CN219782484U - Water cup with water diversion valve and water path structure of dish washer using same - Google Patents

Water cup with water diversion valve and water path structure of dish washer using same Download PDF

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Publication number
CN219782484U
CN219782484U CN202320990189.8U CN202320990189U CN219782484U CN 219782484 U CN219782484 U CN 219782484U CN 202320990189 U CN202320990189 U CN 202320990189U CN 219782484 U CN219782484 U CN 219782484U
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China
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water
water outlet
diversion
outlet
cup
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CN202320990189.8U
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Chinese (zh)
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陈立新
朱武
戴荣华
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Ningbo Ruipai Kitchenware Co ltd
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Ningbo Ruipai Kitchenware Co ltd
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Abstract

The utility model relates to a water cup with a water diversion valve and a water path structure of a dish washer, which comprises a water cup body, wherein a lower water outlet, an upper water outlet, a water inlet and a water diversion cavity are arranged on the water cup body, the lower water outlet, the upper water outlet and the water inlet are all communicated with the water diversion cavity, the water cup body is provided with the water diversion valve for controlling the on-off of the lower water outlet and the upper water outlet, and the lower water outlet, the upper water outlet and the water inlet are mutually perpendicular. The water cup with the water diversion valve and the water way structure of the dish washer with the water diversion valve have the following advantages: the water cup is simple in structure and easy to mold, so that the valve core of the water diversion valve is simple in structure and easy to mold, the water diversion valve and the water cup are of an integrated structure, parts are reduced, and production and installation costs are reduced.

