Automatic feeding device for health preserving agent in SAP

By designing an automatic SAP internal curing agent feeding device, utilizing a drive shaft, mixing rod, and hydraulic lifting system, the problem of uneven distribution of SAP internal curing agent in concrete was solved, thereby improving the service efficiency and lifespan of concrete.

CN116020316BActive Publication Date: 2025-11-25GUANGXI XINHENGTONG EXPRESSWAY CO LTD +1
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Patent Information

Application Number
CN202211704195.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-29
Publication Date
2025-11-25
Estimated Expiration
2042-12-29

AI Technical Summary

Technical Problem

Existing concrete mixing and conveying equipment cannot achieve automatic feeding and uniform distribution of SAP curing agent, resulting in poor efficiency and insignificant effects.

Method used

An automatic feeding device for SAP internal curing agent was designed, including a chassis, a processing mixing tank, a feeding and mixing device, and a high-efficiency shaking and stirring device. Through a transmission shaft, a mixing rod, a functional stirring mechanism, and a hydraulic lifting system, the device achieves the formation and uniform distribution of the SAP internal curing agent suspension.

Benefits of technology

It achieves uniform distribution and efficient mixing of SAP internal curing agent in concrete, improving the concrete's resistance to freeze-thaw cycles and service life.

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Abstract

The present application relates to the technical fields of concrete processing, and discloses an automatic SAP internal health agent feeding device, which comprises a carrying frame, the carrying frame is provided with a carrying platform, the carrying platform is fixedly provided with a processing mixing barrel, the inner wall of the processing mixing barrel is provided with a gear position convex strip in an array, a feeding and stirring device is arranged on the upper side of the processing mixing barrel in a liftable manner, the feeding and stirring device comprises a processing function top cover, the processing function top cover is arranged on the upper side of the processing mixing barrel in a sliding manner, and the carrying ring is arranged in the feeding and mixing cavity; in the rotating process of the transmission rotating shaft, the two mixing stirring rods with different heights are rotated at a high speed to drive the internal aqueous solution and the SAP internal health agent to be fully stirred and treated, so that the SAP internal health agent suspension is formed, and thus the problem that the SAP internal health agent in a powder state is inconvenient to mix and uniformly distributed when being added into the concrete is avoided.
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Description

Technical Field

[0001] This invention relates to the field of concrete processing technology, specifically to an automatic feeding device for SAP internal curing agents. Background Technology

[0002] The main component of SAP (Super Absorbent Polymer) internal curing agent is superabsorbent polymer. In the transportation and construction industries, it is often necessary to add SAP internal curing agent to concrete to significantly reduce the early autogenous shrinkage of concrete and improve its resistance to freeze-thaw cycles, thereby improving the performance and service life of concrete and effectively mitigating expansion problems. However, existing concrete mixing and conveying equipment does not have an automatic feeding and mixing function for SAP internal curing agent. This makes it impossible to ensure the uniform distribution of the internal curing agent powder in the concrete, resulting in poor efficiency and insignificant effects of SAP internal curing agent. Summary of the Invention

[0003] The purpose of this invention is to provide an automatic feeding device for SAP internal conditioning agents, which overcomes the above-mentioned defects in the prior art.

[0004] The present invention is achieved through the following technical solution.

