Long-dragon-shaped cleaning machine
The long-line cleaning machine generates weakly alkaline magnetized water and micro-nano bubbles through a water treatment system. Combined with an ozone generator, it solves the problem of efficient stain removal and disinfection without detergent, achieving efficient cleaning and environmentally friendly cleaning.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHONGSHAN YOUJIA TECH CO LTD
- Filing Date
- 2025-03-20
- Publication Date
- 2026-04-10
AI Technical Summary
Existing cleaning devices use chemical detergents, which pollute the environment and pose health risks, and it is difficult to achieve efficient decontamination without detergents.
The long-line cleaning machine generates weakly alkaline magnetized water and produces micro-nano bubbles through a water treatment system. The cleaning is achieved by utilizing the physical impact and free radical effect of the micro-nano bubbles, and the ozone generator is combined to improve the disinfection and sterilization effect.
It effectively removes grease without the need for additional cleaning agents, improves cleaning results and disinfection capabilities, reduces environmental pollution and health risks, and increases cleaning efficiency.
Smart Images

Figure CN224099299U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cleaning machine technology, and more specifically, to a long-line cleaning machine. Background Technology
[0002] As an essential cleaning appliance in modern catering, hotels, and homes, dishwashers' core function is to efficiently remove food residue, grease, and other contaminants from tableware surfaces to meet hygiene and reuse requirements. Especially in commercial settings (such as restaurant kitchens and central kitchens), the task of cleaning tableware is demanding, with stubborn grease buildup. Traditional cleaning methods often rely on large amounts of chemical detergents. While these detergents can improve cleaning effectiveness, their chemical components (such as surfactants and phosphates) can easily cause eutrophication of water bodies and damage the ecological environment after discharge. Furthermore, detergent residues may pose a potential threat to human health, especially in the cleaning of food contact utensils; residue risks and environmental issues have become pain points in the industry.
[0003] Therefore, there is an urgent need for a cleaning device that can achieve efficient decontamination without the need for chemical detergents by optimizing water treatment and cleaning mechanisms, while reducing energy consumption and environmental pollution. Utility Model Content
[0004] The purpose of this invention is to overcome the shortcomings of existing cleaning devices that use detergents and pollute the environment, and to provide a long-line cleaning machine that can achieve the goal of cleaning without adding extra detergent.
[0005] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is: to provide a long-line cleaning machine, including...
[0006] A cleaning device used to spray water to clean objects;
[0007] A water circuit module, which is used to supply water to the cleaning device;
[0008] A water treatment system, comprising a water treatment tank for making water into weakly alkaline magnetized water, and a micro / nano bubble generator; the water inlet of the water treatment tank can be connected to an external water source, the output of the water treatment tank is connected to the input of the water circuit module, the input of the micro / nano bubble generator is connected to the output of the water treatment tank or the water circuit module, and the output of the micro / nano bubble generator is connected to the water circuit module.
[0009] Through the setting mode, the water treatment system accesses external water source, and performs weak alkalization and magnetization treatment on the external water source, improves the water body's dissolving capacity for dirt such as oil stains, and sends the treated water body to the water channel module, the micro-nano bubbles re-use the weak alkalization magnetic water to generate micro-nano bubbles and send them into the water channel module, so that the water body contains a large number of micro-nano bubbles; when it is necessary to clean the cleaning object, the cleaning object is placed in the cleaning device, and the water channel module supplies the weak alkaline magnetized water containing micro-nano bubbles to the cleaning device to flush the cleaning object.
[0010] The micro-nano bubble generator can extract the weak alkaline magnetized water treated by the water treatment box to generate water body containing micro-nano bubbles; the water body is magnetized when passing through the magnetizer, the hydrogen bond grid between water molecules is weakened, and the surface tension of water is reduced. Since the surface tension of the water body is reduced after magnetization, it is easier to generate small-sized bubbles, and the concentration of micro-nano bubbles in the water body is increased. The micro-nano bubbles contained in the water body can improve the cleaning effect of the water body; the micro-nano bubbles can generate free radicals without external stimulation. When the micro-nano bubbles shrink, the charge density of the double electric layer rapidly increases. When the bubbles burst, the energy accumulated by the high concentration of positive and negative ions on the gas-liquid interface is released due to the violent change of the disappearance of the interface, which can excite a large number of hydroxyl radicals, thereby improving the activity of the water and being beneficial to improving the cleaning effect of the water body; and the bubbles will produce a jet stream when they burst, which will form a physical impact on the dirt on the surface of the object, so that the dirt such as oil stains which is difficult to dissolve in water becomes small droplets, thereby realizing high-quality cleaning effect without additional cleaning agent.
[0011] Preferably, the diameter of the bubbles contained in the water body output by the micro-nano bubble generator is 50nm-1000nm.
[0012] Preferably, the water treatment box comprises a plurality of weak alkalization pipes, a magnetizer and a first ozone generator, the plurality of weak alkalization pipes, the magnetizer and the first ozone generator are sequentially communicated, the water inlet end of the weak alkalization pipe can be connected with a water source, and the water outlet end of the first ozone generator is communicated with the water channel module.
