Double-shaft high-speed mixer suitable for high-viscosity materials

By introducing anti-blocking components and spray components into a twin-shaft high-speed mixer, and utilizing rotating scraping and spray atomization technologies, the problems of adhesion and uneven mixing of high-viscosity materials are solved, thereby improving mixing efficiency and quality.

CN121200232APending Publication Date: 2025-12-26TIANJIN YONGDEYUAN PLASTIC PROD CO LTD
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Patent Information

Application Number
CN202511430343.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-09
Publication Date
2025-12-26

AI Technical Summary

Technical Problem

Existing twin-shaft high-speed mixers are prone to problems such as material adhesion, uneven mixing, and low mixing efficiency when processing high-viscosity materials, especially when adding liquid materials, which can easily lead to local agglomeration.

Method used

A dual-shaft high-speed mixer including an anti-blocking component and a spray component was designed. It utilizes rotating scraper and spray atomization technology to achieve the coordinated work of stirring and anti-blocking through an arc-shaped scraper and spray pipeline. Combined with toothed drive and servo motor to control the liquid addition amount, it ensures uniform liquid blending.

Benefits of technology

It effectively solves the problem of adhesion of high-viscosity materials, improves mixing efficiency and quality, avoids local clumping, and achieves uniform mixing of high-viscosity materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of plastic product production, in particular to a double-shaft high-speed mixer suitable for high-viscosity materials, the double-shaft high-speed mixer comprises a rack, an anti-adhesion assembly and a spraying assembly, the rack is internally provided with a driving assembly, the rack is internally provided with the anti-adhesion assembly, and the back of the rack is provided with the spraying assembly; the anti-adhesion assembly comprises a rotating frame, one side of the rotating frame is connected with a supporting rod through a bolt, the periphery of the supporting rod is sleeved with an arc-shaped scraping plate, and an elastic cushion used for cleaning is horizontally arranged at the bottom of the arc-shaped scraping plate. The anti-adhesion mechanism is additionally arranged, mechanical linkage of stirring, anti-adhesion and liquid adding is achieved through meshing transmission, the adhesion problem in the high-viscosity material mixing process is effectively solved, and therefore the using effect is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of plastic product production, in particular to a double-shaft high-speed mixer suitable for high-viscosity materials. BACKGROUND

[0002] Plastic is a material that can be molded into a certain shape under certain temperature and pressure conditions by using natural or synthetic resin as the main component and adding various additives, and maintaining the shape unchanged at room temperature. Plastic products are life and industrial products made of plastic as the main raw material. Some plastics are pure resins, such as polyethylene and polystyrene, which are called single-component plastics. Some plastics contain plasticizers, stabilizers, colorants and other auxiliary materials in addition to synthetic resins, which are called multi-component plastics. The double-shaft high-speed mixer is a commonly used equipment in plastic product production, mainly used for mixing, stirring and drying of plastic raw materials, which can uniformly mix different components of plastic raw materials and improve the quality and performance of plastic products.

[0003] At present, there is a lack of anti-adhesion mechanism in the use of double-shaft high-speed mixer. In the process of plastic processing, high-viscosity materials such as PVC paste resin, rubber compound and hot melt adhesive need to be mixed. The traditional double-shaft mixer is prone to problems such as material adhesion to the barrel wall, uneven mixing and low mixing efficiency when processing high-viscosity materials. Especially when liquid materials need to be added, the liquid is easy to gather in local areas, forming lumps, which affects the mixing quality. Therefore, a double-shaft high-speed mixer suitable for high-viscosity materials is proposed to increase the anti-adhesion mechanism, realize the mechanical linkage of stirring, anti-adhesion and liquid addition by meshing transmission, effectively solve the adhesion problem in the mixing process of high-viscosity materials, and improve the use effect. SUMMARY

[0004] In view of the problems in the prior art, the present application provides a double-shaft high-speed mixer suitable for high-viscosity materials to solve the adhesion problem in the mixing process of high-viscosity materials and improve the use effect.

