Method for washing with laundry beads of a laundry device

A tailored washing method for laundry pearls in washers optimizes their functionality, ensuring thorough cleaning and improved user experience while minimizing resource use.

CN115198490BActive Publication Date: 2025-07-15QINGDAO HAIER WASHING MASCH CO LTD +1
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202110396835.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-04-13
Publication Date
2025-07-15
Estimated Expiration
2041-04-13

AI Technical Summary

Technical Problem

The existing laundry equipment cannot fully utilize the multiple functions of laundry beads by using conventional laundry procedures, resulting in poor user experience.

Method used

A bead-coagulation washing method is provided, including water inlet, concentration washing, washing, multiple intermediate dehydration and spray rinsing alternating, final dehydration and anti-winding operations, and optimize the use effect of beads by adjusting the water level and washing parameters.

Benefits of technology

In the case of water and electricity saving, fully remove stubborn stains, give full play to the functional components of laundry beads, and improve user experience.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN115198490B_ABST
    Figure CN115198490B_ABST
Patent Text Reader

Abstract

The present invention belongs to the technical field of laundry, aiming to solve the problem that the existing laundry equipment cannot exert the best effect of laundry beads by using conventional laundry procedures. For this purpose, the present invention provides a method for washing laundry beads of a laundry equipment, including: making the laundry equipment sequentially perform water inlet operation, concentration washing operation, washing operation, multiple intermediate dehydration and spray rinsing alternating operation, final dehydration operation and anti-tangling operation on the clothes; the water level setting method of the concentration washing operation is: when the water level of the washing operation is greater than or equal to the first set gear, the water level of the concentration washing operation is less than the water level of the washing operation. Through the laundry bead washing method of the present invention, not only can stubborn stains be fully removed to clean the clothes, but also the best effects of other functional components of the laundry beads can be maximally exerted, thereby meeting the needs of users and improving the user experience.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention belongs to the technical field of laundry, and specifically provides a condensed bead washing method for a laundry device. Background Art

[0002] A laundry machine is a device that can wash, rinse and dehydrate clothes. Common laundry machines include pulsator washing machines and drum washing machines. Laundry machines can wash a variety of different clothes, that is, they can wash clothes of different materials or types in a targeted manner.

[0003] Laundry detergent beads (also called laundry beads) are a new generation of washing products after laundry powder and laundry liquid. They are designed for machine washing and are easy to operate. Users can quantitatively choose the number of laundry beads to be put in according to the number of clothes to be washed. They consist of a soluble outer membrane that wraps a certain amount of laundry essence. They can exert high cleaning power with a small amount of use. At the same time, functional ingredients such as builders, antibacterial agents, enzyme preparations, color fixatives and color protection agents are added to the laundry beads. Often one laundry detergent bead can wash a whole bucket of clothes, that is, one laundry detergent bead has multiple functions such as concentrated laundry liquid, disinfectant, softener and fragrance beads. In view of the multiple functions of laundry detergent beads, it is difficult to bring out the best effect of laundry detergent beads by using traditional conventional laundry procedures. Therefore, the field is in urgent need of a laundry procedure suitable for laundry detergent beads to meet user needs and enhance user experience.

[0004] Therefore, the art needs a new condensed bead washing method for laundry equipment to solve the above problems. Summary of the invention

[0005] In order to solve the above-mentioned problems in the prior art, that is, to solve the problem that the conventional washing program of the existing washing machine cannot give full play to the best effect of condensed beads, the present invention provides a condensed bead washing method for the washing machine, the condensed bead washing method comprising: causing the washing machine to sequentially perform water filling operation, concentration washing operation, washing operation, multiple intermediate dehydration and spray rinsing alternating operations, final dehydration operation and anti-winding operation on the clothes; the water level setting method of the concentration washing operation is: when the water level of the washing operation is greater than or equal to the first set gear, the water level of the concentration washing operation is less than the water level of the washing operation, and when the water level of the washing operation is less than the first set gear, the water level of the concentration washing operation is equal to the water level of the washing operation; the type of each intermediate dehydration is determined according to the water level of the washing operation; the time of each spray rinsing is determined according to the water level of the washing operation and the spray water inlet parameter.

