Dispensing device and dishwasher
By designing a flow guide and flow channel in the dishwasher, the problem of fluid flowing into the placement chamber is solved, achieving cleanliness, dryness, and convenient use of the placement chamber.
Patent Information
- Application Number
- CN202111013906.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-08-31
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2041-08-31
AI Technical Summary
In existing dishwashers, fluid can easily flow into the placement cavity from the open end, leading to an increase in the amount of residual fluid in the placement cavity and affecting cleaning and drying.
Design a dispensing device comprising a flow guide and a flow guide channel. The flow guide is arranged around the open end of the placement cavity to prevent fluid from flowing into the placement cavity, and the flow guide channel is used to guide the fluid to reduce residue.
It effectively reduces or prevents fluid from flowing into the placement cavity, improves the cleanliness and dryness of the placement cavity, reduces dirt residue, and enhances the ease of use and cleaning effect of the dishwasher.
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Figure CN115721236B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of dishwashers, in particular to a dispensing device and a dishwasher with the same. BACKGROUND
[0002] In the related art, the existing dishwasher comprises a seat body and a liquid storage container, the liquid storage container is installed in a placing cavity of the seat body, however, fluid is prone to flow into the placing cavity from the open end of the placing cavity, and fluid is prone to be left in the placing cavity, which is not conducive to the cleaning and drying of the placing cavity. SUMMARY
[0003] The present application aims to at least solve one of the technical problems existing in the prior art. To this end, one object of the present application is to provide a dispensing device which can reduce or avoid fluid flowing into the placing cavity from the open end of the placing cavity, and effectively reduce the amount of fluid left in the placing cavity, thereby facilitating the cleaning and drying of the placing cavity.
[0004] The present application further provides a dishwasher.
[0005] The dispensing device according to the present application comprises a seat body, the seat body is provided with an open placing cavity, the seat body is provided with a flow guide portion, the flow guide portion is arranged around the open end of the placing cavity, and the flow guide portion is used to guide the fluid on the seat body to block the fluid from flowing into the placing cavity from the open end.
[0006] The dispensing device according to the present application can reduce or avoid fluid flowing into the placing cavity from the open end of the placing cavity by arranging the flow guide portion, and can effectively reduce the amount of fluid left in the placing cavity, thereby facilitating the cleaning and drying of the placing cavity.
[0007] In some examples of the present application, the seat body is provided with a flow guide groove, the flow guide groove is located on the outer side of the flow guide portion, and the outer side is the side of the flow guide portion away from the placing cavity.
[0008] In some examples of the present application, the flow guide portion comprises a first flow guide portion, a second flow guide portion and a third flow guide portion, both ends of the second flow guide portion are connected with the first flow guide portion and the third flow guide portion respectively, the second flow guide portion is located at the first end of the open end in a first direction of the seat body, the first flow guide portion and the third flow guide portion are located on both sides of the open end in a second direction of the seat body, and the first direction is perpendicular to the second direction.
[0009] In some examples of the present application, the first direction is the height direction of the placing cavity, and the second direction is the width direction of the placing cavity.
[0010] In some examples of the present application, the second flow guide extends in a second direction of the seat body, and the first flow guide and the third flow guide both extend in the first direction.
[0011] In some examples of the present application, a first flow guide plate is arranged at the connection between the first flow guide and the second flow guide, and the first flow guide plate is arranged obliquely from the second flow guide towards the first flow guide, so that the fluid flows outside the first flow guide plate towards the first flow guide.
[0012] In some examples of the present application, a second flow guide plate is arranged at the connection between the second flow guide and the third flow guide, and the second flow guide plate is arranged obliquely from the second flow guide towards the third flow guide, so that the fluid flows outside the second flow guide plate towards the third flow guide.
[0013] In some examples of the present application, the flow guide is configured as an inner side wall of the flow guide groove.
[0014] In some examples of the present application, the flow guide groove comprises a first flow guide groove, a second flow guide groove and a third flow guide groove, two ends of the second flow guide groove are respectively connected with the first flow guide groove and the third flow guide groove, the first flow guide groove corresponds to the first flow guide, the second flow guide groove corresponds to the second flow guide, the third flow guide groove corresponds to the third flow guide, and the fluid in the second flow guide groove is adapted to flow into the first flow guide groove and / or the third flow guide groove.
[0015] In some examples of the present application, an end wall of one end of the first flow guide groove away from the second flow guide groove and / or an end wall of one end of the third flow guide groove away from the second flow guide groove is configured as a flow guide inclined wall, and the flow guide inclined wall is adapted to guide the fluid out of the seat body.
[0016] In some examples of the present application, the flow guide groove comprises a mounting groove corresponding to the second flow guide, and the mounting groove is provided with a sealing strip; the dropping device further comprises a cover body connected with the seat body, which is used to open or cover the open end of the placing cavity, and the cover body abuts against the sealing strip when the cover body covers the placing cavity.
[0017] In some examples of the present application, the flow guide groove further comprises a first flow guide groove corresponding to the first flow guide and a third flow guide groove corresponding to the third flow guide.
