Drying water tank
By setting water leakage holes on the bottom of the drying air path of the drying sink and combining with the heating parts to seal the water, the problem of difficult water in the drying component is solved, and the drying component is dry and tidy, preventing bacteria from growing, and improving the hygiene of the kitchen environment.
Patent Information
- Application Number
- CN202510910337.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-02
- Publication Date
- 2025-08-12
AI Technical Summary
The water inlet of the drying component is not easy to be discharged, which affects normal use and breeds bacteria to contaminate tableware and kitchen utensils.
A water leakage hole is set on the bottom of the drying air path. The water leakage hole is located below the heating element. The windward side of the heating element is sealed with the drying air path to prevent the drying air flow from being discharged through the leakage hole, and combined with the air guide surface and partition design to achieve the sealing effect.
Effectively discharge water into the drying air path, avoid moisture from drying components, reduce heat and air volume loss, keep the drying sink dry and tidy, prevent bacteria from growing, and create a healthy kitchen environment.
Smart Images

Figure CN120458474A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of kitchen equipment, in particular to a drying sink. Background Art
[0002] Sinks and bowl baskets are essential kitchen items. The sink is used to wash food, dishes, and kitchenware, while the bowl basket is used to store them. To drain the dishes and utensils in the basket, you can place the bowl basket in the sink so that any water dripping from the dishes or utensils falls into the sink, facilitating drainage.
[0003] Because sinks are in a humid environment, naturally draining dishes is inefficient. Furthermore, the humid environment of sinks keeps the dishes in the sink in a constant state of humidity, making it prone to bacterial growth. To address this, drying sinks have emerged in the industry. These sinks contain a bowl basket and an air outlet that blows air toward the basket. The outlet is connected to a drying assembly, which provides hot air, which is then blown through the outlet toward the basket in the sink, drying the dishes and kitchenware in the basket. However, when the sink is used, water easily enters the drying assembly through the outlet, affecting its proper function and making it difficult to drain. The prolonged presence of water in the drying assembly can also easily lead to bacterial growth, contaminating the dishes and kitchenware through the hot air. Summary of the Invention
[0004] The object of the present invention is to provide a drying water tank that can solve the problems of water entering the drying component being difficult to drain out, thereby affecting normal use and breeding bacteria to contaminate tableware and kitchen utensils.
[0005] To achieve this object, the present invention adopts the following technical solutions:
[0006] A drying tank, comprising:
[0007] A water tank, the water tank including an air outlet structure;
[0008] A bowl and basket assembly can be placed in the sink, and the bowl and basket assembly can be connected to the air outlet structure;
[0009] The drying component includes a drying air duct and a heating element arranged in the drying air duct. The drying air duct is connected to the air outlet structure. A water leakage hole is provided on the bottom surface of the drying air duct below the heating element. At least the bottom end of the windward side of the heating element is sealed with the drying air duct.
[0010] As an optional solution to the above-mentioned drying water tank, the bottom surface of the windward side of the heating element is provided with a first mating surface, the inner wall of the drying air duct includes a second mating surface, and the first mating surface is parallel to and abuts against the second mating surface.
[0011] As an optional solution to the above-mentioned drying water trough, the inner wall of the drying air duct also includes an air guide surface connected to the second mating surface, and the air guide surface is located upstream of the second mating surface along the flow direction of the airflow, and the height of the air guide surface gradually increases along the flow direction of the airflow.
[0012] As an optional solution of the above-mentioned drying water tank, the inner bottom surface of the drying air duct is concave to form a groove, and the water leakage hole is provided on the bottom surface of the groove.
[0013] As an optional solution for the above-mentioned drying water tank, a partition is provided in the groove, and the partition divides the groove into a leakage groove and a sealing groove. The leakage hole is provided on the bottom surface of the leakage groove, and the sealing groove is located upstream of the leakage groove along the flow direction of the air flow. The top surface of the partition abuts against the heating element.
[0014] As an optional solution of the above-mentioned drying water tank, a support member is provided in the groove, and the support member is used to support the heating element.
[0015] As an optional solution to the above-mentioned drying water tank, the inner wall of the drying air duct is provided with a lifting portion downstream of the water leakage hole, and the end of the heating element opposite to the windward side is placed on the lifting portion.
[0016] As an optional solution of the above-mentioned drying water tank, the lifting portion includes at least two lifting blocks arranged at intervals, and a water hole is formed between two adjacent lifting blocks.
