Liquid mixing equipment for preparing disinfectant

By combining the support frame, the original liquid tank assembly, the mixing tank assembly, and the control device, the problem of complex structure and poor mixing effect of traditional disinfectant preparation equipment is solved, and disinfectant preparation with compact structure, low cost and good mixing effect is achieved.

CN224142108UActive Publication Date: 2026-04-21GUANGDONG SHUNDE QINGYU ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG SHUNDE QINGYU ENVIRONMENTAL PROTECTION TECH CO LTD
Filing Date
2025-05-19
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Traditional disinfectant preparation equipment is complex in structure, has poor mixing effect, and is costly.

Method used

The system employs a combination design of a support frame, a raw liquid tank assembly, a mixing tank assembly, a piping system, and a control device. The raw liquid tank and the mixing tank are connected through the piping system, and the control device controls the on/off state of the piping system to achieve efficient mixing of the raw liquid and the mixed liquid.

Benefits of technology

Simplify equipment structure, improve mixing effect, reduce cost, and achieve convenient and efficient disinfectant preparation.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224142108U_ABST
    Figure CN224142108U_ABST
Patent Text Reader

Abstract

According to the liquid mixing equipment for disinfectant preparation, a first mounting area of a supporting frame in the equipment is located above a second mounting area, a stock solution tank assembly is arranged in the first mounting area, and a liquid mixing tank assembly is arranged in the second mounting area; the pipeline system is arranged on the supporting frame and communicated with the stock solution tank assembly and the solution mixing tank assembly, and the control device is connected with the pipeline system, so that solution mixing operation is achieved, the structure of the equipment is simplified, the equipment is compact in structure, high in integration level and wide in adaptability, and cost is reduced. A first stock solution is contained through a stock solution tank assembly, a second stock solution is connected into a pipeline system, connection and disconnection of the pipeline system are controlled through a control device, the stock solution tank assembly mixes the input second stock solution and the input first stock solution through the pipeline system, and an original mixed solution is obtained; and the liquid mixing tank assembly mixes the input second stock solution and the original mixed solution through the pipeline system to obtain the target mixed solution, so that the mixed solution for disinfection is conveniently and efficiently prepared, and the mixing effect of the disinfectant is improved.
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Description

Technical Field

[0001] This application relates to the field of disinfectant preparation technology, and in particular to a mixing device for preparing disinfectant. Background Technology

[0002] With increasing public awareness of sterilization and disinfection, the demand for disinfectants in various fields has increased rapidly, leading to a significant increase in the demand for mixing equipment used in disinfectant preparation. This equipment allows for the precise proportioning of different stock solutions into a mixing tank to obtain a mixed solution.

[0003] Traditional disinfectant preparation equipment typically uses mechanical stirring structures to prepare mixtures, but these structures are complex, have poor mixing effects, and are costly. Utility Model Content

[0004] Based on this, a mixing device for preparing disinfectant solution is provided.

[0005] Firstly, this application provides a mixing device for preparing a disinfectant solution.

[0006] The support frame has a first mounting area and a second mounting area; the first mounting area is located above the second mounting area.

[0007] The raw material tank assembly is located in the first installation area; the raw material tank assembly is used to contain the first raw material; the raw material tank assembly is also used to mix the input second raw material and the first raw material to obtain the raw mixture.

[0008] A mixing tank assembly is located in the second installation area; the mixing tank assembly is also used to mix the input second stock solution and the original mixture to obtain the target mixture.

[0009] The piping system is mounted on the support frame and is used to connect the raw material tank assembly and the mixing tank assembly; the piping system is also used to connect a second raw material and transfer the second raw material to the raw material tank assembly and the mixing tank assembly.

[0010] The control device is connected to the piping system and is used to control the on / off state of the piping system.

[0011] In one embodiment, the piping system includes a first piping assembly, a second piping assembly, and a third piping assembly;

[0012] The first piping assembly is used to connect to the raw material tank assembly to transfer the second raw material to the raw material tank assembly;

[0013] The second piping assembly is used to connect the raw liquid tank assembly and the mixing tank assembly to transfer the raw mixture from the raw liquid tank assembly to the mixing tank assembly.

[0014] The third piping assembly is used to connect to the mixing tank assembly to transfer the second stock solution to the mixing tank assembly.

[0015] In one embodiment, the piping system further includes a booster pump for connecting a second raw material;

[0016] The first pipeline assembly includes a first pipeline, the first pipeline is equipped with a first solenoid valve, the first end of the first pipeline is connected to a booster pump, and the second end of the first pipeline is connected to a raw material tank assembly.

