CN211770599U - Integrated water route board and water purification unit - Google Patents

Integrated water route board and water purification unit Download PDF

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Publication number
CN211770599U
CN211770599U CN201922180257.0U CN201922180257U CN211770599U CN 211770599 U CN211770599 U CN 211770599U CN 201922180257 U CN201922180257 U CN 201922180257U CN 211770599 U CN211770599 U CN 211770599U
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water
interface
filter element
integrated
control device
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CN201922180257.0U
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朱泽春
任汪洋
宋斌
朱圣福
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Hangzhou Jiuchuang Home Appliances Co ltd
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Joyoung Co Ltd
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Abstract

The application discloses an integrated water channel plate and water purification equipment, wherein a water flow channel is formed inside the integrated water channel plate, and a filter element mounting area and a control area are arranged on the integrated water channel plate along the length direction; the filter element mounting area is provided with at least one group of filter element interfaces communicated with the water flow channel; one side in control area is provided with the interface of intaking and the interface of going out water that communicates with rivers passageway, and the opposite side is provided with detection control device mounting structure, and detection control device mounting structure and filter core interface are located same one side of integrated water route board. The utility model provides a filter core installing zone and control area are handled filter core subassembly installation and detection control device installation subregion, avoid water and electricity contact, simplify the water route overall arrangement, reduce the risk of leaking that the pipe connection brought, detect that control device perfects the water purification function, guarantee that the output of water purification effect and water is smooth, and simple structure is compact, saves installation space, it occupies to reduce kitchen space, reduces the dismouting degree of difficulty, practice thrift and maintain cost of maintenance, satisfy user demand, promote user experience.