Description

Water cup with water diversion valve and water path structure of dish washer using same
Technical Field
The utility model relates to the technical field of dish washers, in particular to a water cup with a water diversion valve and a water channel structure of the dish washer.
Background
A dishwasher is a device for automatically washing dishes such as bowls, chopsticks, plates, dishes, knives, forks, etc. In the prior art, as disclosed in chinese patent No. CN215820848U, a dish washer and a waterway center thereof are provided between an inner container and a base of the dish washer, the waterway center is provided with a water cup and a diversion seat, the water cup is provided with a water collecting tank, a water inlet communicated with the water collecting tank, a fixed port of a drainage pump, a water outlet connected with a washing pump and a connection port for setting a temperature sensor; the diversion seat is provided with a diversion valve or a diversion cover and a collecting pipe arranged on the waterway center, and the collecting pipe is provided with a waterway input end; the water path center is also provided with a plurality of water path output ends which are connected with the spray arms on the dish washer, one end of the collecting pipe is communicated with the plurality of water path output ends, and the other end of the collecting pipe is connected with the water diversion valve or the water diversion cover. But this reposition of redundant personnel seat is comparatively complicated, and a plurality of water route output sets up on same horizontal plane, and the shaping is required highly, and the case requirement of water valve is high to the while installation requirement is high, and production efficiency is low.
Disclosure of Invention
The utility model aims to provide a water cup with a water diversion valve and a water way structure of a dish washer with the water diversion valve, and the water diversion valve is simple in structure, easy to form and simple to install.
The utility model further aims to provide a water cup with the water diversion valve and a water path structure of the dish washer, wherein the water cup and the water diversion valve are of an integrated structure, and parts are few.
The utility model adopts the technical scheme that: the utility model provides a take water cup of shunt valve, includes the drinking cup body, be equipped with lower floor's delivery port, upper strata delivery port, water inlet and water diversion chamber on the drinking cup body, lower floor's delivery port, upper strata delivery port and water inlet all communicate with the water diversion chamber, are equipped with the shunt valve that is used for controlling lower floor's delivery port and upper strata delivery port break-make on the drinking cup body, lower floor's delivery port, upper strata delivery port and water inlet mutually perpendicular each other.
Compared with the prior art, the utility model has the advantages that the lower water outlet is used for discharging water, the upper water outlet is used for discharging water, the water inlet is used for entering water flow, the water diversion cavity is used for centralizing and then shunting the water flowing in from the water inlet, the water diversion valve is used for controlling the on-off of the lower water outlet and the upper water outlet, the lower water outlet, the upper water outlet and the water inlet are mutually perpendicular, the structure is simple, the three water inlets are mutually noninterfere, the production and the processing are convenient, the molding is easier, the structure of the valve core of the water diversion valve is simple, the molding is easy, the water diversion valve is arranged on the water cup body, the water diversion valve and the water cup body are of an integrated structure, the parts are reduced, and the production and the installation cost is reduced.
In some embodiments of the utility model, the water distribution cavity is cylindrical, and the lower water outlet and the upper water outlet are arranged on the cylindrical inner wall of the water distribution cavity. The cylindrical water diversion cavity is simple in structure, easy to form, good in circulation of water flow in the interior, less in impact, and convenient for the valve core of the water diversion valve to control on-off of the lower water outlet and the upper water outlet, and the lower water outlet and the upper water outlet are arranged on the cylindrical inner wall of the water diversion cavity.
Further, the shunt valve comprises a shunt blade and a driving mechanism, wherein the shunt blade is arranged in the shunt cavity and is attached to the cylindrical inner wall of the shunt cavity, the lower water outlet and the upper water outlet are both arranged on the movement path of the shunt blade, the driving mechanism is in transmission connection with the shunt blade and is used for driving the shunt blade to rotate, and the opening area of the lower water outlet on the inner wall of the shunt cavity and the opening area of the upper water outlet on the inner wall of the shunt cavity are smaller than the area of the shunt blade. The water diversion blades are used for blocking the lower water outlet or the upper water outlet to realize on-off control of the lower water outlet and the upper water outlet, the water diversion blades are attached to the cylindrical inner wall of the water diversion cavity, the lower water outlet and the upper water outlet are arranged on the moving path of the water diversion blades, the blocking effect of the water diversion blades on the lower water outlet and the upper water outlet can be guaranteed, the area of the water diversion blades is larger than the opening area of the lower water outlet on the inner wall of the water diversion cavity and the opening area of the upper water outlet on the inner wall of the water diversion cavity, the shielding effect of the water diversion blades on the lower water outlet and the upper water outlet can be guaranteed, water leakage caused by incomplete shielding is prevented, the water pressure of the other outlet is influenced, and the working effect of the dish washer is reduced. When the water diversion device works, the driving mechanism drives the water diversion blades to rotate, so that the water diversion blades rotate along the cylindrical inner wall of the water diversion cavity, and the rotation of the water diversion blades is controlled according to the requirement, so that the water outlet is not blocked, the lower water outlet or the upper water outlet is blocked, and the diversion of the waterway is completed.