[0005] An automatic feeding device for SAP internal conditioning agents according to the present invention includes a mounting frame with a mounting platform. A processing and mixing tank is fixedly mounted on the mounting platform. The inner wall of the processing and mixing tank is provided with arrayed stop protrusions. A feeding and mixing device is movably mounted on the upper side of the processing and mixing tank. The feeding and mixing device includes a processing function top cover, which is slidably mounted on the upper side of the processing and mixing tank. A lower part of a push rod is provided on the lower side of the processing function top cover. The inner wall of the lower part of the push rod can slide and move up and down against the outer wall of the top of the processing and mixing tank. A high-efficiency shaking and agitating device is fixedly installed on the processing function top cover. The high-efficiency shaking and agitating device includes a feeding processing box with a feeding mixing chamber inside. A transmission shaft is rotatably mounted at the center of the feeding mixing chamber. The transmission shaft is fixed. A mounting ring is installed, on which two sets of mixing and stirring rods with different heights are mounted. A functional mounting shaft is rotatably mounted on the lower side of the feeding and processing box. The top of the functional mounting shaft is fixedly connected to the transmission shaft. The functional mounting shaft array has an output ring section, and the output ring section has a ring array of spray holes that can output the internal conditioning agent mixture. A functional stirring mechanism is rotatably mounted on the outer wall of the functional mounting shaft. The functional stirring mechanism includes a functional stirring rod. A wall-mounted arc plate is rotatably mounted on the top of the functional stirring rod. The rear wall of the wall-mounted arc plate is fitted to the inner wall of the mounting frame. The rear wall of the wall-mounted arc plate is provided with a matching stop protrusion. The end of the wall-mounted arc plate has a flat pointed structure. A steel wire rope is rotatably mounted between the wall-mounted arc plate and the functional stirring rod.

[0006] A further technical solution is that a hydraulic lifting slide rail is fixedly installed on the rear plate of the mounting frame, a lifting mounting slider is slidably installed in the hydraulic lifting slide rail, a lifting mounting plate is installed on the lifting mounting slider, and the lifting mounting plate is fixedly connected to the processing function top cover through a connecting mounting column.

[0007] In a further technical solution, the outer wall of the functional mounting shaft is arrayed with rotating mounting blocks, the end of the functional stirring rod is provided with a rotating connecting end, the rotating connecting end is rotatably installed with the rotating mounting blocks, a connecting spring is connected and installed between the bottom wall of the functional stirring rod and the side wall of the functional mounting shaft, and a telescopic rubber sleeve is sleeved on the outside of the connecting spring.

[0008] In a further technical solution, the top of the functional stirring rod is provided with a deflection cavity, the wall-mounted arc plate is fixedly installed with a deflection mounting column, the deflection mounting column is rotatably disposed in the deflection cavity, and a reset spring plate is installed in the deflection cavity.

[0009] In a further technical solution, the two sets of mixing rods are positioned at the upper and lower spatial positions of the feeding and mixing chamber, respectively.

[0010] A further technical solution is provided in which a lifting support cavity is provided at the bottom of the functional mounting shaft, a support spring is installed in the lifting support cavity, a support slide column is slidably installed in the lifting support cavity, a docking plate is rotatably installed at the end of the support slide column, a processing base plate is fixedly installed at the bottom of the mounting frame, an embedded slot is provided at the center of the processing base plate, and the docking plate can dock into the embedded slot.

[0011] In a further technical solution, the functional shaft is provided with an output communication cavity, which is connected to each of the output rings. The top of the output communication cavity is connected to a liquid output valve channel, and the end of the liquid output valve channel is connected to the feeding and mixing cavity.

[0012] In a further technical solution, a stirring motor is fixedly installed on the top of the processing function top cover, the stirring motor is powered by a power connecting shaft, the power connecting shaft passes through the inner wall of the processing function top cover, the end of the power connecting shaft is fixedly installed with the transmission shaft, and the feeding and processing box is fixedly set on the inner wall of the processing function top cover.

[0013] A further technical solution is provided, wherein a push pump is installed on the top of the processing function top cover, a connecting groove is provided on the inner wall of the processing function top cover, the push pump is provided with an output port, the output port is located in the connecting groove, and the feeding and processing box is connected to an input port, the input port is located in the connecting groove.

[0014] In a further technical solution, a filler inlet is provided on the right side of the feeding and processing box, and a filler cavity is provided on the inner wall of the processing function top cover. The filler cavity is connected to the filler inlet, and a sealing end cap is rotatably installed on the top of the filler cavity.

