WO2019192159A1 - 嵌入式净饮机 - Google Patents

嵌入式净饮机 Download PDF

Info

Publication number
WO2019192159A1
WO2019192159A1 PCT/CN2018/110480 CN2018110480W WO2019192159A1 WO 2019192159 A1 WO2019192159 A1 WO 2019192159A1 CN 2018110480 W CN2018110480 W CN 2018110480W WO 2019192159 A1 WO2019192159 A1 WO 2019192159A1
Authority
WO
WIPO (PCT)
Prior art keywords
water
filter
filter element
interface
slot
Prior art date
Application number
PCT/CN2018/110480
Other languages
English (en)
French (fr)
Inventor
郝志鹏
Original Assignee
佛山市顺德区美的饮水机制造有限公司
美的集团股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201820485113.9U external-priority patent/CN208532410U/zh
Priority claimed from CN201820485306.4U external-priority patent/CN208532411U/zh
Priority claimed from CN201810300011.XA external-priority patent/CN108298712B/zh
Priority claimed from CN201820485112.4U external-priority patent/CN208822387U/zh
Priority claimed from CN201820485250.2U external-priority patent/CN208822415U/zh
Priority claimed from CN201820485075.7U external-priority patent/CN208532254U/zh
Priority claimed from CN201820485249.XU external-priority patent/CN208454646U/zh
Priority claimed from CN201820483544.1U external-priority patent/CN208822386U/zh
Priority claimed from CN201820817341.1U external-priority patent/CN208526007U/zh
Application filed by 佛山市顺德区美的饮水机制造有限公司, 美的集团股份有限公司 filed Critical 佛山市顺德区美的饮水机制造有限公司
Publication of WO2019192159A1 publication Critical patent/WO2019192159A1/zh

Links

Images

Classifications

    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/44Treatment of water, waste water, or sewage by dialysis, osmosis or reverse osmosis

