Cleaning machine
By setting movable sliders on the rear edge of the sink-type dishwasher door body to cover the gaps when closing the door, the problems of debris entry and bacterial growth are solved and the user experience is improved.
Patent Information
- Application Number
- CN202421527000.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-30
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-06-30
AI Technical Summary
When the existing sink dishwasher is closed, there is a gap between the rear edge of the door body and the sinkhole, causing debris to enter and bacteria to grow.
A slider that can move forward and backward with the door opening and closing action is arranged at the rear edge of the door. When closing the door, the slider moves backward to cover the gap to prevent debris from entering; when opening the door, the slider moves forward to form an anti-interference structure to avoid interference with the platform sink.
Effectively cover the gaps, prevent debris from entering and growing bacteria, improve user experience, and ensure normal opening and closing of the door body and the platform sinker.
Smart Images

Figure CN222870433U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of dishwashers, in particular to a washing machine used for washing tableware, fruits and vegetables. Background Art
[0002] The sink-type dishwasher adopts an upward-turning door body, and the switch assembly of the dishwasher is usually installed on the door body to facilitate user operation. For example, Chinese utility model patent ZL 202022830835.3 "A door body installation structure of a sink-type dishwasher" discloses a sink-type dishwasher including a door body structure.
[0003] In the above-mentioned existing dishwashers, the adhesive bracket of the switch assembly is usually fastened to the door frame by screws, the door glass is bonded to the adhesive bracket and the door frame, and the switch assembly is located in the interlayer between the door frame and the door glass. The damping shaft of the door body is installed at the rear end of the door body frame, and the door body rotates around the center of the shaft in the sink of the trough panel to open and close.
[0004] For sink dishwashers that use a sunken door, it is inevitable that there will be a gap between the rear edge of the door and the sunken groove when the door is closed. The existence of this gap is not only unsightly, but also difficult to clean if small objects get into the gap. Since there is often water accumulation in the sunken groove, mold and bacteria will grow over time. Utility Model Content
[0005] The technical problem to be solved by the utility model is to provide a cleaning machine capable of covering the gaps in a closed state to prevent debris from entering and bacteria from growing, in view of the current status of the prior art.
[0006] The technical solution adopted by the utility model to solve the above technical problems is:
[0007] A cleaning machine comprises a water tank and a door body, wherein the rear edge of the door body is rotatably connected to the rear edge of the top opening of the water tank, a sinking groove is arranged at the periphery of the top opening of the water tank, when the door is closed, the door body is located in the sinking groove, and a gap is formed between the rear edge of the door body and the rear side wall of the sinking groove, a slider which can move forward and backward with the door body opening and closing is arranged at the rear edge of the door body, when the door is closed, the slider moves backward to form a shielding structure which can cover the gap, and the slider moves forward with the door body opening process to form a door opening anti-interference structure.
[0008] The utility model provides a slider at the rear edge of the door body which can move forwards and backwards with the door opening and closing actions. When closing the door, the slider moves backwards with the door closing action and covers the gap in the closed state to prevent debris from entering and bacteria from breeding. When opening the door, the slider moves forward with the door opening process to form an anti-interference structure for door opening, thereby avoiding interference between the panel and the sink groove, greatly improving the user experience.
[0009] Preferably, at least a portion of the rear side wall of the door body is provided with a convex sleeve extending in the length direction, a connecting assembly for rotating the door body to the sink groove is installed in the convex sleeve, the slider can be constrained on the rear side of the convex sleeve so as to move forward and backward, and a baffle covering the upper surface of the door body and moving forward and backward with the slider is formed on the top of the slider. With the above structure, the slider is constrained on the rear side of the convex sleeve and matched with the outer periphery of the convex sleeve. During the movement of the slider forward and backward, the outer surface of the convex sleeve will provide a guide for the movement of the slider along with the door body opening and closing action, so that the movement of the slider is precisely matched with the door opening and closing action, the assembly stability of the slider is maintained, and the gap is covered when the door is closed, and the slider will not interfere with the sink groove during the door opening process.
