CN114158940B - Waterway plate and multifunctional water dispenser with same - Google Patents

Waterway plate and multifunctional water dispenser with same Download PDF

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Publication number
CN114158940B
CN114158940B CN202111014091.0A CN202111014091A CN114158940B CN 114158940 B CN114158940 B CN 114158940B CN 202111014091 A CN202111014091 A CN 202111014091A CN 114158940 B CN114158940 B CN 114158940B
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China
Prior art keywords
channel
water
outlet
inlet
water inlet
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CN202111014091.0A
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CN114158940A (en
Inventor
唐斌
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Midea Group Co Ltd
Foshan Shunde Midea Water Dispenser Manufacturing Co Ltd
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Midea Group Co Ltd
Foshan Shunde Midea Water Dispenser Manufacturing Co Ltd
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Priority to CN202111014091.0A priority Critical patent/CN114158940B/en
Publication of CN114158940A publication Critical patent/CN114158940A/en
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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • A47J31/46Dispensing spouts, pumps, drain valves or like liquid transporting devices
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • A47J31/46Dispensing spouts, pumps, drain valves or like liquid transporting devices
    • A47J31/461Valves, e.g. drain valves

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Multiple-Way Valves (AREA)

Abstract

The invention discloses a waterway plate and a multifunctional water dispenser with the waterway plate. The waterway plate is used for a multifunctional water dispenser and comprises a body part which is integrally formed, wherein a plurality of core-pulling forming channels are arranged on the body part, each channel comprises a water inlet channel, a first middle channel, a second middle channel and a water outlet channel, the outlets of the water inlet channels are respectively communicated with the inlets of the first middle channels and the inlets of the second middle channels, the outlets of the first middle channels are communicated with the water outlet channels, and the outlets of the second middle channels are communicated with the water outlet channels. According to the waterway plate provided by the embodiment of the invention, the waterway plate is integrally formed, and the channel in the waterway plate is simple in structure, easy to form and difficult to leak water, so that the production efficiency and the reliability of the waterway plate are improved, and meanwhile, the first middle channel and the second middle channel share the water inlet channel and the water outlet channel, so that the waterway plate is compact in structure and small in occupied space, and the miniaturization of the waterway plate is realized under the condition that the integrated waterway function of the waterway plate is met.

Description

Waterway plate and multifunctional water dispenser with same
Technical Field
The invention relates to the field of water dispensers, in particular to a waterway plate and a multifunctional water dispenser with the waterway plate.
Background
In the related art, as the functions of the multifunctional water dispenser are more and more, pipelines in the multifunctional water dispenser are more and more complex, and the pipelines occupy the inner space of the multifunctional water dispenser, so that the volume of the multifunctional water dispenser is enlarged, the miniaturization of the multifunctional water dispenser is not facilitated, in addition, the problems of misconnection, water leakage and the like of each pipeline are easy to occur, and the product quality of the multifunctional water dispenser is affected.
Disclosure of Invention
The present invention aims to solve, at least to some extent, one of the above technical problems in the prior art. Therefore, the invention provides the waterway plate to improve the reliability of the waterway plate and realize the miniaturization of the waterway plate.
The invention also provides a multifunctional water dispenser with the waterway plate.
According to the waterway plate provided by the embodiment of the invention, the waterway plate is used for a multifunctional water dispenser, the waterway plate comprises an integrally formed body part, the body part is provided with a plurality of core-pulling forming channels, the channels comprise a water inlet channel, a first middle channel, a second middle channel and a water outlet channel, the water inlet channel is provided with a water inlet device interface, the outlet of the water inlet channel is respectively communicated with the inlet of the first middle channel and the inlet of the second middle channel, the outlet of the first middle channel is communicated with the water outlet channel, the outlet of the second middle channel is communicated with the water outlet channel, and the water outlet channel is provided with a water outlet device interface.
According to the waterway board provided by the embodiment of the invention, the waterway board is integrally formed, and the channel in the waterway board is simple in structure, easy to form and difficult to leak water, so that the production efficiency and the reliability of the waterway board are improved, and meanwhile, the first middle channel and the second middle channel share the water inlet channel and the water outlet channel, so that the waterway board is compact in structure and small in occupied space, and the miniaturization of the waterway board is realized under the condition that the integrated waterway function of the waterway board is met.
According to some embodiments of the invention, the first intermediate channel comprises a first pipe section and a second pipe section, an inlet of the first intermediate channel is arranged at the inlet of the first pipe section, a first electromagnetic valve water inlet port is arranged at the outlet of the first pipe section, a first electromagnetic valve water outlet port is arranged at the inlet of the second pipe section, and an outlet of the first intermediate channel is arranged at the outlet of the second pipe section.