[0005] The technical solution adopted by the present application to solve its technical problems is a double-shaft high-speed mixer suitable for high-viscosity materials, which comprises a rack, an anti-adhesion assembly and a spraying assembly. The rack is provided with a driving assembly. The rack is provided with an anti-adhesion assembly. The back of the rack is provided with a spraying assembly. The anti-adhesion assembly comprises a rotating frame. The rotating frame is provided with a support rod on one side through bolts. An arc-shaped scraper is provided on the periphery of the support rod. The bottom of the arc-shaped scraper is horizontally provided with an elastic pad for cleaning.

[0006] By adopting the above technical scheme, the rotation and wall scraping are used to realize the cooperation of stirring and anti-sticking wall scraping, and effectively solve the problem of adhesion of high-viscosity materials.

[0007] Specifically, the spraying assembly comprises a storage tank and a support frame, and the storage tank and the support frame are connected to the rack by bolts, the top of the support frame is connected to the spraying pipeline by bolts, and the spraying pipeline penetrates the rack, one side of the spraying pipeline in the rack is fixedly provided with an atomizing nozzle, and the atomizing nozzle is communicated with the spraying pipeline.

[0008] By adopting the above technical scheme, the spraying pipeline cooperates with the multi-angle atomizing nozzle to uniformly atomize the liquid material and cover the action area of the stirring paddle, so as to ensure that the liquid and the high-viscosity material are quickly mixed and local caking is avoided.

[0009] Specifically, the outer periphery of the rotating frame is provided with a tooth pattern, the outer periphery of the support rod is welded with a fixing disc, the bottom disc is arranged in the reserved groove of the elastic pad, and the bottom disc is connected to the bottom of the support rod by bolts, and the outer periphery of the support rod is sleeved with a disc spring between the fixing disc and the arc-shaped scraper.

[0010] By adopting the above technical scheme, the tooth pattern provides a driving basis for the anti-adhesion assembly, the disc spring can generate a continuous elastic pressure to compensate for the wear of the arc-shaped scraper and the elastic pad, so that the arc-shaped scraper always adheres to the inner wall of the mixing chamber and maintains stable scraping effect; the bottom disc enhances the connection stability of the elastic pad and the support rod, the elastic pad is made of polytetrafluoroethylene material, and the inner wall of the mixing chamber and the surface of the arc-shaped scraper are coated with a polytetrafluoroethylene coating.

[0011] Specifically, a storage tank is provided in the storage tank, a plunger pump is arranged between the storage tank and the support frame, the inlet end of the plunger pump is communicated with the storage tank through a pipeline, and the outlet end of the plunger pump is communicated with the spraying pipeline through a pipeline.

[0012] By adopting the above technical scheme, the plunger pump has stable quantitative conveying capacity and can adapt to the conveying demand of high-viscosity liquid material, avoiding the problem that the traditional pump body is easy to be blocked, and at the same time, the storage tank and the spraying pipeline are directly communicated through the pipeline, which can reduce the risk of liquid residue and pollution, and the storage tank comprises a filling port.

[0013] Specifically, a mixing chamber is provided in the rack, a stirring shaft is installed in the mixing chamber through a bearing, a stirring paddle is connected to the outer periphery of the stirring shaft by bolts, and the rotating frame is sleeved with the stirring paddle outside the stirring shaft.

[0014] By adopting the above technical scheme, the stirring shaft drives the stirring paddle to rotate in the opposite direction, generates strong shearing and axial pushing force, promotes the circulation of high-viscosity materials, and improves the mixing speed and stirring effect of the materials.

[0015] Specifically, the transmission gear is arranged between the rotating frames in the mixing cavity, the transmission gear is connected with the gear through meshing, and one end of the input shaft of the plunger pump is connected with the transmission gear through bolts.

[0016] By adopting the above technical scheme, the gear of the rotating frame is meshed with the transmission gear, the power of the plunger pump can be converted into the rotating motion of the rotating frame, the spraying amount is proportional to the stirring speed, the servo motor can adjust the rotating speed of the plunger pump, the liquid adding demand under different processes is adapted, and flexibility is improved.

