Disclosure of Invention
Aiming at the defects of the prior art, the invention provides a glass substrate cleaning machine with a water circulation system, which solves the problems in the background art.
In order to achieve the above purpose, the invention is realized by the following technical scheme:
The utility model provides a glass substrate cleaning machine with water circulation system, includes the casing, the top of casing is fixed mounting has the conduction groove body, the inside evenly distributed of conduction groove body has first conduction roller, and the terminal conduction groove body of first conduction roller is interior fixed mounting has the second to scrape the liquid part, the top of conduction groove body is fixed mounting respectively has clean mechanism and conduction subassembly, the conduction groove body below the conduction subassembly is interior butt joint respectively installs second clean hair roller, second hydrojet part, and second clean hair roller, second hydrojet part distributes between first conduction roller, the inside of casing is settled the liquid reserve tank, the inside of casing is equipped with pneumatic mechanism, and pneumatic mechanism and liquid reserve tank assembly connection, the inside of casing of liquid reserve tank top is equipped with the splitter unit, and splitter unit and conduction groove body intercommunication, the back fixed mounting of conduction groove body has first drive assembly, the drive end and the pneumatic mechanism assembly connection, the feed mechanism is settled to one side of casing;
The feeding mechanism comprises a lifting assembly and a pushing assembly, wherein the lifting assembly is arranged on one side of the shell, and the pushing assembly is assembled on the lifting assembly; the cleaning mechanism comprises a first cover body, a second driving assembly, a first mounting cavity, a first liquid spraying component, a first cleaning brush, a second transmission roller, a first cleaning hair roller and a first telescopic cylinder, wherein the first cover body is fixedly arranged at the top of the transmission roller, the first telescopic cylinder is fixedly arranged at the top of the first cover body, the output end of the first telescopic cylinder extends into the first cover body, the first mounting cavity is butt-jointed and mounted at the output end of the first telescopic cylinder, the first cleaning brush, the second transmission roller and the first cleaning hair roller are respectively butt-jointed and mounted in the first mounting cavity above the first cleaning brush and the first cleaning hair roller, the second driving assembly is fixedly arranged at the back of the first mounting cavity, the second driving assembly is in transmission connection with the first cleaning brush, the second transmission roller and the first cleaning hair roller, and the first scraping component is fixedly arranged at one side of the first cover body; the separation assembly comprises a collection component and a filtering component, the air pressure mechanism comprises an air storage assembly and an air collection assembly, the collection component is fixedly arranged in a shell above the liquid storage tank, the filtering component is arranged at the bottom of the collection component in a butt joint mode, the bottom end of the filtering component is communicated with the liquid storage tank in an installation mode, the air storage assembly is arranged at the bottom of the shell, the air collection assembly is fixedly arranged at one side of the shell, the air collection assembly is connected with the driving end of the first driving assembly in an assembly mode, and the air storage assembly is respectively connected with the liquid storage tank and the air collection assembly in an assembly mode.
Further, the lifting assembly comprises a supporting plate, an electric screw, a first guide rail, a lifting plate and a supporting seat, wherein the supporting seat is arranged on one side of the shell, the supporting plate is fixedly arranged at the top of the supporting seat, the lifting plate is slidably arranged on the front surface of the supporting plate through the first guide rail, the electric screw is assembled in the supporting plate, and the electric screw is used for driving the lifting plate.
Further, push assembly includes fourth flexible jar, connecting block, flexible side pipe, push plate, and the back fixed mounting of backup pad has fourth flexible jar, flexible side pipe, and the connecting block is installed in the output butt joint of fourth flexible jar, and the fourth flexible jar passes through the connecting block and the tip erection joint of flexible side pipe, and the tip fixed mounting of flexible side pipe has the push plate.
Further, the first drive assembly includes installation shell, motor, pivot, conical gear group, and the back fixed mounting of the transmission groove body has the installation shell, and the pivot is installed in the inside butt joint of installation shell, is equipped with conical gear group in the pivot, and the pivot passes through conical gear group and first transmission roller, second cleaning hair roller, second hydrojet part transmission connection, and one side fixed mounting of installation shell has the motor, and the output and the pivot erection joint of motor, and second drive assembly, second drive part and the same structural principle of first drive assembly.