[0013] Through the setting mode, the main function of the weak alkalization pipe is to make the water alkaline, and the main function of the magnetizer is to magnetize the water to form small molecular group water. During the process of passing through the weak alkalization pipe and the magnetizer, the polarity of the water molecules cannot be offset by the dipole moments of the two H-O bonds, the positive and negative charge centers do not coincide, and the whole molecule has high polarity. By using the polarity of the water molecules and the positive and negative electricity of the oil stains to form the principle of attraction, the water molecules can easily wrap and take away the oil stains, so that the purpose of cleaning stains without cleaning agent is achieved.
[0014] The magnetization program is arranged after the weak alkalization program, so that the water obtained at the use end requiring water use is as small as possible small micelle water, on the one hand, the water has stronger permeability in the process of cleaning dirt, can better wrap the dirt, and then clean; on the other hand, the smaller the small micelle water is, the easier it is to evaporate, the washed object is less likely to hang water droplets, and the object is easier to dry, so that the purpose of natural drying can be achieved without using a drying agent and other drying means, in addition, the second ozone generator mainly plays two roles, first, sterilization and disinfection, in some application scenarios with disinfection requirements, there are relevant detection standards, ozone is added to meet the relevant disinfection and sterilization requirements; second, ozone is a strong oxidizing agent and has a certain decontamination ability, which can better act together with small micelle water in the cleaning process to remove stains.
[0015] Preferably, the weak alkalization pipe is used to adjust the pH value of the external water body to 8.0-9.0.
[0016] Preferably, the magnetizer comprises a first pipe with magnetic conductivity, a magnet arranged on the first pipe to form a magnetic field in the region of the first pipe, the first pipe having a water inlet and a water outlet.
[0017] Preferably, the magnet comprises at least one magnet group arranged axially along the first pipe, each magnet group comprising two magnets fixedly arranged on the outer surface of the first pipe, and the unlike poles of the two magnets are opposite, and the magnetic field magnetic force parameter between the two magnets is 5000-6000 Gauss.
[0018] Further, the magnet group is provided with a plurality of magnet groups, and the arrangement form of adjacent magnet groups is that the orthographic projection in the axial direction of the first pipe is perpendicular to each other. The purpose of the vertical arrangement is to allow the water flowing through the pipe to be magnetized on each surface.
[0019] Preferably, the water treatment system further comprises a second ozone generator, and an output end of the second ozone generator is in communication with an input end of the micro-nano bubble generator.
[0020] Through this arrangement, the micro-nano bubble generator can use the ozone output by the second ozone generator to generate micro-nano bubbles containing ozone, thereby increasing the ozone solubility in a unit of water body and further improving the disinfection and sterilization effect of the water body.
[0021] Preferably, the cleaning device comprises a first cleaning module, a second cleaning module and a conveying module, the conveying module is sequentially arranged in the first cleaning module and the second cleaning module, the first cleaning module is used for main washing of the cleaning object, the second cleaning module is used for rinsing of the cleaning object, and the water inlet ends of the first cleaning module and the second cleaning module are in communication with the water outlet end of the waterway module.
[0022] Preferably, the waterway module comprises a first water tank, a first water pump, a second water tank, a second water pump, a first drain pipe and a second drain pipe, the first water tank is arranged at the bottom of the first cleaning module and communicates with the inside of the first cleaning module, the first water tank communicates with the water inlet end of the first cleaning module through the first water pump; the second water tank communicates with the water inlet end of the second cleaning module through the second water pump, the first drain pipe is arranged in the first water tank, the second drain pipe is arranged at the bottom of the second cleaning module, and the output end of the micro-nano bubble generator communicates with the first water tank.
[0023] Through this arrangement, the water treated by the water treatment system is sent to the first water tank and the second water tank respectively, the water in the first water tank is pumped to the first spray head by the first water pump for main washing, the water flow after main washing falls into the bottom of the first cleaning bin and flows back to the first water tank for recycling, and the bubbles generated by the micro-nano bubble generator are sent into the first water tank to participate in the main washing, so as to assist in removing stubborn dirt in the main washing stage. The dirty water in the first water tank can be discharged through the first drain pipe after the main washing is completed; the water in the second water tank is pumped to the second spray head by the second water pump for rinsing, and the water after rinsing falls into the lower part of the second cleaning bin and is sent out through the second drain pipe.
[0024] Further, when the input end of the micro-nano bubble generator communicates with the first water tank, since the water pressure in the first water tank is smaller than that of the output end of the first ozone generator, more micro-nano bubbles can be generated by using water with smaller water pressure, so as to increase the concentration of micro-nano bubbles in the output water of the micro-nano bubble generator.
[0025] Preferably, the bubble generator comprises a self-priming pump and a mixing bin, the output end of the second ozone generator and the output end of the first water tank respectively communicate with the input end of the mixing bin, the self-priming pump is used to generate negative pressure to make water flow from the first water tank to the mixing bin, and the output end of the mixing bin communicates with the first water tank.