[0017] As an optional solution to the above-mentioned drying water tank, the drying air duct includes:
[0018] A heating air duct, the heating air duct is arranged at the bottom of the water tank, the heating element is arranged in the heating air duct, and the water leakage hole is connected to the heating air duct;
[0019] The bowl basket drying air passage extends from bottom to top and is located on one side of the water tank. The bottom end of the bowl basket drying air passage is communicated with the heating air duct, and the top end of the bowl basket drying air passage is communicated with the air outlet structure.
[0020] As an optional solution to the above-mentioned drying water tank, a guide structure is provided at one end of the bowl basket drying air passage connected to the heating air duct, and the guide structure is used to guide water to flow toward the heating air duct.
[0021] Beneficial effects of the present invention:
[0022] In the drying water tank provided by the present invention, the drying assembly can blow air into the bowl basket assembly through the air outlet structure to dry the tableware or kitchen utensils in the bowl basket assembly; the bottom surface of the drying air duct is provided with a water leakage hole so that water entering the drying air duct through the air outlet structure can be discharged through the water leakage hole; wherein the water leakage hole is located below the heating element, and at least the bottom end of the windward side of the heating element is sealed with the drying air duct, thereby preventing the drying airflow passing through the heating element from entering below the heating element, thereby preventing the drying airflow from being discharged through the water leakage hole, thereby reducing heat and air volume losses.
[0023] The drying water trough provided by the present invention can discharge water entering the drying air duct, preventing the drying air duct from being in a wet state all the time, thereby helping to keep the drying water trough dry and tidy, and helping to create a healthy kitchen environment. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 This is a first structural schematic diagram of the drying water tank provided by the present invention;
[0025] Figure 2 This is a schematic structural diagram of the drying water tank provided by the present invention when the tank cover is not assembled;
[0026] Figure 3 This is a second structural schematic diagram of the drying water tank provided by the present invention;
[0027] Figure 4 This is a first cross-sectional view of the drying water tank provided by the present invention;
[0028] Figure 5 This is a cross-sectional view of a partial structure of a drying water tank provided by the present invention;
[0029] Figure 6 It is a partial structural diagram of the bottom air duct shell provided by the present invention;
[0030] Figure 7 is a second cross-sectional view of the drying water tank provided by the present invention;
[0031] Figure 8 is a cross-sectional view of the drying water tank provided by the present invention;
[0032] Figure 9 yes Figure 8 A partial enlarged view of point A in the middle;
[0033] Figure 10 This is a schematic structural diagram of the drying sink provided by the present invention when the bowl and basket assembly is not assembled;
[0034] Figure 11 yes Figure 10 A partial enlarged view of point B in the middle.
[0035] In the picture:
[0036] 100, sink; 110, sink body; 111, support; 120, air outlet structure; 121, air outlet member; 1211, air outlet pipe; 1212, snap-on flange; 122, seal; 123, diverter plate; 200, bowl basket assembly; 210, box cover; 220, box body; 221, vent; 230, bowl basket; 300, drying assembly; 310, air duct shell; 311, side air duct shell; 3111, air inlet duct; 3112, bowl Basket drying air duct; 3113, first connecting port; 3114, second connecting port; 312, bottom air duct shell; 3121, water leakage hole; 3122, heating air duct; 31221, air guide surface; 31222, lifting part; 31223, partition; 31224, sealing groove; 31225, water leakage groove; 3123, connecting air duct; 320, heating element; 321, heating body; 322, heat exchange channel; 330, fan; 400, control component. DETAILED DESCRIPTION
[0037] The present invention will be further described in detail below with reference to the accompanying drawings and examples. It will be understood that the specific embodiments described herein are intended only to illustrate the present invention and are not intended to limit the present invention. It should also be noted that, for ease of description, the accompanying drawings only illustrate portions relevant to the present invention, not all structures.
[0038] In the description of the present invention, unless otherwise expressly specified or limited, the terms "connected," "connected," and "fixed" should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integration; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention in specific circumstances.
[0039] In the present invention, unless otherwise expressly specified or limited, a first feature being "above" or "below" a second feature may include the first and second features being in direct contact, or may include the first and second features being in contact not directly but through another feature between them. Furthermore, a first feature being "above," "above," and "above" a second feature may include the first feature being directly above or obliquely above the second feature, or may simply mean that the first feature is higher in level than the second feature. A first feature being "below," "below," and "below" a second feature may include the first feature being directly below or obliquely below the second feature, or may simply mean that the first feature is lower in level than the second feature.
[0040] In the description of this embodiment, the terms "upper," "lower," "right," and other orientations or positional relationships are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely for ease of description and simplified operation. They do not indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on the present invention. Furthermore, the terms "first" and "second" are used solely for descriptive purposes and have no special meanings.