[0017] The third pipeline assembly includes a third pipeline, which is equipped with a third solenoid valve. The first end of the third pipeline is connected to a booster pump, and the second end of the third pipeline is connected to a mixing tank assembly.

[0018] In one embodiment, the second pipeline assembly includes a second pipeline with a second solenoid valve, a first end of the second pipeline being connected to the original liquid tank assembly, and a second end of the second pipeline being connected to the mixing tank assembly.

[0019] In one embodiment, the second piping assembly further includes a metering pump;

[0020] A metering pump is installed in the second pipeline to drive the transmission of the raw mixture output from the raw liquid tank assembly.

[0021] In one embodiment, a first flow meter is provided in the first pipeline, a second flow meter is provided in the second pipeline, and a third flow meter is provided in the third pipeline.

[0022] In one embodiment, the mixing tank assembly includes a mixing tank, a first spray pipe, and a second spray pipe; the first spray pipe and the second spray pipe are disposed inside the mixing tank;

[0023] The mixing tank is equipped with a first input interface and a second input interface. The first end of the first spray pipe is connected to the first input interface, and the second end of the second spray pipe is connected to the second input interface.

[0024] The second conduit assembly is connected to the first input interface, and the third conduit assembly is connected to the second input interface.

[0025] In one embodiment, the first spray pipe is provided with at least two first spray holes, and the second spray pipe is provided with at least two second spray holes;

[0026] Each first spray hole is positioned facing the central axis of the mixing tank, and each second spray hole is positioned facing the central axis of the mixing tank.

[0027] In one embodiment, the first spray pipe and the second spray pipe are spiral-shaped and are arranged to cross each other.

[0028] In one embodiment, the mixing tank is provided with an injection port for injecting a first stock solution.

[0029] In one embodiment, a movable module is provided at the bottom of the support frame; the movable module is provided with a locking structure;

[0030] The raw material tank assembly includes at least one raw material tank; the input end of each raw material tank is connected to the first pipeline assembly, and the output end of each raw material tank is connected to the second pipeline assembly.

[0031] In one embodiment, the control device includes an interactive control device and a detection module; the detection module is connected to the output of the mixing tank assembly.

[0032] The interactive control equipment is connected to the detection module and the pipeline system respectively.

[0033] A mixing apparatus for preparing a disinfectant solution, comprising:

[0034] A support frame, wherein the support frame is provided with a second mounting area;

[0035] A mixing tank assembly is disposed in the second installation area; the mixing tank assembly is also used to mix the input second stock solution and the original mixture to obtain the target mixture;

[0036] A piping system is provided on the support frame and is connected to the mixing tank assembly;

[0037] A control device connected to the piping system, the control device being used to control the on / off state of the piping system.

[0038] One of the above technical solutions has the following advantages and beneficial effects:

[0039] The aforementioned disinfectant preparation mixing equipment includes a support frame, a stock solution tank assembly, a mixing tank assembly, a piping system, and a control device. The support frame has a first installation area and a second installation area. The first installation area is located above the second installation area. The stock solution tank assembly is placed in the first installation area, and the mixing tank assembly is placed in the second installation area. The piping system is located on the support frame and connects the stock solution tank assembly and the mixing tank assembly. The control device is connected to the piping system, thereby enabling mixing operations, simplifying the equipment structure, making the equipment compact, highly integrated, widely adaptable, and reducing costs. The stock solution tank assembly contains a first stock solution, and the piping system is used to connect a second stock solution. The control device controls the on / off state of the piping system, allowing the stock solution tank assembly to mix the input second and first stock solutions through the piping system to obtain a raw mixture. The mixing tank assembly mixes the input second and raw mixtures through the piping system to obtain the target mixture, achieving convenient and efficient preparation of a disinfectant mixture and improving the mixing effect of the disinfectant. Attached Figure Description

[0040] Figure 1 This is a first-view structural schematic diagram of the mixing device for preparing disinfectant in an embodiment of this application;

[0041] Figure 2 This is a second-view structural schematic diagram of the mixing device for preparing disinfectant in an embodiment of this application;

[0042] Figure 3 This is a schematic diagram of the support frame structure in an embodiment of this application;

[0043] Figure 4 This is a cross-sectional structural diagram of the mixing tank in an embodiment of this application;

[0044] Figure 5 This is a partial structural schematic diagram of the mixing device for preparing disinfectant in an embodiment of this application;

[0045] Figure 6 This is another schematic diagram of the mixing device for preparing disinfectant in this application embodiment;

[0046] Figure 7 This is a schematic diagram of the connection structure of the mixing device for preparing disinfectant in this embodiment of the application.

