Constant-temperature bowl for complementary food
By using a detachable outer shell structure and glass bowl, and employing a clamping assembly, the baby food constant temperature bowl is securely installed, solving the problems of high scrap rate and difficult disassembly caused by traditional glue curing, thus improving environmental friendliness and production efficiency.
Patent Information
- Application Number
- CN202520147231.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-01-22
AI Technical Summary
Existing baby food constant temperature bowls have a high scrap rate during the production process due to sealing and fixing problems between the metal inner bowl and the outer shell, and are difficult to disassemble, affecting environmental protection and production costs.
It adopts a detachable shell structure, and the bowl is fixed to the clamping part by the clamping component, avoiding the use of glue. It achieves a firm installation by using the glass bowl and mechanical force.
It reduces the production scrap rate, improves the environmental friendliness and production efficiency of the product, ensures the stability and safety of the bowl, reduces the difficulty of cleaning, and facilitates disassembly and maintenance.
Smart Images

Figure CN223682290U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to children's tableware technical field, especially in a complementary food constant temperature bowl. BACKGROUND
[0002] With the modern society's attention to infant feeding, complementary food as the important nutrient source in the baby's growth process has become a part of family daily life, especially in the baby's transition from breast milk or milk powder to complementary food stage, how to ensure that the temperature of complementary food is appropriate, and the heat preservation is long, becomes the focus of parents, therefore, the complementary food constant temperature bowl as a kind of intelligent tableware that can keep the constant temperature of complementary food and avoid overheating or overcooling of food gradually enters the market and is favored by consumers.
[0003] The complementary food constant temperature bowl usually adopts double-layer structure design, and the selection of inner bowl material is particularly crucial, the inner bowl of traditional complementary food bowl is mostly made of stainless steel material, because it has good thermal conductivity, high temperature resistance and corrosion resistance, it has become a widely used material, however, in actual production, because the constant temperature bowl needs to have certain waterproof performance, the fixed installation of inner bowl often encounters the sealing problem of material.
[0004] At present, many complementary food constant temperature bowls on the market adopt metal stainless steel material, and the fixed installation of metal inner bowl and shell generally needs to be sealed by means of glue, this technical scheme can solve the fixing problem to some extent, but also brings a series of production and use challenges, specifically, after the solidification of glue, the sealing property of metal inner bowl and shell is strong, this structure makes the scrap rate in the production process higher, especially in the manufacturing process, once the glue fails to solidify completely or is sealed improperly, it may lead to the unqualified of the whole product, and further improve the production cost.
[0005] In addition, because the glue is solidified once, the disassembly process is often very difficult, and the incomplete separation of glue after solidification and metal makes the disassembly process difficult to recycle and process reasonably, under normal circumstances, the disassembled complementary food constant temperature bowl can only be scrapped, which not only causes resource waste, but also increases the production cost and environmental protection pressure of enterprises.
[0006] Therefore, in the production process of complementary food constant temperature bowl, how to effectively solve the sealing and fixing problem of metal inner bowl and shell, reduce the use of glue, and ensure the disassembly and recycling of product, become the key direction of current technical innovation, which not only can reduce the production scrap rate and reduce the production cost of enterprises, but also can improve the environmental protection and market competitiveness of product to some extent.
[0007] The utility model is proposed in view of the deficiency of prior art. UTILITY MODEL CONTENT
[0008] The inner bowl is generally fixed and mounted by using glue to seal and fix, and the production scrap rate is high.
[0009] The utility model discloses a technical scheme that solves its technical problems:
[0010] A kind of complementary food thermostat bowl, including two detachable connection shell structure and bowl body, the shell structure and bowl body between being equipped with compression assembly, the shell structure is equipped with corresponding compression part with bowl body, when the bowl body is equipped with shell structure, the compression assembly can be compressed on the compression part with bowl body, to make the bowl body be equipped in shell structure.
[0011] As described above, a kind of complementary food thermostat bowl, the shell structure includes upper shell assembly and lower shell assembly, the compression assembly is located between upper shell assembly and bowl body, and the compression part is located in lower shell assembly.
[0012] As described above, a kind of complementary food thermostat bowl, the lower shell assembly includes lower shell shell body and compression support arranged in lower shell shell body, and the bottom of the compression support has accommodating space capable of accommodating electrical elements with lower shell shell body;Compression part is arranged at the top of compression support;
[0013] The upper shell assembly and compression support are equipped with connection assembly capable of being connected;Or, the upper shell assembly and lower shell shell body are equipped with connection assembly capable of being connected.