[0006] In the preferred technical solution of the above-mentioned condensed bead washing method, the step of "performing water supply operation on the clothes" specifically includes: causing the laundry device to first perform a detergent delivery operation and then perform a clothes soaking operation.

[0007] In the preferred technical solution of the above-mentioned laundry detergent beads washing method, the step of "performing a clothing soaking operation" specifically includes: when the water level of the washing operation is greater than the second set gear, when the water inlet reaches the second set gear, first make the laundry equipment form an alternating opening and closing soaking water flow to soak the clothes for the first set time, then stop washing for the second set time, then stop the water inlet and form an alternating opening and closing soaking water flow to soak the clothes for the third set time and then inlet water again; when the water level of the washing operation is less than or equal to the second set gear, inlet water to the water level of the washing operation.

[0008] In the preferred technical solution of the above-mentioned laundry detergent beads washing method, the step of "performing an intermediate dehydration operation on the clothes" specifically includes: making the laundry equipment sequentially perform a first low-speed dehydration operation, a second low-speed dehydration operation, a continuous dehydration operation, an inertial dehydration operation and a braking operation; wherein, the maximum rotation speed of the second low-speed dehydration operation is greater than the maximum rotation speed of the first low-speed dehydration operation.

[0009] In the preferred technical solution of the above-mentioned laundry detergent beads washing method, the step of "performing multiple alternating operations of intermediate dehydration and spray rinsing on the clothes" specifically includes: performing three alternating operations of intermediate dehydration and spray rinsing on the clothes.

[0010] In the preferred technical solution of the above-mentioned laundry detergent beads washing method, when the water level of the washing operation is less than the third set gear, the laundry detergent beads washing method further includes: performing a cloth shaking operation on the clothes by using an alternating opening and closing cloth shaking water flow after the first intermediate dehydration.

[0011] In the preferred technical solution of the above-mentioned laundry detergent beads washing method, the laundry detergent beads washing method further includes: performing a softener dispensing operation on the laundry equipment during the second spray rinsing process.

[0012] In the preferred technical solution of the above-mentioned laundry detergent beads washing method, while performing the step of "performing a softener dispensing operation", the laundry detergent beads washing method further includes: rotating the inner tub of the laundry equipment.

[0013] In the preferred technical solution of the above-mentioned laundry detergent beads washing method, the step of "performing a final dehydration operation on the clothes" specifically includes: making the laundry equipment sequentially perform a first low-speed dehydration operation, a second low-speed dehydration operation, a continuous dehydration operation, an inertial dehydration operation and a braking operation; wherein, the maximum rotation speed of the second low-speed dehydration operation is greater than the maximum rotation speed of the first low-speed dehydration operation, and the type of final dehydration is determined according to the water level of the washing operation.

[0014] In the preferred technical solution of the above-mentioned laundry detergent beads washing method, the step of "performing an anti-tangling operation on the clothes" specifically includes: performing an anti-tangling operation on the clothes by using an alternating opening and closing anti-tangling water flow.

[0015] In a preferred technical solution of the present invention, a concentration wash at a low water level can be selectively adopted between the water inlet operation and the washing operation according to the set water level of the washing operation. That is, when the water level of the washing operation belongs to the medium-high water level, a concentration wash operation at a low water level can be adopted before the washing operation, so as to use the laundry beads to remove stubborn stains on the clothes, that is, the detergent concentration in the water is relatively high, so that it can penetrate into the fibers of the clothes to achieve deep cleaning. At the same time, other functional components in the laundry beads can also fully play their roles. That is, through the bead washing process of the present invention, the clothes can not only be thoroughly cleaned by fully removing stubborn stains, but also the best effects of other functional components of the laundry beads can be maximally exerted. And the alternating operation of multiple mid-course dehydration and spray rinsing can achieve the rinsing of the clothes while saving water and electricity, and carry away the detergent on the clothes. The anti-tangling operation after the final dehydration can make the clothes fully stretch and avoid wrinkling, thereby meeting the needs of users and improving the user experience.

[0016] Further, when the water level of the set washing operation is slightly higher, during the water inlet process of the laundry equipment, the detergent is put in first and then the clothes are soaked to make the clothes fully soaked in water, preventing the clothes from floating on the water surface, thereby providing a washing basis for the subsequent concentration wash.

