Processing method and processing equipment of stone-like paint
By designing a combination of scraper and mixing mechanism, the problems of raw material adhesion and difficulty in complete discharge in the imitation stone paint processing equipment are solved, achieving complete mixing and efficient discharge of raw materials.
Patent Information
- Application Number
- CN202511824638.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-05
- Publication Date
- 2026-01-02
AI Technical Summary
Existing stone paint processing equipment tends to cause raw materials to adhere to the inner wall of the mixing tank during the mixing process, resulting in poor mixing effect and difficulty in completely discharging the adhered raw materials after mixing.
A stone-like paint processing device was designed, including a mixing mechanism, a scraper mechanism, and a stirring mechanism. The scraper mechanism scrapes the inner wall to remove the adhering raw material, and the rotation of the stirring mechanism and the guidance of the scraper mechanism allow the raw material to be completely discharged from the discharge pipe.
It effectively prevents raw materials from adhering to the inner wall of the mixing tank, ensures the complete discharge of raw materials, and improves the mixing effect.
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Figure CN121244060A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of stone-like paint processing, in particular to a stone-like paint processing method and processing equipment. BACKGROUND
[0002] Stone-like paint has the characteristics of fireproof, waterproof, acid and alkali resistant, pollution resistant, non-toxic, odorless, strong adhesion, never fading, etc., which can effectively prevent the erosion of the external harsh environment on the building and prolong the service life of the building. Since the stone-like paint has good adhesion and freeze-thaw resistance, it is particularly suitable for use in cold regions. Stone-like paint is mainly composed of natural colored sand and acrylic emulsion. As a film-forming agent, acrylic emulsion can also add additives such as polyurethane to enhance the texture and adhesion. The processing of stone-like paint requires grinding the raw materials such as quartz sand, river sand, and sea sand to a very fine state, and then mixing and stirring them with additives such as acrylic emulsion to form stone-like paint.
[0003] However, the ground raw materials need to be stirred and mixed with acrylic emulsion to form them. During stirring, part of the raw materials may adhere to the inner wall of the stirring tank and hang on the wall. Long-time stirring is required to bring out the raw materials on the inner wall, which causes poor stirring effect. After stirring, the stone-like paint adhering to the inner wall is driven by the stirring rod, and the rotation of the stirring rod will only be near the cross section, causing incomplete discharge of the stone-like paint on the inner wall. SUMMARY
[0004] The present application provides a stone-like paint processing method and processing equipment which overcomes the deficiencies described in the background art.
[0005] The technical solution adopted by the present application to solve its technical problems is: A stone-like paint processing equipment, comprising a rack, a mixing mechanism, a motor, an inlet hopper, a controller and an extractor, the extractor is provided with two spliced pipelines, and the pipelines are respectively connected to the inside of the inlet hopper and the upper end of the mixing mechanism, the raw materials in the inlet hopper are conveyed to the mixing mechanism through the pipelines of the extractor, the mixing mechanism is horizontally supported by the rack, the motor is fixed on the upper end of the rack, and the motor output end rotates around the center axis of the mixing mechanism, the lower end of the mixing mechanism is provided with a discharge pipe corresponding to the position of the controller, the discharge pipe is opened and closed by the controller, and the mixed raw materials in the mixing mechanism are discharged from the discharge pipe; The mixing mechanism is also provided with a scraper mechanism, a mixing barrel, a stirring mechanism and a feeding port, the upper and lower ends of the mixing barrel are respectively provided with a feeding port and a discharging pipe, one of the pipelines of the extractor is connected to the upper end of the feeding port, the output end of the motor is fixed through the corresponding stirring mechanism in the side of the mixing barrel, the stirring mechanism and the scraper mechanism are located on the central axis of the mixing barrel, the stirring mechanism drives the scraper mechanism to rotate, the scraper mechanism scrapes the inner wall of the mixing barrel, and the raw materials on the inner wall of the mixing barrel are discharged from the bottom to the discharging pipe.