Definitions

  • the invention belongs to the field of household appliances, and in particular to an embedded net drinker.
  • the existing embedded net drink machine is more and more popular among consumers because it can be completely embedded in the cabinet or wall and formed into a coordinated whole with the whole kitchen.
  • the raw water from the outside is directly introduced into the net drinking machine, and then the filter element in the net drinking machine filters out the contaminants in the raw water to obtain pure water for the user to drink directly, and the pure water obtained is from the net drinking machine.
  • the water outlet flows into the user's liquid cup.
  • a filter replacement opening is usually arranged on the top panel of the whole casing, and the filter element is vertically placed in the casing of the whole machine through the filter replacement opening, so that when the filter element is to be replaced, the whole filter needs to be The machine is taken out from the cabinet or the wall, and then the filter element is replaced by the filter replacement opening. Finally, the whole machine needs to be embedded in the cabinet or the wall again. This replacement method is not convenient for the user to operate, and brings the user to bad use. Experience.
  • the present invention provides an embedded net drink machine.
  • the embedded net drink machine replaces the filter element, the whole machine does not need to be taken out from the cabinet or the wall, and the operation is simple and convenient, and Greatly improve the user experience.
  • the present invention provides an embedded net drinker, comprising: a casing, a front panel of the casing is provided with a consumable replacement inlet; and a water treatment module is located in the machine cavity. And including a horizontally disposed filter element and a fixedly disposed filter cartridge mount; wherein the filter cartridge is inserted laterally inwardly from the consumable replacement inlet to the filter cartridge mount and can be laterally outwardly drawn out of the filter cartridge mount Replace as a whole.
  • the filter element comprises a filter housing and a filter core portion located in the filter housing, and an inner end tube is protruded from an inner end of the filter housing, and an outer end of the filter housing is fixed radially outwardly.
  • An interface tube portion; and the filter cartridge mount is provided with a filter cartridge slot for linearly inserting the filter cartridge, the inner bottom wall of the filter cartridge slot is provided with an inner interface slot, and the filter cartridge mounting seat is disposed at the filter cartridge An outer interface groove portion of the outer peripheral edge of the outer slot of the slot; wherein the inner connector tube is inserted into the inner interface slot when the filter element is linearly inserted inwardly into the filter cartridge slot The outer interface tube portion is inserted into the outer interface groove portion.
  • the outer interface groove portion is located above the outer slot of the filter cartridge slot.
  • the filter cartridge mount is provided with a locking member that limits the locking of the filter element along the insertion direction of the filter cartridge.
  • the filter cartridge mount is fixedly mounted with a waterway plate, and the waterway plate includes a waterway plate water inlet, a waterway plate water outlet and a waterway plate insertion interface, and the filter core is linearly inserted inwardly into the filter insert.
  • the outer interface tube portion abuts the water channel board interface portion.
  • the filter element portion comprises a reverse osmosis filter element layer
  • the embedded net drinker further comprises a filtered water booster pump disposed upstream of the water inlet of the reverse osmosis filter element layer.
  • the filter element further comprises a primary filter element, the outer interface tube portion comprising a raw water outer interface tube as a water inlet of the primary filter element layer, and a pure water connecting the first water outlet of the reverse osmosis filter element layer An outer mouth pipe and a waste water outer pipe connecting the second water outlet of the reverse osmosis filter layer, the inner port pipe being formed with an inner water outlet pipe communicating with the first water outlet of the primary filter element layer and An inlet water pipe connected to the water inlet of the reverse osmosis filter layer, wherein the water filter booster pump is disposed on the pressure pipe connecting the inner water outlet pipe and the inner water inlet pipe.
  • the outer interface tube portion further includes a coarse filter outer interface tube as a second water outlet of the primary filter element layer.
  • the waterway board insertion interface portion comprises a raw water outer interface slot, a pure water outer interface slot and a waste water externally connected with the raw water outer interface pipe, the pure water outer interface pipe and the waste water external interface pipe.
  • the water inlet of the waterway plate includes a raw water inlet
  • the water outlet of the waterway includes a pure water outlet and a waste water outlet
  • a raw water pipeline is formed between the raw water interface slot and the raw water inlet.
  • a pure water pipeline is formed between the pure water outer interface tank and the pure water outlet
  • a waste water pipeline is formed between the waste water external interface tank and the waste water outlet.
  • the waterway plate is further formed with a filtered water booster pump overflow pipe, and the water inlet of the filtered water booster pump overflow pipe is connected to the inner water outlet pipe, and the water filter booster pump The water outlet of the overflow pipe is connected to the water inlet of the water filter booster pump, and the waterway plate further comprises water inlet electromagnetics respectively disposed on the filter water booster pump overflow pipe and the waste water pipeline Valve and waste water solenoid valve.
  • the raw water outer interface slot is provided with a raw water check valve, and the raw water check valve is arranged to open when the outer interface pipe portion is docked with the waterway plate insertion interface portion and at the outer interface pipe portion Close when disconnected from the waterway board connector.
  • the embedded net drinker comprises a water tank connected to a pure water outlet of the waterway outlet, the water tank, the filter seat and the water pump booster pump are vertically downwards Arrange.
  • the embedded net drinker comprises a cylinder assembly installed in the machine cavity, the cylinder assembly comprising a cylinder mount and a vertically placed gas cylinder, the cylinder being disposed in the Directly in front of the filter element; wherein the gas cylinder is installed in or removed from the cylinder mount from the consumable replacement inlet.
  • the cylinder mount includes a vertical cylinder receiving groove and a pressure reducing valve pivotally mounted to a top end of the cylinder mount, the pressure reducing valve including a bottle with the cylinder a mouth-to-mouth intake valve port and a cylinder guide extending from a peripheral portion of the intake valve port, a top of the gas cylinder being fitted into the cylinder guide and following the decompression gas The valve is pivoted into the cylinder receiving slot.
  • the front bottom of the embedded net drink machine is provided with a water receiving box cavity
  • the water receiving box cavity has a water receiving box built therein
  • the front panel includes a cover for sealing the water receiving box
  • the cavity is capable of pivoting the open bottom strip decorative panel, and the bottom of the gas cylinder is disposed directly behind the water receiving box.
  • the front panel of the casing is provided with a consumable replacement inlet
  • the horizontally disposed filter element and the fixed filter cartridge mounting seat are arranged in the machine cavity, and the filter core can not only replace the inlet lateral direction through the consumables.
  • the inner insert is mounted on the filter cartridge mount, and can be integrally extracted laterally outward from the filter cartridge mount.
  • FIG. 1 is a schematic structural view of an embedded net drink machine according to a first preferred embodiment of the present invention
  • Figure 2 is an exploded view of the structure of Figure 1;
  • FIG. 3 and FIG. 4 are diagrams showing a process of replacing the filter element and the gas cylinder of the embedded net drinker shown in FIG. 1, wherein FIG. 3 shows the case where the bottom strip decorative panel is opened, the water receiving box is taken out, and the gas cylinder outer cover is opened. Schematic diagram of the structure, FIG. 4 further shows a schematic view of the structure of the gas cylinder and the filter outer cover after being taken out from the machine cavity;
  • FIG. 5 and FIG. 6 are schematic structural views of the water treatment module and the gas cylinder assembly of FIG. 2, wherein FIG. 6 is a view showing the gas cylinder and the filter outer cover being separated from the cylinder mount;
  • Figure 7 is an overall cross-sectional view of Figure 5;
  • Figure 8 is an overall cross-sectional view of Figure 6;
  • Figure 9 is a schematic structural view of the water treatment module and the gas cylinder assembly of Figure 2, wherein the gas cylinder, the filter outer cover and the filter element have been taken out;
  • Figure 10 is a schematic structural view of a filter element according to a preferred embodiment of the present invention.
  • Figure 11 is a schematic view of a pipeline between a gas cylinder assembly and a soda module according to a preferred embodiment of the present invention
  • FIG. 12 is a schematic structural view of a waterway plate detaching filter cartridge mount
  • Figure 13 is a schematic structural view of the waterway plate of Figure 5;
  • Figure 14 is an overall cross-sectional view of Figure 13;
  • Figure 15 is a schematic structural view of the end lock cover of Figure 9;
  • Figure 16 is a cross-sectional view taken along line A-A of Figure 15, wherein the bolt partially extends out of the bolt mounting groove;
  • Figure 17 is a side view of Figure 16;
  • Figure 18 is a schematic view showing the structure of the second embodiment of the present invention, in which the filter cartridge mount is pulled out from the front side of the casing, and the end lock cover is in the pivotal lock position.
  • orientation words such as “up, down, top, and bottom” are generally used for the directions shown in the drawings or for vertical, vertical or gravity directions, unless otherwise stated.
  • the components are described in terms of their positional relationship.
  • the present invention provides an embedded net drinker.
  • the embedded net drinker includes a casing 100, and a front panel of the casing 100 is provided with a consumable replacement inlet 101;
  • the processing module 200 is located in the machine cavity and includes a horizontally disposed filter element 10 and a fixedly disposed filter cartridge mount 20; wherein the filter element 10 is inserted laterally and inwardly from the consumable replacement inlet 101 to the filter cartridge mount 20 and can be laterally outward The filter cartridge mount 20 is withdrawn for replacement.
  • the front panel of the casing 100 is provided with a consumable replacement inlet 101, and the cartridge mounting seat 20 is fixedly disposed in the machine cavity, and the filter cartridge 10 can be inserted not only laterally and inwardly from the consumable replacement inlet 101 to the filter cartridge mount. 20, and can also be pulled out from the consumable replacement inlet 101 laterally outward from the filter cartridge 20, so that when the cartridge 10 needs to be replaced, the user only needs to install the cartridge 10 laterally outward from the filter cartridge from the front side of the casing 100.
  • the cartridge 20 is taken out, and then the replaced filter element 10 is inserted into the filter cartridge mount 20 laterally and inwardly from the front side of the casing 100.
  • the filter cartridge 10 is replaced in such a manner that the whole machine is not required to be from the cabinet or the wall.
  • the body is extracted, and the filter cartridge 20 and the filter cartridge 10 are not required to be taken out from the machine cavity, and the filter cartridge 10 can be replaced as a whole, and the operation is simple and convenient, which can greatly reduce the cumbersomeness of the filter cartridge 10 replacement, and is beneficial to users.
  • the experience of using the filter cartridge 20 is not taken out from the machine cavity together with the filter element 10, that is, the filter cartridge 20 is fixedly disposed in the machine cavity, so that when the user replaces the filter cartridge 10, the filter cartridge can be effectively avoided due to user's misoperation.
  • the components such as the pipelines installed on the mounting seat 20 interfere with each other (such as the bumping pipeline), which is beneficial to improving the reliability and service life of the whole machine.
  • the filter element 10 may have a cylindrical shape, a cubic shape, or other suitable shape.
  • the shape of the cartridge slot 23 for the linear cartridge 10 should be adapted to the shape of the cartridge 10.
  • the cartridge slot 23 should also be Preferably, it is cylindrical, and of course, the filter element slot 23 may have other slot shapes such as a circular arc in cross section.
  • the filter element 10 includes a filter housing 1 and a filter element portion located in the filter housing 1.
  • the inner end of the filter housing 1 protrudes with an inner mouth tube 11, and the outer end of the filter housing 1 is radially outward.
  • the outer connector tube portion 12 is fixedly extended; and the filter cartridge mounting seat 20 is provided with a filter cartridge slot 23 for linearly inserting the filter cartridge 10.
  • the inner bottom wall of the filter cartridge slot 23 is provided with an inner interface slot, and the filter cartridge mounting seat 20 is located at The outer interface groove portion 22 of the outer peripheral edge of the outer slot of the filter element slot 23; wherein, when the filter element 10 is linearly inserted into the filter element slot 23 in the lateral direction, the inner interface tube 11 is inserted into the inner interface slot, and the outer interface The tube portion 12 is inserted into the outer interface groove portion 22. In this way, when the filter element 10 is replaced, the user only needs to directly withdraw the filter element 10 from the inside of the filter element slot 23, and then insert the inner filter tube 11 and the outer tube in the process of inserting the filter element 10 into the filter element slot 23.
  • the interface tube portions 12 can be inserted into the inner interface slot and the outer interface slot portion 22 one by one, so that the user can replace the filter element 10 and the operability is also strong. Further, a plurality of outer interface tubes are protruded inwardly of the outer interface tube portion 12, so that a plurality of outer joints can be respectively disposed on the outer peripheral edge of the outer slot of the filter element slot 23 for docking with the plurality of outer interface tubes
  • the outer interface slot can make the structure of the whole machine more compact and compact.
  • the filter element 10 can also have other suitable manners of being inserted into the filter cartridge mount 20, and details are not described herein again.
  • the outer interface groove portion 22 is located above the outer slot of the filter element slot 23, with reference to FIG. 9, so that the outer interface groove portion 22 is disposed at the other position, and the outer interface groove portion 22 is disposed in the filter slot.
  • the difference between the inner diameter of the filter element slot 23 and the outer diameter of the filter element 10 should preferably be no more than 1 mm.
  • the embedded net drinker further includes a gas cylinder assembly 700 installed in the machine cavity.
  • the gas cylinder assembly 700 includes a gas cylinder mount 72 and a vertically placed gas cylinder 71;
  • the gas cylinder 71 is installed in or taken out of the cylinder mount 72 from the consumable replacement inlet 101.
  • the gas that needs to supply air in the embedded net drink machine (for example, the soda module 800) can be conveniently supplied with gas, which is convenient for the user to operate. It is beneficial to enhance the user's experience, and the cylinder assembly 700 is disposed in the whole machine, so that no additional external space is required to accommodate the cylinder assembly 700, and related piping and wires can be hidden in the embedded system. In the net drink machine, the safety performance is high and the appearance is more beautiful.
  • the gas cylinder 71 can also be replaced from the front side of the casing 100 via the consumable replacement inlet 101.
  • the user when the gas cylinder 71 needs to be replaced, the user only needs to replace the inlet 101 with the consumable material to replace the gas cylinder 71. It is taken out from the machine cavity, and then the new cylinder 71 is loaded into the machine cavity through the consumable replacement inlet 101.
  • the replacement method of the gas cylinder 71 does not need to extract the whole machine from the cabinet or the wall, and the operation is simple and convenient, which can greatly reduce the cumbersomeness of the replacement of the consumables, and is beneficial to improving the user experience; of course, the user can
  • the replacement of the gas cylinder 71 inside can also make the whole machine have the function of making soda water for a long time, and is also beneficial to improve the user experience.
  • the gas cylinder 71 is preferably disposed directly in front of the filter element 10. Further, between the gas cylinder 71 and the filter element 10, a filter outer cover 102 for covering the filter cartridge mount 20 is provided. Referring to FIG. 3 and FIG. 4, when the user replaces the gas cylinder 71, the filter element 10 and the like are not It will be exposed and affect the appearance, which will help improve the user experience.
  • the embedded net drinker includes a soda module 800 installed in the machine cavity, and the gas cylinder assembly 700 is connected to the soda module 800.
  • the gas bottle 71 is preferably a carbon dioxide gas cylinder 71.
  • the carbon dioxide gas from the gas cylinder 71 is passed to the soda module 800 for making soda water.
  • the cylinder assembly 700 of the present invention is not limited to supplying air to the soda module 800, but may also be used to supply gas to other modules requiring gas supply.
  • the module for supplying air is different, and the gas type of the device in the gas cylinder 71 is also changed correspondingly, that is, the gas cylinder 71 may be an oxygen gas cylinder 71 or a nitrogen gas cylinder 71, in addition to the carbon dioxide gas cylinder 71. It can be determined by actual process requirements.
  • the diameter of the gas cylinder 71 is not less than 50 mm and the height is not less than 160 mm, so that the user can purchase the gas cylinder 71 for replacement.
  • the gas cylinders that the users can purchase on the market today are mostly 0.3L and 0.6L, and the diameters of the cylinders 71 of the two specifications are not less than 50mm, and the height is not less than 160mm. .
  • the inventor has repeatedly tested that the replacement period of the gas cylinder 71 is generally short.
  • a gas cylinder 71 of 0.6 L is taken as an example, and the replacement period is generally not more than three months.
  • the air inlet of the soda module 800 includes a gas cylinder inlet port and an external air port for connecting the gas cylinder 71, so that the user can connect the external gas cylinder disposed outside the whole machine through the external gas port.
  • the soda module 800 and since the specifications of the external gas cylinder are not limited by the space of the machine cavity, the user can purchase an external gas cylinder of a larger size (for example, 2L), which can greatly reduce the frequency of replacement of the gas cylinder 71, thereby facilitating the user. Use the action.
  • an external gas cylinder of a larger size for example, 2L
  • a pressure detector is disposed in the connecting air pipe between the cylinder assembly 700 and the soda module 800.
  • the embedded net drinker includes the casing 100, and the front panel of the casing 100 is provided with a cylinder replacement warning.
  • the unit, the pressure detector is configured to trigger the cylinder replacement warning unit when detecting that the gas pressure in the connecting air pipe is less than a preset value.
  • the preset value should preferably be not less than 0.2 MPa and not more than 0.3 MPa.
  • the cylinder mount 72 is provided with a vertical cylinder accommodating groove, and the top end of the cylinder mount 72 is provided with a pressure reducing valve 722, and the cylinder 71 is embedded in the cylinder accommodating groove.
  • the bottle mouth of the gas cylinder 71 is docked to the intake valve port of the pressure reducing valve 722, that is, the gas in the gas cylinder 71 is depressurized by the pressure reducing valve 722 and then leads to the module requiring gas supply (such as the soda module 800).