[0015] The beneficial effects of this invention are:

[0016] This invention discloses an automatic SAP internal curing agent feeding device. By incorporating a mounting ring within the feeding and mixing chamber, the device enables high-speed rotation of two mixing rods at different heights during the rotation of the drive shaft. This high-speed rotation of the rods ensures thorough mixing of the internal aqueous solution and SAP internal curing agent, forming a SAP internal curing agent suspension. This avoids the problem of the SAP internal curing agent being added to the concrete in powder form, which is difficult to mix and distribute evenly. Simultaneously, the high-speed rotation of the mounting shaft allows the functional mixing mechanism to efficiently mix the internal concrete. During this process, the push pump is intermittently activated, outputting the SAP internal curing agent suspension from the feeding and mixing chamber through liquid output valves and an output connecting chamber via nozzles in the output ring. The multi-layer array of the output ring ensures that concrete at different heights can receive an appropriate amount of SAP internal curing agent for mixing under stirring conditions, further improving the mixing effect and efficiency of the SAP internal curing agent.

[0017] The functional mixing mechanism, with its adjustable angle and adjustable outer wall array, works in conjunction with the overall lifting and lowering mechanism of the feeding and mixing device. During the rotational mixing process, the functional mixing mechanism consists of a functional mixing rod, a wall-mounted arc plate, and multiple sets of steel wire ropes. The rotational processing causes the functional mixing mechanism to rotate and mix along the direction of the wall-mounted arc plate. The functional mixing rod can achieve lateral disruption and mixing of the concrete, while the wall-mounted arc plate, which is an arc-shaped strip that fits against the inner wall of the mounting frame, can scrape off the concrete from the wall during rotation, avoiding the impact of the wall on the concrete processing efficiency. At the same time, the steel wire ropes can improve the mixing efficiency and effect of the concrete and the current section cutting efficiency and effect during the rotation, and reduce resistance.

[0018] During the rotary mixing process, this equipment uses a hydraulic lifting slide rail to control intermittent lifting and moving, which drives the feeding and mixing device to reciprocate lifting and sliding. This allows the supporting slide column to support the bottom for lifting and mixing. During the process, the functional mixing rod and the matching stop convex strip form a cutting and mixing mesh layer through the steel wire rope body under the rotation, which can achieve a wide range of mixing and mixing of concrete in conjunction with the lifting and lowering action. The cutting and mixing mesh layer combined with the lifting and lowering action can disrupt the vertical distribution layers of concrete, resulting in higher efficiency and more uniform mixing. Thus, during the lifting and rotation process, the SAP curing agent suspension is intermittently output to achieve a thorough mixing effect and improve its utilization efficiency.

[0019] During the rotation and stirring process, the lifting action, combined with the contact between the stop cam and the stop cam on the inner wall of the mixing drum at a certain frequency, causes the wall-mounted arc plate to deflect at a certain angle. The wire rope is set between the wall-mounted arc plate and the functional mixing rod through two locking pins, allowing each wire rope to follow the wall-mounted arc plate to deflect to a certain extent. This, in conjunction with the lifting and stirring action, not only mixes the concrete in the plane, but also, due to the deflection angle of the wall-mounted arc plate, increases the mixing range and depth by allowing the functional mixing mechanism to swing up and down relative to the functional mounting shaft. This results in a more three-dimensional mixing and scrambling effect. During the process, vertical gaps will appear in the concrete, and the intermittent spraying of the SAP curing agent mixture will improve the mixing and feeding effect. Attached Figure Description

[0020] To more clearly illustrate the technical solutions in the embodiments of the invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0022] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0023] Figure 2 yes Figure 1 Enlarged structural schematic diagram of the intermediate feeding mixing device 20;

[0024] Figure 3 yes Figure 2 Enlarged structural schematic diagram of the medium-high efficiency stirring device 25;

[0025] Figure 4 yes Figure 3 Enlarged structural schematic diagram of the medium-function stirring mechanism 35; Detailed Implementation

[0026] The following is combined Figure 1-4 The present invention will be described in detail below. For ease of description, the directions referred to below are defined as follows: the directions of up, down, left, right, front, and back mentioned below are the same as... Figure 1 The directions of the projection relationship are consistent in all directions: up, down, left, right, front, and back.