Further, the conduction assembly comprises a second cover body, a second mounting cavity, a second driving part, a third conduction roller and a third telescopic cylinder, wherein the second cover body is fixedly arranged at the top of the conduction groove body, the third telescopic cylinder is fixedly arranged at the top of the second cover body, the output end of the third telescopic cylinder extends into the second cover body, the second cover body is installed in a butt joint mode at the output end of the third telescopic cylinder, the third conduction roller is installed in a butt joint mode in the second mounting cavity, the second driving part is fixedly arranged at the back of the second mounting cavity, and the driving end of the second driving part is in assembly connection with the third conduction roller.
Furthermore, the second liquid spraying component and the first liquid spraying component adopt the same structure, the first liquid spraying component and the second liquid spraying component are both composed of liquid spraying pipes and liquid guiding pipes, two groups of liquid spraying pipes are arranged in the first installation cavity and the conduction groove body in a butt joint mode, and the communicated liquid guiding pipes are arranged at the end parts of the two groups of liquid spraying pipes in a butt joint mode;
The first liquid part of scraping adopts corresponding structure with the second liquid part of scraping, and first liquid part of scraping all constitutes through flexible jar of second, mounting panel, installation head, rubber scraper blade with the second liquid part of scraping, and fixed mounting has the mounting panel on the first cover body and the transmission groove body, and the top fixed mounting of mounting panel has the flexible jar of second, and the output of the flexible jar of second runs through the mounting panel, and the output butt joint of the flexible jar of second installs the installation head, and the bottom fixed mounting of installation head has the rubber scraper blade.
Further, the collecting component comprises a collecting box, liquid blocking strips, a second guide rail and a supporting frame, the supporting frame is fixedly arranged on two sides of the inside of the shell, the collecting box is slidably arranged on the supporting frame through the second guide rail, two groups of liquid blocking strips are fixedly arranged at the bottom in the collecting box, the two groups of liquid blocking strips are distributed in a trapezoid shape, and the upper ports of the filtering component are distributed among the liquid blocking strips;
The filter component comprises a receiving port, a filter element and a liquid guide channel, wherein the bottom of the collecting box is fixedly provided with the receiving port which is communicated, the bottom of the receiving port is in butt joint with the liquid guide channel, the receiving port is communicated with the liquid storage tank through the liquid guide channel, and the filter element is fixedly arranged in the liquid guide channel.
Further, the lifting pipe is installed in the back butt joint of liquid reserve tank, and is equipped with first automatically controlled valve on the lifting pipe, and the three-way pipe is installed in the butt joint of the top of lifting pipe, and the lifting pipe is equipped with two sets of conveying hose through the three-way pipe, and the both ends of conveying hose are connected with second hydrojet part, first hydrojet part installation respectively.
Further, the gas storage subassembly includes gas holder, booster pump, first booster pipe, air pressure sensor, air duct, gas-supply pipe, second automatically controlled valve, and the inside of casing is settled there is the gas holder, and the top of gas holder is butt joint respectively and is installed air pressure sensor, air duct, gas-supply pipe, settles the booster pump in the casing of gas holder rear side, and the output butt joint of booster pump is installed first booster pipe, and the tip and the air duct installation intercommunication of first booster pipe, gas-supply pipe and liquid reserve tank installation intercommunication, and be provided with the second automatically controlled valve on the gas-supply pipe.
Further, the gas collection subassembly includes third installation cavity, the second booster pipe, the one-way air outlet valve, the connecting rod part, piston part, the driving disk, one side fixed mounting of casing has the third installation cavity, the inside of third installation cavity is provided with the boost chamber, the one end of pivot extends to in the third installation cavity, and extend the end butt joint and install the driving disk, install the connecting rod part on the driving disk, and the bottom butt joint of connecting rod part installs the piston part, and the piston part extends to in the boost chamber, the bottom butt joint of third installation cavity install with the second booster pipe of boost chamber intercommunication, and second booster pipe and air duct intercommunication, all be provided with the one-way air outlet valve on second booster pipe and the first booster pipe.
The invention provides a glass substrate cleaning machine with a water circulation system. Compared with the prior art, the method has the following beneficial effects:
The impurities in the liquid are precipitated and separated through the collecting component, and the tiny particles in the liquid are filtered through the filtering component, so that the cleaning liquid can be recovered, the effect of repeated cyclic utilization is achieved, and the cleaning cost of the glass plate is saved;
through the joint cooperation between pneumatic mechanism and the drive assembly, can the effectual mechanical energy that produces during the operation, carry out the pressure filling to the liquid reserve tank, under the circumstances of guaranteeing the operation progress, the effectual unnecessary energy consumption that has reduced has guaranteed the energy-conserving effect of cleaning machine.
