Full-automatic dish washing machine capable of preventing water backflow
By setting up an arched anti-backflow air duct and a hot air exchange system in the dishwasher, the problems of low drying efficiency and water backflow are solved, and safe and efficient drying and appliance protection are achieved.
Patent Information
- Application Number
- CN202422821122.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-19
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-11-19
AI Technical Summary
The drying process of traditional dishwashers is inefficient and energy-consuming, the heat is not fully utilized, and water backflow caused by the air jet damages the blower, shortening its service life.
The anti-backflow air duct is designed as an arched pipe with the top of the arched pipe higher than the water surface in the main water tank to prevent water from flowing back into the blower and drying heating module. Combined with the air duct solenoid valve and hot air exchange box, the hot air circulation is optimized.
Effectively protect electrical safety, increase drying speed, save energy, and extend the service life of the blower and drying module.
Smart Images

Figure CN223350154U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of dishwashers, and in particular relates to a fully automatic dishwasher that is waterproof and backflow-proof. Background Art
[0002] The drying process of a traditional dishwasher uses electrically heated air to blow towards the dishes for drying. Excess heat and water vapor are discharged through the overflow vents. The heat is not well utilized, and the water vapor evaporates slowly, resulting in a slow drying speed. In addition, since the heat is not utilized to the maximum extent, it is more energy-consuming.
[0003] During the dishwashing process, air is blown into the water through the air nozzle installed in the main water tank. The bubbling principle can speed up the cleaning of the dishes. The air nozzle is set on the pipe connected to the blower. When the bubbling stops, the water in the main water tank will flow back into the pipe, and then more water will enter the blower, which may easily burn the blower or cause unsafe conditions, affecting the service life of the blower. Utility Model Content
[0004] The utility model aims to overcome the defect in the prior art that water in the main water tank flows back into the blower through the air jet nozzle, causing damage to the blower, and provide a fully automatic dishwasher with waterproof backflow.
[0005] The technical solution adopted by the utility model to solve its technical problems is:
[0006] A fully automatic dishwasher with anti-backflow function, characterized in that it includes a main water tank, a hot air inlet provided on the main water tank, a hot air inlet duct connected to the hot air inlet, an anti-backflow air duct connected to the hot air inlet duct, and a blower connected to the anti-backflow air duct; the anti-backflow air duct is an arched duct, the top of which is higher than the water level in the main water tank.
[0007] Furthermore, the top end of the arched pipe of the anti-backflow air duct is higher than the hot air inlet.
[0008] Furthermore, a low water level switch and a high water level switch are provided in the main water tank; and the top end of the arched pipe of the backflow prevention air duct is higher than the high water level switch.
[0009] Furthermore, the top of the arched pipe of the backflow prevention air duct is higher than the top of the main water tank.
[0010] Furthermore, the hot air inlet duct is provided with a plurality of air nozzles for blowing air toward the inside of the main water tank.
[0011] Furthermore, an air duct solenoid valve is provided on the hot air inlet duct between the air nozzle and the hot air inlet.
[0012] Furthermore, it also includes a hot air outlet arranged on the main water tank, a small heat extraction fan connected to the hot air outlet pipe, and a hot air exchange box connected to the small heat extraction fan pipe; the hot air exchange box is connected to the blower pipe.
[0013] Furthermore, it also includes a drying and heating module connected to the blower pipeline.
[0014] Furthermore, a bottom air duct connected to the hot air inlet pipe is provided on the bottom surface of the main water tank, and the bottom air duct is also provided with a plurality of air nozzles blowing air upwards.
[0015] The beneficial effects of the waterproof backflow fully automatic dishwasher of the utility model are:
[0016] 1. By setting up an anti-wind backflow air duct with an arched pipe whose top is higher than the water surface in the main water tank, it can effectively prevent water entering from the air nozzle from flowing back into the drying heating module and blower, effectively protecting the safety of the appliance.
[0017] 2. The blower blows hot air into the hot air inlet, and the small heat extraction fan extracts hot air from the hot air outlet, which speeds up the flow of hot air and at the same time removes the water vapor in the main water tank, speeding up the drying speed. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] The present invention will be further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0019] Figure 1 This is a schematic front view of a fully automatic dishwasher with waterproof backflow according to an embodiment of the present invention;
[0020] Figure 2 1 is a top view schematic diagram of a fully automatic dishwasher with waterproof backflow according to an embodiment of the present utility model;
[0021] Figure 3 This is an overall structural diagram of the rotary spray disc of an embodiment of the present utility model;
[0022] Figure 4 This is a diagram showing the internal structure of the cylindrical cavity of the rotary spray disk according to an embodiment of the present utility model;
[0023] Figure 5 This is a diagram showing the internal structure of the arc-shaped cavity of the rotary spray disk according to an embodiment of the present utility model;
[0024] Figure 6 It is a cross-sectional view of the rotary spray disc using the new embodiment.