[0006] Further, the scraper mechanism is provided with a scraping strip structure, a hollow groove, a circular ring and a support strip, the circular ring is provided with two, the two circular rings are in parallel state, the two circular rings are fixedly connected through the support strip, the scraping strip structure is fixed along the outer side of the support strip, and the two ends of the scraping strip structure are fixed on the outer side of the circular ring, the hollow groove is located between the support strips, the outer side of the stirring mechanism is fixed corresponding to the inner side of the circular ring, and the circular ring is driven to rotate by the stirring mechanism, so that the support strip scrapes and guides the raw materials on the inner wall of the mixing barrel.
[0007] Further, the scraping strip structure comprises a stretching strip, a scraping strip and a rotating shaft, the two sides of the stretching strip are respectively attached to the outer side of the support strip and the inner side of the scraping strip, the scraping strip is in "L" shape, and the straight edge of the scraping strip is inserted into the support strip through the rotating shaft for rotation, when the scraping strip scrapes the inner wall of the mixing barrel, the scraping strip swings through the stretching strip, and the scraping strip slightly rotates through the rotating shaft.
[0008] Further, the stirring mechanism comprises a rotating rod mechanism, a support plate, a blade plate and a connecting rod, the connecting rod is fixed at the outer end of the rotating rod mechanism, the output end of the motor is fixedly connected with the connecting rod, and the connecting rod rotates on the bearing at the central axis position of the side of the mixing barrel, the support plate is provided with eight, which are fixed in ring array state in two groups on the outer side of the rotating rod mechanism, and the outer end of each support plate is fixedly connected with the inner side of the corresponding circular ring, the blade plate is provided with four, and is fixed on the outer side of the middle of the rotating rod mechanism, when the connecting rod drives the rotating rod mechanism to rotate, the blade plate swings left and right on the outer side of the middle of the rotating rod mechanism.
[0009] Further, the rotating rod mechanism comprises a spring, a connecting ring, a rotating rod and a rubber ring, the rotating rod is concave in the middle, the rubber ring is sleeved in the corresponding concave of the rotating rod, the spring is located inside the rubber ring, and the two ends of the spring are fixed on the outer side of the rotating rod and the inner side of the connecting ring, the blade plate is fixed on the outer side of the connecting ring, when the rotating rod rotates, the connecting ring drives the support plate to swing left and right through the elasticity of the spring.
[0010] A processing method of stone-like paint, based on the above-mentioned processing equipment of stone-like paint, the specific processing method is as follows: S1: feeding: the raw materials in the feeding hopper are extracted upward by the extractor driven by an electric signal and fall from the feeding port into the mixing barrel, and then the motor drives the stirring mechanism in the mixing mechanism to rotate, so that the stirring mechanism mixes and stirs the raw materials in the mixing barrel; S2: mixing: the rotation of the stirring mechanism drives the scraper mechanism to scrape the inner wall of the mixing barrel, and makes the raw materials adhered to the inner wall of the mixing barrel participate in mixing and stirring again, so that the scraper strip structure in the scraper mechanism drives the raw materials to move in the direction of the discharge pipe on the right side of the mixing barrel, when the discharge pipe is not opened, the raw materials flow and mix in the middle under the block of the right inner wall of the mixing barrel, and the raw materials move to the left side of the mixing barrel to participate in the mixing and stirring of the stirring mechanism again; S3: stirring: during the rotation of the stirring mechanism, the irregular resistance of the raw materials causes the connecting ring to extrude the rubber ring, and the spring makes the connecting ring drive the blade plate to swing left and right, so that the raw materials in the mixing barrel are fully mixed and stirred under the swing of the blade plate; S4: discharge: when the discharge pipe is opened, the raw materials are discharged in the direction of the discharge pipe under the guidance of the scraper mechanism, and the rotation of the stirring mechanism causes the raw materials to move on the inner wall of the mixing barrel, and the scraper mechanism outside the stirring mechanism also guides the raw materials on the inner wall of the mixing barrel to the discharge pipe, so that the raw materials can be completely discharged in the mixing mechanism.