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 shows a schematic view of the internal assembly structure of the cleaning machine of the present invention.
Fig. 2 shows a schematic view of the outer assembly structure of the cleaning machine of the present invention.
Figure 3 shows a schematic diagram of the assembly of the separation assembly of the present invention.
Fig. 4 shows a schematic diagram of the assembly structure of the feeding mechanism of the present invention.
Fig. 5 shows a schematic view of a first assembly structure of the cleaning mechanism of the present invention.
Fig. 6 shows a schematic view of a second assembly structure of the cleaning mechanism of the present invention.
Fig. 7 shows a schematic diagram of the conductive assembly of the present invention.
Fig. 8 shows a schematic diagram of the assembly structure of the pneumatic mechanism and the liquid storage tank of the invention.
Fig. 9 shows a schematic diagram of the assembly structure of the first driving assembly and the pneumatic mechanism of the present invention.
Fig. 10 shows a schematic view of the filter element assembly structure of the present invention.
Shown in the figure is 1, a shell; 2, a conductive groove body; 22, a second cleaning hair roller; 23, second spray member, 3, loading mechanism, 31, lifting assembly, 311, support plate, 312, electric screw, 313, first guide rail, 314, lifting plate, 315, support base, 32, pushing assembly, 321, fourth telescopic cylinder, 322, connecting block, 323, telescopic square tube, 324, push plate, 4, first driving assembly, 41, mounting case, 42, motor, 43, spindle, 44, conical gear set, 5, cleaning mechanism, 51, first cover, 52, second driving assembly, 53, first mounting cavity, 54, first spray member, 541, spray tube, 542, guide screw, 55, first cleaning brush, 56, second guide roller, 57, first cleaning capillary roller, 58, first scraping member, 581, second telescopic cylinder, 582, mounting plate, 583, mounting head, 584, rubber scraper, 59, first telescopic cylinder, 6, conductive assembly, 61, second cover, 62, second mounting cavity, 63, second driving member, 64, third guide roller, 65, third guide roller, 7, third guide roller, 7, transmission tube, flexible tube, 542, guide tube, 55, first cleaning brush, 56, second guide roller, 57, first cleaning capillary tube, 58, first scraping member, 581, second telescopic cylinder, 582, mounting plate, 583, mounting head 584, rubber scraper, 59, first telescopic cylinder, 6, second telescopic cylinder, third guide roller, flexible guide roller, guide, 3a guide, 3, a, first, driving, respectively, respectively, the respectively, the air respectively, the cleaning the cleaning the respectively the cleaning the respectively the cleaning the cleaning the respectively, connecting rod part 925, piston part 926, drive disk.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention are clearly and completely described, and it is obvious that the described embodiments are some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Example 1
In order to solve the technical problems in the background art, a glass substrate cleaning machine with a water circulation system is provided as follows:
Referring to fig. 1-10, the glass substrate cleaning machine with a water circulation system provided by the invention comprises a shell 1, wherein a transmission groove body 2 is fixedly arranged at the top of the shell 1, first transmission rollers are uniformly distributed in the transmission groove body 2, a second liquid scraping component is fixedly arranged in the transmission groove body 2 at the tail end of the first transmission roller, a cleaning mechanism 5 and a transmission component 6 are fixedly arranged at the top of the transmission groove body 2 respectively, a second cleaning hair roller 22 and a second liquid spraying component 23 are respectively and butt-jointed and arranged in the transmission groove body 2 below the transmission component 6, the second cleaning hair roller 22 and the second liquid spraying component 23 are distributed among the first transmission rollers, a liquid storage box 8 is arranged in the shell 1, an air pressure mechanism 9 is arranged in the shell 1 and is connected with the liquid storage box 8 in an assembling manner, a separation component 7 is arranged in the shell 1 above the liquid storage box 8 and is communicated with the transmission groove body 2, a first driving component 4 is arranged on the back surface of the transmission groove body 2 in a fixedly arranged manner, and the driving component 4 is connected with one side of the driving end of the shell 1, which is provided with the driving end 3;
During the process, through carrying out the material loading operation with stacking the glass board, guide the glass board into conduction cell body 2 in, then through the first conduction roller in the conduction cell body 2 with clean mechanism 5, conduction subassembly 6 carries out the washing operation to glass board top surface and bottom surface, get rid of the spot on the glass board both sides, first drive assembly 4 is in driving first conduction roller, second cleaning hair roller 22, second hydrojet part 23, can jointly drive pneumatic mechanism 9 again, can the mechanical energy that produces in the effective utilization operation period like this, make up the pressure to liquid reserve tank 8, the atmospheric pressure in the liquid reserve tank 8 can be long time need not to carry out the make-up through the facility like this, need not to accomplish through the liquid pump when wasing, under the circumstances of guaranteeing the operation progress, the effectual energy consumption that has reduced, guaranteed the energy-conserving effect of cleaning machine, the washing liquid just falls into conduction cell body 2 in the separation subassembly 7 in the washing period, carry out the precipitation separation to impurity in the liquid through separation subassembly 7, filter the fine granule that filters in the liquid in this way can recycle the fine particle in order to realize recycling through filter element 72.