[0025] In the figure: 1, main water tank, 2, upper spray arm, 21, spray head, 3, rotating spray disk, 31, cylindrical cavity, 32, arc cavity, 33, spiral channel, 34, first water spray hole, 35, second water spray hole, 4, hot air inlet, 5, hot air outlet, 6, ultrasonic generator, 7, drying and heating module, 71, heater, 72, air cavity, 8, small heat extraction fan, 9, hot air exchange box, 91, air inlet, 10, blower, 11, small water tank, 1 2. Water inlet pipe, 13. Hot air inlet duct, 14. Anti-backflow air duct, 15. Air nozzle, 16. Bottom air duct, 17. Air duct solenoid valve, 18. Low water level switch, 19. High water level switch, 20. Drain main pipe, 21. Oil overflow pipe, 22. Waste collection tank, 23. Control cabinet, 24. Sliding cover, 25. Overflow duct, 26. Overflow port, 27. Sink heating pipe, 28. Automatic drain ball valve, 29. Water inlet solenoid valve, 30. Partition screen. DETAILED DESCRIPTION
[0026] The present invention will now be described in further detail with reference to the accompanying drawings, which are simplified schematic diagrams that illustrate the basic structure of the present invention in a schematic manner.
[0027] like Figures 1-6 The specific embodiment of the waterproof backflow fully automatic dishwasher of the present invention shown includes: a main water tank 1, an upper spray arm 2 arranged above the main water tank 1, a plurality of rotating spray disks 3 arranged at the bottom of the main water tank 1, a hot air inlet 4 and a hot air outlet 5 arranged at the upper part of the main water tank 1, an air circulation system connecting the hot air inlet 4 and the hot air outlet 5, an ultrasonic generator 6 arranged in the main water tank 1, and a small water tank 11 arranged on the side of the main water tank 1.
[0028] The air circulation system includes a heat extraction fan 8 connected to the hot air outlet 5 by a pipe, a hot air exchange box 9 connected to the heat extraction fan 8 by a pipe, a blower 10 connected to the hot air exchange box 9 by a pipe, a drying and heating module 7 connected to the blower 10 by a pipe, a hot air inlet pipe 13 connected to the hot air inlet 4, and a backflow prevention duct 14 connected between the hot air inlet pipe 13 and the drying and heating module 7. The backflow prevention duct 14 is an arched duct, the top of which is higher than the water level in the main water tank 1. The safest solution is to have the top of the arched duct higher than the top of the main water tank 1. It can also be higher than the hot air inlet 4.
[0029] The hot air inlet duct 13 below the hot air inlet 4 has an air nozzle 15 that blows air toward the inside of the main water tank 1. A duct solenoid valve 17 is installed on the hot air inlet duct 13 between the air nozzle 15 and the hot air inlet 4. A bottom air duct 16 is provided on the bottom surface of the main water tank 1 and communicates with the hot air inlet duct 13. The bottom air duct 16 also has multiple air nozzles 15 that blow air upward.
[0030] The bottom of the hot air exchange box 9 has an air inlet 91 opening downward.
[0031] During the cleaning phase, the air duct solenoid valve 17 is closed, the drying and heating module 7 does not start heating, and the blower 10 continues to operate to extract air. The gas is ejected from the air nozzle 15 into the cleaning water in the main water tank 1, and the bubbling principle is used to speed up the cleaning process. When the cleaning is completed, the blower 10 stops running. At this time, the water in the main water tank 1 will flow back into the hot air inlet duct 13 through the air nozzle 15. There is a risk that the water will flow back from the hot air inlet duct 13 into the blower 10 and the drying and heating module 7, affecting the safety and service life of the blower 10 and the drying and heating module 7. The present invention provides an arched anti-backflow air duct 14 between the hot air inlet duct 13 and the blower 10. As long as the top of the anti-backflow air duct 14 is above the water surface, water will not flow back into the blower 10. The top of the anti-backflow air duct 14 can be higher than the hot air inlet 4, or it can be safer to be higher than the top of the main water tank 1.
[0032] The drying and heating module 7 includes an air cavity 72 and a heater 71 disposed in the air cavity 72 . The blower 10 blows air into the air cavity 72 , and the heater 71 heats the air.