[0041] like Figure 1 and Figure 2 As shown, this embodiment provides a drying sink, including a sink 100 and a bowl basket assembly 200. The bowl basket assembly 200 can be placed in the sink 100, and the bowl basket assembly 200 is used to place items such as tableware and kitchen utensils to facilitate draining.
[0042] In order to facilitate users to wash dishes, kitchen utensils or food, a faucet (not shown in the figure) is provided on the sink body 110, and the faucet is connected to the indoor water channel for user convenience.
[0043] In some embodiments, the bowl basket assembly 200 can be moved within the sink 100 and removed from the sink 100, so as to adjust the position of the bowl basket assembly 200 or remove and place the bowl basket assembly 200 according to the actual needs of the user, thereby better meeting the user's usage needs.
[0044] To improve the drying efficiency of the tableware and kitchenware in the basket assembly 200, the drying sink also includes a drying assembly 300. The sink 100 includes a sink body 110 and an air outlet structure 120. The air outlet structure 120 is disposed on the sink body 110 and is in communication with the basket assembly 200. The drying assembly 300 is configured to provide a drying airflow and is in communication with the air outlet structure 120. When the drying assembly 300 is activated, the drying airflow provided by the drying assembly 300 is blown into the basket assembly 200 through the air outlet structure 120, drying the tableware and kitchenware in the basket assembly 200. This improves drying efficiency and prevents bacteria from growing on the tableware and kitchenware after they have been exposed to a humid environment for an extended period of time.
[0045] like Figure 3 and Figure 4 As shown, the drying assembly 300 includes a drying air duct, a heating element 320 disposed in the drying air duct, and a fan 330. The fan 330 is used to drive the air flow in the drying air duct, and the heating element 320 is used to heat the air flow to form hot air. The drying air duct is connected to the air outlet structure 120 so that the hot air can be blown toward the bowl basket assembly 200 through the air outlet structure 120 to dry the tableware, kitchen utensils, etc. in the bowl basket assembly 200.
[0046] Optionally, the heating element 320 may include an electric heating wire or other heating structure, as long as it can heat the airflow driven by the fan 330 to form hot air to dry tableware, kitchen utensils, etc.
[0047] When the user actually uses the faucet, the water outlet angle and water flow rate will vary according to actual needs, causing water to easily enter the drying component 300 through the air outlet structure 120, affecting the normal use of the drying component 300. Moreover, the water entering the drying component 300 cannot be discharged. The water exists in the drying component 300 for a long time, which can easily cause bacteria to grow in the drying component 300, thereby contaminating tableware, kitchen utensils, etc. through hot air.
[0048] To solve the above problems, in this embodiment, a water leakage hole 3121 is provided on the bottom surface of the drying air duct, so that water entering the drying air duct through the air outlet structure 120 can be discharged through the water leakage hole 3121, which is conducive to keeping dryness and tidiness, and is conducive to creating a healthy kitchen environment; wherein, the water leakage hole 3121 is located below the heating element 320, and at least the bottom end of the windward side of the heating element 320 is sealed with the drying air duct, thereby preventing the drying airflow passing through the heating element 320 from entering the bottom of the heating element 320, thereby preventing the drying airflow from being discharged through the water leakage hole 3121, thereby reducing heat and air volume losses.
[0049] In addition, the water leakage hole 3121 is set below the heating element 320. When the amount of water entering the drying air duct is small, the water marks remaining on the inner wall of the drying air duct are easier to dry, and part of the water flows to the heating element 320, and can be dried under the heat or residual temperature of the heating element 320, thereby reducing the actual amount of water discharged.
[0050] It should be noted that the windward side of the heating element 320 refers to the side of the heating element 320 that faces the air inlet direction of the drying air duct. By sealing the bottom surface of the windward side of the heating element 320 with the drying air duct, the airflow passing through the heating element 320 is directed inside or above the heating element 320. While fully exchanging heat with the heating element 320, the airflow is prevented from being discharged through the water leakage hole 3121, thereby reducing airflow and heat loss.
[0051] In some embodiments, such as Figure 5As shown, the heating element 320 includes a heating body 321 and a heat exchange channel 322 disposed within the heating body 321. The heating body 321 divides the drying air path into a front section and a rear section, which are connected via the heat exchange channel 322. This arrangement, combined with the bottom surface of the windward side of the heating element 320 sealingly cooperating with the drying air path, ensures that all gas entering the front section enters the rear section through the heat exchange channel 322. This not only improves the heating effect on the airflow, but also prevents gas in the front section from entering the bottom of the heating element 320 and passing through the water leakage hole 3121, thereby reducing air volume loss.