[0026] Through this arrangement, the self-priming pump generates negative pressure to attract the water in the first water tank to flow to the mixing bin, and the water in the mixing bin is repeatedly sheared and broken by high-speed rotation, hydraulic shearing and the like, so as to cut the visible bubbles into micro-nano bubbles, and the ozone gas is introduced, so that the micro-nano bubbles wrap the ozone gas, thereby forming water body rich in ozone and being transported to the first water tank, and the increase of the ozone content is beneficial to improving the sterilization effect of ozone, thereby improving the cleaning effect of the water body.
[0027] Preferably, the water treatment system further comprises at least two groups of heating assemblies, and the at least two groups of heating assemblies are respectively fixedly arranged in the first water tank and the second water tank.
[0028] Through the arrangement, the heating assembly can heat the water in the first water tank and the second water tank, thereby improving the water's dissolving capacity for dirt, improving the cleaning effect of the cleaning machine, and reducing the cleaning time and improving the cleaning efficiency.
[0029] Preferably, the first drain pipe is provided with an overflow at the top, the first water tank is provided with a drain at the bottom, and the first drain pipe is inserted into the first drain. Through this arrangement, when main washing is performed, the water treatment system continuously supplies clean water into the first water tank, while the water carrying oil stains after main washing flows back to the first water tank from the first cleaning bin, and the oil stains float on the upper layer of the water level in the first water tank. As the water treatment system continues to supply water, the water level rises to the overflow, and the oil stains on the top layer are discharged from the overflow, thereby continuously purifying the recycled water and improving the effect of the recycling cleaning. When all cleaning operations are completed and the machine is stopped, the first drain pipe can be pulled out to open the drain to discharge the water in the first water tank.
[0030] Preferably, the first cleaning module is provided with a first cleaning bin and at least two groups of first spray heads, and the at least two groups of first spray heads are arranged at the top and the bottom of the first cleaning bin, respectively, and the water inlets of the first spray heads are in communication with the output end of the first water pump. The conveying module is arranged in the first cleaning bin.
[0031] Through this arrangement, as the conveying module works, the cleaning object is sent into the first cleaning bin, and the first spray heads in the first cleaning bin spray water from the top and the bottom to wash the cleaning object on the conveying module, ensuring that the washing range covers the entire cleaning object and improving the cleaning effect. The second cleaning bin forms an isolated space to avoid water splashing during washing and polluting the external environment.
[0032] Preferably, the second cleaning module includes a second cleaning bin, at least two groups of second spray heads, and a drying assembly, and the at least two groups of second spray heads are arranged at the top and the bottom of the second cleaning bin, respectively. The water inlet end of the second spray head is in communication with the water outlet end of the second water pump, and the drying assembly is arranged above the second cleaning bin. The conveying module is arranged in the second cleaning bin.
[0033] Through this arrangement, when the cleaning object is sent into the second cleaning bin by the conveying module, the second spray head works to spray clean water to rinse the cleaning object, ensuring that there is no pollution residue on the cleaning object. After the rinsing time is over, the second spray head stops working, and the drying assembly starts working to input a large amount of hot air into the second cleaning bin to quickly dry the cleaning object, and then the conveying module sends out the cleaning object.
[0034] Preferably, the first cleaning bin and the second cleaning bin are both provided with an outlet and an inlet for the conveying module to pass through, and a water baffle is arranged at the outlet and the inlet. In this way, when the first cleaning module and the second cleaning module are working, the water used for cleaning in the first cleaning bin or the second cleaning bin can be prevented from splashing out.
[0035] Preferably, the drying assembly comprises a blower mechanism and a heat conduction pipe, the output end and the input end of the heat conduction pipe are both in communication with the outside, the blower mechanism is arranged above the second cleaning bin, the top of the second cleaning bin is provided with a hollow structure, and the heat conduction pipe is arranged between the blower mechanism and the second cleaning bin.
[0036] In this way, the heat conduction pipe can be connected to an external temperature adjusting device and input hot water at different temperatures. When the blower mechanism is working, the flowing gas passes through the heat conduction pipe, enters the second cleaning bin after absorbing heat, and thus the cleaning object in the second cleaning bin can be quickly dried. The temperature of the hot air can be adjusted by adjusting the temperature of the water in the heat conduction pipe.
[0037] Preferably, the cleaning device further comprises a feeding module and a discharging module, and the conveying module is sequentially arranged in the feeding module, the first cleaning module, the second cleaning module and the discharging module.
[0038] Preferably, the top of the feeding module is provided with an open structure, the starting section of the conveying module is arranged at the top of the feeding module, the bottom of the feeding module is provided with a funnel-shaped guide part and a dirt collecting disc, and the dirt collecting disc is arranged below the guide part and detachably connected with the feeding module.
[0039] In this way, the user can place the cleaning object on the conveying module at the feeding module. At this time, the cleaning object has been pre-washed and soaked, but there may still be some fluid stains such as oil stains on it. During the placement process, the stains will naturally flow down. At this time, the guide part can collect these dirty objects and guide them into the dirt collecting disc. When the dirt collecting disc is full, the user can take out the dirt collecting disc for cleaning, thereby reducing the cleaning and maintenance steps.
