Environment-friendly chemical liquid mixing treatment equipment and method

Through the chemical liquid mixing and processing equipment integrating agitator and backwashing mechanism, the problems of low mixing efficiency and adhesion of powdered materials in existing equipment are solved, efficient mixing and cleaning are achieved, and the consistency and reliability of product quality are ensured.

CN120169210APending Publication Date: 2025-06-20SHANDONG POLYTECHNIC COLLEGE
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Patent Information

Application Number
CN202510327664.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-19
Publication Date
2025-06-20

AI Technical Summary

Technical Problem

The existing chemical liquid mixing equipment has low mixing efficiency, and powdered materials are difficult to dissolve and easy to adhere, resulting in uneven mixing and cross-contamination.

Method used

An environmentally friendly chemical liquid mixing and processing equipment is designed, and the agitator and the backwashing mechanism are integrated on the same lifting platform. The fluid introduced by the circulating pump is used to flush the inner wall of the container, and the discharge mechanism and cleaning mechanism are combined to achieve efficient mixing and cleaning.

Benefits of technology

It improves the mixing efficiency of chemical liquids, prevents the adhesion of powdered materials, ensures mixing uniformity, reduces cross-contamination, and reduces cleaning and maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of chemical treatment instruments, in particular to environment-friendly chemical liquid mixing treatment equipment and method. The backwashing mechanism comprises a movable sleeve slidably arranged on the mounting cylinder, a rotating ring is rotatably arranged at the bottom end of the movable sleeve, a cavity is formed in the rotating ring, through holes are formed in the surface of the rotating ring at intervals in the circumferential direction, a circulating pump is mounted on each of the two sides of the lifting platform, and liquid outlets of the circulating pumps on the two sides communicate with liquid outlet pipes; the liquid outlet pipes penetrate through the top end of the mounting cylinder, the bottom ends of the liquid outlet pipes extend into one side of the rotating ring and communicate with the inner cavity, and a liquid inlet of the circulating pump communicates with a liquid inlet pipe. The stirrer and the backwashing mechanism are integrated on the same lifting platform, so that materials can be immediately stirred after being added, the inner wall of a container is effectively flushed through fluid introduced by the circulating pump, powdery materials are prevented from being adhered, and efficient chemical liquid circulating perfusion and mixing are achieved.
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Description

Technical Field

[0001] The present invention relates to the technical field of chemical processing machinery, and in particular to an environmentally friendly chemical liquid mixing and processing device and method. Background Art

[0002] Chemical liquids are products that exist in liquid form in the chemical industry. They can be classified into acids, bases, salts, solvents, catalysts, etc. according to their components; and there are various types such as cleaning agents, lubricants, fuels, and raw materials according to their uses. In the production process, the application of mixing equipment is crucial. By precisely adjusting the ratio of different stock solutions, the performance and quality of the final product can be ensured. Currently, common mixing equipment mainly consists of a lifting frame, a motor, and a stirring rod. Its working principle is to place the stirring rod in a mixing container and continuously agitate the materials in the container, while successively adding components such as solutions or powders prepared according to the ratio. However, there are some deficiencies in this traditional mixing method:

[0003] 1. Low mixing efficiency: When the materials are put into the upper part of the mixing tank, due to the difference in compatibility between the solutions, the newly added materials often stay on the surface for a period of time, which requires a long stirring time to fully blend all components, resulting in low mixing efficiency.

[0004] 2. Problem of powdered materials: For powdered materials, they do not immediately dissolve in the liquid after being put in, but tend to float on the liquid surface and easily adhere to the wall of the mixing tank, causing residues to be difficult to remove. This not only affects the mixing effect but may also cause cross - contamination, increasing the cleaning and maintenance costs. Summary of the Invention

[0005] In order to overcome the above - mentioned disadvantages existing in the prior art, the present invention provides an environmentally friendly chemical liquid mixing and processing device and method.