[0018] In some examples of the present application, in the first direction of the seat body, an inner side wall of a first end of the placing cavity away from the open end is provided with a flow guide gap, and the flow guide gap is connected with the placing cavity and is adapted to guide the fluid in the placing cavity to the outside of the placing cavity.
[0019] In some examples of the present application, a flow guide surface is connected between the bottom wall of the placement cavity and the inner side wall of the placement cavity away from the first end, so as to guide the fluid into the flow guide gap.
[0020] In some examples of the present application, a support part is arranged in the placement cavity, and the support part is used to support a liquid storage container in the placement cavity, so as to form a gap between the liquid storage container and the inner surface of the placement cavity.
[0021] In some examples of the present application, the dispensing device further comprises: a liquid storage container arranged in the seat body; a pump body mounted on the liquid storage container and used to pump out the detergent; and a driving component used to drive the pump body to pump out the detergent.
[0022] The dishwasher according to the present application comprises the dispensing device described above.
[0023] In some examples of the present application, the dispensing device is mounted on a door body of the dishwasher.
[0024] In some examples of the present application, the dishwasher comprises an inner container, and the inner container forms a washing cavity; and the door body is used to open or close the washing cavity.
[0025] In some examples of the present application, the dishwasher comprises a bowl basket arranged in the washing cavity; and / or, the dishwasher comprises a spray arm used to spray water flow and rotate under the action of the water flow.
[0026] Additional aspects and advantages of the present application will be given, partially in the following description, partially become obvious from the following description, or be understood by practice of the present application. BRIEF DESCRIPTION OF DRAWINGS
[0027] The above and / or additional aspects and advantages of the present application will become apparent and be readily understood from the following description, taken in conjunction with the accompanying drawings, in which:
[0028] Figure 1 is a schematic view of a dispensing device according to an example of the present application;
[0029] Figure 2 is an assembly view of a seat body and a cover body of a dispensing device according to an example of the present application;
[0030] Figure 3 is a schematic view of a seat body of a dispensing device according to an example of the present application;
[0031] Figure 4 is Figure 3 is an enlarged view of A in FIG. 8;
[0032] Figure 5 is Figure 3 is an enlarged view of B in FIG. 1;
[0033] Figure 6 is a schematic view of a liquid storage container of a dispensing device according to an embodiment of the present application;
[0034] Figure 7 is another schematic view of a liquid storage container of a dispensing device according to an embodiment of the present application;
[0035] Figure 8 is another schematic view of a liquid storage container of a dispensing device according to an embodiment of the present application;
[0036] Figure 9 is an exploded view of a liquid storage container of a dispensing device according to an embodiment of the present application;
[0037] Figure 10 is a schematic view of a dispensing device mounted on a door body according to an embodiment of the present application.
[0038] Reference Signs:
[0039] dispensing device 100;
[0040] seat body 1; flow guide notch 11; flow guide surface 12; support portion 13; placement cavity 10;
[0041] liquid storage container 20; liquid storage box cover 206; first avoiding hole 2061; second avoiding hole 2062; liquid storage box 2063;
[0042] pump body 204; pump head 2041; liquid injection hole 205;
[0043] door body 30; washing powder / dishwashing block dispensing component 31; dish brightener dispensing component 32;
[0044] cover body 40; sealing strip 50;
[0045] flow guide portion 60; first flow guide portion 61; second flow guide portion 62; third flow guide portion 63;
[0046] flow guide groove 70; first flow guide groove 71; second flow guide groove 72; third flow guide groove 73; flow guide inclined wall 74;
[0047] first flow guide plate 80; second flow guide plate 90. DETAILED DESCRIPTION
[0048] Embodiments of the present application are described in detail below with reference to the attached drawing figures, wherein the same or like reference numerals are used throughout the figures to refer to the same or like elements or elements having the same or similar function. The embodiments described below are exemplary and are not intended to be limiting of the present application.
[0049] The application will be described below with reference to Figures 1-10 The dispensing device 100 according to the embodiments of the application is described below by taking an application to a dishwasher as an example.
[0050] As shown in Figures 1-10 The dispensing device 100 according to the embodiments of the application comprises a seat body 1, the seat body 1 is provided with a placing cavity 10, one end of the placing cavity 10 is open, a liquid storage container 20 can be arranged in the placing cavity 10, the liquid storage container 20 is used for storing a detergent (for example, a washing liquid), the seat body 1 is provided with a flow guide part 60, the flow guide part 60 can be configured as a flow guide rib, the flow guide part 60 is arranged around the open end of the placing cavity 10, and the flow guide part 60 is used for guiding the fluid on the seat body 1 to block the fluid from flowing into the placing cavity 10 from the open end of the placing cavity 10. Further, the flow guide part 60 can be formed by extending the side wall of the placing cavity 10 towards the direction away from the bottom wall of the placing cavity 10.
