Waterproof coating mixing device

Through the detachable unit mixing assembly and lifting structure connected in series, the problems of adhesion and cross-contamination of waterproof coating mixing equipment during the stirring process are solved, and rapid self-cleaning and efficient mixing are achieved.

CN223170778UActive Publication Date: 2025-08-01广州上承企业咨询有限公司
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Patent Information

Application Number
CN202422856921.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-08-01
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

Existing waterproof coating mixing equipment is prone to stick to the paint during the stirring process, resulting in inconvenience in cleaning and cross-contamination.

Method used

The unit mixing assembly that is removable in series is used, including a guide mixing pipe and a mixing rack. The lifting structure and hydraulic telescopic rod are used to match the pushing plate and the side telescopic mixing column to achieve rapid self-cleaning of the mixing mechanism and avoid cross-contamination.

Benefits of technology

On the basis of ensuring the mixing effect, the mixing mechanism is quickly self-cleaned, avoiding cross-contamination and improving cleaning efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model is applicable to the technical field of waterproof paint, and provides a waterproof paint mixing device, which comprises a unit material mixing assembly, the unit material mixing assembly comprises a material guide mixing pipe and a material mixing frame, the material guide mixing pipe comprises a hydraulic telescopic rod and a material guide pipe body, and the material guide pipe body is provided with a plurality of insertion holes; a pushing disc is fixed to the end of the hydraulic telescopic rod. The mixing frame comprises a lifting structure and a plurality of mixing insertion columns, the mixing insertion columns are movably inserted into the insertion holes, and the lifting structure is used for adjusting the insertion positions of the mixing insertion columns in the corresponding insertion holes; a plurality of side telescopic mixing columns are arranged on the periphery of the mixing insertion column; the inner surface of the material guiding pipe body is cleaned through the edge of the material pushing disc; the mixing and inserting column can be cleaned by the inserting hole; and a plurality of side telescopic material mixing columns are combined for self-cleaning in the storage process, so that quick self-cleaning of the material mixing insertion columns and the side telescopic material mixing columns as a stirring mechanism is realized, and cross contamination is avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of waterproof coatings, in particular to a waterproof coating mixing device. Background Art

[0002] Waterproof coatings are made with synthetic rubber, synthetic resin and asphalt as the base materials, adding various additives and fillers; they are classified into solvent-based, water emulsion-based and reaction-based according to the coating type; and are divided into three categories: synthetic polymer waterproof coatings, polymer modified asphalt waterproof coatings and asphalt-based waterproof coatings according to the main components of the film-forming substances. The waterproof film formed after curing has certain extensibility, elastoplasticity, crack resistance, impermeability and weather resistance, and can play the roles of waterproofing, seepage prevention and protection.

[0003] Since waterproof coatings are composed of multiple components, certain mixing treatment is required.

[0004] In the existing waterproof coating mixing equipment, in order to improve the mixing effect, generally many stirring structures are added, and these stirring structures will adhere to the waterproof coatings during the stirring process, resulting in problems of inconvenient subsequent cleaning and cross-contamination; in the prior art, a Chinese patent for a waterproof coating mixing equipment (the authorization announcement number is CN221432872U) records a "scraper and flushing mechanism", but the "scraper" is for the wall of the mixing tank, and although the "flushing mechanism" can be for both the wall of the mixing tank and the "rotating rod and stirring blades" of the stirring structure, after all, the waterproof coatings contain non-water-soluble substance components. Furthermore, there are also problems that these stirring structures adhere to the waterproof coatings during the stirring process, resulting in inconvenient subsequent cleaning and cross-contamination; therefore, a waterproof coating mixing device is specifically proposed to solve the above problems. Summary of the Utility Model

[0005] The purpose of the embodiment of the utility model is to provide a waterproof coating mixing device, aiming to solve the problems that in the existing waterproof coating mixing equipment, in order to improve the mixing effect, generally many stirring structures are added, and these stirring structures will adhere to the waterproof coatings during the stirring process, resulting in problems of inconvenient subsequent cleaning and cross-contamination.