[0017] Further, first making the laundry equipment form an alternating opening and closing soaking water flow to soak the clothes for the first set time can wet the clothes fully first, stopping the washing for the second set time can make the clothes sink slowly to absorb water, and then forming an alternating opening and closing soaking water flow to soak the clothes for the third set time can make the clothes completely immersed in the water, so as to ensure that the clothes are fully soaked, prevent the clothes from floating on the water surface locally, and ensure the normal progress of the subsequent washing.

[0018] Further, when the water level of the washing operation is relatively low and the amount of clothes is small, a cloth shaking operation is performed on the clothes after the first mid-course dehydration, which can prevent the clothes from adhering to the inner barrel wall in the case of a small load, ensure the smooth progress of the subsequent spray rinsing, and further rinse off the detergent and the like on the clothes fully to avoid residues, and further improve the user experience.

[0019] Further, during the second spray rinsing process, the softener can fully soften the clothes and improve the softness of the clothes, further enhancing the user experience.

[0020] Further, after the final dehydration operation on the clothes, an anti-tangling operation is carried out through an anti-tangling water flow, which can ensure that the clothes are fully shaken loose and keep a relatively high moisture content after the laundry is finished, and the clothes are not easy to wrinkle after the user dries the clothes, further improving the user experience. Description of the Drawings

[0021] Figure 1 is a schematic structural diagram of the laundry device of the present invention;

[0022] Figure 2 is a flowchart of the method for washing with laundry beads of the laundry device of the present invention. Detailed embodiments

[0023] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. Those skilled in the art should understand that these embodiments are only used to explain the technical principles of the present invention and are not intended to limit the protection scope of the present invention.

[0024] It should be noted that in the description of the present invention, the terms indicating directions or positional relationships such as "middle", "upper", "lower", "vertical", "inner", "outer", etc. are based on the directions or positional relationships shown in the drawings. This is only for convenience of description and does not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation of the present invention. In addition, the terms "first", "second", and "third" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.

[0025] In addition, it should also be noted that in the description of the present invention, unless otherwise clearly specified and defined, the terms "arrangement", "installation", and "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be directly connected, or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those skilled in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.

[0026] Based on the problem that the existing laundry devices pointed out in the background technology cannot exert the best effect of the laundry beads by using the conventional laundry programs, the present invention provides a method for washing with laundry beads of a laundry device, aiming to enable the clothes to pass through the laundry bead washing process of the present invention, not only be able to fully remove stubborn stains and clean the clothes, but also be able to maximize the best effect of other functional components of the laundry beads, thereby meeting the needs of users and enhancing the user experience.

[0027] In the present invention, the laundry device can be a pulsator washing machine, a compound washing machine with a pulsator laundry device, or other laundry devices. Such adjustments and changes to the application object do not constitute a limitation to the present invention and should all be limited within the protection scope of the present invention. The technical solution of the present invention will be described below taking the laundry device as a pulsator washing machine as an example.