[0047] Figure label:

[0048] 10. Support frame; 110. First installation area; 120. Second installation area; 130. Moving module; 20. Raw material tank assembly; 210. Raw material tank; 30. Mixing tank assembly; 310. Mixing tank; 312. First input interface; 314. Second input interface; 316. Injection port; 320. First spray pipe; 322. First spray hole; 330. Second spray pipe; 332. Second spray hole; 40. Piping system; 412. First pipeline; 414. First solenoid valve; 416. First flow meter; 422. Second pipeline; 424. Second solenoid valve; 426. Metering pump; 428. Second flow meter; 432. Third pipeline; 434. Third solenoid valve; 436. Third flow meter; 440. Booster pump; 50. Control device; 510. Interactive control equipment; 520. Detection module. Detailed Implementation

[0049] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application.

[0050] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be used interchangeably where appropriate for the embodiments of this application described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover inclusions not explicitly listed. For example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.

[0051] In this application, the terms "upper," "lower," "left," "right," "front," "rear," "top," "bottom," "inner," "outer," "middle," "vertical," "horizontal," "lateral," and "longitudinal" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are primarily for the purpose of better describing this application and its embodiments, and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation.

[0052] Furthermore, in addition to indicating location or positional relationship, some of the aforementioned terms may also have other meanings. For example, the term "above" may also be used in some cases to indicate a certain dependency or connection relationship. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0053] In addition, the term "multiple" should mean two or more.

[0054] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. This application will now be described in detail with reference to the accompanying drawings and embodiments.

[0055] In one embodiment, such as Figure 1 , Figure 2 and Figure 3 As shown, a mixing device for preparing disinfectant solution is provided, including a support frame 10, a stock solution tank assembly 20, a mixing tank assembly 30, a piping system 40, and a control device 50. The support frame 10 is provided with a first mounting area 110 and a second mounting area 120; the first mounting area 110 is located above the second mounting area 120; the stock solution tank assembly 20 is disposed in the first mounting area 110; the stock solution tank assembly 20 is used to contain a first stock solution; the stock solution tank assembly 20 is also used to mix the input second stock solution and the first stock solution to obtain a mixed solution. The mixing tank assembly 30 is located in the second installation area 120; the mixing tank assembly 30 is also used to mix the input second raw liquid and the original mixture to obtain the target mixture; the pipeline system 40 is located on the support frame 10, and the pipeline system 40 is used to connect the raw liquid tank assembly 20 and the mixing tank assembly 30; the pipeline system 40 is also used to connect the second raw liquid and transmit the second raw liquid to the raw liquid tank assembly 20 and the mixing tank assembly 30; the control device 50 is connected to the pipeline system 40, and the control device 50 is used to control the on / off state of the pipeline system 40.

[0056] The support frame 10 can be assembled from several support rods and / or support plates. The support frame 10 can be rectangular in shape. The support frame 10 is provided with a first installation area 110, which is used to accommodate the raw liquid tank assembly 20. For example, the raw liquid tank assembly 20 can be installed and fixed in the first installation area 110 by corresponding fastening components. The support frame 10 is also provided with a second installation area 120 located below the first installation area 110. The second installation area 120 is used to accommodate the mixing tank assembly 30. For example, the mixing tank assembly 30 can be installed and fixed in the second installation area 120 by corresponding fastening components. The support frame 10 can also be used to install and fix the pipeline system 40. For example, the pipeline system 40 is arranged on the support frame 10 by corresponding fastening components, thereby making the equipment structure compact, highly integrated, and easy to disassemble and assemble.

[0057] The piping system 40 is used to connect the raw liquid tank assembly 20, and then transmit the incoming second raw liquid to the raw liquid tank assembly 20 through the piping system 40; the piping system 40 is also used to connect the mixing tank assembly 30, and then transmit the incoming second raw liquid to the mixing tank assembly 30 through the piping system 40; the piping system 40 is also used to connect the channel between the raw liquid tank assembly 20 and the mixing tank assembly 30, and then transmit the original mixed liquid pure water in the raw liquid tank assembly 20 to the mixing tank assembly 30 through the piping system 40.