Further, the second middle channel comprises a third pipe section, a fourth pipe section and a fifth pipe section, the inlet of the second middle channel is arranged at the inlet of the third pipe section, a water inlet interface of the treatment device is arranged at the outlet of the third pipe section, a water outlet interface of the treatment device is arranged at the inlet of the fourth pipe section, a water inlet interface of a second electromagnetic valve is arranged at the outlet of the fourth pipe section, a water outlet interface of the second electromagnetic valve is arranged at the inlet of the fifth pipe section, and the outlet of the second middle channel is arranged at the outlet of the fifth pipe section.
Further, the first pipe section includes: the water inlet device comprises a first pipeline and a second pipeline which are communicated in sequence, wherein the direction of the first pipeline is the same as that of the water inlet channel, and the direction of the second pipeline is perpendicular to that of the first pipeline.
Further, the third pipe section includes: the direction of the third pipeline is the same as that of the water inlet channel, the direction of the fourth pipeline is perpendicular to that of the third pipeline, and the direction of the fifth pipeline is perpendicular to or the same as that of the fourth pipeline.
According to some embodiments of the invention, the direction of the water inlet channel, the direction of the second pipeline and the direction of the fourth pipeline are perpendicular to each other,
According to some embodiments of the invention, the length of the first conduit is greater than the length of the third conduit.
According to some embodiments of the invention, the cross-sectional area of the first conduit is greater than the cross-sectional area of the third conduit.
According to some embodiments of the invention, the plurality of channels further comprises an exhaust channel provided with a treatment device exhaust port and an exhaust line port.
According to some embodiments of the invention, the outlet of the first intermediate passage and the outlet of the second intermediate passage are spaced apart on the outlet passage, and the outlet of the second intermediate passage is disposed adjacent to the outlet device interface.
According to some embodiments of the invention, the waterway board further comprises a board body fixing portion, wherein the board body fixing portion is connected with the body portion, and reinforcing ribs are arranged on the board body fixing portion.
According to another embodiment of the invention, the multifunctional water dispenser comprises the waterway plate.
According to some embodiments of the invention, the multi-functional water dispenser further comprises: the water inlet device is connected with the water inlet device interface; the refrigerating device is communicated with the second middle channel; and the water outlet device is connected with the water outlet device interface.
The multifunctional water dispenser has the same advantages as the waterway plate compared with the prior art, and the description is omitted here.
Additional aspects and advantages of the invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention.
Drawings
Fig. 1 is a front view of a waterway plate according to an embodiment of the present invention;
Fig. 2 is a right side view of a waterway plate according to an embodiment of the present invention;
Fig. 3 is a perspective view of a waterway plate, a first solenoid valve, and a second solenoid valve according to an embodiment of the present invention;
Fig. 4 is a front view of fig. 3;
FIG. 5 is a cross-sectional view of FIG. 3;
FIG. 6 is another cross-sectional view of FIG. 3;
Fig. 7 is a schematic view of a waterway of a multi-functional water dispenser according to an embodiment of the present invention.
Reference numerals:
The body 1, the water inlet channel 11, the water inlet device interface 111, the first intermediate channel 12, the first pipe section 121, the first solenoid valve water inlet interface 1211, the first pipe 1212, the second pipe 1213, the second pipe section 122, the first solenoid valve water outlet interface 1221, the second intermediate channel 13, the third pipe section 131, the treatment device water inlet interface 1311, the third pipe 1312, the fourth pipe 1313, the fifth pipe 1314, the fourth pipe section 132, the treatment device water outlet interface 1321, the second solenoid valve water inlet interface 1322, the fifth pipe section 133, the second solenoid valve water outlet interface 1331, the water outlet channel 14, the water outlet device interface 141, the exhaust channel 15, the treatment device exhaust interface 151, the exhaust pipe interface 152, the plate body fixing 2, the first solenoid valve 3, the second solenoid valve 4, the plug 5, the waterway board 10, the water inlet device 20, the refrigeration device 30, the instant heating device 40, the water outlet device 50, the water make-up pump 60, the bottled water 70, the flowmeter 80, and the water pump 90.
Detailed Description
Embodiments of the present invention are described in detail below, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to like or similar elements or elements having like or similar functions throughout. It should be noted that the embodiments described by referring to the drawings are exemplary for the purpose of explaining the present invention and are not to be construed as limiting the invention.
In the description of the embodiments of the present invention, it should be understood that the terms "length," "upper," "lower," "front," "rear," "left," "right," "inner," "outer," and the like indicate or are based on the orientation or positional relationship shown in the drawings, merely to facilitate description of the present invention and to simplify the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present invention.
The waterway plate 10 according to an embodiment of the present invention is described in detail with reference to fig. 1 to 7.