[0010] Preferably, in the closed state, the baffle moves backward with the slider to form the shielding structure; in the door opening process, the baffle moves forward with the slider to form the anti-interference structure. This structure can ensure that the gap is covered in the closed state, and the slider will not interfere with the sink groove in the door opening process.
[0011] Preferably, the slider is hollow inside and can be moved forward and backward and wrapped around the outer periphery of the convex sleeve. A driving component that can drive the slider to move forward and backward with the door opening and closing action is arranged between the rear side wall of the slider and the convex sleeve. With such a structure, it is convenient for the slider to perform adaptive adjustment to the door opening and closing action, so that the gap is covered when the door is closed, and the slider will not interfere with the sink groove during the door opening process.
[0012] Preferably, the driving assembly comprises a first magnetic member and a second magnetic member that repel each other, the first magnetic member being arranged at the rear side wall of the slider, and the second magnetic member being arranged in a convex sleeve corresponding to the front end of the first magnetic member. This method has a simple and reliable structure and a stable driving effect on the slider.
[0013] Preferably, the convex sleeve is provided with an assembly hole extending from rear to front, the inner side of the rear side wall of the slider is provided with a limit column extending forward and cooperating with the assembly hole for limiting the position, the first magnetic member is provided at the front end of the limit column, and the second magnetic member is provided at the front end of the assembly hole. The above structure is adopted to facilitate the installation of the drive assembly so that the drive assembly can always stably drive the slider to move forward and backward.
[0014] Preferably, the cross section of the slider includes a horizontal portion corresponding to the baffle, a vertical portion extending downward from the rear edge of the baffle, and an arc portion extending downward and forward from the lower edge of the vertical portion; in the closed state, the vertical portion is arranged close to the rear side wall of the sinking platform, and the junction between the vertical portion and the arc portion is arranged corresponding to the middle of the rear side wall of the sinking platform, and the horizontal portion covers the top of the convex sleeve and covers the gap at the rear; in the open state, the vertical portion is horizontally against the bottom surface of the sinking platform, the horizontal portion is arranged vertically and has a spacing with the rear side wall of the sinking platform, and the arc portion contacts and cooperates with the outer surface of the bottom of the convex sleeve. With the above structure, in the process of the slider moving forward and backward, the outer surface of the convex sleeve will provide a guiding effect for the movement of the slider as the door body opens and closes, so that the movement of the slider and the door opening and closing actions are precisely matched to maintain the assembly stability of the slider. Moreover, when the door is open, the vertical part rests horizontally on the bottom surface of the sink groove, so that the door body can be placed vertically, and the door body is prevented from opening at an angle exceeding 90 degrees and abutting against the upper edge of the sink groove, which would cause indentation or damage to the door body surface in the long run.
[0015] Preferably, the front end of the horizontal part is provided with a first stopper that can stop it with the top of the convex sleeve, and the lower end of the arc part is provided with a second stopper that can stop it with the bottom of the convex sleeve. This structure is conducive to improving the assembly stability of the slider on the convex sleeve, so that it can be adaptively adjusted with the door opening and closing actions, but always maintain reliable constraints.
[0016] Preferably, the top of the convex sleeve is formed with a plane that guides and cooperates with the baffle in the horizontal direction, the first limiting portion is a first convex rib extending forward from the front edge of the horizontal portion, the lower surface of the first convex rib forms a first arc surface that can guide and cooperate with the arc portion of the convex sleeve located in front of the plane, and a clearance groove for the first convex rib to move forward and backward is formed between the front edge of the top of the convex sleeve and the upper surface of the door body. The above structure is used to facilitate the limiting connection between the top of the slider and the door body, thereby improving the reliability of the slider installation.