[0006] The technical solution of the present invention is: An environmentally friendly chemical liquid mixing and processing device, comprising:

[0007] A moving seat;

[0008] A lifting assembly, arranged on the moving seat, and composed of a load - bearing frame body and a lifting driving member;

[0009] A lifting platform, slidably arranged on the load - bearing frame body of the lifting assembly and connected to the output end of the lifting driving member of the lifting assembly. An installation cylinder extending downward is also arranged on the lifting platform;

[0010] A stirrer, arranged on the lifting platform. The shaft body of the stirrer passes through the installation cylinder, and the bottom end of the shaft body of the stirrer is circumferentially hinged with paddle blades;

[0011] A backwash mechanism is arranged on the lifting platform, and the backwash mechanism includes a movable sleeve slidably arranged on the mounting cylinder, a rotating ring is rotatably arranged at the bottom end of the movable sleeve, a cavity is provided inside the rotating ring, and through holes are arranged at intervals along the circumferential direction on the surface of the rotating ring, a circulating pump is respectively installed on both sides of the lifting platform, and the liquid outlets of the circulating pumps on both sides are connected with liquid outlet pipes, the liquid outlet pipes pass through the top end of the mounting cylinder, and the bottom end of the liquid outlet pipe extends into one side of the rotating ring and is connected with the internal cavity, and the liquid inlet pipe is connected to the liquid inlet of the circulating pump, and the liquid inlet pipe extends from the top end of the mounting cylinder to the bottom end.

[0012] Optionally, a feeding mechanism for feeding is provided on the lifting platform, and the feeding mechanism includes two infusion pumps arranged on one side of the lifting platform, and a powder suction machine adapted to the layout of the infusion pump is installed on the other side of the lifting platform, the feed port of the powder suction machine and the liquid inlet of the infusion pump are connected with connecting pipes for conveying the mixed materials, and the discharge port of the powder suction machine and the liquid outlet of the infusion pump are connected with nozzles, the ends of the nozzles pass through a movable sleeve and a rotating ring, and the nozzles of the nozzles are arranged downward; an exhaust pump is also installed at the bottom of the lifting platform, and the air inlet of the exhaust pump is connected to a pipeline passing through the movable sleeve and being able to extend into the container, which is used to discharge the waste gas generated during the mixing process of chemical materials.

[0013] Optionally, the unloading mechanism also includes a fixing clamp, and the connecting pipe is provided with a fixing clamp that can be clamped at the opening of the container to fix the position when conveying materials.

[0014] Optionally, a cleaning mechanism is provided on the load-bearing frame of the lifting assembly, and the cleaning mechanism includes pushing plates symmetrically slidably arranged on both sides of the load-bearing frame of the lifting assembly, and a cleaning cylinder is provided between the front ends of the pushing plates, which is used as a cleaning container for the agitator and the paddles, and an input pipe and an output pipe are also connected to the rear side of the cleaning cylinder.

[0015] Optionally, a card plate is also included. Card plates are hingedly provided on both sides of the load-bearing frame of the lifting assembly. Torsion springs are provided between the two sides of the card plate and the load-bearing frame of the lifting assembly. A group of card slots are provided on the push plates on both sides at front and rear intervals. Slots matching the card slots are provided on both sides of the load-bearing frame of the lifting assembly. The card plate can pass through the slots on the same side and cooperate with the inner walls of the slots.

[0016] Optionally, a clamping mechanism is provided on the moving seat, and the clamping mechanism includes a motor installed on the moving seat, and a group of hinged seats spaced front and back are respectively provided on the left and right sides of the moving seat, and the hinged seats are located directly in front of the lifting assembly. Adjustment rods are hingedly provided on the hinged seats, and except for the two adjustment rods on the relatively front side, a double-axis universal joint is connected between the bottom ends of the other two adjacent adjustment rods, and a pulley group is provided between the output end of the motor and the adjacent double-axis universal joint, and a clamping plate is hingedly provided at the top of each adjustment rod.

[0017] Optionally, a fixing ring is also included. A fixing ring is arranged on the top of the movable sleeve. Sliding rods are slidably inserted on both sides of the fixing ring. An elastic member is arranged between the sliding rod and the fixing ring. Buckle plates for buckling and fixing at the container opening are connected to the ends of the sliding rods on both sides that are away from each other.

