Electric disinfectant configuration device and configuration method
By designing an electric disinfectant configurator for the crushing chamber and heating chamber, the problems of low efficiency and uneven concentration of the Sicon disinfectant are solved, and automated configuration and efficient mixing are achieved.
Patent Information
- Application Number
- CN202510737697.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-04
- Publication Date
- 2025-07-29
AI Technical Summary
The existing Shikan disinfectant has low configuration efficiency. Shikan tablets are not easy to melt and precipitate easily after configuration, resulting in uneven disinfectant concentration.
An electric disinfectant configuration device is designed, including a crushing chamber and a heating chamber, the Scan sheets are crushed into powder by a crushing knife set, and water is heated using the heating chamber to achieve an automated configuration, combining the infusion mechanism and a stirring paddle for mixing.
The automatic configuration of Shikan disinfectant is realized, the configuration efficiency and concentration uniformity are improved, and the concentration consistency is high during use.
Smart Images

Figure CN120381780A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to medical auxiliary products, and more particularly to an electric disinfectant dispenser and a dispensing method. Background Art
[0002] In hospitals, disinfectant is an indispensable liquid. Currently, most people use Shikang disinfectant for disinfection. When preparing the current Shikang disinfectant, Shikang tablets need to be placed in water and stirred to dissolve the Shikang tablets in the water. This operation method is not efficient. Shikang tablets are not easy to soak, and precipitation is easy to occur if left for a long time after soaking, resulting in uneven concentration of the disinfectant. Therefore, there is an urgent need to improve this. Summary of the Invention
[0003] The purpose of the present invention is to overcome the deficiencies of the above-mentioned prior art and provide an electric disinfectant dispenser and a method for dispensing the disinfectant. By setting a crushing chamber, the Shikang tablets can be crushed into powder. By setting a heating chamber, water can be heated to facilitate the melting of the Shikang tablets, thereby realizing the automatic dispensing of the Shikang disinfectant.
[0004] To achieve the above-mentioned object, the present invention adopts the following technical solution: an electric disinfectant dispenser, comprising a base, a water tank fixed on the upper portion of the base, a side box fixed on the side of the water tank, a top cover and a functional area located on the side of the top cover fixed on the upper portion of the water tank, a water outlet assembly fixed on the side of the functional area, and an inner cover covering the upper portion of the top cover;
[0005] A crushing chamber, a heating chamber and an installation chamber are provided inside the side box. A first infusion mechanism and a second infusion mechanism are provided in the installation chamber. The upper parts of the crushing chamber and the heating chamber are covered by an outer cover. The crushing chamber and the heating chamber form a circulating water path through the first infusion mechanism and the second infusion mechanism respectively. The water tank and the heating chamber can be communicated through the first infusion mechanism, and the water tank and the heating chamber can be communicated through the second infusion mechanism.
[0006] Furthermore, a second motor is fixed in the installation cavity, a crushing knife group is connected to the driving shaft of the second motor, the crushing knife group is located in the crushing cavity, and an electric heating tube is fixed in the heating cavity.
[0007] Furthermore, the first infusion mechanism includes a first infusion pump, a first liquid inlet tube and a first connecting tube, wherein one end of the first liquid inlet tube is connected to the inlet end of the first infusion pump and the other end is located in the water tank, and one end of the first connecting tube is connected to the outlet end of the first infusion pump and the other end is in communication with the interior of the heating chamber;
[0008] The second infusion mechanism includes a second infusion pump, a third connecting pipe, and a fourth connecting pipe. One end of the third connecting pipe communicates with the heating chamber and the other end is connected to the inlet end of the second infusion pump. One end of the fourth connecting pipe communicates with the crushing chamber and the other end is connected to the outlet end of the second infusion pump;
[0009] The first liquid inlet pipe, the first infusion pump, the first connecting pipe, the heating chamber, the third connecting pipe, the second infusion pump, the fourth connecting pipe, and the crushing chamber form a water inlet path.
