CN114271753B - Dishwasher washing method and dishwasher - Google Patents
Dishwasher washing method and dishwasher Download PDFInfo
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- CN114271753B CN114271753B CN202111559642.1A CN202111559642A CN114271753B CN 114271753 B CN114271753 B CN 114271753B CN 202111559642 A CN202111559642 A CN 202111559642A CN 114271753 B CN114271753 B CN 114271753B
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B40/00—Technologies aiming at improving the efficiency of home appliances, e.g. induction cooking or efficient technologies for refrigerators, freezers or dish washers
Abstract
The invention provides a dish washing method and a dish washing machine. The washing method comprises the following steps: a water quality sensor for detecting a real-time water quality value is arranged in a bowl washing cavity of the dish washing machine; setting a first water quality value K for detecting the water level in a controller 1 And detecting a second water quality value K of the detergent 2 The method comprises the steps of carrying out a first treatment on the surface of the Measuring the earlier stage water quality value K of the water quality sensor Front part Is transmitted to the controller and is matched with the first water quality value K 1 Comparing to calibrate the water intake of the dishwasher; mid-term water quality value K measured by the water quality sensor In (a) And a second water quality value K 2 Comparing to determine whether the detergent is sufficient; and after washing, entering a drainage program to obtain drainage time length T, and starting a drainage pump to drain. The dishwasher washing method can enable the water level of the dishwasher to be tested easily, is not easy to cause misjudgment, and reduces inaccurate water level test caused by the influence of environment or structure.
Description
Technical Field
The invention relates to the technical field of dish washers, in particular to a dish washer washing method and a dish washer.
Background
The water level height can not be detected to prior art's dish washer, thereby leads to dish washer to overflow dish washer with water when intaking once more because flowmeter trouble or drain pump jam cause water unable clear, very easily causes electric safety accident when unmanned at home.
Disclosure of Invention
The invention aims to provide a dishwasher washing method which can enable the water level of a dishwasher to be tested easily and avoid misjudgment, and reduce inaccurate water level test caused by the influence of environment or structure.
In order to achieve the purpose of the invention, the invention adopts the following technical scheme:
according to one aspect of the present invention, a dishwasher washing method is provided. The washing method comprises the following steps: a water quality sensor for detecting a real-time water quality value is arranged in a bowl washing cavity of the dish washing machine; setting a first water quality value K for detecting the water level in a controller 1 And detecting a second water quality value K of the detergent 2 The method comprises the steps of carrying out a first treatment on the surface of the Measuring the earlier stage water quality value K of the water quality sensor Front part Is transmitted to the controller and is matched with the first water quality value K 1 Comparing to calibrate the water intake of the dishwasher; after the water inflow is enough, adding a detergent; mid-term water quality value K measured by the water quality sensor In (a) And a second water quality value K 2 Comparing to determine whether the detergent is sufficient; reminding a user to add the detergent in time until the detergent is sufficient when the detergent is insufficient; entering a wash program when the detergent is sufficient; and after washing, entering a drainage program to obtain drainage time length T, and starting a drainage pump to drain.
According to one embodiment of the invention, the early water quality value K Front part And the first water quality value K 1 Comparing to calibrate the water intake of the dishwasher comprises the steps of: the water quality sensor is arranged in the bowl washing cavity, and the water inflow is Q 1 Is provided with a preset water inflow Q 2 ,Q 2 >Q 1 The method comprises the steps of carrying out a first treatment on the surface of the Opening the water inlet valve and the water quality sensor, and transmitting K to the controller Front part And K is equal to 1 Comparing; when K is Front part ≥K 1 When continuing to feed water Q 2 -Q 1 And closing the water inlet valve.
According to an embodiment of the present invention, wherein the mid-term isWater quality value K In (a) And a second water quality value K 2 A comparison is made to determine whether the detergent is sufficient to include the steps of: adding detergent and starting water quality sensor, and transmitting K to controller In (a) And K is equal to 2 Comparing; when K is In (a) <K 2 When the consumption of the detergent is insufficient, reminding a user; when K is In (a) ≥K 2 When sufficient detergent is available, the washing program is entered.
