Unfreezing equipment and intelligent water tank
By combining the separate defrosting device and water tank, the problem of inconvenience in using ultrasonic defrosting equipment is solved, realizing convenient defrosting and storage functions, and improving the flexibility of the equipment and food safety.
Patent Information
- Application Number
- CN202422612648.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-09-14
- Filing Date
- 2024-10-28
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-10-28
AI Technical Summary
Existing ultrasonic thawing equipment is inconvenient to use. The thawing container and the transducer are fixedly assembled, which makes it inconvenient to use and store. In addition, the moisture in the food melts and breeds bacteria, making it easy to forget to take out the food, causing it to spoil.
The defrosting device is designed as a separate defrosting container and an ultrasonic generator. The defrosting container can be used with a water tank, and the ultrasonic generator is fixed to the outside of the bottom of the water tank. The defrosting container can be detached and placed inside the water tank. Combined with the design of a drain and a water-sealing cap, it is easy to move and store the container, and can also be used as a standalone storage container.
It enables convenient movement and storage of thawing containers, improving the flexibility and practicality of the equipment, preventing food moisture from breeding bacteria, and ensuring food safety and uniform thawing.
Smart Images

Figure CN223452745U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to food processing technical field, concretely relates to a thawing equipment and intelligent sink. BACKGROUND
[0002] The existing common thawing food material mode includes room temperature thawing, microwave oven thawing, running water thawing. Among them, when thawing using the thawing function of microwave oven, microwave oven thawing speed is very fast, but need to pay attention to control time and power, to prevent food overheat or local thawing uneven. Room temperature thawing needs to put food material into sink or other container and stand, and this mode needs long time, and because food is exposed in room temperature for a long time, is easy to cause bacteria breeding. Running water thawing is to put food into sink and thaw through running water, but this mode is not conducive to saving water resources.
[0003] Therefore, the prior art improves thawing mode, uses ultrasonic technology to thaw food material by using the heat effect and cavitation effect principle of ultrasonic wave. Compared with the existing conventional thawing mode, ultrasonic thawing has obvious advantages. First, it can significantly shorten thawing time and improve thawing efficiency. Secondly, due to the uniformity of ultrasonic wave propagation in medium, the temperature distribution of thawed food is also uniform, avoiding the uneven thawing problem that may occur in traditional thawing method. In addition, ultrasonic thawing also helps to reduce thawing loss and maintain the original nutrients and taste of food.
[0004] However, the existing ultrasonic thawing equipment is more suitable for commercial use, and the thawing container and the transducer device are fixedly assembled, which causes inconvenience in use and storage. At the same time, the water produced by the melting of food material during thawing is easy to remain on the thawing container, breeding bacteria. Moreover, as the equipment is usually placed in a specific position, it is easy to forget to take out the food material, resulting in the deterioration of the food material due to long time without processing. In summary, the existing ultrasonic thawing equipment is not convenient for household use. UTILITY MODEL CONTENTS
[0005] The first invention purpose of the utility model is to solve the problem of inconvenient use of the existing ultrasonic thawing equipment, and provide a thawing equipment whose thawing container can cooperate with sink to realize thawing function, and can be used as a storage container alone.
[0006] In order to realize the above invention purpose, the utility model adopts the following technical scheme:
[0007] The thawing equipment comprises a control module, a thawing container and an ultrasonic wave generating device which are arranged in a split mode, the thawing container and the ultrasonic wave generating device are designed in a split mode, the thawing container is designed with an open top, a positioning structure for cooperating with the sink is arranged on the outer wall of the thawing container, and the ultrasonic wave generating device is arranged on the outer side of the bottom of the sink.
[0008] The thawing equipment comprises a thawing container and an ultrasonic wave generating device which are arranged in a split mode, the ultrasonic wave generating device is fixedly assembled on the outside of the bottom of the sink, the control module is arranged on the ultrasonic wave generating device or the sink body, the thawing container is detachably arranged in the sink and corresponds to the ultrasonic wave generating device, and the thawing function is realized by cooperation of the sink and the thawing equipment. In use, food materials and a certain amount of water are placed in the thawing container, and the ultrasonic wave generating device is started. After thawing, the food materials are taken out, and the water is poured out from the container. Compared with the prior art, the thawing container and the ultrasonic wave generating device are arranged in a split mode, which is convenient for moving the thawing container to load the food materials and convenient for storage of the thawing container. The thawing container and the sink can be used independently, the thawing container can be used as a storage appliance and a cleaning basin, and the sink has unchanged daily use function when used independently. The bottom of the thawing container is provided with a positioning structure, the thawing container can be quickly placed in position in the sink, and the ultrasonic wave generating device is assembled on the outside of the bottom of the sink and does not need to be moved. It should be noted that, in the utility model, the thawing container and the ultrasonic wave generating device are arranged in a split mode, the control module can be assembled with the ultrasonic wave generating device or arranged separately.