The feeding mechanism 3 comprises a lifting assembly 31 and a pushing assembly 32, wherein the lifting assembly 31 is arranged on one side of the shell 1, and the pushing assembly 32 is assembled on the lifting assembly 31; the cleaning mechanism 5 comprises a first cover body 51, a second driving assembly 52, a first mounting cavity 53, a first liquid spraying part 54, a first cleaning brush 55, a second transmission roller 56, a first cleaning hair roller 57, a first liquid scraping part 58 and a first telescopic cylinder 59, wherein the first cover body 51 is fixedly arranged at the top of the transmission groove body 2, the first telescopic cylinder 59 is fixedly arranged at the top of the first cover body 51, the output end of the first telescopic cylinder 59 extends into the first cover body 51, the first mounting cavity 53 is arranged at the output end of the first telescopic cylinder 59 in a butt joint manner, a first cleaning brush 55, a second transmission roller 56 and a first cleaning hair roller 57 are respectively arranged in the first mounting cavity 53 in a butt joint manner, the first cleaning brush 55 and the first liquid spraying part 54 are arranged in the first mounting cavity 53 above the first cleaning hair roller 57, the second driving assembly 52 is fixedly arranged at the back of the first mounting cavity 53, the second driving assembly 52 is connected with the first cleaning brush 55, the second transmission roller 56 and the first cleaning hair roller 57, and the first liquid spraying part 58 is fixedly arranged at one side of the first cleaning hair roller 57; the separating assembly 7 comprises a collecting component 71 and a filtering component 72, the air pressure mechanism 9 comprises an air storage component 91 and an air collecting component 92, the collecting component 71 is fixedly arranged in the shell 1 above the liquid storage tank 8, the bottom of the collecting component 71 is butt-jointed and provided with the filtering component 72, the bottom end of the filtering component 72 is communicated with the liquid storage tank 8, the air storage component 91 is arranged at the bottom in the shell 1, the air collecting component 92 is fixedly arranged at one side of the shell 1, the air collecting component 92 is assembled and connected with the driving end of the first driving component 4, the gas storage component 91 is respectively connected with the liquid storage tank 8 and the gas collection component 92 in an assembling way.
During the process, the glass plate to be cleaned is pushed through the mutual matching between the lifting component 31 and the pushing component 32, the glass plate is promoted to enter the machine body, the glass plate can enter the first installation cavity 53 of the first cover body 51 firstly, the cleaning operation of the top surface of the glass plate is completed through the rotation operation of the first cleaning brush 55 and the first cleaning hair roller 57, the glass plate is conveyed through the matching of the second guide roller 56 and the first guide roller during the cleaning, the cleaned liquid stain is scraped through the first scraping component 58 during the guiding out, the cleaned liquid can enter the collecting component 71 through the opening between the shell 1 and the guide groove body 2, the precipitation separation of impurities in the liquid is completed through the collecting component 71, tiny particles in the liquid are filtered through the filtering component 72, the cleaning solution can be recovered, the effect of repeated cyclic utilization is achieved, when the cleaning machine is operated, air supplementing and pressurizing can be carried out through the air collecting component 92, the effect is that the driving force of the first driving component 4 is utilized, when the first driving component 4 drives the roll shaft, the air collecting component 92 can be synchronously driven, external air is extracted through the air collecting component 92 and is filled into the air storing component 91, when the air pressure in the liquid storage tank 8 is insufficient, the air supplementing and pressurizing can be carried out through pressurizing facilities in the air storing component 91, so that the mechanical energy generated during the operation can be effectively utilized, the condition of the operation process is guaranteed, unnecessary energy consumption is favored, and the energy saving effect of the cleaning machine is guaranteed.