[0040] Preferably, the conveying module comprises a driving motor, a driving wheel, a driven wheel and a drainage conveying belt, the driving motor is arranged at the bottom of the discharging module, the driving motor is connected with the driving wheel, the driving wheel is rotatably arranged on the discharging module, the driven wheel is rotatably arranged on the feeding module, and the drainage conveying belt is sleeved on the driving wheel and the driven wheel and forms an annular structure.
[0041] Through the arrangement mode, the driving motor drives the driving wheel to rotate, the driving wheel drives the drainage conveying belt to move, and the cleaning object placed on the drainage conveying belt sequentially passes through the feeding module, the first cleaning module, the second cleaning module and the discharging module along with the drainage conveying belt.
[0042] Preferably, a cavity is formed in the middle of the annular structure of the drainage conveying belt, the first nozzle at the bottom of the first cleaning chamber and the second nozzle at the bottom of the second cleaning chamber are arranged in the cavity.
[0043] Through the arrangement mode, the first nozzle and the second nozzle are blocked by the conveying belt, thereby improving the cleaning effect.
[0044] Preferably, the drainage conveying belt is hollow, and a plurality of protrusions for limiting the cleaning object are arranged on the drainage conveying belt.
[0045] Through the arrangement mode, the cleaning object can be limited, and the cleaning object is prevented from sliding off the drainage conveying belt during transportation or cleaning.
[0046] Compared with the prior art, the utility model has the beneficial effects that:
[0047] (1) Through the arrangement of the water treatment system, the weak alkaline magnetized water body with micro-nano bubbles is generated, which can easily wrap and carry away oil stains, thereby realizing high-quality cleaning effect without additional cleaning agent.
[0048] (2) Through the arrangement of the first ozone generator, ozone is dissolved in the water body, and the disinfection and sterilization effect of the water body is improved.
[0049] (3) Through the combination of the second ozone generator and the micro-nano bubble generator, the ozone concentration in the unit water body is improved, and the disinfection and sterilization effect is further improved.
[0050] (4) Through the arrangement of the cleaning device, multiple batches of cleaning objects can be cleaned at the same time, and the cleaning efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0051] Fig. 1 It is a whole structure schematic view of the long dragon type cleaning machine of the utility model;
[0052] Fig. 2 It is a water treatment box structure schematic view of the long dragon type cleaning machine of the utility model;
[0053] Fig. 3 It is an internal structure schematic view of the long dragon type cleaning machine of the utility model;
[0054] Fig. 4The utility model discloses a drying assembly structure schematic drawing of long dragon type cleaning machine.
[0055] The illustration marks are explained as follows:
[0056] 1, cleaning device, 11, first cleaning module, 111, first cleaning bin, 112, first shower head, 12, second cleaning module, 121, second cleaning bin, 122, second shower head, 123, drying assembly, 1231, air blowing mechanism, 1232, heat pipe, 13, conveying module, 131, drive motor, 132, driving wheel, 133, driven wheel, 134, drainage conveying belt, 14, feeding module, 141, guide part, 142, pollution collection disc, 15, discharging module, 2, waterway module, 21, first water tank, 22, first water pump, 23, second water tank, 24, second water pump, 25, first drain pipe, 26, second drain pipe, 3, water treatment system, 31, water treatment box, 311, weak alkalization pipe, 312, magnetizer, 313, first ozone generator, 32, micro-nano bubble generator, 33, second ozone generator, 34, heating assembly. DETAILED DESCRIPTION
[0057] The utility model makes further explanation in combination with specific embodiment. Among them, the drawing is only used for example explanation, and the representation is only schematic drawing, and cannot be understood as the restriction to this patent; in order to better explain the embodiment of the utility model, the drawing some components will have the omission, enlargement or reduction, and does not represent the size of actual product; for the technical personnel of the prior art, some well-known structure and its explanation in the drawing can be omitted and understood.
[0058] The same or similar reference numerals in the drawings of the embodiments of the utility model correspond to the same or similar components; in the description of the utility model, it is understood that if the orientation or position relationship indicated by the terms "upper", "lower", "left", "right" etc. is based on the orientation or position relationship shown in the drawing, only for the convenience of describing the utility model and simplifying the description, and does not indicate or imply that the indicated device or element must have a particular orientation, a particular orientation and operation, therefore the position relationship description term in the drawing is only used for example explanation, and cannot be understood as the restriction to this patent, for the ordinary skilled person in the art, the specific meaning of the above-mentioned terms can be understood according to the specific situation.
[0059] Embodiment 1
[0060] As Figs. 1 to 4 It is the first embodiment of the utility model of long dragon type cleaning machine, including
[0061] Cleaning device 1 is used to spray water cleaning to the cleaning object;
[0062] Water path module 2, water path module 2 is used to supply water to cleaning device 1;
[0063] Water treatment system 3, water treatment system 3 includes water treatment tank 31 for making water into weakly alkaline magnetized water, and micro-nano bubble generator 32;The water inlet end of water treatment tank 31 can be externally connected to the water source, the output end of water treatment tank 31 is communicated with the input end of water path module 2, the input end of micro-nano bubble generator 32 is communicated with the output end of water treatment tank 31 or water path module 2, and the output end of micro-nano bubble generator 32 is communicated with water path module 2.