[0052] In order to achieve a sealed fit between the bottom surface of the windward side of the heating element 320 and the drying air duct, in some embodiments, the bottom surface of the windward side of the heating element 320 is provided with a first mating surface, and the inner wall of the drying air duct includes a second mating surface. The first mating surface and the second mating surface are parallel and abut against each other to achieve surface-to-surface fit, so as to reduce the gap between the first mating surface and the second mating surface, avoid airflow passing through, and thereby achieve a sealing function.
[0053] Optionally, the first mating surface may be a plane or a curved surface, as long as the fitting effect between the first mating surface and the second mating surface can be ensured.
[0054] It can be understood that even if there is a tiny gap between the first mating surface and the second mating surface, since the heat exchange channel 322 connects the front air path and the rear air path, the resistance of the air flow through the heat exchange channel 322 is small, while the resistance through the gap between the first mating surface and the second mating surface is large, so that the air flow will flow into the heat exchange channel 322. Therefore, the sealing requirement of the bottom surface of the windward side of the heating element 320 and the drying air path can be achieved by adopting surface-to-surface matching.
[0055] In some other embodiments, a drainage seal is provided between the first mating surface and the second mating surface to further improve the sealing effect. Optionally, the drainage seal can be a sealing strip.
[0056] To guide airflow through heat exchange channel 322, the inner wall of the drying air duct further includes an air guide surface 31221 connected to the second mating surface. Air guide surface 31221 is located upstream of the second mating surface in the direction of airflow, and its height gradually increases along the direction of airflow. Airflow in the front section of the air duct, guided by air guide surface 31221, flows upward and enters heat exchange channel 322.
[0057] In addition, by setting the wind guide surface 31221, the position height of the heating element 320 can be raised. On the one hand, it prevents the heating element 320 from contacting the water below, and on the other hand, it can provide sufficient space for drainage by moving the heating element 320 upward.
[0058] To improve drainage, in some embodiments, the inner bottom surface of the drying air duct is concave to form a groove, and a drainage hole 3121 is provided at the bottom of the groove. This groove provides sufficient buffer space for drainage, preventing excessive water inflow and insufficient drainage capacity from contacting the heating element 320. The drainage hole 3121 is located in the low-lying groove, which facilitates the flow of water entering the drying air duct toward the drainage hole 3121.
[0059] Optionally, the groove can be formed by bending the inner wall of the drying air duct, so that a groove is formed on the inner side of the drying air duct and a protruding structure is formed on the outer side of the drying air duct. The processing technology is simple, the molding is convenient, and it is conducive to reducing costs.
[0060] To enhance the sealing effect between the windward side of the heating element 320 and the drying air duct, a partition 31223 is provided within the groove. The partition 31223 divides the groove into a water leakage groove 31225 and a sealing groove 31224. The sealing groove 31224 and the water leakage groove 31225 are aligned along the flow direction of the airflow within the drying air duct. Specifically, the sealing groove 31224 is located upstream of the water leakage groove 31225 along the flow direction of the airflow. The water leakage hole 3121 is provided on the bottom surface of the water leakage groove 31225. The top surface of the partition 31223 abuts against the heating element 320 to achieve a sealing effect. The abutment between the first and second mating surfaces, and the abutment between the partition 31223 and the heating element 320, achieves a double seal, preventing the drying airflow from being discharged through the water leakage hole 3121, thereby reducing heat and flow losses.
[0061] Optionally, the top surface of the partition 31223 is parallel to the bottom surface of the heating element 320 to achieve good surface-to-surface contact, thereby improving the sealing effect.
[0062] In some other embodiments, the partition 31223 and the heating element 320 may also be in line contact, as long as the sealing groove 31224 and the leakage groove 31225 can be separated into two non-connected grooves.
[0063] In some other embodiments, the sealing between the windward side of the heating element 320 and the drying air duct can be achieved only by the first mating surface and the second mating surface, or can be achieved only by the abutment between the partition 31223 and the heating element 320.
[0064] Since the heating element 320 is disposed above the groove, in order to ensure the stability of the heating element 320 , in some embodiments, a support member is disposed in the groove, and the support member is used to support the heating element 320 to improve the position stability of the heating element 320 .
[0065] Optionally, the support member can be arranged in at least one of the sealing groove 31224 and the leakage groove 31225, both of which can improve the supporting effect of the heating element 320.