[0028] Specifically, as Figure 1As shown in the figure, the pulsator washing machine of the present invention includes a cabinet, an outer tub 1 and an inner tub 2. The outer tub 1 is installed in the cabinet, and the inner tub 2 is rotatably arranged in the outer tub 1. A pulsator 3 is provided at the inner bottom of the inner tub 2. A drain pipe 4 is connected to the bottom of the outer tub 1. A drain valve and a drain motor 5 are provided on the drain pipe 4. The water level line of the pulsator washing machine can be divided into multiple gears. The present invention takes the pulsator washing machine having 10 water inlet gears as an example to illustrate. The water level height difference between each gear can be determined according to the capacity of the pulsator washing machine. In addition to the above 10 water inlet gears, the pulsator washing machine also has a reset water level, which refers to the water level line when the water in the outer tub 1 just covers the pulsator 3 after water injection. In addition, the pulsator washing machine also has a highest water level line (HHT), and there is an overflow line above the highest water level line. The outer tub 1 has an overflow hole at the position of the overflow line, and the overflow hole is communicated with the drain pipe 4 through an overflow pipe 6. In addition, the pulsator washing machine of the present invention also includes a circulating spray system (not shown in the figure). The circulating spray system includes a circulating pipe and a circulating pump. The two ends of the circulating pipe are respectively communicated with the bottom and the side wall of the outer tub 1. The circulating pump is arranged on the circulating pipe and can suck the water in the outer tub 1 into the circulating pipe and re-inject it into the outer tub 1 through the pumping action. The outlet of the circulating pipe is provided with or forms a spray head or other spray structures that can realize spraying. The water flowing out of the circulating pipe can be injected into the outer tub 1 in a spray manner. Of course, the structure of the above circulating spray system is only exemplary. In practical applications, the above circulating spray system can also adopt other structures or replace components in the above structure. Such adjustments and changes to the specific structure of the circulating spray system do not constitute a limitation to the present invention and should all be limited within the protection scope of the present invention. It should be noted that in the present invention, the water level of the washing operation refers to the water level set when the pulsator washing machine executes the washing program, which can be specifically presented in the form of gears. The water levels of the water inlet program, the concentration washing program, the mid-way dehydration program, the spray rinsing program, the final dehydration program and the anti-tangling program can all be reset according to the water level of the washing program or set according to the system's pre-set default values. In addition, it should also be noted that when the user puts in the laundry beads, the laundry beads can be placed in the detergent dispenser of the pulsator washing machine. After the water inlet valve of the pulsator washing machine is opened, the water in the water inlet pipe soaks the laundry beads in the detergent dispenser and dissolves the outer film of the laundry beads, so that the detergent and other functional components in the laundry beads are injected into the outer tub 1 along with the water. The functional components in the laundry beads can include washing aids, bacteriostatic agents, enzyme preparations, color fixatives, color protectants, disinfectants, fabric softeners and flavoring agents, etc. Of course, it can also only include one or several of the above functional components, and can be specifically purchased according to the user's own choice.

[0029] As Figure 1 shown, the method for washing laundry beads of the pulsator washing machine of the present invention includes:

[0030] S1: Cause the pulsator washing machine to perform a water inlet operation on the clothes.

[0031] In step S1, when the water level during the washing operation is relatively high, generally the number of clothes is relatively large. In this case, the water inlet operation on the clothes preferably includes first performing a detergent dispensing operation and then a clothes soaking operation. During the detergent dispensing process, it is preferable to rotate the inner tub, so that after the outer membrane of the laundry beads dissolves, the detergent and other functional components are evenly dripped on the clothes. Performing the clothes soaking operation can ensure that the clothes do not float on the water surface locally. That is, step S1 includes: S11: Perform a detergent dispensing operation; S12: Perform a clothes soaking operation.

[0032] In a preferred scenario, the water level sensor of the pulsator washing machine detects that the water has reached the reset water level, and the host computer sends a command to the drainage motor to open the speed reducer. The action time of the drainage motor is 8 s. After 8 s, the host computer sends a single spin command. The single spin speed of the inner tub is 30 rpm. The inner tub drives the load to rotate. At the same time, the host computer turns on the detergent dispensing function, and the water drives the detergent to be evenly poured onto the clothes. After the single spin time reaches 60 s, the host computer sends commands to close the drainage motor and stop the single spin. During the whole process, the water inlet valve of the pulsator washing machine is always in the open state to keep the water inlet.

[0033] Preferably, in the case where the water level during the washing operation is greater than the second set gear, when the water inlet reaches the second set gear, first cause the pulsator washing machine to form an alternating opening and closing soaking water flow to soak the clothes for the first set time, then stop washing for the second set time, then stop the water inlet and form an alternating opening and closing soaking water flow to soak the clothes for the third set time and then perform water inlet again; in the case where the water level during the washing operation is less than or equal to the second set gear, the water is inlet to the water level during the washing operation.

[0034] In a preferred scenario, when the water level during the washing operation is set to be greater than the 3rd gear water level, the water level sensor detects that the water has reached the 3rd gear water level, and the host computer sends a soaking water flow command: the soaking water flow alternates between opening for 0.7 s and closing for 0.6 s. After the soaking water flow performs washing for 20 s, stop washing for 20 s. Then the host computer sends a command to close the water inlet valve and a command to continue the soaking water flow: the soaking water flow alternates between opening for 0.7 s and closing for 0.5 s. The soaking water flow performs washing for 30 s. The host computer sends a command to open the water inlet valve and continue the water inlet. The soaking stage can make the clothes completely soaked with water and prevent the clothes from floating on the water surface. When the water level during the washing operation is set to be less than or equal to the 3rd gear water level, the pulsator washing machine inlets the water to the water level during the washing operation. In the above, the second set gear, the first set time, the second set time, and the third set time are all exemplary, and those skilled in the art can flexibly set them, which does not constitute a limitation to the present invention.