[0017] Specifically, the bottom of the mixing cavity is rotationally connected with a sealing door, the bottom in the rack is provided with a connecting rod through a bearing, one end of the connecting rod is rotationally connected with the sealing door through a rotating shaft, one end of the connecting rod is rotationally connected with a sleeve on one side of the sealing door, a telescopic air cylinder is rotationally connected with the sleeve on one side in the rack, and the output end of the telescopic air cylinder is connected with the sleeve through bolts.

[0018] By adopting the above technical scheme, the telescopic air cylinder drives the sealing door to automatically open and close through the sleeve and the connecting rod, manual operation is not needed, and the unloading efficiency is improved; the sealing door is designed to be attached to the mixing cavity, material leakage during mixing is prevented, and operation safety is ensured.

[0019] Specifically, the driving assembly comprises a driving cavity, a transmission sprocket is installed in the driving cavity through a bearing, and the transmission sprocket is connected with the stirring shaft through bolts, one side of the rack is provided with a driving sprocket, a tensioning wheel is installed on the top of the transmission sprocket in the driving cavity through a bearing, the periphery of the transmission sprocket, the driving sprocket and the tensioning wheel is connected with a chain belt through meshing, a driving motor is connected with one side of the rack through bolts, and the driving motor is connected with the driving sprocket through a driving shaft.

[0020] By adopting the above technical scheme, the driving motor drives the transmission sprocket to rotate through the driving sprocket and the chain belt, and then drives the stirring shaft to perform stirring and mixing actions; the tensioning wheel can automatically adjust the tension of the chain belt, avoid slipping, ensure stable power transmission, and adapt to long-term high-frequency operation requirements.

[0021] Specifically, the top of the rack is provided with a feeding port, and the feeding port is communicated with the mixing cavity.

[0022] By adopting the above technical scheme, the feeding port can provide a convenient feeding channel for high-viscosity materials, the inclined material guide surface can prevent material accumulation in the feeding port, ensure that the material smoothly enters the mixing cavity, the rack comprises a controller, and the driving motor, the servo motor and the telescopic air cylinder are electrically connected with the controller through wires.

[0023] The beneficial effects of the present application are as follows: The double-shaft high-speed mixing machine suitable for high-viscosity materials has the anti-adhesion mechanism, realizes the cooperative work of stirring and anti-adhesion wall scraping through rotation and wall scraping, effectively solves the adhesion problem of high-viscosity materials, and is beneficial to improving the mixing efficiency and quality of high-viscosity materials.

[0024] The double-shaft high-speed mixing machine suitable for high-viscosity materials has the anti-adhesion mechanism, realizes the cooperative work of stirring and anti-adhesion wall scraping through rotation and wall scraping, effectively solves the adhesion problem of high-viscosity materials, and is beneficial to improving the mixing efficiency and quality of high-viscosity materials. BRIEF DESCRIPTION OF DRAWINGS

[0025] The application will be further described below in combination with the drawings and examples.

[0026] Figure 1 It is a schematic diagram of the overall structure of the application; Figure 2 It is a schematic diagram of the back structure of the application; Figure 3 It is a schematic diagram of the cross-section structure of the mixing cavity of the application; Figure 4 It is a schematic diagram of the anti-adhesion assembly structure of the application; Figure 5 It is a schematic diagram of the cross-section structure of the spraying assembly of the application; Figure 6 It is a schematic diagram of the cross-section structure of the driving assembly of the application; In the figure: 1, rack; 101, mixing cavity; 102, stirring shaft; 103, stirring paddle; 104, sealing door; 105, connecting rod; 106, sleeve; 107, telescopic air cylinder; 2, driving assembly; 201, driving cavity; 202, transmission sprocket; 203, driving sprocket; 204, tension pulley; 205, chain belt; 206, driving motor; 3, anti-adhesion assembly; 301, rotating frame; 302, support rod; 303, arc-shaped scraper; 304, elastic pad; 305, thread; 306, fixed disc; 307, base plate; 308, disc spring; 4, spraying assembly; 401, storage tank; 402, support frame; 403, spraying pipeline; 404, atomizing nozzle; 405, plunger pump; 406, storage tank; 5, transmission gear; 6, servo motor; 7, feeding port. DETAILED DESCRIPTION

[0027] In order to make the technical means, creative features, purposes and effects of the present application easy to understand, the present application is further described below in conjunction with specific embodiments.