  • the distance between the inner peripheral wall of the cylinder containing tank and the outer peripheral wall of the gas cylinder 71 should preferably be not less than 20 mm.
  • the pressure reducing valve 722 is pivotally mounted to the top end of the cylinder mount 72, and the pressure reducing valve 722 includes a cylinder guide 723 extending from the peripheral portion of the inlet valve port, with reference to FIGS. 5 to 8.
  • the top of the gas cylinder 71 is fitted into the cylinder guide 723 and is pivoted into the cylinder receiving groove following the pressure reducing valve 722.
  • the cylinder guide 723 can be pivoted upward to facilitate the user to take the cylinder 71.
  • the bottle mouth is aligned with the intake valve port of the pressure reducing valve 722, and then the cylinder guide 723 is pivoted together with the gas cylinder 71 back into the cylinder receiving groove, and the inner peripheral wall of the cylinder receiving groove can be
  • the spacing between the outer peripheral walls of the gas cylinders 71 is set small, which is advantageous for making the overall structure smaller and more compact.
  • the cylinder guide 723 should be formed with a fitting cavity matching the top of the cylinder 71.
  • the cylinder accommodating groove and the fitting cavity are both vertically cut along the axial section. To the lumen.
  • the cylinder accommodating groove and the fitting cavity may also be in other suitable cylindrical forms, and details are not described herein again.
  • a cylinder outer cover 103 for covering the consumable replacement inlet 101 is further provided on the front panel, so that the gas cylinder 71 and other internal components are prevented from being exposed from the consumable replacement inlet 101. , in turn, make the whole machine more beautiful.
  • the bottom of the front side of the embedded net drinker is provided with a water receiving box cavity, and the water receiving box cavity has a water receiving box 400.
  • the bottom of the gas bottle 71 is disposed in the water receiving box 400.
  • the rear side of the cylinder 71 is disposed above the water receiving box 400, which can effectively reduce the influence of the axial height of the cylinder 71 on the height of the whole machine, that is, it is beneficial to lower the height of the whole machine and promote the structure of the whole machine. It is compact and compact.
  • the front panel further includes a bottom strip decorative panel 105 for covering the water receiving box cavity and being pivotably opened.
  • the water filter plate 30 is fixedly mounted on the filter cartridge mounting base 20.
  • the waterway plate 30 includes a waterway plate water inlet, a waterway plate water outlet and a waterway plate insertion interface portion 33, and a filter element.
  • the outer port tube portion 12 abuts the water channel board insertion portion 33.
  • the traditional embedded drinking machine mostly uses plastic or silicone water pipes to connect the waterway components, so that the whole machine has many shortcomings such as many pipelines and pipe joints, thereby increasing the risk of water leakage, and in addition, due to the pipe
  • the lack of integration of the road will also cause the whole machine to be bulky, which will make the whole machine appear more bloated and heavy, and will also affect the appearance of the whole machine. Therefore, by providing the waterway plate 30 in the embedded net drinker, not only the risk of water leakage can be effectively reduced, but also the whole machine can be made compact and compact, which is beneficial to improving the user experience.
  • the number of pipes and pipe joints is small, that is, the cumbersome assembly is reduced, and the assembly efficiency of the whole machine can be greatly improved.
  • the filter element 10 is an integrated composite filter element, that is, a filter element is provided with a plurality of filter elements of different materials, so that by combining a plurality of filter elements into an integrated filter element, the space required for accommodating the filter element 10 in the machine cavity can be greatly reduced. Therefore, the whole machine is small and compact, which is beneficial to reduce the transportation and storage cost of the whole machine, and of course, can make the whole machine more compact and beautiful. In addition, the number of filter elements 10 required in the embedded net drinker is reduced, and the number of joints and the risk of water leakage can be effectively reduced.
  • the filter element portion includes a reverse osmosis filter core layer.
  • the embedded net drinker further includes a filtered water booster pump 40 disposed upstream of the water inlet of the reverse osmosis filter element layer.
  • the reverse osmosis filter layer is a filter layer mainly composed of an RO membrane, and can effectively remove impurities such as heavy metal ions or bacteria.
  • the raw water flowing into the filter element 10 is generally tap water in an external water pipe, and the water pressure in the tap water pipe is usually about 0.3 MPa, but the liquid pressure needs to be about 0.6 MPa to be filtered through the reverse osmosis filter layer. Therefore, in order to enable the liquid to be filtered through the reverse osmosis filter layer, a filtered water booster pump 40 is required to pressurize the liquid (e.g., to about 0.6 MPa).
  • the filter element 10 is horizontally disposed and located above the drainage water booster pump 40.
  • the filter element 10 and the drainage water booster pump 40 in the water treatment module 200 are disposed from the top to the top in the vertical direction.
  • the lower arrangement can make the water treatment module 200 more compact and compact, and the structure of the whole machine is also more compact, so that the space utilization ratio of the machine cavity can be greatly improved, thereby making the whole machine more compact and beautiful, and the reduction is reduced.
  • the transportation and storage costs of the whole machine also enhance the user experience.
  • the filter element 10 and the water filter booster pump 40 are arranged in the vertical direction, which is also convenient for routing the pipe, thereby facilitating the assembly efficiency of the whole machine.
  • the embedded net drinker includes a water tank 50 connected to the pure water outlet 321 of the waterway outlet, so that the prepared pure water can be first stored in the water tank 50 to meet the user's large throughput demand. .
  • the water tank 50, the filter cartridge mount 20, and the drainage water booster pump 40 are preferably arranged in the vertical downward direction.
  • an electronic water level detecting device may be preferably provided in the water tank 50.
  • the electronic water level detecting device can monitor the water level height in the water tank in real time, and feed back the water level height signal to the controller of the embedded net drink machine, and the controller controls the electronic water level detecting device and the water pump boosting pump 40 to control the water tank 50.
  • the controller receives a signal indicating that the water tank 50 is short of water
  • the water filter booster pump 40 is immediately controlled to replenish the water tank 50.
  • the filter water booster pump 40 is immediately turned off to stop the water supply.
  • the addition of the electronic water level detecting device in the water tank 50 can effectively maintain the water level interval, so that the water storage amount in the water tank 50 is in a relatively stable state, thereby ensuring the stable water discharge of the water outlet of the whole machine and avoiding the overflow of the water tank 50.
  • the stability of the whole machine can be greatly improved.
  • an overflow-proof float ball assembly 16 constructed of a mechanical structure at the top of the water tank 50 may be added.
  • the overflow-proof float ball assembly 16 is arranged to block the water inlet port of the water tank 50 when the water level in the water tank 50 reaches the overflow height.
  • a UV LED sterilizing device 17 or a cold cathode UV sterilizing device may be preferably provided on the water tank cap.
  • the UV LED sterilizing device 17 or the cold cathode UV sterilizing device can be intermittently opened for efficient sterilization to ensure the safety of drinking by the user.
  • the water treatment module 200 is further provided with a TDS detecting device.
  • the TDS detecting device includes an upstream probe and a downstream probe.
  • the upstream probe is disposed at the water inlet of the water treatment module 200 to detect the water quality of the raw water (usually tap water), and the downstream probe is disposed in the water tank 50 to detect the water treatment module 200.
  • the water quality of the pure water obtained by filtration.
  • the TDS detection device can feed back the water quality comparison results before and after filtration to the control panel of the embedded net drinker and display the corresponding water quality. For example, water quality can be divided into “excellent, good, and poor” and displayed on the control panel for user reference.
  • a soundproof cover 41 is further disposed outside the water filter booster pump 40.
  • the noise generated by the filter water booster pump 40 can be effectively reduced, which is beneficial to improving the user experience.
  • a soundproof cotton is disposed on the inner peripheral wall of the soundproof cover 41, and the sound insulation characteristics of the soundproof cover 41 and the soundproof cotton are used to doublely block the working noise of the booster pump to spread out, ensuring that the user can use the embedded environment in a quiet and comfortable environment. Net drink machine.
  • the drainage water booster pump 40 is fixedly mounted on the bottom plate of the machine cavity, so that the operation vibration and noise of the drainage water booster pump 40 can be effectively reduced.
  • the soundproof cover 41 disposed outside the water pump booster pump 40 should also be fixedly mounted on the bottom plate of the machine cavity together with the water filter booster pump 40.
  • the filter cartridge mount 20 is fixedly supported on the top of the soundproof cover 41 , so that the filter cartridge mount 20 together with the filter cartridge 10 can be stably mounted on the soundproof cover 41 , which is beneficial to the water treatment module 200 and the like. The reliability of the whole machine.
  • the water tank 50 is fixedly supported on the top of the filter cartridge mount 20, and the water tank 50 is fixedly supported on the top of the filter cartridge mount 20,
  • the water tank 50 can be stably installed on the filter cartridge mount 20, which is also advantageous for improving the reliability of the water treatment module 200.
  • the embedded netting machine comprises a water treatment module 200 and a functional module with a laterally disposed filter element 10, and the functional module is used for functional processing from the water treatment module. 200 pure water; wherein the water treatment module 200 and the functional modules are spaced apart in the horizontal direction in the machine cavity, that is, the machine chamber is divided into a plurality of chambers spaced apart in the horizontal direction for accommodating the modules, Compared with the water treatment module 200 and the function module are arranged to be arranged in the vertical direction, the spacing between the water treatment modules 200 and the horizontal direction can effectively improve the space utilization ratio of the machine cavity, making the whole machine small and compact, and helping to reduce the embedded net.
  • the size of the whole machine is small, and the whole machine can be made smaller and more beautiful, which is beneficial to enhance the user experience.
  • the modules in the embedded net drinker are arranged in the vertical direction, the modules located at the lowermost layer can be directly mounted on the bottom plate of the machine cavity, and other modules need to pass through the support plate for fixed support. In this way, it is inconvenient to route the pipes between the modules, and the modules are separated by the support plate, which is also disadvantageous for the heat dissipation of the whole machine. Therefore, the water treatment module 200 and the function modules are set to be horizontal.
  • the interval distribution not only facilitates the routing of the pipes to improve the assembly efficiency of the whole machine, but also facilitates the heat dissipation of the whole machine to enhance the user experience.
  • the functional module includes a heating module 500, and the heating module 500 is connected to the water treatment module 200, so that the pure water from the water treatment module 200 can be heated by the heating module 500.
  • the heating module 500 Made of boiling or warm water for the user to use.
  • the heating module 500 includes a hot tank and an instant heat device for maintaining a constant temperature of the water storage, and a water pump is provided between the hot tank and the instant heat device and between the water treatment module 200 and the instant heat device.
  • the water flow in the outlet pipe is in the form of intermittent water flow, so the water outlet pipe of the water pump will generate a large turbulence when the water is discharged, and the water outlet pipe of the water pump is generally placed directly.
  • a soft soundproof cotton can be placed over the water outlet pipe of the pump to cushion its collision with other components in the machine cavity, thereby reducing the working noise of the water pump.
  • the functional module further includes a refrigeration module 600 connected to the pipeline of the water treatment module 200.
  • a refrigeration module 600 connected to the pipeline of the water treatment module 200. Referring to FIG. 2, a part of the pure water flowing out from the water treatment module 200 flows into the heating module 500, and another part enters the refrigeration module 600, and the pure water passes through The refrigeration module 600 is frozen to produce low temperature cold water for the user to drink.
  • the prepared soda water has the best taste, but the pure water from the water treatment module 200 is normal temperature water (usually 25 ° C), and the production thereof The liquid temperature of the optimal soda taste is greatly different. Therefore, the soda module 800 is further disposed adjacent to the refrigeration module 600 and connected to the pipeline. Referring to FIG. 2, the cold water from the refrigeration module 600 is directly introduced into the soda.
  • the module 800 (that is, the carbonization tank) does not need to pre-cool the pure water in the carbonization tank, which is beneficial to reducing the operation cost of the whole machine, thereby improving the user experience.
  • the refrigeration module 600 includes a cold tank and a cooling booster pump.
  • the refrigeration booster pump is disposed on the inlet pipe of the cold tank, and the cold tank is located above the refrigeration booster pump.
  • the arrangement is such that the refrigeration module 600 can be made compact and compact.
  • the cooling booster pump is fixedly mounted on the bottom plate of the machine cavity, and a damping pad or a cooling pump soundproof cover is arranged on the cooling booster pump, which can also effectively reduce the working vibration and noise of the cooling booster pump, and is also beneficial to Improve the user experience.
  • the cooling module 600 and the water treatment module 200 should be disposed close to the inner side wall of the machine cavity (ie, both should be close to the foot setting of the whole machine) Therefore, referring to FIG. 2, the refrigeration module 600 and the water treatment module 200 are preferably located on both sides of the heating module 500, respectively.
  • a first air outlet 721 is disposed on the back panel of the casing 100, and a first heat dissipation fan is embedded in the first air outlet 721.
  • the embedded net drinker of the present technical solution can prevent the hot air drawn from the machine from directly entering the user environment by setting the first air outlet 721 on the back panel. Improve the user experience.
  • the first air outlet 721 is in communication with the air exhaust passage in the cabinet.
  • the rear air inlet of the embedded net drink machine of the present embodiment is further provided with a rear air inlet, and the compressor can be preferably disposed close to the rear air inlet.
  • the first cooling fan starts to rotate, the rear air inlet and the first air outlet 721 form a corresponding convection air passage. Since the compressor is in the convection air passage, the heat generated by the compressor can be quickly discharged out of the machine, thereby achieving rapid heat dissipation. effect.
  • the cold tank has the requirement of heat insulation, it is not suitable to have too fast heat exchange process in the nearby environment, so the cold tank can be preferentially placed away from the rear air inlet.
  • the compressor can be installed in the cold. Between the tank and the rear air inlet, this can not only meet the rapid heat dissipation of the compressor, but also meet the thermal insulation of the cold tank.
  • the compressor and the first cooling fan are preferably arranged to operate synchronously, that is, when the compressor is started, the first cooling fan starts to rotate, and when the compressor is turned off, The first cooling fan stops rotating.
  • the starting and closing of the compressor is related to the water temperature in the cold tank. When the water temperature of the cold tank is higher than the preset upper threshold, the compressor starts and the evaporator cools the cold tank when the water temperature is lower than the preheating. When the threshold is set, the compressor is turned off.
  • a side air inlet 731 is provided on the side panel of the built-in net drinker and/or a forward air outlet is provided at the bottom of the front panel of the built-in net drinker.
  • the above-mentioned forward air outlet, side air inlet 731 and rear air inlet can be arranged in different combinations on the casing 100 of the embedded net drink machine of the present invention, and the specific position and number of each air inlet are determined according to actual heat dissipation requirements. Accordingly, various combinations of the advance tuyere, the side air inlet 731, and the rear air inlet are also contemplated by the present invention.
  • a second air outlet 724 and a second heat dissipation fan embedded in the second air outlet 724 are disposed on the back panel of the embedded net drinker.
  • the temperature sensing probe for detecting the temperature inside the machine is further provided in the machine cavity, and when the temperature detected by the temperature sensing probe is higher than a preset maximum value, the second cooling fan starts to rotate, when the detected temperature inside the machine is lower than When the minimum value is preset, the second cooling fan stops rotating.
  • the second cooling fan can ensure that the temperature inside the machine is maintained in a relatively stable state, which is beneficial to improving the working stability and heat dissipation sensitivity of the whole machine.
  • the embedded net drinker includes a front panel and a back panel defining a machine cavity, wherein the back panel and the front panel are both rectangular, and the width and height of the back panel are not greater than the front panel, the back The height and width of the panel are no more than 595mm.
  • the opening specifications of the fitting holes of the whole cabinet are mainly two kinds, that is, the height and the width are both 595 mm, and the height is 595 mm and the width is 445 mm. Therefore, the height and width of the back panel are set to be no more than 595 mm, so that the embedded net drinker can be fitly fitted into the fitting hole of the whole cabinet, thereby facilitating generalized mass production.
  • the width of the back panel of the embedded net drinker is between 445 mm and 595, the height and width suitable for loading the fitting holes are all in the overall cabinet of 595 mm; when the embedded net drinker is When the width of the back panel is less than 445 mm, the embedded net drinker can be simultaneously loaded into the whole cabinet with the width of the fitting hole of 595 mm and 445 mm.
  • the height of the back panel is 300 mm to 460 mm
  • the width of the back panel is 380 mm to 565 mm
  • the distance between the back panel and the front panel is not less than 300 mm and not more than 550 mm.
  • the embedded net drink machine can be fitted into two whole cabinets with the opening size of the insert hole at the same time to meet the different needs of different users, and the embedded net drink machine of this specification can simultaneously have both Various functions such as water purification, heating, refrigeration, and soda are available to meet the diverse needs of users, which is conducive to improving the user experience.