[0010] Furthermore, the first infusion mechanism further includes a second connecting pipe and a first three-way valve. The first three-way valve is respectively connected to one end of the first liquid inlet pipe, the inlet end of the first infusion pump, and one end of the second connecting pipe, so that the first liquid inlet pipe and the first infusion pump are connected or the second connecting pipe and the first infusion pump are connected. The other end of the second connecting pipe communicates with the crushing chamber;
[0011] The heating chamber, the third connecting pipe, the second infusion pump, the fourth connecting pipe, the crushing chamber, the second connecting pipe, the first three-way valve, the first infusion mechanism, the first connecting pipe, and the heating chamber form a circulating water path.
[0012] Furthermore, the second infusion mechanism further includes a second liquid inlet pipe and a second three-way valve. The second three-way valve is respectively connected to the outlet end of the second infusion pump, one end of the fourth connecting pipe, and one end of the second liquid inlet pipe, so that the second infusion pump and the fourth connecting pipe are connected or the second infusion pump and the second liquid inlet pipe are connected. The other end of the second liquid inlet pipe communicates with the water tank.
[0013] Furthermore, liquid level sensors are installed on the outer walls of both the crushing chamber and the heating chamber. The high liquid level sensor and the low liquid level sensor are respectively located on the side of the heating chamber, and a temperature sensor is provided in the heating chamber.
[0014] Furthermore, a first motor is fixed inside the base, and a stirring paddle is connected to the drive shaft of the first motor. The stirring paddle is located inside the water tank.
[0015] Furthermore, the water outlet assembly includes a water outlet housing, a water outlet nozzle, a water outlet pump, and a water outlet pipe. The water outlet housing is fixed to the functional area. The water outlet nozzle is fixed to the lower part of the water outlet housing. The water outlet pump is located inside the water outlet housing. The outlet end of the water outlet pump is connected to the water outlet nozzle. One end of the water outlet pipe is located near the bottom inside the water tank and the other end is connected to the inlet end of the water outlet pump.
[0016] A configuration method of a disinfectant electric configurator includes the following steps:
[0017] S1. Feeding: Open the inner cover, add an appropriate amount of tap water into the water tank and close the inner cover. Open the outer cover and add an appropriate amount of Shikang tablets into the crushing chamber;
[0018] S2. Heat tap water. The first infusion pump operates to pump the tap water in the water tank into the heating chamber through the first liquid inlet pipe for heating.
[0019] S3. Crush the Shikang tablets. The second motor drives the crushing cutter group to operate, crushing the Shikang tablets in the crushing chamber into powder.
[0020] S4. Prepare the Shikang concentrated solution:
[0021] ①. The second infusion pump operates to pump the heated tap water in the heating chamber into the crushing chamber to mix with the Shikang powder.
[0022] ②. The second motor operates to drive the crushing cutter group to rotate, stirring the Shikang powder and the tap water in the crushing chamber.
[0023] ③. The first three-way valve connects the second connecting pipe with the first infusion pump. The first infusion pump operates to pump the mixed Shikang liquid into the heating chamber for heating. The heated Shikang liquid is then pumped back into the crushing chamber by the second infusion pump for stirring.
[0024] ④. Repeat step ③ multiple times to complete the preparation of the Shikang concentrated solution. The prepared Shikang concentrated solution is located in the heating chamber.
[0025] S5. Discharge the Shikang concentrated solution. The second three-way valve connects the second infusion mechanism and the second liquid inlet pipe. The second infusion pump is used to pump the Shikang concentrated solution in the heating chamber into the water tank to mix with the tap water in the water tank.
[0026] S6. Prepare the Shikang disinfectant solution. The first motor drives the stirring paddle to rotate, mixing the tap water and the Shikang concentrated solution in the water tank to complete the preparation of the Shikang disinfectant solution.