[0051] As shown in Figure 1 and Figure 2 The dispensing device 100 can further comprise a cover body 40, the cover body 40 can be hinged to the seat body 1, and the cover body 40 can rotate relative to the seat body 1 to selectively open or close the open end of the placing cavity 10. When the fluid (for example, liquid) flows from the gap between the cover body 40 and the seat body 1 towards the open end of the placing cavity 10, the fluid flows to the side surface of the flow guide part 60 away from the open end of the placing cavity 10, and the fluid flows along the side surface of the flow guide part 60 away from the open end of the placing cavity 10. The flow guide part 60 blocks the fluid from continuing to flow towards the open end of the placing cavity 10. Compared with the prior art, the amount of the fluid flowing into the placing cavity 10 can be reduced, the fluid flowing into the placing cavity 10 can be avoided, the amount of the fluid remaining in the placing cavity 10 can be effectively reduced, and the dirt remaining in the placing cavity 10 can be avoided, thereby facilitating the cleaning and drying of the placing cavity 10.
[0052] When the liquid storage container 20 needs to be taken out, the cover body 40 can be controlled to move to open the open end of the placing cavity 10, so as to facilitate the taking out of the liquid storage container 20. After the liquid storage container 20 is installed in the placing cavity 10, the cover body 40 can be controlled to move to close the open end of the placing cavity 10, so as to seal the placing cavity 10, thereby avoiding the dust and bacteria outside from entering the placing cavity 10 and avoiding the liquid storage container 20 from being taken out of the placing cavity 10.
[0053] Therefore, by arranging the flow guide part 60, the fluid flowing into the placing cavity 10 from the open end of the placing cavity 10 can be reduced or avoided, the amount of the fluid remaining in the placing cavity 10 can be effectively reduced, and the cleaning and drying of the placing cavity 10 can be facilitated.
[0054] Further, as shown in Figure 1As shown, the liquid storage container 20 is arranged on the seat body 1, and Figure 9 As shown, the dispensing device 100 can further include a pump body 204, the liquid storage container 20 can include a liquid storage box 2063, the liquid storage box 2063 can store the detergent, the pump body 204 is arranged on the liquid storage container 20, the pump body 204 is used for pumping the detergent in the liquid storage container 20, the pump body 204 can be arranged on the liquid storage box 2063, and the pump body 204 has a pump head 2041, the pump head 2041 can move relative to the liquid storage box 2063 to pump the detergent in the liquid storage box 2063 into the washing cavity of the dishwasher, so that the washing liquid is pumped out conveniently and quickly, and the liquid volume pumped out each time is controllable.
[0055] In some embodiments of the present application, the pump body 204 and the liquid storage box 2063 are detachably connected, when the liquid volume of the detergent is insufficient, the user can detach the pump body 204 and the liquid storage box 2063 to add the detergent into the liquid storage box 2063. Or the liquid storage box 2063 can be replaced as a whole. Or the liquid storage box 2063 can also be provided with a liquid injection hole 205, and the liquid storage box 2063 can be added with washing liquid through the liquid injection hole 205, so that the liquid storage container 20 has sufficient washing liquid.
[0056] In some embodiments of the present application, the seat body 1 can be the door body 30 of the dishwasher or the cavity wall of the washing cavity, further, the liquid storage container 20 can be arranged on the door body 30 of the dishwasher or the cavity wall of the washing cavity, so that the number of parts is reduced, the weight of the dishwasher is reduced, and the light weight of the dishwasher is realized. Or, as shown, Figure 10 As shown, the seat body 1 can be arranged on the door body 30 of the dishwasher, so that the seat body 1 is convenient to disassemble and assemble.
[0057] In some embodiments of the present application, the dispensing device 100 can further include a driving component, the driving component is used for driving the pump body 204 to pump out the detergent, further, the driving component can be used for driving the pump head 2041 to move towards the liquid storage container 20 to press the pump head 2041 to pump the detergent in the liquid storage container 20 into the washing cavity of the dishwasher, so that the automatic dispensing of the washing liquid is realized, and the user does not need to manually add the washing liquid into the washing cavity before each time of washing the tableware, the pain points of manually adding the detergent and frequently dispensing the detergent are avoided, the use of the dishwasher is convenient, and the situation that the user forgets to add the detergent and affects the washing effect of the tableware is avoided.
[0058] Optionally, as shown, Figure 9As shown, the liquid storage container 20 can further include a liquid storage box cover 206, which can be fitted on the liquid storage box 2063 to avoid the pump body 204 and the liquid injection hole 205 being exposed to the outside world, so as to avoid the dust, bacteria and the like in the outside world from entering the liquid storage container 20, and to avoid the detergent from being contaminated. In addition, the peripheral wall of the liquid storage box cover 206 is arranged in a plane with the peripheral wall of the liquid storage box 2063, and in addition, the top wall of the liquid storage box cover 206 can be provided with a first avoiding hole 2061, at least part of the structure of the driving component can be inserted into the first avoiding hole 2061 to press the pump head 2041, and the part of the liquid storage box cover 206 corresponding to the pump head 2041 can be provided with a second avoiding hole 2062, and the detergent in the liquid storage container 20 can be pumped into the washing cavity of the dishwasher through the second avoiding hole 2062.
