CN214317957U - Water tank dish washing machine - Google Patents

Water tank dish washing machine Download PDF

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Publication number
CN214317957U
CN214317957U CN202022126410.4U CN202022126410U CN214317957U CN 214317957 U CN214317957 U CN 214317957U CN 202022126410 U CN202022126410 U CN 202022126410U CN 214317957 U CN214317957 U CN 214317957U
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overflow
sink
pipe
water
subassembly
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CN202022126410.4U
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吴旭波
王豪杰
潘叶江
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Vatti Co Ltd
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Vatti Co Ltd
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Abstract

The utility model discloses a basin dish washer, including basin body, overflow subassembly, drainage subassembly and the control unit, wherein be in be provided with the overflow mouth on the basin body, overflow unit mount in on the basin body and with the overflow mouth is linked together, drainage unit mount in basin body bottom, the overflow subassembly includes overflow induction element and is used for responding to overflow water flow signal, the control unit respectively with overflow induction element drainage subassembly electric connection, it can effectually prevent that high water level abnormal conditions water level from continuously rising overflow to dish washer terminal surface or cupboard in, avoids causing dish washer or user cupboard harm.

Description

Water tank dish washing machine
Technical Field
The utility model relates to a dish washer technical field especially relates to a basin dish washer.
Background
The sink dish-washing machine is used as a dual-purpose kitchen appliance capable of washing dishes and fruits and vegetables, and the required water inflow of the sink is different under the dish-washing and fruit and vegetable-washing modes, so that an overflow port is usually arranged at the middle upper part of the sink to prevent excessive water inflow of the sink caused by faults of water inlet components or artificial water addition in the dish-washing or fruit and vegetable-washing process from overflowing to the end face of the dish-washing machine or a cabinet; the overflow port of a common water tank dish washing machine is usually set according to the water inflow of a water inlet component, so that excessive water flowing into the water inlet component after the water inlet component breaks down can be discharged through the overflow port.
However, when considering the high water level fault of the water tank, the water tank directly discharges redundant water through the overflow port usually, if the water inlet element breaks down, the water level rises continuously when the water inlet amount is greater than the water discharge amount of the overflow port, and the water overflows to the end surface of the water tank or even the cabinet of a user, so that the dish washer and the cabinet of the user are damaged.
Simultaneously, when basin dish washer was used as the basin mode, the user generally can make the tap directly to intaking in the basin, based on different user's home water pressure difference, leads to once the user forgets in a temporary event and closes under the condition of tap, the inflow will appear and be greater than overflow mouth displacement, and the water level constantly rises, overflows to the basin terminal surface even in the cupboard, causes the harm to dish washer and user's cupboard.
Therefore, as a solution to the above, if the sink dishwasher draining and feedback mechanism is accelerated in case of high water level abnormality, it is the technical problem to be solved by the present proposal.
SUMMERY OF THE UTILITY MODEL
The utility model discloses aim at solving one of the problems that exist among the prior correlation technique at least to a certain extent, for this reason, an object of the utility model is to provide a basin dish washer, it can effectually prevent that high water level abnormal conditions water level from continuously rising overflow to dish washer terminal surface or cupboard in, avoids causing dish washer or user cupboard harm.
The above purpose is realized by the following technical scheme:
the utility model provides a basin dish washer, includes basin body, overflow subassembly, drainage subassembly and the control unit, wherein the basin body has the open washing chamber in top be provided with the overflow mouth on the basin body just the overflow mouth with the washing chamber is linked together, overflow subassembly install in on the basin body and with the overflow mouth is linked together, drainage subassembly install in basin body bottom, the overflow subassembly include overflow induction element and be used for responding to overflow rivers signal, the control unit respectively with overflow induction element drainage subassembly electric connection.
In some embodiments, the overflow assembly further comprises an overflow assembly body, a connecting pipe and an overflow pipe, wherein the overflow assembly body, the connecting pipe, the overflow sensing device and the overflow pipe are connected together in sequence, and the overflow assembly body is communicated with the overflow port.
In some embodiments, the drain assembly includes a drain valve and a drain pipe, wherein the drain valve has a water inlet in communication with the drain opening at the bottom of the sink body and a water outlet in communication with the drain pipe.
In some embodiments, the overflow pipe further comprises a main drainage pipe and an outer drainage pipe, wherein the water outlet of the overflow pipe and the water outlet of the drainage pipe are respectively communicated with the main drainage pipe, and the main drainage pipe is communicated with the outer drainage pipe.
In some embodiments, the sink body is a trough body with an upward opening, and the overflow port is disposed at a middle upper portion of the sink body.
In some embodiments, the overflow sensing device is a flow meter, or a water flow sensor.
Compared with the prior art, the utility model discloses an at least including following beneficial effect:
1. the utility model discloses a basin dish washer, it can effectually prevent that high water level abnormal conditions water level from continuously rising overflow to dish washer terminal surface or cupboard in, avoids causing dish washer or user cupboard harm.
Drawings
FIG. 1 is a schematic perspective view of a sink dishwasher in accordance with an embodiment of the present invention;
FIG. 2 is another perspective view of a sink dishwasher in accordance with an embodiment of the present invention;
FIG. 3 is a schematic structural view of a sink dishwasher in an embodiment of the present invention;
fig. 4 is a schematic flow chart of an overflow control method according to a second embodiment of the present invention;
fig. 5 is a schematic flow chart of an overflow control method according to a third embodiment of the present invention.
Detailed Description
The present invention is illustrated by the following examples, but the present invention is not limited to these examples. To the embodiment of the present invention, modify or replace some technical features, without departing from the spirit of the present invention, it should be covered in the technical solution scope of the present invention.
The first embodiment is as follows: as shown in fig. 1, 2 and 3, the present embodiment provides a sink dish washer, which includes a sink body 1, an overflow assembly 2, a drainage assembly 3 and a control unit, wherein the sink body 1 has a washing chamber with an open top, an overflow port 100 is provided on the sink body 1, and the overflow port 100 is communicated with the washing chamber, in the present embodiment, the sink body 1 is a groove body with an upward opening, the overflow port 100 is provided at an upper middle portion of the sink body 1, the overflow assembly 2 is installed on the sink body 1 and is communicated with the overflow port 100, preferably, the overflow assembly 2 is provided at an upper middle portion outside the sink body 1, the drainage assembly 3 is installed at a bottom of the sink body 1, the overflow assembly 2 includes an overflow sensing device for sensing an overflow water signal, in the present embodiment, the overflow sensing device 21 employs a flow meter for measuring an overflow water flow, and the control unit is respectively connected with the flow meter and the flow meter, The drainage assembly 3 is electrically connected.
The water tank dish washing machine can effectively prevent the water level of a high water level abnormal condition from continuously rising and overflowing to the end face of the dish washing machine or the cabinet, and avoids damage to the dish washing machine or the cabinet of a user.
Specifically, the basin dish washer that this embodiment provided is used for the measurement overflow water volume through set up the flowmeter in overflow subassembly 2, responds to the overflow condition promptly to through combining feedback action with drainage component 3, accelerate high water level abnormal conditions drainage overflow, effectual prevent that high water level abnormal conditions water level from continuously rising overflow to dish washer terminal surface or cupboard in, avoid causing dish washer or user cupboard harm.
In this embodiment, the flowmeter counts the response to the rivers when basin dish washer overflows, and feedback basin dish washer is in the unusual overflow condition of high-order water promptly when the flowmeter appears continuously counting, and feedback signal to the control unit promptly, the control unit controls the drainage component 3 initiative drainage of basin bottom promptly, and basin dish washer overflow speed accelerates, avoids unusual high water level to continuously rise.
In this embodiment, the overflow assembly 2 further includes an overflow assembly body 22, a connecting pipe 23 and an overflow pipe 24, wherein the overflow assembly body 22, the connecting pipe 23, the flow meter and the overflow pipe 24 are sequentially connected together, and the overflow assembly body 22 is communicated with the overflow port 100.
Preferably, the drainage component 3 comprises a drainage valve 31 and a drainage pipe 32, wherein a water inlet of the drainage valve 31 is communicated with a drainage outlet at the bottom of the water tank body 1, a water outlet of the drainage valve is communicated with the drainage pipe 32, and the drainage component is simple in structure, reasonable and ingenious in design and capable of efficiently discharging the water in the water tank body 1 outwards.
In this embodiment, still include main drain pipe 4 and outer drain pipe 5, wherein the delivery port of overflow pipe 24, the delivery port of drain pipe 32 are linked together with main drain pipe 4 respectively, and main drain pipe 4 is linked together with outer drain pipe 5, and its simple structure, reasonable in design, ingenious can the high efficiency with the water of basin body 1 toward outer discharge. Preferably, the outer drainage pipe 5 is connected to a user sewer for drainage.
The overflow sensing device of this embodiment is not limited to a flow meter, but may be a water flow sensor or other mechanism, i.e., may sense an overflow water flow signal in the sink dishwasher overflow assembly 2.
Example two: as shown in fig. 1, 2, 3 and 4, the present embodiment provides an overflow control method of a sink dish-washing machine, which is applied to the sink dish-washing machine according to the first embodiment, and the control method includes the following steps:
s1, judging whether the overflow water quantity is larger than a preset threshold value, if so, entering the step S3, and if not, entering the step S2;
s2, the flowmeter continues to measure the overflow water quantity and returns to the step S1;
and S3, controlling the drainage assembly 3 to be opened.
And S4, performing high water level fault alarm.
The overflow control method of the sink dish washing machine can effectively prevent the water level from continuously rising and overflowing to the end face of the dish washing machine or the cabinet under the high water level abnormal condition, and avoid causing damage to the dish washing machine or the cabinet of a user.