Description

Integrated water route board and water purification unit
Technical Field
The application belongs to the technical field of water purification unit, especially relates to an integrated water route board and water purification unit.
Background
Along with the aggravation of environmental pollution and the improvement of living standard of people, water purification products are more and more concerned by consumers as health products, the water purification market is rapidly increased, and the water purification products are more and more popularized.
In the prior art, a water purification product usually comprises a multi-stage filtration filter element, a PE (Polyethylene) pipeline is mostly adopted between the filter elements to connect a water channel, the layout of the water channel pipeline is complex, the occupied space is large, the assembly and disassembly difficulty is large, the problem of water leakage is easily caused due to the improper installation of a joint, functional accessories such as a water inlet electromagnetic valve and a wastewater electromagnetic valve are difficult to fix when being installed on the water channel, and great inconvenience is brought to the installation and the maintenance; and the structure is not compact, leads to the whole volume of water purification product great, and the structure is complicated, and the installation is limited easily, influences user experience. In recent years, an integrated water circuit board has become an industry trend, and many water purification products begin to use the integrated water circuit board, but the integrated water circuit board often causes water leakage due to poor welding, and the position of the water leakage is difficult to detect; the integrated water route board in addition leads to integrated water route plate volume great because the water route overall arrangement is not good, and then makes water purification product volume great, and occupation space is great, influences user experience.
The above description is included in the technical recognition scope of the inventors, and does not necessarily constitute the prior art.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem, the purpose of this application is to provide an integrated water route board and water purification unit, reduces the risk of leaking that the tube coupling brought, perfects the water purification function, guarantees the water purification effect, simplifies the water route overall arrangement, and simple structure is compact, saves installation space, reduces kitchen space and occupies, reduces the dismouting degree of difficulty, practices thrift and maintains cost of maintenance, fully provided user's demand, promotes user experience.
In order to achieve the above object, in one aspect, the present application provides an integrated waterway plate, in which a water flow channel is formed, and the integrated waterway plate is characterized in that a filter element installation region and a control region are arranged along a length direction; the filter element mounting area is provided with at least one group of filter element interfaces communicated with the water flow channel; one side of control area be provided with water inlet interface and the play water interface of rivers passageway intercommunication, the opposite side is provided with detection control device mounting structure, detection control device mounting structure with the filter core interface is located same one side of integrated water route board.
In one example, the water inlet interface and the water outlet interface are arranged in the middle of the control area, and the water inlet interface and the water outlet interface are perpendicular to the plate body of the integrated water circuit board.
In one example, the filter element interface comprises a primary filter element interface and a reverse osmosis filter element interface which are arranged at intervals along the length direction of the integrated water circuit board, the primary filter element interface comprises a primary filter element inlet and a primary filter element outlet, the reverse osmosis filter element interface comprises a reverse osmosis inlet, a reverse osmosis outlet and a reverse osmosis waste water inlet, and the reverse osmosis inlet is communicated with the primary filter element outlet; the water outlet interface comprises a water purifying interface, a pure water interface and a waste water interface.
In one example, detection control device mounting structure includes raw water TDS probe mounting port and pure water TDS probe mounting port, raw water TDS probe mounting port is located the filtration rear end of one-level filter core export, pure water TDS probe mounting port is located the filtration rear end of reverse osmosis export.
In one example, the detection control device mounting structure further comprises a water inlet valve interface and a waste water valve interface, wherein the water inlet valve interface and the waste water valve interface are arranged at two ends of the control area at intervals along the width direction of the integrated circuit board; and in the area defined by the raw water TDS probe mounting port, the pure water TDS probe mounting port, the water inlet valve interface and the waste water valve interface, the raw water TDS probe mounting port and the pure water TDS probe mounting port as well as the water inlet valve interface and the waste water valve interface are arranged in a crossed and opposite angle mode.
In one example, the detection control device mounting structure further comprises a temperature detection member mounting port located between the primary filter cartridge interface and the reverse osmosis filter cartridge interface.
In one example, the detection control device mounting structure further comprises a check valve interface arranged at one end of the control area, wherein the check valve interface comprises a check valve water inlet and a check valve water outlet which are arranged at intervals.
In one example, the detection control device mounting structure further comprises a high-voltage switch mounting port located between the check valve mounting structure and the pure water interface.
In one example, the detection control device mounting structure further includes a booster pump interface including a pump water inlet and a pump water outlet, and the pump water inlet and the pump water outlet are respectively adjacent to both ends of a diagonal line of the control region.
On the other hand, this application has still provided a water purification unit, water purification unit includes filter element group spare, detects controlling means and above-mentioned any integrated water route board.
Through an integrated water route board and water purification unit that this application provided can bring following beneficial effect:
1. the filter element assembly and the detection control device can be integrally installed on the integrated water circuit board, the water channel is connected through the water flow channel inside the integrated water circuit board, a PE pipe is not needed to be used for connecting the water channel, the complexity of connecting the water channel through the PE pipe is solved, and the water leakage risk caused by pipeline connection is greatly reduced; the detection control device is additionally arranged in the limited installation space, so that the detection and control of the water purification process are realized, the integral water purification function of the water purification equipment is perfected, and the water purification effect of the water purification equipment and the smooth output of water are ensured; the filter element mounting area and the control area carry out regional processing on the installation of the filter element assembly and the electrical installation, water and electricity contact is avoided, the mounting structure of the detection control device and the filter element interface are positioned at the same side of the integrated water circuit board, the influence on the installation and the disassembly of the filter element assembly and the detection control device when the water inlet interface and the water outlet interface are connected with a pipeline is avoided, the filter element assembly and the detection control device are arranged regularly when being mounted on the integrated water circuit board, the mounting of the detection control device is optimized, the problem of difficult mounting of each detection control device is solved, the water path layout is simplified, the mounting structure is simple, reasonable and compact, and the volume of, and then reduce water purification unit's volume, save installation space, reduce the kitchen space and occupy, reduce the dismouting degree of difficulty, practice thrift and maintain cost of maintenance, satisfy more installation environment, the fully provided user demand effectively promotes user experience.
2. The first-stage filter element can protect and prolong the service life of the reverse osmosis filter element, reduce the use cost of the reverse osmosis filter element, can be used for activities such as rice washing, vegetable washing, cooking, pot brushing, dish washing and the like, has an unlimited use range, and meets most of water requirements of common families; but also can realize large-flux water purification, meet the flux requirement of users and reduce the use cost; the water purification effect of reverse osmosis filter core is better, effectively promotes quality of water, and the protection user is healthy, fully provided user's demand, user experience is better.
3. Raw water TDS probe installing port and pure water TDS probe installing port are used for installing raw water TDS probe and pure water TDS probe respectively, can make the quality of water situation of raw water and the quality of water effect after purifying reach visual, guarantee water purification unit's water purification effect, and convenience of customers knows, promotes user experience.
4. Can avoid with raw water TDS probe, the pure water TDS probe, the integrated concentrated installation of inlet solenoid valve and waste water solenoid valve produces the interference influence each other on integrated water route board, the rule of neatly discharging, reduce the dismouting degree of difficulty, practice thrift and maintain cost of maintenance, and rational utilization installation space, optimize the installation that detects the control device, the simple reasonable compactness of mounting structure, be favorable to reducing the volume of integrated water route board, and then reduce water purification unit's volume, save installation space, it occupies to reduce kitchen space, satisfy more installation environment, fully provided user demand, user experience is better.
5. The temperature detection part mounting port is positioned between the first-stage filter element interface and the reverse osmosis filter element interface, so that the temperature at the first-stage filter element and the reverse osmosis filter element can be conveniently detected, the temperature detection structure is more accurate, and the water quality detection result is improved; and the installation space is reasonably utilized, the arrangement is neat and regular, the disassembly and assembly difficulty is reduced, the maintenance cost is saved, the installation is simple and compact, the volume of the integrated water circuit board is reduced, the volume of the water purifying equipment is reduced, the installation space is saved, the occupied kitchen space is reduced, and the user experience is better.
6. The check valve is installed in the one end of control area, and rational utilization installation space optimizes the installation that detects the control device, and the rule is neat in emission, reduces the dismouting degree of difficulty, practices thrift and maintains cost of maintenance, and mounting structure is simple reasonable compact, is favorable to reducing the volume of integrated water route board, and then reduces water purification unit's volume, saves installation space, reduces the kitchen space and occupies, and user experience is better.
7. The booster pump passes through the pump water inlet and the pump outlet can the cross-over connection on the water route integrated board, can let out the installation space that detects control device such as water inlet solenoid valve, the waste water solenoid valve, the check valve, high-pressure switch, optimize the installation that detects control device, the rational utilization installation space, discharge neatly rule, reduce the dismouting degree of difficulty, practice thrift and maintain the cost, the simple reasonable compactness of mounting structure is favorable to reducing the volume of integrated water route board, and then reduce water purification unit's volume, save installation space, it occupies to reduce the kitchen space, user experience is better.
Drawings
The accompanying drawings, which are included to provide a further understanding of the application and are incorporated in and constitute a part of this application, illustrate embodiment(s) of the application and together with the description serve to explain the application and not to limit the application. In the drawings:
fig. 1 is a schematic perspective view of an integrated waterway plate according to an embodiment of the present application;
FIG. 2 is a top view of an integrated circuit board according to an embodiment of the present disclosure;
fig. 3 is a schematic perspective view of a first plate according to an embodiment of the present disclosure;
fig. 4 is a top view of a first plate provided in an embodiment of the present application;
fig. 5 is a schematic perspective view of a front view of a second plate according to an embodiment of the present disclosure;
fig. 6 is a schematic perspective view of a rear view of a second board according to an embodiment of the present disclosure;
FIG. 7 is a schematic view of an integrated circuit board and cartridge mounting block assembly provided in accordance with an embodiment of the present disclosure;
FIG. 8 is a schematic view of an integrated circuit board and test control device assembly provided in accordance with an embodiment of the present disclosure;
fig. 9 is a partial cross-sectional view of an integrated circuit board and test control device assembly provided in an embodiment of the present application.
Detailed Description
In order to more clearly explain the overall concept of the present application, the following detailed description is given by way of example in conjunction with the accompanying drawings.