[0027] Combined with appendix Figure 1-4 An automatic feeding device for SAP internal conditioning agents includes a chassis 11 with a platform 14. A processing mixing tank 21 is fixedly mounted on the platform 14. The inner wall of the processing mixing tank 21 is arrayed with stop ribs 22. A feeding and mixing device 20 is movably mounted on the upper side of the processing mixing tank 21. The feeding and mixing device 20 includes a processing function top cover 26, which is slidably mounted on the upper side of the processing mixing tank 21. A lower part 27 of a push rod is located on the lower side of the processing function top cover 26. The inner wall of the lower part 27 of the push rod can slide and move up and down against the top outer wall of the processing mixing tank 21. A high-efficiency shaking and agitating device 25 is fixedly installed on the processing function top cover 26. The high-efficiency shaking and agitating device 25 includes a feeding processing box 34 with a feeding mixing chamber 37. A transmission shaft 40 is rotatably mounted at the center of the feeding mixing chamber 37. A mounting ring 41 is fixedly installed, and two sets of mixing and stirring rods 42 with different heights are mounted on the mounting ring 41. A functional mounting shaft 36 is rotatably mounted on the lower side of the feeding and processing box 34. The top of the functional mounting shaft 36 is fixedly connected to the transmission shaft 40. The functional mounting shaft 36 is arrayed with output rings 47. The output rings 47 are arrayed with nozzles 48 that can output the internal health agent mixture. A functional stirring mechanism 35 is rotatably mounted on the outer wall of the functional mounting shaft 36. The functional stirring mechanism 35 includes a functional stirring rod 56. A wall-mounted arc plate 61 is rotatably mounted on the top of the functional stirring rod 56. The rear wall of the wall-mounted arc plate 61 is fitted to the inner wall of the mounting frame 11. The rear wall of the wall-mounted arc plate 61 is provided with a matching stop protrusion 62. The end of the wall-mounted arc plate 61 is a flat pointed structure. A steel wire rope 64 is rotatably mounted between the wall-mounted arc plate 61 and the functional stirring rod 56.

[0028] Preferably, a hydraulic lifting slide rail 15 is fixedly installed on the rear plate of the mounting frame 11, and a lifting mounting slider 17 is slidably installed in the hydraulic lifting slide rail 15. The lifting mounting slider 17 is equipped with a lifting mounting plate 18, and the lifting mounting plate 18 is fixedly connected to the processing function top cover 26 through a connecting mounting column 19.

[0029] Preferably, the outer wall of the functional mounting shaft 36 is provided with rotating mounting blocks 49, the end of the functional stirring rod 56 is provided with a rotating connecting end 57, the rotating connecting end 57 is rotatably installed with the rotating mounting blocks 49, a connecting spring 50 is connected and installed between the bottom wall of the functional stirring rod 56 and the side wall of the functional mounting shaft 36, and a telescopic rubber sleeve 51 is sleeved on the outside of the connecting spring 50.

[0030] Preferably, the top of the functional stirring rod 56 is provided with a deflection cavity 58, and a deflection mounting column 59 is fixedly installed on the wall-mounted arc plate 61. The deflection mounting column 59 is rotatably set in the deflection cavity 58, and a reset spring plate 60 is installed in the deflection cavity 58.

[0031] Preferably, the two sets of mixing rods 42 are positioned at the upper and lower sides of the feeding and mixing chamber 37, respectively.

[0032] Preferably, the bottom of the functional mounting shaft 36 is provided with a lifting support cavity 52, a support spring 53 is installed in the lifting support cavity 52, a support slide column 54 is slidably installed in the lifting support cavity 52, and a docking plate 55 is rotatably installed at the end of the support slide column 54. A processing base plate 23 is fixedly installed in the bottom of the mounting frame 11, and an embedded slot 24 is provided at the center of the processing base plate 23. The docking plate 55 can dock and snap into the embedded slot 24.