Example two
As shown in fig. 1 and 10, on the basis of the above-described embodiment, the present embodiment further gives the following:
In this embodiment, the lifting assembly 31 includes a support plate 311, an electric screw 312, a first guide rail 313, a lifting plate 314, and a support base 315, the support base 315 is disposed on one side of the housing 1, the support plate 311 is fixedly mounted on the top of the support base 315, the lifting plate 314 is slidably mounted on the front surface of the support plate 311 through the first guide rail 313, the electric screw 312 is mounted inside the support plate 311, and the electric screw 312 is used for driving the lifting plate 314.
During the period, personnel place the glass board that needs to wash on lifting plate 314, then start electric lead screw 312, and electric lead screw 312 drives lifting plate 314, and the glass board just can carry out synchronous promotion after leading-in to the cleaning machine like this, guarantees that the glass board is unanimous with leading-in horizontal plane.
In this embodiment, the pushing assembly 32 includes a fourth telescopic cylinder 321, a connecting block 322, a telescopic square tube 323, and a pushing plate 324, where the back of the supporting plate 311 is fixedly provided with the fourth telescopic cylinder 321 and the telescopic square tube 323, the output end of the fourth telescopic cylinder 321 is butt-jointed with the connecting block 322, the fourth telescopic cylinder 321 is connected with the end of the telescopic square tube 323 through the connecting block 322, and the end of the telescopic square tube 323 is fixedly provided with the pushing plate 324.
Through combining the above, when the glass board is lifted to the leading-in height, the fourth telescopic cylinder 321 can be started, the fourth telescopic cylinder 321 can drive the telescopic square pipe 323 to recycle, the telescopic square pipe 323 is utilized to drive the pushing plate 324 to synchronously move, the pushing plate 324 is pushed to the glass board on the topmost part, and the glass board is enabled to enter the conducting groove body 2.
In this embodiment, the first driving component 4 includes a mounting shell 41, a motor 42, a rotating shaft 43, and a tapered gear set 44, the mounting shell 41 is fixedly mounted on the back of the guiding groove 2, the rotating shaft 43 is mounted in a butt joint manner in the mounting shell 41, the tapered gear set 44 is mounted on the rotating shaft 43, the rotating shaft 43 is in transmission connection with the first guiding roller, the second cleaning hair roller 22 and the second liquid spraying component 23 through the tapered gear set 44, the motor 42 is fixedly mounted on one side of the mounting shell 41, the output end of the motor 42 is mounted and connected with the rotating shaft 43, and the second driving component 52 and the second driving component 63 have the same structural principle as the first driving component 4.
During this time, the first drive assembly 4 can perform two operating states:
the output end of the motor 42 drives the rotating shaft 43 to rotate, and the conical gear set 44 on the rotating shaft 43 is used for carrying out turning driving, so that the first conduction roller in each conduction groove body 2 is driven in a combined way, and the conduction operation of the glass plate can be realized;
secondly, the output end of the motor 42 drives the rotating shaft 43, the gas collecting assembly 92 can be driven through the end part of the rotating shaft 43, and the gas collecting assembly 92 is used for completing the required gas collecting operation, so that the transmission effect is achieved;
the second driving unit 52 and the second driving member 63 perform the operation according to the first state, thereby driving the respective connecting roller shafts.
Example III
As shown in fig. 1 to 10, on the basis of the above embodiment, the present embodiment further provides the following:
In this embodiment, the conductive assembly 6 includes a second cover 61, a second mounting cavity 62, a second driving component 63, a third conductive roller 64, a third telescopic cylinder 65, and a second liquid scraping component, the top of the conductive tank 2 is fixedly provided with the second cover 61, the top of the second cover 61 is fixedly provided with the third telescopic cylinder 65, the output end of the third telescopic cylinder 65 extends into the second cover 61, the output end of the third telescopic cylinder 65 is butt-jointed with the second cover 61, the inside of the second mounting cavity 62 is butt-jointed with the third conductive roller 64, the back of the second mounting cavity 62 is fixedly provided with the second driving component 63, the driving end of the second driving component 63 is in assembled connection with the third conductive roller 64, and one side of the second cover 61 is fixedly provided with the second liquid scraping component.