Referring to fig. 1 to 7, the waterway board 10 according to the embodiment of the present invention may be used in a multi-functional water dispenser, which may have at least two functions of preparing cold water, hot water, normal temperature water, bubble water, etc., to achieve multi-temperature sections of a wider temperature range, multi-functional water outlet, and the waterway board 10 may integrate at least part of waterways in the multi-functional water dispenser, so as to facilitate connection of various components in the multi-functional water dispenser, optimize the layout of waterways in the multi-functional water dispenser, facilitate assembly of drinking water, and reduce the volume of the multi-functional water dispenser.
The waterway board 10 comprises a body part 1, the body part 1 is integrally formed, the body part 1 can be made of plastic or rubber, and through injection molding, compared with the waterway board 10 formed by welding two boards, the waterway board 10 is integrally formed, the waterway board 10 can be integrally formed, the material cost and the production manufacturing cost of the waterway board 10 can be reduced, the waterway board 10 can be prevented from leaking, and the reliability of the waterway board 10 can be improved. The body portion 1 may be provided with a plurality of core-pulling molded channels, and it will be appreciated that when the body portion 1 is injection molded, a core is provided in the mold, and after injection molding, the core is withdrawn to form a channel suitable for fluid communication in the waterway plate 10.
Referring to fig. 3 to 6, the plurality of channels may include a water inlet channel 11, a first intermediate channel 12, a second intermediate channel 13 and a water outlet channel 14, wherein the water inlet channel 11 is provided with a water inlet device interface 111, the water inlet device interface 111 is adapted to be connected to a water inlet device 20, water flow may enter the water inlet channel 11 from the water inlet device interface 111, an outlet of the water inlet channel 11 may be communicated with an inlet of the first intermediate channel 12, an outlet of the water inlet channel 11 may also be communicated with an inlet of the second intermediate channel 13, that is, water flow flowing into the water inlet channel 11 may flow to the first intermediate channel 12 and/or the second intermediate channel 13, an outlet of the first intermediate channel 12 may be communicated with the water outlet channel 14, the water outlet channel 14 is provided with a water outlet device interface 141, water flow flowing through the first intermediate channel 12 may flow out of the waterway board 10 through the water outlet device interface 141, an outlet of the second intermediate channel 13 may be communicated with the water outlet channel 14, and water flow through the second intermediate channel 13 may flow out of the waterway board 10 through the water outlet device interface 141.
It will be appreciated that the first intermediate channel 12 and the second intermediate channel 13 correspond to different water preparing functions of the multifunctional water dispenser, and the first intermediate channel 12 and the second intermediate channel 13 may be provided with interfaces for controlling the interruption of water flow and/or treating the water flow, so as to control the flow direction of the water flow at the outlet of the water inlet channel 11, and realize different water preparing functions by the water flow flowing through the first intermediate channel 12 and the second intermediate channel 13.
In some embodiments of the present invention, the water flow from the outlet of the water inlet channel 11 to the first middle channel 12 may not be treated and may flow out through the water outlet channel 14, thereby realizing the function of preparing the water. The water flow from the outlet of the water inlet channel 11 to the second middle channel 13 can be led into the refrigerating device 30 by the second middle channel 13 to flow back to the second middle channel 13 after being cooled, and flows out through the water outlet channel 14, thereby realizing the function of preparing cold water.
The waterway board 10 according to the embodiment of the invention can be used for a multifunctional water dispenser, the waterway board 10 is integrally formed, and the channel structure in the waterway board 10 is simple, the forming is easy, and water leakage is difficult, so that the production efficiency and the reliability of the waterway board 10 are improved, meanwhile, the first middle channel 12 and the second middle channel 13 share the water inlet channel 11 and the water outlet channel 14, so that the waterway board 10 is compact in structure and small in occupied space, and the miniaturization of the waterway board 10 is realized under the condition that the waterway board 10 integrates the waterway function is met.
Referring to fig. 1 to 7, the first intermediate passage 12 includes a first pipe section 121 and a second pipe section 122, the first pipe section 121 may be located upstream of the second pipe section 122 in the water flow direction, the first pipe section 121 and the second pipe section 122 may be selectively communicated through a first solenoid valve 3, the first solenoid valve 3 may be a normally closed solenoid valve, the first pipe section 121 and the second pipe section 122 may be communicated when the first solenoid valve 3 is energized, and the water flow of the water inlet passage 11 may flow to the water outlet passage 14 through the first pipe section 121, the first solenoid valve 3, and the second pipe section 122 in this order. When the first electromagnetic valve 3 is not energized, the first pipe section 121 is not communicated with the second pipe section 122, and the water flow of the water inlet channel 11 cannot pass through the first intermediate channel 12 to the water outlet channel 14.