[0059] In some embodiments of the present application, the dispensing device 100 can further include a detection component, which can be used to detect the driving component (for example, to detect the working time or position of the driving component), or the detection component can also be used to detect the pump head 2041 (for example, to detect the position of the pump head 2041). In addition, the detection component can control the working state of the driving component according to the detected information, so as to accurately control the dispensing amount of the detergent when washing tableware. Wherein, the detection component can directly control the working state of the driving component, or the detection component can also control the working state of the driving component through the control component, which is not limited in the present application.
[0060] As some embodiments of the present application, as shown in Figure 1 As shown, the dispensing device 100 can further include a washing powder / dishwashing block dispensing component 31, which can be used to dispense washing powder / dishwashing block into the washing cavity of the dishwasher. When washing tableware, the user can choose to dispense detergent through the dispensing device 100 or to dispense washing powder / dishwashing block through the washing powder / dishwashing block dispensing component 31 according to the needs, and such a design can provide the user with multiple choices and can make the dishwasher meet the use needs of more users.
[0061] As some embodiments of the present application, as shown in Figure 1 As shown, the dispensing device 100 can further include a dish brightener dispensing component 32, which can be used to dispense dish brightener into the washing cavity of the dishwasher to brighten and maintain the washed tableware and remove water droplets and gray spots and the like.
[0062] As some embodiments of the present application, as shown in Figure 1 As shown, the dispensing device 100 can simultaneously include the washing powder / dishwashing block dispensing component 31 and the dish brightener dispensing component 32, and the user can choose the detergent, washing powder / dishwashing block and dish brightener, and such a design can further meet the use needs of the dishwasher of more users.
[0063] In some embodiments of the present application, as shown in Figure 3 The flow guide 60 can include a first flow guide 61, a second flow guide 62, and a third flow guide 63. The two ends of the second flow guide 62 are connected to the first flow guide 61 and the third flow guide 63, respectively. In the first direction of the seat body 1, the second flow guide 62 is located at the first end of the open end. It should be noted that, as shown in Figure 3 The first direction of the seat body 1 refers to the up-down direction in Figure 3 The upper end of the open end of the placement cavity 10 is the first end of the open end. The second flow guide 62 is arranged at the upper end of the open end of the placement cavity 10. In the second direction of the seat body 1, the first flow guide 61 and the third flow guide 63 are located on the two sides of the open end. The first direction is perpendicular to the second direction. It should be explained that the second direction of the seat body 1 refers to the left-right direction in Figure 3 When the first flow guide 61 is arranged on the left side of the open end of the placement cavity 10, the third flow guide 63 is arranged on the right side of the open end of the placement cavity 10. When the first flow guide 61 is arranged on the right side of the open end of the placement cavity 10, the third flow guide 63 is arranged on the left side of the open end of the placement cavity 10. For example, the first flow guide 61 is arranged on the left side of the open end of the placement cavity 10, and the third flow guide 63 is arranged on the right side of the open end of the placement cavity 10. Although it is defined that the flow guide 60 includes the first flow guide 61, the second flow guide 62, and the third flow guide 63, it does not mean that the three are in a split state. It is only necessary to have corresponding flow guides in the corresponding first direction and second direction.
[0064] The first direction is the height direction of the placement cavity 10, and the second direction is the width direction of the placement cavity 10. When the dropping device 100 is placed as shown in Figure 3 The fluid flows from the top of the seat body 1 to the bottom. By arranging the second flow guide 62 at the upper end of the open end of the placement cavity 10, the first flow guide 61 on the left side of the open end of the placement cavity 10, and the third flow guide 63 on the right side of the open end of the placement cavity 10, when the fluid flows to the surface of the second flow guide 62, the second flow guide 62 will block the fluid from flowing into the placement cavity 10. The fluid will flow along the second flow guide 62 to the first flow guide 61 and / or the third flow guide 63. The fluid will flow out of the seat body 1 along the first flow guide 61 and / or the third flow guide 63. Thus, the fluid can be prevented from flowing into the placement cavity 10, and the arrangement of the first flow guide 61, the second flow guide 62, and the third flow guide 63 can be reasonable.
[0065] In some embodiments of the present application, as shown in Figure 3As shown, the second flow guide part 62 can be arranged to extend in the second direction of the seat body 1, and the first flow guide part 61 and the third flow guide part 63 are both arranged to extend in the first direction, when the fluid flows to the surface of the second flow guide part 62, the second flow guide part 62 is arranged to extend in the second direction of the seat body 1, which is beneficial for the fluid on the surface of the second flow guide part 62 to flow towards the first flow guide part 61 and / or the third flow guide part 63, and the first flow guide part 61 and the third flow guide part 63 are both arranged to extend in the first direction, when the fluid flows to the surface of the first flow guide part 61 and the surface of the third flow guide part 63, under the action of the gravity of the fluid itself, it is beneficial for the fluid to flow out of the seat body 1, so that the fluid flowing into the placement cavity 10 can be further avoided.