Further, the water diversion blades are arc-shaped and matched with the inner wall of the cylinder of the water diversion cavity. The inner wall laminating degree of curved water diversion blade and water diversion chamber is good, and it is better to the shielding effect of lower floor's delivery port and upper water outlet, and uses with the water inlet cooperation for water diversion blade when playing the water diversion effect, the arc design can also guide rivers, reduces the impact of rivers, and only need pack into the water diversion intracavity when curved water diversion blade installs, simple to operate improves packaging efficiency.
Further, the shunt valve is arranged opposite to the water inlet. If the shunt valve and the water inlet are in the same direction, the volume occupied by the two is larger, the installation is not facilitated, if the shunt valve is vertical to the water inlet, the control of the lower water outlet and the upper water outlet is not facilitated, the structural design of the valve core is complex, the forming is not facilitated, the shunt valve and the water inlet are oppositely arranged, the installation space can be saved, the control effect of the lower water outlet and the upper water outlet can be ensured, and the valve core is simple in structure. After the rivers get into from the water inlet, can directly arrive shunt valve department, again by the direction of diversion blade, the distance of intaking is short, guarantees the effect of intaking, and the rivers that intake are to outside impact, can make diversion blade and the inner wall laminating of dividing the water cavity inseparabler, have improved diversion blade's blocking effect, prevent that rivers from leaking from the delivery port department that blocks the side.
Further, the upper water outlet faces to the outer side, and the lower water outlet faces to the top. The lower water outlet faces to the top, so that water can be conveniently supplied to the bottom of the dish washer directly, and the upper water outlet faces to the outer side, so that water can be conveniently supplied to the upper part of the dish washer from an outer side pipeline.
The utility model provides a dish washer waterway structure, includes drinking cup and the dish washer inner bag of taking the shunt valve, and the drinking cup setting of taking the shunt valve is in the bottom of dish washer inner bag, and dish washer inner bag side is equipped with well spouts the water route and spouts the water route with the top, and the drinking cup top of taking the shunt valve is equipped with the end and spouts the water route, spouts the water route at the bottom and is connected with lower floor's delivery port, and well spouts the water route and spout and be connected through the three-way pipe between the water route with the top, and upper water outlet and three-way pipe's water inlet end are connected. The middle water spraying pipeline is used for supplying water to the middle spray arm of the dish washer, the top water spraying pipeline is used for supplying water to the top spray arm of the dish washer, the bottom water spraying pipeline is used for supplying water to the bottom spray arm of the dish washer, and the three-way pipe is used for guiding water flow of the upper water outlet to the middle water spraying pipeline and the top water spraying pipeline simultaneously.
Further, the three-way pipe comprises a first water outlet connected with the top water spraying pipeline, a second water outlet connected with the middle water spraying pipeline and a three-way water inlet connected with the upper water outlet, wherein the diameter of the first water outlet is smaller than that of the second water outlet, and the diameter of the three-way water inlet is larger than that of the second water outlet. The diameter of the first water outlet is smaller than that of the second water outlet, so that the water quantity entering the middle water spraying pipeline is large, the water pressure of the middle spray arm is ensured, the cleaning effect is ensured, the diameter of the three-way water inlet is larger than that of the second water outlet, and the water inflow can be ensured.
Further, the included angle between the three-way water inlet and the first water outlet is larger than 90 degrees, and the included angle between the three-way water inlet and the second water outlet is larger than 90 degrees. The included angle of the three-way water inlet and the first water outlet is larger than 90 degrees, the flow direction in the three-way water inlet is prevented from being opposite to the flow direction in the first water outlet, the forward flow of water is ensured, the loss is reduced, the included angle of the three-way water inlet and the second water outlet is larger than 90 degrees, the flow direction in the three-way water inlet is prevented from being opposite to the flow direction in the second water outlet, the forward flow of water is ensured, and the loss is reduced.