Specifically, the inlet of the first intermediate passage 12 is provided at the inlet of the first pipe section 121, in other words, the inlet of the first pipe section 121 communicates with the outlet of the water intake passage 11. The outlet of the first pipe section 121 is provided with a first electromagnetic valve water inlet port 1211, the inlet of the second pipe section 122 is provided with a first electromagnetic valve water outlet port 1221, the water inlet end of the first electromagnetic valve 3 can be connected with the first electromagnetic valve water inlet port 1211, and the water outlet end of the first electromagnetic valve 3 can be connected with the first electromagnetic valve water outlet port 1221 so as to control the disconnection of the first pipe section 121 and the second pipe section 122 through the first electromagnetic valve 3. The outlet of the first intermediate passage 12 is provided at the outlet of the second pipe section 122, that is, the outlet of the second pipe section 122 communicates with the water outlet passage 14.
Referring to fig. 1 to 7, the second intermediate channel 13 includes a third pipe segment 131, a fourth pipe segment 132 and a fifth pipe segment 133, the third pipe segment 131 is located upstream of the fourth pipe segment 132 in the water flow direction, the fourth pipe segment 132 is located upstream of the fifth pipe segment 133, the third pipe segment 131 and the fourth pipe segment 132 may be connected directly or through an external pipe to a treatment device, the treatment device may treat the water flow flowing from the third pipe segment 131 to the fourth pipe segment 132, the manner of treating the water flow may be heating, cooling, adjusting the water quality, etc., the fourth pipe segment 132 and the fifth pipe segment 133 are selectively communicated through a second electromagnetic valve 4, the second electromagnetic valve 4 may be a normally closed electromagnetic valve, the fourth pipe segment 132 is communicated with the fifth pipe segment 133 when the second electromagnetic valve 4 is energized, and the water flow of the water inlet channel 11 may flow through the third pipe segment 131, the treatment device, the fourth pipe segment 132, the fifth pipe segment 133 to the water outlet channel 14. When the second electromagnetic valve 4 is not electrified, the fourth pipe section 132 is not communicated with the fifth pipe section 133, and the water flow of the water inlet channel 11 cannot pass through the second intermediate channel 13 to the water outlet channel 14.
Specifically, the inlet of the second intermediate passage 13 is provided at the inlet of the third pipe segment 131, in other words, the outlet of the water inlet passage 11 communicates with the inlet of the third pipe segment 131. The outlet of the third pipe segment 131 is provided with a treatment device water inlet port 1311, the water inlet end of the treatment device can be connected with the treatment device water inlet port 1311, the inlet of the fourth pipe segment 132 is provided with a treatment device water outlet port 1321, the water outlet end of the treatment device can be connected with the treatment device water outlet port 1321, the treatment device can treat water flowing from the third pipe segment 131 to the fourth pipe segment 132, the outlet of the fourth pipe segment 132 is provided with a second electromagnetic valve water inlet port 1322, the water inlet end of the second electromagnetic valve 4 can be connected with the second electromagnetic valve water inlet port 1322, the inlet of the fifth pipe segment 133 is provided with a second electromagnetic valve water outlet port 1331, and the water outlet end of the second electromagnetic valve 4 can be connected with the second electromagnetic valve water outlet port 1331, so that the disconnection of the fourth pipe segment 132 and the fifth pipe segment 133 can be controlled through the second electromagnetic valve 4. The outlet of the second intermediate passage 13 is provided at the outlet of the fifth pipe section 133, that is, the outlet of the fifth pipe section 133 communicates with the water outlet passage 14.
In some embodiments of the present invention, the processing device may be a water cooling and refrigerating device 30, and the refrigerating device 30 may be an ice container, and the ice container may utilize thermoelectric effect of a semiconductor to cool, so as to reduce the volume of the ice container, and reduce noise and vibration of the ice container during operation.
Referring to fig. 1 and 5, the first pipe segment 121 includes: the first pipe 1212 and the second pipe 1213 are sequentially connected, wherein the direction of the first pipe 1212 is the same as the direction of the water inlet channel 11, in other words, the extending direction of the first pipe 1212 in the body portion 1 is the same as the extending direction of the water inlet channel 11 in the body portion 1, and when the body portion 1 is integrally formed, the water inlet channel 11 and the first pipe 1212 can be formed by core-pulling from the water inlet device interface 111 through the same first core, thereby facilitating the taking out of the core and reducing the number of cores used in the production and manufacture of the body portion 1.
The direction of the second pipe 1213 is perpendicular to the direction of the first pipe 1212, in other words, the extending direction of the second pipe 1213 in the body portion 1 is perpendicular to the extending direction of the first pipe 1212 in the body portion 1, when the body portion 1 is integrally formed, the second pipe 1213 can be formed by outwardly pulling a core through the second core at the first electromagnetic valve water inlet 1211, and the first core and the second core are perpendicular to each other, so as to facilitate the extraction of the first core and the second core. The second pipe section 122 is arranged side by side with the second pipe 1213, in other words, the extending direction of the second pipe section 122 in the body portion 1 is the same as the extending direction of the second pipe 1213 in the body portion 1, so as to ensure that the directions of the first electromagnetic valve water inlet port 1211 and the first electromagnetic valve water outlet port 1221 are the same, and when the body portion 1 is integrally formed, the second pipe section 122 can be formed by core-pulling outwards at the first electromagnetic valve water outlet port 1221 through the third core.
