CN213086951U - Water tank garbage disposal device and intelligent kitchen equipment with garbage disposal function - Google Patents

Water tank garbage disposal device and intelligent kitchen equipment with garbage disposal function Download PDF

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Publication number
CN213086951U
CN213086951U CN202022165135.7U CN202022165135U CN213086951U CN 213086951 U CN213086951 U CN 213086951U CN 202022165135 U CN202022165135 U CN 202022165135U CN 213086951 U CN213086951 U CN 213086951U
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China
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sink
basin
sink waste
waste
sewage
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CN202022165135.7U
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傅峰峰
江志强
苏志智
余国满
蔡顺发
陈鑫武
郑莉菲
谭家宁
陈日宇
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Guangzhou Fugang Wanjia Intelligent Technology Co Ltd
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Guangzhou Fugang Wanjia Intelligent Technology Co Ltd
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Abstract

The utility model provides a basin refuse treatment device and take intelligent kitchen equipment of refuse treatment function aims at solving the problem that current basin refuse treatment device structure is complicated. The utility model provides a basin refuse treatment device sets up the passageway on the turning block, and this passageway can collect basin rubbish and to basin rubbish waterlogging caused by excessive rainfall, and after filling basin rubbish with, this turning block removes and to make the passageway come the stoving position and dry to the basin rubbish in the passageway. The channel is used as a garbage collection bin, a draining bin and a drying bin, and the garbage disposal device of the water tank does not need to be provided with the garbage collection bin, the draining bin and the drying bin respectively, so that the structure is simple.

