CN213883117U - Dish washer drainage mechanism and use its dish washer - Google Patents
Dish washer drainage mechanism and use its dish washer Download PDFInfo
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- CN213883117U CN213883117U CN202022810923.7U CN202022810923U CN213883117U CN 213883117 U CN213883117 U CN 213883117U CN 202022810923 U CN202022810923 U CN 202022810923U CN 213883117 U CN213883117 U CN 213883117U
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- slag
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- dishwasher
- slag crusher
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Abstract
The utility model discloses a dish washer drainage mechanism and use its dish washer belongs to dish washer technical field. The drainage rate of the sewer pipe can be influenced by the drainage scheme of the existing dish washing machine, the sewer pipe cannot smoothly drain water, and therefore when a large amount of water is drained in a short time, sewage can overflow from the sewer passage, and user experience is influenced. The utility model discloses a drainage mechanism of a dish washing machine, a drainage motor used for increasing water flow is assembled on the adjacent slag crusher; the food residues are gathered into the slag crusher through the slag cage under the driving of water flow; after the slag of the slag crusher is crushed, the drainage motor can discharge sewage in the slag crusher by force. The utility model can effectively increase the water pressure and the water flow rate of the drainage in the sewer pipeline; thereby preventing grease and fine residues from adhering to the pipe wall; effectively solve the sewer pipe-line flowing water not smooth, avoided the sewage of sewer pipe-line to spill over and block up, user experience is good.
Description
Technical Field
The utility model relates to a dish washer drainage mechanism and use its dish washer belongs to dish washer technical field.
Background
Chinese patent (publication No. CN 210581674U) discloses an integrated sink dish washer, realizes the integral type integrated scheme of stainless steel sink, dish washer, purifier, garbage disposer etc. increases the utilization ratio in kitchen space to and reduce the required flower notes fund and time in resident family's fitment kitchen, its characterized in that: comprises a cabinet body, and a stainless steel water tank, a water tank faucet, a dish washing machine, a water purifier faucet and a garbage disposer which are arranged on the cabinet body; the stainless steel water tank and the table top are integrally formed, and the water tank tap is arranged on the table top and is connected with the tap water pipe; the water purifier faucet is arranged on the table top and is connected with a tap water pipe through the water purifier; the stainless steel basin's outlet and refuse treatment ware butt joint, by refuse treatment ware realizes the separation and the processing of kitchen remainder and water, refuse treatment ware's air switch sets up on the mesa, dish washer is front-opening door formula dish washer, and it is by the opening part embedding of cabinet body front side.
Above-mentioned dish washer and current dish washer scheme, get into drainage system in order to stop food waste, it smashes food waste to have increased the refuse treatment ware, but grease and tiny residue in this kind of sewage, very easy adhesion is on the pipe wall of drainage pipe, only rely on the water pressure of running water pressure and disintegrating slag ware, hardly wash away the grease and the tiny residue of adhesion, accumulate in the sun and moon, can influence the drainage rate of downcomer, cause the drain pipe to launch not smoothly, and then when meetting a large amount of drainage in the short time, sewage can follow and spills over in the sewer, influence user experience.
SUMMERY OF THE UTILITY MODEL
Aiming at the defects of the prior art, the utility model aims to provide a drainage motor which is assembled with adjacent slag crushers and used for increasing water flow; after the slag crusher completes slag crushing, the drainage motor can discharge sewage in the slag crusher strongly; the water pressure and the water flow rate of drainage in the sewer line can be effectively increased; grease and fine residues are prevented from adhering to the pipe wall; effectively solve the problem of unsmooth dish washer drainage mechanism of sewer line flowing water and use its dish washer.
In order to achieve the above purpose, the technical scheme of the utility model is that:
a water discharge mechanism of a dish-washing machine,
comprises a filtering piece for filtering food residues, a slag cage for locking the filtering piece and a water storage cavity for collecting water flow;
the lower end of the slag cage is provided with an opening, and the opening is provided with a slag crusher for crushing and grinding food residues;
a drainage motor for increasing water flow is assembled on the adjacent slag crushers;
the food residues are gathered into the slag crusher through the slag cage under the driving of water flow;
after the slag of the slag crusher is crushed, the drainage motor can discharge sewage in the slag crusher by force.
Through continuous exploration and test, the utility model assembles a drainage motor used for increasing water flow between adjacent slag breakers; after the slag crusher completes slag crushing, the drainage motor can discharge sewage in the slag crusher strongly; the water pressure and the water flow rate of drainage in the sewer line can be effectively increased; thereby preventing grease and fine residues from adhering to the pipe wall; effectively solve the sewer pipe-line flowing water not smooth, avoided the sewage of sewer pipe-line to spill over and block up, user experience is good.