According to one embodiment of the invention, the post-water quality value K Rear part (S) And the first water quality value K 1 Comparing to obtain a drain time period includes the steps of: starting a drainage pump and a water quality sensor, and starting timing by a controller; k to be transmitted to the controller Rear part (S) And K is equal to 1 Comparing; when K is Rear part (S) <K 1 At the time, record and discharge Q 2 -Q 1 Time T required for water of (2) 1 Restarting the timing T; the controller calculates the residual water quantity Q 1 Time T required 2 The method comprises the steps of carrying out a first treatment on the surface of the T and T 2 Comparing; when t=t2, a drainage time period t+t is obtained 1 The drain pump is turned off.
According to an embodiment of the present invention, wherein the remaining water amount Q is discharged 1 Time T required 2 According to the formulaAnd (5) calculating to obtain the product.
According to an embodiment of the invention, the water quality sensor is a TDS sensor.
According to an embodiment of the invention, wherein the dishwasher further comprises a flow meter, the flow meter being arranged at the water inlet of the dishwashing cavity.
According to another aspect of the present invention, a dishwasher is provided. The detection is carried out by the dishwasher washing method described above.
One embodiment of the present invention has the following advantages or benefits:
according to the washing method of the dish-washing machine, the water quality sensor is arranged, and in the water inlet process, a dynamic water inlet mode is adopted, so that overflow caused by excessive water inlet due to the fact that water is not drained can be effectively prevented, and the method can be used for checking whether residual water exists in the dish-washing machine; in the washing process, the adding amount of the detergent is accurately controlled, and the detergent is dynamically added according to different water inflow in different washing procedures; the specific drainage time is obtained through calculation in the drainage process, so that the water is ensured to be drained for a sufficient time, the situation that the water is not drained is prevented, and the drainage system can be used for checking whether the drainage pump of the dish washer or the drainage pump is blocked or not.
Drawings
The above and other features and advantages of the present invention will become more apparent by describing in detail exemplary embodiments thereof with reference to the attached drawings.
Fig. 1 is a schematic view illustrating a structure of a dishwasher according to an exemplary embodiment.
Fig. 2 is a flow chart illustrating a dishwasher washing method according to an exemplary embodiment.
Wherein reference numerals are as follows:
1. a dishwashing cavity; 2. a water quality sensor; 3. a water inlet valve; 4. a draining pump; 5. a flow meter.
Detailed Description
Example embodiments will now be described more fully with reference to the accompanying drawings. However, the exemplary embodiments can be embodied in many forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the concept of the example embodiments to those skilled in the art. The same reference numerals in the drawings denote the same or similar structures, and thus detailed descriptions thereof will be omitted.
The terms "a," "an," "the," and "said" are used to indicate the presence of one or more elements/components/etc.; the terms "comprising" and "having" are intended to be inclusive and mean that there may be additional elements/components/etc. in addition to the listed elements/components/etc.
As shown in fig. 1 to 2, fig. 1 shows a schematic structure of a dishwasher provided by the present invention. Fig. 2 shows a flow diagram of a dishwasher washing method provided by the invention.
The embodiment of the invention provides a dish washing method. The washing method comprises the following steps: a water quality sensor 2 for detecting a real-time water quality value is arranged in a bowl washing cavity 1 of the dish washing machine; setting a first water quality value K for detecting the water level in a controller 1 And detecting a second water quality value K of the detergent 2 The method comprises the steps of carrying out a first treatment on the surface of the The measured early water quality value K of the water quality sensor 2 Front part Is transmitted to the controller and is matched with the first water quality value K 1 Comparing to calibrate the water intake of the dishwasher; after the water inflow is enough, adding a detergent; the measured mid-term water quality value K of the water quality sensor 2 In (a) And a second water quality value K 2 Comparing to determine whether the detergent is sufficient; reminding a user to add the detergent in time until the detergent is sufficient when the detergent is insufficient; entering a wash program when the detergent is sufficient; after the washing is finished, a drainage program is entered, the drainage time length T is obtained, and the drainage pump 4 is started to drain water.