[0009] Further, the thawing container is provided with a draining port, and a water sealing cover is arranged at the draining port. Before use, the water sealing cover of the draining port is closed tightly, and then water is injected into the thawing container. After thawing, the water sealing cover is opened, the water in the container flows to the sink through the draining port, and finally is discharged through the water outlet of the sink.
[0010] Further, the ultrasonic wave generating device comprises an ultrasonic wave transducer, a protective shell and a power module, the control module and the power module are electrically connected to control the power module to supply power to the ultrasonic wave transducer, the generation and stop of the ultrasonic wave can be accurately controlled through the control module, different thawing requirements are met, the flexibility and practicability of the equipment are improved, the protective shell is arranged on the outside of the ultrasonic wave transducer and the power module, not only plays a role of isolation and protection, but also integrates the ultrasonic wave transducer and the power module together to form a whole, so that the equipment looks more regular.
[0011] Further, the open port is arranged at the upper end of the thawing container, the thawing container further comprises a draining plate, the upper side of the thawing container is provided with a connecting step, and the draining plate is detachably assembled at the connecting step. The draining plate of the scheme can be used for draining food materials, kitchen knives and tableware, and the thawed food materials can be placed on the draining plate so that water adhered to the surface of the food materials slides down to the thawing container.
[0012] Further, the thawing container is detachably provided with a partition for separating the thawing container into at least two areas for placing different objects, so that the thawing container can be used as a storage container for draining and storing knives, forks and chopsticks.
[0013] Further, the thawing port is located near one side of the thawing container, and the partition is located at the other side of the thawing container away from the thawing port, so as to separate the area where the thawing port is located from other areas of the thawing container by the partition, and a water passing port is formed in the partition, so that water in other areas can flow to the thawing port through the water passing port.
[0014] Further, the side wall of the thawing container is longitudinally provided with a limiting portion for assembling and fixing the partition with the thawing container through the limiting portion.
[0015] Further, the specific structure of the partition can be provided as including a first partition plate and a second partition plate longitudinally arranged, one end of the second partition plate being connected to the middle part of the first partition plate, so as to divide the thawing container into independent areas, including an area where the thawing port is located, and two other areas.
[0016] Another application purpose of the utility model is to provide a kind of intelligent sink, it includes sink body and thawing equipment of above-mentioned scheme, the inner chamber bottom of the sink body is provided with thawing area corresponding to the thawing container, and the thawing area is provided with profiled structure, and profiled structure and the shape of the positioning structure are adapted, and the ultrasonic wave generating device is located at the bottom outside of sink body, and position corresponds to the thawing area.
[0017] Compared with prior art, the intelligent sink of the utility model since applied thawing equipment of above-mentioned scheme, therefore, has the advantages of above-mentioned scheme, and the cooperation of positioning structure and profiled structure makes thawing container can be quickly assembled in corresponding position in sink.The sink body and thawing container can be used in cooperation, and also can be used alone, greatly improve its practicality and user experience.
[0018] Further, the bottom of the thawing container is provided with a draining port, and a water sealing cover is arranged at the draining port.The present scheme can realize complete drainage and improve use convenience.Before use, first close the water sealing cover of draining port, and add water into thawing container;After thawing, open the water sealing cover, so that water in thawing container flows into sink through draining port, to be discharged through the drain of sink.
[0019] Further, the profiled structure includes a connecting convex portion, and the positioning structure includes a concave position matched with the connecting convex portion, and the two are matched with each other, so that thawing container can be quickly assembled in place.
[0020] Further, the ultrasonic wave generating device comprises an ultrasonic transducer, a protective shell and a power module, the control module and the power module are electrically connected to control the power module to supply power to the ultrasonic transducer; the connecting convex part is concave on the bottom wall of the sink, and a mounting groove is formed on the outer side of the sink at the connecting convex part, and the ultrasonic transducer is arranged in the mounting groove.