[0058] The stock solution tank assembly 20 can be used to contain the first stock solution; for example, the user can inject the first stock solution into the stock solution pipeline assembly. When the second stock solution is transferred to the stock solution tank assembly 20 through the pipeline system 40, the first stock solution and the second stock solution are mixed to obtain the original mixture. The mixing tank assembly 30 receives the second stock solution and the original mixture from the stock solution tank assembly 20 through the pipeline system 40, and mixes the second stock solution and the original mixture to obtain the target mixture. It should be noted that the first stock solution can be an electrolyte, and the second stock solution can be pure water, for example, pure water filtered through a purification system.

[0059] The control device 50 is connected to the pipeline system 40. For example, the control device 50 can be used to detect the liquid flow rate in the pipeline system 40, and then control the on / off state of the pipeline system 40 according to the liquid flow rate to realize the transmission control of the second raw liquid and the original mixture. For example, the control device 50 can be used to monitor the target mixture output from the mixing tank assembly 30 and upload the monitored liquid data (such as pH data) to the background terminal in real time to realize closed-loop control of the entire system.

[0060] For example, the user operates the control device 50 to transport the second stock solution to the stock solution tank assembly 20 through the pipeline system 40. When the second stock solution in the stock solution tank assembly 20 reaches the set capacity, the control device 50 controls the corresponding channel of the pipeline system 40 to disconnect. Simultaneously, the user adds the first stock solution into the stock solution tank assembly 20. After a period of settling and mixing, the stock solution tank assembly obtains the original mixture. The original mixture is transported to the mixing tank assembly 30 through the pipeline system 40. When the original mixture in the mixing tank assembly 30 reaches the set capacity, the control device 50 controls the corresponding channel of the pipeline system 40 to disconnect. Simultaneously, the second stock solution is transported to the mixing tank assembly 30 through the corresponding pipe of the pipeline system 40, allowing the original mixture to mix with the second stock solution, thereby obtaining the target mixture.

[0061] In the above embodiments, the first mounting area 110 of the support frame 10 is located above the second mounting area 120. By setting the original liquid tank assembly 20 in the first mounting area 110 and the mixing tank assembly 30 in the second mounting area 120, and by setting the pipeline system 40 in the support frame 10, the pipeline system 40 is used to connect the original liquid tank assembly 20 and the mixing tank assembly 30. The control device 50 is connected to the pipeline system 40, thereby enabling the mixing operation, simplifying the structure of the equipment, making the equipment structure compact, highly integrated, widely adaptable, and reducing costs. The original liquid tank assembly 20 contains the first original liquid, and the pipeline system 40 is used to connect the second original liquid. The control device 50 controls the opening and closing of the pipeline system 40, thereby the original liquid tank assembly 20 mixes the input second original liquid and the first original liquid through the pipeline system 40 to obtain the original mixed liquid. The mixing tank assembly 30 mixes the input second original liquid and the original mixed liquid through the pipeline system 40 to obtain the target mixed liquid, realizing convenient and efficient preparation of the mixed liquid for disinfection and improving the mixing effect of the disinfectant.

[0062] In one embodiment, such as Figure 5 As shown, the piping system 40 includes a first piping assembly, a second piping assembly, and a third piping assembly; the first piping assembly is used to connect to the raw liquid tank assembly 20 to transfer the second raw liquid to the raw liquid tank assembly 20; the second piping assembly is used to connect between the raw liquid tank assembly 20 and the mixing tank assembly 30 to transfer the original mixed liquid from the raw liquid tank assembly 20 to the mixing tank assembly 30; the third piping assembly is used to connect to the mixing tank assembly 30 to transfer the second raw liquid to the mixing tank assembly 30.

[0063] The first pipeline assembly is used to transfer the second raw liquid to the raw liquid tank assembly 20, the second pipeline assembly is used to transfer the raw mixed liquid from the raw liquid tank assembly 20 to the mixing tank assembly 30, and the third pipeline assembly is used to transfer the second raw liquid to the mixing tank assembly 30.

[0064] For example, the user operates the control device 50 to deliver the second stock solution to the stock solution tank assembly 20 through the first pipeline assembly. When the second stock solution in the stock solution tank assembly 20 reaches the set capacity, the control device 50 controls the first pipeline assembly to disconnect. Simultaneously, the user adds the first stock solution into the stock solution tank assembly 20. After a period of settling and mixing, the stock solution tank assembly obtains the original mixed solution. The original mixed solution is delivered to the mixing tank assembly 30 through the second pipeline assembly. When the original mixed solution in the mixing tank assembly 30 reaches the set capacity, the control device 50 controls the second pipeline assembly to disconnect. Simultaneously, the second stock solution is delivered to the mixing tank assembly 30 through the third pipeline assembly, allowing the original mixed solution to mix with the second stock solution, thereby obtaining the target mixed solution. This achieves convenient and efficient preparation of a mixed solution for disinfection, improving the mixing effect of the disinfectant.