Drawings
FIG. 1 is a schematic structural view of embodiment 1 of the present utility model;
FIG. 2 is a bottom view of the inside of the liner of embodiment 1 of the present utility model;
FIG. 3 is a schematic view showing the structure of a diverter valve according to embodiment 1 of the present utility model;
FIG. 4 is a schematic structural view of embodiment 2 of the present utility model;
fig. 5 is a cross-sectional view of embodiment 2 of the present utility model.
In the figure: 1. a water cup body; 2. a lower water outlet; 3. an upper water outlet; 4. a water inlet; 5. a water distribution cavity; 6. a shunt valve; 7. a water dividing blade; 8. a driving mechanism; 9. a dishwasher liner; 10. a middle water spraying path; 11. a top spraying waterway; 12. a bottom spraying waterway; 13. a three-way pipe; 14. a first water outlet; 15. a second water outlet; 16. and a three-way water inlet.
Detailed Description
In order to further describe the technical means and effects adopted by the present utility model for achieving the intended purpose, the following detailed description will refer to the specific implementation, structure, characteristics and effects according to the present utility model with reference to the accompanying drawings and preferred embodiments.
Example 1:
the water cup with the water diversion valve provided by the embodiment, as shown in fig. 1 and 2, comprises a water cup body 1, wherein a lower water outlet 2, an upper water outlet 3, a water inlet 4 and a water diversion cavity 5 are arranged on the water cup body 1, the lower water outlet 2, the upper water outlet 3 and the water inlet 4 are all communicated with the water diversion cavity 5, the water cup body 1 is provided with the water diversion valve 6 for controlling the on-off of the lower water outlet 2 and the upper water outlet 3, and the lower water outlet 2, the upper water outlet 3 and the water inlet 4 are mutually perpendicular. The lower water outlet 2 is used for yielding water, the upper water outlet 3 is used for yielding water, the water inlet 4 is used for leading water flow into the water distribution cavity 5 is used for leading water flow flowing in from the water inlet 4 to flow in a centralized way, the water distribution valve 6 is used for controlling the on-off of the lower water outlet 2 and the upper water outlet 3, the lower water outlet 2, the upper water outlet 3 and the water inlet 4 are mutually perpendicular, the structure is simple, the three water outlets are mutually noninterfere, the production and the processing are convenient, the molding are easier, the structure of a valve core of the water distribution valve 6 is simple, the molding is easy, the water distribution valve 6 is arranged on the water cup 1, the water distribution valve 6 and the water cup 1 are of an integrated structure, the parts are reduced, and the production and the installation cost is reduced.
In order to achieve good water diversion effect, the water diversion cavity 5 is cylindrical, and the lower water outlet 2 and the upper water outlet 3 are arranged on the cylindrical inner wall of the water diversion cavity 5. The cylindrical water distribution cavity 5 is simple in structure, easy to form, good in circulation of water flow in the interior, less in impact, and convenient for the valve core of the water distribution valve 6 to control on-off of the lower water outlet 2 and the upper water outlet 3, and the lower water outlet 2 and the upper water outlet 3 are arranged on the cylindrical inner wall of the water distribution cavity 5.
For good water diversion effect, as shown in fig. 3, the water diversion valve 6 comprises a water diversion blade 7 and a driving mechanism 8, the water diversion blade 7 is arranged in the water diversion cavity 5 and is attached to the cylindrical inner wall of the water diversion cavity 5, the lower water outlet 2 and the upper water outlet 3 are both arranged on the moving path of the water diversion blade 7, the driving mechanism 8 is in transmission connection with the water diversion blade 7 and is used for driving the water diversion blade 7 to rotate, and the opening area of the lower water outlet 2 in the inner wall of the water diversion cavity 5 and the opening area of the upper water outlet 3 in the inner wall of the water diversion cavity 5 are both smaller than the area of the water diversion blade 7. The water diversion blades 7 are used for blocking the lower water outlet 2 or the upper water outlet 3 to realize on-off control of the lower water outlet 2 and the upper water outlet 3, the water diversion blades 7 are attached to the cylindrical inner wall of the water diversion cavity 5, the lower water outlet 2 and the upper water outlet 3 are arranged on the moving path of the water diversion blades 7, the blocking effect of the water diversion blades 7 on the lower water outlet 2 and the upper water outlet 3 can be ensured, the area of the water diversion blades 7 is larger than the opening area of the lower water outlet 2 on the inner wall of the water diversion cavity 5 and the opening area of the upper water outlet 3 on the inner wall of the water diversion cavity 5, the blocking effect of the water diversion blades 7 on the lower water outlet 2 and the upper water outlet 3 can be ensured, water leakage caused by incomplete blocking is prevented, the water pressure of the other outlet is influenced, and the working effect of the dish washer is reduced. When the water diversion device works, the driving mechanism 8 drives the water diversion blades 7 to rotate, so that the water diversion blades 7 rotate along the cylindrical inner wall of the water diversion cavity 5, and the rotation of the water diversion blades 7 is controlled according to the requirement, so that the water outlet is not blocked, the lower water outlet 2 or the upper water outlet 3 is blocked, and the water diversion of a waterway is completed.