[0021] Further, the pressing type structure comprises a positioning groove arranged along the width direction of the sink body, and the inner side of the positioning groove is a thawing area, and the positioning structure comprises a first convex rib extending downward from the bottom of the thawing container, and the first convex rib matches the profile of the positioning groove to realize the guiding and positioning function.
[0022] Further, the lower water outlet of the sink body is arranged in the thawing area, so that the water in the thawing container is discharged through the lower water outlet after the water sealing cover is opened.
[0023] Further, the upper outer side of the thawing container is provided with a connecting convex edge, and the side wall of the sink is correspondingly provided with a mounting step, and the two are stably connected through the close abutment of the connecting convex edge and the mounting step. This scheme aims to enhance the structural stability of the thawing container during use, wherein the mounting step provides reliable support for the connecting convex edge, ensuring that when the drain plate and food are placed in the thawing container, the sink can effectively share the load of the thawing container through the mounting step, thereby improving the stability and safety of the overall structure.
[0024] Further, the ultrasonic wave generating device further comprises a heating module. This scheme introduces a heating module as part of the ultrasonic wave generating device on the basis of ultrasonic thawing, and the heating module is closely connected with the bottom wall of the sink. The significant advantage of this design scheme is that it not only retains the efficiency and uniformity of ultrasonic thawing, but also realizes temperature control and optimization of the thawing process through the addition of the heating module. Specifically, the heating module can increase the temperature of the bottom of the sink and the surrounding environment while the ultrasonic wave is acting, thereby accelerating the thawing speed and reducing the time required for thawing. In addition, this dual thawing method combining ultrasonic wave and gentle heating can effectively inhibit the growth of bacteria and improve food safety, making the entire thawing process more efficient and reliable.
[0025] Further, the pressing type heating module is arranged around the periphery of the ultrasonic transducer. By placing the heating module around the periphery of the ultrasonic transducer, this scheme can ensure that heat is more uniformly conducted to the entire thawing container, avoiding the problems of local overheating or uneven thawing, and ensuring that the food is uniformly and gently thawed from the inside out.
[0026] Further, the positioning structure comprises a sealing ring, which is clamped on the inner side of the recess. This solution makes the connection between the recess and the connecting convex part more closely and closely. When thawing, the sealing ring cooperates with the connecting convex part to effectively seal the container and complete the thawing. After thawing, the water in the container is immediately discharged from the drain hole when the thawing container is lifted. BRIEF DESCRIPTION OF DRAWINGS
[0027] Figure 1 is an exploded view of the thawing device Figure 1 ;
[0028] Figure 2 is a structural schematic diagram of the thawing device
[0029] Figure 3 is an exploded view of the thawing device Figure 2 ;
[0030] Figure 4 is a structural schematic diagram of the intelligent sink Figure 1 ;
[0031] Figure 5 is an exploded view of the intelligent sink Figure 1 ;
[0032] Figure 6 is a structural schematic diagram of the intelligent sink Figure 2 ;
[0033] Figure 7 is a structural schematic diagram of the intelligent sink Figure 3 ;
[0034] Figure 8 is an exploded view of the intelligent sink Figure 2 ;
[0035] Figure 9 is an exploded view of the intelligent sink Figure 3 ;
[0036] Figure 10 is an exploded view of the intelligent sink Figure 4 ;
[0037] Figure 11 is an exploded view of the intelligent sink Figure 5 ;
[0038] Figure 12 is a sectional view of the intelligent sink.
[0039] REFERENCE NUMERALS:
[0040] Thawing equipment 1, thawing container 2, drain port 21, water sealing cover 22, first convex rib 231, second convex rib 232, sealing ring 233, fixing ring 234, connecting convex edge 24, connecting step 25, limiting part 26, emptying groove 27, ultrasonic wave generating device 3, ultrasonic wave transducer 31, protective shell 32, power module 33, control module 4, drain plate 6, partition 7, first partition plate 71, second partition plate 72, water passing port 73, intelligent sink 8, sink body 80, mounting step 81, slag separator 82, connecting groove 83, drainer 84, connecting part 85, mounting hole 86, drain port 87, profile structure 9, positioning column 91, connecting convex part 92, mounting groove 93, annular mounting position 94, first flow guide area 95, second flow guide area 96, thawing area 97. DETAILED DESCRIPTION
[0041] The technical scheme of the utility model is further described below with reference to the drawings:
[0042] In the description of the utility model, it should be understood that the directions or position relationships indicated by "front", "back", "inner", "outer" and the like are based on the directions or position relationships shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular direction, be constructed and operated in a particular direction, and therefore cannot be understood as a limitation on the utility model.