In the description of the present application, it is to be understood that the terms "central," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "axial," "radial," "circumferential," and the like are used in the orientation or positional relationship indicated in the drawings for convenience in describing the present application and for simplicity in description, and are not intended to indicate or imply that the referenced device or element must have a particular orientation, be constructed and operated in a particular orientation, and are therefore not to be construed as limiting the present invention.
Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present application, "a plurality" means two or more unless specifically limited otherwise.
In this application, unless expressly stated or limited otherwise, the terms "mounted," "connected," "secured," and the like are to be construed broadly and can include, for example, fixed connections, removable connections, or integral parts; the connection can be mechanical connection, electrical connection or communication; either directly or indirectly through intervening media, either internally or in any other relationship. The specific meaning of the above terms in the present application can be understood by those of ordinary skill in the art as appropriate.
In this application, unless expressly stated or limited otherwise, the first feature "on" or "under" the second feature may be directly contacting the first and second features or indirectly contacting the first and second features through intervening media. In the description herein, references to the description of the terms "an aspect," "some aspects," "an example," "a specific example," or "some examples" or the like mean that a particular feature, structure, material, or characteristic described in connection with the aspect or example is included in at least one aspect or example of the application. In this specification, the schematic representations of the terms used above do not necessarily refer to the same solution or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more aspects or examples.
In fig. 4, solid arrow thick solid lines indicate the flow direction of the raw water waterway, solid arrow thin solid lines indicate the flow direction of the pure water waterway, solid arrow thin broken lines indicate the flow direction of the overflowing waterway, hollow arrow thin solid lines indicate the flow direction of the pure water waterway, hollow arrow thin broken lines indicate the flow direction of the wastewater waterway, and hollow arrow thick solid lines indicate the flow direction of the pressurizing waterway.
As shown in fig. 1 to 9, an embodiment of the present invention provides an integrated waterway plate 100, in which a water flow channel 1 is formed, and a filter element installation region 101 and a control region 102 are provided on the integrated waterway plate 100 along a length direction. The filter element mounting area 101 is provided with at least one group of filter element interfaces 2 communicated with the water flow channel 1, and the filter element interfaces 2 are used for connecting the filter element assemblies; one side of the control area 102 is provided with a water inlet interface 103 and a water outlet interface which are communicated with the water flow channel 1, the other side is provided with a detection control device installation structure 3, the water inlet interface 103 is used for connecting a raw water source, the water outlet interface is used for supplying water to a user, and the detection control device installation structure 3 is used for installing a detection control device. The filter element assembly and the detection control device are integrally and intensively arranged on the integrated water circuit board 100, the water channel is connected through the water flow channel 1 in the integrated water circuit board 100, a PE pipe is not needed to be used for connecting the water channel, the complexity of connecting the water channel by the PE pipe is solved, and the water leakage risk caused by pipeline connection is greatly reduced; the detection control device is additionally arranged in the limited installation space, so that the detection and control of the water purification process are realized, the integral water purification function of the water purification equipment is perfected, and the water purification effect of the water purification equipment and the smooth output of water are ensured; meanwhile, the filter element assembly is installed and electrically installed in a partition mode in the filter element installation area 101 and the control area 102, water and electricity contact is avoided, installation of detection control devices is optimized, the problem that installation of the detection control devices is difficult is solved, the water path layout is simplified, the installation structure is simple, reasonable and compact, the size of the integrated water path board 100 is favorably reduced, the size of water purifying equipment is further reduced, the installation space is saved, the occupation of kitchen space is reduced, the difficulty in assembly and disassembly is reduced, the maintenance cost is saved, more installation environments are met, the user requirements are fully met, and the user experience is effectively improved.
Detect control device mounting structure 3 and filter core interface 2 and be located same one side of integrated water route board 100, interface 103 and play water inlet and filter element group spare and detection control device set up respectively at integrated water route board 100's different sides promptly, influence filter element group spare and detection control device's installation dismantlement when avoiding interface 103 and the interface connection pipeline of intaking, filter element group spare and detection control device discharge neatly rule when installing on integrated water route board 100, and is rational in infrastructure compact, further save installation space, reduce kitchen space and occupy, reduce the dismouting degree of difficulty, practice thrift and maintain the cost of maintenance, user experience is better. In one embodiment, the filter cartridge assembly comprises a filter cartridge and a filter cartridge mounting seat 201, the filter cartridge mounting seat 201 is mounted on the integrated water channel plate 100 and is connected with the filter cartridge interface 2 in a sealing way; the filter element is detachably mounted on the filter element mounting seat 201.
Specifically, interface 103 and the play water connectors of intaking set up in the middle part of control area 102, and the integrated water route board 100's of interface 103 and play water connectors of intaking board, interface 103 and play water connectors and tube coupling conveniently intake, and the mounting structure is reasonable, reduces the dismouting degree of difficulty, practices thrift and maintains cost of maintenance, satisfies more installation environment, fully provided user's demand, be favorable to reducing water purification unit's volume, save installation space, it occupies to reduce kitchen space, user experience is better.