Specifically, in the overflow control method provided by this embodiment, the flow meter is disposed in the overflow assembly 2 for measuring the overflow water amount, i.e. sensing the overflow condition, or a feedback mechanism such as a water level sensor is disposed, when the continuous overflow of the sink dishwasher is detected, the overflow sensing device, e.g. the flow meter, performs overflow feedback, so as to control the drainage assembly 3 at the bottom of the sink to actively drain water, so as to prevent the overflow water level from continuously rising, i.e. effectively accelerate the overflow of the abnormal high water level condition, thereby realizing the timely control of the overflow water level, and avoiding the occurrence of the abnormal condition that the continuous rising water flows overflow into the end surface of the dishwasher or the user cabinet.
In this embodiment, when the sink dish-washing machine normally enters water, if a water inlet component fails, the sink body 1 continuously enters water, so that the water level continuously rises, and when the water level rises to the overflow port 100 of the sink body 1, the high-level water flows through the water inlet of the overflow assembly 2 to overflow into the channel of the overflow assembly 2 and then flows through the flow meter to overflow into the main drain pipe 4, further, the overflow water flows through the flow meter, the flow meter starts counting detection, when the detected overflow water reaches a set amount, the high-level water is judged to be abnormal in overflow, and an overflow signal is fed back to the control unit, the control unit cuts off the water inlet and simultaneously starts the drain valve 31 at the bottom of the sink dish-washing machine to drain water, so as to accelerate the high-level overflow, and the whole machine feeds back a high-level fault alarm to ensure that the water level in the sink body 1 does not continuously rise, or when the water inlet component completely fails, the drain valve 31 is opened to drain water in an accelerated manner, so that the water level can be effectively prevented from continuously rising, and overflow water is prevented from overflowing into a cabinet outside the dish washing machine.
Example three: as shown in fig. 1, 2, 3 and 5, the present embodiment provides an overflow control method of a sink dish-washing machine, which is applied to the sink dish-washing machine according to the first embodiment, and the control method includes the following steps:
s1, judging whether the overflow water quantity is larger than a preset threshold value, if so, entering the step S3, and if not, entering the step S2;
s2, the flowmeter continues to measure the overflow water quantity and returns to the step S1;
s3, controlling the drainage component 3 to be opened;
s4, after the drainage assembly 3 is opened to work for a preset time, the drainage assembly 3 is controlled to be closed;
s5, judging whether the flowmeter is still measuring, if not, not feeding back signals and ending the program, if yes, entering the step S6;
and S6, controlling the drainage assembly 3 to be opened and carrying out high water level reminding.
The overflow control method of the sink dish washing machine can effectively prevent the water level from continuously rising and overflowing to the end face of the dish washing machine or the cabinet under the high water level abnormal condition, and avoid causing damage to the dish washing machine or the cabinet of a user.
Specifically, in the overflow control method provided by this embodiment, the flow meter is disposed in the overflow assembly 2 for measuring the overflow water amount, i.e. sensing the overflow condition, or a feedback mechanism such as a water level sensor is disposed, when the continuous overflow of the sink dishwasher is detected, the overflow sensing device, e.g. the flow meter, performs overflow feedback, so as to control the drainage assembly 3 at the bottom of the sink to actively drain water, so as to prevent the overflow water level from continuously rising, i.e. effectively accelerate the overflow of the abnormal high water level condition, thereby realizing the timely control of the overflow water level, and avoiding the occurrence of the abnormal condition that the continuous rising water flows overflow into the end surface of the dishwasher or the user cabinet.
In this embodiment, when the sink dish washer is used as a sink mode to wash fruits and vegetables, in the sink mode, a user directly uses the faucet to add water to the sink body 1, and the water inlet speed of some user faucets is far greater than the overflow speed of the overflow port 100 of the sink body 1 due to the difference of the home water pressure, so that when the user forgets to turn off the faucet temporarily, the water level in the sink body 1 will continuously rise, overflow will be performed by the overflow assembly 2 after rising to the overflow water level, the overflow flows through the overflow assembly 2 and flows into the main drain pipe 4 through the flow meter, further, the overflow flows will flow through the flow meter, the flow meter starts counting detection, when the detected overflow reaches the set amount, it is determined that the high-level water overflow is abnormal, and an overflow signal is fed back to the control unit, the control unit will start the drain valve 31 at the bottom of the sink dish washer to drain water, accelerating high water level overflow; furthermore, after the drain valve 31 is opened to assist overflow, the water level is continuously reduced, and when the water level is lower than the overflow water level, no overflow water flows through the flow meter, the drain valve 31 is closed, so that sufficient water is ensured to be available for a user to wash vegetables or fruits and vegetables in the water tank body 1; after drain valve 31 closed, basin body 1 continues to intake, when leading to overflow subassembly 2 to detect high water level overflow once more, reopens drain valve 31 to carry out high water level simultaneously and remind the user in time to close tap.
What has been described above are only some embodiments of the invention. For those skilled in the art, without departing from the inventive concept, several modifications and improvements can be made, which are within the scope of the invention.