[0006] Specifically: A waterproof coating mixing device includes a plurality of unit mixing components that are detachably connected in series. The unit mixing component includes a material guiding and mixing pipe and a mixing rack. The material guiding and mixing pipe includes a hydraulic telescopic rod and a material guiding pipe body. The material guiding pipe body is provided with a plurality of insertion holes at its top, and the plurality of insertion holes are evenly distributed along the main body of the material guiding pipe body; the material guiding pipe body is used to introduce the waterproof coating for flowing and mixing; the hydraulic telescopic rod is inserted and fixed at the end of the material guiding pipe body and extends into the interior of the material guiding pipe body; a pushing plate is fixed at the end of the hydraulic telescopic rod inside the material guiding pipe body, the pushing plate is movably inserted into the interior of the material guiding pipe body, and the outer wall edges around the pushing plate are closely attached to the inner surface of the material guiding pipe body; the mixing rack includes a lifting structure and a plurality of mixing insertion columns, and the plurality of mixing insertion columns correspond to the plurality of insertion holes one by one. The mixing insertion columns are movably inserted into the insertion holes, and the lifting structure is used to adjust the insertion positions of the plurality of mixing insertion columns in the corresponding plurality of insertion holes; a plurality of side telescopic mixing columns are arranged around the mixing insertion columns, and after the plurality of side telescopic mixing columns extend out of the mixing insertion columns, they are used to improve the mixing effect, and during the process of the plurality of side telescopic mixing columns being received from the outside of the mixing insertion columns into the interior of the mixing insertion columns, they are used for self-cleaning;

[0007] Therefore, when the material guiding pipe body introduces the waterproof coating for flowing, the lifting structure is used to correspondingly adjust and insert the plurality of mixing insertion columns into the corresponding plurality of insertion holes and enter the interior of the material guiding pipe body. At the same time, the plurality of side telescopic mixing columns are extended out of the mixing insertion columns. Then, in cooperation with a plurality of unit mixing components that are detachably connected in series, a complete stirring and mixing mechanism is constructed; the mixing mechanism composed of the mixing insertion columns and the side telescopic mixing columns is used to mix the waterproof coating flowing inside the material guiding pipe body; the lifting structure is used to pull out the plurality of mixing insertion columns from the corresponding plurality of insertion holes until the end of the mixing insertion column is sealed in the insertion hole; the hydraulic telescopic rod is extended to push the pushing plate forward, and the inner surface of the material guiding pipe body is cleaned by the edge of the pushing plate; during the process of pulling out the mixing insertion columns from the insertion holes, the insertion holes will clean the mixing insertion columns; and then, during the process of the plurality of side telescopic mixing columns being received into the interior of the mixing insertion columns, self-cleaning is carried out, realizing the quick self-cleaning of the mixing insertion columns and the side telescopic mixing columns as the stirring mechanism, and truly achieving the avoidance of cross-contamination on the basis of ensuring the stirring and mixing effect.

[0008] The technical solution of the present application will be further described below:

[0009] In one embodiment, a feed pipe is installed on the material guiding pipe body, the opening of the feed pipe faces upward, and a sealing cover is detachably installed on the feed pipe; the material guiding pipe body is detachably installed with a side positioning plate at its end.

[0010] Further, the ends of the guide pipe bodies of multiple said unit mixing components are detachably connected in series through a first circulation connecting pipe; the feed pipes on the guide pipe bodies of multiple unit mixing components are detachably connected in series through a second circulation connecting pipe.

[0011] In one embodiment, multiple said unit mixing components are all installed on a base plate; a plurality of base support plates are fixed to the bottom of the guide pipe body, and multiple base support plates are all installed on the base plate.

[0012] In one embodiment, a guide cavity is formed inside the guide pipe body, and a pushing tray is movably inserted into the guide cavity; one end of the hydraulic expansion rod away from the pushing tray penetrates out of the guide cavity and is fixed on the side positioning plate.

[0013] In one embodiment, the lifting structure includes a support cross plate and a support longitudinal plate, which are fixedly connected between the support cross plate and the support longitudinal plate and are vertically distributed; a cylinder expansion rod is fixed on each side of the support cross plate; a plurality of mixing insertion columns are equally spaced along the main body of the support longitudinal plate; the support longitudinal plate is parallel to the guide pipe body.

[0014] Further, the lifting structure further includes a pneumatic regulator, which is installed on the support cross plate and the support longitudinal plate; a suction fan and a blower are installed inside the pneumatic regulator, and both the suction fan and the blower are connected to a plurality of side expansion mixing columns inside the mixing insertion column through connecting hoses.

[0015] Still further, a plurality of said side expansion mixing columns are distributed along the main body of the mixing insertion column and penetrate through the mixing insertion column; through cavities are formed on the mixing insertion column to cooperate with the side expansion mixing columns.

