Disclosure of Invention
The invention aims to provide a disinfectant manufacturing machine, which is of a new structure, convenient to carry and capable of containing a large amount of disinfectant. The preferred technical solutions of the technical solutions provided by the present invention can produce a plurality of technical effects described below.
In order to achieve the above purpose, the present invention provides the following technical solutions:
The invention provides a disinfectant manufacturing machine, which comprises a basin body and a disinfectant manufacturing part for manufacturing disinfectant, wherein the disinfectant manufacturing part is connected with the basin body, the basin body is of a foldable structure, a disinfectant circulation channel is formed between the disinfectant manufacturing part and the basin body, and the disinfectant generated by the disinfectant manufacturing part can flow into the basin body through the disinfectant circulation channel.
Further, the disinfectant manufacturing part comprises a right main body part and a left main body part for manufacturing disinfectant, the right main body part and the left main body part are detachably connected and are in a folded state, the basin body part is clamped between the right main body part and the left main body part, and a disinfectant circulation channel is formed between the left main body part and the basin body part.
Further, the right side main body part and the left side main body part are connected through a buckle or through magnetic attraction.
Further, the disinfectant manufacturing machine comprises more than two connecting pieces, and the right main body part and the left main body part are respectively connected with the basin body part through the corresponding connecting pieces.
Further, the connecting piece is H-shaped, one of the vertical parts on the connecting piece is connected with the peripheral outer side wall of the basin body close to the top, and the other vertical part is inserted into the right side main body part or the left side main body part, so that the connecting piece is clamped on the right side main body part or the left side main body part.
When the USB socket is arranged on the left main body part or the right main body part, one of the left main body part and the right main body part is provided with a charging pin, and the other is provided with a charging receiving end, and the charging pin is connected with the charging receiving end so as to charge the left main body part and the right main body part simultaneously.
Further, the left side main part includes antiseptic solution holding vessel, electrolysis electrode, left battery and left mainboard, set up in the antiseptic solution holding vessel electrolysis electrode, left mainboard connection electrolysis electrode with left battery, the antiseptic solution holding vessel with form between the basin body portion antiseptic solution circulation passageway, set up left valve body on the antiseptic solution circulation passageway.
Further, the left main body part further comprises a left shell, and the disinfectant storage tank, the left battery and the left main board are arranged in the left shell.
Further, a display panel is arranged on the left shell, and a disinfectant capacity display window is formed on the left shell.
Further, a top opening is formed at the top of the left shell, a left shell cover is connected to the outer side face of the top opening in a threaded mode, and the top tank opening of the disinfectant storage tank is connected to the inner side wall of the top opening.
Further, a connecting pipeline is arranged between the disinfectant storage tank and the basin body, the disinfectant circulation channel is formed in the connecting pipeline, an annular protruding portion is arranged on the connecting pipeline, the connecting pipeline penetrates through the insertion hole of the left shell, and the annular protruding portion is located on the inner side of the left shell and connected with the circumferential area of the insertion hole.
Further, the left valve body is an electromagnetic valve, the left main board is connected with the left valve body and is connected with a disinfectant supplementing button arranged on the left main body part, and the on-off state of the left valve body can be changed by operating the disinfectant supplementing button.
Further, the right side main body part includes the water storage jar, the water storage jar with form the clear water circulation passageway between the basin body portion, set up the right valve body on the clear water circulation passageway, clear water in the water storage jar can pass through clear water circulation passageway flow to the basin body portion.
Further, the right side main body part includes right mainboard and right battery, the right valve body is the solenoid valve, right mainboard connection right battery right valve body and setting are in clear water replenishment button on the left side main body part can change through the operation clear water replenishment button the on-off state of right valve body.
Further, the right main body part also comprises a right shell, the water storage tank is positioned in the right shell, a clear water capacity display window is formed on the right shell, a shell opening is formed at the top of the right shell, a right shell cover is connected with the outer side surface of the shell opening in a threaded manner, and the top tank opening of the water storage tank is connected to the inner side wall of the shell opening.
Further, the right main body part further comprises a stirring rod, a stirring rod accommodating cavity is formed in the right main body part, and the stirring rod is transversely arranged in the stirring rod accommodating cavity.
Further, one end of the stirring rod is in a spoon shape.
Further, a salt accommodating chamber for accommodating salt is formed in the right main body portion.
Further, the basin body is made of rubber.
