A mixing auxiliary mechanism for a coating processing device

By designing a mixing auxiliary mechanism in the coating mixing device, using the transmission shaft and scraper rod assembly, the problem of difficulty in adding and scaling of the adhered materials is solved, and more efficient coating mixing is achieved.

CN119607954BActive Publication Date: 2025-06-27GUOKE XIANCAI (HEFEI) TECH CO LTD
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Patent Information

Application Number
CN202510146914.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-11
Publication Date
2025-06-27
Estimated Expiration
2045-02-11

AI Technical Summary

Technical Problem

The existing coating mixing devices lack an adaptive mixing auxiliary mechanism, which makes it difficult for splashing materials on the inner side wall of the mixing chamber to be added to mix, and adhere to form scale, affecting the mixing efficiency.

Method used

A mixing auxiliary mechanism for coating processing equipment is designed, including a mixing auxiliary component connected to the mixing mechanism, and the mixing blades are driven to mix through a transmission rotary shaft, and the first scraping rod, the second scraping rod and the third scraping rod are used to scrape and clean the adhered material.

Benefits of technology

Effectively remove adhered materials on the inner side wall of the mixing chamber, prevent scaling, improve mixing efficiency, and ensure uniform mixing of materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of coating mixing and processing, and specifically relates to a mixing auxiliary mechanism for a coating processing device. In this solution, for the materials splashing on the top of the inner cavity of the mixing tank body, they are removed by the provided mixing auxiliary component. On the one hand, the adhered materials are scraped in time to avoid scale formation due to long-term adhesion, which affects the quality of the materials for subsequent mixing and processing. On the other hand, the adhered materials are subjected to timely mixing treatment. It scrapes the materials adhered to the inner cavity of the mixing tank body through the provided first scraping rod. The second scraping rod contacts the side wall of the inner cavity of the mixing tank body, and the third scraping rod contacts the conical body at the bottom of the inner cavity of the mixing tank body. When multiple materials may be added simultaneously from the feed port or when a reaction auxiliary reagent needs to be added, by setting an auxiliary device on the bottom side of the first scraping rod, a mixing and dispersing effect can be provided, which has a corresponding auxiliary effect on its mixing work.
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Description

Technical Field

[0001] The present invention relates to the technical field of paint mixing and processing, and specifically relates to a mixing auxiliary mechanism for a paint processing device. Background Art

[0002] Paint is one of the most widely used decorative and protective materials in the current market. With the continuous development of society, the requirements for paint are also getting higher and higher. When preparing modified paint, it is usually necessary to evenly mix its raw materials, so a mixing device is required; a document with the publication number CN221558083U discloses a modified paint mixing device, and its solution includes a main body mechanism and an auxiliary mixing mechanism. The auxiliary mixing mechanism is located above the main body mechanism. The main body mechanism includes a bottom plate, support feet, a mixing tank, and a replenishing pipe. The support feet are fixedly installed at the lower end of the bottom plate, the mixing tank is fixedly installed at the upper end of the bottom plate, and the replenishing pipe is fixedly installed at the left end of the upper end of the mixing tank; the main body mechanism also includes an efficient mixing component and a baffle.

[0003] In the above solution, improvements and optimizations are made to the problem that the materials adhering to the mixing rod during the mixing process affect the mixing efficiency; however, there is a lack of a corresponding mixing auxiliary mechanism for the materials adhering to the inner side wall of the mixing cavity, especially at the top side wall position of the mixing cavity. During the mixing process, the missing materials splashed and adhered to the side wall of the mixing cavity are difficult to be added to the mixing work, and the long-term adhesion will form scale. If not removed in time, it will affect the overall mixing and processing efficiency; the existing paint mixing device lacks a matching mixing auxiliary mechanism to meet its actual use requirements and needs to be improved and optimized.

[0004] Therefore, the present invention proposes a mixing auxiliary mechanism for a paint processing device to solve the above problems. Summary of the Invention

[0005] The purpose of the present invention is to provide a mixing auxiliary mechanism for a paint processing device 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 mixing auxiliary mechanism for a paint processing device, including a mixing auxiliary component,

[0007] The mixing auxiliary component is connected to the mixing mechanism, and the mixing mechanism is arranged in the inner cavity of the mixing tank body;

[0008] The bottom end of the mixing tank body is fixedly provided with support legs, and the top of the mixing tank body is provided with a cover;

[0009] The cover is provided with a feed inlet and a control motor, and the control motor is connected to the mixing mechanism;

[0010] The bottom side wall of the main body of the mixing tank is provided with a discharge port, and a control valve body is arranged on the discharge port;

[0011] A cone body is fixedly arranged at the bottom end of the inner cavity of the main body of the mixing tank.