[0017] Preferably, the second limiting portion is a second convex rib extending forward from the lower edge of the arc-shaped portion, and the upper surface of the second convex rib forms a second arc surface that can guide and cooperate with the arc-shaped portion of the bottom of the convex sleeve. The above structure facilitates the limiting connection between the bottom of the slider and the door body, thereby improving the reliability of the slider installation.
[0018] Preferably, the convex sleeve is partially missing in its axial direction to form an installation opening, and the connecting assembly is installed in the sink groove corresponding to the installation opening and the convex sleeve. This structure facilitates the door body to be compactly and stably constrained in the sink groove.
[0019] Compared with the prior art, the advantages of the present invention are: a slider which can move forward and backward with the door opening and closing action is arranged at the rear edge of the door body of the present invention; when closing the door, the slider moves backward with the door closing action, and covers the gap in the closed state to prevent debris from entering and bacteria from breeding; when opening the door, the slider moves forward with the door opening process to form an anti-interference structure for door opening, thereby avoiding interference between the door body, the slider and the sink groove, greatly improving the user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 This is a schematic diagram of the structure of an embodiment of the utility model (door closed state);
[0021] Figure 2 It is a partial cross-sectional view of an embodiment of the utility model (door closed state);
[0022] Figure 3 It is a partial cross-sectional view of an embodiment of the utility model (door open state);
[0023] Figure 4 This is a schematic diagram of the structure of the door body in the embodiment of the utility model;
[0024] Figure 5 for Figure 4 Exploded diagram of
[0025] Figure 6 for Figure 5 Another angle view. DETAILED DESCRIPTION
[0026] The present invention will be described in further detail below in conjunction with the accompanying drawings.
[0027] like Figures 1 to 6 As shown, the cleaning machine of this embodiment includes a water tank 1 and a door body 2, the rear edge of the door body 2 is rotatably connected to the rear edge of the top opening of the water tank 1, and a sink groove 11 is arranged on the outer periphery of the top opening of the water tank 1. In the closed state, the door body 2 is located in the sink groove 11, and a gap 12 is formed between the rear edge of the door body 2 and the rear side wall of the sink groove 11, and a slider 3 which can move forward and backward with the opening and closing of the door body 2 is arranged at the rear edge of the door body 2. In the closed state, the slider 3 moves backward to form a shielding structure which can cover the gap 12, and the slider 3 moves forward with the opening process of the door body 2 to form a door opening anti-interference structure.
[0028] In this embodiment, a slider 3 that can move forwards and backwards with the door opening and closing actions is provided at the rear edge of the door body 2. When closing the door, the slider 3 moves backwards with the door closing action and covers the gap 12 in the closed state to prevent debris from entering and bacteria from breeding; when opening the door, the slider 3 moves forward with the opening process of the door body 2 to form an anti-interference structure for door opening, thereby avoiding interference between the door body 2, the slider 3 and the sink groove 12, greatly improving the user experience.
[0029] A convex sleeve 21 extending in the length direction is partially provided on the rear side wall of the door body 2, and a connecting assembly 4 for rotatably connecting the door body 2 to the sink groove 12 is installed in the convex sleeve 21. The slider 3 can be constrained on the rear side of the convex sleeve 21 so as to move forward and backward, and a baffle 31 covering the upper surface of the door body 2 and moving forward and backward with the slider 3 is formed on the top of the slider 3. With the above structure, the slider 3 is constrained on the rear side of the convex sleeve 21 and matched with the outer periphery of the convex sleeve 21. In the process of the slider 3 moving forward and backward, the outer surface of the convex sleeve 21 will provide a guide for the movement of the slider 3 with the opening and closing action of the door body 2, so that the movement of the slider 3 and the door opening and closing action are precisely matched, the assembly stability of the slider 3 is maintained, and it is ensured that the gap 12 is covered in the closed state, and the slider 3 will not interfere with the sink groove 11 in the process of opening the door.