In order to achieve good water diversion effect, the water diversion blades 7 are arc-shaped and matched with the inner wall of the cylinder of the water diversion cavity 5. The curved water diversion blade 7 is good with the inner wall laminating degree of water diversion chamber 5, and is better to the shielding effect of lower floor's delivery port 2 and upper water outlet 3, and use with water inlet 4 cooperation for water diversion blade 7 is playing the effect of dividing, and the arc design can also guide rivers, reduces the impact of rivers, and only need pack into in the water diversion chamber 5 when curved water diversion blade 7 installs, simple to operate improves packaging efficiency.
In order to achieve good water inlet effect, the water diversion valve 6 is arranged opposite to the water inlet 4. If the water diversion valve 6 and the water inlet 4 are in the same direction, the occupied volume of the water diversion valve 6 and the water inlet 4 is larger, the installation is not facilitated, if the water diversion valve 6 is perpendicular to the water inlet 4, the control of the lower water outlet 2 and the upper water outlet 3 is not facilitated, the structural design of the valve core is complex, the forming is not facilitated, the water diversion valve 6 and the water inlet 4 are oppositely arranged, the installation space can be saved, the control effect of the lower water outlet 2 and the upper water outlet 3 can be ensured, and the valve core is simple in structure. After the rivers get into from water inlet 4, can directly reach shunt valve 6 departments, by the direction of diversion blade 7 again, the water intaking distance is short, guarantees the effect of intaking, and the rivers that intake are to outside impact, can make the inner wall laminating of diversion blade 7 and diversion chamber 5 inseparabler, improved the effect of blockking of diversion blade 7, prevent that rivers from leaking from the delivery port department that blocks the side.
In order to achieve good water outlet effect, the upper water outlet 3 faces outwards, and the lower water outlet 2 faces to the top. The lower water outlet 2 faces to the top, so that water can be conveniently supplied to the bottom of the dish washer directly, and the upper water outlet 3 faces to the outer side, so that water can be conveniently supplied to the upper part of the dish washer from an outer side pipeline.
Example 2:
the embodiment provides a water route structure of dish washer, as shown in fig. 4, 5, including drinking cup and dish washer inner bag 9 of taking the shunt valve, the drinking cup setting of taking the shunt valve is in the bottom of dish washer inner bag 9, and dish washer inner bag 9 side is equipped with well water spray line 10 and top water spray line 11, and the drinking cup top of taking the shunt valve is equipped with bottom water spray line 12, and bottom water spray line 12 is connected with lower floor's delivery port 2, is connected through tee pipe 13 between well water spray line 10 and the top water spray line 11, and upper water outlet 3 is connected with the water inlet end of tee pipe 13. The middle water spraying pipeline 10 is used for supplying water to the middle spray arm of the dish washer, the top water spraying pipeline 11 is used for supplying water to the top spray arm of the dish washer, the bottom water spraying pipeline 12 is used for supplying water to the bottom spray arm of the dish washer, and the three-way pipe 13 is used for guiding water flow of the upper water outlet 3 to the middle water spraying pipeline 10 and the top water spraying pipeline 11 simultaneously.
In order to ensure the water pressure, the tee 13 comprises a first water outlet 14 connected with the top water spraying pipeline 11, a second water outlet 15 connected with the middle water spraying pipeline 10 and a tee water inlet 16 connected with the upper water outlet 3, wherein the diameter of the first water outlet 14 is smaller than that of the second water outlet 15, and the diameter of the tee water inlet 16 is larger than that of the second water outlet 15. The diameter of the first water outlet 14 is smaller than that of the second water outlet 15, so that the water quantity entering the middle water spraying pipeline 10 is large, the water pressure of the middle spray arm is ensured, the cleaning effect is ensured, the diameter of the three-way water inlet 16 is larger than that of the second water outlet 15, and the water inflow can be ensured.
In order to ensure smooth water flow, the included angle between the three-way water inlet 16 and the first water outlet 14 is larger than 90 degrees, and the included angle between the three-way water inlet 16 and the second water outlet 15 is larger than 90 degrees. The included angle between the three-way water inlet 16 and the first water outlet 14 is larger than 90 degrees, so that the flow direction in the three-way water inlet 16 is prevented from being opposite to the flow direction in the first water outlet 14, the downstream of the water flow is ensured, the loss is reduced, the included angle between the three-way water inlet 16 and the second water outlet 15 is larger than 90 degrees, the flow direction in the three-way water inlet 16 is prevented from being opposite to the flow direction in the second water outlet 15, the downstream of the water flow is ensured, and the loss is reduced.
The present utility model is not limited to the above embodiments, but is capable of modification and variation in detail, and other modifications and variations can be made by those skilled in the art without departing from the scope of the present utility model.