[0066] In some embodiments of the present application, as shown in Figure 3 As shown, the connection between the second flow guide part 62 and the first flow guide part 61 can be provided with a first flow guide plate 80, the first flow guide plate 80 is arranged to be inclined from the second flow guide part 62 towards the first flow guide part 61, so that the fluid flows to the outside of the first flow guide plate 80 towards the first flow guide part 61, the first flow guide plate 80 can be arranged as an inclined plate, the surface of the first flow guide plate 80 away from the placement cavity 10 can be configured as a flow guide inclined surface, the fluid on the second flow guide part 62 flows towards the first flow guide part 61, when the fluid flows to the connection between the second flow guide part 62 and the first flow guide part 61, under the flow guide action of the first flow guide plate 80, it is beneficial to guide the fluid to flow towards the first flow guide part 61, so as to facilitate the discharge of the fluid outside the seat body 1.
[0067] In some embodiments of the present application, as shown in Figure 3 As shown, the connection between the third flow guide part 63 and the second flow guide part 62 can be provided with a second flow guide plate 90, the second flow guide plate 90 is arranged to be inclined from the second flow guide part 62 towards the third flow guide part 63, so that the fluid flows to the outside of the second flow guide plate 62 towards the third flow guide part 63, the second flow guide plate 90 can be arranged as an inclined plate, the surface of the second flow guide plate 90 away from the placement cavity 10 can be configured as a flow guide inclined surface, the fluid on the second flow guide part 62 flows towards the third flow guide part 63, when the fluid flows to the connection between the second flow guide part 62 and the third flow guide part 63, under the flow guide action of the second flow guide plate 90, it is beneficial to guide the fluid to flow towards the third flow guide part 63, so as to facilitate the discharge of the fluid outside the seat body 1.
[0068] In some embodiments of the present application, as shown in Figure 3 As shown, the seat body 1 can be provided with a flow guide groove 70, the flow guide groove 70 can be arranged around the flow guide part 60, and the flow guide groove 70 is located on the outside of the flow guide part 60, which is the side of the flow guide part 60 away from the placement cavity 10. It should be noted that the radial direction of the placement cavity 10 is perpendicular to the axial direction of the placement cavity 10. Figure 1The flow guide groove 70 is arranged outside the flow guide part 60. When the fluid (e.g. liquid) flows from the gap between the cover 40 and the seat 1 towards the open end of the placement cavity 10, the fluid first flows into the flow guide groove 70, then flows along the flow guide groove 70, and finally flows out of the placement device 100 from the flow guide groove 70. Such an arrangement can further reduce the amount of fluid flowing into the placement cavity 10, and can further avoid flowing into the placement cavity 10, so as to more effectively reduce the amount of residual fluid in the placement cavity 10, and can also avoid dirt remaining in the placement cavity 10, thereby being more conducive to cleaning and drying the placement cavity 10.
[0069] In some embodiments of the present application, as shown in Figure 3 The flow guide part 60 can be configured as an inner side wall of the flow guide groove 70, that is, the flow guide part 60 is configured as part of the structure of the flow guide groove 70. Such an arrangement can integrate the flow guide part 60 and the flow guide groove 70, and can simplify the structure of the seat 1, thereby facilitating the production and manufacturing of the seat 1, and further improving the production efficiency of the seat 1. Further, the first flow guide plate 80 and the second flow guide plate 90 can also be configured as inner side walls of the flow guide groove 70.
[0070] In some embodiments of the present application, as shown in Figure 3 The flow guide groove 70 can include a first flow guide groove 71, a third flow guide groove 73, and a second flow guide groove 72. The second flow guide groove 72 extends in the second direction of the seat 1, and the first flow guide groove 71 and the third flow guide groove 73 both extend in the first direction. The two ends of the second flow guide groove 72 are respectively in communication with the third flow guide groove 73 and the first flow guide groove 71. The first flow guide groove 71 is arranged corresponding to the first flow guide part 61, the second flow guide groove 72 is arranged corresponding to the second flow guide part 62, and the third flow guide groove 73 is arranged corresponding to the third flow guide part 63. It should be noted that, in the radial direction of the placement cavity 10, the first flow guide groove 71 is arranged corresponding to the first flow guide part 61, the second flow guide groove 72 is arranged corresponding to the second flow guide part 62, and the third flow guide groove 73 is arranged corresponding to the third flow guide part 63. The fluid in the second flow guide groove 72 is adapted to flow into the first flow guide groove 71 and / or the third flow guide groove 73.
[0071] When the fluid (e.g. liquid) flows from the gap between the cover 40 and the seat 1 towards the open end of the placement cavity 10, the fluid flows into the second flow guide groove 72, and then the fluid in the second flow guide groove 72 flows along the second flow guide groove 72 into the first flow guide groove 71 and / or the third flow guide groove 73, and finally the fluid flows out of the placement device 100 from the first flow guide groove 71 and / or the third flow guide groove 73. Such an arrangement can further reduce the amount of fluid flowing into the placement cavity 10, and can further avoid flowing into the placement cavity 10, so as to more effectively reduce the amount of residual fluid in the placement cavity 10, and can also avoid dirt remaining in the placement cavity 10, thereby being more conducive to cleaning and drying the placement cavity 10.
