ring surface of the hoop plate (2), the embedding groove (3) being provided with two groups, the two groups of embedding grooves (3) being symmetrically distributed about the positioning plug-in block (5), and the two groups of embedding grooves (3) being both opened on the inner ring surface of the hoop plate (2), the rubber clamping strip (4) being fixed in the embedding groove (3), the width of the rubber clamping strip (4) being greater than the depth of the embedding groove (3); the locking assembly comprises a reserved groove (6), a connecting slot (7), a connecting plug-in block (8), a through-hole (9), a stopper (10) and an elastic traction belt (11), the reserved groove (6) Two groups of reserved grooves (6) are provided, the two groups of reserved grooves (6) are respectively opened on the top surface of the plate body at both ends of the hoop plate (2), the connecting slots (7) are opened on the bottom surface of the reserved grooves (6), the connecting plug (8) is in a "π"-shaped plate structure, the connecting plug (8) includes two parallel side plates and a top plate fixed on the two groups of side plates, the two parallel side plates of the connecting plug (8) are respectively movably plugged into the two groups of connecting slots (7), and the top plate of the connecting plug (8) overlaps the reserved grooves (6). The through opening (9) is formed on the end plate of the hoop plate (2), the through opening (9) and the reserved groove (6) correspond to each other, and the through opening (9) and the reserved groove (6) are connected, the stopper (10) is movably inserted in the through opening (9), and the stopper (10) extends into the reserved groove (6) after passing through the through opening (9). When the top plate of the connecting plug-in (8) overlaps the reserved groove (6), the stopper (10) is located above the top plate of the connecting plug-in (8), thereby realizing the anti-drop limit of the connecting plug-in (8).

2. The stirring assembly according to claim 1, characterized in that: The top surface of one end of the stopper (10) extending into the reserved groove (6) is provided with an inclined surface, and the center of the other end of the stopper (10) is fixed to the intersection node of the elastic traction belt (11), the elastic traction belt (11) is a "cross"-shaped plate structure, and the four ends of the elastic traction belt (11) are all fixed to the end plate surface of the hoop plate (2).

3. A stirring assembly according to claim 1, characterized in that: The crushing assembly comprises a mounting opening (12) and a slitting blade (13); the mounting opening (12) is provided on the surface of the stirring plate (1); a plurality of mounting openings (12) are provided, and the plurality of mounting openings (12) are arranged and distributed along the long side of the stirring plate (1); the slitting blade (13) is in a rhombus columnar structure; the slitting blade (13) is fixed on the surface of the mounting opening (12), and a blade of the slitting blade (13) protrudes from the mounting opening (12).

4. A stirring assembly according to claim 1, characterized in that: The feeding mechanism includes an installation groove (14), a motor (15), a sealing plate (16), a spiral feeding shaft (17), a protective cover (18), a support column (19), a discharge port (20) and a guiding pipe (21). There are two groups of installation grooves (14), which are respectively opened on the top surface and the bottom surface of the stirring plate (1). The motor (15) is fixed in the installation groove (14), and the shaft body of the motor (15) penetrates through the inner ring opening of the sealing plate (16). The sealing plate (16) is in the shape of an annular plate and is fixed at the notch of the installation groove (14), and the spiral feeding shaft (17) is fixed on the shaft body of the motor (15).

5. A stirring assembly according to claim 4, wherein: The protective cover (18) is sleeved outside the spiral feeding shaft (17). One end of the protective cover (18) is fixed with a plurality of support columns (19), and one end of the support column (19) is fixed on the surface of the stirring plate (1). The discharge port (20) is opened on the surface of the protective cover (18). The guiding pipe (21) is fixed on the outer wall of the protective cover (18), and the guiding pipe (21) communicates with the protective cover (18). The other end of the stirring plate (1) is provided with a power supply assembly to supply power to the motor (15).

6. The stirring assembly according to claim 5, characterized in that: The power supply assembly includes a battery compartment (22), a storage battery (23) and a baffle (24). The battery compartment (22) is opened at the other end of the stirring plate (1). The storage battery (23) is fixed in the battery compartment (22). The storage battery (23) is connected to the motor (15) through a wire. The baffle (24) is fixed at the other end of the stirring plate (1) by screws, and the baffle (24) blocks the battery compartment (22).

7. A production device for a carbon-fixing wall thermal insulation material, characterized in that: It includes the stirring assembly according to any one of the above claims 1-6.

Citation Information

Patent Citations

  • Pretreatment device and treatment method for mass spectrometric detection of traditional Chinese medicine

    CN115962997A

  • Stirring blade and stirring barrel for polyferric sulfate

    CN218047353U