  • the height of the front panel should be not less than 450 mm and not more than 460 mm, and the width should be not less than 580 mm and not more than 600 mm. It can be understood that when the height of the opening of the insert hole is 595 mm and the width is 445 mm, if the height and width of the front panel are too large, an embedded net drink machine and other household appliances embedded in the whole cabinet may appear (such as If the appearance of the dishwasher does not match, the whole cabinet will be uncoordinated and affect the user's experience; if the height and width of the front panel are too small, the embedded net drinker will be installed in the whole cabinet. There will be assembly gaps that will also affect the aesthetics of the overall cabinet. Similarly, when the opening height of the embedded holes is 595 mm, the width of the front panel is too large or too small, which may cause the overall cabinet to be uncoordinated and unsightly, thereby affecting the user experience.
  • the built-in net drinker suitable for loading into the whole cabinet with two kinds of fitting hole opening specifications can also be as follows: the front panel has a height of 380 mm to 390 mm, and the front panel has a width of 580 mm to 600 mm.
  • the height of the back panel is 250mm ⁇ 390mm, the width of the back panel is 380mm ⁇ 565mm, the distance between the back panel and the front panel is 300mm ⁇ 550mm; or the size of the whole machine can also be: the height of the front panel can also be 600mm ⁇ 610mm, the front panel has a width of 580mm to 600mm, the back panel has a height of 400mm to 610mm, the back panel has a width of 380mm to 565mm, and the distance between the back panel and the front panel is 300mm to 550mm; of course, it is not limited thereto.
  • a central portion of the bottom panel of the machine cavity is provided with a sinking groove 107A, and a water leakage detecting device is further disposed in the sinking groove 107A, so that when the water pipeline and the waterway in the whole machine are provided, When there is liquid leakage of the joint or the like, it will drip onto the bottom plate, and then flow into the sinking groove 107A, and then pass through the water leakage detecting device provided in the sinking groove 107A to determine whether the whole machine exists. The situation of water leakage.
  • an illumination night light is provided on the front panel of the embedded net drinker. Specifically, by setting a night light, when the light is dark, the illumination night light operation can be triggered by a user touch or infrared induction, etc. It is used to illuminate the drinking area so that the user can use the operation.
  • the draw rails are respectively disposed on both sides in the width direction, so that when the whole machine fails, the whole machine can also be extracted from the embedded holes of the whole cabinet, so that Inspect the whole machine.
  • the filter element portion further includes a primary filter element layer.
  • the outer interface tube portion 12 includes a raw water outer port tube 121 as a water inlet of the primary filter element layer, and a first water outlet port connected to the reverse osmosis filter layer.
  • the pure water outer mouth pipe 122 and the waste water outer pipe 123 connected to the second water outlet of the reverse osmosis filter layer, and the inner mouth pipe 11 is formed with an inner water outlet pipe communicating with the first water outlet of the primary filter element layer and
  • the water inlet booster pump connected to the water inlet of the reverse osmosis filter layer is disposed on the pressurized pipeline connecting the outlet water pipe and the inner water pipe.
  • the primary filter layer is mainly used for removing rust, sediment, dissimilar color, odor, residual chlorine and part of organic matter in the adsorbed water.
  • the primary filter layer is mainly composed of a PAC filter layer composed of PP cotton and activated carbon.
  • the filtered water booster pump 40 is disposed on the pressurized pipeline connecting the inner water outlet pipe and the inner water inlet pipe, and can also filter the liquid through the primary filter core layer and then enter the water filter booster pump 40, thereby effectively avoiding the mud.
  • the impurities such as sand block or damage the drainage booster pump 40, which is beneficial to improve the working performance and service life of the booster pump.
  • the raw water is filtered through the primary filter layer and then passed into the reverse osmosis filter layer or even more filter elements of other materials. It can also prevent rust, sediment and other impurities in the liquid from damaging the filter layer, thereby improving the filter layer and even the whole. The life of the filter element.
  • the outer port tube portion 12 further includes a coarse filter outer port tube 124 as a second water outlet of the primary filter element.
  • the primary filtered water filtered by the primary filter layer can meet the requirements of domestic water such as rice washing, washing vegetables, washing, etc.
  • the primary filtered water filtered by the primary filter layer can be passed through the coarse filtered water.
  • the interface tube 124 is led out to the outside of the whole machine for use as a domestic water for the user.
  • the function of the embedded net drinker can be more varied, thereby contributing to the user experience.
  • the waterway board insertion interface portion 33 includes a coarse water filter outer interface slot 334 that interfaces with the coarse water filter outer interface tube 124.
  • the waterway plate water outlet includes a coarse filter water outlet 323, and the coarse filter outer interface slot 334 and the thick
  • a coarse water filter line 344 is also formed between the water filter outlets 323.
  • the inner mouth pipe 11 is a concentric pipe
  • one of the inner and outer water pipes is a circular pipe
  • the other is a ring pipe and is disposed around the circular pipe, so that the water can be pressurized
  • the pump 40 can be directly connected to the concentrically arranged inner and outer inlet pipes by a single connecting member, thereby reducing the number of pipes and pipe joints required in the whole machine, thereby reducing the number of pipes and pipe joints required in the whole machine.
  • the cumbersome assembly speed improves the assembly efficiency of the whole machine.
  • the filter element 10 includes a filter housing 1 and a filter core portion located in the filter housing 1, and the filter housing 1 is provided with an inner water outlet pipe, an inner water inlet pipe, a raw water outer port pipe 121, and pure water.
  • the outer port tube 122, the waste water outer port tube 123, and the coarse water outer port tube 124, the filter element portion includes a primary filter element layer, a reverse osmosis filter element layer, and a rear carbon filter layer.
  • the primary filter layer and the reverse osmosis filter layer are sequentially arranged from the outside to the inside and are spaced apart from each other, the rear carbon filter layer is connected with the reverse osmosis filter layer and located downstream of the reverse osmosis filter layer; the raw water outer interface tube 121 is used as the primary filter layer.
  • the water inlet, the first water outlet of the primary filter layer is connected with the inner water outlet pipe, the second water outlet is connected with the outer water outlet pipe 124 of the coarse filter water; the inner water inlet pipe is connected with the water inlet of the reverse osmosis filter layer, and the reverse osmosis filter core is connected.
  • the first water outlet of the layer is connected to the water inlet of the rear carbon filter layer, the second water outlet is connected to the waste water outlet pipe 123, and the pure water outer pipe 122 is used as the water outlet of the rear carbon filter layer.
  • the primary filter element layer may be a PAC filter core layer mainly composed of PP cotton and activated carbon composite.
  • the primary filter element layer may include a PP non-woven fabric wound layer (PP non-woven fabric roll) which is sequentially distributed from the outside to the inside in the radial direction.
  • the precision of the winding layer can be set to 5 ⁇ m) and the activated carbon fiber winding layer can not only effectively remove large particles such as rust and sediment in the liquid, but also adsorb the color, odor, residual chlorine and some organic substances in the liquid.
  • the primary filtered water filtered by the primary filter layer can meet the requirements of domestic water such as rice washing, washing vegetables, washing, etc.
  • the primary filtered water filtered by the primary filter layer can also pass through the outer interface of the coarse filtering water.
  • the tube 124 is led to the outside of the machine for use as a domestic water for the user, so that the function of the embedded net drinker can be more diverse, which is beneficial to improving the user experience.
  • the reverse osmosis filter layer is a filter layer mainly composed of an RO membrane, which can effectively remove impurities such as heavy metal ions or bacteria; and the rear carbon filter layer can be an activated carbon filter layer, for example, the rear carbon filter layer is a filter element composed of activated carbon rods.
  • the layer can remove volatile organic compounds, residual residual chlorine, and can retain the necessary minerals such as trace calcium, silicic acid, carbonate, etc., which can make the taste sweet and soft.
  • the raw water (for example, tap water from the outside) is firstly filtered through the primary filter layer, and then sequentially introduced into the reverse osmosis filter layer and the rear carbon filter layer for further deep filtration, thereby effectively filtering out More than 0.00001 ⁇ m of harmful substances, and then made pure water for users to drink directly.
  • the number, type and liquid flow order of the filter layer provided in the integrated composite filter cartridge are not limited thereto, and may be other suitable installation manners, which may be determined according to actual process requirements. , will not repeat them here.
  • the waterway board interface portion 33 includes a raw water outer interface slot 331, a pure water outer interface slot 332, and a waste water interface slot, which are connected to the raw water outer interface tube 121, the pure water outer interface tube 122, and the waste water external interface tube 123.
  • the water inlet port of the waterway plate includes a raw water input port 31, and the water outlet of the waterway plate includes a pure water outlet port 321 and a waste water outlet port 322, and an original between the raw water outer interface groove 331 and the raw water inlet port 31 is formed.
  • a pure water pipe 342 is formed between the water pipe 341, the pure water outer port 332 and the pure water outlet port 321, and a waste water pipe 343 is formed between the waste water outer port 333 and the waste water outlet port 322.
  • the raw water inlet port 31 of the water channel plate 30 communicates with the raw water outer port tube 121 of the filter element 10, so that the raw water accessed from the outside is followed.
  • the raw water pipe 341 flows into the filter element 10; the pure water outer port pipe 122 of the filter element 10 communicates with the pure water outlet port 321 of the waterway plate 30, so that the pure water that can be directly consumed by the user through the filter layer layer can pass through the pure water.
  • the pipeline 342 flows out; the waste water outlet pipe 123 of the filter element 10 communicates with the waste water outlet port 322 of the waterway plate 30, so that the primary filtered water from the primary filter core layer is treated with the reverse osmosis filter layer to obtain heavy metal ions or bacteria. Waste water of impurities can be discharged from the whole machine through the waste water line 343.
  • the waterway plate 30 is further formed with a filtered water booster pump overflow pipe 345.
  • the water inlet of the filtered water booster pump overflow pipe 345 is connected to the internal water outlet pipe, and the water filter is increased.
  • the water outlet of the pressure pump overflow line 345 is connected to the water inlet of the filtered water booster pump 40.
  • the waterway plate 30 further includes a water inlet solenoid valve 35 disposed on the filtered water booster pump overflow line 345.
  • the main inlet solenoid valve 35 is cut off or connected to the filtered water booster pump overflow line 345, and generally the filtered water booster pump 40 is started and stopped synchronously with the water inlet solenoid valve 35, that is, when the water inlet solenoid valve 35 is cut off.
  • the filtered water booster pump 40 stops the operation at the same time, and there is no more liquid inflow into the water pipe, that is, the water treatment module 200 stops making pure water;
  • the solenoid valve 35 is connected to the booster pump overflow line 345, the filtered water booster pump 40 is simultaneously activated and pumps the liquid to the internal inlet pipe, and the purified water is discharged from the pure water outlet port 321 .
  • the water inlet solenoid valve 35 is disposed downstream of the primary filter element layer, and the liquid can be filtered through the primary filter element layer and then enter the water inlet solenoid valve 35 to prevent impurities such as sediment from clogging or damage the water inlet solenoid valve 35.
  • the service life of the water inlet solenoid valve 35 can be improved.
  • the water inlet solenoid valve 35 is disposed on the filter water booster pump overflow line 345, and the number of pipelines and pipeline joints can be reduced, which not only can effectively reduce the leakage risk of the whole machine, but also improve the user experience. Moreover, it can greatly reduce the cumbersome assembly of the whole machine, and is beneficial to improving the assembly efficiency of the whole machine.
  • the waterway plate 30 further includes a waste water solenoid valve 36 disposed on the waste water pipe 343, wherein the waste water solenoid valve 36 disposed on the waste water pipe 343 is mainly used to adjust the proportion of the waste water to balance The working pressure of the water line in the water treatment module 200.
  • the waste water solenoid valve 36 is disposed on the waste water pipeline 343, and the number of pipelines and pipeline joints disposed in the water treatment module 200 can also be reduced, which is beneficial to reducing the water leakage risk and the cumbersome assembly of the whole machine.
  • the raw water outer port 331 is provided with a raw water check valve that is opened when the outer port tube portion 12 is docked with the water channel board insertion portion 33 and is detached from the water channel board interface portion 33 at the outer port tube portion 12.
  • a raw water check valve that is opened when the outer port tube portion 12 is docked with the water channel board insertion portion 33 and is detached from the water channel board interface portion 33 at the outer port tube portion 12.
  • the raw water does not flow out of the raw water outer interface groove 331 through the raw water pipe 341 when the filter element 10 is replaced, which is advantageous for improving the user experience.
  • a filter life chronograph key 24 is disposed on the outer circumference of the outer slot of the filter element slot 23, and is disposed. After the filter element 10 is replaced, the user can manually touch the filter life chronograph key 24 manually. The countdown to the service life of the filter element 10 is made.
  • the lifespan of the filter element 10 can be other suitable methods in addition to being triggered by a button, and will not be mentioned here.
  • the present invention also provides an embedded net drinker.
  • the embedded net drinker includes a casing 100 and a filter element assembly located in the machine cavity.
  • the filter element assembly includes a casing for fixing the filter element 10 and capable of being removed from the casing.
  • the front side of the 100 is withdrawn from the cartridge mount 20, and the cartridge 10 is placed upright and can be removed from the cartridge mount 20 for overall replacement.
  • the replacement of the filter element 10 can replace the filter element 10 without removing the whole machine from the cabinet or the wall, and the operation is simple and convenient, which can greatly reduce the cumbersomeness of the replacement of the filter element 10, and is beneficial to improve. User experience.
  • the filter cartridge mount 20 is a box-shaped structure, and the box-shaped top wall of the filter cartridge mount 20 is provided with a filter core discharge port, so that the filter cartridge 10 can be lifted from the filter cartridge mount 20 vertically upward through the filter cartridge outlet.
  • a filter translation opening can be provided in the box-shaped side wall of the cartridge mount 20 such that the cartridge 10 can be removed through the filter translation outlet.
  • the box-shaped side wall of the filter cartridge mount 20 may be a box-shaped front side wall, a left side wall or a right side wall of the filter cartridge mount 20, which is not particularly limited herein.
  • the pressure of the liquid flowing into or out of the filter element 10 is generally high (for example, the water pressure of the raw water is about 0.3 MPa, the water pressure from the filtered water booster pump 40 is about 0.6 MPa, etc.), so that as long as the filter element 10 is advanced At least one of the nozzles or the water outlets is disposed toward the inner end of the filter housing 1. Once the liquid is circulated in the nozzle extending toward the inner end, the filter element 10 is given an axially outward direction along the filter element 10. The force of the filter element 10 is relatively easy to fly out of the filter element slot 23 under the action of the force, which will bring a very bad user experience.
  • the filter element 10 is usually screwed into the filter cartridge mounting seat 20 to limit and fix the filter element 10, but this method is inconvenient to operate and is also easier to screw by the user.
  • the filter element 10 is detached from the filter cartridge mount 20 during operation, the reliability of the whole machine is low.
  • the cartridge mounting base 20 is preferably provided with a locking member for locking the filter cartridge 10 in the insertion direction of the filter cartridge 10, so that the filter cartridge 10 can be effectively prevented from being used when the whole machine is used.
  • the situation of flying off from the filter cartridge slot 23 greatly improves the reliability of the filter cartridge mounting assembly and the entire machine.
  • the filter element 10 is assembled by screwing. In order to firmly fix the filter element 10 to the filter element mount 20, the user usually needs to screw the filter element 10 a plurality of times. In the present technical solution, the filter element 10 only needs to be linearly inserted into the filter element 10.
  • the filter slot 23 is then used to lock the filter element 10 in the direction of the insertion direction of the filter element 10 (such as a snap lock). This is convenient for the user to operate, which is beneficial to enhance the user experience.
  • the locking member can have various suitable arrangements, for example, the locking member is a snap locking structure or a cover locking structure, and the locking member can be locked in the insertion direction of the filter element 10 to lock the filter element 10, This is no longer an example.
  • the locking member is pivotally mounted to the end lock cover 60 of the filter cartridge mount 20, and the end lock cover is disposed at the outer peripheral edge of the outer slot of the cartridge slot 23, such
  • the filter element 10 can be inserted into or withdrawn from the filter cartridge slot 23, and in the pivotally locked position of the end lock cover 60, the end lock
  • the cover 60 covers and locks the filter element 10 inserted in the filter element slot 23, so that when the user needs to replace the filter element 10, the end lock cover 60 can be pivoted open first, and the old filter element 10 is removed from the filter element slot 23.
  • the middle filter is taken out, and then the new filter element 10 is linearly inserted into the filter element slot 23, and then the end lock cover 60 is pivotally locked. At this time, the outer end surface of the filter element 10 abuts against the inner end surface of the end lock cover 60.
  • the locking member may also be a locking snap-fit structure formed on the outer peripheral wall of the filter element 10 and the inner peripheral wall of the filter element slot 23, which will not be exemplified herein.
  • the end lock cover 60 includes a lock cover body, one end of which is a pivot mounting end 61 and the other end is a bolt end 62.
  • a pivotal connection portion and a lock groove portion are provided on the outer peripheral edge of the outer slot of the filter element slot 23, that is, the pivotal mounting end 61 of the end lock cover 60 is connected to the pivotal connection portion, thus, pivoting In the locked position, the tongue end 62 can be locked to the lock groove.
  • the tongue end 62 is formed with a tongue mounting groove 63 and a locking tongue 64 and an elastic body 65 disposed in the tongue mounting groove 63.
  • One end of the elastic body 65 abuts against the inner groove wall of the tongue mounting groove 63.
  • the other end abuts and pushes out the locking tongue 64; and
  • the locking tongue end 62 further includes a pivotally mounted locking cover handle 66.
  • One end of the pivoting hinge point of the locking cover handle 66 is a control end 661, and the other end is extended.