The conducting component 6 is matched with a cleaning machine to clean the bottom surface of the glass plate;
During the process, the third telescopic cylinder 65 is started first, the third telescopic cylinder 65 drives the second installation cavity 62 to descend, and the third guide roller 64 in the second installation cavity 62 is driven to be lifted to a proper working height, so that the conduction and cleaning operation of the glass plate are completed by matching with the components below.
In this embodiment, the second liquid spraying component 23 and the first liquid spraying component 54 adopt the same structure, the first liquid spraying component 54 and the second liquid spraying component 23 are both composed of liquid spraying pipes 541 and liquid guiding pipes 542, two sets of liquid spraying pipes 541 are both butt-jointed in the first installation cavity 53 and the conductive tank body 2, and the communicating liquid guiding pipes 542 are butt-jointed and installed at the end parts of the two sets of liquid spraying pipes 541;
The first liquid scraping component 58 and the second liquid scraping component adopt corresponding structures, the first liquid scraping component 58 and the second liquid scraping component are composed of a second telescopic cylinder 581, a mounting plate 582, a mounting head 583 and a rubber scraper 584, the mounting plate 582 is fixedly mounted on the first cover body 51 and the conducting groove body 2, the second telescopic cylinder 581 is fixedly mounted on the top of the mounting plate 582, the output end of the second telescopic cylinder 581 penetrates through the mounting plate 582, the mounting head 583 is butt-jointed and mounted at the output end of the second telescopic cylinder 581, and the rubber scraper 584 is fixedly mounted at the bottom of the mounting head 583.
During the process, the second liquid spraying part 23 and the first liquid spraying part 54 can spray liquid on the corresponding glass surfaces respectively, so that the purpose is to complete the cleaning operation of the glass plate in cooperation with other cleaning components, and the glass plate can be helpful for the cleaning operation after being sprayed with glass cleaning liquid;
After the cleaning is finished, the liquid stains on the glass plate can be effectively scraped through the rubber scraper 584 by the first liquid scraping component 58 and the second liquid scraping component at the tail ends of the rubber scraper 584, and before the cleaning is finished, the rubber scraper 584 is adjusted through the second telescopic cylinder 581, so that the cleaning treatment of the glass plate with different thicknesses is met.
In this embodiment, the collecting member 71 includes a collecting box 711, liquid-blocking strips 712, a second guide rail 713, and a supporting frame 714, wherein the supporting frame 714 is fixedly mounted on both sides of the interior of the housing 1, the collecting box 711 is slidably mounted on the supporting frame 714 through the second guide rail 713, two groups of liquid-blocking strips 712 are fixedly mounted at the bottom of the collecting box 711, the two groups of liquid-blocking strips 712 are distributed in a trapezoid shape, and the upper ports of the filtering member 72 are distributed between the liquid-blocking strips 712;
The filter member 72 includes a receiving port 721, a filter element 722, and a liquid guide channel 723, the bottom of the collecting box 711 is fixedly provided with a communicating receiving port 721, the bottom of the receiving port 721 is butt-jointed with the liquid guide channel 723, the receiving port 721 is communicated with the liquid storage tank 8 through the liquid guide channel 723, and the filter element 722 is fixedly installed in the liquid guide channel 723.
During the period, the cleaned liquid enters the collecting box 711 through the opening between the shell 1 and the conducting groove body 2, and gradually spreads over the liquid blocking strips 712 along with the increase of the liquid, and the liquid blocking strips 712 are sequentially blocked and spread until the liquid enters the liquid guide channel 723 through the receiving opening 721, so that the impurities in the liquid can be separated by multiple precipitation through the liquid blocking strips 712 distributed in a trapezoid manner, and the impurities are retained in the collecting box 711;
The liquid is filtered again by the filter element 722 in the liquid guide channel 723 to remove tiny particles in the liquid, and finally the liquid is led into the liquid storage tank 8 for recycling of the liquid storage tank 8.
In this embodiment, the lifting tube 81 is installed on the back of the liquid storage tank 8 in a butt joint manner, the first electric control valve 82 is assembled on the lifting tube 81, the three-way pipe 83 is installed on the top of the lifting tube 81 in a butt joint manner, the lifting tube 81 is assembled with two groups of conveying hoses 84 through the three-way pipe 83, and two ends of the conveying hoses 84 are respectively connected with the second liquid spraying component 23 and the first liquid spraying component 54 in a mounting manner.