[0033] Preferably, the functional mounting shaft 36 is provided with an output communication cavity 46, which is connected to each output ring 47. The top of the output communication cavity 46 is connected to a liquid output valve channel 45, and the end of the liquid output valve channel 45 is connected to the feeding and mixing cavity 37.

[0034] Preferably, a stirring motor 33 is fixedly installed on the top of the processing function top cover 26, and the stirring motor 33 is powered by a power connecting shaft 39. The power connecting shaft 39 passes through the inner wall of the processing function top cover 26, and the end of the power connecting shaft 39 is fixedly installed with the transmission shaft 40. The feeding and processing box 34 is fixedly set on the inner wall of the processing function top cover 26.

[0035] Preferably, a push pump 28 is installed on the top of the processing function top cover 26, a connecting groove 30 is provided on the inner wall of the processing function top cover 26, the push pump 28 is provided with an output port 29, the output port 29 is located in the connecting groove 30, and the feeding and processing box 34 is connected to an input port 38, the input port 38 is located in the connecting groove 30.

[0036] Preferably, the feeding and processing box 34 is provided with a filler inlet 43 on the right side, and the inner wall of the processing function top cover 26 is provided with a filler cavity 31, which is connected to the filler inlet 43. A sealing end cover 32 is rotatably installed on the top of the filler cavity 31.

[0037] Specific usage of this invention:

[0038] In use, the hydraulic lifting slide rail 15 is activated, which drives the lifting mounting plate 18 to rise, thereby suspending the feeding and mixing device 20 and separating it from the processing mixing drum 21. The concrete to be used is then transported into the processing mixing drum 21. Subsequently, the hydraulic lifting slide rail 15 drives the feeding and mixing device 20 to descend, causing the lower part 27 of the top rod to engage with the outer top of the processing mixing drum 21. By opening the sealing end cover 32, a certain proportion of SAP internal curing agent and aqueous solution are added into the feeding and mixing chamber 37. Then, the sealing end cover 32 is closed to seal the mixture. The hydraulic lifting slide rail 15 drives the lifting mounting plate 18 to descend, causing the docking plate 55 to engage with the embedded slot 24.

[0039] In the automatic feeding, proportioning, and mixing process of concrete and SAP internal curing agent, the mixing motor 33 is started, driving the transmission shaft 40 and the functional mounting shaft 36 to rotate at high speed. During this process, a mounting ring 41 is provided in the feeding and mixing chamber 37. As the transmission shaft 40 rotates, the two mixing rods 42 with different heights rotate at high speed, which drives the internal aqueous solution and SAP internal curing agent to be fully mixed to form an SAP internal curing agent suspension. This avoids the problem of the SAP internal curing agent being added to the concrete in powder form, which would be difficult to mix and achieve uniformity. To address the issue of uniform distribution, the high-speed rotation of the functional shaft 36 enables the functional mixing mechanism 35 to efficiently mix and process the internal concrete. During this process, the push pump 28 is intermittently started, and the SAP curing agent suspension in the feeding mixing chamber 37 is output to the outside through the liquid output valve 45 and the output connecting chamber 46 from the nozzles 48 of the output ring 47. The multi-layer array of the output ring 47 ensures that concrete at different heights can obtain an appropriate amount of SAP curing agent for mixing under the mixing state, thereby further improving the mixing effect and efficiency of SAP curing agent input.