[0033] See also Figure 3-Figure 6 The rotating spray disc 3 of the present invention is mounted to the water inlet pipe 12 via a bearing. The rotating spray disc 3 includes a cylindrical cavity 31 and an arcuate cavity 32 disposed above the cylindrical cavity 31. The lower end of the cylindrical cavity 31 is sleeved over the outer ring of the bearing. The water inlet pipe 12 is mounted in conjunction with the inner ring of the bearing. A spiral channel 33 is formed at the top of the cylindrical cavity 31, connecting to the arcuate cavity 32. A first water spray hole 34, opening obliquely upward, is formed within the spiral channel 33. Preferably, the central axis of the first water spray hole 34 forms an angle of 30°-45° with the central axis of the cylindrical cavity 31. A plurality of upward-facing second water spray holes 35 are disposed in the cylindrical cavity 31. Preferably, the central axis of the second water spray hole 35 forms an angle of 15°-45° with the central axis of the cylindrical cavity 31.
[0034] Since tap water itself has a certain water pressure, after the water inlet pipe 12 enters the spiral channel 33 of the rotating spray disc 3, the spiral spray disc 3 automatically rotates due to the pressure of the incoming water impacting the spiral channel 33. During the automatic rotation, water is sprayed out from the first water spray hole 34 and the second water spray hole 35 to rinse the tableware.
[0035] In order to ensure that the rotating spray disc 3 sprays water upward with greater spray force on the tableware, the water flow is pressurized by a booster pump before the water inlet pipe 12 enters the rotating spray disc 3.
[0036] The upper spray arm 2 of the present invention comprises a spray rod with multiple spray heads 21 arranged in different orientations. The spray rod is connected to the water inlet pipe 12 via a bearing. Due to the specific orientations of the spray heads 21, the upper spray arm 2 can rotate around the water inlet pipe 12 under the action of tap water pressure. This type of rotatable upper spray arm 2 is relatively common in the art and will not be described in detail here.
[0037] To enhance the rinsing of tableware by spraying water upward from below, the present invention incorporates a rotating spray disc 3. This is because the bottom of the main sink 1 can often hold long items like chopsticks and spoons. Conventional rotating spray arms often jam the spray arm, but the present invention addresses this problem with a disc-shaped rotating spray disc 3. The top of the rotating spray disc 3 is curved or semicircular, and the diameters of the first and second spray holes 34 and 35 are small, preventing chopsticks from becoming lodged. Furthermore, the rotating disc's small rotational volume prevents interference with the tableware at the bottom of the main sink 1.
[0038] The main water tank 1 is equipped with a low water level switch 18 and a high water level switch 19. A water tank heating pipe 27 is also installed inside the main water tank 1. A main drain pipe 20 is located below the main water tank 1. This main drain pipe 20 is connected to the main water tank 1 via an automatic drain ball valve 28. The drain pipe of the small water tank 11 is also connected to the main drain pipe 20. An oil overflow pipe 21 is also installed inside the main water tank 1. The upper end of the oil overflow pipe 21 is located at approximately the same height as the high water level switch 19, and the lower end is connected to the main drain pipe 20.
[0039] Two water level switches are designed in the main water tank of the present invention. When water is put into the low water level switch 18, the program for heating the water in the main water tank 1 can be started, and then water can be added to the high water level switch 19 while heating, saving heating and the entire cleaning time.
[0040] In principle, the top of the arched pipe of the backflow prevention duct 14 only needs to be higher than the high water level switch 19.
[0041] The control electric cabinet 23 of the present invention can be arranged below the small water tank 11 to effectively utilize the product space.
[0042] The bottom surface of the main water tank 1 is designed as an inclined surface, and a sewage collection tank 22 is provided at the lowest end of the inclined surface. The sewage collection tank 22 is connected to the main drainage pipe 20.
[0043] The upper part of the main water tank 1 is sealed by two sliding covers 24 that slide against each other. The sliding covers 24 are hollow covers, which have a good heat preservation effect on the one hand, and prevent water droplets from splashing out during the dishwashing process on the other hand, and isolate noise.
[0044] An overflow port 26 is provided above the main water tank 1 , and the main water tank 1 is connected to the overflow port 26 through an overflow pipe 25 .
[0045] In order to ensure the orderly arrangement of the tableware, a plurality of parallel partitions 30 are provided in the main sink 1 to separate the rows of tableware.