[0016] The side expansion mixing column includes an insertion air pipe, and a guide air pipe is inserted and communicated on the insertion air pipe, and the guide air pipe is used to connect a plurality of side expansion mixing columns in series in sequence; a sleeve is movably sleeved at both ends of the insertion air pipe, the sleeve is of a single-opening shape, a fixing ring is sleeved and fixed at the single-opening of the sleeve, a spring is connected to the fixing ring, the spring is sleeved on the sleeve, and the spring is connected to the inside of the through cavity at the end away from the fixing ring.

[0017] Therefore, when the blower sucks in the outside air and introduces it into the inside of the guide air pipe through the connecting hose, the guide air pipe then pushes the air into the inside of the sleeve through the insertion air pipe, and drives the sleeve to extend out of the through cavity while squeezing the spring, so as to complete the process of multiple side expansion mixing columns extending out of the inside of the mixing insertion column to improve the mixing effect; when the blower is turned off and the suction fan is started, the suction fan simultaneously sucks the air inside the insertion air pipe and the sleeve, and cooperates with the spring to reset to prompt the sleeve to be sleeved on the insertion air pipe again, so as to complete the process of scraping the sleeve by the outer edge of the outer end of the through cavity when multiple side expansion mixing columns are received from the outside of the mixing insertion column into the inside of the mixing insertion column to achieve self-cleaning.

[0018] Compared with the prior art, the waterproof coating mixing device of the present utility model can achieve the following:

[0019] When the waterproof coating is introduced and flows through the material guiding pipe body, the lifting structure is used to correspondingly adjust and insert a plurality of mixing and inserting columns into a plurality of inserting holes, and enter the inside of the material guiding pipe body. At the same time, a plurality of side telescopic mixing columns are extended from inside the mixing and inserting columns, and then a complete stirring and mixing mechanism is constructed by cooperating with a plurality of detachable and serially connected unit mixing components; realizing the mixing of the waterproof coating flowing inside the material guiding pipe body by the stirring mechanism composed of the mixing and inserting columns and the side telescopic mixing columns;

[0020] The lifting structure is used to extract a plurality of mixing and inserting columns from the corresponding plurality of inserting holes, and seal the end of the mixing and inserting column in the inserting hole when it is extracted; the hydraulic telescopic rod is used to extend forward to push the pushing plate, and the inner surface of the material guiding pipe body is cleaned by the edge of the pushing plate; during the process of extracting the mixing and inserting column from the inserting hole, the inserting hole will clean the mixing and inserting column; and during the process of combining and storing a plurality of side telescopic mixing columns inside the mixing and inserting columns, self-cleaning is carried out, realizing the rapid self-cleaning of the mixing and inserting columns and the side telescopic mixing columns as the stirring mechanism, and truly achieving the avoidance of cross-contamination on the basis of ensuring the stirring and mixing effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required to be used in the embodiments. Obviously, the drawings described below are only some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0022] Figure 1 It is a structural schematic diagram of the waterproof coating mixing device of the present utility model;

[0023] Figure 2 It is Figure 1 a structural schematic diagram of the unit mixing component in

[0024] Figure 3 It is Figure 2 a structural schematic diagram of the material guiding and mixing pipe in

[0025] Figure 4 It is Figure 3 a sectional structural schematic diagram of the material guiding and mixing pipe in

[0026] Figure 5 It is Figure 2 a structural schematic diagram of the mixing rack in

[0027] Figure 6 It isFigure 2 Schematic cross-sectional structure diagram of the intermediate mixing rack inserted into the material guiding and mixing pipe;

[0028] Figure 7 For Figure 6 Demonstration diagram of the intermediate mixing rack inserted into the material guiding and mixing pipe;

[0029] Figure 8 For Figure 6 Demonstration diagram of the intermediate mixing rack pulled out to the outside of the material guiding and mixing pipe;

[0030] Figure 9 For Figure 5 Schematic structure diagram of the intermediate side telescopic mixing column.