[0065] In one embodiment, such as Figure 1, Figure 2 and Figure 5 As shown, the piping system 40 also includes a booster pump 440, which is used to connect to the second raw liquid; the first piping assembly includes a first pipe 412, which is equipped with a first solenoid valve 414, with the first end of the first pipe 412 connected to the booster pump 440 and the second end of the first pipe 412 connected to the raw liquid tank assembly 20; the third piping assembly includes a third pipe 432, which is equipped with a third solenoid valve 434, with the first end of the third pipe 432 connected to the booster pump 440 and the second end of the third pipe 432 connected to the mixing tank assembly 30.

[0066] The first solenoid valve 414 is used to control the opening and closing of the first pipeline 412, the third solenoid valve 434 is used to control the opening and closing of the third pipeline 432, and the booster pump 440 is used to boost the transmission of the second raw liquid in the first pipeline 412 or the second pipeline 422.

[0067] For example, the control device 50 is connected to the booster pump 440, the first solenoid valve 414, and the third solenoid valve 434. When the mixing operation is started, the control device 50 controls the booster pump 440 to work and the first solenoid valve 414 to open, thereby allowing the second stock solution to be transported to the stock solution tank assembly 20 through the first pipeline 412. When the second stock solution in the stock solution tank assembly 20 reaches the set capacity, the control device 50 controls the booster pump 440 to stop working and the first solenoid valve 414 to disconnect. At the same time, the user adds the first stock solution into the stock solution tank assembly 20. After a period of standing and mixing, the stock solution tank assembly obtains the original mixed solution. The original mixed solution is transported to the mixing tank assembly 30 through the second pipeline assembly. At the same time, the control device 50 controls the booster pump 440 to work and the third solenoid valve 434 to open, transporting the second stock solution to the mixing tank assembly 30 through the third pipeline 432, so that the original mixed solution and the second stock solution are mixed to obtain the target mixed solution, realizing the convenient and efficient preparation of the mixed solution for disinfection.

[0068] In one embodiment, such as Figure 1 , Figure 2 and Figure 5 As shown, the second pipeline assembly includes a second pipeline 422, which is equipped with a second solenoid valve 424. The first end of the second pipeline 422 is connected to the original liquid tank assembly 20, and the second end of the second pipeline 422 is connected to the mixing tank assembly 30.

[0069] The second solenoid valve 424 is used to control the opening and closing of the second pipeline 422. For example, after the original mixture is obtained by the original liquid pipeline assembly, the control device 50 controls the second solenoid valve 424 to open, and then the original mixture is transported to the mixing tank assembly 30 through the second pipeline 422, so that the original mixture in the mixing tank assembly 30 is mixed with the second original liquid to obtain the target mixture. By using a pipeline structure to connect the original liquid pipeline assembly and the mixing tank assembly 30, the equipment cost is reduced, the equipment structure is simplified, and the mixing effect of the disinfectant is improved.

[0070] In one embodiment, such as Figure 5 As shown, the second pipeline assembly also includes a metering pump 426; the metering pump 426 is disposed in the second pipeline 422 to drive and transmit the raw mixture output from the raw liquid tank assembly 20.

[0071] The metering pump 426 is used to pressurize the raw mixture output from the raw liquid tank assembly 20 and deliver it in a quantitative manner to ensure that the raw mixture is proportioned correctly.

[0072] For example, after the original mixture is obtained from the original liquid pipe assembly, the control device 50 controls the metering pump 426 and the second solenoid valve 424 to turn on, thereby driving the original mixture to be transported to the mixing tank assembly 30 through the second pipeline 422, ensuring that the original mixture transported to the mixing tank assembly 30 is the system set capacity, thus improving the accuracy of the mixing ratio.

[0073] In one embodiment, such as Figure 5 As shown, the first pipeline 412 is equipped with a first flow meter 416, the second pipeline 422 is equipped with a second flow meter 428, and the third pipeline 432 is equipped with a third flow meter 436.