[0043] Embodiment one:
[0044] Referring to Figures 2-3 The embodiment discloses thawing equipment 1, including control module 4, thawing container 2 and ultrasonic wave generating device 3, the upper end of the thawing container 2 is designed as an open mouth, a positioning structure for cooperating with a sink is arranged on the outer wall of the thawing container 2, and the ultrasonic wave generating device 3 is used for being assembled on the outer side of the bottom of the sink.
[0045] In order to realize complete drainage of the thawing container 2 and enhance the convenience of use, the thawing container 2 is provided with a drain port 21, and a water sealing cover 22 is arranged at the drain port 21. The drain port 21 can be arranged at the bottom or the lower side of the thawing container 2, such as the lower side of the side wall of the thawing container 2. Before use, ensure that the water sealing cover 22 of the drain port 21 is tightly closed, then water is injected into the thawing container 2, after thawing is completed, the water sealing cover 22 is opened, the water in the container flows to the sink through the drain port 21, and finally is discharged through the drain port 87 of the sink.
[0046] The specific structure of the ultrasonic wave generating device 3 comprises an ultrasonic wave transducer 31, a protective shell 32 and a power module 33, the control module 4 is electrically connected with the power module 33 to control the power module 33 to supply power to the ultrasonic wave transducer 31, so that the generation and stop of the ultrasonic wave can be accurately controlled through the control module 4, thereby meeting different thawing requirements, improving the flexibility and practicability of the equipment, and the protective shell 32 is arranged on the outer side of the ultrasonic wave transducer 31 and the power module 33, which not only plays a role of isolation and protection, but also integrates the ultrasonic wave transducer 31 and the power module 33 together to form a whole, so that the equipment looks more regular.
[0047] The thawing container 2 further comprises a draining plate 6, and the upper side of the thawing container 2 is provided with a connecting step 25, and the draining plate 6 is detachably assembled at the connecting step 25. The draining plate 6 of the present scheme can be used for draining food materials, kitchen knives, tableware and the like, and the thawed food materials can be placed on the draining plate 6 so that the water adhered to the surface of the food materials slides along the draining plate 6 and falls into the thawing container 2.
[0048] In order to improve the flexibility of the thawing container 2, a partition 7 is detachably arranged on the thawing container 2 to divide the thawing container 2 into at least two areas for placing different objects, so that the thawing container 2 can be used as a storage container for draining and storing knives, forks and chopsticks. When the partition space is not needed, the partition 7 can also be taken out of the thawing container 2.
[0049] In order to avoid the blocking of the draining port 21 of the thawing container 2, the draining port 21 is arranged close to one side of the thawing container 2, and the partition 7 is arranged on the other side of the thawing container 2 away from the draining port 21, so as to separate the area where the draining port 21 is located from other areas of the thawing container 2 through the partition plate, and a water passing port 73 is arranged on the partition 7 to enable the water in other areas to flow to the draining port 21 through the water passing port 73.
[0050] In order to realize the assembly and fixation of the partition 7 and the thawing container 2, a limiting portion 26 is arranged longitudinally on the side wall of the thawing container 2.
[0051] The specific structure of the partition 7 can be arranged to comprise a first partition plate 71 and a second partition plate 72 arranged longitudinally, and one end of the second partition plate 72 is connected with the middle portion of the first partition plate 71, so as to divide the thawing container 2 into three independent areas, including an area where the draining port 21 is located and two other areas.
[0052] The water passing port 73 is a plurality of notches arranged at the bottom of the first partition plate 71 and the second partition plate 72.