The invention provides a disinfectant manufacturing machine, which comprises a basin body and a disinfectant manufacturing part for manufacturing disinfectant, wherein the disinfectant manufacturing part is connected with the basin body, the basin body is of a foldable structure, a disinfectant circulation channel is formed between the disinfectant manufacturing part and the basin body, and the disinfectant generated by the disinfectant manufacturing part can flow into the basin body through the disinfectant circulation channel. When the disinfectant manufacturing machine is needed, the basin body is unfolded, the unfolded basin body is in a basin-shaped structure, the capacity is large, the disinfectant manufacturing part is started to manufacture disinfectant, and the manufactured disinfectant can flow into the basin body through a disinfectant flow channel and can be used for hand cleaning or food cleaning in the basin body. The basin body can be made of silica gel and the like, and has the characteristics of folding and deforming.
Drawings
In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, it being obvious that the drawings in the following description are only some embodiments of the invention, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
Fig. 1 is a schematic front view of a disinfectant maker (the disinfectant maker is in a portable state) according to an embodiment of the present invention;
FIG. 2 is a schematic top view of a disinfectant maker (portable) according to an embodiment of the present invention;
fig. 3 is a schematic front view of a disinfectant maker (the disinfectant maker is in an operating state) according to an embodiment of the present invention;
fig. 4 is a schematic front view of the internal structure of the disinfectant maker according to the embodiment of the present invention (the disinfectant maker is in an operating state);
FIG. 5 is a schematic top view of a disinfectant maker (the disinfectant maker is in operation) according to an embodiment of the present invention;
FIG. 6 is an enlarged view of a portion of FIG. 5 at A;
FIG. 7 is a partial enlarged view at B in FIG. 5;
fig. 8 is a schematic bottom view of a disinfectant maker (the disinfectant maker is in an operating state) according to an embodiment of the present invention.
In the drawing, 1-basin body part, 101-basin body opening side, 2-right side main body part, 201-water storage tank, 202-clear water circulation channel, 203-right valve body, 204-right main board, 205-right battery, 206-clear water supplement button, 207-right shell, 208-clear water capacity display window, 209-right shell cover, 210-stirring rod, 211-salt accommodating cavity, 212-clear water pipe body, 213-annular part, 3-left side main body part, 301-disinfectant storage tank, 302-electrolysis electrode, 303-left battery, 304-left main board, 305-disinfectant supplement button, 306-left shell, 307-display panel, 308-disinfectant capacity display window, 309-left shell cover, 310-left valve body, 311-disinfectant circulation channel, 312-operation button, 4-connecting piece, 5-USB socket, 6-charging contact pin and 7-charging receiving end.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the technical solutions of the present invention will be described in detail below. It will be apparent that the described embodiments are only some, but not all, embodiments of the invention. All other embodiments, based on the examples herein, which are within the scope of the invention as defined by the claims, will be within the scope of the invention as defined by the claims.
The invention provides a disinfectant manufacturing machine, which comprises a basin body part 1 and a disinfectant manufacturing part for manufacturing disinfectant, wherein the disinfectant manufacturing part is connected with the basin body part 1, the basin body part 1 is of a foldable structure, a disinfectant flowing channel 311 is formed between the disinfectant manufacturing part and the basin body part 1, and the disinfectant generated by the disinfectant manufacturing part can flow into the basin body part 1 through the disinfectant flowing channel 311. When the disinfectant manufacturing machine is needed, the basin body 1 is unfolded, the unfolded basin body 1 is in a basin-shaped structure, the capacity is large, the disinfectant manufacturing part is started to manufacture disinfectant, the manufactured disinfectant can flow into the basin body 1 through the disinfectant circulation channel 311, and hand cleaning or food cleaning can be performed in the basin body 1. The basin body 1 can be made of silica gel and the like, and has the characteristics of folding and deforming.
As an alternative embodiment, the disinfectant manufacturing part includes a right main body part 2 and a left main body part 3 for manufacturing the disinfectant, the tub body part 1 detachably connected to the right main body part 2 and the left main body part 3 in a folded state is interposed between the right main body part 2 and the left main body part 3, and a disinfectant flow passage 311 is formed between the left main body part 3 and the tub body part 1. The disinfectant manufacturing machine provided by the invention has two states, namely a portable state, referring to fig. 1 and 2, the basin body 1 is in a folded state, the right side main body 2 and the left side main body 3 are connected, the basin body 1 in the folded state is clamped between the right side main body 2 and the left side main body 3, the disinfectant manufacturing machine is convenient for a user to carry, and the disinfectant manufacturing machine is in an operating state, referring to fig. 3, the connection between the right side main body 2 and the left side main body 3 is released, and the basin body 1 is unfolded to meet the requirement of the user to use.