As a preferable technical measure:
the drainage motor is arranged on the outer side surface of the slag crusher, the water inlet of the drainage motor is communicated with the slag crusher, the water outlet of the drainage motor is communicated with the sewer pipeline, the structure is simple and practical, and the scheme is feasible.
As a preferable technical measure:
the water storage cavity and the filtering piece are of umbrella structures respectively and are stacked together to form a conical converging cavity, so that food residues can flow into the residue cage under the driving of water flow.
As a preferable technical measure:
the water storage cavity and the filtering piece are respectively provided with a through hole for communicating the slag crusher at the middle position, the middle position is the lowest point of the water storage cavity and the filtering piece, and the through hole is arranged at the lowest point, so that food residues can conveniently flow in.
As a preferable technical measure:
the through hole is assembled with the slag cage, and the lower end of the slag cage is provided with a filtering ring sheet for separating residues;
the filter ring piece is provided with a plurality of pores which are arranged around the slag cage for a circle, and a separation channel for food residues is formed in the water storage cavity, so that the structure is simple and practical.
As a preferable technical measure:
the slag crusher is assembled below the slag cage, and the open end of the slag crusher is communicated with a separation channel formed by the filtering ring sheets.
As a preferable technical measure:
the vertical projection area of the opening end is larger than that of the separation channel, so that food residues can flow into the slag crusher.
As a preferable technical measure:
the filter element is of a net structure; the drainage motor is communicated with a sewer pipeline through a sewer pipe;
and a check valve for preventing water from flowing backwards is assembled in the sewer pipe.
As a preferable technical measure:
a dishwasher comprises the drainage mechanism of the dishwasher.
The adjacent slag crushers of the utility model are provided with a drainage motor used for increasing water flow; after the slag crusher completes slag crushing, the drainage motor can discharge sewage in the slag crusher strongly; the water pressure and the water flow rate of drainage in the sewer line can be effectively increased; thereby preventing grease and fine residues from adhering to the pipe wall; effectively solve the sewer pipe-line flowing water not smooth, avoided the sewage of sewer pipe-line to spill over and block up, user experience is good.
As a preferable technical measure:
the upper end part of the water storage cavity is provided with a stainless steel basin liner;
the upper end surface of the stainless steel basin liner is a smooth cambered surface, and a connecting hole for assembling a filtering piece is formed in an adjacent water storage cavity of the stainless steel basin liner;
the connecting hole is fixed through the sediment cage filter piece, simple structure, practicality, the manufacturing of being convenient for.
Compared with the prior art, the utility model discloses following beneficial effect has:
through continuous exploration and test, the utility model assembles a drainage motor used for increasing water flow between adjacent slag breakers; after the slag crusher completes slag crushing, the drainage motor can discharge sewage in the slag crusher strongly; the water pressure and the water flow rate of drainage in the sewer line can be effectively increased; thereby preventing grease and fine residues from adhering to the pipe wall; effectively solve sewer pipe way flowing water not smooth, avoided overflowing and blockking up of sewer pipe way, user experience is good.
Drawings
FIG. 1 is a structural view of the present invention;
FIG. 2 is a view of the structure of FIG. 1, shown in a converted angle;
FIG. 3 is a cross-sectional view of the structure of FIG. 2 taken along line A-A;
FIG. 4 is a structural view of the stainless steel container of the present invention;
FIG. 5 is a cross-sectional view of the structure of FIG. 4 taken along line B-B;
fig. 6 is an exploded view of the structure shown in fig. 4.
Description of reference numerals:
1. a filter member; 2. a slag cage; 3. a water storage cavity; 4. a slag crusher; 5. a water discharge motor; 6. a sewer pipe; 7. a check valve; 8. a stainless steel basin liner; 11. a through hole; 21. a filter ring sheet; 41. an open end; 81. and connecting the holes.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
On the contrary, the invention is intended to cover alternatives, modifications, equivalents and alternatives which may be included within the spirit and scope of the invention as defined by the appended claims. Furthermore, in order to provide a better understanding of the present invention to the public, certain specific details are set forth in the following detailed description of the invention. It will be apparent to those skilled in the art that the present invention may be practiced without these specific details.
It should be noted that when two elements are "fixedly connected," the two elements may be directly connected or intervening elements may also be present. In contrast, when an element is referred to as being "directly on" another element, there are no intervening elements present. The terms "upper", "lower" and the like are used herein for illustrative purposes only.