[0027] Further, in step S2, the amount of tap water entering the heating chamber is 60 ml - 70 ml, and the heating temperature is 60 °C.
[0028] During the circulation of the liquid in the crushing chamber and the heating chamber in step S4, the liquid level in the heating chamber is at least at the low liquid level sensor.
[0029] In step S5, the Shikang concentrated solution in the heating chamber can be emptied through the second infusion pump.
[0030] In summary, the present invention has the following beneficial effects:
[0031] 1. Through the crushing knife group in the crushing chamber, the Shikang tablets can be crushed into powder, thereby improving the melting efficiency of the Shikang tablets. By setting up the first liquid delivery mechanism, a small part of the tap water in the water tank can be delivered to the heating chamber for heating. By setting up the second liquid delivery mechanism, the heated tap water can be delivered into the crushing chamber and mixed with the Shikang powder in the crushing chamber to prepare the Shikang concentrated solution. Finally, through the second liquid delivery mechanism, the Shikang concentrated solution is delivered back to the water tank and mixed with the tap water in the water tank, which not only realizes the automatic preparation of the Shikang disinfectant but also greatly improves the preparation efficiency and effect of the Shikang disinfectant;
[0032] 2. When taking the Shikang disinfectant, just press the corresponding water-taking button, and the water outlet pump can work and discharge the Shikang disinfectant in the water tank from the water outlet nozzle, realizing the automatic liquid-taking operation. And before taking the Shikang disinfectant, the Shikang disinfectant can be stirred by the stirring paddle to ensure a high consistency in the concentration of the taken Shikang disinfectant. Description of the Drawings
[0033] Figure 1 is the structural schematic diagram of this embodiment;
[0034] Figure 2 is the sectional view of this embodiment at A-A;
[0035] Figure 3 is the partial sectional view of the front view of this embodiment.
[0036] Reference Numerals: 1. Base; 2. Water Tank; 21. Top Cover; 22. Functional Area; 23. Inner Cover; 24. Extension; 3. Side Box; 31. Outer Cover; 32. Crushing Chamber; 33. Heating Chamber; 34. Installation Chamber; 4. Water Outlet Assembly; 41. Water Outlet Cover; 42. Water Outlet Nozzle; 43. Water Outlet Pump; 44. Water Outlet Pipe; 5. First Motor; 51. Stirring Paddle; 6. Electric Heating Tube; 7. Second Motor; 71. Crushing Knife Group; 8. First Liquid Delivery Mechanism; 81. First Liquid Delivery Pump; 82. First Liquid Inlet Pipe; 83. First Connecting Pipe; 84. Second Connecting Pipe; 85. First Three-Way Valve; 9. Second Liquid Delivery Mechanism; 91. Second Liquid Delivery Pump; 92. Third Connecting Pipe; 93. Fourth Connecting Pipe; 94. Second Liquid Inlet Pipe; 95. Second Three-Way Valve; 100. Liquid Level Sensor; 200. Temperature Sensor. Detailed Embodiments
[0037] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0038] As Figures 1 to 3 shown, this embodiment discloses an electric disinfectant solution dispenser, which includes a base 1. A water tank 2 is fixed on the upper part of the base 1. A side box 3 is fixed on the side of the water tank 2. The water tank 2 includes an extension part 24. The side of the side box 3 is fixed to the side of the water tank 2. The lower part of the side box 3 is located above the extension part 24. A crushing chamber 32, a heating chamber 33 and an installation chamber 34 are provided inside the side box 3. A second motor 7 is fixed in the installation chamber 34. A crushing cutter group 71 is connected to the driving shaft of the second motor 7. The crushing cutter group 71 is located in the crushing chamber 32. An electric heating tube 6 is fixed in the heating chamber 33. The upper parts of the crushing chamber 32 and the heating chamber 33 are covered by an outer cover 31. A first liquid delivery mechanism 8 and a second liquid delivery mechanism 9 are provided in the installation chamber 34. The crushing chamber 32 and the heating chamber 33 can be communicated. The water tank 2 and the heating chamber 33 can be communicated through the first liquid delivery mechanism 8. The water tank 2 and the heating chamber 33 can be communicated through the second liquid delivery mechanism 9;
[0039] Through the crushing cutter group in the crushing chamber 32, the Shikang tablets can be crushed into powder, thereby improving the melting efficiency of the Shikang tablets. By setting the first liquid delivery mechanism 8, a small part of the tap water in the water tank 2 can be delivered into the heating chamber 33 for heating. By setting the second liquid delivery mechanism 9, the heated tap water can be delivered into the crushing chamber 32 and mixed with the Shikang powder in the crushing chamber 32, so as to prepare the Shikang concentrated solution. Finally, through the second liquid delivery mechanism 9, the Shikang concentrated solution is delivered back into the water tank 2 and mixed with the tap water in the water tank 2, which not only realizes the automatic preparation of the Shikang disinfectant solution, but also can greatly improve the preparation efficiency and preparation effect of the Shikang disinfectant solution.