[0040] The functional mixing mechanism 35, whose outer wall array angle can be deflected via the functional mounting shaft 36, works in conjunction with the feeding and mixing device 20 to achieve an overall liftable setting. During the rotational mixing process, the functional mixing mechanism 35 is composed of a functional mixing rod 56, a wall-mounted arc-shaped plate 61, and multiple sets of steel wire ropes 64 between them. The rotational processing causes the functional mixing mechanism 35 to rotate and mix along the direction of the wall-mounted arc-shaped plate 61. The functional mixing rod 56 can achieve lateral disruptive mixing of the concrete, while the wall-mounted arc-shaped plate 61, which is an arc-shaped strip that fits against the inner wall of the mounting frame 11, can achieve smooth mixing during rotation. The curved plate 61, with its tip pointing towards the wall, scrapes off the concrete adhering to the wall, preventing it from affecting concrete processing efficiency. Simultaneously, the steel wire rope 64 improves the efficiency and effectiveness of mixing and cutting the current section during rotation, reducing resistance. During rotation and mixing, the equipment uses a hydraulic lifting rail 15 to control intermittent lifting and sliding, driving the feeding and mixing device 20 to reciprocate. This allows the supporting sliding column 54 to support the bottom for lifting and mixing. During this process, the functional mixing rod 56 and the corresponding stop protrusion 62, through the steel wire rope 64, create a cutting action during rotation. The mixing mesh layer can be used in conjunction with lifting and lowering movements to mix concrete over a wide area. Cutting the mixing mesh layer in conjunction with lifting and lowering movements disrupts the vertical distribution of the concrete, resulting in higher efficiency and more uniform mixing. During the lifting and rotation process, the SAP curing agent suspension is intermittently output to achieve thorough mixing and improve its efficiency. Simultaneously, during the rotation, the lifting and lowering movement, combined with the contact frequency between the stop 62 and the stop 22 on the inner wall of the mixing drum 21, causes the wall-mounted arc plate 61 to deflect at a certain angle. The wire rope 64 is attached to the wall-mounted arc plate via two locking pins. Between plate 61 and functional mixing rod 56, each wire rope 64 can deflect to a certain extent following the wall-mounted arc plate 61, thereby cooperating with the lifting and mixing action to not only mix the concrete in the plane, but also, due to the deflection angle of the wall-mounted arc plate 61, allow the wire rope 64 to swing up and down relative to the functional mounting shaft 36 under the effect of the wire rope 64, thereby increasing the mixing range and depth, thus forming a more three-dimensional mixing and scrambling effect. During the process, the concrete will have vertical gaps, which, combined with the intermittent spraying of the SAP curing agent mixture, improves the mixing and feeding effect.

[0041] The above embodiments are only for illustrating the technical concept and features of the present invention, and are intended to enable those skilled in the art to understand and implement the present invention. They should not be construed as limiting the scope of protection of the present invention. All equivalent changes or modifications made in accordance with the spirit and essence of the present invention should be covered within the scope of protection of the present invention.

Claims

1. An automatic dispensing device for SAP internal conditioning agents, comprising a mounting frame, wherein the mounting frame is provided with a mounting platform, characterized in that: The platform is fixedly equipped with a processing and mixing tank. The inner wall of the processing and mixing tank is arrayed with stop ridges. A feeding and mixing device is movably mounted on the upper side of the processing and mixing tank. The feeding and mixing device includes a processing function top cover, which is slidably mounted on the upper side of the processing and mixing tank. A lower part of a push rod is provided on the lower side of the processing function top cover. The inner wall of the lower part of the push rod slides and moves up and down against the outer wall of the top of the processing and mixing tank. A high-efficiency shaking and agitating device is fixedly installed on the processing function top cover. The high-efficiency shaking and agitating device includes a feeding processing box, which contains a feeding and mixing chamber. A transmission shaft is rotatably mounted at the center of the feeding and mixing chamber. A mounting ring is fixedly mounted on the transmission shaft. The mounting ring is equipped with components of different heights. The device comprises two sets of mixing and stirring rods. A functional mounting shaft is rotatably mounted on the lower side of the feeding and processing box. The top of the functional mounting shaft is fixedly connected to the transmission shaft. The functional mounting shaft array has an output ring section. The output ring section has a ring array of spray holes that can output the internal health agent mixture. A functional stirring mechanism is rotatably mounted on the outer wall of the functional mounting shaft. The functional stirring mechanism includes a functional stirring rod. A wall-mounted arc plate is rotatably mounted on the top of the functional stirring rod. The rear wall of the wall-mounted arc plate is fitted to the inner wall of the mounting frame. The rear wall of the wall-mounted arc plate is provided with a matching stop protrusion. The end of the wall-mounted arc plate has a flat pointed structure. A steel wire rope is rotatably mounted in an array between the wall-mounted arc plate and the functional stirring rod. The functional stirring rod is provided with a deflection cavity at the top, and a deflection mounting column is fixedly installed on the wall-mounted arc plate. The deflection mounting column is rotatably disposed in the deflection cavity, and a reset spring plate is installed in the deflection cavity. In the rotating state, the stop cam makes contact with the stop cam on the inner wall of the mixing tank at a certain frequency, causing the wall-mounted arc plate to form a certain deflection angle. The wire rope is set between the wall-mounted arc plate and the functional mixing rod through two snap fasteners, so that each wire rope follows the wall-mounted arc plate and deflects to a certain extent.