[0031] In the attached drawing reference numerals:

[0032] 100 - Base plate;

[0033] 200 - Unit mixing component; material guiding and mixing pipe 210, mixing rack 220; air pressure regulator 221, support cross plate 222, support longitudinal plate 223, mixing insertion column 224, side telescopic mixing column 225, cylinder telescopic rod 226; material guiding cavity 2101, hydraulic telescopic rod 2102, material guiding pipe body 2103, feed pipe 2104, sealing cover 2105, insertion hole 2106, sealing door 2107, pushing plate 2108, side positioning plate 2109, base support plate 2110; air guide pipe 2251, insertion air pipe 2252, fixing ring 2253, spring 2254, sleeve 2255;

[0034] 300 - First circulation connecting pipe;

[0035] 400 - Second circulation connecting pipe. Detailed implementation manners

[0036] In order to make the objectives, technical solutions and advantages of the present utility model clearer, the present utility model will be further described in detail below with reference to the attached drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model. The specific implementation of the present utility model will be described in detail below with reference to specific embodiments.

[0037] In the embodiments of the present utility model, as Figures 1 - 5 、 Figure 7 And Figure 8As shown: A waterproof coating mixing device includes a plurality of unit mixing components 200 that are detachably connected in series. The unit mixing component 200 includes a material guiding and mixing pipe 210 and a mixing frame 220. The material guiding and mixing pipe 210 includes a hydraulic telescopic rod 2102 and a material guiding pipe body 2103. The material guiding pipe body 2103 is provided with a plurality of insertion holes 2106 at its top, and the plurality of insertion holes 2106 are evenly distributed along the main body of the material guiding pipe body 2103; the material guiding pipe body 2103 is used to introduce the waterproof coating for flowing and mixing;

[0038] The hydraulic telescopic rod 2102 is inserted and fixed at the end of the material guiding pipe body 2103 and extends into the interior of the material guiding pipe body 2103; a pushing plate 2108 is fixed at the end of the hydraulic telescopic rod 2102 inside the material guiding pipe body 2103. The pushing plate 2108 is movably inserted into the interior of the material guiding pipe body 2103, and the outer wall edge around the pushing plate 2108 is closely attached to the inner surface of the material guiding pipe body 2103;

[0039] Therefore, after the material guiding pipe body 2103 introduces the waterproof coating for flowing and mixing, the hydraulic telescopic rod 2102 is extended to push the pushing plate 2108 forward, prompting the pushing plate 2108 to move inside the material guiding pipe body 2103, and cleaning the inner surface of the material guiding pipe body 2103 through the edge of the pushing plate 2108;

[0040] The mixing frame 220 includes a lifting structure and a plurality of mixing insertion columns 224. The plurality of mixing insertion columns 224 correspond one-to-one with the plurality of insertion holes 2106. The mixing insertion columns 224 are movably inserted into the insertion holes 2106, and the lifting structure is used to adjust the insertion positions of the plurality of mixing insertion columns 224 in the corresponding plurality of insertion holes 2106;

[0041] Therefore, during the process of the material guiding pipe body 2103 introducing the waterproof coating for flowing and mixing, the lifting structure is used to correspondingly adjust and insert the plurality of mixing insertion columns 224 into the plurality of insertion holes 2106 and enter the interior of the material guiding pipe body 2103, and mix the waterproof coating flowing inside the material guiding pipe body 2103; after the mixing is completed, the lifting structure is used to extract the plurality of mixing insertion columns 224 from the corresponding plurality of insertion holes 2106 until the end of the mixing insertion column 224 is sealed in the insertion hole 2106; during the process of the mixing insertion column 224 being extracted from the insertion hole 2106, the insertion hole 2106 will clean the mixing insertion column 224, realizing the rapid self-cleaning of the mixing insertion column 224 as a stirring mechanism;

[0042] It should be noted that: The cross-sectional shape of the mixing and inserting column 224 and the caliber shape of the inserting hole 2106 can be circular, triangular, quadrilateral, pentagonal, etc. These are all prior arts, and there is no limitation on their specific structures. As long as it can satisfy that during the process of pulling out the mixing and inserting column 224 from the inserting hole 2106, the inserting hole 2106 can clean the mixing and inserting column 224; at the same time, it can be directly purchased on the market, and there are also relevant descriptions in the corresponding periodical literature, which are not what the present invention intends to protect, and will not be elaborated in detail here;

[0043] A plurality of side telescopic mixing columns 225 are arranged around the mixing and inserting column 224. After the plurality of side telescopic mixing columns 225 extend out from the inside of the mixing and inserting column 224, they are used to improve the mixing effect, and during the process of the plurality of side telescopic mixing columns 225 being received from the outside of the mixing and inserting column 224 into the inside of the mixing and inserting column 224, they are used for self-cleaning;