[0040] A first motor 5 is fixed inside the base 1. A stirring paddle 51 is connected to the driving shaft of the first motor 5. The stirring paddle 51 is located in the water tank 2. When the Shikang concentrated solution enters the water tank 2, the first motor 5 drives the stirring paddle 51 to rotate, which can stir and mix the tap water and the Shikang concentrated solution in the water tank 2, which is beneficial to improving the mixing uniformity of the Shikang disinfectant solution. And after a small amount of relatively hot Shikang concentrated solution is mixed with a large amount of normal temperature tap water, it has almost no influence on the liquid temperature in the water tank 2. And before taking the Shikang disinfectant solution, the Shikang disinfectant solution can be stirred by the stirring paddle 51 to ensure a high consistency of the concentration of the taken Shikang disinfectant solution.
[0041] A top cover 21 and a functional area 22 located on the side of the top cover 21 are fixed on the upper part of the water tank 2. An inner cover 23 is covered on the upper part of the top cover 21. When it is necessary to add water to the water tank 2, just open the inner cover 23. And, handle grooves are provided on both sides of the top cover 21, which is convenient for carrying;
[0042] A control module (not shown in the figure) is provided inside the functional area 22. A display and buttons are respectively provided in the upper part. The display can view the status of the device, and the buttons can be used to control the configuration and dispensing of the disinfectant solution. The control module, display, and buttons in the functional area 22 are all conventional electronic products and are prior art. Their specific structures and control principles will not be elaborated in this specification.
[0043] As Figure 3 shown, a water outlet assembly 4 is fixed to the side of the functional area 22. The water outlet assembly 4 includes a water outlet housing 41, a water outlet nozzle 42, a water outlet pump 43, and a water outlet pipe 44. The water outlet housing 41 is fixed to the functional area 22. The water outlet nozzle 42 is fixed to the lower part of the water outlet housing 41. The water outlet pump 43 is located inside the water outlet housing 41. The outlet end of the water outlet pump 43 is connected to the water outlet nozzle 42. One end of the water outlet pipe 44 is located near the bottom inside the water tank 2 and the other end is connected to the inlet end of the water outlet pump 43. When taking the disinfectant solution, just press the corresponding water-taking button, and the water outlet pump 43 can work and discharge the Shikang disinfectant solution in the water tank 2 from the water outlet nozzle 42 to realize the automatic liquid-taking operation.
[0044] As Figure 2 shown, the first infusion mechanism 8 includes a first infusion pump 81, a first liquid inlet pipe 82, and a first connecting pipe 83. One end of the first liquid inlet pipe 82 is connected to the inlet end of the first infusion pump 81 and the other end is located inside the water tank 2. One end of the first connecting pipe 83 is connected to the outlet end of the first infusion pump 81 and the other end is internally communicated with the heating chamber 33.