[0072] In some embodiments of the present application, as shown in Figure 3 the end wall of the first flow channel 71 away from the second flow channel 72 and / or the end wall of the third flow channel 73 away from the second flow channel 72 is configured as a flow guide inclined wall 74, which is adapted to guide the fluid out of the seat body 1, for example, the flow guide inclined wall 74 is adapted to guide the fluid in the flow channel 70 out of the flow channel 70. Among them, as shown in Figure 3 the end wall of the first flow channel 71 away from the second flow channel 72 is the lower end wall of the first flow channel 71, and the end wall of the third flow channel 73 away from the second flow channel 72 is the lower end wall of the third flow channel 73, from top to bottom direction, Figure 3 the flow guide inclined wall 74 extends towards the outside of the seat body 1, when there is fluid in the first flow channel 71 and / or the third flow channel 73, the fluid flows to the flow guide inclined wall 74, which facilitates the fluid to flow out of the flow channel 70 under the action of the flow guide inclined wall 74, avoiding the fluid to stay in the flow channel 70.
[0073] In some embodiments of the present application, as shown in Figure 3 in the first direction of the seat body 1, that is, in the up-down direction in Figure 3 the inner side wall of the first end of the placement cavity 10 away from the open end can be provided with a flow guide gap 11, which is in communication with the placement cavity 10 and is adapted to guide the fluid in the placement cavity 10 to the outside of the placement cavity 10. Among them, as shown in Figure 3 the lower side wall of the placement cavity 10 is the inner side wall of the first end of the placement cavity 10 away from the open end, and the flow guide gap 11 extends to the end of the open end of the placement cavity 10, when there is fluid in the placement cavity 10, the fluid in the placement cavity 10 flows towards the Figure 3 the lower side wall of the placement cavity 10, when the fluid flows to the lower side wall of the placement cavity 10, it will flow into the flow guide gap 11, and the fluid in the flow guide gap 11 will flow out of the placement cavity 10 along the flow guide gap 11, thereby timely discharging the fluid in the placement cavity 10.
[0074] Further, the bottom wall of the flow guide gap 11 is configured as an arc surface concave towards the inside of the seat body 1, when the fluid flows into the flow guide gap 11, under the action of the arc surface, it is beneficial to the fluid to be discharged from the placement cavity 10 in time.
[0075] In some embodiments of the present application, as shown in Figure 3 the bottom wall of the placement cavity 10 and the inner side wall of the placement cavity 10 away from the first end are connected by a flow guide surface 12, so that the fluid is guided into the flow guide gap 11, which can also be understood as, as shown in Figure 3 the lower side wall of the placement cavity 10 and the bottom wall of the placement cavity 10 are connected by a flow guide surface 12, which can be configured as an inclined surface, from Figure 3From top to bottom direction, the flow guide surface 12 extends obliquely towards the open end of the placing cavity 10, when the fluid flows from above the placing cavity 10 to the flow guide surface 12, under the action of the flow guide surface 12, the fluid can flow quickly to the flow guide gap 11, which is more conducive to the fluid in the placing cavity 10 to be discharged.
[0076] In some embodiments of the present application, as shown in Figure 3 The placing cavity 10 can be provided with a support portion 13, and the support portion 13 is arranged on the bottom wall of the placing cavity 10. When the liquid storage container 20 is installed in the placing cavity 10, the support portion 13 is used to support the liquid storage container 20 in the placing cavity 10, so that a gap is formed between the liquid storage container 20 and the inner surface of the placing cavity 10. When there is fluid in the placing cavity 10, the fluid can flow from the gap between the liquid storage container 20 and the bottom wall of the placing cavity 10 to the lower part of the placing cavity 10, which is conducive to the fluid in the placing cavity 10 to be discharged.
[0077] In some embodiments of the present application, as shown in Figure 3 The flow guide groove 70 includes a mounting groove corresponding to the second flow guide portion 62. The mounting groove can be provided with a sealing strip 50. The end of the sealing strip 50 away from the second flow guide groove 72 protrudes from the second flow guide portion 62. The cover 40 is connected with the seat body 1 and is used to open or cover the open end of the placing cavity 10. When the cover 40 covers the placing cavity 10, the cover 40 abuts against the sealing strip 50, that is, the cover 40 contacts the sealing strip 50. The cover 40 extrudes the sealing strip 50, so that the gap between the sealing strip 50 and the cover 40 is sealed, and the fluid is prevented from flowing into the placing cavity 10 from the gap between the sealing strip 50 and the cover 40. Of course, the mounting groove can also be the second flow guide groove 72, that is, the sealing strip 50 is installed in the second flow guide groove 72.
[0078] In some embodiments of the present application, as shown in The flow guide groove 70 further includes a first flow guide groove 71 and a third flow guide groove 73. The first flow guide groove 71 is arranged corresponding to the first flow guide portion 61, and the third flow guide groove 73 is arranged corresponding to the third flow guide portion 63. The fluid can flow out of the seat body 1 along the first flow guide groove 71 and the third flow guide groove 73.