[0012] Preferably, the mixing mechanism includes a transmission rotating shaft and stirring blades; wherein the transmission rotating shaft is connected to a control motor, and stirring blades are fixedly arranged at equal intervals on the side wall of the transmission rotating shaft.

[0013] Preferably, the stirring blades are arranged obliquely, and the end of the stirring blade fixedly connected to the transmission rotating shaft is lower than the other end; the transmission rotating shaft is connected to a mixing auxiliary component.

[0014] Preferably, the wrapping fixing plate in the mixing auxiliary component is provided with mounting holes, and the wrapping fixing plate is arranged in an arc shape. The wrapping fixing plate is closely attached to the side wall of the transmission rotating shaft and is fixed by set fixing screws. The wrapping fixing plate is fixedly arranged at one end of a first scraping rod, and a second scraping rod is fixedly arranged at the other end of the first scraping rod.

[0015] Preferably, auxiliary slopes are symmetrically arranged on both sides of the bottom of the first scraping rod, and the cross-sectional shape of the end of the first scraping rod is an inverted cone. The second scraping rod is arranged vertically, and on the vertical direction, inclined surfaces are symmetrically arranged on both sides of the second scraping rod, and the overall shape of the second scraping rod is also an inverted cone; a third scraping rod is fixedly arranged at the bottom end of the first scraping rod, and the third scraping rod is arranged obliquely and is in contact with the cone body in the inner cavity of the main body of the mixing tank.

[0016] Preferably, a connecting auxiliary part is arranged on the second scraping rod. A stable connecting rod body in the connecting auxiliary part is fixedly arranged on the second scraping rod, and the stable connecting rod bodies are arranged at equal intervals in a straight line.

[0017] Preferably, the second scraping rod is arranged obliquely, and a connecting plate head is fixedly arranged at the other end of the second scraping rod. A docking hole body is arranged in the connecting plate head, and the connecting plate head is fixedly connected to the stirring blade by screws.

[0018] Preferably, an auxiliary device is arranged on the bottom side of the first scraping rod, and the auxiliary device corresponds to the position of the feed port. An installation groove body in the auxiliary device is arranged on the auxiliary slope, and a threaded groove is arranged in the installation groove body. The installation groove body is adaptively clamped with an installation card plate. A positioning hole groove is arranged on the side of the installation card plate, and the installation card plate is fixed by screws. A fixing strip body is fixedly arranged at the bottom end of the installation card plate. A regulating sliding groove penetrates through the fixing strip body. A side groove body is arranged at the bottom side of the regulating sliding groove, and regulating positioning threaded grooves are arranged at equal intervals in the regulating sliding groove.

[0019] Preferably, a sliding block body is slidably arranged in the adjustment chute. A through hole body is arranged in the sliding block body. The number of sets of the sliding block body and the dispersing plate body is the same. A connecting groove body is arranged in the dispersing plate body. A positioning threaded pin is adaptively inserted in the connecting groove body. A handle head is fixedly arranged at one end of the positioning threaded pin. The positioning threaded pin passes through the connecting groove body and then inserts into the through hole body, and one end of the positioning threaded pin is threadedly connected with the adjustment positioning threaded groove.

[0020] Preferably, inclined surfaces are symmetrically arranged on both sides of the dispersing plate body, and the cross-sectional shape of the side end of the dispersing plate body is a rhombus.