Specifically, the filter cartridge interface 2 includes a first-stage filter cartridge interface 21 and a reverse osmosis filter cartridge interface 22 that are arranged at intervals along the length direction of the integrated water circuit board 100, the first-stage filter cartridge interface 21 includes a first-stage filter cartridge inlet 211 and a first-stage filter cartridge outlet 212, and the first-stage filter cartridge interface 21 is used for connecting a first-stage filter cartridge (not shown in the figure); the reverse osmosis filter cartridge interface 22 comprises a reverse osmosis inlet 221, a reverse osmosis outlet 222 and a reverse osmosis waste water outlet 223, and the reverse osmosis filter cartridge interface 22 is used for connecting a reverse osmosis filter cartridge (not shown in the figure). The water outlet interface comprises a water purification interface 104, a pure water interface 105 and a wastewater interface 106, and the water flow channel 1 comprises a raw water waterway 11, a pure water waterway 12, a pure water waterway 13, an overflowing waterway 14 and a wastewater waterway 15; the two ends of the raw water waterway 11 are respectively communicated with the water inlet interface 103 and the first-stage filter element inlet 211, the two ends of the purified water waterway 12 are respectively communicated with the first-stage filter element outlet 212 and the purified water interface 104, the two ends of the purified water waterway 13 are respectively communicated with the reverse osmosis outlet 222 and the purified water interface 105, the two ends of the overflowing waterway 14 are respectively communicated with the first-stage filter element outlet 212 and the reverse osmosis inlet 221, and the two ends of the wastewater waterway 15 are respectively communicated with the reverse osmosis wastewater outlet 223 and the wastewater interface 106.
The primary filter element may include a plurality of different types of filter elements, for example, a PP cotton (Polypropylene fiber) filter element, which mainly filters large particulate impurities such as silt and rust in water; or a composite filter element consisting of PP cotton and active carbon (such as sintered carbon or carbon fiber and the like), can filter large-particle impurities, and can adsorb residual chlorine, abnormal color and peculiar smell, trichloromethane, carbon tetrachloride, organic matters and the like; the first-stage filter element plays a role in first-stage coarse filtration, can be used for pretreating the inlet water of the reverse osmosis filter element, can protect and prolong the service life of the reverse osmosis filter element, and reduces the use cost of the reverse osmosis filter element; the user can also use the purified water generated by the first-stage filter element to perform activities such as rice washing, vegetable washing, cooking, pot brushing, dish washing and the like, the application range is not limited, and most of water requirements of common families are met; but also can realize large-flux water purification, meet the flux requirements of users and reduce the use cost. The Reverse Osmosis filter element is an RO (Reverse Osmosis) membrane filter element which is provided with a filter membrane with micropores with the pore diameter of only 0.0001 micron and can filter bacteria, water alkali scale and heavy metal ions such as lead, cadmium, chromium (hexavalent chromium), arsenic and the like in water; the reverse osmosis filter element has the further fine filtration function, has better water purification effect and is used for producing pure water suitable for direct drinking. Can realize at least second grade filtration through one-level filter core and reverse osmosis filter core, the water purification effect is better, effectively promotes quality of water, and the protection user is healthy, and the fully provided user demand, user experience are better.
When in use, as shown in fig. 4, raw water firstly enters the raw water waterway 11 through the water inlet interface 103, flows to the inlet 211 of the primary filter element, and then enters the interior of the primary filter element. The purified water purified by the primary filter element is divided into two paths at a primary filter element outlet 212, one path of the purified water enters the purified water path 12 and flows to the water purification interface 104 to be output to water purification equipment for users to use, and the users can use the purified water to wash rice, vegetables and dishes and wash dishes; the other path of purified water enters the overflowing water path 14 and flows to the reverse osmosis inlet 221 and then enters the reverse osmosis filter element. Pure water purified by the reverse osmosis filter element flows out of the reverse osmosis outlet 222, enters the pure water waterway 13, flows to the pure water interface 105 and then is output to a pure water device for a user to use, and the pure water can be directly drunk; the wastewater filtered by the reverse osmosis filter element flows out of the reverse osmosis wastewater inlet 223 into the wastewater waterway 15, flows to the wastewater connector 106 and then is output to the water purifying device, and the PE pipe can be used for guiding the wastewater to be discharged to a sewer or collected for mopping or flushing a toilet. In the whole water purification process, raw water, water purification, pure water, waste water flow in the rivers passageway 1 of integrated water route board 100, each water route mutual independence, mutual nonintersecting, rivers passageway 1 is rationally distributed, and simple structure is compact, reduces the volume of integrated water route board 100, saves installation space, reduces kitchen space and occupies, satisfies more installation environment, fully provided user's demand, user experience is better.
In one embodiment, the water inlet interface 103 is designed with 3/8 taps, and the water purification interface 104, the pure water interface 105 and the wastewater interface 106 are designed with 1/4 taps, so as to satisfy the use of the integrated water circuit board 100 in the large-flux reverse osmosis water purification device.
Specifically, the water inlet interface 103, the water purification interface 104, the pure water interface 105 and the wastewater interface 106 are arranged adjacently, so that the pipelines can be conveniently connected, the arrangement is regular and regular, the structure is reasonable and compact, and the installation space is saved; integrated water route board 100 still has along radial body coupling interface 103 of intaking, water purification interface 104, the mouth of a river strengthening rib 107 of pure water interface 105 and waste water interface 106, can strengthen the intensity of intaking interface 103, water purification interface 104, pure water interface 105 and waste water interface 106, mouth of a river strengthening rib 107 is to the interface 103 of intaking, water purification interface 104, the structure that pure water interface 105 and waste water interface 106 extend all around simultaneously, can play the effect of sheltering from integrated water route board 100 inner structure, the outward appearance is more pleasing to the eye, user experience is better. In one embodiment, the water inlet port 103, the water purification port 104, the pure water port 105, and the wastewater port 106 are sequentially disposed adjacent to each other in a width direction of the integrated waterway plate 100.