Landscapes

  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Water Supply & Treatment (AREA)
  • Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
  • Devices For Dispensing Beverages (AREA)

Abstract

一种嵌入式净饮机,该嵌入式净饮机包括机壳(100)和水处理模块(200),机壳(100)的前面板上设有耗材替换入口(101);水处理模块(200)位于机腔中并包括水平摆置的滤芯(10)和固定设置的滤芯安装座(20);其中,滤芯(10)从耗材替换入口(101)横向向内插装于滤芯安装座(20),并能够横向向外抽出于滤芯安装座(20)以整体更换。

Description

嵌入式净饮机 技术领域
本发明属于家用电器领域,具体地,涉及一种嵌入式净饮机。
背景技术
现有的嵌入式净饮机由于能够完全嵌入橱柜或墙体内并与整体厨房形成为一个协调的整体,越来越得到消费者的青睐,越来越普及。其中,来自外部的原水直接通入净饮机中,而后通过净饮机内的滤芯过滤掉原水中的污染物进而得到可供用户直饮的纯水,制得的纯水从净饮机的出水口流入用户的盛液杯体中。
目前为便于更换滤芯,通常在整机机壳的顶面板上设置滤芯更换开口,滤芯经该滤芯更换开口竖直摆置于整机机壳中,如此,待更换滤芯时,就需先将整机从橱柜或墙体内抽出,而后通过滤芯更换开口更替滤芯,最后还需将整机再次嵌装入橱柜或墙体中,此种更换方式不便于用户操作,给用户带去不好的使用体验。
发明内容
针对现有技术中的上述不足或缺陷,本发明提供一种嵌入式净饮机,该嵌入式净饮机更换滤芯时,不需将整机从橱柜或墙体中抽出,操作简单便捷,能够极大地提高用户的使用体验。
为实现上述目的,本发明提供了一种嵌入式净饮机,该嵌入式净饮机包括:机壳,所述机壳的前面板上设有耗材替换入口;水处理模块,位于机腔中并包括水平摆置的滤芯和固定设置的滤芯安装座;其中,所述滤芯从所述耗材替换入口横向向内插装于所述滤芯安装座,并能够横向向外抽出于所述滤芯安装座以整体更换。
优选地,所述滤芯包括滤壳和位于所述滤壳内的滤芯部,所述滤壳的内端伸出有内接口管,所述滤壳的外端径向向外地固定伸出有外接口管部;以及所述滤芯安装座设有用于线性插装所述滤芯的滤芯插槽,所述滤芯插槽的內底壁设有内接口槽,所述滤芯安装座设有位于所述滤芯插槽的外槽口的外周沿的外接口槽部;其中,所述滤芯横向向内线性插装于所述滤芯插槽内时,所述内接口管插接于所述内接口槽中,所述外接口管部插接于所述外接口槽部。
优选地,所述外接口槽部位于所述滤芯插槽的外槽口的上方。
优选地,所述滤芯安装座设有沿所述滤芯的插装方向限位锁定所述滤芯的锁止件。
优选地,所述滤芯安装座上固定安装有水路板,所述水路板包括水路板进水口、水路板出水口和水路板插接口部,所述滤芯横向向内线性插装于所述滤芯插槽内时,所述外接口管部对接所述水路板插接口部。
优选地,所述滤芯部包括反渗透滤芯层,所述嵌入式净饮机还包括设置在所述反渗透滤芯层的进水口上游的滤水增压泵。
优选地,所述滤芯部还包括初级滤芯层,所述外接口管部包括作为所述初级滤芯层的进水口的原水外接口管、连接所述反渗透滤芯层的第一出水口的纯水外接口管以及连接所述反渗透滤芯层的第二出水口的废水外接口管,所述内接口管形成有与所述初级滤芯层的第一出水口连通的内接出水管以及与所述反渗透滤芯层的进水口相连的内接入水管,所述滤水增压泵设置在连接所述内接出水管与所述内接入水管的增压管路上。
优选地,所述外接口管部还包括作为所述初级滤芯层的第二出水口的粗滤水外接口管。
优选地,所述水路板插接口部包括与所述原水外接口管、所述纯水外接口管和所述废水外接口管一一对接的原水外接口槽、纯水外接口槽和废水外接口槽;所述水路板进水口包括原水输入口, 所述水路板出水口包括纯水输出口和废水输出口,所述原水外接口槽与所述原水输入口之间形成有原水管路,所述纯水外接口槽与所述纯水输出口之间形成有纯水管路,所述废水外接口槽与所述废水输出口之间形成有废水管路。
优选地,所述水路板还形成有滤水增压泵过流管路,所述滤水增压泵过流管路的入水口与所述内接出水管相连,所述滤水增压泵过流管路的出水口与所述滤水增压泵的入水口相连,所述水路板还包括分别设置在所述滤水增压泵过流管路和所述废水管路上的进水电磁阀和废水电磁阀。
优选地,所述原水外接口槽内设有原水单向阀,所述原水单向阀设置为在所述外接口管部对接所述水路板插接口部时打开且在所述外接口管部脱离所述水路板插接口部时关闭。
优选地,所述嵌入式净饮机包括与所述水路板出水口的纯水输出口相连的水箱,所述水箱、所述滤芯安装座以及所述滤水增压泵沿竖向向下依次排布。
优选地,所述嵌入式净饮机包括安装于所述机腔中的气瓶组件,所述气瓶组件包括气瓶安装座以及竖直摆置的气瓶,所述气瓶布置在所述滤芯的正前方;其中,所述气瓶从所述耗材替换入口安装于所述气瓶安装座中或从所述气瓶安装座中取出。
优选地,所述气瓶安装座包括竖向的气瓶容纳槽和枢转安装于所述气瓶安装座的顶端的减压气阀,所述减压气阀包括与所述气瓶的瓶口对接的进气阀口以及从所述进气阀口的周沿部伸出的气瓶引导件,所述气瓶的顶部嵌合于所述气瓶引导件中并跟随所述减压气阀枢转至所述气瓶容纳槽中。
优选地,所述嵌入式净饮机的前侧底部设有接水盒容腔,所述接水盒容腔内置有接水盒,所述前面板包括用于封盖所述接水盒容腔并能够枢转打开的底条装饰面板,所述气瓶的底部设置在所述接水盒的正后方。
通过上述技术方案,在本发明中,机壳的前面板上设有耗材替换入口,机腔中设有水平摆置的滤芯和固定设置的滤芯安装座,并且滤芯不仅能够通过耗材替换入口横向向内插装于滤芯安装座,而且还能横向向外从滤芯安装座内整体抽出,此种更换滤芯方式,操作简单便捷,能够极大地降低滤芯更换的繁琐程度,有利于提升用户的使用体验。
本发明的其它特征和优点将在随后的具体实施方式部分予以详细说明。
附图说明
附图是用来提供对本发明的进一步理解,并且构成说明书的一部分,与下面的具体实施方式一起用于解释本发明,但并不构成对本发明的限制。在附图中:
图1为本发明的第一种优选实施方式的嵌入式净饮机的结构示意图;
图2为图1的结构***图;
图3和图4为图1所示的嵌入式净饮机的滤芯和气瓶的更换过程示图,其中,图3展示了底条装饰面板打开、接水盒抽出且气瓶外盖板打开时的结构示意图,图4进一步显示了气瓶和滤芯外盖板从机腔内取出后的结构示意图;
图5和图6为图2中的水处理模块和气瓶组件的结构示意图,其中,图6展示了气瓶和滤芯外盖板脱离气瓶安装座后的示图;
图7为图5的整体剖视图;
图8为图6的整体剖视图;
图9为图2中的水处理模块和气瓶组件的结构示意图,其中,气瓶、滤芯外盖板和滤芯已取出;
图10为本发明的优选实施方式的滤芯的结构示意图;
图11为本发明的优选实施方式的气瓶组件和制苏打模块之间的管线示意图;
图12为水路板脱离滤芯安装座的结构示意图;
图13为图5中的水路板的结构示意图;
图14为图13的整体剖视图;
图15为图9中的端部锁盖的结构示意图;
图16为图15中的A-A截面的剖视图,其中,锁舌部分地伸出锁舌安装槽;
图17为图16的侧视图;
图18为本发明的第二种优选实施方式的嵌入式净饮机的结构示意图,其中,滤芯安装座从机壳的前侧向抽出,且端部锁盖处于枢转锁合位置。
附图标记说明:
100       机壳                        200        水处理模块
400       接水盒                      500        制热模块
600       制冷模块                    700        气瓶组件
800       制苏打模块
1         滤壳                         10         滤芯
11        内接口管                     12         外接口管部
16        防溢浮球组件                 17         UV LED杀菌装置
20        滤芯安装座                   22         外接口槽部
23        滤芯插槽                     24         滤芯寿命计时键
30        水路板                       31         原水输入口
33        水路板插接口部               35         进水电磁阀
36        废水电磁阀                   40         滤水增压泵
41        隔音罩                       50         水箱
60        端部锁盖                     61         枢转安装端
62        锁舌端                       63         锁舌安装槽
64        锁舌                         65         弹性体
66        锁盖把手                     71         气瓶
72        气瓶安装座
101       耗材替换入口                 102        滤芯外盖板
103       气瓶外盖板                   105        底条装饰面板
121       原水外接口管                 122        纯水外接口管
123       废水外接口管                 124        粗滤水外接口管
321       纯水输出口                   322        废水输出口
323       滤水输出口                   331        原水外接口槽
332       纯水外接口槽                 333        废水外接口槽
334       粗滤水外接口槽               341        原水管路
342       纯水管路                     343        废水管路
344       粗滤水管路                   345        滤水增压泵过流管路
661       控制端                       662        压靠端
721       第一出风口                   722        减压气阀
723       气瓶引导件                   724        第二出风口
731       侧进风口                     107A       下沉凹槽
具体实施方式
以下结合附图对本发明的具体实施方式进行详细说明。应当理解的是,此处所描述的具体实施方式仅用于说明和解释本发明,并不用于限制本发明。
需要说明的是,在不冲突的情况下,本发明中的实施例及实施例中的特征可以相互组合。
在本发明中,在未作相反说明的情况下,使用的方位词如“上、下、顶、底”通常是针对附图所示的方向而言的或者是针对竖直、垂直或重力方向上而言的各部件相互位置关系描述用词。
下面将参考附图并结合实施例来详细说明本发明。
本发明提供一种嵌入式净饮机,参照图1、图2、图3和图9,该嵌入式净饮机包括机壳100,机壳100的前面板上设有耗材替换入口101;水处理模块200,位于机腔中并包括水平摆置的滤芯10和固定设置的滤芯安装座20;其中,滤芯10从耗材替换入口101横向向内插装于滤芯安装座20,并能够横向向外抽出于滤芯安装座20以整体更换。
在本技术方案中,机壳100的前面板上设有耗材替换入口101,滤芯安装座20固定设置于机腔中,并且滤芯10不仅能够从耗材替换入口101横向向内插装于滤芯安装座20中,而且还能够从耗材替换入口101横向向外抽出于滤芯安装座20,如此,待需更换滤芯10时,用户便只需从机壳100的前侧将滤芯10横向向外地从滤芯安装座20中抽出,而后再将替换的滤芯10再从机壳100的前侧横向向内插装入滤芯安装座20内即可,此种滤芯10更换方式,不需将整机从橱柜或墙体内抽出,也不需将滤芯安装座20与滤芯10一同从机腔中抽出,就可对滤芯10进行整体更换,操作简单便捷,能够极大地降低滤芯10更换的繁琐程度,有利于提高用户的使用体验。此外,滤芯安装座20不随滤芯10一同从机腔中抽出,即滤芯安装座20固定设置于机腔中,这样,在用户自行更换滤芯10时,还能够有效避免由于用户的误操作而对滤芯安装座20上设置的管路等部件产生干涉(如碰伤管路),有利于提高整机的可靠性和使用寿命。
具体地,滤芯10可以呈圆筒状、立方体状或者其它适当的形状。而用于线性插装滤芯10的滤芯插槽23的形状应与滤芯10的形状相适配,例如滤芯10呈圆筒状时,参照图6、图9和图10,滤芯插槽23也应优选地呈圆筒状,当然滤芯插槽23也可以为横截面为圆弧形等其它的插槽形状。
优选地,参照图9和图10,滤芯10包括滤壳1和位于滤壳1内的滤芯部,滤壳1的内端伸出有内接口管11,滤壳1的外端径向向外地固定伸出有外接口管部12;以及滤芯安装座20设有用于线性插装滤芯10的滤芯插槽23,滤芯插槽23的內底壁设有内接口槽,滤芯安装座20设有位于滤芯插槽23的外槽口的外周沿的外接口槽部22;其中,滤芯10横向向内线性插装于滤芯插槽23内时,内接口管11插接于内接口槽中,外接口管部12插接于外接口槽部22。如此设置,在更换滤芯10时,用户只需将滤芯10直接从滤芯插槽23内横向向外抽出,而后再在滤芯10插装入滤芯插槽23的过程中,将内接口管11和外接口管部12分别一一对应插装入内接口槽和外接口槽部22中即可,这样,更便于用户更换滤芯10且可操作性也较强。进一步地,在外接口管部12向内伸出有多个外接口管,如此,就可在滤芯插槽23的外槽口的外周沿上设置用于与多个外接口管分别对接的多个外接口槽,能够使整机的结构更为地小巧紧凑。当然,滤芯10还可以有其它适当的插装于滤芯安装座20的方式,在此不再赘述。
进一步地,外接口槽部22位于滤芯插槽23的外槽口的上方,参照图9,这样,相对于将外接口槽部22设置于其它位置,将外接口槽部22设于滤芯插槽23的正上方,不仅有利于液体顺畅地通入滤芯10内,而且还能有效避免流入滤芯10内的液体由于带有气体而出现气堵的问题。此外,为便于用户将内接口管11对准并插接于内接口槽中,滤芯插槽23的内径与滤芯10的外径之间的差值应优选为不大于1mm。
优选地,嵌入式净饮机还包括安装于机腔中的气瓶组件700,参照图1至图4,气瓶组件700包括气瓶安装座72以及竖直摆置的气瓶71;其中,气瓶71从耗材替换入口101安装于气瓶安装座72中或从气瓶安装座72中取出。
在本技术方案中,通过将气瓶组件700集成于嵌入式净饮机内,能够便捷地向嵌入式净饮机内需要供气的模块(例如制苏打模块800)供应气体,便于用户使用操作,有利于提升用户的使用体验,并且将气瓶组件700设置于整机中,就不需占用额外的外部空间以容置气瓶组件700,而且相关的管路和电线也均能够隐藏于嵌入式净饮机中,安全性能高且也更为美观。此外,气瓶71还可经耗材替换入口101从机壳100的前侧进行更换,如此设置,待需更换气瓶71时,用户只需通过该耗材替换入口101就可将需更替气瓶71从机腔中取出,而后再通过该耗材替换入口101将新的气瓶71装入机腔中即可。此种气瓶71更替方式,不需将整机从橱柜或墙体中抽出,操作简单便捷,能够极大地降低耗材更换的繁琐程度,有利于提高用户的使用体验;当然,用户可对整机内的气瓶71进行更换,还能够使得整机长期具有制作苏打水的功能,也有利于提高用户的使用体验。