[0066] like Figure 6 As shown, a lifting portion 31222 is provided on the inner wall of the drying air duct downstream of the water leakage hole 3121. The lifting portion 31222 is used to support the end of the heating element 320 opposite to the windward side to raise the height of the heating element 320 to prevent water entering the drying air duct from contacting the heating element 320 in the process of flowing toward the water leakage hole 3121.
[0067] In order to ensure that water can flow out through the leakage hole 3121, the lifting part 31222 includes at least two lifting blocks, and the two adjacent lifting blocks are arranged at intervals to form a water hole. The water entering the drying air path can flow into the groove through the water hole and be discharged through the leakage hole 3121.
[0068] In some embodiments, such as Figure 5 and Figure 7 As shown, the drying air path includes a heating duct 3122 and a basket drying duct 3112. A heater 320 is disposed within the heating duct 3122, and a water leakage hole 3121 is connected to the heating duct 3122. The basket drying duct 3112 is connected to the air outlet structure 120, and the heating duct 3122 is located upstream of the basket drying duct 3112. The heating duct 3122 is located at the bottom of the sink 100, utilizing the residual heat from the heating duct 3122 to dry the sink 100. The basket drying duct 3112 extends from bottom to top and is located on one side of the sink 100. This allows the hot air heated by the heating duct 3122 to enter the basket drying duct 3112 and flow upward, reducing heat and air loss.
[0069] It can be understood that if water enters the drying air duct, the flow direction of the water is exactly opposite to that of the hot air. The water that enters the bowl basket drying air duct 3112 through the air outlet structure 120 will flow from top to bottom under the action of its own gravity, thereby entering the heating air duct 3122 at the bottom of the water tank 100 along the bowl basket drying air duct 3112, and flowing out through the leakage hole 3121, which is conducive to drainage.
[0070] In order to allow the water in the dish basket drying duct 3112 to enter the heating duct 3122 , in some embodiments, a guide structure is provided at one end of the dish basket drying duct 3112 connected to the heating duct 3122 , and the guide structure is used to guide the water to flow into the heating duct 3122 .
[0071] In some embodiments, the guide structure is a guide surface that is inclined from top to bottom toward the heating duct 3122 to guide water toward the heating duct 3122. Optionally, the guide surface can be a curved surface to reduce corners and avoid water residue at the corners; the guide surface can also be an inclined surface.
[0072] In some embodiments, the guide structure may be a guide rib, which extends toward the heating air duct 3122 to guide the flow direction of the water flow, thereby directing the water to the heating air duct 3122 .
[0073] Combine Figure 4 、 Figure 5 and Figure 7 As shown, the drying assembly 300 includes an air duct housing 310, which includes a side duct housing 311 and a bottom duct housing 312. The side duct housing 311 is provided with an air inlet duct 3111 and a basket drying duct 3112. The bottom duct housing 312 is provided with a connecting duct 3123 and a heating duct 3122. The air inlet duct 3111, the connecting duct 3123, the heating duct 3122, and the basket drying duct 3112 are sequentially connected. When the basket assembly 200 is dried, air flows from the air inlet duct 3111 and the connecting duct 3123 into the heating duct 3122. The air is heated by the heater 320 in the heating duct 3122 to form hot air. The hot air then enters the basket drying duct 3112 and is then blown toward the basket assembly 200 by the air outlet structure 120.
[0074] Optionally, the air inlet duct 3111 extends from top to bottom, that is, the air flow in the air inlet duct 3111 flows from top to bottom, and the bottom end of the air inlet duct 3111 is connected to the connecting air duct 3123 through the first connecting port 3113; the heating air duct 3122 is connected to the drying basket assembly 200 through the second connecting port 3114.
[0075] In some embodiments, the air path within the bottom air duct shell 312 is curved and extended, so that dust and other impurities that enter the air inlet duct 3111 with the air flow enter the bottom air duct shell 312 under the action of gravity and air flow, and are then deposited within the bottom air duct shell 312 due to the circuitous flow of the air flow, thereby reducing the amount of dust and other impurities that enter the bowl basket drying duct 3112 and avoiding secondary contamination of the tableware or kitchen utensils within the bowl basket assembly 200.
[0076] Optionally, at least one of the connecting air duct 3123 and the heating air duct 3122 is curved, and / or the air flow direction at the connection position of the connecting air duct 3123 and the heating air duct 3122 is set at an angle, so that the air path located in the bottom air duct shell 312 is curved.