During operation of the cleaning machine, the inside of the liquid storage tank 8 is pressurized, and the cleaning liquid in the liquid storage tank 8 is discharged through the lift pipe 81 as the air pressure in the liquid storage tank 8 increases, and at this time, the first electronic control valve 82 is required to be actuated, and the liquid is introduced into the delivery hoses 84 through the three-way pipe 83 by the lift pipe 81, and is introduced into the liquid guide pipes 542 in the second liquid ejecting member 23 and the first liquid ejecting member 54 through the two sets of delivery hoses 84, respectively.
In this embodiment, the air storage assembly 91 includes an air storage tank 911, a booster pump 912, a first booster tube 913, an air pressure sensor 914, an air duct 915, an air duct 916, and a second electric control valve 917, the air storage tank 911 is disposed in the housing 1, the air pressure sensor 914, the air duct 915, and the air duct 916 are respectively mounted at the top of the air storage tank 911 in a butt joint manner, the booster pump 912 is disposed in the housing 1 at the rear side of the air storage tank 911, the first booster tube 913 is mounted at the output end of the booster pump 912 in a butt joint manner, the end of the first booster tube 913 is in mounting communication with the air duct 915, the air duct 916 is in mounting communication with the liquid storage tank 8, and the second electric control valve 917 is disposed on the air duct 916.
During the period, the air storage tank 911 is used for pressurizing and supplementing air in the liquid storage tank 8, so that liquid in the liquid storage tank 8 is led out under the pressurizing effect, and if the air in the air storage tank 911 is insufficient, the air can be supplemented through the booster pump 912;
Starting a booster pump 912, compressing gas to a gas storage tank 911 by the booster pump 912 through the cooperation of a first booster tube 913 and a gas guide tube 915, and pushing an internal gas pressure value to an external control system through a gas pressure sensor 914 on the gas storage tank 911;
When the operation is performed, only the second electric control valve 917 is required to be started, and the gas is led into the liquid storage tank 8 through the gas pipe 916 for pressurization and gas supplement.
In this embodiment, the gas collecting assembly 92 includes a third installation cavity 921, a second pressurizing pipe 922, a one-way gas outlet valve 923, a connecting rod component 924, a piston component 925, and a driving disk 926, one side of the housing 1 is fixedly provided with the third installation cavity 921, a pressurizing chamber 9211 is provided in the third installation cavity 921, one end of the rotating shaft 43 extends into the third installation cavity 921, the extending end is abutted to install the driving disk 926, the driving disk 926 is abutted to install the connecting rod component 924, the bottom of the connecting rod component 924 is abutted to install the piston component 925, the piston component 925 extends into the pressurizing chamber 9211, the bottom of the third installation cavity 921 is abutted to install a second pressurizing pipe 922 communicated with the pressurizing chamber 9211, the second pressurizing pipe 922 is communicated with the gas guide pipe 915, and the second pressurizing pipe 922 and the first pressurizing pipe 913 are all provided with the gas outlet valve 923.
By combining the above, when the cleaning machine is operated again, the air collecting assembly 92 can be used for air supplementing and boosting, and the booster pump 912 is in a stop state;
during the period, when the rotating shaft 43 continuously rotates, the driving disc 926 is synchronously driven to rotate, the driving disc 926 is matched with the connecting rod component 924 to apply acting force to the piston component 925, the piston component 925 is driven to reciprocate in the plenum 9211, then external air enters the plenum 9211 through the unidirectional air inlet valve at one side of the third mounting cavity 921 and is led out through the piston, the air is pushed into the air guide tube 915 through the second booster tube 922 and finally is filled into the air storage tank 911, and if the air pressure is insufficient, the booster pump 912 can be started again to supplement the pressure difference.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one does not exclude the presence of other like elements in a process, method, article, or apparatus that comprises an element.
The foregoing embodiments are merely for illustrating the technical solution of the present invention, but not for limiting the same, and although the present invention has been described in detail with reference to the foregoing embodiments, it will be understood by those skilled in the art that modifications may be made to the technical solution described in the foregoing embodiments or equivalents may be substituted for parts of the technical features thereof, and that such modifications or substitutions do not depart from the spirit and scope of the technical solution of the embodiments of the present invention in essence.