[0018] The method of using the environmentally friendly chemical liquid mixing treatment equipment includes the following steps:

[0019] S1. First, place the container to be loaded with materials in front of the moving seat so that it is embedded between the clamping plates. Start the motor, and the pulley group drives the dual-axis universal joint to rotate, and simultaneously drives the adjustment rod to rotate to adjust the expansion or retraction, so that the clamping plate contacts and fits tightly to the surface of the container. Then turn off the motor, and the clamping plate remains fixed to ensure the stability of the container.

[0020] S2, start the lifting drive of the lifting assembly to drive the lifting platform downward so that the agitator and the blades are inserted into the container, then slide the movable sleeve and ensure that the rotating ring is also placed inside the loading container, and then fix the container opening and the movable sleeve by the buckle plate;

[0021] S3, insert the connecting pipes of the infusion pump and the powder suction machine into the corresponding material containers respectively, convey the powder through the powder suction machine, inject the liquid through the infusion pump, and pour the two materials into the loading container through the spray pipe;

[0022] S4, until the materials are added, start the agitator to rotate the blades to mix the materials, and at the same time, the circulating pump sucks the liquid in the container through the liquid inlet pipe and discharges it from the liquid outlet pipe. The liquid enters the rotating ring and is evenly discharged through its through holes to wash the residual powder on the inner wall of the container, and then flows back into the container to form a circulation cleaning. During this process, the exhaust pump is turned on to treat the exhaust gas generated in the container;

[0023] S5. After the materials are mixed, the loading container can be moved out as a whole, and then the card plates on both sides are moved to deform the torsion springs, and then the push plate is pushed forward to push out the cleaning cylinder, and then the card plates are released, and the torsion springs are reset, and then the card plates are inserted into the card slots on the rear side of the push plate to fix the position of the cleaning cylinder, and then the lifting assembly is started to lower the lifting platform, so that the agitator and paddles enter the cleaning cylinder, water is supplied through the input pipe, and water is discharged through the output pipe, and the mixing equipment is repeatedly flushed to clean.

[0024] The present invention overcomes the shortcomings of the prior art and has the following beneficial effects:

[0025] 1. By integrating the agitator and the backwashing mechanism on the same lifting platform, the present invention ensures that while the agitator penetrates into the container, the backwashing mechanism also enters the interior of the container. This design enables immediate agitation of the added materials and effective flushing of the inner wall of the container by the fluid introduced through the circulation pump, preventing the adhesion of powdered materials, thereby achieving efficient chemical liquid circulation perfusion and mixing.

[0026] 2. Through the setting of the feeding mechanism, the present invention cooperates with the powder suction machine and the infusion pump to separately handle the feeding processes of powder and liquid materials. This separated feeding method not only maintains the cleanliness of the working environment but also protects the health and safety of employees.

[0027] 3. Through the setting of the cleaning mechanism, after each mixing operation, the cleaning cylinder is used to comprehensively clean the agitator and its blades, effectively avoiding possible cross-contamination between different batches and ensuring the consistency and reliability of product quality. Brief Description of the Drawings

[0028] Figure 1 is a three-dimensional structural schematic diagram of the present invention.

[0029] Figure 2 is a three-dimensional structural schematic diagram of components such as the lifting platform, installation cylinder, and agitator of the present invention.

[0030] Figure 3 is a three-dimensional structural schematic diagram of some components of the backwashing mechanism of the present invention.

[0031] Figure 4 is an exploded schematic diagram of the disassembled components of the backwashing mechanism of the present invention.

[0032] Figure 5 is a three-dimensional structural sectional view of the rotating ring, circulation pump, liquid outlet pipe, and liquid inlet pipe of the present invention.

[0033] Figure 6 is a three-dimensional structural schematic diagram of components of the feeding mechanism of the present invention.

[0034] Figure 7 is a three-dimensional structural schematic diagram of components such as the spray pipe, powder suction machine, and exhaust pump of the present invention.

[0035] Figure 8 is a three-dimensional structural schematic diagram of some components of the cleaning mechanism of the present invention.

[0036] Figure 9 For the present invention Figure 8 is an enlarged three-dimensional structural schematic diagram of part A in

[0037] Figure 10 is a three-dimensional structural schematic diagram of components of the clamping mechanism of the present invention.