Wherein, the water quality sensor 2 is arranged in the dish washing cavity 1 of the dish washing machine and is arranged at the water inflow rate Q 1 Since the bowl washing chamber 1 may have the undischarged water caused by the previous washing or other factors, the initial water level can be calibrated by the water quality sensor 2, and the first water quality value K is preset in the controller 1 When the water quality sensor 2 detects K Front part A value of greater than or equal to K 1 When the water is out of the position of the water quality sensor 2, the water quantity in the dish washing cavity 1 can reach Q by adding the water which is not drained 1 And water is continuously fed into the dish washer until the required water quantity is reached, so that the water level of the dish washer is easy to test, misjudgment is not easy to cause, and electric safety accidents caused by water overflowing the dish washer are avoided. After stopping water inflow, starting to add the detergent until the water quality sensor 2 detects K In (a) A value of greater than or equal to K 2 After that, the addition is stopped, and then the washing program is entered, so that the amount of the washing agent required by various programs can be precisely controlled.
In a preferred embodiment of the invention, the preliminary water quality value K Front part And the first water quality value K 1 A comparison is made with respect to the number of the cells,to calibrate the water intake of a dishwasher comprises the steps of: the water quality sensor 2 is arranged in the dish washing cavity 1, and the water inflow is Q 1 Is provided with a preset water inflow Q 2 ,Q 2 >Q 1 The method comprises the steps of carrying out a first treatment on the surface of the Opening the water inlet valve 3 and the water quality sensor 2 and transmitting K to the controller Front part And K is equal to 1 Comparing; when K is Front part ≥K 1 When continuing to feed water Q 2 -Q 1 The inlet valve 3 is closed afterwards.
As shown in FIGS. 1 and 2, the preset water inflow is different in different procedures, such as preset water inflow Q in a smart washing procedure 2 =5 liters, while the preset water inflow Q in energy saving washing 2 =4liter, the water quality sensor 2 can be set to Q 1 At a position of 1 liter, typically not more than 1 liter of undischarged water in the dishwasher, the water inflow to the water quality sensor 2 is usually less than 1 liter after opening the water inlet valve 3, and the total water amount in the dishwasher chamber 1 is 1 liter, only the water is needed to be re-supplied (Q 2 -Q 1 ) For example, the intelligent washing only needs the water quality sensor 2 to detect K Front part Greater than or equal to K 1 After water is added in Q 2 -Q 1 =4liter, energy saving wash only requires water quality sensor 2 to detect K Front part Greater than or equal to K 1 After water is added in Q 2 -Q 1 =3liter.
In a preferred embodiment of the present invention, the medium-term water quality value K In (a) And a second water quality value K 2 A comparison is made to determine whether the detergent is sufficient to include the steps of: adding detergent and starting the water quality sensor 2, and transmitting K to the controller In (a) And K is equal to 2 Comparing; when K is In (a) <K 2 When the consumption of the detergent is insufficient, reminding a user; when K is In (a) ≥K 2 When sufficient detergent is available, the washing program is entered.
As shown in fig. 1 and 2, after the detergent is added, the water quality sensor 2 detects the second water quality value K 2 When the controller judges that the water quality value K of the washing process is enough for the water quality value of the water inflow amount of the washing agent dissolved in the corresponding washing program In (a) ≥K 2 When it is indicated that the current washing step has been put inSufficient amount of dishwashing powder, K 1 ≤K In (a) ≤K 2 When the current washing program is not provided with enough detergent, the user needs to be reminded that the current washing effect is poor, and the detergent needs to be added. The amount of the detergent to be put in each washing procedure is different, and the second water quality value K 2 Is not fixed, so the second water quality value K 2 The intermediate water quality value K is determined in different washing procedures by measuring and presetting in advance In (a) Whether or not it is greater than or equal to the second water quality value K 2 。
In a preferred embodiment of the invention, the post-water quality value K Rear part (S) And the first water quality value K 1 Comparing to obtain a drain time period includes the steps of: starting the drainage pump 4 and the water quality sensor 2, and starting timing by a controller; k to be transmitted to the controller Rear part (S) And K is equal to 1 Comparing; when K is Rear part (S) <K 1 At the time, record and discharge Q 2 -Q 1 Time T required for water of (2) 1 Restarting the timing T; the controller calculates the residual water quantity Q 1 Time T required 2 The method comprises the steps of carrying out a first treatment on the surface of the T and T 2 Comparing; when t=t2, a drainage time period t+t is obtained 1 The drain pump 4 is turned off.