[0053] The thawing equipment 1 of the embodiment comprises a thawing container 2 and an ultrasonic wave generating device 3, the ultrasonic wave generating device 3 is fixedly assembled on the outside of the bottom of the sink, a control module 4 is arranged on the ultrasonic wave generating device 3 or the sink body 80, the thawing container 2 is detachably placed in the sink and corresponds to the ultrasonic wave generating device 3, so that the sink and the thawing equipment 1 cooperate to realize the thawing function. In use, food materials and a certain amount of water are placed in the thawing container 2, and the ultrasonic wave generating device 3 is started. After thawing is completed, the food materials are taken out, and the water is poured out of the container. Compared with the prior art, in the utility model, the thawing container 2 and the ultrasonic wave generating device 3 are designed separately, which is convenient for moving the thawing container 2 to load food materials and convenient for storing the thawing container 2. The thawing container 2 and the sink can be used separately, the thawing container 2 can be used as a storage appliance and a cleaning basin, and the sink has the same daily use function when used alone. Because the bottom of the thawing container 2 is provided with a positioning structure, the thawing container 2 can be quickly placed in place in the sink, and the ultrasonic wave generating device 3 is assembled on the outer bottom of the sink and does not need to be moved.
[0054] Embodiment two:
[0055] Referring to Figures 1-12 As shown in the figure, the embodiment discloses a kind of intelligent sink 8, it includes sink body 80 and thawing equipment 1 of the above scheme, the inner chamber bottom of the sink body 80 is equipped with thawing area 97 corresponding to the thawing container 2, the thawing area 97 is equipped with profiled structure 9, and profiled structure 9 and the shape of the positioning structure are adapted, and the ultrasonic wave generating device 3 is located on the bottom outside of sink body 80, and position corresponds to the thawing area 97.
[0056] The above profiled structure 9 includes connecting convex part 92, and the positioning structure includes recess position adapted to connecting convex part.As one preferred scheme of the above recess position: the positioning structure includes fixed ring 234, the fixed ring 234 is fixed on the container body by ultrasonic welding, and the recess position is formed between the inner side of the fixed ring 234 and the container body. The scheme can improve the structural stability of the thawing container 2, and the connecting structure formed after the fixed ring 234 of the scheme is installed on the thawing container 2 is very stable, which ensures that the phenomenon of falling off does not occur during use.
[0057] As another preferred solution of the recess: the positioning structure comprises a fixing ring 234, the drain port 21 is provided with a sunken water outlet portion 211, the fixing ring 234 is detachably sleeved on the water outlet portion 211, the bottom of the fixing ring 234 protrudes downward from the water outlet portion 211 to form the recess with the water outlet portion 211. The difference between this solution and the above-mentioned solution is that the fixing ring 234 and the container body are detachably connected in this solution. Such design enables the user to flexibly adjust the positioning structure according to the actual structure of the sink, thereby effectively avoiding the mismatching between the fixed structure of the thawing container 2 and the sink, and greatly improving the convenience and flexibility of use.
[0058] In order to realize quick assembly and fixation, the upper side of the fixing ring 234 and the water outlet portion 211 are connected by rotary clamping.
[0059] As a third preferred solution of the recess: the bottom of the container body is provided with the drain port 21, the drain port 21 is provided with a water sealing cover 22 and a sunken water outlet portion 211 to facilitate water discharge, and the positioning structure comprises a second protruding rib 232 which is integrally formed with the container body, the second protruding rib 232 is annular, and the space between the inner side of the second protruding rib 232 and the container body forms the recess. The design of this solution not only simplifies the structure, but also significantly improves the overall stability. In this solution, when the drain port 21 is provided with the water outlet portion 211, the second protruding rib 232 can be annularly arranged at the lower periphery of the water outlet portion 211 to form the recess with the bottom of the water outlet portion 211; when the drain port 21 is not provided with the water outlet portion 211, the second protruding rib 232 can be annularly arranged at the lower periphery of the drain port 21.
[0060] In order to make the connection between the recess and the connecting protrusion more closely and closely, the above-mentioned positioning structure comprises a sealing ring 233 which is clamped on the inner side of the recess. When the recess is formed by welding the fixing ring 234 on the container body, the bottom outer periphery of the sealing ring 233 is annularly provided with a limiting step 233a, the bottom inner periphery of the fixing ring 234 is annularly provided with a limiting protrusion 234a, the limiting step 233a and the limiting protrusion 234a abut to limit the sealing ring 233 from being separated downward from the fixing ring 234. When the recess is formed by the fixing ring and the water outlet portion 211, the sealing ring 233 is clamped between the lower side of the fixing ring and the water outlet portion 211, and the sealing ring 233 is provided with a limiting step 233b which cooperates with the water outlet portion 211, and the limiting step 233b abuts with the bottom of the water outlet portion. When the recess is formed by the second protruding rib 232, the sealing ring 233 is clamped on the inner side of the second protruding rib 232. During thawing, the sealing ring 233 cooperates with the connecting protrusion to effectively seal the container, so that the drain port 21 does not need to be assembled with the water sealing cover 22 during thawing, and after thawing is completed, the water is immediately discharged from the container drain port 21 when the thawing container 2 is lifted. In order to further improve the sealing effect of the sealing ring 233, at least one ring of sealing ribs is annularly arranged on the inner wall of the sealing ring 233.