其中,由于气瓶71的更换周期远小于滤芯10的更换周期,因此,为便于用户更换耗材,参照图2和图4,将气瓶71优选地布置在滤芯10的正前方。进一步地,在气瓶71与滤芯10之间设置有用于遮盖滤芯安装座20的滤芯外盖板102,参照图3和图4,这样,用户在更换气瓶71时,滤芯10等部件就不会裸露出来而影响美观,有利于提高用户的使用体验。
具体地,参照图2和图11,嵌入式净饮机包括安装于机腔内的制苏打模块800,气瓶组件700连接制苏打模块800,此时,气瓶71优选为二氧化碳气瓶71,来自气瓶71的二氧化碳气体通入制苏打模块800以用于制作苏打水。
需要特别说明的是,本发明中的气瓶组件700不局限于给制苏打模块800供气,还可以用于给其它需要供气的模块供应气体。此外,需要供气的模块不同,气瓶71内装置的气体种类也会发生相应的变化,即气瓶71除了可以为二氧化碳气瓶71,还可以为氧气气瓶71或氮气气瓶71等,具体可视实际的工艺需求而定。
优选地,气瓶71的直径应不小于50mm且高度不小于160mm,如此设置,便于用户自行采购气瓶71以进行更替。具体地,现今市面上用户能够自行采购得到的气瓶71多为0.3L和0.6L这两种规格,且这两种规格的气瓶71的直径均不小于50mm,且高度也均不小于160mm。
另外,经发明人多次试验,气瓶71的更换周期普遍较短,例如以0.6L的气瓶71为例,更换周期普遍不超过3个月,如此频繁更换不利于用户的便捷使用,因此,参照图11,制苏打模块800的进气口包括连接气瓶71的气瓶进气口和外接气口,这样,用户就可将设置于整机外部的外接气瓶通过该外接气口接入制苏打模块800,且由于外接气瓶的规格可不受机腔空间的限制,则用户可自行购买较大规格(例如2L)的外接气瓶,这样能够大幅降低气瓶71的更换频率,进而便于用户使用操作。
优选地,气瓶组件700与制苏打模块800之间的连接气管中设有压力检测器,参照图11,嵌入式净饮机包括机壳100,机壳100的前面板设有气瓶更换警示单元,压力检测器用于在检测到连接气管中的气体压力小于预设值时触发气瓶更换警示单元。如此设置,待气瓶71内的气体将用完时,能够给予用户警示以提醒用户更换气瓶71。其中,预设值应优选地不小于0.2MPa且不大于0.3MPa。
具体地,参照图5至图8,气瓶安装座72设有竖向的气瓶容纳槽,气瓶安装座72的顶端设有减压气阀722,气瓶71嵌装于气瓶容纳槽中,气瓶71的瓶口对接减压气阀722的进气阀口,即气瓶71中的气体经减压气阀722减压后再通往需要供气的模块(如制苏打模块800)。其中,为便于用户将气瓶71从气瓶容纳槽中装入或取出,气瓶容纳槽的内周壁与气瓶71的外周壁之间的间距应优选地不小于20mm。
优选地,减压气阀722枢转安装于气瓶安装座72的顶端,减压气阀722包括从进气阀口的周沿部伸出的气瓶引导件723,参照图5至图8,气瓶71的顶部嵌合于气瓶引导件723中并跟随减压 气阀722枢转至气瓶容纳槽中,这样,可先向上枢转气瓶引导件723以便于用户将气瓶71的瓶口对准减压气阀722的进气阀口,而后再将气瓶引导件723连同气瓶71一起枢转回气瓶容纳槽内,此时可将气瓶容纳槽的内周壁与气瓶71的外周壁之间的间距设置得较小,有利于使整机结构更为的小巧紧凑。
其中,参照图5至图8,气瓶引导件723应形成有与气瓶71的顶部匹配的嵌合容腔,此外,气瓶容纳槽和嵌合容腔均为沿轴截面剖切的竖向筒腔。当然,气瓶容纳槽和嵌合容腔还可以为其它适当的筒腔形式,在此不再赘述。
具体地,参照图1和图3,在前面板上还设有用于遮盖耗材替换入口101的气瓶外盖板103,如此可防止气瓶71以及其它的内部构件从该耗材替换入口101裸露出来,进而使整机更为美观。
优选地,嵌入式净饮机的前侧底部设有接水盒容腔,接水盒容腔内置有接水盒400,参照图1和图3,气瓶71的底部设置在接水盒400的正后方,这样,相对于气瓶71设置于接水盒400的上方,能够有效减少气瓶71的轴向高度对整机高度的影响,即有利于降低整机高度,促使整机结构更为小巧紧凑。进一步地,为遮盖接水盒400的装配缝隙,前面板还包括用于封盖接水盒容腔并能够枢转打开的底条装饰面板105。
优选地,滤芯安装座20上固定安装有水路板30,参照图6、图9、图10和图12,水路板30包括水路板进水口、水路板出水口和水路板插接口部33,滤芯10横向向内线性插装于滤芯插槽23内时,外接口管部12对接水路板插接口部33。可以理解地,传统的嵌入式净饮机多采用塑胶或硅胶水管连接各水路部件,这样,致使整机内具有管路多、管路接头多等缺点,从而提高水路漏水风险,此外,由于管路无集成,也会致使整机体积较大,致使整机显得较为臃肿笨重,也会影响整机美观。因此,通过在嵌入式净饮机中设置水路板30,不仅能够有效降低漏水风险,而且还能够使整机小巧紧凑,均有利于提高用户的使用体验。当然,管路以及管路接头少了,也即装配的繁琐程度降低了,还能够大幅提高整机的装配效率。
优选地,滤芯10为一体式复合滤芯,即滤芯部设有不同材料的多重滤芯层,如此通过将多种滤芯复合成一体式滤芯,能够大幅减小机腔中容置滤芯10所需的空间,从而使整机小巧紧凑,有利于降低整机的运输和存储成本,当然也可使整机更为小巧美观。此外,减少了嵌入式净饮机中所需设置的滤芯10数量,还能够有效减少接头数量以及漏水风险。
进一步地,滤芯部包括反渗透滤芯层,参照图5、图9和图10,嵌入式净饮机还包括设置在反渗透滤芯层的进水口上游的滤水增压泵40。其中,反渗透滤芯层为主要由RO膜构成的滤芯层,能够有效去除重金属离子或细菌等杂质。可以理解地,通入滤芯10内的原水普遍为外接自来水管中的自来水,且现今自来水管内的水压通常为0.3MPa左右,但液体压力需达到0.6MPa左右才能通过反渗透滤芯层进行过滤,因此,为使液体能够经反渗透滤芯层进行过滤,就需增设滤水增压泵40以对液体进行增压(如增压至0.6MPa左右)。
优选地,参照图8,滤芯10水平摆置且位于滤水增压泵40的上方,如此,将水处理模块200中的滤芯10和滤水增压泵40设置为沿竖直方向从上往下排布,能够使水处理模块200结构更为小巧紧凑,进而使整机结构也更为紧凑,这样,能够大幅提高机腔的空间利用率,从而使整机更为小巧美观,在降低了整机的运输和存储成本的同时,还提升了用户的使用体验。当然,滤芯10和滤水增压泵40沿竖直方向排布,还便于布管走线,进而有利于提高整机的装配效率。
进一步地,嵌入式净饮机包括与水路板出水口的纯水输出口321相连的水箱50,如此,就可将制得的纯水先存储于水箱50中以满足用户的大通量的需求。此外,为使整机结构小巧紧凑,参照图6、图8和图9,优选地将水箱50、滤芯安装座20以及滤水增压泵40沿竖向向下依次排布。
为确保水箱50中的水位平衡,可在水箱50中优选设置电子水位检测装置。该电子水位检测装置能够实时监测水箱中的水位高度,并将水位高度信号反馈至嵌入式净饮机的控制器中,控制器联动控制电子水位检测装置和滤水增压泵40以控制水箱50内的水位高度。当控制器接收到水箱50 缺水的信号时,即时控制启动滤水增压泵40以对水箱50进而补水。当控制器接收到水箱50满水的信号时,即时控制关闭滤水增压泵40以停止继续供水。
可见,在水箱50中增设电子水位检测装置能够有效维持其水位区间,使水箱50中的储水量处于较稳定的状态,从而确保整机出水嘴的出水稳定,并且避免了出现水箱50溢水的情况,整机的工作稳定性得以大大提高。
为了进一步防止水箱50出现溢水的情况,参照图7,可增设位于水箱50顶部的采用机械结构构成的防溢浮球组件16。其中,该防溢浮球组件16设置为当水箱50内的水位高度达到溢出高度时封堵水箱50的进水管口。
此外,参照图7和图9,为了防止水箱50中的储水由于长期存放而逐渐滋生出浮游物和细菌,可在水箱盖上优选设置UV LED杀菌装置17或冷阴极UV杀菌装置。UV LED杀菌装置17或冷阴极UV杀菌装置能够间歇性地开启以高效杀菌,确保用户的饮用安全。
具体地,为了确保用户能够安心饮用嵌入式净饮机所制的纯水,水处理模块200中还设有TDS检测装置。TDS检测装置包括上游探针和下游探针,上游探针设置在水处理模块200的入水口处以检测原水(通常为自来水)的水质,下游探针设置在水箱50内以检测经水处理模块200过滤得到的纯水的水质。TDS检测装置能够将过滤前后的水质比较结果反馈至嵌入式净饮机的控制面板上并显示出对应的水质情况。例如,可将水质划分为“优、良、差”显示在控制面板上以供用户参考。
优选地,在滤水增压泵40外还设有隔音罩41,参照图5至图8,如此,能够有效降低滤水增压泵40作业时所发出的噪音,有利于提高用户的使用体验。进一步地,在隔音罩41的内周壁上设置隔音棉,利用隔音罩41和隔音棉的隔音特性来双重阻隔增压泵的工作噪音向外传播,确保用户能够处于安静舒适的环境中使用嵌入式净饮机。
具体地,滤水增压泵40固定安装于机腔的底面板上,这样,能够有效降低滤水增压泵40的作业振动和噪音。当然,此时滤水增压泵40外设置的隔音罩41也应与滤水增压泵40一同固定安装于机腔的底面板上。
优选地,参照图5和图7,滤芯安装座20固定支撑于隔音罩41的顶部,这样,滤芯安装座20连同滤芯10能够稳固地安装于隔音罩41上,有利于提高水处理模块200乃至整机的可靠性。
另外,为使水处理模块200结构更为小巧紧凑,继续参照图5和图7,水箱50固定支撑于滤芯安装座20的顶部,并且,将水箱50固定支撑于滤芯安装座20的顶部,还可使水箱50稳固地安装于滤芯安装座20上,也有利于提升水处理模块200的可靠性。
优选地,参照图1、图2、图5和图7,嵌入式净饮机包括具有横向摆置的滤芯10的水处理模块200和功能模块,且功能模块用于功能化处理来自水处理模块200的纯水;其中,水处理模块200和功能模块在机腔内沿水平方向间隔分布,也即将机腔分隔成沿水平方向间隔分布的多个腔室,以用于容置各模块,如此,相对于将水处理模块200以及功能模块设置为沿竖直方向间隔排布,设置为沿水平方向间隔分布能够有效提高机腔的空间利用率,使整机小巧紧凑,有利于降低嵌入式净饮机的运输和存储成本,当然,整机的体积小了,还可使整机更为小巧美观,有利于提升用户的使用体验。此外,若嵌入式净饮机内的各模块沿竖直方向间隔排布,则除了位于最下层的模块可直接安装于机腔的底面板上,其它的模块均需通过支撑板用于固定支撑,这样,不便于各模块之间的布管走线,而且通过支撑板将各模块分隔开来,也不利于整机的散热,因此,将水处理模块200以及功能模块设置为沿水平方向间隔分布,不仅便于布管走线以提高整机的装配效率,还有利于整机散热以提升用户的使用体验。
优选地,参照图2,功能模块包括制热模块500,制热模块500与水处理模块200管路相连,这样,来自水处理模块200的纯水,就可通过制热模块500进行加热,进而制得沸水或温水以供用户使用。
具体地,制热模块500包括用于保持储水恒温的热罐和即热装置,且在热罐与即热装置之间 以及水处理模块200与即热装置之间均设有水泵。其中,在水泵抽水的过程中其出水管中的水流是呈断续水流状的,因此水泵的出水管在出水时会产生较大的窜动,且由于水泵的出水管一般是直接摆置于机腔内而缺少相应的固定装置的,其窜动时很容易会与机腔内的其他部件发生碰撞,从而产生较大的工作噪音。为此,可在水泵的出水管上外包柔软的隔音棉以缓冲其与机腔内的其他部件的碰撞,从而低减水泵的工作噪音。
进一步地,功能模块还包括与水处理模块200管路相连的制冷模块600,参照图2,从水处理模块200流出的纯水一部分流入制热模块500,另一部分进入制冷模块600,纯水经制冷模块600冷冻后制得低温冷水,以供用户饮用。
具体地,当碳化罐内的纯水温度处于4℃左右时,制得的苏打水的饮用口感最佳,但来自水处理模块200的纯水为常温水(通常为25℃),其与制作最佳苏打水口感的液体温度相差较大,因此,进一步将制苏打模块800与制冷模块600毗邻设置且管路相连,参照图2,如此,将来自制冷模块600的低温冷水直接通入制苏打模块800(也即碳化罐),就不需对碳化罐内的纯水进行预冷却,有利于降低整机的作业成本,从而提升用户的使用体验。
另外,制冷模块600包括冷罐和制冷增压泵,制冷增压泵设置在冷罐的进水管路上,冷罐位于制冷增压泵的上方,如此设置,可使制冷模块600更为小巧紧凑。此外,将制冷增压泵固定安装于机腔的底面板上、在制冷增压泵上设置减震垫或制冷泵隔音罩,还能够有效降低制冷增压泵的作业振动和噪音,也有利于提高用户的使用体验。
为降低滤水增压泵40以及制冷增压泵的作业振动和噪音,优选地,制冷模块600与水处理模块200均应靠近机腔的内侧壁设置(即均应靠近整机的底脚设置),因此,参照图2,制冷模块600与水处理模块200优选地分别位于制热模块500的两侧。
优选地,参照图2,在机壳100的背面板设有第一出风口721,且该第一出风口721中嵌装有第一散热风扇。如此,与现有的嵌入式净饮机相比,本技术方案的嵌入式净饮机通过将第一出风口721设置在背面板上,避免了从机内抽出的热风直接进入用户环境,大大提高了用户的使用体验。其中,第一出风口721与橱柜中的排风通道相连通。
具体地,由于压缩机为机腔中的主要发热源,需要优先对其散热以确保其工作稳定性。特此,本实施方式中的嵌入式净饮机的背面板上还设有后进风口,压缩机可优选靠近该后进风口设置。当第一散热风扇启动旋转时,后进风口与第一出风口721会形成相应的对流风道,由于压缩机处于该对流风道中,其产生的热量能够被迅速排出机外,从而达到快速散热的效果。另一方面,由于冷罐具有隔热保温的要求,其附近环境中不宜存在过快的热交换过程,因此可将冷罐优先设置在远离后进风口的位置,例如,可将压缩机安装在冷罐与后进风口之间,这样既能满足压缩机的快速散热,又能满足冷罐的隔热保温。
进一步地,为确保压缩机产生的热量能够被及时排出机外,可将压缩机与第一散热风扇优选设置为同步工作,即压缩机启动时,第一散热风扇启动旋转,压缩机关闭时,第一散热风扇停止旋转。需要说明的是,压缩机的启动和关闭与冷罐中的水温有关,当冷罐的水温高于预设上阈值时,压缩机启动且其蒸发器对冷罐进行冷却,当水温低于预设下阈值时,压缩机关闭。
优选地,在嵌入式净饮机的侧面板上设有侧进风口731和/或在嵌入式净饮机的前面板的底部设有前进风口。具体地,上述的前进风口、侧进风口731和后进风口能够以不同的组合形式设置在本发明的嵌入式净饮机的机壳100上,各个进风口的具***置和个数视实际散热要求而定,并且前进风口、侧进风口731和后进风口的各种组合形式也应当属于本发明的考虑范围之内。
优选地,参照图2,嵌入式净饮机的背面板上设置第二出风口724以及嵌装于该第二出风口724中的第二散热风扇。其中,机腔中还设有用于探测机内温度的感温探头,当感温探头探测的机内温度高于预设最大值时,第二散热风扇启动旋转,当探测的机内温度低于预设最小值时,第二散热风扇停止旋转。可见,无论此时第一散热风扇是处于启动或关闭状态,第二散热风扇都能确保机 内温度维持在相对稳定的状态,有利于提高整机的工作稳定性和散热灵敏度。
具体地,参照图1和图2,嵌入式净饮机包括限定机腔的前面板和背面板,其中,背面板和前面板均呈长方形,背面板的宽度和高度均不大于前面板,背面板的高度和宽度均不大于595mm。