[0077] In some embodiments, the connecting air duct 3123 is located above the heating air duct 3122, and at least part of the first connecting port 3113 is directly opposite the heating air duct 3122, so that part of the airflow passing through the first connecting port 3113 will hit the outer wall of the heating air duct 3122, and change the flow direction, flowing upward into the connecting air duct 3123, which is conducive to the deposition of impurities such as dust.
[0078] In addition, the air flow in the connecting air duct 3123 needs to change its flow direction at the end and flow downward, thereby entering the heating air duct 3122. The air flow direction changes again, which is conducive to the deposition of impurities such as dust.
[0079] In some embodiments, the drying water tank further includes a control component 400 , which is disposed on the top of the water tank 100 and electrically connected to the drying component 300 to control the start and stop of the drying component 300 and operating parameters.
[0080] It should be noted that the control component 400 is a prior art in the art. This embodiment can adopt a control component 400 with any structure in the prior art, which will not be described in detail here.
[0081] Optionally, the air inlet of the drying air duct is set on the control component 400, so that the airflow entering the drying air duct is clean air outside the cabinet, avoiding the inhalation of moist air in the cabinet and causing secondary contamination to tableware or kitchen utensils.
[0082] To improve the drying effect, in some embodiments, the bowl basket assembly 200 includes a bowl basket box and a bowl basket 230 arranged in the bowl basket box. The bowl basket box includes a box body 220 and a box cover 210. The bowl basket 230 is used to accommodate items such as tableware and kitchen utensils. The bowl basket box is provided with a vent 221, which is connected to the air outlet structure 120 to allow drying airflow to enter the bowl basket box, which is conducive to gathering the drying airflow, thereby fully utilizing the heat of the drying airflow to dry items such as tableware and kitchen utensils.
[0083] In order to facilitate the drainage of water on tableware, kitchen utensils and other items, the bottom surface of the box body 220 is provided with a drain hole, and the water dripping from the tableware, kitchen utensils and other items can be drained through the drain hole to ensure that the bowl basket box is dry.
[0084] In addition, by providing a drain hole, the inside and outside of the bowl basket box can be kept connected, facilitating gas circulation to improve drying efficiency.
[0085] Optionally, the bottom surface of the box body 220 is spaced apart from the inner bottom surface of the sink body 110 so that the box body 220 is suspended in the sink body 110. On the one hand, it is convenient for the water in the box body 220 to drip from the drain hole and flow along the inner wall of the sink body 110, and then be discharged from the drain port on the sink body 110. On the other hand, it is convenient for the gas in the bowl basket box to flow out through the drain hole, which is beneficial to the flow of air inside and outside the bowl basket box, thereby improving the drying efficiency and avoiding the growth of bacteria in the bowl basket box.
[0086] To secure the basket box to the sink body 110, in some embodiments, support portions 111 are provided on opposing inner walls of the sink 100. The housing 220 includes horizontally extending annular support flanges that extend circumferentially around the housing 220. The support flanges on opposing sides of the basket assembly 200 can overlap the support portions 111 to support the basket assembly 200, thereby achieving a suspended securement of the basket box. The coordination of the support flanges and support portions 111 allows the basket assembly 200 to be placed within the sink body 110 when in use and removed when no longer in use, making it convenient to operate.
[0087] To facilitate adjustment of the position of the bowl basket assembly 200 , the support portion 111 is long and extends horizontally. The support flange can overlap the support portion 111 of the sink body 110 and slide along the support portion 111 to facilitate position adjustment.
[0088] To reduce the amount of water that enters the drying assembly 300, in some embodiments, the air outlet structure 120 is configured to discharge air at an angle downward. This, on the one hand, prevents water from entering. Even if some water enters the air outlet structure 120, it can flow downward under the action of gravity, preventing water from entering the drying assembly 300. On the other hand, the drying airflow flows toward the bottom of the bowl basket assembly 200, returns after contacting the bottom surface of the bowl basket assembly 200, and flows upward under the action of its own characteristics, so as to fully contact the tableware, kitchen utensils and other items in the bowl basket assembly 200, thereby improving the uniformity of drying and enhancing the user experience.
[0089] In order to achieve downward wind discharge, thereby preventing water from entering and improving the drying effect, in some embodiments, such as Figure 8 and Figure 9 As shown, the air outlet structure 120 includes a guide channel extending obliquely downward. On the one hand, the guide channel can guide the drying air flow toward the bottom of the bowl basket box, and on the other hand, it can intercept water entering it, so that the water flows out of the air outlet structure 120 under the action of gravity, so as to prevent water from entering the drying component 300.