[0044] Therefore, when the waterproof coating is introduced and flows through the material guiding pipe body 2103, the lifting structure is used to correspondingly adjust and insert a plurality of mixing and inserting columns 224 into a plurality of inserting holes 2106, and enter the inside of the material guiding pipe body 2103. At the same time, a plurality of side telescopic mixing columns 225 are extended out from the inside of the mixing and inserting column 224, and then cooperate with a plurality of detachable series-connected unit mixing components 200 to construct a complete stirring and mixing mechanism; realizing the mixing of the waterproof coating flowing inside the material guiding pipe body 2103 by the stirring mechanism composed of the mixing and inserting column 224 and the side telescopic mixing column 225;

[0045] The lifting structure is used to pull out a plurality of mixing and inserting columns 224 from the corresponding plurality of inserting holes 2106, and when the end of the mixing and inserting column 224 is pulled out to be sealed in the inserting hole 2106; the hydraulic telescopic rod 2102 is used to extend forward to push the pushing plate 2108, and the inner surface of the material guiding pipe body 2103 is cleaned by the edge of the pushing plate 2108; during the process of pulling out the mixing and inserting column 224 from the inserting hole 2106, the inserting hole 2106 will clean the mixing and inserting column 224; and then during the process of combining and receiving a plurality of side telescopic mixing columns 225 into the inside of the mixing and inserting column 224 for self-cleaning, realizing the rapid self-cleaning of the mixing and inserting column 224 and the side telescopic mixing column 225 as the stirring mechanism, truly achieving the avoidance of cross-contamination on the basis of ensuring the stirring and mixing effect.

[0046] In the embodiment of the present utility model, as Figure 3 and Figure 4 shown: An inlet pipe 2104 is installed on the material guiding pipe body 2103, the opening of the inlet pipe 2104 faces upward, and a sealing cover 2105 is detachably installed on the inlet pipe 2104; a side positioning plate 2109 is detachably installed at the end of the material guiding pipe body 2103.

[0047] Furthermore, as Figures 1 - 4 shown: The ends of the material guiding pipe bodies 2103 of multiple said unit mixing components 200 are detachably connected in series and communicated through a first circulation connecting pipe 300;

[0048] The feeding pipes 2104 on the material guiding pipe bodies 2103 of multiple unit mixing components 200 are detachably connected in series and communicated through a second circulation connecting pipe 400.

[0049] Therefore, the feeding pipe 2104 is used to introduce waterproof coating. After the waterproof coating is introduced and flows in the material guiding pipe body 2103, the stirring mechanism composed of the mixing and inserting column 224 and the side telescopic mixing column 225 mixes the waterproof coating flowing inside the material guiding pipe body 2103. After multiple circulations (the first and the last unit mixing components 200 can connect the feeding pipe 2104 and the ends of the material guiding pipe body 2103 through a guiding connection pipe) in the series system of multiple unit mixing components 200 and mixing, the sealing door 2107 is disassembled and the sealing cover 2105 is installed; the hydraulic telescopic rod 2102 is extended to push the pushing plate 2108 forward, so that the pushing plate 2108 moves inside the material guiding pipe body 2103, and while cleaning the inner surface of the material guiding pipe body 2103 through the edge of the pushing plate 2108, the material inside the material guiding pipe body 2103 is discharged through the end opening of the material guiding pipe body 2103.

[0050] In the embodiment of the present utility model, as Figure 1 shown: Multiple said unit mixing components 200 are all installed on the base plate 100; a plurality of base support plates 2110 are fixed at the bottom of the material guiding pipe body 2103, and a plurality of base support plates 2110 are all installed on the base plate 100.

[0051] In the embodiment of the present utility model, as Figures 2 - 4 shown: The material guiding pipe body 2103 is provided with a material guiding cavity 2101 inside, and the pushing plate 2108 is movably inserted into the material guiding cavity 2101; the hydraulic telescopic rod 2102 penetrates out of the material guiding cavity 2101 at one end far from the pushing plate 2108 and is fixed on the side positioning plate 2109.