Claims (9)

1. The utility model provides a take drinking cup of shunt valve, includes drinking cup body (1), its characterized in that be equipped with lower floor's delivery port (2), upper water outlet (3), water inlet (4) and water diversion chamber (5) on drinking cup body (1), lower floor's delivery port (2), upper water outlet (3) and water inlet (4) all communicate with water diversion chamber (5), be equipped with on drinking cup body (1) and be used for controlling shunt valve (6) of lower floor's delivery port (2) and upper water outlet (3) break-make, lower floor's delivery port (2), upper water outlet (3) and water inlet (4) mutually perpendicular each other.
2. The water cup with the water diversion valve as set forth in claim 1, wherein: the water diversion cavity (5) is cylindrical, and the lower water outlet (2) and the upper water outlet (3) are arranged on the inner wall of the cylinder of the water diversion cavity (5).
3. A water cup with a diverter valve according to claim 2, characterized in that: the water diversion valve (6) comprises a water diversion blade (7) and a driving mechanism (8), wherein the water diversion blade (7) is arranged in the water diversion cavity (5) and is attached to the inner wall of a cylinder of the water diversion cavity (5), the lower water outlet (2) and the upper water outlet (3) are both arranged on the movement path of the water diversion blade (7), and the driving mechanism (8) is in transmission connection with the water diversion blade (7) and is used for driving the water diversion blade (7) to rotate.
4. A water cup with a diverter valve according to claim 3, characterized in that: the water diversion blades (7) are arc-shaped and matched with the inner wall of the cylinder of the water diversion cavity (5).
5. The water cup with the water diversion valve according to claim 4, wherein the water cup is characterized in that: the water diversion valve (6) is arranged opposite to the water inlet (4).
6. A water cup with a diverter valve according to claim 2, characterized in that: the upper water outlet (3) faces to the outer side, and the lower water outlet (2) faces to the top.
7. The water path structure of the dish washer is characterized by comprising the water cup with the water diversion valve and the dish washer inner container (9) according to any one of claims 1-6, wherein the water cup with the water diversion valve is arranged at the bottom of the dish washer inner container (9), a middle water spraying path (10) and a top water spraying path (11) are arranged on the side face of the dish washer inner container (9), a bottom water spraying path (12) is arranged at the top of the water cup with the water diversion valve, the bottom water spraying path (12) is connected with a lower water outlet (2), the middle water spraying path (10) is connected with the top water spraying path (11) through a three-way pipe (13), and the upper water outlet (3) is connected with the water inlet end of the three-way pipe (13).
8. The dishwasher waterway structure of claim 7, wherein: the three-way pipe (13) comprises a first water outlet (14) connected with the top water spraying pipeline (11), a second water outlet (15) connected with the middle water spraying pipeline (10) and a three-way water inlet (16) connected with the upper water outlet (3), wherein the diameter of the first water outlet (14) is smaller than that of the second water outlet (15), and the diameter of the three-way water inlet (16) is larger than that of the second water outlet (15).
9. The dishwasher waterway structure of claim 8, characterized by: the included angle between the three-way water inlet (16) and the first water outlet (14) is larger than 90 degrees, and the included angle between the three-way water inlet (16) and the second water outlet (15) is larger than 90 degrees.
CN202320990189.8U 2023-04-27 2023-04-27 Water cup with water diversion valve and water path structure of dish washer using same Active CN219782484U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320990189.8U CN219782484U (en) 2023-04-27 2023-04-27 Water cup with water diversion valve and water path structure of dish washer using same

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320990189.8U CN219782484U (en) 2023-04-27 2023-04-27 Water cup with water diversion valve and water path structure of dish washer using same

Publications (1)

Publication Number Publication Date
CN219782484U true CN219782484U (en) 2023-10-03

Family

ID=88155849

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320990189.8U Active CN219782484U (en) 2023-04-27 2023-04-27 Water cup with water diversion valve and water path structure of dish washer using same

Country Status (1)

Country Link
CN (1) CN219782484U (en)

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