[0011] Compared with the prior art, the technical scheme has the following advantages: In the present application, when the raw materials are discharged to the discharge pipe, the amount of raw materials in the mixing barrel will decrease, at this time, under the guidance of the scraper strip, the raw materials are not blocked by the right side of the mixing barrel, but are discharged from the discharge pipe, and then the amount of raw materials moving to the middle of the mixing barrel after being blocked by the right side of the mixing barrel will slowly decrease, and the raw materials participating in the stirring of the stirring mechanism will also slowly decrease, until all the raw materials are guided by the scraper strip to the discharge pipe, and then the effect of completely discharging the raw materials from the inside of the mixing barrel is achieved, and the problem that the raw materials cannot be completely discharged after mixing and stirring in the mixing barrel is solved.
[0012] In the present application, the connecting rod rotates to drive the rotating rod mechanism to rotate, and the scraper mechanism is guided to rotate by the support plate, and when the rotating rod mechanism rotates, the support plate mixes and stirs the raw materials in the middle of the mixing barrel, the connecting ring swings left and right outside the rubber ring through the elasticity of the spring when the blade plate mixes and stirs the raw materials, the connecting ring extrudes the rubber ring, changes the center position of the connecting ring, and makes the blade plate irregularly swing during the mixing and stirring of the raw materials, and the scraper mechanism re-scrapes the raw materials on the inner wall of the mixing barrel to participate in the stirring, which enhances the stirring effect of the blade plate on the raw materials and avoids poor stirring effect. BRIEF DESCRIPTION OF DRAWINGS
[0013] The present application will be further described below in conjunction with the drawings and examples.
[0014] Figure 1 This is an overall diagram of the present invention.
[0015] Figure 2 This is a side view of the hybrid mechanism.
[0016] Figure 3 This is a three-dimensional schematic diagram of the scraper mechanism.
[0017] Figure 4 This is a partially enlarged schematic diagram of the scraper structure.
[0018] Figure 5 This is a three-dimensional schematic diagram of the stirring mechanism.
[0019] Figure 6 This is a schematic diagram of the lever mechanism on the screen.
[0020] In the diagram: Frame-1, Mixing mechanism-2, Motor-3, Feed hopper-4, Controller-5, Extractor-6, Discharge pipe-21, Scraper mechanism-22, Mixing tank-23, Stirring mechanism-24, Feed port-25, Scraper structure-31, Hollow groove-32, Ring-33, Support bar-34, Stretching bar-311, Scraper bar-312, Rotating shaft-313, Rotating rod mechanism-41, Support plate-42, Blade plate-43, Connecting rod-44, Spring-411, Connecting ring-412, Rotating rod-413, Rubber ring-414. Detailed Implementation
[0021] like Figures 1 to 6 As shown, the present invention proposes a processing equipment for imitation stone paint, including a frame 1, a mixing mechanism 2, a motor 3, a feed hopper 4, a controller 5, and an extractor 6. The extractor 6 is provided with two spliced pipes, which are respectively connected to the inside of the feed hopper 4 and the upper end of the mixing mechanism 2. The raw material in the feed hopper 4 is transported to the mixing mechanism 2 through the pipes of the extractor 6. The mixing mechanism 2 is horizontally supported by the frame 1. The motor 3 is fixed to the upper end of the frame 1, and the output end of the motor 3 rotates corresponding to the central axis of the mixing mechanism 2. The lower end of the mixing mechanism 2 is provided with a discharge pipe 21 corresponding to the position of the controller 5. The controller 5 controls the opening and closing of the discharge pipe 21, and the mixed raw material inside the mixing mechanism 2 is discharged from the discharge pipe 21. The mixing mechanism 2 is also provided with a scraper mechanism 22, a mixing barrel 23, a stirring mechanism 24 and a feeding port 25. The mixing barrel 23 is provided with a feeding port 25 and a discharge pipe 21 at its upper and lower ends respectively. One of the pipelines of the extractor 6 is connected to the upper end of the feeding port 25. The output end of the motor 3 is fixed through the side of the mixing barrel 23 and corresponds to the middle of the stirring mechanism 24. The stirring mechanism 24 and the scraper mechanism 22 are located on the central axis of the mixing barrel 23. The driving of the motor 3 drives the stirring mechanism 24 to rotate the scraper mechanism 22. The scraper mechanism 22 scrapes the inner wall of the mixing barrel 23 and makes the raw materials on the inner wall of the mixing barrel 23 move from the bottom to the discharge pipe 21.