Description

Water tank garbage disposal device and intelligent kitchen equipment with garbage disposal function
Technical Field
The invention belongs to the field of garbage treatment, and particularly relates to a water tank garbage treatment device and intelligent kitchen equipment with a garbage treatment function.
Background
The sink that uses in the kitchen is used for wasing edible material or bowl dish, so often have food waste to stay in the sink, directly wash by water to the rubbish in the sink so that rubbish from the downcomer discharge block up the downcomer easily, so usually can set up a rubbing crusher in the bottom of sink, discharge after rubbing crusher smashes rubbish. However, the crushed garbage is discharged into the sewer pipe after being crushed by the crusher, so that the crushed garbage is easily accumulated at the turning of the pipeline, and the sewer pipe is smelly and blocked, therefore, a garbage disposal device is often arranged below the crusher for collecting and disposing the crushed garbage, and the crushed garbage is stored in the garbage disposal device after being disposed for cleaning by a user, and the garbage disposal device is generally called as a sink garbage disposal device; for convenience of description, the crushed garbage is referred to as sink garbage.
The current sink waste disposal devices usually comprise a waste collection bin, which is arranged below the crusher, and sewage and sink waste enter the waste collection bin together. The garbage collection bin conveys sewage to the sewer pipe and conveys the water tank garbage to the draining bin, so that the sewage and the water tank garbage are separated from each other. The draining bin carries the basin rubbish to the stoving storehouse after carrying out the waterlogging caused by excessive rainfall to the basin rubbish, and the stoving storehouse is dried the basin rubbish. This kind of basin refuse treatment device need set up rubbish collection storehouse, waterlogging caused by excessive rainfall storehouse and stoving storehouse respectively, and the structure is complicated.
Disclosure of Invention
The invention aims to provide a sink garbage disposal device with a simple structure.
The utility model provides a basin refuse treatment device, including supplying the dirty pipeline of advancing of sewage and basin rubbish entering, supply sewage exhaust's sewage pipes, a drying device for drying to basin rubbish, including the turning block, it has vertical passageway to open on this turning block, the passageway bottom is equipped with the filter screen, the passageway is located the position that sewage pipeline and lower extreme aim at sewage pipes and aim at sewage pipes in the upper end, sewage and basin rubbish get into the passageway through advancing dirty pipeline, sewage passes filter screen inflow sewage pipes, basin rubbish is blocked by the filter screen and stops in the passageway, thereby the turning block removes and makes this passageway leave this position and remove the stoving position, drying device dries the basin rubbish that is located the passageway of stoving position.
Further, there are at least two of said channels, one channel being filled with sink waste and moved away from said position, and the other channel being moved to said position to receive sink waste.
Further, the channel filled with the gutter waste is moved to a drying position while the other channel is moved to the position to receive the gutter waste.
Furthermore, all the channels are uniformly distributed on the rotating block in the circumferential direction, and the rotating block rotates to enable the channels to move.
Further, a motor for driving the rotating block to rotate is included.
Further, the sewage treatment device comprises a shell, wherein the rotating block is arranged in the shell, a first opening for discharging sewage is formed in the bottom wall of the shell, and the filter screen is arranged at the first opening.
Furthermore, a second opening for discharging the dried water tank garbage is formed in the bottom wall of the shell below the drying position, and a movable cover is matched with the second opening.
Further, the garbage can is arranged below the movable cover and used for receiving the dried water tank garbage which leaves from the channel.
Further, the dustbin is a trash drawer.
Furthermore, the device also comprises an overflow discharge pipeline, the upper part of the channel is communicated with the upper end of the overflow discharge pipeline, and the lower end of the overflow discharge pipeline is discharged.
Further, the lower end of the overflow pipe is connected with the tail end of the sewage discharge pipe for discharging.
Furthermore, the upper end of the overflow discharge pipeline is connected to the side of the sewage inlet pipeline.
Furthermore, the upper end of the overflow discharge pipeline is provided with a filter screen for preventing the garbage in the water tank from entering the overflow discharge pipeline.
Further, the sink waste disposal apparatus is a kitchen sink waste disposal apparatus.
Take intelligent kitchen equipment of refuse treatment function, including the basin, including the connecting tube that one end is connected with the basin bottom, including the reducing mechanism who is located basin and connecting tube junction, rubbish in the basin gets into the reducing mechanism after and is smashed, by the kibbling rubbish entering connecting tube, include basin refuse treatment device, the connecting tube other end connect basin refuse treatment device to will be carried in the basin refuse treatment device by the sewage in the kibbling rubbish of reducing mechanism, the basin.