[0074] The first flow meter 416 is used to accurately measure the flow rate of the first pipeline 412; the second flow meter 428 is used to accurately measure the flow rate of the second pipeline 422; and the third flow meter 436 is used to accurately measure the flow rate of the third pipeline 432.

[0075] For example, the first flow meter 416, the second flow meter 428, and the third flow meter 436 are respectively connected to the control device 50. The control device 50 can control the on / off state of the first solenoid valve 414 and the booster pump 440 according to the flow data fed back by the first flow meter 416; control the on / off state of the second solenoid valve 424 and the metering pump 426 according to the flow data fed back by the second flow meter 428; and control the on / off state of the third solenoid valve 434 and the booster pump 440 according to the flow data fed back by the third flow meter 436. This ensures that the original mixture and the second original liquid in the mixing tank assembly 30 can be mixed in a precise ratio, improving the consistency and stability of the mixture.

[0076] In one embodiment, such as Figure 4 As shown, the mixing tank assembly 30 includes a mixing tank 310, a first spray pipe 320, and a second spray pipe 330; the first spray pipe 320 and the second spray pipe 330 are disposed inside the mixing tank 310; the mixing tank 310 is provided with a first input interface 312 and a second input interface 314, the first end of the first spray pipe 320 is connected to the first input interface 312, and the second end of the second spray pipe 330 is connected to the second input interface 314; a second pipeline assembly is connected to the first input interface 312, and a third pipeline assembly is connected to the second input interface 314.

[0077] The mixing tank 310 has a receiving cavity, and the first spray pipe 320 and the second spray pipe 330 are disposed inside the receiving cavity of the mixing tank 310. The first input interface 312 and the second input interface 314 are disposed near the top surface of the mixing tank 310, and the first input interface 312 and the second input interface 314 can be disposed opposite to each other.

[0078] The first spray pipe 320 can be inserted into the first end of the first input interface 312 via an interference fit, and the second spray pipe 330 can be inserted into the first end of the second input interface 314 via an interference fit. Corresponding pipes of the second pipeline assembly can be inserted into the second end of the first input interface 312 via an interference fit, and corresponding pipes of the third pipeline assembly can be inserted into the second end of the second input interface 314 via an interference fit. Thus, the original mixture transmitted by the second pipeline assembly enters the first spray pipe 320 through the first input interface 312, and is sprayed out through the first spray pipe 320. The second raw liquid transmitted by the third pipeline assembly enters the second spray pipe 330 through the second input interface 314, and is sprayed out through the second spray pipe 330, allowing the second raw liquid to be sprayed and mixed with the original mixture, thereby improving the mixing effect of the second raw liquid and the original mixture.

[0079] In one embodiment, such as Figure 4 As shown, the first spray pipe 320 is provided with at least two first spray holes 322, and the second spray pipe 330 is provided with at least two second spray holes 332; each first spray hole 322 is arranged toward the central axis of the mixing tank 310, and each second spray hole 332 is arranged toward the central axis of the mixing tank 310.

[0080] The first spray hole 322 and the second spray hole 332 can be circular holes.

[0081] For example, the first spray pipe 320 is provided with a plurality of first spray holes 322, each of the first spray holes 322 being distributed on the outer side of the first spray pipe 320 and facing the central axis of the mixing tank 310; the second spray pipe 330 is provided with a plurality of second spray holes 332, each of the second spray holes 332 being distributed on the outer side of the second spray pipe 330 and facing the central axis of the mixing tank 310. When the first spray pipe 320 sprays out the original mixture and the second spray pipe 330 sprays out the second original liquid, the original mixture and the second original liquid form a cross-spray mixing, so that the original mixture and the second original liquid are quickly and thoroughly mixed.

[0082] In one embodiment, the first spray pipe 320 and the second spray pipe 330 are spiral-shaped and are arranged to cross each other.

[0083] By intersecting the first spray pipe 320 and the second spray pipe 330, when the first spray pipe 320 sprays out the original mixture and the second spray pipe 330 sprays out the second original solution, the original mixture and the second original solution form a cross-spiral spray mixing, which allows the original mixture and the second original solution to mix quickly and thoroughly, further improving the mixing effect of the disinfectant.

[0084] It should be noted that the first spray pipe 320 and the second spray pipe 330 are arranged at intervals between each other. For example, the first spray pipe 320 is close to one inner side of the mixing tank 310, and the second spray pipe 330 is close to the other inner side of the mixing tank 310.

[0085] In one embodiment, such as Figure 5 As shown, the mixing tank 310 is provided with an injection port 316, which is used to inject the first raw liquid.