[0030] In the closed state, the baffle 31 moves backward with the slider 3 to form a shielding structure; in the door opening process, the baffle 31 moves forward with the slider 3 to form an anti-interference structure. This structure can ensure that the gap 12 is covered in the closed state, and the slider will not interfere with the sink groove in the door opening process.
[0031] The slider 3 is hollow inside and can be moved forward and backward and wrapped around the outer periphery of the convex sleeve 21. A driving assembly 5 that can drive the slider 3 to move forward and backward with the door opening and closing action is arranged between the rear side wall of the slider 3 and the convex sleeve 21. With such a structure, it is convenient for the slider 3 to perform adaptive adjustment to the door body 2 opening and closing action, so that the gap 12 is covered in the closed state, and the slider 3 will not interfere with the sink groove 12 during the door opening process.
[0032] The driving assembly 5 comprises a first magnetic member 51 and a second magnetic member 52 which repel each other, wherein the first magnetic member 51 is arranged at the rear side wall of the slider 3, and the second magnetic member 52 is arranged in the convex sleeve 21 corresponding to the front end of the first magnetic member 51. In this way, the structure is simple and reliable, and the driving of the slider is stable.
[0033] Specifically, the convex sleeve 21 is provided with an assembly hole 211 extending from the rear to the front, and the inner side of the rear side wall of the slider 3 is provided with a limit column 32 extending forward and guiding and cooperating with the assembly hole 211 to limit the position, the first magnetic member 51 is provided at the front end of the limit column 32, and the second magnetic member 52 is provided at the front end of the assembly hole 211. With the above structure, it is convenient to install the drive assembly 5, so that the drive assembly 5 can always stably drive the slider 3 to move forward and backward.
[0034] In this embodiment, the cross section of the slider 3 includes a horizontal portion 33 corresponding to the baffle 31, a vertical portion 34 extending downward from the rear edge of the baffle 33, and an arc portion 35 extending downward and forward from the lower edge of the vertical portion 34; in the closed state, the vertical portion 34 is arranged close to the rear side wall of the sinking platform groove 12, and the connection between the vertical portion 34 and the arc portion 35 is arranged corresponding to the middle of the rear side wall of the sinking platform groove 11, and the horizontal portion 33 covers the top of the convex sleeve 21 and covers the gap 12 at the rear; in the open state, the vertical portion 34 is horizontally against the bottom surface of the sinking platform groove 12, the horizontal portion 33 is arranged vertically and has a spacing with the rear side wall of the sinking platform groove 11, and the arc portion 35 contacts and cooperates with the outer surface of the bottom of the convex sleeve 21. With the above structure, in the process of the slider 3 moving forward and backward, the outer surface of the convex sleeve 21 will provide a guiding effect for the movement of the slider 3 as the door body 2 opens and closes, so that the movement of the slider 3 and the door opening and closing actions are precisely matched, and the assembly stability of the slider 3 is maintained. Moreover, when the door is open, the vertical portion 34 rests horizontally against the bottom surface of the sink groove 11, so that the door body 2 can be placed vertically, and the door body 2 is prevented from being opened at an angle exceeding 90 degrees and abutting against the upper edge of the sink groove 11, causing indentations or damage to the surface of the door body 2 in the long run.
[0035] The front end of the horizontal portion 33 of this embodiment is provided with a first limiting portion 331 capable of limiting the horizontal portion 33 with the top of the convex sleeve 21, and the lower end of the arc portion 35 is provided with a second limiting portion 351 capable of limiting the horizontal portion 33 with the bottom of the convex sleeve 21. This structure is conducive to improving the assembly stability of the slider 3 on the convex sleeve 21, so that the slider 3 can be adaptively adjusted with the door opening and closing actions, but always maintains reliable constraints.