[0038] Figure 11 This is a three-dimensional structural schematic diagram of components such as the fixing ring, sliding rod, and buckling plate of the present invention.

[0039] Reference numerals in the drawings: 1: moving seat, 2: lifting assembly, 3: lifting platform, 31: mounting cylinder, 4: stirrer, 41: paddle, 5: backwashing mechanism, 51: movable sleeve, 52: rotating ring, 53: circulation pump, 54: liquid outlet pipe, 55: liquid inlet pipe, 6: feeding mechanism, 61: infusion pump, 62: connecting pipe, 63: fixing clamp, 64: spray pipe, 65: powder suction machine, 66: exhaust pump, 7: cleaning mechanism, 71: pushing plate, 72: cleaning cylinder, 73: input pipe, 74: output pipe, 75: clamping groove, 76: clamping plate, 8: clamping mechanism, 81: motor, 82: double universal joint, 83: pulley group, 84: hinge seat, 85: adjusting rod, 86: clamping plate, 9: fixing ring, 91: sliding rod, 92: buckling plate, 93: elastic member. Detailed implementation manners

[0040] In the description of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.

[0041] In addition, the terms "first", "second", "third" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance. The technical solutions of the present invention will be clearly and completely described below with reference to the drawings. It should be noted that the technical features involved in different embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.

[0042] Embodiment: An environmentally friendly chemical liquid mixing and processing device, as Figures 1 - 5 shown, includes:

[0043] A moving seat 1, serving as the base of the entire device, providing support and mobility;

[0044] A lifting assembly 2, longitudinally fixedly arranged at the middle position on the top of the moving seat 1. The lifting assembly 2 is mainly composed of a load-bearing frame and a lifting driving member. This is prior art and will not be elaborated further;

[0045] The lifting platform 3 is slidably arranged on the load-bearing frame of the lifting assembly 2 and is connected to the output end of the lifting driving member of the lifting assembly 2. The lifting assembly 2 serves as the main loading platform and presents a sliding operation in the up and down direction. At the front end of the lifting platform 3, there is also fixedly arranged an installation cylinder 31 that extends downward and is hollow inside;

[0046] The stirrer 4 is arranged on the lifting platform 3 and is mainly composed of a motor and a longitudinal shaft body. The motor is fixedly installed on the top of the lifting platform 3, the shaft body is connected to the output end of the motor, and the shaft body of the stirrer 4 passes through the installation cylinder 31. At the bottom end of the shaft body of the stirrer 4, blades 41 are circumferentially hinged. Driven by the motor, the shaft body rotates. During the high-speed rotation of the shaft body, the blades 41 are synchronously swung to be unfolded, so as to cooperate with the rotational operation to realize the stirring of the material; Specifically, with the blade 41 designed in this way, the stirring assembly can show a high degree of adaptability and can flexibly match the openings of containers of different sizes;

[0047] The backwashing mechanism 5 is arranged on the lifting platform 3 and is used to wash the residual powder material. The backwashing mechanism 5 includes a movable sleeve 51 slidably arranged on the installation cylinder 31. The movable sleeve 51 presents a sliding operation in the up and down direction, and the movable sleeve 51 has a structure that is wider at the top and narrower at the bottom. A rotating ring 52 is rotatably arranged at the bottom end of the movable sleeve 51. The rotating ring 52 has a cavity inside, and through holes are circumferentially spaced on the surface of the rotating ring 52. On the left and right sides of the lifting platform 3, a circulating pump 53 is fixedly installed respectively. The liquid outlet of the two circulating pumps 53 is communicated with a liquid outlet pipe 54. The liquid outlet pipes 54 all pass through the top end of the installation cylinder 31, and the bottom end of the liquid outlet pipe 54 extends into one side of the rotating ring 52 and is communicated with the internal cavity. A liquid inlet pipe 55 is communicated with the liquid inlet of the circulating pump 53, and the liquid inlet pipe 55 extends from the top end of the installation cylinder 31 to the bottom end.