[0086] For example, the injection port 316 is provided with a cover, which is movably connected to the injection port 316. When the cover is opened, the operator can inject the first stock solution into the mixing tank 310 through the injection port 316. In addition, the first pipeline assembly and the second pipeline assembly are closed, and the third pipeline assembly is opened to transfer the second stock solution into the mixing tank 310 through the third pipeline assembly. The liquid in the mixing tank is stirred and mixed by a stirring rod (such as a glass rod) to obtain a mixed disinfectant solution, thereby diversifying the methods of preparing disinfectant solution.

[0087] In another example, such as Figure 6As shown, the mixing equipment can eliminate the original liquid tank assembly, the first pipeline assembly, and the second pipeline assembly. It only needs to inject the first original liquid through the injection port 316, and transfer the second original liquid into the mixing tank 310 through the third pipeline assembly. The first and second original liquids in the mixing tank are stirred and mixed by the stirring rod to obtain the mixed disinfectant. This simplifies the structure of the mixing equipment and reduces the structural cost.

[0088] In one embodiment, such as Figure 1 and Figure 3 As shown, a moving module 130 is provided at the bottom of the support frame 10; the moving module 130 is provided with a locking structure; the raw liquid tank assembly 20 includes at least one raw liquid tank 210; the input end of each raw liquid tank 210 is connected to the first pipeline assembly, and the output end of each raw liquid tank 210 is connected to the second pipeline assembly.

[0089] The moving module 130 can be a caster assembly, and the locking structure can be a brake structure.

[0090] By incorporating a movable module 130 with a locking structure into the support frame 10, the mixing equipment can be quickly moved and installed, improving its flexibility, reducing costs, and making it widely adaptable for use in space-constrained locations such as shopping malls or hotels. The raw material tank assembly 20 may include two or three equal raw material tanks 210, thereby enabling the mixing of various liquids.

[0091] In one embodiment, such as Figure 1 and Figure 7 As shown, the control device 50 includes an interactive control device 510 and a detection module 520; the detection module 520 is connected to the output end of the mixing tank assembly 30; the interactive control device 510 is connected to the detection module 520 and the pipeline system 40 respectively.

[0092] The interactive control device 510 may include an electrical control box, a touch screen, and a communication module (such as a 4G communication module). The touch screen and communication module are located on the electrical control box. Users can control the device through the touch screen, enabling interactive control signals. Operation is simple and efficient; users can automatically obtain target mixed solutions of different concentrations by operating the touch screen as needed. This reduces the difficulty of operation, lowers the production cost of disinfectants, and meets the immediate needs of different locations. The communication module can be used for cloud platform transmission of key information parameters; it can also be used for remote control of the device and wireless OTA upgrades of the device system.

[0093] The detection module 520 may include a mounting bracket, a detection housing, and detection sensors. The detection module 520 can be used to perform physicochemical property testing on the target mixture output from the mixing tank assembly 30 and upload the data to the back-end terminal in real time to ensure that the mixture before electrochemical treatment has stable physicochemical properties.

[0094] For example, after the target mixture in the mixing tank assembly 30 is mixed and allowed to stand, it is output to the detection module 520. The detection sensor set in the module is used to detect the liquid, such as whether the physicochemical properties of the liquid, such as pH, meet the set requirements, so as to determine whether the mixture meets the standard.

[0095] In one embodiment, a mixing apparatus for preparing a disinfectant solution includes:

[0096] Support frame 10, the support frame 10 is provided with a second installation area 120;

[0097] Mixing tank assembly 30 is disposed in the second installation area 120; the mixing tank assembly 30 is also used to mix the input second stock solution and the original mixture to obtain the target mixture;

[0098] Piping system 40 is installed on support frame 10 and is connected to mixing tank assembly 30;

[0099] Control device 50 is connected to pipeline system 40 and is used to control the on / off state of pipeline system 40.

[0100] In one embodiment, the mixing tank assembly 30 includes a mixing tank 310, which is provided with an injection port 316 for injecting a first stock solution.

[0101] It should be noted that different types of detection sensors can be quickly replaced according to the user's requirements for the type of physicochemical properties to be detected.

[0102] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0103] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this patent application should be determined by the appended claims.