2. The automatic feeding device for SAP internal conditioning agent according to claim 1, characterized in that: The rear panel of the mounting frame is fixedly installed with a hydraulic lifting slide rail. A lifting mounting slider is slidably installed in the hydraulic lifting slide rail. A lifting mounting plate is installed on the lifting mounting slider. The lifting mounting plate is fixedly connected to the processing function top cover through a connecting mounting column.

3. The automatic feeding device for SAP internal conditioning agent according to claim 1, characterized in that: The outer wall of the functional mounting shaft is provided with rotating mounting blocks, and the end of the functional stirring rod is provided with a rotating connecting end. The rotating connecting end is rotatably installed with the rotating mounting blocks. A connecting spring is installed between the bottom wall of the functional stirring rod and the side wall of the functional mounting shaft, and a telescopic rubber sleeve is sleeved on the outside of the connecting spring.

4. The automatic feeding device for SAP internal conditioning agent according to claim 1, characterized in that: The two sets of mixing rods are positioned at the upper and lower sides of the feeding and mixing chamber, respectively.

5. An automatic feeding device for SAP internal conditioning agents according to claim 1, characterized in that: The functional mounting shaft has a lifting support cavity at its bottom, a support spring is installed in the lifting support cavity, a support slide column is slidably installed in the lifting support cavity, and a docking plate is rotatably installed at the end of the support slide column. A processing base plate is fixedly installed at the bottom of the mounting frame, and an embedding slot is provided at the center of the processing base plate, so that the docking plate can dock and snap into the embedding slot.

6. The automatic feeding device for SAP internal conditioning agent according to claim 1, characterized in that: The functional shaft is provided with an output communication cavity, which is connected to each of the output rings. The top of the output communication cavity is connected to a liquid output valve channel, and the end of the liquid output valve channel is connected to the feeding and mixing cavity.

7. An automatic feeding device for SAP internal conditioning agents according to claim 1, characterized in that: A stirring motor is fixedly installed on the top of the processing function top cover. The stirring motor is powered by a power connecting shaft, which passes through the inner wall of the processing function top cover. The end of the power connecting shaft is fixedly installed with the transmission shaft. The feeding and processing box is fixedly installed on the inner wall of the processing function top cover.

8. An automatic feeding device for SAP internal conditioning agent according to claim 1, characterized in that: A push pump is installed on the top of the processing function top cover. A connecting groove is provided on the inner wall of the processing function top cover. The push pump has an output port, which is located in the connecting groove. An input port is connected to the feeding and processing box, which is located in the connecting groove.

9. An automatic feeding device for SAP internal conditioning agent according to claim 1, characterized in that: The feeding and processing box is provided with a filler inlet on the right side, and the inner wall of the processing function top cover is provided with a filler cavity. The filler cavity is connected to the filler inlet, and a sealing end cap is rotatably installed on the top of the filler cavity.

Citation Information

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