[0022] The discharge pipe 21 is internally provided with a vortex opener for opening and closing. The opening and closing of the vortex opener are controlled by the controller 5 to facilitate the discharge of the raw materials from the discharge pipe 21. The driving of the motor 3 and the extractor 6 is controlled by the controller 5 through electrical signal control. The output end of the motor 3 drives the center of the stirring mechanism 24 to rotate. The inside of the mixing mechanism 2 is in a sealed state. The discharge pipe 21 is located at the lower end closest to the right side of the mixing barrel 23. The feeding port 25 is located at the upper end of the middle of the mixing barrel 23. After the raw materials enter the inside of the mixing barrel 23 from the feeding port 25, they are mainly mixed and stirred by the middle of the stirring mechanism 24.
[0023] The scraper mechanism 22 is provided with a scraper structure 31, a hollow groove 32, a circular ring 33 and a support bar 34. The circular ring 33 is provided with two, which are in a parallel state. The two circular rings 33 are connected and fixed by the support bar 34. The scraper structure 31 is fixed along the outside of the support bar 34, and the two ends of the scraper structure 31 are fixed outside the circular ring 33. The hollow groove 32 is located between the support bars 34. The outside of the stirring mechanism 24 corresponds to the inside of the circular ring 33 and is fixed. The rotation of the circular ring 33 driven by the stirring mechanism 24 makes the support bar 34 scrape and guide the raw materials on the inner wall of the mixing barrel 23.
[0024] The support bar 34 is in an arc shape. When the support bar 34 rotates with the circular ring 33, a spiral effect is generated, which makes the scraper structure 31 outside the support bar 34 drive the raw materials in the mixing barrel 23 to the position of the discharge pipe 21. The raw materials on the bottom of the mixing barrel 23 that are rotated by the scraper structure 31 to the upper side will fall back to the bottom from the position of the hollow groove 32. Before falling back to the bottom, the raw materials will be stirred by the stirring mechanism 24, so that the raw materials on the inner wall and the bottom of the mixing barrel 23 can participate in the mixing and stirring.
[0025] The scraping strip structure 31 comprises a stretching strip 311, a scraping strip 312 and a pivot 313. The stretching strip 311 is attached to the outer side of the supporting strip 34 and the inner side of the scraping strip 312 respectively. The scraping strip 312 is in the shape of "L". The straight edge of the scraping strip 312 is inserted into the supporting strip 34 through the pivot 313 to rotate. When the scraping strip 312 scrapes the inner wall of the mixing barrel 23, the scraping strip 312 swings through the stretching strip 311 and slightly rotates through the pivot 313.
[0026] The scraping strip 312 scrapes the inner wall of the mixing barrel 23 under the elasticity of the stretching strip 311. When the thickness of the raw material exceeds the scraping strip 312, the scraping strip 312 rotates through the pivot 313 under the elasticity of the stretching strip 311, so that the scraping strip 312 increases the inclination angle along the supporting strip 34, improving the guiding and scraping effect of the scraping strip structure 31 on the raw material of the inner wall of the mixing barrel 23.