[0036] Specifically, the top of the convex sleeve 21 is formed with a plane 212 that guides and cooperates with the baffle 31 in the horizontal direction, the first limiting portion 331 is a first convex rib extending forward from the front edge of the horizontal portion 33, and the lower surface of the first convex rib forms a first arc surface 332 that can guide and cooperate with the arc portion 35 of the convex sleeve 21 located in front of the plane 212, and a clearance groove 213 for the first convex rib to move forward and backward is formed between the front edge of the top of the convex sleeve 21 and the upper surface of the door body 2. With the above structure, it is convenient to limit the top of the slider 3 and the door body 2, and improve the installation reliability of the slider 3. The second limiting portion 351 is a second convex rib extending forward from the lower edge of the arc portion 35, and the upper surface of the second convex rib forms a second arc surface 352 that can guide and cooperate with the arc portion 35 at the bottom of the convex sleeve 21. With the above structure, it is convenient to limit the bottom of the slider 3 and the door body 2, and improve the installation reliability of the slider 3.
[0037] The convex sleeve 21 is partially missing in its axial direction to form an installation opening 214, and the installation opening 214 corresponds to the sinking groove 11 and the convex sleeve 21. The connecting component 4 is a hinge in this embodiment. This structure facilitates the door body 2 to be compactly and stably constrained in the sinking groove 11.
[0038] When the door is opened, the rear wall of the slider 3 slides with the rear wall and the bottom wall of the sink groove 11, and the slide block 3 is supported by the slider 3. When the door is opened, the rear wall of the slider 3 slides with the rear wall and the bottom wall of the sink groove 11, and the sink groove 11 applies an overall forward force to the slider 3, thereby overcoming the force between the first magnetic member 51 and the second magnetic member 52, so that the slider 3 moves forward, avoiding interference between the slider 3 and the sink groove 11 and affecting the door opening action. When the door is fully opened, the rear wall of the slider 3 abuts against the bottom plane of the sink groove 11, and the door body 2 is flipped 90 degrees relative to the horizontal plane and is stably supported on the bottom plane of the sink groove 11 by the slider 3.
[0039] In the specification and claims of the present invention, terms indicating directions, such as "front", "rear", "up", "down", "left", "right", "side", "top", "bottom", etc., are used to describe various exemplary structural parts and elements of the present invention, but these terms are used here only for the purpose of convenience of description and are determined based on the exemplary orientations shown in the accompanying drawings. Since the embodiments disclosed in the present invention can be arranged in different directions, these terms indicating directions are only used as explanations and should not be regarded as limitations. For example, "up" and "down" are not necessarily limited to directions opposite to or consistent with the direction of gravity.
Claims
1. A cleaning machine, comprising a water tank (1) and a door body (2), wherein the rear edge of the door body (2) is rotatably connected to the rear edge of the top opening of the water tank (1), a sinking groove (11) is arranged on the periphery of the top opening of the water tank (1), and in a closed state, the door body (2) is located in the sinking groove (11), and a gap (12) is formed between the rear edge of the door body (2) and the rear side wall of the sinking groove (11), characterized in that: A slider (3) is provided at the rear edge of the door body (2) and can move forward and backward as the door body (2) is opened and closed. In the closed state, the slider (3) moves backward to form a shielding structure that can cover the gap (12). The slider (3) moves forward as the door body (2) is opened to form an anti-interference structure for door opening.
2. The cleaning machine according to claim 1, characterized in that: At least a portion of the rear side wall of the door body (2) is provided with a convex shaft sleeve (21) extending in the length direction, and a connecting assembly (4) for rotatably connecting the door body (2) to the sink groove (11) is installed in the convex shaft sleeve (21), and the slider (3) is constrained on the rear side of the convex shaft sleeve (21) so as to be movable forward and backward, and a baffle (31) is formed on the top of the slider (3) and covers the upper surface of the door body (2) and moves forward and backward with the slider (3).