[0079] In some embodiments of the present application, the seat body 1 can be provided with a first foolproof structure, and the liquid storage container 20 can be provided with a second foolproof structure. The second foolproof structure can cooperate with the first foolproof structure to realize the foolproof function. In the present application, by arranging the first foolproof structure and arranging the second foolproof structure corresponding to the first foolproof structure on the liquid storage container, when the user installs the liquid storage container 20 in the placing cavity 10, the liquid storage container 20 can be correctly installed in the placing cavity 10 by installing the second foolproof structure corresponding to the first foolproof structure, so that the liquid storage container 20 can be conveniently installed in the placing cavity 10.
[0080] Therefore, by setting the first fool-proof structure and the second fool-proof structure, the seat body 1 and the liquid storage container 20 have the fool-proof function. When the liquid storage container 20 is installed in the placing cavity 10, as long as the second fool-proof structure is installed in the position corresponding to the first fool-proof structure, the liquid storage container 20 can be correctly installed in the placing cavity 10, thereby avoiding the user from incorrectly placing the liquid storage container 20 in the placing cavity 10 (for example, installing the liquid storage container 20 in the placing cavity 10 in reverse), improving the convenience of installing the liquid storage container 20, and improving the user experience.
[0081] Further, the first fool-proof structure can be arranged in the placing cavity 10. Such an arrangement can make the first fool-proof structure not exposed, which is conducive to reducing the size of the dispensing device 100 and saving space. Of course, the first fool-proof structure arranged in the placing cavity 10 is only a preferred embodiment, and the first fool-proof structure can also not be arranged in the placing cavity 10.
[0082] Further, the first fool-proof structure can include a first fool-proof surface, and the second fool-proof structure can be provided with a second fool-proof surface. After the liquid storage container 20 is installed in the placing cavity 10, the second fool-proof surface can be arranged opposite to the first fool-proof surface. Such an arrangement does not need to reduce the size of the liquid storage container 20, which is conducive to ensuring the liquid storage capacity of the liquid storage container 20, allowing the liquid storage container 20 to store more washing liquid, avoiding the user from frequently adding washing liquid to the liquid storage container 20, and also avoiding the user from frequently replacing the liquid storage container 20, thereby improving the user experience.
[0083] Further, the first fool-proof structure can further include a third fool-proof surface, and the second fool-proof structure can be provided with a fourth fool-proof surface. After the liquid storage container 20 is installed in the placing cavity 10, the fourth fool-proof surface can be arranged opposite to the third fool-proof surface. Such an arrangement is more conducive to ensuring the liquid storage capacity of the liquid storage container 20, allowing the liquid storage container 20 to store more washing liquid, thereby further improving the user experience.
[0084] Further, the first fool-proof surface can be arranged parallel to the second fool-proof surface, and / or the third fool-proof surface can be arranged parallel to the fourth fool-proof surface, and / or the first fool-proof surface can be arranged in abutment with the second fool-proof surface, and / or the third fool-proof surface can be arranged in abutment with the fourth fool-proof surface. Such an arrangement, after the liquid storage container 20 is installed in the placing cavity 10, can avoid a gap between the second fool-proof surface and the first fool-proof surface, and also avoid a gap between the fourth fool-proof structure and the third fool-proof structure, thereby making full use of the accommodation space of the placing cavity 10, improving the space utilization rate of the liquid storage container 20, and also avoiding the liquid storage container 20 from being stuck in the placing cavity 10, thereby allowing the liquid storage container 20 to be smoothly taken out and placed.
[0085] According to the dishwasher of the embodiment of the present application, the dishwasher comprises the dispensing device 100 of the above-mentioned embodiments, the dispensing device 100 is arranged on the dishwasher, by arranging the flow guide part 60 and / or the flow guide groove 70, the flow of the fluid from the open end of the placement cavity 10 into the placement cavity 10 can be reduced or avoided, the amount of the fluid remaining in the placement cavity 10 can be effectively reduced, thereby facilitating the cleaning and drying of the placement cavity 10, and further improving the quality of the dishwasher.
[0086] In some embodiments of the present application, the dispensing device 100 is arranged on the door body 30 of the dishwasher. Such arrangement is beneficial to reduce the number of components, facilitate the weight reduction of the dishwasher, and facilitate the lightweight of the dishwasher.
[0087] In some embodiments of the present application, the dishwasher can comprise an inner container, the inner container is formed with a washing cavity, the door body 30 is used to open or close the washing cavity, when the dishwasher is working, the door body 30 closes the washing cavity, when it is needed to place dishes, bowls and the like into the washing cavity, the door body 30 opens the washing cavity.
[0088] In some embodiments of the present application, the dishwasher comprises a basket, the basket is arranged in the washing cavity; and / or, the dishwasher comprises a spray arm, the spray arm is used to spray water flow and rotate under the action of the water flow. It can also be understood that the dishwasher comprises the basket and / or the spray arm, when the dishwasher is used to clean dishes, bowls and the like, the dishes, bowls and the like can be placed in the basket. The spray arm is used to spray water flow to clean the dishes, bowls and the like, and the spray arm rotates under the action of the water flow, so that the spray arm can spray water flow in multiple directions, thereby making the dishes, bowls and the like cleaner.