As shown in fig. 1 to 3, a drain mechanism of a dishwasher,
comprises a filtering piece 1 for filtering food residues, a residue cage 2 for locking the filtering piece 1 and a water storage cavity 3 for collecting water flow;
the lower end of the slag cage 2 is provided with an opening, and the opening is provided with a slag crusher 4 for crushing and grinding food residues;
a drainage motor 5 for increasing water flow is assembled on the adjacent slag crusher 4;
the food residues are driven by water flow to be gathered into the slag crusher 4 through the slag cage 2;
after the slag crusher 4 finishes crushing, the drainage motor 5 can discharge sewage in the slag crusher 4 by strong force.
Through continuous exploration and test, the utility model assembles a drainage motor 5 for increasing water flow between adjacent slag breakers 4; after the slag crusher 4 finishes crushing, the drainage motor 5 can discharge sewage in the slag crusher 4 by strong force; the water pressure and the water flow rate of drainage in the sewer line can be effectively increased; thereby preventing grease and fine residues from adhering to the pipe wall; effectively solve 6 routes of downcomer and flow not smooth, avoided the sewage of 6 routes of downcomer to spill over and block up, user experience is good.
The utility model discloses a concrete embodiment of 5 assembly positions of drainage motor:
the drainage motor 5 is arranged on the outer side surface of the slag crusher 4, the water inlet of the drainage motor is communicated with the slag crusher 4, the water outlet of the drainage motor is communicated with a sewer pipeline, the structure is simple and practical, and the scheme is feasible.
The utility model discloses retaining chamber 3 with filter a concrete embodiment of 1 structure:
the water storage cavity 3 and the filtering piece 1 are of umbrella structures respectively and are stacked together to form a conical converging cavity, so that food residues can flow into the residue cage 2 under the driving of water flow.
The middle positions of the water storage cavity 3 and the filtering piece 1 are respectively provided with a through hole 11 for communicating the slag crusher 4, the middle position is the lowest point of the water storage cavity 3 and the filtering piece 1, and the through hole 11 is arranged at the lowest point, so that food residues can flow in conveniently.
The utility model discloses a concrete embodiment of 2 structures of sediment cage:
the slag cage 2 is assembled in the through hole 11, and the lower end of the slag cage is provided with a filtering ring piece 21 for separating the slag.
The filtering ring piece 21 is provided with a plurality of pores which are wound around the slag cage 2 for one circle, and a food residue separation channel is formed in the water storage cavity 3, so that the structure is simple and practical.
The utility model discloses a concrete embodiment of 4 structures of slag crusher:
the slag crusher 4 is assembled below the slag cage 2, and the open end 41 of the slag crusher 4 is communicated with the separation channel formed by the filter ring piece 21.
The vertical projected area of the open end 41 is larger than that of the partition passage, so that food waste can flow into the slag crusher 4.
The utility model discloses add a concrete embodiment of downcomer 6:
the filter element 1 is of a net structure; the drainage motor 5 is communicated with a sewer pipeline through a sewer pipe 6;
a check valve 7 for preventing water from flowing backwards is installed in the sewer pipe 6.
As shown in fig. 4-6, a specific embodiment of the drainage mechanism of the present invention is applied:
a dishwasher comprises the drainage mechanism of the dishwasher.
The adjacent slag crusher 4 of the utility model is provided with a drainage motor 5 for increasing water flow; after the slag crusher 4 finishes crushing, the drainage motor 5 can discharge sewage in the slag crusher 4 by strong force; the water pressure and the water flow rate of the water discharged from the pipeline can be effectively increased; thereby preventing grease and fine residues from adhering to the pipe wall; effectively solve 6 routes of downcomer and flow not smooth, avoided the sewage of 6 routes of downcomer to spill over and block up, user experience is good.
A stainless steel basin container 8 is assembled at the upper end part of the water storage cavity 3;
the upper end surface of the stainless steel basin container 8 is a smooth cambered surface, and a connecting hole 81 for assembling the filter piece 1 is formed in the adjacent water storage cavity 3;
the connecting hole 81 is fixed through the slag cage 2, the filtering piece 1 is simple in structure, practical and convenient to produce and manufacture.
The utility model discloses a theory of operation:
during the operation of the dishwasher, the water flow washes away food residues from the dishes. Food waste gathers to sediment cage 2 along with rivers, and after the first washing flow, start slag crusher 4 and smash food waste, drainage motor 5 work discharges food waste into the sewer. The next cleaning sequence is then started. After the whole cleaning process is finished, the slag cage 2 and the filtering piece 1 can be detached for cleaning.