Specifically, it includes raw water TDS probe installing port 31 and pure water TDS probe installing port 32 to detect control device mounting structure 3, and raw water TDS probe installing port 31 is located the filtration rear end of one-level filter core export 212, and pure water TDS probe installing port 32 is located the filtration rear end of reverse osmosis export 222. TDS (total dissolved solids) represents the total solids content dissolved in water, with higher TDS values indicating more dissolved material and more impurities in the water. Detect the controlling means and include raw water TDS probe (not shown in the figure) and pure water TDS probe 301, raw water TDS probe installing port 31 is used for installing raw water TDS probe, raw water TDS probe is used for detecting raw water quality of water, pure water TDS probe installing port 32 is used for installing pure water TDS probe 301, pure water TDS probe 301 is used for detecting pure water quality of water, at last through visual data processing, make the quality of water situation of raw water quality and the quality of water effect after purifying reach visual, guarantee water purification unit's water purification effect, convenience of customers knows, promote user experience.
Specifically, the detection control device installation structure 3 further comprises a water inlet valve interface 33 and a waste water valve interface 34, wherein the water inlet valve interface 33 is arranged on the overflowing water path 14 and is used for installing a water inlet electromagnetic valve 302, the water inlet electromagnetic valve 302 is communicated with the overflowing water path 14 when the reverse osmosis filter element works, and the overflowing water path 14 is blocked when the reverse osmosis filter element stops working; the waste water valve interface 34 is arranged on the waste water waterway 15 and used for installing a waste water electromagnetic valve 303; the wastewater electromagnetic valve 303 is automatically opened when the reverse osmosis filter element is flushed so as to improve the wastewater flow, and the RO membrane can be flushed so as to be protected and prolong the service life of the reverse osmosis filter element; the wastewater solenoid valve 303 is closed when the reverse osmosis filter element normally produces water, and the flow of wastewater is controlled through the small hole arranged in the wastewater solenoid valve 303 so as to control the proportion of wastewater and pure water.
The water inlet valve interface 33 and the waste water valve interface 34 are arranged at two ends of the control area 102 at intervals along the width direction of the integrated water channel plate 100, and in an area surrounded by the raw water TDS probe mounting port 31, the pure water TDS probe mounting port 32, the water inlet valve interface 33 and the waste water valve interface 34, the raw water TDS probe mounting port 31 and the pure water TDS probe mounting port 32, and the water inlet valve interface 33 and the waste water valve interface 34 are arranged in a crossed and opposite angle mode. Can avoid with raw water TDS probe, pure water TDS probe 301, the electromagnetic valve 302 and the integrated concentrated installation of waste water solenoid valve 303 produce the interference influence each other when integrated water route board 100 is gone up, the rule of neatly discharging, reduce the dismouting degree of difficulty, practice thrift and maintain cost of maintenance, and rational utilization installation space, optimize the installation that detects the control device, the simple reasonable compactness of mounting structure, be favorable to reducing the volume of integrated water route board 100, and then reduce water purification unit's volume, save installation space, it occupies to reduce kitchen space, satisfy more installation environment, fully provided user demand, user experience is better.
Specifically, the detection control device mounting structure 3 further includes a temperature detection member mounting opening 35 for mounting a temperature detection device (not shown in the drawings), which may be a temperature probe; the temperature has great influence to TDS data, and temperature probe gathers temperature data, can compensate raw water TDS and pure water TDS data for raw water quality of water and pure water quality of water testing result are more accurate. The temperature detection part mounting port 35 is positioned between the first-stage filter element interface 21 and the reverse osmosis filter element interface 22, so that the temperature of the first-stage filter element and the reverse osmosis filter element can be conveniently detected, the temperature detection structure is more accurate, and the water quality detection result is further improved; and the installation space is rationally utilized, the emission is neat and regular, the disassembly and assembly difficulty is reduced, the maintenance and repair cost is saved, the installation is simple and compact, the volume of the integrated water circuit board 100 is favorably reduced, the volume of the water purifying equipment is further reduced, the installation space is saved, the occupation of the kitchen space is reduced, and the user experience is better.
Specifically, the detection control device installation structure 3 further includes a check valve interface 36 disposed at one end of the control area 102, the check valve interface 36 includes a check valve water inlet 361 and a check valve water outlet 362 disposed at an interval for installing a check valve 304, the check valve 304 is a one-way conduction valve, so that water flowing to the pure water interface 105 is prevented from flowing back to the reverse osmosis filter element to pollute the reverse osmosis filter element, and the water purification effect of the water purification apparatus is ensured; and check valve 304 installs in the one end of control area 102, and the rational utilization installation space optimizes the installation that detects the control device, arranges neatly rule, reduces the dismouting degree of difficulty, practices thrift and maintains the cost of maintenance, and mounting structure is simple reasonable compact, is favorable to reducing the volume of integrated water route board 100, and then reduces water purification unit's volume, saves installation space, reduces the kitchen space and occupies, and user experience is better. In one embodiment, the check valve interface 36 is disposed at an end of the control area 102 away from the filter cartridge installation area 101 along the length direction of the integrated waterway plate 100, so as to avoid interference with the installation of the filter cartridge assembly, and improve user experience.
Specifically, the detection control device mounting structure 3 further includes a high-voltage switch mounting port 37, the high-voltage switch mounting port 37 being provided on the pure water path 13 and located between the check valve interface 36 and the pure water interface 105, for mounting the high-voltage switch 305; the high-voltage switch 305 is used for detecting the pressure in the pure water waterway 13 of the integrated water channel plate 100, and automatically cutting off the water inlet electromagnetic valve after detecting a certain high pressure, so as to prevent the water purifying equipment from working for a long time after the pure water interface 105 is closed, so that the pressure in the integrated water channel plate 100 is too high, water leakage or breakage of the integrated water channel plate 100 or the pure water interface 105 is caused, and the safe and stable work of the water purifying equipment is ensured.