The invention provides a sink garbage disposal device and an intelligent kitchen device with a garbage disposal function, wherein a channel is arranged on a rotating block of the sink garbage disposal device, the channel can collect sink garbage and drain the sink garbage, and after the sink garbage is filled with the sink garbage, the rotating block moves to enable the channel to come to a drying position so as to dry the sink garbage in the channel. The channel is used as a garbage collection bin, a draining bin and a drying bin, and the garbage disposal device of the water tank does not need to be provided with the garbage collection bin, the draining bin and the drying bin respectively, so that the structure is simple.
Drawings
FIG. 1 is a perspective view of a sink waste disposer;
FIG. 2 is a front view of the sink waste disposer shown with the housing removed;
FIG. 3 is a perspective view of the turning block;
FIG. 4 is a top perspective view of the sink waste disposer shown with the housing removed;
fig. 5 is a perspective view of the rear right side of the sink waste disposer from which the housing is removed.
Detailed Description
The intelligent kitchen equipment with the garbage disposal function comprises a water tank, a crushing device, a connecting pipeline and the water tank garbage disposal device shown in figure 1. A user cleans food materials or dishes in the water tank, sewage and garbage generated by cleaning enter the crushing device at the bottom of the water tank together, are crushed by the crushing device and then enter the connecting pipeline, and are conveyed into the water tank garbage treatment device below the water tank by the connecting pipeline. For convenience of description, the pulverized garbage obtained after the garbage is pulverized by the pulverizing apparatus is referred to as sink garbage.
As shown in fig. 1, the sink waste disposal apparatus has a sewage inlet 2 connected to the connecting pipe for allowing sewage and sink waste to enter the sink waste disposal apparatus, the sink waste disposal apparatus separates the sewage and sink waste from each other, the separated sewage is discharged into a sewer pipe (not shown in the sewer pipe) from a sewage outlet 4, the separated sink waste is disposed in the sink waste disposal apparatus, the disposed waste is collected in a waste drawer 5 located at the lower part, and the user can clean the waste by pulling the waste drawer 5.
As shown in fig. 2, the sink waste disposal apparatus comprises a housing 6, a rotating block 8 shown in fig. 3 is installed inside the housing 6, and four cylindrical passages 21, 22, 23, 24 are vertically opened on the rotating block 8 and are uniformly distributed around the circumference. A motor 7 (see fig. 4) is mounted above the housing 6, the motor 7 is positioned right above the axis of the rotating block 8, and the rotating block 8 is driven to rotate around the axis in the housing 6 so as to make the four cylindrical channels 21, 22, 23, 24 move circularly in the housing 6. A sewage inlet pipeline 9 is arranged above the shell 6, the upper end of the sewage inlet pipeline 9 is connected with the sewage inlet 2, a first opening is arranged at the corresponding position below the shell 6, and a filter screen (not shown in the filter screen figure) is arranged at the first opening. A waste pipe 10 is connected to the housing 6 at its upper end aligned with the first opening (the first opening not shown because it is shielded by the waste pipe 10) and at its lower end to the waste port 4. The channel 21 of the drive rotor 8 is moved to a position where the upper end is connected to the sewage conduit 9 and the lower end is connected to the sewage conduit 10. Sewage and sink waste enter the channel 21 through the inlet conduit 9, the sewage flows through the filter screen into the drain conduit 10, and the sink waste is retained in the channel 21 in the above-mentioned position by being stopped by the filter screen. After the channel 21 is filled with gutter waste, the motor 7 drives the turning block 8 to turn 90 degrees clockwise, thereby moving the channel 21 out of position and the following channel 22 into position. After the channel 22 is filled with gutter waste, the motor 7 drives the turning block 8 to turn 90 degrees clockwise, thereby moving the channel 22 out of position and the following channel 23 into position. And so on.
As shown in fig. 2, the upper end of the housing 6 is connected to an air inlet duct 11, and the upper end of the air inlet duct 11 is connected to a hot air blower 20 located above the housing 6. A second opening is formed in the position, corresponding to the air inlet pipeline 11, below the shell 6, a movable cover 12 is arranged for covering the second opening (the second opening is not shown due to the fact that the movable cover 12 is covered), the lower end of the movable cover 12 is hinged to a mounting seat 13 located at the bottom of the shell 6, a motor 14 is arranged on the right side of the mounting seat 13, and the motor 14 is connected with the mounting seat 13 so as to drive the movable cover 12 to rotate around a hinge shaft 19. When the path 22 is filled with the gutter waste, the motor 7 drives the rotary block 8 to rotate clockwise by 90 degrees, thereby moving the path 22 away from the home position and moving the following path 23 to the position, and simultaneously moving the path 21 filled with the gutter waste to the drying position. The drying position is a position where the upper end of the channel 21 is connected to the air inlet duct 11 and the lower end of the channel is aligned with the movable cover 12, and hot air generated by the hot air blower 20 is delivered into the channel 21 through the air inlet duct 11 to dry the garbage in the sink in the channel 21. After the garbage in the sink is dried, the motor 14 drives the front end of the movable cover 12 to rotate downwards to open the second opening, so that the garbage in the channel 21 falls into the garbage drawer 5 below the movable cover 12.