[0045] The second infusion mechanism 9 includes a second infusion pump 91, a third connecting pipe 92, and a fourth connecting pipe 93. One end of the third connecting pipe 92 is communicated with the heating chamber 33 and the other end is connected to the inlet end of the second infusion pump 91. One end of the fourth connecting pipe 93 is communicated with the crushing chamber 32 and the other end is connected to the outlet end of the second infusion pump 91.
[0046] The first liquid inlet pipe 82, the first infusion pump 81, the first connecting pipe 83, the heating chamber 33, the third connecting pipe 92, the second infusion pump 91, the fourth connecting pipe 93, and the crushing chamber 32 form a water inlet waterway. Normal temperature tap water is first pumped into the heating chamber 33 by the first infusion pump 81 for heating, and then the heated tap water is transported into the crushing chamber 32 by the second infusion pump 91 for mixing. By mixing the tap water at a relatively high temperature with the Shikang powder, the melting efficiency of the Shikang powder can be greatly improved, thereby greatly shortening the configuration time of the disinfectant solution.
[0047] The crushing chamber 32 and the heating chamber 33 respectively form a circulating water path through the first liquid delivery mechanism 8 and the second liquid delivery mechanism 9. Specifically, the first liquid delivery mechanism 8 further includes a second connecting pipe 84 and a first three-way valve 85. The first three-way valve 85 is respectively connected to one end of the first liquid inlet pipe 82, the inlet end of the first liquid delivery pump 81, and one end of the second connecting pipe 84, so that the first liquid inlet pipe 82 and the first liquid delivery pump 81 are communicated or the second connecting pipe 84 is communicated with the first liquid delivery pump 81. The other end of the second connecting pipe 84 is communicated with the crushing chamber 32;
[0048] The heating chamber 33, the third connecting pipe 92, the second liquid delivery pump 91, the fourth connecting pipe 93, the crushing chamber 32, the second connecting pipe 84, the first three-way valve 85, the first liquid delivery mechanism 8, the first connecting pipe 83, and the heating chamber 33 form a circulating water path;
[0049] By setting the circulating water path, the configuration efficiency of the Shikang concentrated liquid can be greatly improved, and the configuration effect can be improved. Through the switching of the first three-way valve 85, the first liquid delivery mechanism 8 can not only realize the water inlet of the heating chamber 33, but also realize the circulation between the crushing chamber 32 and the heating chamber 33, and is also beneficial to reducing the pipelines and components inside the installation chamber 34, saving the manufacturing cost, and making the product structure more compact.
[0050] The second liquid delivery mechanism 9 further includes a second liquid inlet pipe 94 and a second three-way valve 95. The second three-way valve 95 is respectively connected to the outlet end of the second liquid delivery pump 91, one end of the fourth connecting pipe 93, and one end of the second liquid inlet pipe 94, so that the second liquid delivery pump 91 and the fourth connecting pipe 93 are communicated or the second liquid delivery pump 91 is communicated with the second liquid inlet pipe 94. The other end of the second liquid inlet pipe 94 is communicated with the water tank 2. By setting the second three-way valve 95, the second liquid delivery mechanism 9 can not only realize the delivery of hot water from the heating chamber 33 to the crushing chamber 32, but also realize the operation of delivering the Shikang concentrated liquid into the water tank 2, which is beneficial to reducing the pipelines and components inside the installation chamber 34, saving the manufacturing cost, and making the product structure more compact.
[0051] Liquid level sensors 100 are installed on the outer walls of both the crushing chamber 32 and the heating chamber 33. The high-level liquid level sensor 100 and the low-level liquid level sensor 100 are respectively located on the side of the heating chamber 33. A temperature sensor 200 is provided inside the heating chamber 33. A liquid level sensor 100 is arranged on the side of the crushing chamber 32. This liquid level sensor 100 can prevent the liquid in the crushing chamber 32 from overflowing. The low-level liquid level sensor 100 on the side of the heating chamber 33 is to prevent the electric heating tube 6 from dry burning during operation, and the high-level liquid level sensor 100 is to keep the tap water level entering the heating chamber 33 consistent each time the concentrated liquid is configured. The temperature sensor 200 is used to detect the temperature of the tap water in the heating chamber 33.