[0064] Through this setting mode, water treatment system 3 accesses external water source, and weakly alkalizes and magnetizes external water source, improves the dissolution capacity of water body to dirt such as oil stains, and sends the treated water body to water path module 2, micro-nano bubble generator 32 generates micro-nano bubbles by using weakly alkalized magnetic water and sends the micro-nano bubbles into water path module 2, so that the water body contains a large number of micro-nano bubbles;When it is necessary to clean the cleaning object, the cleaning object is placed in cleaning device 1, water path module 2 supplies weakly alkaline magnetized water containing micro-nano bubbles to cleaning device 1, and the cleaning object is washed. Micro-nano bubble generator 32 can extract weakly alkaline magnetized water treated by water treatment tank 31 to generate water body containing micro-nano bubbles;The water body is magnetized when passing through magnetizer 312, the hydrogen bond grid between water molecules is weakened, the surface tension of water is reduced, and since the surface tension of the water body is reduced after magnetization, it is easier to generate small-sized bubbles, the concentration of micro-nano bubbles in the water body is increased, and the cleaning effect of the water body is improved: micro-nano bubbles can generate free radicals without external stimulation. When the micro-nano bubbles shrink, the charge density of the double electric layer increases rapidly, and when the bubbles burst, the energy of the high-concentration positive and negative ions accumulated on the interface is released due to the violent change of the disappearance of the gas-liquid interface, at this time, a large number of hydroxyl radicals are excited to generate, thereby improving the activity of the water, which is beneficial to improve the cleaning effect of the water body;And the jet flow generated when the bubble bursts forms a physical impact on the dirt on the surface of the object, so that the dirt such as oil stains which is difficult to dissolve in water becomes small droplets, which is easy to form emulsification effect with the water body, thereby realizing high-quality cleaning effect without adding cleaning agent.
[0065] As an embodiment of the utility model, the diameter of the bubbles contained in the water body output by micro-nano bubble generator 32 is 50nm-1000nm.
[0066] As an embodiment of the utility model, water treatment tank 31 includes a plurality of weakly alkalization pipes 311, a magnetizer 312 and a first ozone generator 313, the plurality of weakly alkalization pipes 311, the magnetizer 312 and the first ozone generator 313 are communicated in sequence, the water inlet end of weakly alkalization pipe 311 can be externally connected to the water source, and the water outlet end of first ozone generator 313 is communicated with water path module 2.
[0067] Through the setting mode, the main role of the weak alkalization pipe 311 is to make the water weak alkaline, and the main role of the magnetizer 312 is to magnetize the water to form small molecular group water. In the process of passing through the weak alkalization pipe 311 and the magnetizer 312, the dipole of the water molecules cannot be offset in the dipole moment of the two H-O bonds, the positive and negative charge centers are not coincident, and the whole molecule has high polarity. By using the polarity of the water molecules and the positive and negative electricity of the oil stains to form the principle of attraction, the water molecules can easily wrap and take away the oil stains, so that the purpose of cleaning the stains without cleaning agent is achieved. The magnetization program is arranged after the weak alkalization program, so that the water obtained at the use end where water is needed is small molecular group water as small as possible. On the one hand, in the process of cleaning the stains, the water has stronger permeability, can better wrap the stains, and then clean them; on the other hand, the smaller the small molecular group water is, the easier it is to evaporate, and the flushed object is less likely to hang water droplets, and the object is easier to dry, so that the purpose of natural drying without drying agent and other drying means is achieved. In addition, the second ozone generator 33 mainly plays two roles. First, sterilization and disinfection. In some application scenarios with disinfection requirements, there are relevant detection standards requirements. Ozone is added to meet the relevant disinfection and sterilization requirements. Second, ozone is a strong oxidizing agent and has a certain stain removal ability. In the cleaning process, small molecular group water can better work together to remove stains.
[0068] As an embodiment of the utility model, the weak alkalization pipe 311 is used for adjusting the pH value of the external water body to 8.0-9.0.
[0069] As an embodiment of the utility model, the magnetizer 312 includes a first pipe with magnetic conductivity, a magnet arranged on the first pipe to form a magnetic field in the region of the first pipe, and the first pipe has a water inlet and a water outlet. The magnet includes at least one magnet group arranged in the axial direction of the first pipe, each magnet group includes two magnets, the magnets are fixedly arranged on the outer surface of the first pipe, and the unlike poles of the two magnets face each other. The magnetic field magnetic force parameter between the two magnets is 5000-6000 Gauss.
[0070] As an embodiment of the utility model, the magnet group is provided with a plurality of magnet groups, and the arrangement forms of adjacent magnet groups are perpendicular to each other in the orthographic projection in the axial direction of the first pipe. The purpose of the vertical arrangement is to magnetize the water on each surface when the water flows through the pipe.