[0021] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0022] The mixing auxiliary mechanism for the coating processing device designed by the present invention, on the one hand, in this solution, the material enters from the feed port, the control motor drives the transmission rotating shaft to rotate, and the transmission rotating shaft drives the stirring blades to mix and process the material. The mixed and processed material is then discharged from the discharge port; during the mixing and processing of the material, for the material splashing on the top of the inner cavity of the mixing tank body, it is removed by the provided mixing auxiliary component. On the one hand, the adhered material is scraped in time to avoid scale formation due to long-term adhesion, which affects the quality of the material for subsequent mixing and processing; on the other hand, the adhered material is subjected to timely mixing treatment; the adhered material in the inner cavity of the mixing tank body is scraped by the provided first scraping rod. The second scraping rod contacts the side wall of the inner cavity of the mixing tank body, and the third scraping rod contacts the conical body at the bottom of the inner cavity of the mixing tank body. As the transmission rotating shaft rotates, it will drive the first scraping rod, the second scraping rod, and the third scraping rod to rotate, that is, the second scraping rod scrapes the residual material on the inner side wall of the inner cavity of the mixing tank body; especially after the material is mixed well and needs to be discharged, as the material is discharged, the second scraping rod provided can clean the material adhered to the annular inner side wall of the mixing tank body; when the material is filled from the feed port, multiple materials may be filled simultaneously or when a reaction auxiliary reagent needs to be filled, in this solution, an auxiliary device is arranged on the bottom side of the first scraping rod, which can provide a mixing and dispersing effect and has a corresponding auxiliary effect on its mixing work. Description of the Drawings

[0023] Figure 1 It is a schematic structural connection diagram of the mixing tank for coating mixing and processing of the present invention;

[0024] Figure 2 It is a top view of the internal structural connection of the mixing tank of the present invention;

[0025] Figure 3 It is a bottom view of the internal structural connection of the mixing tank of the present invention;

[0026] Figure 4 For Figure 3 Enlarged schematic diagram of the structural connection at position A in

[0027] Figure 5 Top view of the structural connection of the mixing auxiliary component of the present invention;

[0028] Figure 6 For Figure 5 Enlarged schematic diagram of the structural connection at position B in

[0029] Figure 7 For Figure 5 Enlarged schematic diagram of the structural connection at position C in

[0030] Figure 8 Bottom view of the structural connection of the mixing auxiliary component of the present invention;

[0031] Figure 9 For Figure 8 Enlarged schematic diagram of the structural connection at position D in

[0032] Figure 10 Exploded top view of the structural connection of the auxiliary device of the present invention;

[0033] Figure 11 For Figure 10 Enlarged schematic diagram of the structural connection at position E in

[0034] Figure 12 Exploded bottom view of the structural connection of the auxiliary device of the present invention;

[0035] Figure 13 For Figure 12 Enlarged schematic diagram of the structural connection at position F in

[0036] Figure 14 For Figure 12 Enlarged schematic diagram of the structural connection at position G in

[0037] In the figure: 1. Main body of the mixing tank; 2. Support leg; 3. Cover; 4. Feed inlet; 5. Discharge outlet; 6. Control valve body; 7. Control motor; 801. Driving rotating shaft; 802. Stirring blade; 901. Wrapping fixing plate; 902. Fixing screw; 903. First scraping rod; 904. Mounting hole; 905. Auxiliary slope; 906. Second scraping rod; 907. Third scraping rod; 1001. Stable connecting rod body; 1002. Connecting plate head; 1003. Docking hole body; 1101. Installation groove body; 1102. Installation clamping plate; 1103. Positioning hole groove; 1104. Fixing strip body; 1105. Regulation sliding groove; 1106. Side groove body; 1107. Regulation positioning thread groove; 1108. Sliding block body; 1109. Through hole body; 1110. Dispersing plate body; 1111. Connecting groove body; 1112. Positioning thread pin; 1113. Handle head. Detailed implementation manner

[0038] The technical solutions in the embodiments of the present invention will be clearly and completely described below. All other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the protection scope of the present invention.

[0039] Embodiment 1: Please refer to Figures 1 - 14 , an auxiliary mixing mechanism for a coating processing device, including a mixing auxiliary component,

[0040] Here, the mixing auxiliary component is connected to the mixing mechanism, and the mixing mechanism is arranged in the inner cavity of the mixing tank body 1; a support leg 2 is fixedly arranged at the bottom end of the mixing tank body 1, and a cover 3 is arranged at the top of the mixing tank body 1; a feed port 4 and a control motor 7 are arranged on the cover 3, and the control motor 7 is connected to the mixing mechanism; a discharge port 5 is arranged on the bottom side wall of the mixing tank body 1, and a control valve body 6 is arranged on the discharge port 5; a cone body is fixedly arranged at the bottom end of the inner cavity of the mixing tank body 1; in this solution, the material enters from the feed port 4, the control motor 7 drives the transmission rotating shaft 801 to rotate, the transmission rotating shaft 801 drives the stirring blades 802 to mix and process the material, and the mixed and processed material is discharged from the discharge port 5; the mixing mechanism includes a transmission rotating shaft 801 and stirring blades 802; the transmission rotating shaft 801 is connected to the control motor 7, and stirring blades 802 are fixedly arranged at equal intervals on the side wall of the transmission rotating shaft 801; the stirring blades 802 are arranged obliquely, and the end of the stirring blade 802 fixedly connected to the transmission rotating shaft 801 is lower than the other end.