Specifically, the detection control device mounting structure 3 further includes a booster pump interface 38, the booster pump interface 38 includes a pump water inlet 381 and a pump water outlet 382, and a booster pump (not shown in the figure) is integrally mounted on the integrated water circuit board 100 through the pump water inlet 381 and the pump water outlet 382, so that the mounting and dismounting are simple and convenient. The water flow channel 1 further comprises a pressurizing water path 16, two ends of the pressurizing water path 16 are respectively communicated with the pump water outlet 382 and the reverse osmosis inlet 221, and two ends of the overflowing water path 14 are respectively communicated with the primary filter element outlet 212 and the pump water inlet 381; the purified water which enters the overflowing water channel 14 after being purified by the primary filter element enters the booster pump through the pump water inlet 381 under the strong suction action of the booster pump, then enters the boosting water channel 16 from the pump water outlet 382, flows to the reverse osmosis inlet 221 and then enters the reverse osmosis filter element, and the booster pump is used for ensuring the smoothness and flux of water supply of the reverse osmosis filter element and ensuring the stable work and water purification effect of the water purification equipment.
Wherein, pump water inlet 381 and pump outlet 382 are close to the both ends of the diagonal of control area 2 respectively, the booster pump can cross over on water route integrated board 100 through pump water inlet 381 and pump outlet 382, thereby let go out water inlet solenoid valve 302, waste water solenoid valve 303, check valve 304, high-voltage switch 305 etc. detect the installation space of controlling means, optimize the installation that detects the controlling means, the rational utilization installation space, the emission is neat rule, reduce the dismouting degree of difficulty, practice thrift and maintain the cost, simple reasonable compactness of mounting structure, be favorable to reducing the volume of integrated water route board 100, and then reduce water purification unit's volume, save the installation space, it occupies to reduce the kitchen space, user experience is better.
Specifically, the integrated water path plate 100 includes a first plate 4 and a second plate 5, the first plate 4 and the second plate 5 are mirror-symmetrically provided with a flow channel convex rib 6, and the flow channel convex ribs 6 of the first plate 4 and the second plate 5 are fixedly connected to form a whole through a welding process (e.g., welding); the flow channel convex ribs 6 on the first plate body 4 are in sealing butt joint with the flow channel convex ribs 6 on the second plate body 5, and a water flow channel 1 is limited between the two adjacent flow channel convex ribs 6. Wherein, one side of the first plate body 4 and the second plate body 5 with the flow channel convex rib 6 is a back side, and the other side is a front side; the back surfaces of the first plate body 4 and the second plate body 5 are respectively provided with a plurality of flow channel convex ribs 6 which are arranged at intervals, a first water tank part 41 is defined between two adjacent flow channel convex ribs 6 of the first plate body 4, and a second water tank part 51 is defined between two adjacent flow channel convex ribs 6 of the second plate body 5; the back surface of the first plate body 4 is buckled and connected with the back surface of the second plate body 5, the notch of the first water tank part 41 is in sealed butt joint with the notch of the second water tank part 51, and a water flow channel 1 is defined between the first water tank part 41 and the second water tank part 51; the front faces of the first plate body 4 and the second plate body 5 form the outer wall of the integrated water passage plate 100. In one embodiment, the cartridge port 2 is disposed on a front surface of the first plate 4, and the inlet port 103 and the outlet port are disposed on a front surface of the second plate 5.
Specifically, the integrated waterway plate 100 further has a plurality of overflow chambers 7 adjacent to the outer side of the water flow channel 1, and the outer wall of the integrated waterway plate 100 is provided with leakage detecting holes 71 communicated with the overflow chambers 7. When the protruding muscle 6 of runner of first plate body 4 and second plate body 5 leads to leaking because of the welding is bad, leak and can flow into overflow chamber 7 and flow out integrated water route board 100 through checking hole 71, it is regional to be located which through checking hole 71 who observes flowing water, can confirm the water route area that leaks of integrated water route board 100, thereby confirm which regional rivers passageway 1 of integrated water route board 100 the problem of leaking appears, effectively solve integrated water route board 100 and connect the problem that is difficult to detect when sealed badly, convenient maintenance, user experience is better. Wherein, as long as the closed space formed by the outer walls of the flow channel convex ribs 6 facing the outer side of the water flow channel 1 is enclosed into an overflow chamber 7, the leakage detecting hole 71 is arranged at the bottom of the overflow chamber 7. In one embodiment, the leak detection holes 71 are provided in the second plate body 5.
Specifically, the second plate 5 is further provided with a DC power terminal mounting hole 52, and the DC power terminal mounting hole 52 is located at an end of the filter cartridge mounting area 101 away from the control area 102. Install the integration of DC power supply terminal (not shown in the figure) on integrated water route board 100 through DC power supply terminal mounting hole 52, simplified the installation of DC power supply terminal, make things convenient for the overall arrangement of water purification unit complete machine pencil, arrange neat rule, rational in infrastructure is compact, saves installation space, and the installation is dismantled conveniently, and user experience is better.
Another embodiment of the present application also proposes a water purification apparatus comprising a filter cartridge assembly, an inspection control device and an integrated waterway plate 100 provided by any of the above embodiments.
The embodiments in the present specification are described in a progressive manner, and the same and similar parts among the embodiments are referred to each other, and each embodiment focuses on the differences from the other embodiments. In particular, for the system embodiment, since it is substantially similar to the method embodiment, the description is simple, and for the relevant points, reference may be made to the partial description of the method embodiment.
The above description is only an example of the present application and is not intended to limit the present application. Various modifications and changes may occur to those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application should be included in the scope of the claims of the present application.