Referring to fig. 5 and 6, the third pipe segment 131 includes: the third pipeline 1312, the fourth pipeline 1313 and the fifth pipeline 1314 which are sequentially communicated, wherein the direction of the third pipeline 1312 is the same as the direction of the water inlet channel 11, in other words, the extending direction of the third pipeline 1312 in the body portion 1 is the same as the extending direction of the water inlet channel 11 in the body portion 1, and when the body portion 1 is integrally formed, the water inlet channel 11, the first pipeline 1212 and the third pipeline 1312 can be core-pulled and formed at the water inlet device interface 111 through the same first core, thereby facilitating the core taking out and reducing the use quantity of the cores of the body portion 1 during the production and manufacture, and it is required to be noted that the first pipeline 1212 and the third pipeline 1312 are separated in the thickness direction (i.e. the up-down direction in fig. 5) of the body portion 1 to form the respective independent pipelines.
The direction of the fourth pipe 1313 is perpendicular to the direction of the third pipe 1312, in other words, the extending direction of the fourth pipe 1313 in the body portion 1 is perpendicular to the extending direction of the third pipe 1312 in the body portion 1, and when the body portion 1 is integrally formed, the fourth pipe 1313 may be core-pulled by a fourth core, and the first core and the fourth core are perpendicular to each other, so as to facilitate the extraction of the first core and the fourth core.
The direction of the fifth pipeline 1314 is perpendicular or the same as the direction of the fourth pipeline 1313, in other words, the extending direction of the fifth pipeline 1314 in the body portion 1 is the same as or perpendicular to the extending direction of the fourth pipeline 1313 in the body portion 1, and the extending direction of the fifth pipeline 1314 in the body portion 1 can be set according to the direction of the water inlet 1311 of the treatment device so as to meet the assembly requirement of the multifunctional water dispenser.
Referring to fig. 1-6, an extending direction of the fifth pipeline 1314 in the body portion 1 is perpendicular to an extending direction of the fourth pipeline 1313 in the body portion 1, when the body portion 1 is integrally formed, the fourth pipeline 1313 may be core-pulled and formed at one end surface of the body portion 1 through a fourth core, and a plug 5 is provided at an opening of the core-pulled and formed, and the fifth pipeline 1314 may be core-pulled and formed at the water inlet 1311 of the processing apparatus through a fifth core, where the fourth core and the fifth core are perpendicular to each other, so as to facilitate extraction of the fourth core and the fifth core.
In some embodiments not shown in the drawings, the extending direction of the fifth pipeline 1314 in the body portion 1 is the same as the extending direction of the fourth pipeline 1313 in the body portion 1, and when the body portion 1 is integrally formed, the fifth pipeline 1314 and the fourth pipeline 1313 may be core-pulled and formed by the same fourth core at the water inlet 1311 of the processing device, so as to facilitate the taking out of the cores and reduce the number of cores used in the manufacturing process of the body portion 1.
In some embodiments of the present invention, the direction of the water inlet channel 11, the direction of the second pipe 1213, and the direction of the fourth pipe 1313 are perpendicular to each other, in other words, the extending direction of the water inlet channel 11 in the body portion 1, the extending direction of the second pipe 1213 in the body portion 1, and the extending direction of the fourth pipe 1313 in the body portion 1 are perpendicular to each other, so as to fully utilize the space in the waterway board 10 and reduce the volume of the waterway board 10.
In some embodiments of the present invention, the various interfaces on waterway board 10 may be distributed across any end face of waterway board 10.
Referring to fig. 1 to 3, the water inlet device interface 111 faces the rear of the waterway plate 10 so that the water inlet device interface 111 is connected to the water inlet device 20 such as a water tank, and the water outlet device interface 141 faces the front of the waterway plate 10 so that the water outlet device 50 such as a water outlet nozzle is connected. The water inlet 1311 of the processing device faces to the lower side of the waterway plate 10 so as to be convenient for connecting with the processing device such as the ice container. The first solenoid water inlet 1211, the first solenoid water outlet 1221, the second solenoid water inlet 1322 and the second solenoid water outlet 1331 face to the upper side of the waterway plate 10, so that the first solenoid 3 and the second solenoid 4 can be assembled and maintained conveniently.