[0071] As an embodiment of the utility model, the water treatment system 3 further includes a second ozone generator 33, and the output end of the second ozone generator 33 is in communication with the input end of the micro-nano bubble generator 32.
[0072] Through the arrangement, the micro-nano bubble generator 32 can generate micro-nano bubbles containing ozone by using the ozone output by the second ozone generator 33, thereby increasing the ozone solubility in unit water body and further improving the disinfection and sterilization effect of the water body.
[0073] As an embodiment of the present application, the cleaning device 1 comprises a first cleaning module 11, a second cleaning module 12 and a conveying module 13, the conveying module 13 is sequentially arranged in the first cleaning module 11 and the second cleaning module 12, the first cleaning module 11 is used for main washing of the cleaning object, the second cleaning module 12 is used for rinsing of the cleaning object, and the water inlet ends of the first cleaning module 11 and the second cleaning module 12 are respectively communicated with the water outlet end of the waterway module 2.
[0074] As an embodiment of the present application, the waterway module 2 comprises a first water tank 21, a first water pump 22, a second water tank 23, a second water pump 24, a first drain pipe 25 and a second drain pipe 26, the first water tank 21 is arranged at the bottom of the first cleaning module 11 and is communicated with the inside of the first cleaning module 11, the first water tank 21 is communicated with the water inlet end of the first cleaning module 11 through the first water pump 22; the second water tank 23 is communicated with the water inlet end of the second cleaning module 12 through the second water pump 24, the first drain pipe 25 is arranged in the first water tank 21, the second drain pipe 26 is arranged at the bottom of the second cleaning module 12, and the output end of the micro-nano bubble generator 32 is communicated with the first water tank 21.
[0075] Through the arrangement, the water treated by the water treatment system 3 is respectively sent to the first water tank 21 and the second water tank 23, the water in the first water tank 21 is sent to the first nozzle 112 by the first water pump 22 for main washing, the water flow after main washing falls into the bottom of the first cleaning bin 111 and is returned to the first water tank 21 for recycling, and the bubbles generated by the micro-nano bubble generator 32 are sent into the first water tank 21 to participate in the main washing, so that the more stubborn dirt is removed in the main washing stage. The dirty water in the first water tank 21 can be discharged through the first drain pipe 25 after the main washing is completed; the water in the second water tank 23 is pumped to the second nozzle 122 by the second water pump 24 for rinsing, and the water after rinsing falls below the second cleaning bin 121 and is sent out through the second drain pipe 26.
[0076] As an embodiment of the present application, when the input end of the micro-nano bubble generator 32 is communicated with the first water tank 21, because the water pressure in the first water tank 21 is smaller than that of the output end of the first ozone generator 313, the water body with smaller water pressure can generate more micro-nano bubbles, thereby increasing the micro-nano bubble concentration in the water body output by the micro-nano bubble generator 32.
[0077] As an embodiment of the utility model, bubble generator includes self priming pump and mixing bin, the output end of second ozone generator 33 and the output end of first water tank 21 are communicated with the input end of mixing bin respectively, and the self priming pump is used to generate negative pressure to make water flow from first water tank 21 to mixing bin, and the output end of mixing bin is communicated with first water tank 21.
[0078] Through this setting mode, the self priming pump generates negative pressure to attract water in first water tank 21 to flow to the mixing bin, and the water in the mixing bin is repeatedly sheared and broken by high-speed rotation, hydraulic shear and other modes, and the visible bubbles are cut into micro-nano bubbles, and the ozone gas is introduced into the mixing bin, so that the micro-nano bubbles wrap the ozone gas, thereby forming water body rich in ozone and being delivered to first water tank 21, and the improvement of ozone content is beneficial to improve the sterilization effect of ozone, thereby improving the cleaning effect of water body.
[0079] As an embodiment of the utility model, the water treatment system 3 further includes at least two groups of heating assemblies 34, and the at least two groups of heating assemblies 34 are respectively fixed and arranged in first water tank 21 and second water tank 23.
[0080] Through this setting mode, the heating assembly 34 can heat the water body in first water tank 21 and second water tank 23, thereby improving the dissolving capacity of water body to dirt and improving the cleaning effect of the cleaning machine, which is beneficial to reduce the cleaning time and improve the cleaning efficiency.
[0081] As an embodiment of the utility model, the top of first drain pipe 25 is provided with an overflow port, the bottom of first water tank 21 is provided with a drain port, and first drain pipe 25 is inserted into first drain port. Through this setting mode, when main washing is performed, the water treatment system 3 continuously supplies clean water body into first water tank 21, and the water body carrying oil stains after main washing is backflowed to first water tank 21 from first cleaning bin 111, and the oil stains float on the upper layer of water level in first water tank 21, and as the water treatment system 3 continuously supplies water, the water level rises to the overflow port, and the oil stains on the top layer are discharged from the overflow port, thereby continuously purifying the recycled water body and improving the effect of cycle cleaning.
[0082] As an embodiment of the utility model, the cleaning device 1 further includes a feeding module 14 and a discharging module 15, and the conveying module 13 is sequentially arranged in the feeding module 14, the first cleaning module 11, the second cleaning module 12 and the discharging module 15.