With respect to the design of the right and left main body parts 2, 3, it is preferable that only the right and left main body parts 2, 3 are visible in appearance and the tub part 1 is not visible when the sterilizing fluid manufacturing machine is in a portable state, and the sterilizing fluid manufacturing machine in a portable state is schematically shown with reference to fig. 1 and 2.
Referring to fig. 3, a top view of the sterilizing fluid manufacturing machine in a use state (with the tub opening of the tub body 1 facing upward) is shown, and referring to fig. 8, a front view of the sterilizing fluid manufacturing machine in a use state from the tub body 1 side is shown.
As an alternative implementation manner, the right main body part 2 and the left main body part 3 are connected through a buckle or by magnetic attraction, so that the connection mode of the right main body part 2 and the left main body part 3 is simple and convenient to disassemble, the buckle connection can be realized by adopting the existing structure with respect to a specific buckle structure, and the magnets can be respectively arranged on the right main body part 2 and the left main body part 3 with respect to the magnetic attraction connection so as to realize the magnetic attraction connection.
As an alternative embodiment, the disinfectant manufacturing machine comprises more than two connectors 4, and the right main body 2 and the left main body 3 are respectively connected with the basin body 1 through the corresponding connectors 4. As can be seen from fig. 3, the top opening of the tub body 1 has a rectangular structure, and the left and right sides of the tub body 1 are respectively connected with the left main body 3 and the right main body 2, and referring to fig. 8, the connection position of the left main body 3 and the tub body 1 is shown to be close to the top of the tub body, and the connection position of the right main body 2 and the tub body 1 is shown to be close to the top of the tub body 1.
The connecting piece 4 is specifically described as follows, the connecting piece 4 is in an H shape, one vertical portion on the connecting piece 4 is connected with the peripheral outer side wall of the basin body 1 near the top, and the other vertical portion is inserted into the right side main body 2 or the left side main body 3, so that the connecting piece 4 is clamped on the right side main body 2 or the left side main body 3. Referring to fig. 5 and 6, the left main body 3 is schematically connected to the tub 1 by a connector 4. More than one connecting piece 4 is arranged between the left main body part 3 and the basin body part 1, more than one connecting piece 4 is arranged between the right main body part 2 and the basin body part 1, and a reasonable number of connecting pieces 4 are arranged according to the size of the basin body part 1.
As an alternative embodiment, a USB socket 5 for charging is provided on the left main body 3 and/or the right main body 2, and when the USB socket 5 is provided on the left main body 3 or the right main body 2, one of the left main body 3 and the right main body 2 is provided with a charging pin 6, and the other is provided with a charging receiving terminal 7, and the charging pin 6 is connected with the charging receiving terminal 7 so as to charge the left main body 3 and the right main body 2 simultaneously. Referring to fig. 4, a USB socket 5 and a charging pin 6 are provided on the left main body 3, a charging receiving end 7 is provided on the right main body 2, the charging pin 6 can be inserted into the charging receiving end 7, when the lithium battery in the left main body 3 and the lithium battery in the right main body 2 need to be charged, the charging pin 6 is inserted into the charging receiving end 7 (i.e. the disinfectant maker is in a portable state), a charging wire is connected to the USB socket 5, and a plug on the charging wire is connected with a socket to realize charging of the left main body 3 and the right main body 2.
As an alternative embodiment, referring to fig. 4, the left main body 3 is specifically configured such that the left main body 3 includes a disinfectant tank 301, an electrolytic electrode 302, a left battery 303, and a left main board 304, the electrolytic electrode 302 is disposed in the disinfectant tank 301, the left main board 304 connects the electrolytic electrode 302 and the left battery 303, a disinfectant flow channel 311 is formed between the disinfectant tank 301 and the tub 1, and a left valve body 310 is disposed on the disinfectant flow channel 311. When the left main body part 3 is required to be made into disinfectant, the clean water and the salt are put into the disinfectant storage tank 301 to be made into the salt water, the electrolysis electrode 302 is electrified, the salt water undergoes an electrolysis reaction,The Cl 2 generated by electrolysis reacts with NaOH to generate the disinfection active ingredient CLO -, and the chemical reaction formula is Cl 2+2NaOH=NaCl+NaClO+H2 O. After the electrolysis reaction is completed, the prepared sterilizing liquid is stored in the sterilizing liquid storage tank 301. When it is desired to use the sterilizing fluid in the sterilizing fluid storage tank 301, the sterilizing fluid circulation passage 311 is opened so that the sterilizing fluid flows into the tub 1. And then, according to the actual situation, a proper amount of clean water is injected into the basin body 1, so that the hand cleaning or the food cleaning can be performed in the basin body 1.