[0041] During the material mixing process, the material splashed on the top of the inner cavity of the mixing tank body 1 is cleared by the provided mixing auxiliary component. On the one hand, the adhered material is scraped off in time to avoid scaling caused by long-term adhesion, which affects the quality of the materials in the subsequent mixing process; on the other hand, the adhered material is mixed in time. Therefore, the present scheme is provided with a mixing auxiliary group on the transmission shaft 801, which scrapes off the material adhered to the inner cavity of the mixing tank body 1 by means of a first scraper rod 903, wherein one end of the first scraper rod 903 is fixedly connected to the transmission shaft 801 by a wrapping fixing plate 901, and the mixing auxiliary component includes a wrapping fixing plate 901, a fixing screw 902, a first scraper rod 903, a mounting hole 904, an auxiliary slope 905, a second scraper The material rod 906 and the third scraper rod 907; the wrapping fixing plate 901 is provided with a mounting hole 904, and the wrapping fixing plate 901 is arranged in an arc shape, the wrapping fixing plate 901 is tightly attached to the side wall of the transmission shaft 801 and is fixed by the arranged fixing screws 902, the wrapping fixing plate 901 is fixedly arranged at one end of the first scraper rod 903, and the other end of the first scraper rod 903 is fixedly provided with a second scraper rod 906; auxiliary slopes 905 are symmetrically arranged on both sides of the bottom of the first scraper rod 903, and the end cross-sectional shape of the first scraper rod 903 is an inverted cone, and the bottom end of the first scraper rod 903 is fixedly provided with a third scraper rod 907, the third scraper rod 907 is arranged tilted, and the third scraper rod 907 contacts the cone in the inner cavity of the mixing tank body 1.

[0042] The mixing auxiliary group provided in this scheme can be disassembled as a whole, which is convenient for its assembly and subsequent maintenance and replacement work. Auxiliary slopes 905 are symmetrically provided on both sides of the bottom of the first scraper rod 903, the purpose of which is to make the scraped material easier to fall off, and the auxiliary slopes 905 play an auxiliary role in the falling of the material, and try to avoid the material scraped by the first scraper rod 903 from staying; for the same reason, the second scraper rod 906 provided in this scheme contacts the side wall of the inner cavity of the mixing tank body 1, and the third scraper rod 907 contacts the conical body at the bottom of the inner cavity of the mixing tank body 1. As the transmission shaft 801 rotates, the first scraper rod 903 and the second scraper rod 907 are driven 06 and the third scraper rod 907 rotate, that is, the second scraper rod 906 scrapes the residual material on the inner wall of the inner cavity of the mixing tank body 1; especially after the materials are mixed, it is necessary to discharge the materials. As the materials are discharged, the materials adhering to the annular inner wall of the mixing tank body 1 can be cleaned by the second scraper rod 906, and in order to improve its effect, the second scraper rod 906 in the present scheme is vertically arranged, and in the vertical direction, the two sides of the second scraper rod 906 are symmetrically provided with inclined surfaces, and the overall shape of the second scraper rod 906 is also an inverted cone; that is, it can also make the scraped materials fall better along the second scraper rod 906.

[0043] In this solution, the cone body provided at the bottom of the inner cavity of the mixing tank main body 1 is used in cooperation with the discharge port 5 and the third scraping rod 907. That is, when the material is almost completely discharged, the material on the cone body is discharged through the third scraping rod 907. For the material mixing work, the first scraping rod 903, the second scraping rod 906 and the third scraping rod 907 provided in this solution can timely mix the adhered materials; and after the final mixing is completed and discharging is required, it can also discharge as much of the mixed materials as possible, avoiding excessive residue in the mixing tank, preventing the residual materials from contaminating the subsequent mixing and processing, and also avoiding material waste, which has a positive effect on improving the overall efficiency of the mixing and processing.