Claims

1. A mixing device for preparing disinfectant, characterized in that, include: A support frame, wherein the support frame is provided with a first mounting area and a second mounting area; the first mounting area is located above the second mounting area. A stock solution tank assembly is disposed in the first installation area; the stock solution tank assembly is used to contain a first stock solution; the stock solution tank assembly is also used to mix an input second stock solution and the first stock solution to obtain a stock mixture; A mixing tank assembly is disposed in the second installation area; the mixing tank assembly is also used to mix the input second stock solution and the original mixture to obtain a target mixture; A piping system is provided on the support frame, and the piping system is used to connect the raw liquid tank assembly and the mixing tank assembly; the piping system is also used to connect a second raw liquid and transmit the second raw liquid to the raw liquid tank assembly and the mixing tank assembly; A control device is connected to the pipeline system and is used to control the on / off state of the pipeline system.

2. The mixed solution apparatus for preparing a disinfectant solution according to claim 1, wherein The piping system includes a first piping assembly, a second piping assembly, and a third piping assembly; The first pipeline assembly is used to connect to the raw material tank assembly to transfer the second raw material to the raw material tank assembly; The second pipeline assembly is used to connect the raw liquid tank assembly and the mixing tank assembly to transfer the raw mixture from the raw liquid tank assembly to the mixing tank assembly; The third pipeline assembly is used to connect the mixing tank assembly to transfer the second stock solution to the mixing tank assembly.

3. The mixed solution apparatus for preparing a disinfectant solution according to claim 2, wherein The pipeline system also includes a booster pump, which is used to connect to the second raw liquid; The first pipeline assembly includes a first pipeline, the first pipeline is equipped with a first solenoid valve, a first end of the first pipeline is connected to the booster pump, and a second end of the first pipeline is connected to the raw liquid tank assembly. The third pipeline assembly includes a third pipeline, which is equipped with a third solenoid valve. The first end of the third pipeline is connected to the booster pump, and the second end of the third pipeline is connected to the mixing tank assembly.

4. The mixed solution apparatus for preparing a disinfectant solution according to claim 3, wherein The second pipeline assembly includes a second pipeline, the second pipeline is equipped with a second solenoid valve, the first end of the second pipeline is connected to the raw liquid tank assembly, and the second end of the second pipeline is connected to the mixing tank assembly.

5. The disinfectant solution preparation mixing device according to claim 4, wherein The second pipeline assembly also includes a metering pump; the metering pump is disposed in the second pipeline to drive and transmit the original mixture output from the raw liquid tank assembly; And / or the first pipeline is equipped with a first flow meter, the second pipeline is equipped with a second flow meter, and the third pipeline is equipped with a third flow meter.

6. The disinfectant solution preparation mixing device according to claim 2, wherein The mixing tank assembly includes a mixing tank, a first spray pipe, and a second spray pipe; the first spray pipe and the second spray pipe are disposed inside the mixing tank; The mixing tank is provided with a first input interface and a second input interface. The first end of the first spray pipe is connected to the first input interface, and the second end of the second spray pipe is connected to the second input interface. The second conduit assembly is connected to the first input interface, and the third conduit assembly is connected to the second input interface.

7. The disinfectant solution preparation mixing device according to claim 6, wherein The first spray pipe is provided with at least two first spray holes, and the second spray pipe is provided with at least two second spray holes; each first spray hole is arranged toward the central axis of the mixing tank, and each second spray hole is arranged toward the central axis of the mixing tank. And / or the first spray pipe and the second spray pipe are spiral-shaped, and the first spray pipe and the second spray pipe are arranged to cross each other.

8. The disinfectant solution preparation mixing device according to claim 2, wherein The bottom of the support frame is provided with a moving module; the moving module is provided with a locking structure; the raw liquid tank assembly includes at least one raw liquid tank; the input end of each raw liquid tank is respectively connected to the first pipeline assembly, and the output end of each raw liquid tank is respectively connected to the second pipeline assembly. And / or the control device includes an interactive control device and a detection module; the detection module is connected to the output end of the mixing tank assembly; the interactive control device is connected to the detection module and the piping system respectively.

9. A mixing device for preparing a disinfectant solution, characterized in that, include: A support frame, wherein the support frame is provided with a second mounting area; A mixing tank assembly is disposed in the second installation area; the mixing tank assembly is also used to mix the input second stock solution and the original mixture to obtain the target mixture; A piping system is provided on the support frame and is connected to the mixing tank assembly; A control device is connected to the pipeline system and is used to control the on / off state of the pipeline system.

10. The disinfectant solution preparation mixing device according to claim 9, wherein The mixing tank assembly includes a mixing tank, which is provided with an injection port for injecting a first stock solution.