[0061] The sealing ring 233 can be assembled into the recess by direct welding, elastic buckling, rotary clamping, or any other method.
[0062] The connecting protrusion 92 is in the shape of a bottle cap, the outer side of the bottle cap is connected with the recess, and the ultrasonic transducer 31 is arranged on the inner side of the bottle cap, so that the ultrasonic transducer 31 corresponds to the position of the drain port 21. In this way, the assembly of the ultrasonic transducer 31 is facilitated, and the conduction of ultrasonic energy is also facilitated.
[0063] The connecting protrusion 92 is formed by recessing the bottom wall of the sink, the outer side of the sink is provided with a mounting groove 93 at the connecting protrusion 92, and the ultrasonic transducer 31 is arranged in the mounting groove 93.
[0064] The profiled structure 9 includes a positioning groove arranged along the width direction of the sink body 80, and the positioning structure includes a first protruding rib 231 extending downward from the bottom of the thawing container, which matches the profile of the positioning groove to realize the guiding and positioning functions.
[0065] The four ends of the positioning groove are longitudinally provided with positioning columns 91, and the four positioning columns 91 are used to fix the thawing container 2.
[0066] The drain port 87 of the sink body 80 is arranged in the positioning groove, so that the water in the thawing container 2 is discharged through the drain port 87 after the water seal cover 22 is opened.
[0067] The upper outer side of the thawing container 2 is provided with a connecting protruding edge 24, and the sidewall of the sink is correspondingly provided with a mounting step 81, and the stable connection is realized by the close abutment of the connecting protruding edge 24 and the mounting step 81. This scheme aims to enhance the structural stability of the thawing container 2 during use, wherein the mounting step 81 provides reliable support for the connecting protruding edge 24, and ensures that when the drain plate 6 and the food material are placed in the thawing container 2, the sink can effectively share the load of the thawing container 2 by means of the mounting step 81, thereby improving the stability and safety of the overall structure.
[0068] The drain plate 6 is provided with an outward turning edge, so that the connection between the drain plate 6 and the thawing container 2 is stable.
[0069] In order to avoid the blockage of the drain, a residue separator is further included, the upper side of the drain port 87 is provided with a connecting groove 83, and the residue separator is detachably assembled at the connecting groove 83.
[0070] The residue separator is in the shape of a square.
[0071] The drain port 87 is provided with a drain 84.
[0072] In order to improve the thawing efficiency, the ultrasonic wave generating device 3 further comprises a heating module, which is connected with the bottom wall of the water tank. Based on the ultrasonic wave thawing, the heating module is introduced as part of the ultrasonic wave generating device 3, and the heating module is closely connected with the bottom wall of the water tank. The significant advantage of this design scheme is that it not only retains the high efficiency and uniformity of ultrasonic wave thawing, but also realizes the temperature control and optimization of the thawing process through the addition of the heating module. Specifically, the heating module can improve the temperature of the bottom of the water tank and the surrounding environment while the ultrasonic wave is acting, thereby accelerating the thawing speed and reducing the time required for thawing. In addition, this dual thawing method combining ultrasonic wave and gentle heating can effectively inhibit the growth of bacteria and improve food safety, making the entire thawing process more efficient and reliable.
[0073] The heating module surrounds the periphery of the ultrasonic transducer 31 to ensure that heat is more uniformly conducted to the entire thawing container 2, avoiding the problems of local overheating or uneven thawing, and ensuring that the food materials can be uniformly and gently thawed from the inside to the outside.
[0074] The heating module is a thick film heating module.
[0075] The heating module is annular, and the ultrasonic transducer 31 and the side wall of the mounting groove 93 have a predetermined spacing to form an annular mounting position 94, and the heating thick film is arranged on the annular mounting position 94.