[0048] Specifically, in combination with the above, see in detail Figure 5As shown, the liquid outlet pipe 54 and the overall length are less than that of the liquid inlet pipe 55. When the stirrer 4 extends into the loading container, the movable sleeve 51 is pressed against the opening of the container due to shape restrictions, causing the rotating ring 52 and its components to extend into the container. Also, due to the length difference between the liquid outlet pipe 54 and the liquid inlet pipe 55, the pipe orifice position of the liquid inlet pipe 55 is always lower than that of the liquid outlet pipe 54, ensuring stable liquid inlet for the liquid inlet pipe 55. Since then, through the action of the circulation pump 53, the chemical liquid in the loading container is sucked into the liquid inlet pipe 55 and then sprayed out from the liquid outlet pipe 54. The liquid sprayed out from the liquid outlet pipe 54 then flows into the cavity provided in the rotating ring 52 and is sprayed out through the through holes circumferentially distributed on the rotating ring 52, directly flushing the inner wall of the container. This not only helps to remove the residual powdery materials on the inner wall of the loading container, ensuring full utilization of the raw materials, but also can prevent the problem of uneven mixing caused by material retention. In addition, due to the circulation path formed by the liquid inlet pipe 55 and the liquid outlet pipe 56, the chemical liquid is allowed to be reused during the mixing process, optimizing the liquid mixing process, improving the mixing efficiency, and at the same time ensuring the high efficiency and reliability of the entire operation process.

[0049] As Figure 1 , Figure 6 and Figure 7 shown, a blanking mechanism 6 for feeding materials is provided on the lifting platform 3. The blanking mechanism 6 includes two infusion pumps 61 provided on the left side of the lifting platform 3. A powder suction machine 65 adapted to the layout of the infusion pumps 61 is installed on the other side of the lifting platform 3. The feed inlet of the powder suction machine 65 and the liquid inlet of the infusion pump 61 are both connected with a connecting pipe 62 for transporting the mixed materials. The discharge outlet of the powder suction machine 65 and the liquid outlet of the infusion pump 61 are both connected with a spray pipe 64. The ends of the spray pipes 64 all pass through the movable sleeve 51 and the rotating ring 52, and the spray nozzles of the spray pipes 64 are all arranged downward. An exhaust pump 66 is also installed at the bottom of the lifting platform 3. The air inlet of the exhaust pump 66 is connected with a pipe that passes through the movable sleeve 51 and can extend into the container for discharging the waste gas generated during the mixing process of the chemical materials.

[0050] Specifically, by setting the blanking mechanism 6, the independent transportation of the powder materials and the liquid materials is realized, ensuring that both can enter the loading container separately and completely. This not only maintains the accuracy of the material transportation but also significantly improves the working environment, avoids pollution during the mixing process, and thus provides a more environmentally friendly and efficient material processing solution.

[0051] As Figure 6 and Figure 7 shown, the blanking mechanism 6 further includes fixed clamps 63. Fixed clamps 63 that can be clamped on the opening of the container are provided on the connecting pipes 62 for fixing the position during the transportation of the materials.

[0052] As Figure 1 and Figure 8As shown in the figure, a cleaning mechanism 7 is provided on the load-bearing frame of the lifting assembly 2. The cleaning mechanism 7 includes push plates 71 symmetrically and slidably penetrating through the left and right sides of the load-bearing frame of the lifting assembly 2. A cleaning cylinder 72 is provided between the front ends of the push plates 71, which is used as a cleaning container for the stirrer 4 and the blade 41. An input pipe 73 and an output pipe 74 are also connected to the rear side of the cleaning cylinder 72. It is mainly used to clean the used stirrer 4 and blade 41 to ensure cleanliness after use and avoid cross-contamination in subsequent use.

[0053] As Figure 8 and Figure 9 shown in the figure, it also includes clamping plates 76. Clamping plates 76 are hingedly provided on both sides of the load-bearing frame of the lifting assembly 2. Torsion springs are provided between both sides of the clamping plates 76 and the load-bearing frame of the lifting assembly 2. A set of card slots 75 are arranged at intervals in the front and rear directions on both push plates 71. Slots adapted to the card slots 75 are provided on the left and right sides of the load-bearing frame of the lifting assembly 2. The clamping plates 76 can pass through the slots on the same side and abut against the inner wall of the card slots 75, which can effectively fix the initial or use position of the cleaning cylinder 72, thus ensuring the stability of subsequent operations.