[0035] S2: Cause the pulsator washing machine to perform a concentration washing operation on the clothes.

[0036] During the concentration washing process, when the water level in the washing operation is relatively high, generally the number of clothes is relatively large. At this time, the washing water level is preferably lower than the washing water level when the pulsator washing machine executes the washing program, that is, the washing water level in step S2 is lower than the washing water level in the subsequent step S3, so as to ensure that the detergent concentration in the water at this stage is relatively high, making it easier for the detergent to penetrate between the fibers of the clothes and achieve deep cleaning. When the water level in the washing operation is relatively low, generally the number of clothes is relatively small. Since the laundry beads generally contain a high concentration of detergent themselves, for a small number of clothes, directly filling the water to the water level of the washing operation can achieve high-concentration cleaning of a small number of clothes. That is, the preferred way to set the water level for the concentration washing operation is: when the water level of the washing operation is greater than or equal to the first set gear, the water level of the concentration washing operation is less than the water level of the washing operation; when the water level of the washing operation is less than the first set gear, the water level of the concentration washing operation is equal to the water level of the washing operation. Further preferably, when the water level of the washing operation is greater than or equal to the first set gear, the water level of the concentration washing operation is reduced by a preset gear based on the water level of the washing operation. However, in this case, the water level of the concentration washing operation shall not be lower than the lowest target water level for concentration washing, so as to ensure that there is enough water to wash a relatively large number of clothes. When the water level of the washing operation is less than the first set gear, the water level of the concentration washing operation is equal to the water level of the washing operation.

[0037] In a preferred scenario, when the water level of the washing operation is greater than the water level of the 5th gear, the water level sensor detects that the water has reached the concentration washing water level (the set water level of the washing operation minus 2 gears). For example, if the set water level of the washing operation is the 6th water level, then the concentration washing water level is the 4th water level; when the water level of the washing operation is the 5th water level, the concentration washing water level is the 4th water level; when the water level of the washing operation is less than the water level of the 5th gear, the water is filled to the water level of the washing operation; when the concentration washing water level is reached, a command to close the water inlet valve and execute the concentration washing water flow is sent. The concentration washing water flow can adopt an alternating open and closed water flow. For example, the concentration washing water flow is an alternating water flow of opening for 1.0 s and closing for 1.0 s. After 30 s of concentration washing, the upper computer sends a command to open the water inlet valve and close the concentration washing. In the above, the first set gear is only exemplary, and those skilled in the art can set it flexibly, which does not constitute a limitation to the present invention.

[0038] S3: Make the pulsator washing machine perform a washing operation on the clothes.

[0039] During the washing process, it is preferably to make the pulsator washing machine form a first washing water flow, a second washing water flow and a third washing water flow in sequence to wash the clothes. Moreover, the rotation-stop ratios of the first washing water flow, the second washing water flow and the third washing water flow decrease in sequence. And when the stop times of the first washing water flow, the second washing water flow and the third washing water flow are equal, the rotation times of the first washing water flow, the second washing water flow and the third washing water flow can be decreased in sequence, so as to ensure that the dirt on the clothes is cleaned thoroughly and entanglement is not likely to occur.

[0040] S4: Make the pulsator washing machine perform multiple alternate operations of mid-course dehydration and spray rinsing on the clothes, specifically: S41: Perform mid-course dehydration operation on the clothes; S42: Perform spray rinsing operation on the clothes, and steps S41 and S42 run alternately multiple times.

[0041] In step S41, it is preferably to make the pulsator washing machine perform the first low-speed dehydration operation, the second low-speed dehydration operation, continuous dehydration operation, inertial dehydration operation and braking operation in sequence; among them, the maximum rotation speed of the second low-speed dehydration operation is greater than that of the first low-speed dehydration operation. During the mid-course dehydration process, dehydration can be carried out in a way of gradually accelerating, and the type of each mid-course dehydration is determined according to the water level of the washing operation.