Regarding the left main body portion 3, the left main body portion 3 further includes a left housing 306, and the sterilizing liquid storage tank 301, the left battery 303, and the left main board 304 are provided in the left housing 306. Referring to fig. 4, a left housing 306 is illustrated. The left casing 306 is provided with a display panel 307, the display panel 307 can display electrolysis information, such as information of 'in electrolysis' or 'complete electrolysis', battery power and the like, and a disinfectant volume display window 308 is formed on the left casing 306, so that the disinfectant volume in the disinfectant storage tank 301 can be conveniently observed through the disinfectant volume display window 308.
As an alternative embodiment, referring to fig. 4, the positional connection relationship between the disinfectant tank 301 and the left casing 306 is illustrated, the top of the left casing 306 forms a top opening, the outer side surface at the top opening is screwed with the left casing cover 309, and the top tank opening position of the disinfectant tank 301 is connected to the inner side wall at the top opening. When clean water and salt are required to be injected into the disinfectant tank 301, the left cover 309 needs to be opened, and the top tank opening of the disinfectant tank 301 is connected to the inner side wall of the top opening, so that clean water and salt are conveniently added into the disinfectant tank 301, that is, the disinfectant tank 301 and the left casing 306 share the left cover 309.
As an alternative embodiment, a connection pipe is provided between the sterilizing fluid storage tank 301 and the tub body 1, the interior of which forms a sterilizing fluid circulation passage 311, and an annular protrusion is provided on the connection pipe, the connection pipe passing through the insertion hole of the left casing 306, the annular protrusion being located inside the left casing 306 and connected to the circumferential region of the insertion hole. As for the connection pipe and the annular protrusion, referring to fig. 5 and 7, the structure of the fresh water pipe 212 and the annular portion 213 between the water storage tank 201 and the tub portion 1 is the same as the structure of the connection pipe provided between the sterilizing fluid storage tank 301 and the tub portion 1.
In addition, regarding the height of the disinfectant tank 301 in the left housing 306, when the disinfectant in the disinfectant tank 301 flows to the tub 1 only under the action of gravity, the disinfectant tank 301 is relatively higher, so that the disinfectant in the disinfectant tank 301 flows to the tub 1, and naturally, when the driving water pump is disposed on the connecting pipe, the disinfectant in the disinfectant tank 301 flows to the tub 1 under the action of the driving water pump.
As an alternative embodiment, the left valve body 310 is an electromagnetic valve, the left main plate 304 is connected to the left valve body 310 and to the sterilizing liquid replenishment button 305 provided on the left main body portion 3, and the switching state of the left valve body 310 can be changed by operating the sterilizing liquid replenishment button 305. Referring to fig. 4, a left valve body 310 is illustrated, and referring to fig. 3, a sterilizing fluid replenishment button 305 is illustrated. When the disinfectant is required to be introduced into the tub body 1, the disinfectant replenishing button 305 is pressed, the left main board 304 controls the left valve body 310 to be opened, the disinfectant in the disinfectant tank 301 flows to the tub body 1, and then the disinfectant replenishing button 305 is pressed, the left main board 304 controls the left valve body 310 to be closed, and the disinfectant tank 301 stops injecting the disinfectant into the tub body 1.
Referring to fig. 3, an operation button 312 is further provided on the left casing 306, and the operation button 312 is connected to the left main plate 304, and when electrolysis is required, the operation button 312 is pressed to perform electrolysis of the brine, and then the operation button 312 is pressed to stop the electrolysis of the brine. Alternatively, the operation button 312 may be pressed to energize the display panel 307, the display panel 307 may be touched to start the electrolytic reaction and end the electrolytic reaction by operating the display panel 307.
As an alternative embodiment, regarding the right main body 2, the structure is such that the right main body 2 includes a water storage tank 201, a clean water flow channel 202 is formed between the water storage tank 201 and the tub 1, a right valve body 203 is provided on the clean water flow channel 202, and clean water in the water storage tank 201 can flow to the tub 1 through the clean water flow channel 202. Referring to fig. 4, a water storage tank 201 and a clear water circulation channel 202 are schematically shown, when disinfectant is injected into the tub body 1, the right valve body 203 may be opened, and a proper amount of clear water is simultaneously injected into the tub body 1 through the clear water circulation channel 202, and as for the amount of disinfectant and clear water injected into the tub body 1, the injection amount may be set reasonably according to the actual use.
Referring to fig. 4, the clear water flow channel 202 and the sterilizing fluid flow channel 311 are shown on the same transverse plane, and referring to fig. 5, the cross-sections of the areas a and B are not on the same plane.