[0054] As Figure 1 and Figure 10 shown in the figure, a clamping mechanism 8 is provided on the moving seat 1. The clamping mechanism 8 includes a motor 81 installed on the moving seat 1. A set of hinged seats 84 arranged at intervals in the front and rear directions are respectively provided on the left and right sides of the moving seat 1. The hinged seats 84 are all located directly in front of the lifting assembly 2. Adjusting rods 85 are hingedly provided on the hinged seats 84. Except for the two adjusting rods 85 on the relatively front side, a biaxial universal joint 82 is connected between the bottom ends of the other adjacent two adjusting rods 85. A pulley group 83 is provided between the output end of the motor 81 and the adjacent biaxial universal joint 82. Clamping plates 86 are hingedly provided at the top ends of the respective adjusting rods 85.

[0055] Specifically, the driving of the motor 81 drives the respective biaxial universal joints 82 to rotate, thereby synchronously adjusting the hinged operation of the respective adjusting rods 83 on the corresponding hinged seats 84, so as to form an effect of relative expansion or retraction, thereby adjusting the clamping state of the clamping plates 86 to adapt to the sizes of different loading containers and provide an adaptable clamping and fixing effect.

[0056] As Figure 11As shown in the figure, it further includes a fixing ring 9. The fixing ring 9 is arranged at the top of the movable sleeve 51. Slide rods 91 are slidably inserted through the left and right sides of the fixing ring 9. An elastic member 93 is arranged between the slide rods 91 and the fixing ring 9. In this embodiment, the elastic member 93 is a spring, which can provide the necessary elastic force for the reset of the slide rods 91. At the ends of the two slide rods 91 away from each other, there are connected fasteners 92 for buckling and fixing at the opening of the container. The fasteners 92 show a downward extension trend, which can effectively adapt to and buckle the opening position of the loading container, thereby ensuring the stability of the overall position of the movable sleeve 51 and effectively guaranteeing the stability of subsequent operations.

[0057] Based on the above-mentioned environmentally friendly chemical liquid mixing and processing equipment, a method for using an environmentally friendly chemical liquid mixing and processing equipment includes the following steps:

[0058] S1. First, place the container to be loaded with materials in front of the moving seat 1 so that it is embedded between the clamping plates 86. Start the motor 81. The pulley group 83 drives the double-axis universal joint 82 to rotate, and synchronously drives the adjusting rod 85 to rotate for expansion or retraction adjustment, so that the clamping plates 86 contact and closely adhere to the surface of the container. Then turn off the motor 81, and the clamping plates 86 remain in a fixed state to ensure the stability of the container.

[0059] S2. Start the lifting drive member of the lifting assembly 2 to drive the lifting platform 3 to move downward so that the stirrer 4 together with the impeller 41 extends into the container. Then slide the movable sleeve 51 and ensure that the rotating ring 52 is also placed inside the loading container. Then fix the position of the container opening and the movable sleeve 51 through the fastener 92.

[0060] S3. Insert the connecting pipes 62 of the liquid infusion pump 61 and the powder suction machine 65 into the corresponding material containers respectively. Convey the powder through the powder suction machine 65, and inject the liquid through the liquid infusion pump 61. The two materials are poured into the loading container through the spray pipe 64.

[0061] S4. Until the materials are added completely, start the stirrer 4 to rotate the impeller 41 for material mixing. At the same time, the circulation pump 53 sucks the liquid in the container through the liquid inlet pipe 55 and discharges it through the liquid outlet pipe 54. The liquid enters the rotating ring 52 and is evenly discharged through its through holes to wash the residual powder on the inner wall of the container, and then flows back into the container to form a circulating cleaning. During this process, turn on the exhaust pump 66 to process the waste gas generated in the container.