[0028] In order to solve the problem of sticking in the mixing process of high viscosity materials, thereby improving the use effect, such as Figures 1-4 The double-shaft high-speed mixer suitable for high-viscosity materials of the present application comprises a rack 1, an anti-sticking assembly 3 and a spraying assembly 4. The rack 1 is provided with a driving assembly 2. The rack 1 is provided with the anti-sticking assembly 3. The back of the rack 1 is provided with the spraying assembly 4. The anti-sticking assembly 3 comprises a rotating frame 301. One side of the rotating frame 301 is connected with a support rod 302 through bolts. The outer periphery of the support rod 302 is provided with an arc-shaped scraper 303. The bottom of the arc-shaped scraper 303 is horizontally provided with an elastic pad 304 for cleaning.

[0029] In use, the rotating frame 301 is rotated to drive the arc-shaped scraper 303 and the elastic pad 304 to scrape the inner wall of the mixing cavity 101, realizing the real-time cooperation of stirring and anti-sticking wall scraping, avoiding the sticking of high-viscosity materials to the inner wall, and at the same time, the elastic pad 304 can reduce the wear of the cavity wall.

[0030] A protective cover is provided in the rack 1 outside the rotating frame 301 and the transmission gear 5. The protective cover is of an open structure, and a sealing ring is provided on the inner side of the protective cover.

[0031] In order to improve the fusion efficiency of liquid and high-viscosity materials, for example, as shown in Figure 2 , Figure 5 The spraying assembly 4 comprises a storage tank 401 and a support frame 402. The storage tank 401 and the support frame 402 are connected to the rack 1 through bolts. The top of the support frame 402 is connected with a spraying pipeline 403 through bolts. The spraying pipeline 403 penetrates the rack 1. An atomizing nozzle 404 is fixedly arranged on one side of the spraying pipeline 403 in the rack 1, and the atomizing nozzle 404 is communicated with the spraying pipeline 403.

[0032] In use, the spraying pipeline 403 cooperates with the multi-angle atomizing nozzle 404 to uniformly atomize the liquid material and cover the action area of the stirring blade 103, ensuring the rapid fusion of liquid and high-viscosity materials and avoiding local caking.

[0033] For example, as shown in Figure 4As shown, the application further comprises that the outer periphery of the rotating frame 301 is provided with a toothed pattern 305, the outer periphery of the support rod 302 is welded with a fixed disc 306, the reserved groove of the elastic pad 304 is provided with a bottom disc 307, and the bottom disc 307 is connected to the bottom of the support rod 302 through bolts, and the outer periphery of the support rod 302 is sleeved with a disc spring 308 between the fixed disc 306 and the arc-shaped scraper 303.

[0034] In use, the toothed pattern 305 provides a driving basis for the anti-adhesion assembly 3, the disc spring 308 can generate a continuous elastic pressure to compensate for the wear of the arc-shaped scraper 303 and the elastic pad 304, ensure that they always fit the inner wall of the mixing cavity 101, and maintain a stable wall scraping effect; the bottom disc 307 enhances the connection stability of the elastic pad 304 and the support rod 302, the elastic pad 304 is made of polytetrafluoroethylene material, and the inner wall of the mixing cavity 101 and the surface of the arc-shaped scraper 303 are coated with a polytetrafluoroethylene coating.

[0035] As shown in the drawings, Figure 5 As shown, the application further comprises that the storage tank 401 is provided with a storage groove 406, and a plunger pump 405 is arranged between the storage tank 401 and the support frame 402, the feeding end of the plunger pump 405 is connected to the storage groove 406 through a pipeline, and the discharging end of the plunger pump 405 is connected to the spray pipeline 403 through a pipeline.