[0083] Embodiment 2
[0084] The following is a second embodiment of the long dragon type cleaning machine, which is similar to the first embodiment, and the difference is that the first cleaning module 11 and the second cleaning module 12 are further limited.
[0085] As an embodiment of the utility model, the first cleaning module 11 is provided with a first cleaning bin 111 and at least two groups of first spray heads 112, and the at least two groups of first spray heads 112 are respectively arranged at the top and the bottom of the first cleaning bin 111, and the water inlet of the first spray head 112 is communicated with the output end of the first water pump 22, and the conveying module 13 is arranged in the first cleaning bin 111.
[0086] Through this setting mode, with the working of the conveying module 13, the cleaning object is sent into the first cleaning bin 111, and the first spray head 112 in the first cleaning bin 111 sprays water from the top and the bottom to wash the cleaning object on the conveying module 13, which ensures that the washing range covers the whole cleaning object, improves the cleaning effect, and the second cleaning bin 121 forms an isolation space to avoid water splashing during washing and polluting the external environment.
[0087] As an embodiment of the utility model, the second cleaning module 12 includes a second cleaning bin 121, at least two groups of second spray heads 122 and a drying assembly 123, the at least two groups of second spray heads 122 are respectively arranged at the top and the bottom of the second cleaning bin 121, the water inlet end of the second spray head 122 is communicated with the water outlet end of the second water pump 24, the drying assembly 123 is arranged above the second cleaning bin 121, and the conveying module 13 is arranged in the second cleaning bin 121.
[0088] Through this setting mode, when the cleaning object is sent into the second cleaning bin 121 by the conveying module 13, the second spray head 122 works to spray clean water to rinse the cleaning object, ensuring that there is no pollution residue on the cleaning object, and after the rinsing time is over, the second spray head 122 stops working, and the drying assembly 123 starts working to input a large amount of hot air into the second cleaning bin 121 to quickly dry the cleaning object, and then the conveying module 13 sends out the cleaning object.
[0089] As an embodiment of the utility model, the first cleaning bin 111 and the second cleaning bin 121 are both provided with an outlet and an inlet for the conveying module 13 to pass through, and a water curtain is arranged at the outlet and the inlet. Through this setting mode, when the first cleaning module 11 and the second cleaning module 12 work, the water used for cleaning in the first cleaning bin 111 or the second cleaning bin 121 can be prevented from splashing out.
[0090] As an embodiment of the utility model, drying assembly 123 includes air blowing mechanism 1231 and heat pipe 1232, the output end and the input end of heat pipe 1232 are all communicated with the outside, air blowing mechanism 1231 is arranged on the top of second cleaning bin 121, the top of second cleaning bin 121 is hollowed out, and heat pipe 1232 is arranged between air blowing mechanism 1231 and second cleaning bin 121.
[0091] Through the setting mode, heat pipe 1232 can be connected with external temperature adjusting device and input hot water of different temperatures, heat pipe 1232 passes between air blowing mechanism 1231 and second cleaning bin 121, when air blowing mechanism 1231 works, flowing gas passes through heat pipe 1232, enters second cleaning bin 121 after obtaining heat, thereby the cleaning object in second cleaning bin 121 is quickly dried, and the temperature of hot air can be adjusted by adjusting the temperature of water in heat pipe 1232.
[0092] Example 3
[0093] The following is the third embodiment of the utility model long dragon type cleaning machine, and the embodiment is similar to example 1, and the difference lies in that the feeding module 14 and the conveying module 13 are further limited.
[0094] As an embodiment of the utility model, the top of feeding module 14 is open, the starting section of conveying module 13 is arranged on the top of feeding module 14, the bottom of feeding module 14 is provided with funnel structure guide part 141 and dirt collecting disc 142, and dirt collecting disc 142 is arranged below guide part 141 and detachably connected with feeding module 14.
[0095] Through the setting mode, the user can place the cleaning object on the conveying module 13 at the feeding module 14, at this time, the cleaning object has been pre-washed and soaked, but there may still be some fluid stains such as oil stains on it, which will flow down naturally during the placement process, at this time, guide part 141 can collect the dirty and guide it into dirt collecting disc 142, when dirt collecting disc 142 is full, the user can take out dirt collecting disc 142 for cleaning, thereby reducing the cleaning and maintenance steps.
[0096] As an embodiment of the utility model, conveying module 13 includes driving motor 131, driving wheel 132, driven wheel 133 and drainage conveying belt 134, driving motor 131 is arranged on the bottom of discharging module 15, driving motor 131 is connected with driving wheel 132, driving wheel 132 is rotatably arranged on discharging module 15, driven wheel 133 is rotatably arranged on feeding module 14, and drainage conveying belt 134 is sleeved on driving wheel 132 and driven wheel 133 and forms an annular structure.
[0097] Through the setting mode, the driving motor 131 drives the driving wheel 132 to rotate, the driving wheel 132 drives the drainage conveying belt 134 to move, and the cleaning object placed on the drainage conveying belt 134 sequentially passes through the feeding module 14, the first cleaning module 11, the second cleaning module 12 and the discharging module 15 along with the drainage conveying belt 134.