[0044] To improve the mixing effect and the stability of the first scraping rod 903, the second scraping rod 906 and the third scraping rod 907; in this solution, a connection auxiliary is provided on the second scraping rod 906. The connection auxiliary includes a stable connecting rod body 1001, a connecting plate head 1002 and a docking hole body 1003; the stable connecting rod body 1001 is fixedly provided on the second scraping rod 906, and the stable connecting rod body 1001 is arranged equidistantly in a straight line; the second scraping rod 906 is inclined, and the other end of the second scraping rod 906 is fixedly provided with a connecting plate head 1002. The connecting plate head 1002 is provided with a docking hole body 1003, and the connecting plate head 1002 is fixedly connected to the stirring blade 802 by screws; one end of the stable connecting rod body 1001 is fixed on the second scraping rod 906, and the other end is fixed to the stirring blade 802 by providing the connecting plate head 1002. A plurality of stable connecting rod bodies 1001 are arranged equidistantly in the vertical direction of the second scraping rod 906. On the one hand, the provided stable connecting rod body 1001 can improve the firmness of use of the second scraping rod 906, and is also helpful for the stability of the rod body formed by the first scraping rod 903, the second scraping rod 906 and the third scraping rod 907. Here, the stable connecting rod body 1001 is equivalent to a connection strengthening member; on the other hand, the plurality of provided stable connecting rod bodies 1001 also have a function of dispersing and stirring the materials falling from the feed port 4, and can also provide a good auxiliary effect for the material mixing work.

[0045] When adding materials through the feed inlet 4, multiple materials may be added simultaneously or when it is necessary to add reaction auxiliary reagents. In this solution, an auxiliary device is provided on the bottom side of the first scraping rod 903, which can provide a mixing and dispersing effect and has a corresponding auxiliary effect on its mixing work. That is, in this solution, an auxiliary device is provided on the bottom side of the first scraping rod 903, and the auxiliary device is arranged corresponding to the position of the feed inlet 4. The auxiliary device includes a mounting groove body 1101, a mounting clamping plate 1102, a positioning hole groove 1103, a fixing strip body 1104, a regulation sliding groove 1105, a side groove body 1106, a regulation positioning thread groove 1107, a sliding block body 1108, a through hole body 1109, a dispersing plate body 1110, a connecting groove body 1111, a positioning thread pin 1112, and a handle head 1113. The mounting groove body 1101 is arranged on the auxiliary slope 905, and a thread groove is provided in the mounting groove body 1101. The mounting groove body 1101 is adaptively clamped with the mounting clamping plate 1102. A positioning hole groove 1103 is arranged on the side of the mounting clamping plate 1102. The mounting clamping plate 1102 is fixed by screws, and a fixing strip body 1104 is fixedly arranged at the bottom end of the mounting clamping plate 1102. A plurality of dispersing plate bodies 1110 are arranged on the bottom side of the mounting clamping plate 1102. As the materials fall from the feed inlet 4, the dispersing plate bodies 1110 have a disrupting and mixing effect on the falling materials. In this solution, the stable connecting rod bodies 1001 arranged at equal intervals on the second scraping rod 906 also have a similar disrupting and mixing effect on the falling materials. The mounting clamping plate 1102 and the mounting groove body 1101 are fixed by screws, which is convenient for subsequent disassembly and maintenance work.