[0052] The water pump 43, the first motor 5, the electric heating tube 6, the second motor 7, the first liquid delivery pump 81, the first three-way valve 85, the second liquid delivery pump 91, the second three-way valve 95, the liquid level sensor 100 and the temperature sensor 200 are all conventional electronic components. Through the control module in the functional area 22, the coordinated operation of relevant electronic components can be achieved. The control logic of the control module is prior art and not the content to be protected by the present invention. Therefore, it will not be elaborated in this specification.
[0053] A method for configuring a disinfectant electric configurator, using a disinfectant electric configurator according to any one of claims 1-8, characterized by comprising the following steps:
[0054] S1. Feeding: Open the inner cover 23, add an appropriate amount of tap water into the water tank 2 and close the inner cover 23. Open the outer cover 31 and add an appropriate amount of Shikang tablets into the crushing chamber 32.
[0055] S2. Heating tap water: The first liquid delivery pump 81 operates to pump the tap water in the water tank 2 into the heating chamber 33 through the first liquid inlet pipe 82 for heating.
[0056] S3. Crushing Shikang tablets: The second motor 7 drives the crushing knife group 71 to operate, crushing the Shikang tablets in the crushing chamber 32 into powder.
[0057] S4. Configuring Shikang concentrated liquid:
[0058] ①. The second liquid delivery pump 91 operates to pump the heated tap water in the heating chamber 33 into the crushing chamber 32 to be mixed with the Shikang powder.
[0059] ②. The second motor 7 operates to drive the crushing knife group 71 to rotate, stirring the Shikang powder and the tap water in the crushing chamber 32.
[0060] ③. The first three-way valve 85 connects the second connecting pipe 84 with the first liquid delivery pump 81. The first liquid delivery pump 81 operates to pump the mixed Shikang liquid into the heating chamber 33 for heating. The heated Shikang liquid is then pumped back into the crushing chamber 32 by the second liquid delivery pump 91 for stirring.
[0061] ④. Repeat step ③ multiple times to complete the configuration of the Shikang concentrated liquid. The configured Shikang concentrated liquid is located in the heating chamber 33.
[0062] S5. Discharging the Shikang concentrated liquid: The second three-way valve 95 connects the second liquid delivery mechanism 9 and the second liquid inlet pipe 94. The second liquid delivery pump 91 is used to pump the Shikang concentrated liquid in the heating chamber 33 into the water tank 2 to be mixed with the tap water in the water tank 2.
[0063] S6. Configuring Shikang disinfectant: The first motor 5 drives the stirring paddle 51 to rotate, mixing the tap water and the Shikang concentrated liquid in the water tank 2 to achieve the configuration of the Shikang disinfectant.
[0064] In step S2, the tap water entering the heating chamber 33 is 60 ml - 70 ml, and the heating temperature is 60 °C;
[0065] In step S4, during the circulation of the liquid in the crushing chamber 32 and the heating chamber 33, the liquid level in the heating chamber 33 is at the lowest at the low liquid level sensor 100;
[0066] In step S5, through the second infusion pump 91, the Strong Chlorine Disinfectant Concentrate in the heating chamber 33 can be emptied.
[0067] Through the above design, the automatic configuration of the Strong Chlorine Disinfectant can be realized, with convenient operation and high efficiency.
[0068] The above is only the preferred embodiment of the present invention, and the protection scope of the present invention is not limited to the above embodiments. All technical solutions falling within the idea of the present invention belong to the protection scope of the present invention. It should be noted that for those of ordinary skill in the art, several improvements and refinements made without departing from the principle of the present invention should also be regarded as within the protection scope of the present invention.