[0098] As an embodiment of the present application, the middle part of the annular drainage conveying belt 134 is hollow, the first spray head 112 at the bottom of the first cleaning chamber 111 and the second spray head 122 at the bottom of the second cleaning chamber 121 are arranged in the cavity.
[0099] Through the setting mode, the first spray head 112 and the second spray head 122 are not blocked by the conveying belt, so that the cleaning effect is improved.
[0100] As an embodiment of the present application, the drainage conveying belt 134 is hollow, and a plurality of protrusions for limiting the cleaning object are arranged on the drainage conveying belt 134.
[0101] Through the setting mode, the cleaning object can be limited, and the cleaning object is prevented from sliding off the drainage conveying belt 134 during transportation or cleaning.
[0102] Obviously, the above embodiments of the present application are only examples for clearly illustrating the present application, and are not a limitation on the embodiments of the present application. Based on the above description, other different forms of changes or variations can be made by those skilled in the art. Here, it is not necessary and impossible to enumerate all the embodiments. Any modification, equivalent replacement and improvement made within the spirit and principle of the present application shall be included in the protection scope of the claims of the present application.
Claims
1. A serpentine type cleaning machine characterized by, The utility model relates to a cleaning device (1) for water spray cleaning of cleaning objects, a water path module (2) for water supply to the cleaning device (1), and a water treatment system (3) comprising a water treatment tank (31) for making water into weakly alkaline magnetized water and a micro-nano bubble generator (32). The water treatment tank (31) comprises a plurality of weak alkalization pipes (311), a magnetizer (312), and a first ozone generator (313) that are sequentially connected, the water inlet end of the weak alkalization pipe (311) is externally connected to a water source, and the water outlet end of the first ozone generator (313) is connected to the water path module (2). The water treatment system (3) further comprises a second ozone generator (33) whose output end is connected to the input end of the micro-nano bubble generator (32). The cleaning device (1) comprises a first cleaning module (11), a second cleaning module (12), and a conveying module (13) that are sequentially arranged, the first cleaning module (11) is used for main washing of cleaning objects, the second cleaning module (12) is used for rinsing of cleaning objects, and the water inlet ends of the first cleaning module (11) and the second cleaning module (12) are respectively connected to the water outlet end of the water path module (2).
2. The serpentine conveyor of claim 1, wherein, The water path module (2) comprises a first water tank (21), a first water pump (22), a second water tank (23), a second water pump (24), a first drain pipe (25), and a second drain pipe (26), the first water tank (21) is arranged at the bottom of the first cleaning module (11) and is connected to the inside of the first cleaning module (11), the first water tank (21) is connected to the water inlet end of the first cleaning module (11) through the first water pump (22), the second water tank (23) is connected to the water inlet end of the second cleaning module (12) through the second water pump (24), the first drain pipe (25) is arranged in the first water tank (21), the second drain pipe (26) is arranged at the bottom of the second cleaning module (12), and the output end of the micro-nano bubble generator (32) is connected to the first water tank (21).
3. The serpentine conveyor of claim 1, wherein, The water treatment system (3) further comprises at least two groups of heating components (34) that are respectively arranged in the first water tank (21) and the second water tank (23).
4. The serpentine conveyor according to any one of claims 1 to 3, characterized in that 5. The serpentine conveyor of claim 4, wherein, 6. The serpentine conveyor of claim 5, wherein, 7. The serpentine conveyor of claim 5, wherein, The first cleaning module (11) is provided with a first cleaning bin (111) and at least two groups of first spray heads (112), the at least two groups of first spray heads (112) are respectively arranged at the top and the bottom in the first cleaning bin (111), the water inlets of the first spray heads (112) are communicated with the output end of the first water pump (22), and the conveying module (13) is arranged in the first cleaning bin (111).
8. The serpentine conveyor of claim 5, wherein, The second cleaning module (12) comprises a second cleaning bin (121), at least two groups of second spray heads (122) and a drying assembly (123), the at least two groups of second spray heads (122) are respectively arranged at the top and the bottom in the second cleaning bin (121), the water inlets of the second spray heads (122) are communicated with the water outlet of the second water pump (24), the drying assembly (123) is arranged above the second cleaning bin (121), and the conveying module (13) is arranged in the second cleaning bin (121).
9. The serpentine conveyor of claim 8, wherein, The drying assembly (123) comprises a blowing mechanism (1231) and a heat conducting pipe (1232), the output end and the input end of the heat conducting pipe (1232) are communicated with the outside, the blowing mechanism (1231) is arranged above the second cleaning bin (121), the top of the second cleaning bin (121) is hollow, and the heat conducting pipe (1232) is arranged between the blowing mechanism (1231) and the second cleaning bin (121).
10. The serpentine conveyor of claim 4, wherein, The cleaning device (1) further comprises a feeding module (14) and a discharging module (15), and the conveying module (13) is sequentially arranged in the feeding module (14), the first cleaning module (11), the second cleaning module (12) and the discharging module (15).