[0036] In use, the plunger pump 405 has stable quantitative conveying capacity and can adapt to the conveying needs of high-viscosity liquid materials, avoiding the problem of easy blockage of traditional pump bodies, and at the same time, directly connecting the storage groove 406 and the spray pipeline 403 through a pipeline can reduce the risk of liquid residue and pollution, and the storage groove 406 comprises a feeding port.

[0037] As shown in the drawings, Figure 3 As shown, the application further comprises that the mixing cavity 101 is formed in the rack 1, the stirring shaft 102 is installed in the mixing cavity 101 through bearings, the outer periphery of the stirring shaft 102 is connected with the stirring paddle 103 through bolts, and the outer periphery of the stirring shaft 102 is sleeved with the rotating frame 301 outside the stirring paddle 103.

[0038] In use, the stirring shaft 102 drives the stirring paddle 103 to rotate in the opposite direction, generating strong shearing and axial pushing force, promoting the circulation flow of high-viscosity materials, and improving the mixing speed and stirring effect of the materials.

[0039] As shown in the drawings, Figure 2 , 5As shown, the application also includes that the transmission gear 5 is arranged between the rotating frame 301 in the mixing cavity 101, the transmission gear 5 is connected through the meshing connection thread 305, and the transmission gear 5 is connected to one end of the input shaft of the plunger pump 405 through bolts, the outside of the plunger pump 405 is connected with the servo motor 6 through bolts, and the servo motor 6 is connected to the other end of the input shaft of the plunger pump 405 through the driving shaft.

[0040] In use, the thread 305 of the rotating frame 301 is engaged with the transmission gear 5, which can convert the power of the plunger pump 405 into the rotating motion of the rotating frame 301, and the spraying amount is proportional to the stirring speed; the servo motor 6 can adjust the rotating speed of the plunger pump 405 to adapt to the liquid adding requirements under different processes and improve flexibility.

[0041] As shown, Figure 3 As shown, the application also includes that the bottom of the mixing cavity 101 is rotationally connected with a sealing door 104, the bottom of the rack 1 is installed with a connecting rod 105 through bearings, one end of the connecting rod 105 is rotationally connected with the sealing door 104 through a rotating shaft, one end of the connecting rod 105 is rotationally connected with a sleeve 106 on one side of the sealing door 104, a telescopic cylinder 107 is rotationally connected on one side of the sleeve 106 in the rack 1, and the output end of the telescopic cylinder 107 is connected with the sleeve 106 through bolts.

[0042] In use, the telescopic cylinder 107 drives the sealing door 104 to automatically open and close through the sleeve 106 and the connecting rod 105, without manual operation, and the unloading efficiency is improved; the sealing door 104 is designed to be attached to the mixing cavity 101 to prevent material leakage during mixing, ensure operation safety, and the sealing door 104 is provided with a sealing strip.

[0043] As shown, Figure 6 As shown, the application also includes that the drive assembly 2 includes a drive cavity 201, the drive cavity 201 is installed with a transmission sprocket 202 through bearings, and the transmission sprocket 202 is connected with the stirring shaft 102 through bolts, one side of the rack 1 is provided with a drive sprocket 203, the top of the transmission sprocket 202 in the drive cavity 201 is installed with a tensioner 204 through bearings, the periphery of the transmission sprocket 202, the drive sprocket 203 and the tensioner 204 is connected with a chain belt 205 through meshing, one side of the rack 1 is connected with a drive motor 206 through bolts, and the drive motor 206 is connected with the drive sprocket 203 through the driving shaft.

[0044] In use, the driving motor 206 drives the transmission sprocket 202 to rotate through the driving sprocket 203 and the chain belt 205, and then drives the stirring shaft 102 to perform stirring and mixing actions; the tensioner 204 can automatically adjust the tension of the chain belt 205 to avoid slipping and ensure stable power transmission, which is suitable for long-term high-frequency operation requirements, and the chain belt 205 is a polyurethane synchronous belt.