[0052] In the embodiment of the present utility model, as Figure 5 shown: The lifting structure includes a supporting cross plate 222 and a supporting longitudinal plate 223, the supporting cross plate 222 and the supporting longitudinal plate 223 are fixedly connected and are vertically distributed; a cylinder telescopic rod 226 is fixed on each side of the supporting cross plate 222;

[0053] A plurality of mixing and inserting columns 224 are equidistantly distributed along the main body of the supporting longitudinal plate 223; the supporting longitudinal plate 223 is parallel to the material guiding pipe body 2103.

[0054] In the embodiment of the present utility model, as Figure 5 shown: The lifting structure further includes a pneumatic regulator 221, and the pneumatic regulator 221 is installed on the support cross plate 222 and the support longitudinal plate 223; a suction fan and a blower are installed inside the pneumatic regulator 221, and both the suction fan and the blower are communicated to a plurality of side telescopic mixing columns 225 inside the mixing insertion column 224 through connecting hoses.

[0055] In the embodiment of the present utility model, as Figures 5 - 8 shown: A plurality of the side telescopic mixing columns 225 are distributed along the main body of the mixing insertion column 224 and penetrate through the mixing insertion column 224; through cavities are formed in the mixing insertion column 224 to cooperate with the side telescopic mixing columns 225.

[0056] In the embodiment of the present utility model, as Figure 9 shown: The side telescopic mixing column 225 includes an inserted air pipe 2252, and a guide air pipe 2251 is inserted and communicated on the inserted air pipe 2252. The guide air pipe 2251 is used to sequentially connect and communicate a plurality of side telescopic mixing columns 225 in series;

[0057] At both ends of the inserted air pipe 2252, a sleeve 2255 is movably sleeved. The sleeve 2255 is of a single-opening shape, and a fixing ring 2253 is sleeved and fixed at the single-opening of the sleeve 2255. A spring 2254 is connected to the fixing ring 2253, the spring 2254 is sleeved on the sleeve 2255, and the end of the spring 2254 away from the fixing ring 2253 is connected inside the through cavity.

[0058] Therefore, when the blower sucks the outside air and introduces it into the guide air pipe 2251 through the connecting hose, the guide air pipe 2251 then pushes the air into the sleeve 2255 through the inserted air pipe 2252, and drives the sleeve 2255 to extend out of the through cavity while squeezing the spring 2254. After a plurality of side telescopic mixing columns 225 extend out of the mixing insertion column 224, it is used to improve the mixing effect; when the blower is turned off and the suction fan is started, the suction fan simultaneously sucks the air inside the inserted air pipe 2252 and the sleeve 2255, and cooperates with the spring 2254 to reset to prompt the sleeve 2255 to be sleeved on the inserted air pipe 2252 again. During the process of a plurality of side telescopic mixing columns 225 being received from the outside of the mixing insertion column 224 into the mixing insertion column 224, the outer edge of the through cavity is used to scrape the sleeve 2255 to achieve self-cleaning.

[0059] In the description of the present utility model, unless otherwise specified, the meaning of "a plurality of" is two or more. The present utility model will be described in detail in conjunction with the schematic diagrams. When describing the embodiments of the present utility model in detail, for the convenience of explanation, the cross-sectional views showing the device structure will be enlarged locally not in accordance with the general scale, and the said schematic diagrams are only examples and should not limit the scope of protection of the present utility model herein. In addition, in actual production, three-dimensional spatial dimensions including length, width and depth should be included.

[0060] In the description of the present utility model, although the embodiments of the present utility model 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 spirit of the present utility model, and the scope of the present utility model is defined by the appended claims and their equivalents.

Claims

1. A waterproof coating mixing device, characterized in that it includes a plurality of unit mixing components (200) that are detachably connected in series and communicate with each other. The unit mixing component (200) includes a material guiding and mixing pipe (210) and a mixing rack (220). The material guiding and mixing pipe (210) includes a hydraulic telescopic rod (2102) and a material guiding pipe body (2103). The material guiding pipe body (2103) is provided with a plurality of insertion holes (2106) at its top. The plurality of insertion holes (2106) are evenly distributed along the main body of the material guiding pipe body (2103). The material guiding pipe body (2103) is used to introduce the waterproof coating for flowing and mixing. The hydraulic telescopic rod (2102) is inserted and fixed at the end of the material guiding pipe body (2103) and extends into the interior of the material guiding pipe body (2103). A pushing plate (2108) is fixed at the end of the hydraulic telescopic rod (2102) inside the material guiding pipe body (2103). The pushing plate (2108) is movably inserted into the interior of the material guiding pipe body (2103). The outer wall edges around the pushing plate (2108) are closely attached to the inner surface of the material guiding pipe body (2103). The mixing rack (220) includes a lifting structure and a plurality of mixing insertion columns (224). The plurality of mixing insertion columns (224) correspond to the plurality of insertion holes (2106) one by one. The mixing insertion columns (224) are movably inserted into the insertion holes (2106). The lifting structure is used to adjust the insertion positions of the plurality of mixing insertion columns (224) in the corresponding plurality of insertion holes (2106). A plurality of side telescopic mixing columns (225) are arranged around the mixing insertion column (224). After the plurality of side telescopic mixing columns (225) extend out from the inside of the mixing insertion column (224), they are used to improve the mixing effect. During the process of the plurality of side telescopic mixing columns (225) being retracted from the outside of the mixing insertion column (224) into the inside of the mixing insertion column (224), they are used for self-cleaning.