[0076] The upper end of the water tank is annularly provided with a connection part 85 extending radially outward, and the connection part 85 is provided with a mounting hole 86, and the control module 4 is assembled in the mounting hole 86. The connection part 85 of the present scheme is used to connect with the installation table top, and the control module 4 is ingeniously integrated therein by opening the mounting hole 86 on the connection part 85, which not only simplifies the installation process, but also significantly improves the convenience of user operation and space utilization efficiency.
[0077] Embodiment three:
[0078] Referring to Figures 4-5 The difference between the present embodiment and embodiment two is that the inner cavity of the water tank body 80 is provided with a flow guide structure to improve the drainage effect of the water tank.
[0079] The above-mentioned flow guide structure comprises first flow guide areas 95, two of which are arranged on both sides of the bottom wall of the sink body 80 along the width direction of the sink body 80, extend along the length direction of the bottom wall, and are designed to be inwardly inclined from the side close to the side wall of the sink body 80 to the middle part of the sink body 80. When the water in the sink body 80 starts to drain, due to the inwardly inclined design of the first flow guide areas 95, the water will naturally flow along the inclined surfaces, gather from the side part to the middle part of the sink, and fall into the drain 87.
[0080] The first flow guide areas 95 extend from one end close to the drain 87 to the other end, and gradually narrow in width. The narrowing design of the first flow guide areas 95 further guides the water flow, making it more concentrated to the drain 87. This design effectively reduces the diffusion and retention of water flow in the sink, thereby speeding up the drainage speed and improving the drainage effect of the sink.
[0081] To match the shape of the sink, the bottom of the thawing container 2 is designed with a clearance groove 27 to match the first flow guide areas 95.
[0082] The above-mentioned flow guide structure further comprises second flow guide areas 96, which are located between the two first flow guide areas 95. The bottom wall of the sink body 80 is gradually inclined downward from the end away from the drain 87 to the end close to the drain 87 to form the second flow guide areas 96, so that the water located in the second flow guide areas 96 is gathered to the drain 87 under the action of gravity.
[0083] The above-mentioned flow guide structure comprises a flow guide layer arranged in the sink cavity.
[0084] The surface of the above-mentioned sink cavity has an embossed design, and the embossing forms the above-mentioned flow guide layer.
[0085] The above-mentioned flow guide layer comprises a plurality of flow guide protrusions arranged at intervals, flow guide areas are formed between adjacent flow guide protrusions, and the cross section of the flow guide protrusion is curved. In this scheme, the cross section of the flow guide protrusion is curved, and the valley between the bottom and the top of the flow guide protrusion is filled with air, thereby forming a large number of air cushions connected to each other in the flow guide layer. The contact position of the water / oil with the flow guide structure is only the top of the flow guide structure, the flow guide structure lifts the water / oil, so that the water / oil is in the form of droplets, avoiding the water / oil spreading and adhering to the inner side wall of the sink to limit the flow speed of the water / oil, thereby improving the flow speed of the water / oil on the flow guide layer. Since the water / oil exists in the form of droplets on the flow guide layer, the water / oil moves in a rolling manner, and it is known that water molecules have an attractive force to solute particles, so that impurities (dust, food residues, residual pesticides, etc.) on the flow guide layer can be adsorbed when the water / oil flows, thereby realizing self-cleaning of the flow guide layer.
[0086] The flow guide layer is arranged on the inner bottom wall of the sink. Of course, the flow guide layer can also be arranged on the inner side wall of the sink.
[0087] The shape of the flow guide convex part is at least one of papillary point, papillary pattern, papillary line, spherical cap, ellipsoidal cap, hemispherical body, and hemi-ellipsoidal body.
[0088] Compared with the prior art, the intelligent sink 8 of the embodiment has the advantages of the above-mentioned scheme because the thawing equipment 1 of the above-mentioned scheme is applied. The cooperation of the positioning structure and the profiling structure 9 enables the thawing container 2 to be quickly assembled at the corresponding position in the sink. The sink body 80 and the thawing container 2 can be used in cooperation and can also be used independently, greatly improving the practicability and user experience.
[0089] The embodiments in the specification are described in a progressive manner, and each embodiment focuses on the difference from other embodiments. The same or similar parts of each embodiment can be referred to each other. According to the disclosure and teaching of the above description, the skilled in the art of the utility model can also change and modify the above-mentioned embodiments. Therefore, the utility model is not limited to the specific embodiments disclosed and described above. Some modifications and changes of the utility model should also fall within the protection scope of the claims of the utility model. In addition, although some specific terms are used in the specification, these terms are only for convenience of description and do not constitute any limitation on the utility model.