具体地,在现有的符合国家标准的整体橱柜中,整体橱柜的嵌装孔的开口规格主要有两种,即高度和宽度均为595mm,以及,高度为595mm和宽度为445mm。因此,将背面板的高度和宽度均设置为不大于595mm,能够使嵌入式净饮机适配地嵌装入整体橱柜的嵌装孔中,进而有利于通用化大规模生产。可以理解地,当嵌入式净饮机的背面板的宽度介于445mm至595之间时,适于装入嵌装孔的高度和宽度均为595mm的整体橱柜中;当嵌入式净饮机的背面板的宽度小于445mm时,则该嵌入式净饮机能够同时装入嵌装孔的宽度为595mm和445mm这两种规格的整体橱柜中。
优选地,背面板的高度为300mm~460mm,背面板的宽度为380mm~565mm,背面板与前面板之间的距离不小于300mm且不大于550mm,参照图1和图2,如此,不仅可使嵌入式净饮机能够同时适配地装入两种嵌装孔开口规格的整体橱柜内,以满足不同用户的差异化需求,而且此种规格的嵌入式净饮机,其内可同时兼有净水、制热、制冷以及制苏打等多种功能,以满足用户的多样化需求,有利于提高用户的使用体验。
进一步地,前面板的高度应不小于450mm且不大于460mm,且宽度应不小于580mm且不大于600mm。可以理解地,当嵌装孔的开口高度为595mm且宽度为445mm时,若前面板的高度和宽度过大,则会出现嵌入式净饮机与嵌装于整体橱柜内的其它家用电器(如洗碗机)的外观尺寸不匹配的情形,致使整体橱柜不协调不美观,影响用户的使用体验;若前面板的高度和宽度过小,则嵌入式净饮机装入整体橱柜内后,则会有装配缝隙显现,也会影响整体橱柜的美观性。同理,当嵌装孔的开口高度均为595mm时,前面板的宽度过大或过小,也会致使整体橱柜不协调不美观,进而影响用户的使用体验。
另外,适于装入两种嵌装孔开口规格的整体橱柜内的嵌入式净饮机,其整机尺寸也可以为:前面板的高度为380mm~390mm,前面板的宽度为580mm~600mm,背面板的高度为250mm~390mm,背面板的宽度为380mm~565mm,背面板与前面板之间的距离为300mm~550mm;或者,其整机尺寸还可以为:前面板的高度还可以为600mm~610mm,前面板的宽度为580mm~600mm,背面板的高度为400mm~610mm,背面板的宽度为380mm~565mm,背面板与前面板之间的距离为300mm~550mm;当然也不限于此。
优选地,参照图2,机腔的底面板的中心部设有下沉凹槽107A,且在该下沉凹槽107A内还设有漏水检测装置,这样,当整机内的水路管线、水路接头等有液体泄漏时,就会滴落至底面板上,进而汇流入该下沉凹槽107A中,而后通过位于下沉凹槽107A内设置的漏水检测装置以用于判定整机是否存有漏水的情形。
另外,在嵌入式净饮机的前面板上设有照明小夜灯,具体地,通过设置小夜灯,当光线较暗时,可通过用户触碰或红外感应等方式触发该照明小夜灯作业,以用于照亮饮水区域,从而便于用户使用操作。
优选地,在嵌入式净饮机的底部,沿宽度方向的两侧分别设置有抽拉导轨,这样,当整机出现故障时,还可将整机从整体橱柜的嵌装孔中抽出,以便于对整机进行检修。
另外,滤芯部还包括初级滤芯层,参照图6、图9和图10,外接口管部12包括作为初级滤芯层的进水口的原水外接口管121、连接反渗透滤芯层的第一出水口的纯水外接口管122以及连接反渗透滤芯层的第二出水口的废水外接口管123,此外,内接口管11形成有与初级滤芯层的第一出水口连通的内接出水管以及与反渗透滤芯层的进水口相连的内接入水管,滤水增压泵40设置在连接内接出水管与内接入水管的增压管路上。
具体地,初级滤芯层主要用于去除铁锈、泥沙、吸附水中的异色、异味、余氯及部分有机物,可选地,初级滤芯层主要由PP棉和活性炭复合构成的PAC滤芯层。并且将滤水增压泵40设置在连 接内接出水管与内接入水管的增压管路上,还能够使得液体经初级滤芯层过滤后再进入滤水增压泵40,能够有效地避免泥沙等杂质堵塞或损伤滤水增压泵40,有利于提高增压泵的作业性能和使用寿命。此外,原水先经初级滤芯层过滤后再通入反渗透滤芯层乃至更多的其它材质的滤芯层,还能够防止液体中的铁锈、泥沙等杂质损伤滤芯层,进而提高滤芯层乃至整个一体式滤芯的使用寿命。
优选地,参照图10,外接口管部12还包括作为初级滤芯层的第二出水口的粗滤水外接口管124。可以理解地,由于经初级滤芯层过滤后的初级过滤水能够满足用户淘米、洗菜、洗漱等生活用水的要求,因此,可将经初级滤芯层过滤后的初级过滤水通过粗滤水外接口管124引出至整机外部,以作为生活用水供用户使用,如此,能够使嵌入式净饮机的功能更为多样,进而有利于提高用户的使用体验。进一步地,水路板插接口部33包括与粗滤水外接口管124对接的粗滤水外接口槽334,水路板出水口包括粗滤水输出口323,且粗滤水外接口槽334与粗滤水输出口323之间还形成有粗滤水管路344。
另外,内接口管11为同心管,内接出水管和内接入水管中的一者为圆形管,另一者为环形管且环绕该圆形管设置,如此,能够使滤水增压泵40仅采用单个连接件就可直接与同心布置的内接出水管和内接入水管进行套接,这样,能够减少整机内所需设置的管路和管路接头的数量,从而降低了装配的繁琐程度,进而提高了整机的装配效率。
在本发明的优选实施例中,滤芯10包括滤壳1和位于滤壳1内的滤芯部,且滤壳1上设有内接出水管、内接入水管、原水外接口管121、纯水外接口管122、废水外接口管123以及粗滤水外接口管124,滤芯部包括初级滤芯层、反渗透滤芯层和后置碳滤芯层。其中,初级滤芯层和反渗透滤芯层由外向内依次设置且相互间隔开,后置碳滤芯层与反渗透滤芯层相连且位于反渗透滤芯层的下游;原水外接口管121作为初级滤芯层的进水口,初级滤芯层的第一出水口连接内接出水管,第二出水口与粗滤水外接口管124相连通;内接入水管与反渗透滤芯层的进水口相连通,反渗透滤芯层的第一出水口连接后置碳滤芯层的进水口,第二出水口与废水外接口管123相连;纯水外接口管122作为后置碳滤芯层的出水口。
优选地,初级滤芯层可以为主要由PP棉和活性炭复合构成的PAC滤芯层,例如初级滤芯层可以包括沿径向由外至内依次分布的PP无纺布卷绕层(PP无纺布卷绕层的精度可以设置为5μm)和活性炭纤维卷绕层,不仅可有效去除液体中的铁锈、泥沙等大颗粒物质,而且还可吸附液体中的异色、异味、余氯及部分有机物,如此,能够避免液体中的大颗粒物质等对反渗透滤芯层和后置碳滤芯层产生影响,有利于提高反渗透滤芯层和后置碳滤芯层的使用寿命。此外,由于经初级滤芯层过滤后的初级过滤水能够满足用户淘米、洗菜、洗漱等生活用水的要求,因此,还可将经初级滤芯层过滤后的初级过滤水通过粗滤水外接口管124引至整机外部,以作为生活用水供用户使用,这样,可使嵌入式净饮机的功能更为多样,有利于提高用户的使用体验。
另外,反渗透滤芯层为主要由RO膜构成的滤芯层,能够有效去除重金属离子或细菌等杂质;而后置碳滤芯层可以为活性炭滤芯层,例如后置碳滤芯层为由活性炭棒构成的滤芯层,可以去除挥发性有机物、残余余氯,并可以保留必须的矿物质如微量钙、硅酸、碳酸根等,可以使口感甘甜、柔和。
在本优选实施方式中,原水(例如来自外部的自来水)先经初级滤芯层初步过滤后,再依次通入反渗透滤芯层和后置碳滤芯层作进一步地深层过滤,这样,能够有效滤除0.00001μm以上的有害物质,进而制成可供用户直接饮用的纯水。需要特别说明的是,一体式复合滤芯中所设置的滤芯层的数量、种类以及液体流经顺序并不限于此,还可以为其它多种适当的设置方式,具体可视实际的工艺需求而定,在此不再赘述。
具体地,水路板插接口部33包括与原水外接口管121、纯水外接口管122和废水外接口管123一一对接的原水外接口槽331、纯水外接口槽332和废水外接口槽333;参照图13和图14,水路板进水口包括原水输入口31,水路板出水口包括纯水输出口321和废水输出口322,原水外接口槽331 与原水输入口31之间形成有原水管路341,纯水外接口槽332与纯水输出口321之间形成有纯水管路342,废水外接口槽333与废水输出口322之间形成有废水管路343。如此设置,当滤芯10横向向内线性插装于滤芯插槽23内时,水路板30的原水输入口31与滤芯10的原水外接口管121相连通,以使从外部接入的原水顺着原水管路341流入滤芯10;滤芯10的纯水外接口管122连通水路板30的纯水输出口321,这样经滤芯层层过滤制成的可供用户直接饮用的纯水就可经纯水管路342流出;滤芯10的废水外接口管123和水路板30的废水输出口322相连通,这样,来自初级滤芯层的初级过滤水经反渗透滤芯层处理后得到的含有重金属离子或细菌等杂质的废水,就可通过该废水管路343从整机排出。
优选地,水路板30还形成有滤水增压泵过流管路345,参照图12至图14,滤水增压泵过流管路345的入水口与内接出水管相连,滤水增压泵过流管路345的出水口与滤水增压泵40的入水口相连,水路板30还包括设置在滤水增压泵过流管路345上的进水电磁阀35。其中,进水电磁阀35主要用户切断或连通滤水增压泵过流管路345,且一般地滤水增压泵40与进水电磁阀35同步启停,即当进水电磁阀35切断增压泵过流管路345时,滤水增压泵40同时停止作业,此时内接入水管内就不会再有液体流入,也即水处理模块200停止制作纯水;而当进水电磁阀35连通增压泵过流管路345时,滤水增压泵40同时启动并将液体泵送至内接入水管,进而在纯水输出口321流出制得的纯水。
具体地,将进水电磁阀35设置在初级滤芯层的下游,还能够使得液体经初级滤芯层过滤后再进入进水电磁阀35,可防止泥沙等杂质堵塞或损伤进水电磁阀35,能够提高进水电磁阀35的使用寿命。此外,将进水电磁阀35设置于滤水增压泵过流管路345上,还能够减少管路和管路接头的设置数量,不仅能够有效降低整机的漏水风险,提高用户的使用体验,而且还能大幅降低整机的装配繁琐程度,有利于提高整机的装配效率。
另外,参照图12至图14,水路板30还包括设置在废水管路343上的废水电磁阀36,其中,设置于废水管路343上的废水电磁阀36主要用于调节废水比例,以平衡水处理模块200中的水路管线的工作压力。当然,将废水电磁阀36设置于废水管路343上,也能够减少设置于水处理模块200中的管路和管路接头数量,有利于降低整机的漏水风险和装配繁琐程度。
优选地,原水外接口槽331内设有原水单向阀,该原水单向阀设置为在外接口管部12对接水路板插接口部33时打开且在外接口管部12脱离水路板插接口部33时关闭,如此设置,能够确保用户在更换滤芯10时,原水不会经原水管路341从原水外接口槽331流出,有利于提高用户的使用体验。
优选地,参照图9,在滤芯插槽23的外槽口的外周沿设有滤芯寿命计时键24,如此设置,在完成滤芯10更换后,便于用户自行手动触按该滤芯寿命计时键24,以对滤芯10的使用寿命进行重新倒计时。当然,滤芯10使用寿命计时除了通过按键触发,还可以为其它适当的方式,在此不再一一例举。
另外,本发明还提供一种嵌入式净饮机,参照图18,该嵌入式净饮机包括机壳100和位于机腔中的滤芯组件,滤芯组件包括用于固定滤芯10并能够从机壳100的前侧向抽出的滤芯安装座20,且滤芯10竖直摆置并能够移出滤芯安装座20以整体更换。如此设置,此种滤芯10更换方式,不需将整机从橱柜或墙体中抽出,就可对滤芯10进行整体更换,操作简单便捷,能够极大地降低滤芯10更换的繁琐程度,有利于提高用户的使用体验。
其中,滤芯安装座20为箱形结构,滤芯安装座20的箱形顶壁开设有滤芯抽出口,从而使得滤芯10能够经滤芯抽出口竖直向上地从滤芯安装座20提出。此外,还可在滤芯安装座20的箱形侧壁上开设有滤芯平移出口,如此,使得滤芯10能够通过该滤芯平移出口移出。具体地,滤芯安装座20的箱形侧壁可以为滤芯安装座20的箱形前侧壁、左侧壁或右侧壁,在此不做特别的限制。
具体地,通入或流出滤芯10的液体压力通常较高(如原水的水压约为0.3MPa,来自滤水增压 泵40的水压约为0.6MPa等),如此,只要滤芯10的进水口或出水口中的至少一个管口为朝向滤壳1的内端伸出设置,一旦该朝向内端伸出的管口内有液体流通,就会给予滤芯10一个沿滤芯10的轴向向外的作用力,此时滤芯10就较容易在该作用力的作用下从滤芯插槽23中飞脱出,会给用户带去极不好的使用体验。并且在常规的嵌入式净饮机中,通常将滤芯10以旋转的方式拧入滤芯安装座20中以对滤芯10进行限位并固定,但此种方式操作不便,也较容易由于用户旋拧不到位而出现作业时滤芯10从滤芯安装座20中脱离的情形,致使整机可靠性较低。
有鉴于此,参照图15和图16,滤芯安装座20优选地设有沿滤芯10的插装方向限位锁定滤芯10的锁止件,如此,能够有效地避免在整机使用时出现滤芯10从滤芯插槽23中飞脱的情形,从而可极大地提高滤芯安装组件乃至整机的可靠性。此外,通过旋拧的方式装配滤芯10,为使滤芯10牢固地固定于滤芯安装座20上,通常需用户多次旋拧滤芯10,而在本技术方案中只需将滤芯10线性插装入滤芯插槽23,而后采用锁止件沿滤芯10的插装方向限位锁定(如卡扣锁定)滤芯10即可,如此便于用户操作,有利于提升用户的使用体验。
其中,锁止件可以有多种适当的设置方式,例如锁止件为扣合锁定结构或盖合锁定结构等,只要锁止件能够沿滤芯10的插装方向限位锁定滤芯10即可,在此不再一一例举。
优选地,参照图9和图15,锁止件为枢转安装于滤芯安装座20的端部锁盖60,且端部锁盖布置于滤芯插槽23的外槽口的外周沿处,如此,在端部锁盖60的枢转打开位置,滤芯10能够插装于滤芯插槽23内或从滤芯插槽23中抽出,而在端部锁盖60的枢转锁合位置,端部锁盖60将插装于滤芯插槽23内的滤芯10盖合锁定,这样,当用户需要更替滤芯10时,可先将端部锁盖60枢转打开,将旧的滤芯10从滤芯插槽23中抽出,而后将新的滤芯10线性插装于滤芯插槽23内,再将端部锁盖60枢转锁合即可。此时,滤芯10的外端面与端部锁盖60的内端面相抵接。在其它优选的实施方式中,锁止件还可以为配合形成在滤芯10的外周壁和滤芯插槽23的内周壁上的锁合卡扣结构,在此不再一一例举。
进一步地,参照图9和图15,端部锁盖60包括锁盖本体,锁盖本体的一端为枢转安装端61,另一端为锁舌端62。相应地,在滤芯插槽23的外槽口的外周沿设有枢转连接部和锁槽部,即端部锁盖60的枢转安装端61与枢转连接部相连,如此,在枢转锁合位置,锁舌端62能够锁合于锁槽部。
优选地,锁舌端62内形成有锁舌安装槽63以及设于锁舌安装槽63内的锁舌64和弹性体65,弹性体65的一端抵接锁舌安装槽63的内槽壁,另一端抵接并向外推出锁舌64;以及锁舌端62还包括枢转安装的锁盖把手66,锁盖把手66的枢转铰点两侧的一端为控制端661,另一端为伸入锁舌安装槽63内并抵接锁舌64的压靠端662,参照图15至图17,如此设置,在控制端661的按压状态下,压靠端662推动锁舌64挤压弹性体65并回缩至锁舌安装槽63内,而在控制端661的释放状态,锁舌64部分地伸出于锁舌安装槽63,此时若锁舌64部分地伸入锁槽部内相应的锁舌插槽中,则端部锁盖60处于锁合位置。
需要特别说明的是,根据本发明实施例中的嵌入式净饮机的其它构成以及作用对于本领域的普通技术人员而言都是已知的,为了减少冗余,此处不做赘述。
以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。
另外需要说明的是,在上述具体实施方式中所描述的各个具体技术特征,在不矛盾的情况下,可以通过任何合适的方式进行组合,为了避免不必要的重复,本发明对各种可能的组合方式不再另行说明。
此外,本发明的各种不同的实施方式之间也可以进行任意组合,只要其不违背本发明的思想,其同样应当视为本发明所公开的内容。