[0090] Optionally, the internal flow channels of the air outlet structure 120 may all extend downwardly, or as shown in FIG. Figure 9 As shown, the air outlet structure 120 also includes a horizontal flow channel connected to the guide channel. The horizontal flow channel is located at one end of the guide channel close to the inside of the water tank body 110, and can also play a role in waterproofing and guiding the drying airflow.
[0091] In some other embodiments, the air outlet structure 120 includes an air outlet and a deflector disposed in front of the air outlet. The deflector extends obliquely from top to bottom toward the front of the air outlet. The deflector can shield the air outlet from the front of the air outlet to prevent water from entering the air outlet, and can also guide the airflow downward.
[0092] Optionally, the top of the air guide plate can be rotatably connected to the water tank body 110. When the air outlet structure 120 is not outputting air, the air guide plate blocks the air outlet to prevent water from entering the drying assembly 300 through the air outlet. When the air outlet is outputting air, the airflow acts on the air guide plate to push the air guide plate to rotate, thereby opening the air outlet and causing the airflow to be discharged obliquely downward under the guidance of the air guide plate.
[0093] In some other embodiments, the air outlet structure 120 includes a guide channel extending obliquely downward and a rotatably arranged guide plate to improve the effect of preventing water from entering the drying component 300 and improve the guiding effect of the airflow to achieve oblique downward air outlet.
[0094] To improve the uniformity of air flow, in some embodiments, Figure 10 and Figure 11 As shown, the air outlet structure 120 includes a guide channel and a diverter plate 123 disposed in the guide channel. The diverter plate 123 can divert the airflow in the guide channel into at least two paths, which is conducive to uniform air outlet.
[0095] Optionally, the number of the diverter plates 123 can be set to at least two, and at least two diverter plates 123 are arranged at intervals to improve the effect of uniform air outlet.
[0096] In order to facilitate maintenance of the air outlet structure 120 , the air outlet structure 120 and the water tank body 110 are detachably connected, thereby making it easy to disassemble the air outlet structure 120 for replacement or cleaning.
[0097] In some embodiments, the air outlet structure 120 includes an air outlet member 121, which is disposed through the side wall of the sink body 110 and is detachably connected to the sink body 110. The air outlet member 121 is disposed through the sink body 110 to facilitate communication between the air outlet member 121 and the drying assembly 300 and the bowl basket assembly 200 located within the sink body 110, thereby simplifying the structure.
[0098] Optionally, the air outlet member 121 is snap-connected with the water tank body 110 to facilitate assembly and disassembly of the air outlet member 121 and reduce assembly difficulty.
[0099] In some embodiments, such as Figure 9 and Figure 10As shown, the air outlet member 121 is connected to the support portion 111. The support portion 111 not only supports the bowl basket assembly 200, simplifying the fit between the bowl basket assembly 200 and the sink body 110, but also provides sufficient installation space for the air outlet member 121, ensuring that the air outlet member 121 has sufficient air outlet length, ensuring the length and inclination angle of the guide channel, and thus ensuring the waterproof effect of the air outlet structure 120 and the downward air outlet effect.
[0100] In some embodiments, combined Figure 9 As shown, the side wall of the water tank body 110 is bent toward the inside of the water tank body 110 to form a protruding support portion 111 on the inside of the water tank body 110, and a receiving groove is formed on the outside of the water tank body 110, and at least part of the air outlet member 121 is located in the receiving groove. The support portion 111 is formed by bending the side wall of the water tank body 110, which is convenient for processing and does not require additional connecting structures, resulting in a simple structure. The receiving groove is formed at the same time as the support portion 111. The receiving groove can provide sufficient installation space for the air outlet member 121, preventing the air outlet member 121 from protruding from the water tank body 110 as a whole and affecting the assembly of the entire machine, and is conducive to ensuring that the air outlet member 121 has a certain air outlet length, so as to improve the guiding effect of the air flow to be inclined downward.
[0101] To prevent water from remaining on the support portion 111 , in some embodiments, the top surface of the support portion 111 is tilted so that water dripping onto the support portion 111 can flow under gravity and avoid accumulating on the support portion 111 for a long time.
[0102] In some embodiments, the bottom surface of the support portion 111 is tilted so that water sliding down the support portion 111 to the bottom surface of the support portion 111 can flow toward the lower end under the action of gravity, and then gather and drip.
[0103] In some other embodiments, the top surface and the bottom surface of the support portion 111 may be inclined to improve the water diversion effect.