As shown in fig. 1 and 2, the water level drops as the water is discharged, and when the water level falls below the position of the water quality sensor 2, the water quality sensor 2 does not detect water, thus obtaining a later water quality value K Rear part (S) =0<K 1 The drain pump 4 or the drain pump 4 is easy to be blocked, the drain can be slowly flowed, the drain time is relatively prolonged, the drain time can be estimated by the method, the water can be ensured to be drained for a sufficient time, the drain pump 4 can be prevented from being closed when the water is not drained, and the method can be used for checking whether the drain pump 4 or the drain pump 4 of the dish washer is blocked or not.
In a preferred embodiment of the invention, the remaining water quantity Q is discharged 1 Time T required 2 According to the formulaAnd (5) calculating to obtain the product.
As shown in fig. 1 and 2, the discharge (Q 2 -Q 1 ) Time T required for water of (2) 1 That is, the difference between the preset water inflow and the water amount at the position of the water quality sensor 2 is (Q) 2 -Q 1 ) Divided by the desired time period T 1 The current water discharge speed of the dish washer can be obtained, and the water is discharged Q under the condition that the water discharge speed is constant when the water quantity of which part is discharged 1 Time T of the partial water inflow 2 I.e. can be made of Q 1 Divided by the drainage rate, the total drainage time (T 1 +T 2 ) More basic than the fixed drain time mode, the drain pump 4 or the drain pump 4 can be checked to be blocked when the drain time is too long.
In a preferred embodiment of the invention, the water quality sensor 2 is a TDS sensor.
Wherein TDS is defined as the total dissolved solids, defined as the total amount of various dissolved mineral salts contained in water, which contains the total amount of inorganic salts and organic matter. The TDS detection is to measure the conductivity of water, and since most of the dishwasher uses tap water for washing, it can be detected by the TDS sensor, and a certain value indicates that the water has passed the TDS sensor. The TDS sensor can also determine whether the wash is sufficient detergent by detecting the amount of mineral in the water.
In a preferred embodiment of the invention, the dishwasher further comprises a flow meter 5, said flow meter 5 being arranged at the water inlet of the dishwashing cavity 1.
As shown in fig. 1 and 2, the flowmeter 5 is electrically connected to a controller, converts the actual water intake amount Q into a pulse level, and the controller can calculate the actual water intake amount Q by detecting the number of pulse levels. By reaching the position Q of the water quality sensor 2 for the inflow 1 Recording the actual water inflow Q when Q is smaller than Q 1 When the water is left in the dishwasher, the residual water in the dishwasher can be checked.
According to the washing method of the dish-washing machine, the water quality sensor 2 is arranged at the position where water can overflow, in the water inlet process, the original water inlet mode with fixed pulse number is abandoned, and the dynamic water inlet mode is adopted, so that overflow caused by excessive water inlet due to the fact that water is not drained can be effectively prevented, and the washing method can be used for checking whether residual water exists in the dish-washing machine; in the washing process, the adding amount of the detergent is accurately controlled, and the detergent is dynamically added according to different water inflow in different washing procedures; the specific drainage time is obtained through calculation in the drainage process, the original fixed drainage time mode is thrown up, the water is ensured to be drained for a sufficient time, the situation that the water is not drained is prevented, and the device can be used for checking whether the drainage pump 4 of the dish washer or the drainage pump 4 is blocked or not.
The dishwasher of the embodiment of the invention is detected by the dishwasher washing method.
In embodiments of the present invention, the term "plurality" refers to two or more, unless explicitly defined otherwise. The terms "mounted," "connected," "secured," and the like are to be construed broadly, and may be, for example, fixedly attached, detachably attached, or integrally attached. The specific meaning of the above terms in the embodiments of the present invention will be understood by those of ordinary skill in the art according to specific circumstances.