[0045] As shown in the examples, Figure 2 As shown in the examples,

[0046] In use, the feeding opening 7 can provide a convenient feeding channel for high-viscosity materials, and the inclined guide surface can prevent the materials from accumulating in the feeding opening, ensuring that the materials smoothly enter the mixing cavity 101; the rack 1 comprises a controller, and the driving motor 206, the servo motor 6 and the telescopic cylinder 107 are all electrically connected to the controller through wires.

[0047] In use, first, the high-viscosity materials to be mixed (such as PVC paste resin) are poured into the mixing cavity 101 through the feeding opening 7, and the liquid materials to be added (such as plasticizers) are injected into the storage tank 401 through the injection opening of the storage groove 406; after checking the connection state of each component, such as the sealing performance of the spray pipeline 403 and the tension of the chain belt 205, the driving motor 206 is started, the driving motor 206 drives the driving sprocket 203 to rotate, the chain belt 205 is engaged with the transmission sprocket 202, and the two stirring shafts 102 are driven to rotate in reverse at a set speed ratio, such as 1:1.5; the tensioner 204 adjusts the tension of the chain belt 205 in real time to avoid power transmission slipping, the stirring shaft 102 drives the stirring paddles 103 to rotate, the main stirring section with variable cross-section pushes the materials along the axial direction, and the sawtooth edge of the auxiliary shearing section produces strong shearing on the high-viscosity materials to promote uniform mixing of the materials; At the same time, the servo motor 6 is started, the input shaft of the plunger pump 405 drives the transmission gear 5 to rotate, the transmission gear 5 is engaged with the toothed groove 305 to drive the two groups of rotating frames 301 on the outer side of the stirring shaft 102 to rotate synchronously, the arc-shaped scrapers 303 on the rotating frames 301 are in close contact with the elastic pads 304 to scrape the inner wall of the mixing cavity 101, which can remove the adhered materials; the disc springs 308 on the supporting rods 302 continuously compensate for wear to ensure the stability of the scraping pressure, so as to improve the mixing efficiency and quality of the high-viscosity materials; At the same time, the input shaft of the plunger pump 405 rotates synchronously, the plunger pump 405 sucks the liquid materials from the storage groove 406, pressurizes the liquid materials, and then delivers the liquid materials to the atomizing nozzle 404 through the spray pipeline 403; the atomizing nozzle 404 sprays the atomized liquid at an angle of 45° to the action area of the stirring paddles 103 in the mixing cavity 101, which ensures that the liquid and the materials can be immediately mixed; if it is necessary to adjust the spray amount, the speed of the plunger pump 405 can be finely adjusted through the servo motor 6 to adapt to different mixing process requirements; After the mixing of the high-viscosity material is completed, the driving motor 206 and the servo motor 6 are closed, the telescopic cylinder 107 is started, the output end of the telescopic cylinder 107 pushes the sleeve 106 to move, drives the connecting rod 105 to rotate around the bearing, and then pulls open the sealing door 104 at the bottom of the mixing cavity 101, and the mixed material is automatically discharged; after the discharging is completed, the telescopic cylinder 107 is controlled to reset, the sealing door 104 is closed, and the next operation is waited for, the overall structure is simple and easy to operate, the use is more efficient and reliable, and the adaptability for mixing of high-viscosity materials is greatly improved.

[0048] The above shows and describes the basic principles, main features and advantages of the present application. Those skilled in the art should understand that the present application is not limited to the above-mentioned embodiments, and the above-mentioned embodiments and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A twin-shaft high-speed mixer suitable for high-viscosity materials, characterized in that, It includes a frame (1), an anti-adhesion component (3) and a spray component (4). A drive component (2) is provided inside the frame (1), an anti-adhesion component (3) is provided inside the frame (1), and a spray component (4) is provided on the back of the frame (1). The anti-adhesion component (3) includes a rotating frame (301), one side of which is connected to a support rod (302) by bolts. An arc-shaped scraper (303) is sleeved around the support rod (302), and an elastic pad (304) for cleaning is horizontally arranged at the bottom of the arc-shaped scraper (303).