In some embodiments of the present invention, the sizes of the first electromagnetic valve water inlet 1211 and the first electromagnetic valve water outlet 1221 are different from the sizes of the second electromagnetic valve water inlet 1322 and the second electromagnetic valve water outlet 1331, optionally, the inner diameters of the first electromagnetic valve water inlet 1211 and the first electromagnetic valve water outlet 1221 are 15mm, and the inner diameters of the second electromagnetic valve water inlet 1322 and the second electromagnetic valve water outlet 1331 are 10mm, so as to realize fool-proof design, and avoid the mixed insertion of the first electromagnetic valve 3 and the second electromagnetic valve 4 during assembly.
Referring to fig. 5, first conduit 1212 is connected to second conduit 1213, third conduit 1312 is connected to fourth conduit 1313, and the length of first conduit 1212 is greater than the length of third conduit 1312 to separate second conduit 1213 from fourth conduit 1313, preventing second conduit 1213 from intersecting fourth conduit 1313.
In some embodiments of the present invention, the length of the first pipe 1212 may be more than 3 times the length of the third pipe 1312 to ensure that the second pipe 1213 and the fourth pipe 1313 have a sufficient safety distance to ensure the structural strength of the body 1.
In some embodiments of the present invention, the cross-sectional area of the first conduit 1212 is greater than the cross-sectional area of the third conduit 1312, and the smaller cross-sectional area of the third conduit 1312 may increase the water pressure flowing to the treatment device to increase the water outlet efficiency of the treatment device.
In some embodiments of the present invention, the inner diameter of the water inlet passage 11 is 14mm, the inner diameter of the first pipe 1212 is 6mm, the inner diameter of the third pipe 1312 is 5mm, and the inner diameter of the water outlet passage 14 is 10mm.
Referring to fig. 1-7, the plurality of channels further include an exhaust channel 15, the exhaust channel 15 may be disposed adjacent to the treatment device water inlet port 1311, the exhaust channel 15 is provided with a treatment device exhaust port 151 and an exhaust pipe port 152, the treatment device exhaust port 151 may be directly connected to an exhaust end of the treatment device or may be connected to an exhaust end of the treatment device through an external pipe, and the exhaust pipe port 152 may be communicated to the treatment device water outlet port 1321 through an external pipe, so that gas or a gas-water mixture generated by the treatment device during operation may be sequentially discharged through the exhaust channel 15, the fourth pipe section 132, the second solenoid valve 4, the fifth pipe section 133, and the water outlet channel 14, so as to control the exhaust of the treatment device by using the second solenoid valve 4, wherein the treatment device may be an ice container.
It should be noted that, a three-way valve may be disposed at the water outlet 1321 of the treatment device to connect the water outlet 1321 of the treatment device, the air outlet 152 of the air outlet pipe, and the water outlet of the treatment device.
Referring to fig. 5 and 6, the outlet of the first intermediate channel 12 and the outlet of the second intermediate channel 13 are disposed at intervals on the water outlet channel 14, the outlet of the first intermediate channel 12 may be located upstream of the outlet of the second intermediate channel 13, and the outlet of the second intermediate channel 13 is disposed adjacent to the water outlet device interface 141 of the water outlet channel 14, so as to facilitate reducing the flow length of the water flowing out of the second intermediate channel 13 in the water outlet channel 14, realizing rapid water outlet, and preventing the quality of the water from decreasing, for example, when the water flowing through the second intermediate channel 13 is cooled down, the outlet of the second intermediate channel 13 adjacent to the water outlet device interface 141 may enable cooled down cold water to rapidly flow out of the water outlet channel 14, so as to prevent the temperature of the cold water from rising.
Referring to fig. 3, the waterway board 10 further includes a board body fixing portion 2, the board body fixing portion 2 is connected to the body portion 1, it is understood that the body portion 1 and the board body fixing portion 2 may be integrally formed, or may be connected by a fastener, a reinforcing rib may be disposed on the board body fixing portion 2 to lift the strength of the board body fixing portion 2, the board body fixing portion 2 may be fixed inside the multifunctional water dispenser, so that the waterway board 10 is fixed inside the multifunctional water dispenser, and an installation position suitable for fixing a power supply assembly may be disposed on the board body fixing portion 2, so that the power supply assembly is fixed on the board body fixing portion 2, where the power supply assembly may be an ice liner power board for supplying power to an ice liner.
A multi-functional water dispenser according to another aspect of the present invention includes the waterway plate 10 of the above-described embodiment.
In some embodiments of the present invention, a multi-functional water dispenser includes: the water way plate 10, the water inlet device 20, the refrigerating device 30 and the water outlet device 50, wherein the water inlet device interface 111 is connected with the water inlet device 20, the water outlet device interface 141 is connected with the water outlet device 50, the refrigerating device 30 is communicated with the second middle channel 13, it can be understood that the water flow flowing from the outlet of the water inlet channel 11 to the first middle channel 12 can be processed without being processed, and flows out after passing through the water outlet channel 14 and the water outlet device 50, so that the function of preparing the water with low temperature is realized. The water flow from the outlet of the water inlet channel 11 to the second intermediate channel 13 can be led into the refrigerating device 30 by the second intermediate channel 13 to flow back to the second intermediate channel 13 after being cooled, and flows out after passing through the water outlet channel 14 and the water outlet device 50, thereby realizing the function of preparing cold water.