Claims
1. A thawing apparatus (1) characterized in that, The thawing device (1) comprises a control module (4) and a thawing container (2) and an ultrasonic wave generating device (3), the thawing container (2) and the ultrasonic wave generating device (3) are designed separately, the thawing container (2) is designed as an open top, a positioning structure is arranged on the outer wall of the thawing container (2) for cooperation with a sink, and the ultrasonic wave generating device (3) is arranged on the outside of the bottom of the sink.
2. Thawing apparatus (1) according to claim 1, characterized in that A drain port (21) is arranged on the thawing container (2), and a water sealing cover (22) is arranged at the drain port (21).
3. Thawing apparatus (1) according to claim 1, characterized in that The ultrasonic wave generating device (3) comprises an ultrasonic wave transducer (31), a protective shell (32) and a power module (33), the control module (4) and the power module (33) are electrically connected to control the power module (33) to supply power to the ultrasonic wave transducer (31).
4. The thawing apparatus (1) according to claim 1, characterized in that The open top is arranged at the upper end of the thawing container (2), the thawing container (2) further comprises a draining plate (6), a connecting step (25) is arranged on the upper side of the thawing container (2), and the draining plate (6) is detachably arranged at the connecting step (25).
5. Thawing apparatus (1) according to claim 1, characterized in that A partition (7) is detachably arranged on the thawing container (2).
6. The thawing apparatus (1) according to claim 2, characterized in that The thawing container (2) is provided with a partition (7), the drain port (21) is arranged close to one side of the thawing container (2), and the partition (7) is arranged on the other side of the thawing container (2) and avoids the drain port (21).
7. The intelligent sink (8) characterized in that, The thawing device (1) comprises a sink body (80) and the thawing device (1) according to any one of claims 1, 4-6, a thawing area (97) is arranged on the inner cavity bottom of the sink body (80) and corresponds to the thawing container (2), a pressure type structure (9) is arranged on the thawing area (97), the pressure type structure (9) is matched with the shape of the positioning structure, the ultrasonic wave generating device (3) is arranged on the outside of the sink body (80) and corresponds to the thawing area (97), a drain port (21) is arranged on the thawing container (2), and a water sealing cover (22) is arranged at the drain port (21).
8. The intelligent sink (8) according to claim 7, characterized in that, The pressure type structure (9) comprises a connecting convex part (92), and the positioning structure comprises a concave position matched with the connecting convex part.
9. The intelligent sink (8) according to claim 8, characterized in that, The ultrasonic wave generating device (3) comprises an ultrasonic wave transducer (31), a protective shell (32) and a power module (33), the control module (4) and the power module (33) are electrically connected to control the power module (33) to supply power to the ultrasonic wave transducer (31). The connecting convex part (92) is concavely formed on the bottom wall of the sink, a mounting groove (93) is formed on the outside of the sink at the connecting convex part (92), the ultrasonic wave transducer (31) is arranged in the mounting groove (93), and the protective shell (32) is arranged on the outside of the ultrasonic wave transducer (31) and the power module (33).
10. The intelligent sink (8) according to claim 7, characterized in that, The profiled structure (9) comprises a positioning groove arranged along the width direction of the sink body (80), and the inner side of the positioning groove is a thawing area (97); the positioning structure comprises a first convex rib (231) extending downward from the bottom of the thawing container (2), and the first convex rib (231) is matched with the profile of the positioning groove to realize the guiding and positioning functions.
11. The intelligent sink (8) according to claim 7, characterized in that, The water outlet (87) of the sink body (80) is arranged in the thawing area (97), so that the water in the thawing container (2) is discharged through the water outlet (87) after the water cover (22) is opened.
12. The intelligent sink (8) according to claim 7, characterized in that, The upper outer side of the thawing container (2) is provided with a connecting convex edge (24), and the sidewall of the sink body (80) is correspondingly provided with a mounting step (81), and the connecting convex edge (24) and the mounting step (81) are in abutment.
13. The intelligent sink (8) according to claim 9, characterized in that, The ultrasonic wave generating device (3) further comprises a heating module.
14. The intelligent sink (8) according to claim 13, characterized in that, The heating module is arranged around the periphery of the ultrasonic wave transducer (31).
15. The intelligent sink (8) according to claim 8, characterized in that, The positioning structure comprises a sealing ring (233) clamped on the inner side of the recess.