[0046] The waterproof backflow fully automatic dishwasher of the present invention is an automated device that can be used to wash tableware, vegetables, fruits, etc. Taking tableware washing as an example, the specific working process is as follows:
[0047] Cleaning phase: Drain water to the minimum water level switch 18, start the water tank heating pipe 27, and stop adding water after reaching the maximum water level. Start the ultrasonic generator 6, and use the ultrasonic transducer to emit high frequency to separate food residues, stains, pesticide residues, etc. After several minutes, start the blower 10 and inject fresh air into the main water tank 1 through the air nozzle 15. The bubbling principle facilitates the faster removal of residue from the surface of the tableware. In addition, the separated oil stains are agitated by the water surface and overflow into the oil overflow pipe 21 and are directly discharged. During the cleaning phase, the heat extraction fan 8, the drying and heating module 7, and the air duct solenoid valve 17 are closed.
[0048] After the cleaning is completed, the ultrasonic wave and bubbling are stopped, and the automatic drainage ball valve 28 is opened to automatically drain the water.
[0049] Rinsing: Conventional methods often require a sink of hot water for rinsing. This new method uses a direct, upward spraying system, saving significant water and energy. The water inlet solenoid valve 29 on the water inlet pipe 12 is activated, rotating the spray arm 2 and the rotating spray plate 3 upward to supply water. Clean water is then sprayed through the upper spray arm 2 and the rotating spray plate 3 to rinse the washed dishes.
[0050] Drying stage: Turn on the small heat extraction fan 8, blower 10, drying heating module 7, and air duct solenoid valve 17. The blower 10 draws air from the hot air exchange box 9 into the air cavity 72 of the drying heating module 7. After being heated into hot air, it is ejected from the air nozzle 15 and the hot air inlet 4 to dry the tableware. At the same time, the small exhaust fan sucks the hot air in the main water tank 1 out of the hot air outlet 5 into the hot air exchange box 9. Due to the contact between the hot air and the pipeline and the contact between the hot air and the air entering from the air inlet 91, small water droplets will be generated in the hot air exchange box 9 after condensation. The small water droplets can drip out through the air inlet 91 with the opening facing downward.
[0051] The design of the small water tank 11 provided in the present invention ensures that the machine can wash while also meeting the manual cleaning needs.
[0052] It should be understood that the specific embodiments described above are only used to explain the present invention and are not intended to limit the present invention. Obvious changes or modifications derived from the spirit of the present invention are still within the scope of protection of the present invention.
Claims
1. A fully automatic dishwasher with waterproof backflow protection, characterized by: The invention comprises a main water tank, a hot air inlet (4) arranged on the main water tank (1), a hot air inlet duct (13) connected to the hot air inlet (4), an anti-backflow air duct (14) connected to the hot air inlet duct (13), and a blower (10) connected to the anti-backflow air duct (14); the anti-backflow air duct (14) is an arched duct, the top of which is higher than the water surface in the main water tank (1).
2. The fully automatic dishwasher with waterproof backflow according to claim 1, characterized in that: The top end of the arched pipe of the anti-backflow air duct (14) is higher than the hot air inlet (4).
3. The fully automatic dishwasher with waterproof backflow according to claim 1, characterized in that: A low water level switch (18) and a high water level switch (19) are provided in the main water tank; the top end of the arched pipe of the backflow prevention air duct (14) is higher than the high water level switch (19).
4. The fully automatic dishwasher with waterproof backflow according to claim 1, characterized in that: The top end of the arched pipe of the anti-backflow air duct (14) is higher than the top end of the main water tank (1).
5. The fully automatic dishwasher with waterproof backflow according to claim 1, characterized in that: The hot air inlet pipe (13) is provided with a plurality of air nozzles (15) for blowing air toward the inside of the main water tank (1).
6. The fully automatic dishwasher with waterproof backflow protection according to claim 5, characterized in that: An air duct electromagnetic valve (17) is provided on the hot air inlet duct (13) between the air nozzle (15) and the hot air inlet (4).
7. The fully automatic dishwasher with waterproof backflow according to claim 1, characterized in that: It also includes a hot air outlet (5) provided on the main water tank (1), a small heat extraction fan (8) connected to the hot air outlet (5) through a pipeline, and a hot air exchange box (9) connected to the small heat extraction fan (8) through a pipeline; the hot air exchange box (9) is connected to the blower (10) through a pipeline.
8. The fully automatic dishwasher with waterproof backflow according to claim 7, characterized in that: It also includes a drying and heating module (7) connected to the blower (10) through a pipeline.
9. The fully automatic dishwasher with waterproof backflow according to claim 1, characterized in that: A bottom air duct (16) communicating with the hot air inlet duct (13) is provided on the bottom surface of the main water tank (1), and the bottom air duct (16) is also provided with a plurality of air nozzles (15) for blowing air upward.