[0027] The stirring mechanism 24 comprises a rotating rod mechanism 41, a supporting plate 42, a blade plate 43 and a connecting rod 44. The connecting rod 44 is fixed to the outer end of the rotating rod mechanism 41. The output end of the motor 3 is fixedly connected to the connecting rod 44, and the connecting rod 44 rotates on the bearing at the central axis position of the side of the mixing barrel 23. The supporting plate 42 is provided with eight supporting plates, which are fixed in a ring array state on the outer side of the rotating rod mechanism 41 in two groups. The outer end of each supporting plate 42 is fixedly connected to the inner side of the circular ring 33. The blade plate 43 is provided with four blade plates, which are fixed to the outer side of the middle of the rotating rod mechanism 41. When the connecting rod 44 drives the rotating rod mechanism 41 to rotate, the blade plate 43 swings left and right on the outer side of the middle of the rotating rod mechanism 41.
[0028] The length of the blade plate 43 is shorter than that of the supporting plate 42. When the blade plate 43 rotates, the raw material is thrown to the inner wall of the mixing barrel 23 under the rotating force of the blade plate 43. The raw material on the inner wall of the mixing barrel 23 is driven to the position of the blade plate 43 by the scraping plate mechanism 22, enhancing the mixing and stirring effect on the raw material.
[0029] The rotating rod mechanism 41 comprises a spring 411, a connecting ring 412, a rotating rod 413 and a rubber ring 414. The middle of the rotating rod 413 is concave. The rubber ring 414 is sleeved in the corresponding concave shape of the rotating rod 413. The spring 411 is located inside the rubber ring 414, and the two ends of the spring 411 are fixed to the outer side of the rotating rod 413 and the inner side of the connecting ring 412. The blade plate 43 is fixed to the outer side of the connecting ring 412. When the rotating rod 413 rotates, the connecting ring 412 drives the supporting plate 42 to swing left and right through the elasticity of the spring 411.
[0030] When the raw materials are discharged from the discharge pipe 21, the amount of the raw materials on the inner wall of the mixing bucket 23 will decrease, at this time, the raw materials are no longer blocked by the right side of the mixing bucket 23, but will be discharged from the discharge pipe 21 while being guided by the scraping strip 312, and then the amount of the raw materials blocked by the right side of the mixing bucket 23 will slowly decrease when being discharged, and then the amount of the raw materials participating in the stirring of the stirring mechanism 24 will slowly decrease, until the scraping strip 312 guides all the raw materials to be discharged from the discharge pipe 21, and then the effect of completely discharging the raw materials from the inside of the mixing bucket 23 is realized, and the problem that the raw materials cannot be completely discharged after being mixed and stirred in the mixing bucket 23 is prevented, and under the rotation inertia force of the scraping plate mechanism 22 and the stirring mechanism 24, the raw materials will be thrown to the inner wall of the mixing bucket 23, and the raw materials on the inner wall of the mixing bucket 23 will be guided to the position of the discharge pipe 21 under the rotation of the scraping plate mechanism 22, and then the problem that the scraping plate mechanism 22 and the stirring mechanism 24 still adhere to the raw materials is avoided.
[0031] In the present application, the connecting rod 44 rotates to drive the rotating rod mechanism 41 to rotate, and the scraping plate mechanism 22 is driven by the supporting plate 42 to rotate and guide the raw materials on the inner wall of the mixing bucket 23, and when the rotating rod mechanism 41 rotates, the raw materials in the middle of the mixing bucket 23 are mixed and stirred by the supporting plate 42, and when the blade plate 43 mixes and stirs the raw materials, the connecting ring 412 swings left and right outside the rubber ring 414 by the elasticity of the spring 411, and the connecting ring 412 extrudes the rubber ring 414, changes the center position of the connecting ring 412, and makes the blade plate 43 irregularly swing to mix and stir the raw materials, and the raw materials on the inner wall of the mixing bucket 23 are scraped again by the scraping plate mechanism 22 to participate in the stirring, which enhances the stirring effect of the blade plate 43 on the raw materials and avoids poor stirring effect.