3. The cleaning machine according to claim 2, characterized in that: In the door closing state, the baffle (31) moves backward along with the slider (3) to form the shielding structure; in the door opening process, the baffle (31) moves forward along with the slider (3) to form the anti-interference structure.
4. The cleaning machine according to claim 2, characterized in that: The slider (3) is hollow inside and can be movably wrapped around the outer periphery of the convex sleeve (21). A driving component (5) is provided between the rear side wall of the slider (3) and the convex sleeve (21) and can drive the slider (3) to move forward and backward in response to the door opening and closing action.
5. The cleaning machine according to claim 4, characterized in that: The driving assembly (5) comprises a first magnetic component (51) and a second magnetic component (52) that repel each other, wherein the first magnetic component (51) is arranged on the rear side wall of the slider (3), and the second magnetic component (52) is arranged in a convex shaft sleeve (21) corresponding to the front end of the first magnetic component (51).
6. The cleaning machine according to claim 5, characterized in that: The convex shaft sleeve (21) is provided with an assembly hole (211) extending from the rear to the front, and the inner side of the rear side wall of the sliding block (3) is provided with a limiting column (32) extending forward and guiding and cooperating with the assembly hole (211) to limit the position, the first magnetic component (51) is arranged at the front end of the limiting column (32), and the second magnetic component (52) is arranged at the front end of the assembly hole (211).
7. The cleaning machine according to claim 4, characterized in that: The cross section of the sliding block (3) comprises a horizontal portion (33) corresponding to the baffle (31), a vertical portion (34) extending downward from the rear edge of the baffle (31), and an arcuate portion (35) extending downward and forward from the lower edge of the vertical portion (34); in a closed state, the vertical portion (34) is arranged close to the rear side wall of the sink groove (11), and the junction between the vertical portion (34) and the arcuate portion (35) is arranged corresponding to the middle of the rear side wall of the sink groove (11), and the horizontal portion (33) covers the top of the convex shaft sleeve (21) and covers the gap (12) at the rear; in an open state, the vertical portion (34) is horizontally pressed against the bottom surface of the sink groove (11), and the horizontal portion (33) is arranged vertically and has a spacing with the rear side wall of the sink groove (11), and the arcuate portion (35) contacts and cooperates with the outer surface of the bottom of the convex shaft sleeve (21).
8. The cleaning machine according to claim 7, characterized in that: The front end of the horizontal portion (33) is provided with a first limiting portion (331) capable of limiting the position of the horizontal portion (33) with the top of the convex sleeve (21), and the lower end of the arc-shaped portion (35) is provided with a second limiting portion (351) capable of limiting the position of the arc-shaped portion (35) with the bottom of the convex sleeve (21).
9. The cleaning machine according to claim 8, characterized in that: The top of the convex sleeve (21) is formed with a plane (212) which is guided and matched with the baffle (31) in the horizontal direction. The first limiting portion (331) is a first convex rib extending forward from the front edge of the horizontal portion (33). The lower surface of the first convex rib is formed with a first arc surface (332) which can be guided and matched with the arc portion (35) of the convex sleeve (21) located in front of the plane (212). A clearance groove (213) for the first convex rib to move forward and backward is formed between the front edge of the top of the convex sleeve (21) and the upper surface of the door body (2).
10. The cleaning machine according to claim 8, characterized in that: The second limiting portion (351) is a second convex rib extending forward from the lower edge of the arc-shaped portion (35), and the upper surface of the second convex rib forms a second arc surface (352) that can guide and cooperate with the arc-shaped portion (35) at the bottom of the convex shaft sleeve (21).
11. The cleaning machine according to any one of claims 2 to 10, characterized in that: The convex shaft sleeve (21) is partially missing in its axial direction to form a mounting opening (214), and the connection assembly (4) is installed in the sink groove (11) corresponding to the mounting opening (214) and the convex shaft sleeve (21).
Citation Information
Patent Citations
Door body mounting structure of sink type dish-washing machine
CN216020887U