[0042] For example, in a preferred case, execute the mid-course dehydration control logic as shown in the following table:

[0043]

[0044] In step S42, the time for each spray rinse can be determined according to the water level of the washing operation and the spray water inlet parameters. The spray water inlet parameters can be the water inlet time and / or the water inlet flow rate, so as to realize the interaction between the host computer of the pulsator washing machine and the water inlet flow rate parameter Q set by the user. For example, the spray time of the spray rinse can be corrected by measuring the water inlet time from the reset water level to the first gear water level, the flow rate range can be confirmed through the water inlet time, and the correction coefficient k of the spray time can be selected according to the flow rate range. When the water inlet flow rate is less than or equal to the first flow rate threshold and greater than the second flow rate threshold, the spray time correction coefficient k is equal to 1, that is, the spray time remains unchanged. When the water inlet flow rate is greater than the first flow rate threshold, the spray time coefficient k is less than 1, that is, the spray time is reduced. When the water inlet flow rate is less than or equal to the second flow rate threshold, the spray time coefficient k is greater than 1, that is, the spray time is increased. In addition, in the case where the water inlet flow rate is less than or equal to the second flow rate threshold, further classification can be continued through other flow rate thresholds, and then the value of the spray time coefficient k can be further increased according to the classification result. For example, further classification is carried out according to the third flow rate threshold, and the value of the spray time coefficient k when the water inlet flow rate is greater than the third flow rate threshold is less than the value of the spray time coefficient k when the water inlet flow rate is less than or equal to the third flow rate threshold.

[0045] For example, in a preferred case, the following table is executed to determine the correction coefficient of the spray time:

[0046] Classification Inlet flow rate Q (L / min) Inlet time T (s) for resetting the water level to the first gear water level Spray time correction coefficient k #1 Q>19 T<10 0.8 #2 10<Q≤19 10<T≤134 1 #3 5<Q≤10 134<T≤250 1.5 #4 Q≤5 250<T 1.8

[0047] Preferably, the clothes are subjected to three alternating operations of mid-cycle dehydration and spray rinse.

[0048] For example, the following table is executed to perform the alternating operation of mid-cycle dehydration and spray rinse:

[0049]

[0050] It should be noted that the above mid-cycle dehydration type t can adopt the mid-cycle dehydration type d in the foregoing table, or other mid-cycle dehydration types can be selected. In the spray rinse stage, the main water inlet valve can be opened, and water can be sprayed according to the above spray time, and the inner tub rotates at a speed of 30 rpm, which can wash the clothes in all directions and wash away the detergent on the clothes.

[0051] Preferably, after the first mid-cycle dehydration, a cloth shaking operation is performed on the clothes using an alternating opening and closing cloth shaking water flow, and the time for cloth shaking can be determined flexibly, for example, according to the number of clothes or the water level of the washing operation. For example, when the set water level of the washing operation is at the 1-4 gear water level, a cloth shaking operation is added after the first mid-cycle dehydration. Specifically, the cloth shaking operation can be performed using the cloth shaking water flow. For example, the following cloth shaking water flow is adopted:

[0052]

[0053] Preferably, during the second spray rinse, the agitator washing machine performs a softener dispensing operation. For example, before the host computer opens the main water inlet valve, it first opens the softener valve and dispenses the softener in the way of opening for 6 s and closing for 5 s, and the number of times of opening and closing is 6 times.

[0054] S5: Make the agitator washing machine perform a final dehydration operation on the clothes.

[0055] In step S5, preferably, the agitator washing machine sequentially performs a first low-speed dehydration operation, a second low-speed dehydration operation, a continuous dehydration operation, an inertial dehydration operation, and a braking operation; moreover, the maximum rotation speed of the second low-speed dehydration operation is greater than that of the first low-speed dehydration operation, so as to ensure that the dirty water in the clothes is discharged and by the way, take away the stubborn stains in the clothing fibers. During the final dehydration process, dehydration can be carried out in a way of gradually accelerating.

[0056] For example, in a preferred case, the following final dehydration control logic in the table is executed:

[0057]

[0058] S6: Make the agitator washing machine perform an anti-tangling operation on the clothes.