Claims
1. An electric disinfectant solution dispenser, characterized in that, It includes a base (1), a water tank (2) is fixed on the upper part of the base (1), a side box (3) is fixed on the side of the water tank (2), a top cover (21) and a functional area (22) located on the side of the top cover (21) are fixed on the upper part of the water tank (2), a water outlet assembly (4) is fixed on the side of the functional area (22), and an inner cover (23) is covered on the upper part of the top cover (21); A crushing chamber (32), a heating chamber (33) and an installation chamber (34) are arranged inside the side box (3). A first liquid infusion mechanism (8) and a second liquid infusion mechanism (9) are arranged in the installation chamber (34). The upper parts of the crushing chamber (32) and the heating chamber (33) are covered by an outer cover (31). The crushing chamber (32) and the heating chamber (33) respectively form a circulating water path through the first liquid infusion mechanism (8) and the second liquid infusion mechanism (9). The water tank (2) and the heating chamber (33) can be communicated through the first liquid infusion mechanism (8), and the water tank (2) and the heating chamber (33) can be communicated through the second liquid infusion mechanism (9).
2. The electric configurator of a disinfectant solution according to claim 1, characterized in that, A second motor (7) is fixed in the installation chamber (34). A crushing cutter group (71) is connected to the driving shaft of the second motor (7). The crushing cutter group (71) is located in the crushing chamber (32). An electric heating pipe (6) is fixed in the heating chamber (33).
3. The electric configurator of a disinfectant solution according to claim 1, characterized in that, The first liquid infusion mechanism (8) includes a first liquid infusion pump (81), a first liquid inlet pipe (82) and a first connecting pipe (83). One end of the first liquid inlet pipe (82) is connected to the inlet end of the first liquid infusion pump (81) and the other end is located inside the water tank (2). One end of the first connecting pipe (83) is connected to the outlet end of the first liquid infusion pump (81) and the other end is communicated with the inside of the heating chamber (33); The second liquid infusion mechanism (9) includes a second liquid infusion pump (91), a third connecting pipe (92) and a fourth connecting pipe (93). One end of the third connecting pipe (92) is communicated with the heating chamber (33) and the other end is connected to the inlet end of the second liquid infusion pump (91). One end of the fourth connecting pipe (93) is communicated with the crushing chamber (32) and the other end is connected to the outlet end of the second liquid infusion pump (91); The first liquid inlet pipe (82), the first liquid infusion pump (81), the first connecting pipe (83), the heating chamber (33), the third connecting pipe (92), the second liquid infusion pump (91), the fourth connecting pipe (93) and the crushing chamber (32) form a water inlet water path.
4. The electric disinfectant solution dispenser according to claim 3, wherein, The first liquid infusion mechanism (8) further includes a second connecting pipe (84) and a first three-way valve (85). The first three-way valve (85) is respectively connected to one end of the first liquid inlet pipe (82), the inlet end of the first liquid infusion pump (81) and one end of the second connecting pipe (84) to enable the first liquid inlet pipe (82) and the first liquid infusion pump (81) to be communicated or the second connecting pipe (84) to be communicated with the first liquid infusion pump (81). The other end of the second connecting pipe (84) is communicated with the crushing chamber (32); The heating chamber (33), the third connecting pipe (92), the second infusion pump (91), the fourth connecting pipe (93), the pulverizing chamber (32), the second connecting pipe (84), the first three-way valve (85), the first infusion mechanism (8), the first connecting pipe (83) and the heating chamber (33) form a circulating water path.
5. The electric configurator of a disinfectant solution according to claim 4, characterized in that, The second infusion mechanism (9) further includes a second liquid inlet pipe (94) and a second three-way valve (95). The second three-way valve (95) is respectively connected to the outlet end of the second infusion pump (91), one end of the fourth connecting pipe (93) and one end of the second liquid inlet pipe (94), so that the second infusion pump (91) is communicated with the fourth connecting pipe (93) or the second infusion pump (91) is communicated with the second liquid inlet pipe (94). The other end of the second liquid inlet pipe (94) is communicated with the water tank (2).