When the water tank garbage treatment device needs to be cleaned, tap water enters the device from the water inlet 3 for cleaning. As shown in fig. 4, a water inlet pipe 15 is further disposed above the housing 6, the left end of the water inlet pipe 15 is connected to the water inlet 3, the right end of the water inlet pipe is connected to the front side of the air inlet pipe 11, and tap water enters the air inlet pipe 11 through the water inlet pipe. An electromagnetic valve 16 is arranged in the water inlet pipeline 15. The sewerage pipeline 10 is provided with an electromagnetic valve 17 (see fig. 2). When a user needs to clean the sink waste disposal device, the solenoid valve 16 is opened to allow tap water to enter the four passages 21, 22, 23, 24 to clean the four passages 21, 22, 23, 24, and the solenoid valve 17 is closed to prevent tap water in the passages 21, 22, 23, 24 from being discharged from the drain pipe 10. Assuming that the channel 21 is located at the drying position, the solenoid valve 16 is opened, the tap water enters the channel 21 located at the drying position through the water inlet pipe 15 and the air inlet pipe 11, after the channel 21 is filled with the tap water, the solenoid valve 16 is closed, the motor 7 drives the rotating block 8 to rotate clockwise by 90 degrees, so that the channel 21 leaves the drying position, and the subsequent channel 22 moves to the drying position to prepare for filling the tap water. After the channel 22 is filled with tap water, the motor 7 drives the rotary block 8 to rotate clockwise by 90 degrees, so that the channel 22 leaves the drying position, and then the channel 23 moves to the drying position to be ready for tap water, and simultaneously the channel 21 moves to a position where the lower end is connected with the sewage inlet pipe 9. Tap water in this channel 21 will flow through the filter screen into the waste pipe 10 to fill the right section 101 (see fig. 2) to the right of the solenoid valve 17. After the channel 23 is filled with tap water, the motor 7 drives the rotary block 8 to rotate clockwise by 90 degrees, so that the channel 23 leaves the drying position, and the subsequent channel 24 moves to the drying position to be ready for tap water, and simultaneously the channel 22 moves to a position where the lower end is connected with the sewage inlet pipe 9. Since the right-hand portion of the waste pipe 101 to the right of the solenoid valve 17 is already filled with tap water, the tap water in the passage 22 does not flow into the waste pipe 10. After the channel 24 is filled with tap water, the motor 7 drives the rotary block 8 to rotate clockwise by 90 degrees, so that the channel 24 is moved away from the drying position, and the subsequent channel 21 is moved to the drying position again. The solenoid valve 16 is opened to fill the passage 21 with tap water again, and after the passage 21 is filled with tap water, the solenoid valve 16 is closed, and the motor 7 drives the rotary block 8 to continue to rotate around the axis in the housing 6. After the cleaning is completed, the motor 14 drives the front end of the movable cover 12 to rotate downwards to open the second opening, so that the four channels 21, 22, 23 and 24 move to the drying position in sequence, tap water in the four channels 21, 22, 23 and 24 is discharged into the garbage drawer 5 through the second opening in sequence, the purpose of cleaning the garbage drawer 5 is achieved, then the electromagnetic valve 17 is opened, and the motor 7 stops driving the rotating block 8 to rotate around the axis in the shell 6. If the user does not want to clean the waste drawer 5, the second opening may not be opened, but instead: after cleaning, the electromagnetic valve 17 is opened to move the four channels 21, 22, 23, 24 to the position where the lower end is connected to the sewage pipeline 10, so that tap water in the four channels 21, 22, 23, 24 flows into the sewage pipeline 10 in sequence, and then the motor 7 stops driving the rotating block 8 to rotate around the axis in the housing 6.
If the filter screen at the joint of the sewage pipeline 10 and the shell 6 is blocked, sewage in the channel 21 with the upper end connected with the sewage pipeline 9 and the lower end connected with the sewage pipeline 10 cannot pass through the filter screen and flow into the sewage pipeline 10, sewage is gathered in the channel 21, sewage is gathered too much in the channel 21, and the sewage overflows the channel 21 and flows back into the sewage pipeline 9, and even returns back to the water tank in serious cases. In order to avoid the above situation, in the present embodiment, an overflow pipe 18 is disposed between the sewage inlet pipe 9 and the sewage drain pipe 10, as shown in fig. 5, the overflow pipe 18 is connected at the upper end to the side of the sewage inlet pipe 9, and at the lower end to the end of the sewage drain pipe 10, if there is a sewage overflow passage 21 to enter the sewage inlet pipe 9, the sewage can flow into the sewage drain pipe 10 through the overflow pipe 18. Moreover, a filter screen is additionally arranged at the joint of the overflow pipeline 18 and the sewage inlet pipeline 9, so that the garbage in the water tank can be prevented from leaving the overflow pipeline 18 and leaving the overflow channel 21 due to the sewage which follows the overflow channel 21.