[0062] S5. Until the material mixing is completed, the entire loading container can be moved out. Then, the clamping plates 76 on both sides are toggled, the torsion spring deforms, and then the pushing plate 71 is pushed forward to push out the cleaning cylinder 72. Then, the clamping plates 76 are released, and the torsion spring resets accordingly. Furthermore, the clamping plates 76 are inserted into the clamping grooves 75 behind the pushing plate 71 to fix the position of the cleaning cylinder 72. Then, the lifting assembly 2 is started to lower the lifting platform 3, so that the stirrer 4 and the blades 41 enter the cleaning cylinder 72. Water is supplied through the input pipe 73 and drained through the output pipe 74, and the stirring equipment is repeatedly flushed for cleaning.

[0063] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. An environmentally friendly chemical liquid mixing treatment device, comprising: Mobile seat (1); A lifting assembly (2) is arranged on the movable seat (1) and is composed of a load-bearing frame and a lifting drive member; a lifting platform (3) is slidably arranged on the load-bearing frame of the lifting assembly (2) and is connected to the output end of the lifting drive member of the lifting assembly (2); a mounting cylinder (31) extending downward is also arranged on the lifting platform (3); It is characterized by further comprising: A stirrer (4) is arranged on the lifting platform (3), the shaft of the stirrer (4) is inserted into the mounting tube (31), and a paddle (41) is hingedly provided at the bottom end of the shaft of the stirrer (4) along the circumferential direction; A backwash mechanism (5) is arranged on the lifting platform (3), and the backwash mechanism (5) includes a movable sleeve (51) slidably arranged on the mounting tube (31), a rotating ring (52) is rotatably arranged at the bottom end of the movable sleeve (51), the rotating ring (52) has a cavity inside, and the surface of the rotating ring (52) is provided with through holes spaced along the circumferential direction, and a circulating pump (53) is respectively installed on both sides of the lifting platform (3), and the liquid outlets of the circulating pumps (53) on both sides are connected to liquid outlet pipes (54), and the liquid outlet pipes (54) pass through the top end of the mounting tube (31), and the bottom end of the liquid outlet pipe (54) extends into one side of the rotating ring (52) and is connected to the internal cavity, and the liquid inlet of the circulating pump (53) is connected to a liquid inlet pipe (55), and the liquid inlet pipe (55) extends from the top end of the mounting tube (31) to the bottom end.

2. The environmentally friendly chemical liquid mixing treatment equipment according to claim 1, characterized in that: The lifting platform (3) is provided with a feeding mechanism (6) for feeding materials, and the feeding mechanism (6) includes two infusion pumps (61) arranged on one side of the lifting platform (3). A powder suction machine (65) adapted to the layout of the infusion pumps (61) is installed on the other side of the lifting platform (3). The feeding port of the powder suction machine (65) and the liquid inlet of the infusion pump (61) are both connected with a connecting pipe (62) for conveying the mixed material. The discharge port and the liquid outlet of the infusion pump (61) are both connected to a nozzle (64), the ends of the nozzle (64) pass through the movable sleeve (51) and the rotating ring (52), and the nozzles of the nozzle (64) are both arranged downward; an exhaust pump (66) is also installed at the bottom of the lifting platform (3), and the air inlet of the exhaust pump (66) is connected to a pipeline that passes through the movable sleeve (51) and can extend into the container, so as to discharge the waste gas generated during the mixing process of the chemical materials.

3. The environmentally friendly chemical liquid mixing treatment equipment according to claim 2, characterized in that: The unloading mechanism (6) further comprises a fixing clamp (63), and each of the connecting pipes (62) is provided with a fixing clamp (63) capable of being clamped at the opening of the container, so as to fix the position when conveying the material.

4. The environmentally friendly chemical liquid mixing treatment equipment according to claim 3 is characterized in that: A cleaning mechanism (7) is arranged on the load-bearing frame of the lifting assembly (2), and the cleaning mechanism (7) comprises a push plate (71) symmetrically slidably arranged on both sides of the load-bearing frame of the lifting assembly (2), a cleaning cylinder (72) is arranged between the front ends of the push plates (71) and is used as a cleaning container for the agitator (4) and the paddle (41), and an input pipe (73) and an output pipe (74) are also connected to the rear side of the cleaning cylinder (72).