In the description of the embodiments of the present invention, it should be understood that the directions or positional relationships indicated by the terms "upper", "lower", etc. are based on the directions or positional relationships shown in the drawings, are merely for convenience in describing the embodiments of the present invention and to simplify the description, and do not indicate or imply that the devices or units referred to must have a specific direction, be configured and operated in a specific direction, and thus should not be construed as limiting the embodiments of the present invention.
In the description of the present specification, the terms "one embodiment," "a preferred embodiment," and the like, mean 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 embodiments of the present invention. In this specification, schematic representations of the above terms do not necessarily refer 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.
The above is only a preferred embodiment of the present invention and is not intended to limit the embodiment of the present invention, and various modifications and variations can be made to the embodiment of the present invention by those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the embodiments of the present invention should be included in the protection scope of the embodiments of the present invention.
Claims (7)
1. A dishwasher washing method, characterized in that the washing method comprises the steps of:
a water quality sensor (2) for detecting a real-time water quality value is arranged in a bowl washing cavity (1) of the dish washing machine;
setting a first water quality value K for detecting the water level in a controller 1 And detecting a second water quality value K of the detergent 2 ;
The measured early water quality value K of the water quality sensor (2) Front part Is transmitted to the controller and is matched with the first water quality value K 1 Comparing to calibrate the water intake of the dishwasher;
after the water inflow is enough, adding a detergent;
the measured mid-term water quality value K of the water quality sensor (2) In (a) And a second water quality value K 2 Comparing to determine whether the detergent is sufficient;
reminding a user to add the detergent in time until the detergent is sufficient when the detergent is insufficient;
entering a wash program when the detergent is sufficient;
after washing, entering a drainage program to obtain drainage time length T, and starting a drainage pump (4) to drain water;
the earlier water quality value K Front part And the first water quality value K 1 Comparing to calibrate the water intake of the dishwasher comprises the steps of:
the water quality sensor (2) is arranged in the dish washing cavity (1) and the water inflow is Q 1 When the position of the water which is not drained is lower than the position of Q1 where the water quality sensor is positioned, K Front part =0<K 1 The controller is internally provided with a preset water inflow Q 2 ,Q 2 >Q 1 ;
Opening the water inlet valve (3) and the water quality sensor (2) and transmitting K to the controller Front part And K is equal to 1 Comparing;
when K is Front part ≥K 1 When continuing to feed water Q 2 -Q 1 And closing the water inlet valve (3).
2. The dishwasher washing method as in claim 1, characterized by the mid-term water quality value K In (a) And a second water quality value K 2 A comparison is made to determine whether the detergent is sufficient to include the steps of:
adding detergent and starting the water quality sensor (2), and transmitting K to the controller In (a) And K is equal to 2 Comparing;
when K is In (a) <K 2 When the consumption of the detergent is insufficient, reminding a user;
when K is In (a) ≥K 2 When sufficient detergent is available, the washing program is entered.
3. The dishwasher washing method as claimed in claim 2, characterized in that the post-water quality value K is set Rear part (S) And the first water quality value K 1 Comparing to obtain a drain time period includes the steps of:
starting a drainage pump (4) and a water quality sensor (2), and starting timing by a controller;
k to be transmitted to the controller Rear part (S) And K is equal to 1 Comparing;
when K is Rear part (S) <K 1 At the time, record and discharge Q 2 -Q 1 Time T required for water of (2) 1 Restarting the timing T;
the controller calculates the residual water quantity Q 1 Time T required 2 ;
T and T 2 Comparing;
when t=t2, a drainage time period t+t is obtained 1 The drain pump (4) is closed.
4. According to claim 3The dishwasher washing method is characterized in that the residual water Q is discharged 1 Time T required 2 According to the formulaAnd (5) calculating to obtain the product.
5. The dishwasher washing method according to claim 1, characterized in that the water quality sensor (2) is a TDS sensor.
6. The dishwasher washing method according to claim 1, characterized in that the dishwasher further comprises a flow meter (5), the flow meter (5) being arranged at the water inlet of the dishwashing cavity (1).
7. A dishwasher, characterized in that it is detected by a dishwasher washing method according to any one of claims 1 to 6.
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