[0014] As described above, a kind of complementary food thermostat bowl, the compression assembly includes compression part arranged in upper shell assembly.
[0015] As described above, a kind of complementary food thermostat bowl, the compression assembly further includes first compression convex edge arranged on the outer wall of bowl body, and the first compression convex edge is located below compression part.
[0016] As described above, a kind of complementary food thermostat bowl, the first compression convex edge is annular, and the compression part is annular.
[0017] As described above, a kind of complementary food thermostat bowl, annular waterproof sealing element is arranged between the first compression convex edge and compression part.
[0018] As described above, a kind of complementary food thermostat bowl, the annular waterproof sealing element includes waterproof sealing sleeve sleeved on the outer side of the first compression convex edge.
[0019] As described above, a kind of complementary food thermostat bowl, the compression part includes second compression convex edge that is inwardly folded on the top of upper shell assembly, the top of upper shell assembly is provided with avoiding hole, the outer wall of bowl body is in abutment with the side wall of second compression convex edge, and the bottom of second compression convex edge is in abutment with the top of first compression convex edge.
[0020] The above-mentioned baby food constant temperature bowl is made of glass.
[0021] The beneficial effects of this utility model are:
[0022] 1. This utility model relates to the field of children's tableware technology, specifically a constant-temperature bowl for baby food. It comprises a detachably connected outer shell structure and a bowl body. A clamping assembly is provided between the outer shell structure and the bowl body. The outer shell structure contains a clamping part corresponding to the bowl body. When the bowl body is assembled with the outer shell structure, the clamping assembly applies pressure to the bowl body, pressing it firmly against the clamping part, thus securing the bowl body within the outer shell structure. This detachable design makes the constant-temperature bowl for baby food maintainable, disassembleable, and offers greater production flexibility. Furthermore, the clamping assembly ensures the bowl body is securely installed within the outer shell structure by clamping it, avoiding the problems of difficult disassembly and high production scrap rates caused by using glue or other adhesives.
[0023] 2. In this embodiment, the third connector in the upper shell assembly is inserted into the first connector, and then the connection is achieved by screws. During the screw connection process, the upper shell assembly and the clamping bracket gradually approach each other. At this time, the clamping assembly and the clamping part also gradually approach each other, and the clamping assembly will press the bowl body onto the clamping part.
[0024] 3. The bowl in this embodiment is made of glass. Specifically, as a metal-free material, glass will not be corroded by acidic, alkaline or grease substances like metal, thus preventing rust or corrosion. Therefore, the glass bowl can maintain a smooth and clean surface during long-term use and will not rust, thereby avoiding the release of metal substances or corrosive substances. This is very important for the health of users, especially in food contact scenarios, to prevent harmful substances from entering the food.
[0025] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. Attached Figure Description
[0026] Figure 1 This is one of the structural schematic diagrams of the present invention (hidden top cover assembly);
[0027] Figure 2 This is a side view of the present invention (with the top cover assembly hidden).
[0028] Figure 3 for Figure 2 Cross-sectional view and enlarged view along line AA;
[0029] Figure 4 This is one of the exploded view diagrams of the present invention (hidden top cover assembly);
[0030] Figure 5 This is the second exploded view of the present invention (hidden top cover assembly).
[0031] Figure 6 This is the second structural schematic diagram of the present invention. Detailed Implementation
[0032] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.
[0033] like Figures 1 to 6 As shown, a baby food constant temperature bowl according to this embodiment includes a shell structure 1 and a bowl body 2 that are detachably connected. A clamping component 3 is provided between the shell structure 1 and the bowl body 2. The shell structure 1 has a clamping part 1221 corresponding to the bowl body 2. When the bowl body is assembled with the shell structure, the clamping component can apply pressure to the bowl body, pressing the bowl body onto the clamping part, so that the bowl body is firmly assembled in the shell structure. This detachable structural design makes the baby food constant temperature bowl maintainable, disassembleable and more flexible in production. In addition, the clamping component ensures the firm installation of the bowl body in the shell structure by clamping the bowl body, avoiding the problems of difficult disassembly and high production scrap rate caused by using glue or other adhesives.