[0032] A processing method of stone-like paint based on the above-mentioned processing equipment of stone-like paint, the specific processing method is as follows: S1: feeding: the raw materials in the feeding hopper 4 are extracted upward and fall into the mixing bucket 23 from the feeding port 25 by driving the extractor 6 through an electrical signal, and then the stirring mechanism 24 in the mixing mechanism 2 is driven to rotate by the motor 3, so that the raw materials in the mixing bucket 23 are mixed and stirred by the stirring mechanism 24; S2: mixing: the rotation of the stirring mechanism 24 drives the scraping plate mechanism 22 to scrape the inner wall of the mixing bucket 23, and makes the raw materials adhered to the inner wall of the mixing bucket 23 participate in the mixing and stirring again, and the scraping strip structure 31 in the scraping plate mechanism 22 drives the raw materials to move to the right side of the discharge pipe 21 in the mixing bucket 23, and when the discharge pipe 21 is not opened, the raw materials flow and mix in the middle of the right side of the inner wall of the mixing bucket 23, and then the raw materials move to the left side of the mixing bucket 23 to participate in the mixing and stirring of the stirring mechanism 24 again; S3: stirring: during the rotation of the stirring mechanism 24, the irregular resistance of the raw materials makes the connecting ring 412 press the rubber ring 414, and the spring 411 makes the connecting ring 412 drive the blade plate 43 to swing left and right, so that the raw materials in the mixing barrel 23 are fully mixed and stirred under the swing of the blade plate 43; S4: discharging: when the discharge pipe 21 is opened, the raw materials are discharged to the discharge pipe 21 direction guided by the scraper mechanism 22, because the rotation of the stirring mechanism 24 will make the raw materials move to the inner wall of the mixing barrel 23, and the scraper mechanism 22 outside the stirring mechanism 24 will guide the raw materials on the inner wall of the mixing barrel 23 to the discharge pipe 21, so that the raw materials can be completely discharged in the mixing mechanism 2.
[0033] The above is only a preferred embodiment of the present application, and therefore cannot limit the scope of the present application, that is, equivalent changes and modifications made according to the scope of the present patent and the content of the specification should still be within the scope of the present application.
Claims
1. A processing equipment for imitation stone paint, characterized in that: The device includes a frame, a mixing mechanism, a motor, a feed hopper, a controller, and an extractor. The extractor has two connected pipes, which are respectively connected to the inside of the feed hopper and the upper end of the mixing mechanism. The raw materials in the feed hopper are transported to the mixing mechanism through the pipes of the extractor. The mixing mechanism is horizontally supported by the frame. The motor is fixed to the upper end of the frame, and the motor output rotates corresponding to the central axis of the mixing mechanism. The lower end of the mixing mechanism is provided with a discharge pipe corresponding to the controller position. The controller controls the opening and closing of the discharge pipe, and the mixed raw materials inside the mixing mechanism are discharged from the discharge pipe. The mixing mechanism also includes a scraper mechanism, a mixing tank, a stirring mechanism, and a feed inlet. The mixing tank has a feed inlet and a discharge pipe at its upper and lower ends, respectively. One of the pipes of the extractor is connected to the upper end of the feed inlet. The output end of the motor passes through the side of the mixing tank and is fixed in the middle of the stirring mechanism. The stirring mechanism and the scraper mechanism are located on the central axis of the mixing tank. The motor drives the stirring mechanism to rotate the scraper mechanism, and the scraper mechanism scrapes the inner wall of the mixing tank, causing the raw material on the inner wall of the mixing tank to move from the bottom to the discharge pipe for discharge. The scraper mechanism includes a scraper structure, a hollow groove, a ring, and a support bar. There are two rings, which are parallel to each other and are connected and fixed by the support bar. The scraper structure is fixed along the outside of the support bar, and both ends of the scraper structure are fixed to the outside of the ring. The hollow groove is located between the support bars. The outside of the stirring mechanism is fixed to the inside of the ring, and the stirring mechanism drives the ring to rotate, so that the support bar scrapes and guides the raw material on the inner wall of the mixing tank. The scraper structure includes a stretching strip, a scraper, and a rotating shaft. The two sides of the stretching strip are respectively attached to the outer side of the support strip and the inner side of the scraper. The scraper is L-shaped, and the straight edge of the scraper is inserted into the support strip through the rotating shaft to rotate. When the scraper scrapes the inner wall of the mixing tank, the scraper swings through the stretching strip and causes the scraper to rotate slightly through the rotating shaft.