It should be noted that, the waterway board 10 is inserted with the first electromagnetic valve 3 and the second electromagnetic valve 4, the opening and closing of the first electromagnetic valve 3 can control the on-off of the first middle channel 12, and when the first middle channel 12 communicates the water inlet device 20 with the water outlet device 50, the function of making normal temperature water by the multifunctional water dispenser can be realized. The second electromagnetic valve 4 can be opened and closed to control the on-off of the second intermediate channel 13, and the cold water making function of the multifunctional water dispenser can be realized when the second intermediate channel 13 is communicated with the water outlet device 50.
According to the multifunctional water dispenser of the water dispenser, the waterway plate 10 is integrally formed, and the channel in the multifunctional water dispenser is simple in structure, easy to form and difficult to leak water. The waterway board 10 can realize the integrated multifunctional drinking machine to prepare partial waterways of warm water and cold water, and the first middle channel 12 and the second middle channel 13 share the water inlet channel 11 and the water outlet channel 14, so that the waterway board 10 has compact structure and small occupied space, and the waterway board 10 is miniaturized under the condition of meeting the integrated waterway function of the waterway board 10.
Referring to fig. 7, the multifunctional water dispenser includes: the water channel plate 10, the water inlet device 20, the refrigerating device 30, the instant heating device 40 and the water outlet device 50, wherein the first electromagnetic valve 3 and the second electromagnetic valve 4 are inserted on the water channel plate 10, the water inlet device 20 is selectively communicated with the water channel plate 10 and the instant heating device 40, and the water outlet device 50 is communicated with the water channel plate 10 and the instant heating device 40.
When the multifunctional water dispenser prepares hot water, the water inlet device 20 is communicated with the instant heating device 40, the water inlet device 20 supplies water to the instant heating device 40, and the water flows out of the water outlet device 50 after being heated by the instant heating device 40.
When the multifunctional water dispenser prepares normal-temperature water, the water inlet device 20 is communicated with the water way plate 10, the water inlet device 20 supplies water to the water inlet device interface 111 of the water way plate 10, at the moment, the first electromagnetic valve 3 on the water way plate 10 is electrified to be opened, and the water flows out after passing through the water inlet channel 11, the first pipe section 121, the first electromagnetic valve 3, the second pipe section 122, the water outlet channel 14 and the water outlet device 50 in sequence.
When the multifunctional water dispenser prepares cold water, the water inlet device 20 is communicated with the water way plate 10, the water inlet device 20 supplies water to the water inlet device interface 111 of the water way plate 10, at the moment, the second electromagnetic valve 4 on the water way plate 10 is electrified and opened, water flows to the water inlet end of the refrigerating device 30 through the water inlet channel 11 and the third pipe section 131, flows to the water outlet interface 1321 of the processing device from the water outlet end of the refrigerating device 30 after the temperature of the refrigerating device 30 is reduced, and flows out after passing through the fourth pipe section 132, the second electromagnetic valve 4, the fifth pipe section 133, the water outlet channel 14 and the water outlet device 50 in sequence.
In some embodiments of the present invention, the water inlet device 20 may be a water tank, the water tank may be connected with the barreled water 70 through the water replenishing pump 60 to achieve automatic water replenishing of the water tank, the water outlet end of the water tank is provided with a flow meter 80, and a water outlet pump 90 may be further provided between the water outlet end of the water tank and the water inlet device interface 111 to raise the water pressure flowing to the waterway board 10.
In some embodiments of the present invention, the multi-functional water dispenser further includes a bubble water assembly including: the air injection key, the air bottle and the water bottle connector with the air injection nozzle can be used for fixing the water bottle at the water bottle connector, and the air injection key is pressed down to enable air stored in the air bottle to enter the water bottle through the air injection nozzle and maintain pressure, so that the preparation of bubble water is realized.
According to the multifunctional water dispenser provided by the embodiment of the invention, the waterway plate 10 is arranged, the waterway plate 10 is integrally formed, and the channel in the waterway plate 10 is simple in structure, easy to form and difficult to leak water, so that the production efficiency and the reliability of the waterway plate 10 are improved, meanwhile, the first middle channel 12 and the second middle channel 13 share the water inlet channel 11 and the water outlet channel 14, so that the waterway plate 10 is compact in structure and small in occupied space, and the miniaturization of the waterway plate 10 is realized under the condition that the waterway plate 10 integrates waterway functions is met, so that the volume of the multifunctional water dispenser is reduced.