5. The environmentally friendly chemical liquid mixing treatment equipment according to claim 4, characterized in that: It also includes a clamping plate (76), and the clamping plates (76) are hingedly arranged on both sides of the load-bearing frame of the lifting component (2), and torsion springs are arranged between the two sides of the clamping plate (76) and the load-bearing frame of the lifting component (2), and a group of clamping grooves (75) are arranged on the push plates (71) on both sides at intervals in front and behind, and the load-bearing frame of the lifting component (2) is provided with grooves matching the clamping grooves (75) on both sides, and the clamping plate (76) can pass through the grooves on the same side and abut against the inner wall of the clamping groove (75).

6. The environmentally friendly chemical liquid mixing treatment equipment according to claim 5, characterized in that: The movable seat (1) is provided with a clamping mechanism (8), the clamping mechanism (8) comprising a motor (81) mounted on the movable seat (1), a group of hinged seats (84) spaced apart from each other are respectively provided on the left and right sides of the movable seat (1), the hinged seats (84) are all located in front of the lifting assembly (2), and adjustment rods (85) are hingedly provided on the hinged seats (84), except for the two adjustment rods (85) on the relatively front side, a double-axis universal joint (82) is connected between the bottom ends of the other two adjacent adjustment rods (85), a pulley group (83) is provided between the output end of the motor (81) and the adjacent double-axis universal joint (82), and a clamping plate (86) is hingedly provided at the top end of each adjustment rod (85).

7. The environmentally friendly chemical liquid mixing treatment equipment according to claim 6, characterized in that: It also includes a fixing ring (9), the top of the movable sleeve (51) is provided with a fixing ring (9), both sides of the fixing ring (9) are slidably penetrated with sliding rods (91), an elastic member (93) is provided between the sliding rod (91) and the fixing ring (9), and buckle plates (92) for buckling and fixing at the container opening are connected to the ends of the sliding rods (91) on both sides that are away from each other.

8. The method for using the environmentally friendly chemical liquid mixing treatment equipment according to claim 7, characterized in that: The following steps are included: S1. First, place the container to be loaded with materials in front of the moving seat (1) so that it is embedded between the clamping plates (86), start the motor (81), and the pulley group (83) drives the dual-axis universal joint (82) to rotate, and simultaneously drives the adjustment rod (85) to rotate to adjust the expansion or retraction, so that the clamping plate (86) contacts and is tightly attached to the surface of the container, and then turn off the motor (81), and the clamping plate (86) remains in a fixed state to ensure the stability of the container; S2, start the lifting drive member of the lifting assembly (2) to drive the lifting platform (3) to move downward so that the agitator (4) and the blades (41) extend into the container, then slide the movable sleeve (51) and ensure that the rotating ring (52) is also placed in the loading container, and then fix the position of the container opening and the movable sleeve (51) by the buckle plate (92); S3, inserting the connecting pipes (62) of the infusion pump (61) and the powder suction machine (65) into the corresponding material containers respectively, conveying the powder through the powder suction machine (65), injecting the liquid into the infusion pump (61), and pouring the two materials into the loading container through the nozzle (64); S4, until the materials are added, the stirrer (4) is started to rotate the blades (41) to mix the materials, and at the same time, the circulating pump (53) sucks the liquid in the container through the liquid inlet pipe (55) and discharges it through the liquid outlet pipe (54). The liquid enters the rotating ring (52) and is evenly discharged through its through holes to wash the residual powder on the inner wall of the container, and then flows back into the container to form a circulation cleaning. During this process, the exhaust pump (66) is turned on to treat the exhaust gas generated in the container; S5, until the materials are mixed, the loading container can be moved out as a whole, and then the clamping plates (76) on both sides are moved to deform the torsion springs, and then the push plate (71) is pushed forward to push out the cleaning cylinder (72), and then the clamping plates (76) are released, and the torsion springs are reset, and then the clamping plates (76) are inserted into the clamping grooves (75) on the rear side of the push plate (71) to fix the position of the cleaning cylinder (72), and then the lifting assembly (2) is started to lower the lifting platform (3), so that the agitator (4) and the paddles (41) enter the cleaning cylinder (72), and water is supplied through the input pipe (73) and drained through the output pipe (74), and the agitator is repeatedly flushed to clean the agitator.