In the application, the fixing connection mode can be a screw connection mode, a riveting mode, an inserting mode or a connection mode through a third component, and a person skilled in the art can select the fixing connection mode according to actual conditions.
The above description is only exemplary of the present invention and should not be taken as limiting the scope of the present invention, as any modifications, equivalents, improvements and the like made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.
Claims (10)
1. A water discharge mechanism of a dish-washing machine,
comprises a filtering piece (1) for filtering food residues, a slag cage (2) for locking the filtering piece (1), and a water storage cavity (3) for collecting water flow;
it is characterized in that the lower end of the slag cage (2) is provided with an opening, and the opening is provided with a slag crusher (4) for crushing and grinding food residues;
a drainage motor (5) for increasing water flow is assembled on the adjacent slag crusher (4);
the food residues are converged into the slag crusher (4) through the slag cage (2) under the drive of water flow;
after the slag crusher (4) crushes the slag, the drainage motor (5) can discharge the sewage in the slag crusher (4) by force.
2. The drain mechanism of a dishwasher of claim 1,
the drainage motor (5) is arranged on the outer side surface of the slag crusher (4), the water inlet of the drainage motor is communicated with the slag crusher (4), and the water outlet of the drainage motor is communicated with a sewer pipe.
3. The drain mechanism of a dishwasher of claim 1,
the water storage cavity (3) and the filtering piece (1) are of umbrella structures respectively, and the water storage cavity and the filtering piece are stacked together to form a conical flow converging cavity.
4. The drain mechanism of a dishwasher of claim 3,
through holes (11) for communicating the slag crusher (4) are respectively formed in the middle positions of the water storage cavity (3) and the filtering piece (1).
5. The drain mechanism of a dishwasher of claim 4,
the slag cage (2) is assembled on the through hole (11), and a filtering ring sheet (21) for separating residues is arranged at the lower end of the slag cage (2);
the filtering ring piece (21) is provided with a plurality of pores which are wound around the slag cage (2) for a circle, and a separation channel for food residues is formed in the water storage cavity (3).
6. The drain mechanism of a dishwasher of claim 5,
the slag crusher (4) is assembled below the slag cage (2), and the open end of the slag crusher (4) is communicated with a separation channel formed by the filtering ring piece (21).
7. The drain mechanism of a dishwasher of claim 6,
the vertical projection area of the opening end is larger than that of the separation channel.
8. The drain mechanism of a dishwasher according to any one of claims 1 to 7,
the filter element (1) is of a net structure;
the drainage motor (5) is communicated with a sewer pipeline through a sewer pipe (6);
a check valve (7) for preventing water from flowing backwards is arranged in the sewer pipe (6).
9. A dishwasher, comprising a dishwasher drain mechanism as claimed in any one of claims 1 to 8.
10. A dishwasher according to claim 9,
a stainless steel basin container (8) is assembled at the upper end part of the water storage cavity (3);
the upper end surface of the stainless steel basin container (8) is a smooth cambered surface, and a connecting hole (81) for assembling the filter piece (1) is formed in the adjacent water storage cavity (3);
the connecting holes (81) are used for fixing the filtering piece (1) through the slag cage (2).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022810923.7U CN213883117U (en) | 2020-11-27 | 2020-11-27 | Dish washer drainage mechanism and use its dish washer |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022810923.7U CN213883117U (en) | 2020-11-27 | 2020-11-27 | Dish washer drainage mechanism and use its dish washer |
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CN213883117U true CN213883117U (en) | 2021-08-06 |
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CN202022810923.7U Active CN213883117U (en) | 2020-11-27 | 2020-11-27 | Dish washer drainage mechanism and use its dish washer |
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CN (1) | CN213883117U (en) |
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2020
- 2020-11-27 CN CN202022810923.7U patent/CN213883117U/en active Active
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Legal Events
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GR01 | Patent grant | ||
CP02 | Change in the address of a patent holder |
Address after: 312400 No. 100, Wuhe West Road, Shengzhou, Shaoxing, Zhejiang Patentee after: ZHEJIANG SANFER ELECTRIC Co.,Ltd. Address before: 312400 Chengdong District, Shengzhou Economic Development Zone, Shaoxing City, Zhejiang Province Patentee before: ZHEJIANG SANFER ELECTRIC Co.,Ltd. |
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CP02 | Change in the address of a patent holder |