In the description of the present specification, a description referring to terms "one embodiment," "some embodiments," "examples," "specific examples," or "some examples," etc., means that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the present invention. In this specification, schematic representations of the above terms are not necessarily directed to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. In addition, one skilled in the art can engage and combine the different embodiments or examples described in this specification.
While embodiments of the present invention have been shown and described above, it will be understood that the above embodiments are illustrative and not to be construed as limiting the invention, and that variations, modifications, alternatives and variations may be made to the above embodiments by one of ordinary skill in the art within the scope of the invention.

Claims (10)

1. A waterway plate for a multifunctional water dispenser is characterized in that the waterway plate comprises an integrally formed body part, the body part is provided with a plurality of core-pulling forming channels, the channels comprise a water inlet channel, a first middle channel, a second middle channel and a water outlet channel,
The water inlet channel is provided with a water inlet device interface,
The outlet of the water inlet channel is respectively communicated with the inlet of the first middle channel and the inlet of the second middle channel,
The outlet of the first middle channel is communicated with the water outlet channel,
The outlet of the second middle channel is communicated with the water outlet channel,
The water outlet channel is provided with a water outlet device interface;
The first intermediate channel comprises a first pipe section and a second pipe section, the inlet of the first intermediate channel is arranged at the inlet of the first pipe section, the outlet of the first intermediate channel is arranged at the outlet of the second pipe section, the second intermediate channel comprises a third pipe section, a fourth pipe section and a fifth pipe section, the inlet of the second intermediate channel is arranged at the inlet of the third pipe section, the outlet of the second intermediate channel is arranged at the outlet of the fifth pipe section, and the first pipe section comprises: the direction of the first pipeline is the same as the direction of the water inlet channel, the direction of the second pipeline is perpendicular to the direction of the first pipeline, and the third pipeline section comprises: the direction of the third pipeline is the same as the direction of the water inlet channel, the direction of the fourth pipeline is perpendicular to the direction of the third pipeline, and the direction of the fifth pipeline is perpendicular to the direction of the fourth pipeline or the same as the direction of the fourth pipeline;
The first middle channel is used for preparing cold water, the second middle channel is used for preparing cold water, the outlet of the first middle channel and the outlet of the second middle channel are arranged on the water outlet channel at intervals, and the outlet of the second middle channel is arranged adjacent to the water outlet device interface.
2. The waterway board of claim 1, wherein the outlet of the first tube segment is provided with a first solenoid valve inlet port and the inlet of the second tube segment is provided with a first solenoid valve outlet port.
3. The waterway board of claim 2, wherein the outlet of the third tube segment is provided with a treatment device water inlet port, the inlet of the fourth tube segment is provided with a treatment device water outlet port, the outlet of the fourth tube segment is provided with a second electromagnetic valve water inlet port, and the inlet of the fifth tube segment is provided with a second electromagnetic valve water outlet port.
4. The waterway plate of claim 1, wherein the direction of the water inlet channel, the direction of the second pipeline, and the direction of the fourth pipeline are perpendicular.
5. The waterway plate of claim 1, wherein a length of the first tube is greater than a length of the third tube.
6. The waterway plate of claim 1, wherein a cross-sectional area of the first tube is greater than a cross-sectional area of the third tube.
7. The waterway plate of claim 1, wherein the plurality of channels further comprises an exhaust channel having a treatment device exhaust interface and an exhaust line interface.
8. The waterway plate of claim 1, further comprising a plate body fixing portion connected to the body portion, and reinforcing ribs provided on the plate body fixing portion.
9. A multifunctional drinking machine, characterized by comprising the waterway plate of any one of claims 1-8.
10. The multi-purpose water dispenser of claim 9, further comprising:
The water inlet device is connected with the water inlet device interface;
the refrigerating device is communicated with the second middle channel;
And the water outlet device is connected with the water outlet device interface.
CN202111014091.0A 2021-08-31 2021-08-31 Waterway plate and multifunctional water dispenser with same Active CN114158940B (en)

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CN213551217U (en) * 2020-08-31 2021-06-29 浙江中广电器股份有限公司 Pipeline machine with preheating water tank
CN216534917U (en) * 2021-08-31 2022-05-17 佛山市顺德区美的饮水机制造有限公司 Water route board and multifunctional water dispenser with same

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JP2017178360A (en) * 2016-03-30 2017-10-05 パーパス株式会社 Water server and duct
CN109665480A (en) * 2017-10-16 2019-04-23 佛山市顺德区美的饮水机制造有限公司 Water treatment facilities
CN208640403U (en) * 2018-04-08 2019-03-26 佛山市顺德区美的饮水机制造有限公司 The integrating water route structure and water dispenser of water dispenser
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