Claims (15)

1. The utility model provides a basin refuse treatment device, is including the sewage inlet pipe way (9) that supply sewage and basin rubbish to get into, supply sewage exhaust's sewage pipes (10), be used for carrying out drying device (11, 20) dried to basin rubbish, characterized by: including turning block (8), it has vertical passageway (21) to open on this turning block, passageway (21) bottom is equipped with the filter screen, passageway (21) are located the upper end and aim at into dirty pipeline (9) and the position that sewage pipes (10) were aimed at to the lower extreme, sewage and basin rubbish are through advancing dirty pipeline (9) entering passageway (21), sewage passes filter screen inflow sewage pipes (10), basin rubbish is stopped by the filter screen and stops in passageway (21), thereby turning block (8) remove and make this passageway (21) leave this position and remove to the stoving position, drying device (11, 20) are dried to the basin rubbish that is located in passageway (21) of stoving position.
2. A sink waste disposal device according to claim 1 wherein there are at least two of said channels (21), one channel being filled with sink waste and moved away from said position, the other channel being moved to said position to receive sink waste.
3. A sink waste disposal apparatus according to claim 2 wherein said channel filled with sink waste is moved to a drying position and said further channel is moved to that position to receive sink waste.
4. A sink waste disposer according to claim 2, wherein the passages are circumferentially spaced about the block and the block rotates to move the passages.
5. A sink waste disposer according to claim 4, including a motor (7) for rotating the rotatable block.
6. A sink waste disposal device according to claim 1, comprising a housing (6), wherein the rotating block (8) is installed in the housing (6), the bottom wall of the housing is provided with a first opening for discharging the waste water, and the filter screen is installed at the first opening.
7. A sink waste disposer according to claim 6, wherein the bottom wall of the housing (6) has a second opening below the drying position for discharging the dried sink waste, and the second opening is provided with a removable cover (12).
8. A sink waste disposal device according to claim 7 comprising a waste bin (5), the bin (5) being located below the moveable cover for receiving dried sink waste exiting the channel.
9. A sink waste disposal device according to claim 8, wherein said waste bin is a waste drawer.
10. A sink waste disposer according to claim 1, further comprising an overflow pipe (18) above the channel (21) leading to the upper end of the overflow pipe, the lower end of the overflow pipe being vented.
11. A sink waste disposer according to claim 10, wherein the lower end of the overflow pipe is connected to the end of the drain pipe (10) for draining.
12. A sink waste disposer according to claim 10, wherein the upper end of the overflow pipe is connected to the side of the waste inlet pipe (9).
13. The sink waste disposal apparatus according to claim 10, wherein the overflow pipe is provided at an upper end thereof with a filter for preventing the sink waste from entering the overflow pipe.
14. A sink waste disposal device according to any one of claims 1 to 13, wherein said sink waste disposal device is a kitchen sink waste disposal device.
15. Take intelligent kitchen equipment of refuse treatment function, including the basin, including the connecting tube that top and basin bottom are connected, including the reducing mechanism who is located basin and connecting tube junction, the rubbish in the basin gets into the reducing mechanism after and is smashed, by kibbling rubbish entering connecting tube, characterized by: comprising the sink waste disposal apparatus according to any one of claims 1 to 14, wherein the connection pipe is connected at an end thereof to the sink waste disposal apparatus, thereby transferring the waste crushed by the crushing means and the sewage in the sink to the sink waste disposal apparatus.
CN202022165135.7U 2020-09-27 2020-09-27 Water tank garbage disposal device and intelligent kitchen equipment with garbage disposal function Active CN213086951U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112064736A (en) * 2020-09-27 2020-12-11 广州富港万嘉智能科技有限公司 Water tank garbage disposal device and intelligent kitchen equipment with garbage disposal function

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112064736A (en) * 2020-09-27 2020-12-11 广州富港万嘉智能科技有限公司 Water tank garbage disposal device and intelligent kitchen equipment with garbage disposal function

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