[0104] like Figure 11 As shown, in some embodiments, the air outlet member 121 includes an air outlet pipe 1211 and a snap-fit flange 1212 connected to the air outlet pipe 1211, a guide channel is formed in the air outlet pipe 1211, and the air outlet pipe 1211 is passed through the side wall of the sink body 110; the snap-fit flange 1212 is connected to one end of the air outlet pipe 1211 extending into the sink body 110, and the snap-fit flange 1212 abuts against the inner wall of the sink body 110 to prevent the air outlet pipe 1211 from being detached from the sink body 110.
[0105] Optionally, the air outlet pipe 1211 is interference-fitted with the water tank body 110 to achieve fixation, and no additional fixing structure is required, which makes installation easy.
[0106] In some embodiments, a seal 122 is provided between the snap-fit flange 1212 and the inner wall of the water tank body 110 to seal the gap between the snap-fit flange 1212 and the water tank body 110 to prevent air leakage through the gap and also to prevent water from flowing out through the gap.
[0107] Optionally, the sealing member 122 may be a sealing strip, which has a simple structure and good sealing effect.
[0108] Obviously, the above embodiments of the present invention are merely examples for the purpose of clearly illustrating the present invention and are not intended to limit the embodiments of the present invention. A person skilled in the art would be able to make various obvious changes, readjustments, and substitutions without departing from the scope of protection of the present invention. It is not necessary and impossible to enumerate all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the claims of the present invention.
Claims
1. A drying water tank, characterized in that: include: A water tank (100), wherein the water tank (100) includes an air outlet structure (120); A bowl-basket assembly (200) can be placed in the water tank (100), and the bowl-basket assembly (200) can be connected to the air outlet structure (120); The drying assembly (300) comprises a drying air duct and a heating element (320) arranged in the drying air duct, wherein the drying air duct is connected to the air outlet structure (120), a water leakage hole (3121) is provided on the bottom surface of the drying air duct below the heating element (320), and at least the bottom end of the windward side of the heating element (320) is sealed with the drying air duct.
2. The drying water tank according to claim 1, characterized in that: The bottom surface of the windward side of the heating element (320) is provided with a first mating surface, the inner wall of the drying air duct includes a second mating surface, and the first mating surface is parallel to and abuts against the second mating surface.
3. The drying water tank according to claim 2, characterized in that: The inner wall of the drying air duct also includes an air guide surface (31221) connected to the second mating surface, and the air guide surface (31221) is located upstream of the second mating surface along the flow direction of the airflow, and the height of the air guide surface (31221) gradually increases along the flow direction of the airflow.
4. The drying water tank according to claim 1, characterized in that: The inner bottom surface of the drying air duct is concave to form a groove, and the water leakage hole (3121) is arranged on the bottom surface of the groove.
5. The drying water tank according to claim 4, characterized in that: A partition (31223) is provided in the groove, and the partition (31223) divides the groove into a water leakage groove (31225) and a sealing groove (31224). The water leakage hole (3121) is provided on the bottom surface of the water leakage groove (31225), and the sealing groove (31224) is located upstream of the water leakage groove (31225) along the flow direction of the air flow. The top surface of the partition (31223) abuts against the heating element (320).
6. The drying water tank according to claim 4, characterized in that: A support member is provided in the groove, and the support member is used to support the heating member (320).
7. The drying water tank according to any one of claims 1 to 6, characterized in that: The inner wall of the drying air duct is provided with a lifting portion (31222) downstream of the water leakage hole (3121), and the end of the heating element (320) opposite to the windward side is placed on the lifting portion (31222).
8. The drying water tank according to claim 7, characterized in that: The lifting portion (31222) includes at least two lifting blocks arranged at intervals, and a water hole is formed between two adjacent lifting blocks.
9. The drying water tank according to any one of claims 1 to 6, characterized in that: The drying air duct comprises: A heating air duct (3122), wherein the heating air duct (3122) is arranged at the bottom of the water tank (100), the heating element (320) is arranged in the heating air duct (3122), and the water leakage hole (3121) is connected to the heating air duct (3122); The bowl basket drying air duct (3112) extends from bottom to top and is located on one side of the water tank (100), the bottom end of the bowl basket drying air duct (3112) is connected to the heating air duct (3122), and the top end of the bowl basket drying air duct (3112) is connected to the air outlet structure (120).
10. The drying water tank according to claim 9, characterized in that: One end of the bowl basket drying duct (3112) connected to the heating duct (3122) is provided with a guide structure, and the guide structure is used to guide water to flow toward the heating duct (3122).
Citation Information
Patent Citations
Dishwasher drying device and dishwasher with the same
CN108814515A
Dish washing machine drying system provided with hot air assembly
CN214906533U
Electric water tank
CN220666381U
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