As an alternative embodiment, the right main body 2 includes a right main board 204 and a right battery 205, the right valve body 203 is an electromagnetic valve, the right main board 204 is connected to the right battery 205, the right valve body 203, and a clear water replenishment button 206 provided on the left main body 3, and the on-off state of the right valve body 203 can be changed by operating the clear water replenishment button 206. Referring to fig. 4, a right main plate 204 and a right battery 205 are schematically seen, referring to fig. 3, a clear water replenishment button 206 is schematically shown, when clear water needs to be introduced into the tub body 1, the right main plate 204 controls the right valve body 203 to be opened, clear water in the water storage tank 201 flows to the tub body 1, and then the clear water replenishment button 206 is pressed, the right main plate 204 controls the right valve body 203 to be closed, and the water storage tank 201 stops injecting clear water into the tub body 1.
As an alternative embodiment, the right main body 2 further comprises a right housing 207, the water storage tank 201 is located in the right housing 207, a clear water volume display window 208 is formed on the right housing 207, the water volume in the water storage tank 201 can be observed through the clear water volume display window 208, a shell opening is formed at the top of the right housing 207, a right shell cover 209 is connected to the outer side surface of the shell opening in a threaded manner, and the top tank opening position of the water storage tank 201 is connected to the inner side wall of the shell opening. When the clean water needs to be injected into the water storage tank 201, the right shell cover 209 needs to be opened, and as the top tank opening position of the water storage tank 201 is connected to the inner side wall of the top opening position, the clean water is conveniently added into the water storage tank 201, namely, the right shell 207 and the water storage tank 201 share the right shell cover 209.
As an alternative embodiment, the right body part 2 further includes a stirring rod 210, and a stirring rod accommodating cavity is formed in the right body part 2, and the stirring rod 210 is laterally disposed in the stirring rod accommodating cavity. Referring to fig. 4, a stirring bar 210 is schematically shown, the stirring bar 210 being used to stir the fresh water and salt in the sterilizing liquid storage tank 301. When fresh water and salt are just added to the sterilizing liquid storage tank 301, stirring by the stirring bar 210 is required to accelerate the dissolution of salt. The right main body 2 is provided with a stick cover, and when the stick cover is opened, the stick 210 can be taken out.
One end of the stirring bar 210 is shaped like a spoon so that salt can be added into the sterilizing fluid storage tank 301 by the stirring bar 210. Preferably, a salt accommodating chamber 211 for accommodating salt is formed in the right body part 2, and salt is placed in the salt accommodating chamber 211. The right main body 2 is provided with a salt protection cover, and when the salt protection cover is opened, the salt can be removed from the salt accommodating chamber 211 by the stirring bar 210.
The disinfectant manufacturing machine provided by the invention can be specifically used as follows:
The method comprises the steps of opening a right shell cover 209, injecting clear water into a water storage tank 201, then covering the right shell cover 209, opening a stirring rod protective cover, taking out a stirring rod 210, opening a salt protective cover and a left shell cover 309, digging salt from a salt accommodating cavity 211 through the stirring rod 210, then placing salt into a disinfectant storage tank 301, placing salt of different spoons into the disinfectant storage tank 301 according to different purposes, then adding clear water into the disinfectant storage tank 301, stirring the solution in the disinfectant storage tank 301 by utilizing the stirring rod 210 after adding, accelerating the dissolution of the salt, and then covering a left shell cover 309.
The connection between the right main body 2 and the left main body 1 is released, the bowl body 1 is unfolded, the operation button 312 is pressed, the display panel 307 is energized, the display panel 307 touches the screen panel, the electrolysis reaction is started by operating the display panel 307, and after a while, the electrolysis reaction is ended by operating the display panel 307. The sterilizing liquid replenishment button 305 is pressed so that the sterilizing water in the sterilizing liquid storage tank 301 flows into the tub body 1 while observing the fresh water capacity display window 208, and after a proper amount is reached, the sterilizing liquid replenishment button 305 is pressed and the left valve body 310 is closed, and the fresh water replenishment button 206 is pressed so that the fresh water in the water storage tank 201 flows into the tub body 1 while observing the fresh water capacity display window 208, and after a proper amount is reached, the fresh water replenishment button 206 is pressed and the right valve body 203 is closed and then the sterilizing water in the tub body 1 can be used for cleaning.
The foregoing is merely illustrative of the present invention, and the present invention is not limited thereto, and any person skilled in the art will readily recognize that variations or substitutions are within the scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.