2. The waterproof coating mixing device according to claim 1, wherein A feed pipe (2104) is installed on the material guiding pipe body (2103). The opening of the feed pipe (2104) faces upward. A sealing cover (2105) is detachably installed on the feed pipe (2104). A side positioning plate (2109) is detachably installed at the end of the material guiding pipe body (2103).

3. The waterproof coating mixing device according to claim 2, characterized in that the ends of the material guiding pipe bodies (2103) of the plurality of unit mixing components (200) are detachably connected in series and communicated with each other through a circulation connecting pipe one (300). The feed pipes (2104) on the material guiding pipe bodies (2103) of the plurality of unit mixing components (200) are detachably connected in series and communicated with each other through a circulation connecting pipe two (400).

4. A waterproof coating mixing device according to claim 1, characterized in that The plurality of unit mixing components (200) are all installed on a base plate (100). A plurality of base support plates (2110) are fixed at the bottom of the material guiding pipe body (2103). The plurality of base support plates (2110) are all installed on the base plate (100).

5. The waterproof coating mixing device according to claim 2, wherein The material guiding pipe body (2103) is provided with a material guiding cavity (2101) inside it, and the material pushing disc (2108) is movably inserted into the material guiding cavity (2101); the hydraulic telescopic rod (2102) penetrates out of the material guiding cavity (2101) at one end far from the material pushing disc (2108) and is fixed on the side positioning plate (2109).

6. The waterproof coating mixing device according to claim 1, wherein the lifting structure includes a support cross plate (222) and a support longitudinal plate (223), the support cross plate (222) and the support longitudinal plate (223) are fixedly connected to each other and are vertically distributed; one cylinder telescopic rod (226) is fixedly arranged on each side of the support cross plate (222); a plurality of mixing insertion columns (224) are equidistantly distributed along the main body of the support longitudinal plate (223); the support longitudinal plate (223) is parallel to the material guiding pipe body (2103).

7. A waterproof coating mixing device according to claim 6, characterized in that, The lifting structure further includes a pneumatic regulator (221), and the pneumatic regulator (221) is installed on the support cross plate (222) and the support longitudinal plate (223); a suction fan and a blower are installed inside the pneumatic regulator (221), and both the suction fan and the blower are communicated to a plurality of side telescopic mixing columns (225) inside the mixing insertion columns (224) through connecting hoses.

8. A waterproof coating mixing device according to claim 7, characterized in that, A plurality of the side telescopic mixing columns (225) are distributed along the main body of the mixing insertion columns (224) and penetrate through the mixing insertion columns (224); through cavities are formed in the mixing insertion columns (224) to cooperate with the side telescopic mixing columns (225).

9. The waterproof coating mixing device according to claim 8, wherein the side telescopic mixing column (225) includes an insertion air pipe (2252), and a guide air pipe (2251) is inserted and communicated with the insertion air pipe (2252), and the guide air pipe (2251) is used for sequentially connecting and communicating a plurality of side telescopic mixing columns (225) in series; a sleeve (2255) is movably sleeved at each end of the insertion air pipe (2252), the sleeve (2255) is of a single-opening shape, a fixing ring (2253) is sleeved and fixed at the single-opening of the sleeve (2255), a spring (2254) is connected to the fixing ring (2253), the spring (2254) is sleeved on the sleeve (2255), and the spring (2254) is connected to the inside of the through cavity at one end far from the fixing ring (2253).

Citation Information

Patent Citations

  • Waterproof coating mixing equipment

    CN221432872U