[0059] In step S6, preferably, the agitator washing machine uses an anti-tangling water flow with alternating opening and closing to perform an anti-tangling operation on the clothes, and the anti-tangling time can be determined flexibly, for example, determined according to the number of clothes. For example, the following anti-tangling water flow in the table is adopted:

[0060]

[0061] Preferably, after the anti-tangling operation on the clothes is completed, the host computer sends an unlocking instruction for the upper cover of the agitator washing machine, and the buzzer emits a prompt sound to prompt the user to take away the washed clothes.

[0062] So far, the technical solution of the present invention has been described in combination with the preferred embodiments shown in the drawings. However, it is easy for those skilled in the art to understand that the protection scope of the present invention is obviously not limited to these specific embodiments. Without departing from the principle of the present invention, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will all fall within the protection scope of the present invention.

Claims

1. A method for washing with laundry beads of a laundry device, characterized in that, The described pearl laundry method includes: operating the laundry device to perform water inlet operation, concentrated washing operation, washing operation, multiple intermediate dehydration and spray rinsing alternating operations, final dehydration operation, and anti-tangling operation on the clothes in sequence; The water level setting method for the concentrated washing operation is as follows: when the water level of the washing operation is greater than or equal to the first set gear, the water level of the concentrated washing operation is less than the water level of the washing operation; when the water level of the washing operation is less than the first set gear, the water level of the concentrated washing operation is equal to the water level of the washing operation; The type of each intermediate dehydration is determined according to the water level of the washing operation; The time of each spray rinsing is determined according to the water level of the washing operation and the spray water inlet parameters; The step of "performing water inlet operation on the clothes" specifically includes: operating the laundry device to perform detergent dispensing operation first and then clothes soaking operation; rotating the inner tub during the detergent dispensing process.

2. The pearl-shaped detergent washing method according to claim 1, characterized in that, The step of "performing clothes soaking operation" specifically includes: in the case where the water level of the washing operation is greater than the second set gear, when the water inlet reaches the second set gear, first making the laundry device form an opening and closing alternating soaking water flow to soak the clothes for the first set time, then stopping washing for the second set time, then stopping water inlet and forming an opening and closing alternating soaking water flow to soak the clothes for the third set time and then inletting water again; in the case where the water level of the washing operation is less than or equal to the second set gear, inletting water to the water level of the washing operation.

3. The pearl-shaped detergent washing method according to claim 1, wherein The step of "performing intermediate dehydration operation on the clothes" specifically includes: operating the laundry device to perform the first low-speed dehydration operation, the second low-speed dehydration operation, continuous dehydration operation, inertial dehydration operation, and braking operation in sequence; wherein, the maximum rotation speed of the second low-speed dehydration operation is greater than the maximum rotation speed of the first low-speed dehydration operation.

4. The method for washing the laundry beads according to claim 1, wherein The step of "performing multiple intermediate dehydration and spray rinsing alternating operations on the clothes" specifically includes: performing three intermediate dehydration and spray rinsing alternating operations on the clothes.

5. The method for washing the laundry beads according to claim 4, wherein In the case where the water level of the washing operation is less than the third set gear, the pearl laundry method further includes: performing a cloth shaking operation on the clothes by using an opening and closing alternating cloth shaking water flow after the first intermediate dehydration.

6. The method for washing with the laundry beads according to claim 1, wherein, The pearl laundry method further includes: performing a softener dispensing operation on the laundry device during the second spray rinsing process.

7. The method for washing the laundry beads according to claim 6, characterized in that, While performing the step of "performing softener dispensing operation", the pearl laundry method further includes: rotating the inner tub of the laundry device.

8. The method for washing the laundry beads according to claim 1, wherein The step of "performing final dehydration operation on the clothes" specifically includes: operating the laundry device to perform the first low-speed dehydration operation, the second low-speed dehydration operation, continuous dehydration operation, inertial dehydration operation, and braking operation in sequence; wherein, the maximum rotation speed of the second low-speed dehydration operation is greater than the maximum rotation speed of the first low-speed dehydration operation, and the type of final dehydration is determined according to the water level of the washing operation.

9. The method for washing with the laundry beads according to claim 1, characterized in that, The step of "performing anti-tangling operation on the clothes" specifically includes: performing an anti-tangling operation on the clothes by using an opening and closing alternating anti-tangling water flow.

Citation Information

Patent Citations

  • Clothes washing control method and system

    CN110273257A

  • Detergent adding box

    CN111648098A