2. The twin-shaft high-speed mixer suitable for high-viscosity materials according to claim 1, characterized in that, The spray assembly (4) includes a storage tank (401) and a support frame (402), and the storage tank (401) and the support frame (402) are both connected to the frame (1) by bolts. The top of the support frame (402) is connected to a spray pipe (403) by bolts, and the spray pipe (403) passes through the frame (1). An atomizing nozzle (404) is fixedly installed on one side of the spray pipe (403) inside the frame (1), and the atomizing nozzle (404) is connected to the spray pipe (403).

3. A twin-shaft high-speed mixer suitable for high-viscosity materials according to claim 2, characterized in that, The rotating frame (301) is provided with teeth (305) on its periphery, the support rod (302) is welded with a fixed plate (306) on its periphery, the elastic pad (304) is provided with a base plate (307) in the reserved groove, and the base plate (307) is connected to the bottom of the support rod (302) by bolts. The support rod (302) is provided with a disc spring (308) between the fixed plate (306) and the arc scraper (303) on its periphery.

4. A twin-shaft high-speed mixer suitable for high-viscosity materials according to claim 3, characterized in that, The storage tank (401) is provided with a storage trough (406). A plunger pump (405) is provided between the storage tank (401) and the support frame (402). The feed end of the plunger pump (405) is connected to the storage trough (406) through a pipe, and the discharge end of the plunger pump (405) is connected to the spray pipe (403) through a pipe.

5. A twin-shaft high-speed mixer suitable for high-viscosity materials according to claim 4, characterized in that, The frame (1) has a mixing chamber (101) inside, and a stirring shaft (102) is installed in the mixing chamber (101) by bearings. The stirring shaft (102) is connected to a stirring blade (103) by bolts, and the outer side of the stirring shaft (102) is located outside the stirring blade (103) and a rotating frame (301) is sleeved.

6. A twin-shaft high-speed mixer suitable for high-viscosity materials according to claim 5, characterized in that, A transmission gear (5) is provided in the mixing chamber (101) between the rotating frame (301). The transmission gear (5) is connected to the toothed teeth (305) through meshing. The transmission gear (5) is connected to one end of the input shaft of the plunger pump (405) through bolts. A servo motor (6) is connected to the outside of the plunger pump (405) through bolts. The servo motor (6) is connected to the other end of the input shaft of the plunger pump (405) through a drive shaft.

7. A twin-shaft high-speed mixer suitable for high-viscosity materials according to claim 6, characterized in that, A sealing door (104) is rotatably connected to the bottom of the mixing chamber (101). A connecting rod (105) is installed at the bottom of the frame (1) via a bearing. One end of the connecting rod (105) is rotatably connected to the sealing door (104) via a rotating shaft. A sleeve (106) is rotatably connected to one side of the sealing door (104) at one end of the connecting rod (105). A telescopic cylinder (107) is rotatably connected to one side of the sleeve (106) inside the frame (1). The output end of the telescopic cylinder (107) is connected to the sleeve (106) via bolts.

8. A twin-shaft high-speed mixer suitable for high-viscosity materials according to claim 7, characterized in that, The drive assembly (2) includes a drive chamber (201), in which a drive sprocket (202) is mounted by bearings, and the drive sprocket (202) is connected to the stirring shaft (102) by bolts. A drive sprocket (203) is provided on one side of the frame (1). A tension wheel (204) is mounted by bearings on the top of the drive sprocket (202) in the drive chamber (201). The outer peripheries of the drive sprocket (202), drive sprocket (203) and tension wheel (204) are all connected by meshing chain belts (205). A drive motor (206) is connected to one side of the frame (1) by bolts, and the drive motor (206) is connected to the drive sprocket (203) by a drive shaft.

9. A twin-shaft high-speed mixer suitable for high-viscosity materials according to claim 8, characterized in that, The top of the frame (1) is provided with a feeding port (7), and the feeding port (7) is connected to the mixing chamber (101).