[0046] In order to improve the use flexibility of the scattering plate 1110, the present invention has a regulating slot 1105 penetratingly arranged in the fixed strip 1104, a side slot 1106 is arranged on the bottom side of the regulating slot 1105, and regulating positioning threaded slots 1107 are arranged at equal intervals in the regulating slot 1105; a sliding block 1108 is slidably arranged in the regulating slot 1105, and a through hole 1109 is arranged in the sliding block 1108, and the number of groups of the sliding block 1108 and the scattering plate 1110 is the same; a connecting slot 1111 is arranged in the scattering plate 1110, and a matching plug-in slot 1109 is arranged in the connecting slot 1111 A positioning threaded pin 1112 is provided, one end of which is fixedly provided with a handle head 1113, the positioning threaded pin 1112 passes through the connecting groove body 1111 and is then inserted into the through hole body 1109, and one end of the positioning threaded pin 1112 is threadedly connected with the regulating and positioning threaded groove 1107; wherein the two sides of the scattering plate body 1110 are symmetrically provided with inclined surfaces, and the cross-sectional shape of the side end portion of the scattering plate body 1110 is a diamond shape, wherein the positioning threaded pin 1112 is used in conjunction with the sliding block body 1108 and the regulating and positioning threaded groove 1107, for the installation position of the scattering plate body 1110 It can be regulated, and the number of installation and use of the scattering plate 1110 can also be controlled according to actual usage requirements, that is, when installing the scattering plate 1110, hold the handle head 1113, first insert the positioning threaded pin 1112 from the connecting groove 1111 at one end of the scattering plate 1110, then pass through the connecting groove 1111, and then insert one end of the positioning threaded pin 1112 into the through hole 1109 on the sliding block 1108, and insert the sliding block 1108 into the regulating slide groove 1105 of the fixed strip 1104, and then move the scattering plate 1110 by hand. The sliding block 1108 is also driven to slide in the regulating groove 1105. After reaching a certain position, the positioning threaded pin 1112 is rotated by the handle head 1113, so that one end of the positioning threaded pin 1112 is threadedly connected with the regulating positioning threaded groove 1107 at the corresponding position, and then the positioning threaded pin 1112 is tightened, so that the handle head 1113 at one end of the positioning threaded pin 1112 squeezes one end of the scattering plate 1110, so that the position of the scattering plate 1110 is fixed, and the scattering plate 1110 at other positions can be installed according to the above-mentioned corresponding operations.

[0047] For the installation work of the dispersion plate body 1110, on the one hand, the installation quantity of the dispersion plate body 1110 can be controlled according to actual requirements; furthermore, the spacing of the dispersion plate body 1110 can also be controlled, which can be better controlled according to actual usage requirements and has better usage flexibility; finally, for the installation positioning of the dispersion plate body 1110, the dispersion plate body 1110 can be installed in parallel, that is, the dispersion plate bodies 1110 are used parallel to each other. Here, inclined surfaces are symmetrically arranged on both sides of the dispersion plate body 1110. That is, when dispersing and mixing materials or reaction auxiliary reagents, the materials or reaction auxiliary reagents falling on the inclined surfaces can slow down their falling speed, and then be driven to other positions along with the movement of the dispersion plate body 1110, so that the materials or reaction auxiliary reagents have better dispersibility, which is more conducive to their mixing and processing.

[0048] The installation angle of the dispersion plate body 1110 can also be adjusted and can be set obliquely. That is, during the process of fixing the dispersion plate body 1110 by tightening the positioning threaded pin 1112, the installation angle of the dispersion plate body 1110 can be adjusted by hand. After adjustment, tighten the positioning threaded pin 1112 to fix the position of the dispersion plate body 1110; that is, for materials with relatively high viscosity, the dispersion plate body 1110 can be set in parallel, that is, the dispersion plate body 1110 is perpendicular to the installation clamping plate 1102. During this process, when providing mixing and auxiliary dispersion for the materials, it also tries to affect the falling of the materials as little as possible, avoiding the existence of gap dead corners in contact with the dispersion plate body 1110 and preventing the materials from adhering to the gap dead corner positions; for the case where the viscosity is not high or more reaction reagents are used, the positions of adjacent dispersion plate bodies 1110 can be adjusted, that is, one end of adjacent dispersion plate bodies 1110 is in contact to form an included angle. That is, when the falling materials pass through, while hitting the materials, it can also have a certain transfer effect on the materials, dispersing the materials to other positions in the inner cavity of the mixing tank more, increasing the dispersion range of the materials or reaction reagents, which is more conducive to their subsequent mixing and processing work. On the basis of providing the hitting and mixing effect itself, it also has a good auxiliary effect on the overall mixing and processing.