Claims (15)

  1. 一种嵌入式净饮机,其特征在于,所述嵌入式净饮机包括:
    机壳(100),所述机壳(100)的前面板上设有耗材替换入口(101);
    水处理模块(200),位于机腔中并包括水平摆置的滤芯(10)和固定设置的滤芯安装座(20);
    其中,所述滤芯(10)从所述耗材替换入口(101)横向向内插装于所述滤芯安装座(20),并能够横向向外抽出于所述滤芯安装座(20)以整体更换。
  2. 根据权利要求1所述的嵌入式净饮机,其特征在于,所述滤芯(10)包括滤壳(1)和位于所述滤壳(1)内的滤芯部,所述滤壳(1)的内端伸出有内接口管(11),所述滤壳(1)的外端径向向外地固定伸出有外接口管部(12);以及
    所述滤芯安装座(20)设有用于线性插装所述滤芯(10)的滤芯插槽(23),所述滤芯插槽(23)的內底壁设有内接口槽,所述滤芯安装座(20)设有位于所述滤芯插槽(23)的外槽口的外周沿的外接口槽部(22);
    其中,所述滤芯(10)横向向内线性插装于所述滤芯插槽(23)内时,所述内接口管(11)插接于所述内接口槽中,所述外接口管部(12)插接于所述外接口槽部(22)。
  3. 根据权利要求2所述的嵌入式净饮机,其特征在于,所述外接口槽部(22)位于所述滤芯插槽(23)的外槽口的上方。
  4. 根据权利要求2所述的嵌入式净饮机,其特征在于,所述滤芯安装座(20)设有沿所述滤芯(10)的插装方向限位锁定所述滤芯(10)的锁止件。
  5. 根据权利要求2所述的嵌入式净饮机,其特征在于,所述滤芯安装座(20)上固定安装有水路板(30),所述水路板(30)包括水路板进水口、水路板出水口和水路板插接口部(33),所述滤芯(10)横向向内线性插装于所述滤芯插槽(23)内时,所述外接口管部(12)对接所述水路板插接口部(33)。
  6. 根据权利要求5所述的嵌入式净饮机,其特征在于,所述滤芯部包括反渗透滤芯层,所述嵌入式净饮机还包括设置在所述反渗透滤芯层的进水口上游的滤水增压泵(40)。
  7. 根据权利要求6所述的嵌入式净饮机,其特征在于,所述滤芯部还包括初级滤芯层,所述外接口管部(12)包括作为所述初级滤芯层的进水口的原水外接口管(121)、连接所述反渗透滤芯层的第一出水口的纯水外接口管(122)以及连接所述反渗透滤芯层的第二出水口的废水外接口管(123),所述内接口管(11)形成有与所述初级滤芯层的第一出水口连通的内接出水管以及与所述反渗透滤芯层的进水口相连的内接入水管,所述滤水增压泵(40)设置在连接所述内接出水管与所述内接入水管的增压管路上。
  8. 根据权利要求7所述的嵌入式净饮机,其特征在于,所述外接口管部(12)还包括作为所述初级滤芯层的第二出水口的粗滤水外接口管(124)。
  9. 根据权利要求7所述的嵌入式净饮机,其特征在于,所述水路板插接口部(33)包括与所述原水外接口管(121)、所述纯水外接口管(122)和所述废水外接口管(123)一一对接的原水外接口槽(331)、纯水外接口槽(332)和废水外接口槽(333);所述水路板进水口包括原水输入口(31), 所述水路板出水口包括纯水输出口(321)和废水输出口(322),所述原水外接口槽(331)与所述原水输入口(31)之间形成有原水管路(341),所述纯水外接口槽(332)与所述纯水输出口(321)之间形成有纯水管路(342),所述废水外接口槽(333)与所述废水输出口(322)之间形成有废水管路(343)。
  10. 根据权利要求9所述的嵌入式净饮机,其特征在于,所述水路板(30)还形成有滤水增压泵过流管路(345),所述滤水增压泵过流管路(345)的入水口与所述内接出水管相连,所述滤水增压泵过流管路(345)的出水口与所述滤水增压泵(40)的入水口相连,所述水路板(30)还包括分别设置在所述滤水增压泵过流管路(345)和所述废水管路(343)上的进水电磁阀(35)和废水电磁阀(36)。
  11. 根据权利要求9所述的嵌入式净饮机,其特征在于,所述原水外接口槽(331)内设有原水单向阀,所述原水单向阀设置为在所述外接口管部(12)对接所述水路板插接口部(33)时打开且在所述外接口管部(12)脱离所述水路板插接口部(33)时关闭。
  12. 根据权利要求6所述的嵌入式净饮机,其特征在于,所述嵌入式净饮机包括与所述水路板出水口的纯水输出口(321)相连的水箱(50),所述水箱(50)、所述滤芯安装座(20)以及所述滤水增压泵(40)沿竖向向下依次排布。
  13. 根据权利要求1~12中任意一项所述的嵌入式净饮机,其特征在于,所述嵌入式净饮机包括安装于所述机腔中的气瓶组件(700),所述气瓶组件(700)包括气瓶安装座(72)以及竖直摆置的气瓶(71),所述气瓶(71)布置在所述滤芯(10)的正前方;其中,所述气瓶(71)从所述耗材替换入口(101)安装于所述气瓶安装座(72)中或从所述气瓶安装座(72)中取出。
  14. 根据权利要求13所述的嵌入式净饮机,其特征在于,所述气瓶安装座(72)包括竖向的气瓶容纳槽和枢转安装于所述气瓶安装座(72)的顶端的减压气阀(722),所述减压气阀(722)包括与所述气瓶(71)的瓶口对接的进气阀口以及从所述进气阀口的周沿部伸出的气瓶引导件(723),所述气瓶(71)的顶部嵌合于所述气瓶引导件(723)中并跟随所述减压气阀(722)枢转至所述气瓶容纳槽中。
  15. 根据权利要求13所述的嵌入式净饮机,其特征在于,所述嵌入式净饮机的前侧底部设有接水盒容腔,所述接水盒容腔内置有接水盒(400),所述前面板包括用于封盖所述接水盒容腔并能够枢转打开的底条装饰面板(105),所述气瓶(71)的底部设置在所述接水盒(400)的正后方。
PCT/CN2018/110480 2018-04-04 2018-10-16 嵌入式净饮机 WO2019192159A1 (zh)

Applications Claiming Priority (18)

Application Number Priority Date Filing Date Title
CN201820485113.9 2018-04-04
CN201820483544.1 2018-04-04
CN201820485113.9U CN208532410U (zh) 2018-04-04 2018-04-04 嵌入式净饮机
CN201820485306.4U CN208532411U (zh) 2018-04-04 2018-04-04 嵌入式净饮机
CN201820485306.4 2018-04-04
CN201820485075.7 2018-04-04
CN201810300011.XA CN108298712B (zh) 2018-04-04 2018-04-04 嵌入式净饮机
CN201810300011.X 2018-04-04
CN201820485112.4U CN208822387U (zh) 2018-04-04 2018-04-04 嵌入式净饮机
CN201820485112.4 2018-04-04
CN201820485250.2U CN208822415U (zh) 2018-04-04 2018-04-04 嵌入式净饮机
CN201820485075.7U CN208532254U (zh) 2018-04-04 2018-04-04 水路板和嵌入式净饮机
CN201820485250.2 2018-04-04
CN201820485249.X 2018-04-04
CN201820485249.XU CN208454646U (zh) 2018-04-04 2018-04-04 嵌入式净饮机和整体橱柜
CN201820483544.1U CN208822386U (zh) 2018-04-04 2018-04-04 嵌入式净饮机
CN201820817341.1U CN208526007U (zh) 2018-05-29 2018-05-29 嵌入式净饮机
CN201820817341.1 2018-05-29

Publications (1)

Publication Number Publication Date
WO2019192159A1 true WO2019192159A1 (zh) 2019-10-10

Family

ID=68100055

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2018/110480 WO2019192159A1 (zh) 2018-04-04 2018-10-16 嵌入式净饮机

Country Status (1)

Country Link
WO (1) WO2019192159A1 (zh)

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5517829A (en) * 1994-05-03 1996-05-21 Michael; Charles L. Apparatus for producing filtered drinking water
DE19961583A1 (de) * 1999-12-21 2001-06-28 Biolipsia Umweltdienste Dr W D Gerät zum Aufbereiten von Wasser
CN204310891U (zh) * 2014-12-19 2015-05-06 佛山市顺德区美的饮水机制造有限公司 净水***
CN206368046U (zh) * 2016-12-28 2017-08-01 浙江苏泊尔家电制造有限公司 净水***
CN108272346A (zh) * 2018-04-04 2018-07-13 佛山市顺德区美的饮水机制造有限公司 嵌入式净饮机
CN108298712A (zh) * 2018-04-04 2018-07-20 佛山市顺德区美的饮水机制造有限公司 嵌入式净饮机
CN207933157U (zh) * 2018-01-12 2018-10-02 佛山市顺德区美的饮水机制造有限公司 净水机

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5517829A (en) * 1994-05-03 1996-05-21 Michael; Charles L. Apparatus for producing filtered drinking water
DE19961583A1 (de) * 1999-12-21 2001-06-28 Biolipsia Umweltdienste Dr W D Gerät zum Aufbereiten von Wasser
CN204310891U (zh) * 2014-12-19 2015-05-06 佛山市顺德区美的饮水机制造有限公司 净水***
CN206368046U (zh) * 2016-12-28 2017-08-01 浙江苏泊尔家电制造有限公司 净水***
CN207933157U (zh) * 2018-01-12 2018-10-02 佛山市顺德区美的饮水机制造有限公司 净水机
CN108272346A (zh) * 2018-04-04 2018-07-13 佛山市顺德区美的饮水机制造有限公司 嵌入式净饮机
CN108298712A (zh) * 2018-04-04 2018-07-20 佛山市顺德区美的饮水机制造有限公司 嵌入式净饮机

Similar Documents

Publication Publication Date Title
CN107477962B (zh) 具有外置型净水过滤器箱体的冰箱
US20190022564A1 (en) Point-of-use water treatment system
TWI422529B (zh) 飲水器
KR101597184B1 (ko) 물공급장치
WO2011150603A1 (zh) 净化饮水装置及其控制方法
WO2019192159A1 (zh) 嵌入式净饮机
JP2004017016A (ja) 逆浸透膜浄水装置
CN109678286A (zh) 一种净水***及饮水机
CN108298712B (zh) 嵌入式净饮机
KR101776256B1 (ko) 관로일체형 덮개가 구비되는 정수기
CN208532353U (zh) 嵌入式净饮机
KR200399773Y1 (ko) 벽걸이형 이온 냉온정수기
KR200472378Y1 (ko) 스마트형 파우셋
CN209235797U (zh) 气泡水机
CN208526007U (zh) 嵌入式净饮机
CN220393494U (zh) 净热一体机及净饮***
CN205616617U (zh) 一种免安装的ro直饮一体机
JP2007125534A (ja) 浄水器用フィルタケース並びに該フィルタケースを利用したフィルタを備える浄水器
CN208454646U (zh) 嵌入式净饮机和整体橱柜
CN216236299U (zh) 一种污水净化装置
CN218757773U (zh) 一种出水件的安装结构及出水件
CN208829385U (zh) 嵌入式净饮机
CN208532410U (zh) 嵌入式净饮机
CN208532411U (zh) 嵌入式净饮机
CN208532254U (zh) 水路板和嵌入式净饮机

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 18913826

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

32PN Ep: public notification in the ep bulletin as address of the adressee cannot be established

Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205A DATED 21/04/2021)

122 Ep: pct application non-entry in european phase

Ref document number: 18913826

Country of ref document: EP

Kind code of ref document: A1