6. The electric disinfectant solution dispenser according to claim 1, wherein, Liquid level sensors (100) are installed on the outer walls of both the pulverizing chamber (32) and the heating chamber (33). The high liquid level sensor (100) and the low liquid level sensor (100) are respectively located on the side of the heating chamber (33). A temperature sensor (200) is provided in the heating chamber (33).
7. The electric configurator of a disinfectant solution according to claim 1, characterized in that A first motor (5) is fixed inside the base (1). A stirring paddle (51) is connected to the drive shaft of the first motor (5). The stirring paddle (51) is located inside the water tank (2).
8. A kind of electric disinfectant solution dispenser according to claim 1, characterized in that The water outlet assembly (4) includes a water outlet housing (41), a water outlet nozzle (42), a water outlet pump (43) and a water outlet pipe (44). The water outlet housing (41) is fixed to the functional area (22). The water outlet nozzle (42) is fixed to the lower part of the water outlet housing (41). The water outlet pump (43) is located inside the water outlet housing (41). The outlet end of the water outlet pump (43) is connected to the water outlet nozzle (42). One end of the water outlet pipe (44) is located near the bottom inside the water tank (2) and the other end is connected to the inlet end of the water outlet pump (43).
9. A method for preparing a disinfectant solution, which uses an electric disinfectant solution dispenser as described in any one of claims 1-8, characterized in that, It includes the following steps: S1. Feeding: Open the inner cover (23), add an appropriate amount of tap water into the water tank (2) and close the inner cover (23). Open the outer cover (31) and add an appropriate amount of Shikang tablets into the pulverizing chamber (32). S2. Heating the tap water: The first infusion pump (81) works to pump the tap water in the water tank (2) from the first liquid inlet pipe (82) into the heating chamber (33) for heating. S3. Pulverizing the Shikang tablets: The second motor (7) drives the pulverizing cutter group (71) to work to pulverize the Shikang tablets in the pulverizing chamber (32) into powder. S4. Preparing the Shikang concentrated solution: ①. The second infusion pump (91) works to pump the heated tap water in the heating chamber (33) into the pulverizing chamber (32) to mix with the Shikang powder. ②. The second motor (7) works to drive the pulverizing cutter group (71) to rotate and stir the Shikang powder and the tap water in the pulverizing chamber (32). ③. The first three-way valve (85) connects the second connecting pipe (84) with the first infusion pump (81). The first infusion pump (81) works to pump the mixed Shikang liquid into the heating chamber (33) for heating. The heated Shikang liquid is then pumped into the pulverizing chamber (32) by the second infusion pump (91) for stirring. ④. Repeat step ③ multiple times to complete the preparation of the Shikang concentrated liquid. The prepared Shikang concentrated liquid is located in the heating chamber (33). S5. Drain the Shikang concentrated liquid. The second three-way valve (95) connects the second liquid delivery mechanism (9) and the second liquid inlet pipe (94). The Shikang concentrated liquid in the heating chamber (33) is transported into the water tank (2) through the second liquid delivery pump (91) and mixed with the tap water in the water tank (2). S6. Prepare the Shikang disinfectant. The first motor (5) drives the stirring paddle (51) to rotate, mixing the tap water and the Shikang concentrated liquid in the water tank (2) to complete the preparation of the Shikang disinfectant.
10. The preparation method of a disinfectant solution according to claim 9, characterized in that, In step S2, the amount of tap water entering the heating chamber (33) is 60 ml - 70 ml, and the heating temperature is 60 °C. In step S4, during the circulation of the liquid in the crushing chamber (32) and the heating chamber (33), the lowest liquid level in the heating chamber (33) is at the low liquid level sensor (100). In step S5, the Shikang concentrated liquid in the heating chamber (33) can be emptied through the second liquid delivery pump (91).