[0089] In the description of the present application, the description of the terms “one embodiment”, “some embodiments”, “exemplary embodiment”, “example”, “specific example”, or “some examples” means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present application, the exemplary description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0090] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirit of the present application, the scope of the present application is defined by the claims and their equivalents.
Claims
1. A dispensing device, characterized in that The application relates to a device for throwing objects into a liquid, which comprises: a seat body provided with an open placing cavity, the seat body being provided with a flow guide part arranged around the open end of the placing cavity, the flow guide part being used for guiding the flow of fluid on the seat body to block the fluid from flowing into the placing cavity from the open end; a liquid storage container arranged in the placing cavity; the flow guide part comprises a first flow guide part, a second flow guide part and a third flow guide part, the two ends of the second flow guide part are connected with the first flow guide part and the third flow guide part respectively, the second flow guide part is located at the first end of the open end in the first direction of the seat body, the first flow guide part and the third flow guide part are respectively located at the two sides of the open end in the second direction of the seat body, wherein the first direction is perpendicular to the second direction.
2. The dispensing device of claim 1, wherein, the seat body is provided with a flow guide groove, the flow guide groove is located on the outer side of the flow guide part, and the outer side is the side of the flow guide part away from the placing cavity.
3. The dispensing device of claim 1, wherein, the first direction is the height direction of the placing cavity, and the second direction is the width direction of the placing cavity.
4. The dispensing device of claim 1, wherein, the second flow guide part extends in the second direction of the seat body, and the first flow guide part and the third flow guide part both extend in the first direction.
5. The dispensing device of claim 1, wherein, a first flow guide plate is arranged at the connection between the first flow guide part and the second flow guide part, the first flow guide plate is arranged to be inclined from the second flow guide part towards the first flow guide part, so that the fluid flows to the first flow guide part on the outer side of the first flow guide plate.
6. The dispensing device of claim 1, wherein, a second flow guide plate is arranged at the connection between the second flow guide part and the third flow guide part, the second flow guide plate is arranged to be inclined from the second flow guide part towards the third flow guide part, so that the fluid flows to the third flow guide part on the outer side of the second flow guide plate.
7. The dispensing device of claim 2, wherein, the flow guide part is configured as the inner side wall of the flow guide groove.
8. The dispensing device of claim 1, wherein, the flow guide groove comprises a first flow guide groove, a second flow guide groove and a third flow guide groove, the two ends of the second flow guide groove are communicated with the first flow guide groove and the third flow guide groove respectively, the first flow guide groove corresponds to the first flow guide part, the second flow guide groove corresponds to the second flow guide part, and the third flow guide groove corresponds to the third flow guide part, and the fluid in the second flow guide groove is adapted to flow into the first flow guide groove and / or the third flow guide groove.
9. The dispensing device of claim 8, wherein, the end wall of the first flow guide groove away from one end of the second flow guide groove and / or the end wall of the third flow guide groove away from one end of the second flow guide groove are configured as flow guide inclined walls, and the flow guide inclined walls are adapted to guide the fluid out of the seat body.
10. The dispensing device of claim 1, wherein, the flow guide groove comprises a mounting groove corresponding to the second flow guide part, and the mounting groove is provided with a sealing strip. the throwing device further comprises a cover body connected with the seat body, which is used for opening or covering the open end of the placing cavity, and the cover body is abutted with the sealing strip when the cover body covers the placing cavity.
11. The dispensing device of claim 10, wherein, the flow guide groove further comprises a first flow guide groove and a third flow guide groove, the first flow guide groove corresponds to the first flow guide part, and the third flow guide groove corresponds to the third flow guide part.
12. The dispensing device of claim 1, wherein, In the first direction of the seat body, an inner side wall of the placement cavity away from the first end of the open end is provided with a flow guide notch, the flow guide notch is in communication with the placement cavity and is adapted to guide the fluid in the placement cavity to the outside of the placement cavity.
13. The dispensing device of claim 12, wherein, A bottom wall of the placement cavity is connected with an inner side wall of the placement cavity away from the first end through a flow guide surface, so as to guide the fluid into the flow guide notch.
14. The dispensing device of claim 1, wherein, A support part is arranged in the placement cavity, the support part is used for supporting a liquid storage container in the placement cavity, so that a gap is formed between the liquid storage container and an inner surface of the placement cavity.
15. The dispensing device of claim 1, wherein, The dispensing device further comprises: a pump body mounted on the liquid storage container and used for pumping out the detergent; a driving component used for driving the pump body to pump out the detergent.
16. A dishwasher, characterized in that The dispensing device comprises the dispensing device according to any one of claims 1-15.
17. The warewash machine of claim 16, wherein, The dispensing device is mounted on a door body of the dishwasher.
18. The warewash machine of claim 17, further comprising, The dishwasher comprises an inner container, the inner container is formed with a washing cavity, and the door body is used for opening or closing the washing cavity.
19. The warewash machine of claim 18, wherein, The dishwasher comprises a bowl basket arranged in the washing cavity. And / or, the dishwasher comprises a spray arm used for spraying water flow and rotating under the action of the water flow.
Citation Information
Patent Citations
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