[0049] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirits of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A mixing auxiliary mechanism for a coating processing device, characterized in that: Including mixing aid components, The mixing auxiliary component is connected to the mixing mechanism, and the mixing mechanism is arranged in the inner cavity of the mixing tank body (1); A support leg (2) is fixedly provided at the bottom end of the mixing tank body (1), and a sealing cover (3) is provided at the top of the mixing tank body (1); The sealing cover (3) is provided with a feeding port (4) and a control motor (7), and the control motor (7) is connected to the mixing mechanism; A discharge port (5) is provided on the bottom side wall of the mixing tank body (1), and a control valve body (6) is provided on the discharge port (5); A cone is fixedly provided at the bottom end of the inner cavity of the mixing tank body (1); The wrapping fixing plate (901) in the mixing auxiliary component is provided with a mounting hole (904), and the wrapping fixing plate (901) is arranged in an arc shape, the wrapping fixing plate (901) is closely attached to the side wall of the transmission shaft (801) and is fixed by means of fixed screws (902), the wrapping fixing plate (901) is fixedly arranged at one end of a first scraping rod (903), and a second scraping rod (906) is fixedly arranged at the other end of the first scraping rod (903); Auxiliary slopes (905) are symmetrically arranged on both sides of the bottom of the first scraper rod (903); the cross-sectional shape of the end of the first scraper rod (903) is an inverted cone; the second scraper rod (906) is arranged vertically, and inclined surfaces are symmetrically arranged on both sides of the second scraper rod (906) in the vertical direction; the overall shape of the second scraper rod (906) is also an inverted cone; a third scraper rod (907) is fixedly arranged on the bottom end of the first scraper rod (903); the third scraper rod (907) is arranged obliquely, and the third scraper rod (907) contacts the cone in the inner cavity of the mixing tank body (1); An auxiliary device is provided on the bottom side of the first scraper rod (903), the auxiliary device corresponding to the setting position of the feed port (4), and the auxiliary device comprises a plurality of mutually parallel breaking plates (1110) with adjustable spacing; Inclined surfaces are symmetrically arranged on both sides of the scattering plate (1110), and the cross-sectional shape of the side end of the scattering plate (1110) is a rhombus.

2. A mixing auxiliary mechanism for a coating processing device according to claim 1, characterized in that: The mixing mechanism comprises a transmission shaft (801) and stirring blades (802); wherein the transmission shaft (801) is connected to a control motor (7), and the stirring blades (802) are fixedly arranged at equal intervals on the side walls of the transmission shaft (801).

3. A mixing auxiliary mechanism for a coating processing device according to claim 2, characterized in that: The stirring blade (802) is arranged to be inclined, and the end of the stirring blade (802) fixedly connected to the transmission shaft (801) is lower than the other end; the transmission shaft (801) is connected to the auxiliary mixing component.

4. The mixing auxiliary mechanism for a coating processing device according to claim 1, characterized in that: The second scraper rod (906) is provided with a connection auxiliary component, and the stable connection rod body (1001) in the connection auxiliary component is fixedly arranged on the second scraper rod (906), and the stable connection rod body (1001) is arranged in a straight line at equal distances.

5. A mixing auxiliary mechanism for a coating processing device according to claim 4, characterized in that: The second scraper rod (906) is arranged at an angle, and a connecting plate head (1002) is fixedly arranged at the other end of the second scraper rod (906), a docking hole (1003) is arranged in the connecting plate head (1002), and the connecting plate head (1002) is fixedly connected to the stirring blade (802) by means of screws.

6. The mixing auxiliary mechanism for a coating processing device according to claim 1, characterized in that: The mounting groove body (1101) in the auxiliary device is arranged on the auxiliary slope (905), and a thread groove is arranged in the mounting groove body (1101), the mounting groove body (1101) is adapted to be clamped with the mounting card plate (1102), a positioning hole groove (1103) is arranged on the side of the mounting card plate (1102), the mounting card plate (1102) is fixed by screws, and a fixing strip body (1104) is fixed at the bottom end of the mounting card plate (1102), a regulating slide groove (1105) is arranged through the fixing strip body (1104), a side groove body (1106) is arranged at the bottom side of the regulating slide groove (1105), and regulating positioning thread grooves (1107) are arranged in equal intervals in the regulating slide groove (1105).

7. A mixing auxiliary mechanism for a coating processing device according to claim 6, characterized in that: A sliding block (1108) is slidably arranged in the regulating slide groove (1105), and a through hole (1109) is arranged in the sliding block (1108). The sliding block (1108) and the scattering plate (1110) are arranged in the same number of groups. A connecting groove (1111) is arranged in the scattering plate (1110), and a positioning threaded pin (1112) is adapted and plugged in the connecting groove (1111). A handle head (1113) is fixedly arranged at one end of the positioning threaded pin (1112). The positioning threaded pin (1112) passes through the connecting groove (1111) and is then inserted into the through hole (1109), and one end of the positioning threaded pin (1112) is threadedly connected to the regulating positioning threaded groove (1107).

Citation Information

Patent Citations

  • Modified coating mixing device

    CN221558083U

  • Biomass particle raw material mixing device

    CN220900276U