2. The processing equipment for imitation stone paint according to claim 1, characterized in that: The stirring mechanism includes a rotating rod mechanism, support plates, blade plates, and connecting rods. The connecting rod is fixed to the outer end of the rotating rod mechanism, and the motor output end is fixedly connected to the connecting rod, causing the connecting rod to rotate at the central axis position on the side of the mixing tank. There are eight support plates, which are divided into two groups and fixed to the outside of the rotating rod mechanism in a circular array. The outer end of each support plate is fixedly connected to the inner side of the corresponding ring. There are four blade plates, which are fixed to the middle outer side of the rotating rod mechanism. When the connecting rod drives the rotating rod mechanism to rotate, the blade plates swing left and right on the middle outer side of the rotating rod mechanism.
3. The processing equipment for imitation stone paint according to claim 2, characterized in that: The rotating rod mechanism includes a spring, a connecting ring, a rotating rod, and a rubber ring. The rotating rod has a concave shape in the middle, and the rubber ring is fitted inside the concave shape of the corresponding rotating rod. The spring is located inside the rubber ring, and both ends of the spring are fixed to the outside of the rotating rod and the inside of the connecting ring. The blade plate is fixed to the outside of the connecting ring. When the rotating rod rotates, the connecting ring drives the support plate to swing left and right through the elasticity of the spring.
4. A method for processing imitation stone paint, based on the processing equipment for imitation stone paint as described in claim 3, characterized in that: The specific processing method is as follows: S1: Feeding: The extractor is driven by an electrical signal to draw the raw material in the feed hopper upward and drop it into the mixing tank from the feed port. This drives the motor to rotate the stirring mechanism in the mixing mechanism, so that the stirring mechanism mixes and stirs the raw material in the mixing tank. S2: Mixing: The rotation of the stirring mechanism drives the scraper mechanism to scrape the inner wall of the mixing tank, and causes the raw materials adhering to the inner wall of the mixing tank to participate in the mixing again. The scraper structure in the scraper mechanism drives the raw materials to move towards the right discharge pipe in the mixing tank. When the discharge pipe is not open, the raw materials flow towards the middle under the obstruction of the right inner wall of the mixing tank, and cause the raw materials to move towards the left side of the mixing tank to participate in the mixing of the stirring mechanism. S3: Stirring: During the rotation of the stirring mechanism, when the blade plate drives the raw material to stir, the connecting ring squeezes the rubber ring under the irregular resistance of the raw material, and under the elastic force of the spring, the connecting ring drives the blade plate to swing left and right, so that the raw material in the mixing tank is fully mixed and stirred under the swing of the blade plate. S4: Discharge: When the discharge pipe is opened, the raw material is discharged towards the discharge pipe by the scraper mechanism. Due to the rotation of the stirring mechanism, the raw material will move towards the inner wall of the mixing tank. The scraper mechanism on the outside of the stirring mechanism will also guide the raw material on the inner wall of the mixing tank towards the discharge pipe, so that the raw material can be completely discharged inside the mixing mechanism.
Citation Information
Patent Citations
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