Claims (10)

1. An integrated waterway plate is internally provided with a water flow channel and is characterized in that a filter element mounting area and a control area are arranged on the integrated waterway plate along the length direction;
the filter element mounting area is provided with at least one group of filter element interfaces communicated with the water flow channel; one side of control area be provided with water inlet interface and the play water interface of rivers passageway intercommunication, the opposite side is provided with detection control device mounting structure, detection control device mounting structure with the filter core interface is located same one side of integrated water route board.
2. An integrated waterway plate of claim 1,
the water inlet interface and the water outlet interface are arranged in the middle of the control area, and the water inlet interface and the water outlet interface are perpendicular to the plate body of the integrated water circuit board.
3. An integrated waterway plate of claim 1 or 2,
the filter element interface comprises a first-stage filter element interface and a reverse osmosis filter element interface which are arranged at intervals along the length direction of the integrated water circuit board, the first-stage filter element interface comprises a first-stage filter element inlet and a first-stage filter element outlet, the reverse osmosis filter element interface comprises a reverse osmosis inlet, a reverse osmosis outlet and a reverse osmosis waste water inlet, and the reverse osmosis inlet is communicated with the first-stage filter element outlet;
the water outlet interface comprises a water purifying interface, a pure water interface and a waste water interface.
4. An integrated waterway plate of claim 3,
it includes raw water TDS probe mounting port and pure water TDS probe mounting port to detect control device mounting structure, raw water TDS probe mounting port is located the filtration rear end of one-level filter core export, pure water TDS probe mounting port is located the filtration rear end of reverse osmosis export.
5. An integrated waterway plate of claim 4,
the detection control device mounting structure further comprises a water inlet valve interface and a waste water valve interface, and the water inlet valve interface and the waste water valve interface are arranged at two ends of the control area at intervals along the width direction of the integrated circuit board; and in the area defined by the raw water TDS probe mounting port, the pure water TDS probe mounting port, the water inlet valve interface and the waste water valve interface, the raw water TDS probe mounting port and the pure water TDS probe mounting port as well as the water inlet valve interface and the waste water valve interface are arranged in a crossed and opposite angle mode.
6. An integrated waterway plate of claim 4 or 5,
the detection control device mounting structure further comprises a temperature detection component mounting port, and the temperature detection component mounting port is located between the first-stage filter element interface and the reverse osmosis filter element interface.
7. An integrated waterway plate of claim 3,
detect control device mounting structure still including set up in the check valve interface of control area one end, the check valve interface includes the check valve water inlet and the check valve delivery port that the interval set up.
8. An integrated waterway plate of claim 7,
the detection control device mounting structure further comprises a high-voltage switch mounting port, and the high-voltage switch mounting port is located between the check valve mounting structure and the pure water interface.
9. An integrated waterway plate of claim 3,
the detection control device mounting structure further comprises a booster pump interface, the booster pump interface comprises a pump water inlet and a pump water outlet, and the pump water inlet and the pump water outlet are respectively adjacent to two ends of a diagonal line of the control area.
10. A water purification apparatus comprising a filter element assembly, a detection control device and an integrated waterway plate of any one of claims 1 to 9.
CN201922180257.0U 2019-12-06 2019-12-06 Integrated water route board and water purification unit Active CN211770599U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922180257.0U CN211770599U (en) 2019-12-06 2019-12-06 Integrated water route board and water purification unit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922180257.0U CN211770599U (en) 2019-12-06 2019-12-06 Integrated water route board and water purification unit

Publications (1)

Publication Number Publication Date
CN211770599U true CN211770599U (en) 2020-10-27

Family

ID=72973631

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922180257.0U Active CN211770599U (en) 2019-12-06 2019-12-06 Integrated water route board and water purification unit

Country Status (1)

Country Link
CN (1) CN211770599U (en)

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