Claims (6)

1. The utility model provides a basin dish washer, its characterized in that, includes basin body (1), overflow subassembly (2), drainage subassembly (3) and the control unit, wherein basin body (1) has the washing chamber that the top is open be provided with overflow mouth (100) on basin body (1) just overflow mouth (100) with the washing chamber is linked together, overflow subassembly (2) install in on basin body (1) and with overflow mouth (100) are linked together, drainage subassembly (3) install in basin body (1) bottom, overflow subassembly (2) include overflow induction device (21) and are used for responding to overflow rivers signal, the control unit respectively with overflow induction device (21), drainage subassembly (3) electric connection.
2. A sink dishwasher according to claim 1, wherein the overflow assembly (2) further comprises an overflow assembly body (22), a connecting pipe (23) and an overflow pipe (24), wherein the overflow assembly body (22), the connecting pipe (23), the overflow sensing means (21) and the overflow pipe (24) are connected together in sequence, the overflow assembly body (22) being in communication with the overflow port (100).
3. A sink dishwasher according to claim 2, wherein the drain assembly (3) comprises a drain valve (31) and a drain pipe (32), wherein the inlet of the drain valve (31) communicates with the drain opening at the bottom of the sink body (1) and the outlet communicates with the drain pipe (32).
4. A sink dishwasher according to claim 3, further comprising a main drain pipe (4) and an outer drain pipe (5), wherein the outlet of the overflow pipe (24) and the outlet of the drain pipe (32) are in communication with the main drain pipe (4) and the outer drain pipe (5), respectively.
5. The sink dish washer according to claim 1, 2, 3 or 4, wherein the sink body (1) is a trough body with an upward opening, and the overflow opening (100) is disposed at the middle upper portion of the sink body (1).
6. A sink dishwasher according to claim 1, 2, 3 or 4, characterized in that the overflow sensing means (21) is a flow meter or a water flow sensor.
CN202022126410.4U 2020-09-25 2020-09-25 Water tank dish washing machine Active CN214317957U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022126410.4U CN214317957U (en) 2020-09-25 2020-09-25 Water tank dish washing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022126410.4U CN214317957U (en) 2020-09-25 2020-09-25 Water tank dish washing machine

Publications (1)

Publication Number Publication Date
CN214317957U true CN214317957U (en) 2021-10-01

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022126410.4U Active CN214317957U (en) 2020-09-25 2020-09-25 Water tank dish washing machine

Country Status (1)

Country Link
CN (1) CN214317957U (en)

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