[0034] like Figures 1 to 6 As shown, the outer shell structure 1 of this embodiment includes an upper shell assembly 11 and a lower shell assembly 12 that are detachably connected. The pressing assembly 3 is located between the upper shell assembly 11 and the bowl body 2, and the pressing part 1221 is located inside the lower shell assembly 12.
[0035] Specifically, the outer shell structure 1 of this embodiment consists of an upper shell assembly 11 and a lower shell assembly 12. The upper shell assembly 11 and the lower shell assembly 12 are detachably connected. The clamping assembly 3 is located between the upper shell assembly 11 and the bowl 2. The clamping part 1221 is located inside the lower shell assembly 12. When the upper shell assembly 11 and the lower shell assembly 12 are connected, the clamping assembly 3 can tightly press the bowl 2 onto the clamping part 1221 to ensure the secure installation of the bowl 2.
[0036] Furthermore, the upper and lower shell components are detachably connected. After being connected to the lower shell component, the upper shell component applies pressure to the bowl body through the clamping component, so that the bowl body is firmly assembled inside the outer shell. This detachable structural design makes the baby food constant temperature bowl maintainable, disassembleable and more flexible in production.
[0037] Furthermore, the clamping component 3, through its cooperation with the clamping part 1221, clamps the bowl 2, ensuring the bowl is securely installed in the outer shell structure and avoiding the problems of difficult disassembly and high production scrap rate caused by the use of glue or other adhesives.
[0038] Specifically, the detachable connection design of the upper shell assembly and the lower shell assembly allows for easy disassembly and assembly of each part, does not rely on glue sealing, and avoids production scrap and unstable quality caused by glue problems.
[0039] The detachable connection structure allows for easy disassembly and cleaning, avoiding the problem of increased cleaning difficulty or residual cleaning agent caused by glue fixation. Moreover, the disassembly of the bowl body 2 and the outer shell facilitates maintenance, allowing independent replacement or repair if a part fails or is damaged, thereby extending the service life of the product.
[0040] The use of glue means that during the disassembly of the product, there will be no toxic or difficult-to-recycle glue residue, allowing for better recycling and reuse of metal parts through standard recycling processes, reducing resource waste and meeting environmental protection requirements.
[0041] The detachable connection structure design allows for flexible adjustment and assembly of each component during production, reducing the complexity of the production line and improving production efficiency. Moreover, if a component fails during production, it can be replaced locally without the need for overall scrapping, further reducing production costs.
[0042] As shown in Figures 1 to 6 The lower shell assembly 12 of the present embodiment includes a lower shell body 121 and a compression bracket 122 disposed within the lower shell body 121. The compression bracket 122 has a receiving space 123 between the bottom and the lower shell body 121 that can accommodate electrical components. The compression portion 1221 is disposed at the top of the compression bracket 122.
[0043] The receiving space 123 between the bottom of the compression bracket 122 and the lower shell body 121 provides sufficient space for the installation of electrical components such as heating elements, temperature controllers, batteries, etc. These electrical components can be safely installed in this space, avoiding interference with other mechanical structures.
[0044] Preferably, the compression portion 1221 is located at the top of the compression bracket 122 and cooperates with the bowl body 2 through the compression assembly 3, thereby firmly positioning the bowl body 2 within the outer shell structure 1. The compression assembly 3 fixes the bowl body on the compression portion 1221 through a certain pressure, ensuring that the bowl body does not shift or rotate, thereby improving the stability and safety of the entire system.
[0045] The cooperation of the compression portion 1221 and the compression assembly 3 ensures that the bowl body 2 does not move during use due to external impact or operation. This design effectively prevents the bowl body from rotating, falling off, or other unstable states during operation, ensuring the normal use and safety of the product.
[0046] Preferably, the compression part 1221 in the embodiment is a ring-shaped assembly protrusion, the bowl body 2 is clamped into the space surrounded by the ring-shaped assembly protrusion, and through the cooperation of the compression assembly 3, the bottom of the bowl body 2 is abutted against the top of the compression support 122, and the inner wall of the ring-shaped assembly protrusion is abutted against the outer wall of the bowl body 2, so as to realize a stable connection mode.
[0047] Preferably, the inner wall of the ring-shaped assembly protrusion has a curvature close to or the same as that of the outer wall of the bowl body 2, so as to ensure good fit between the two.
[0048] Preferably, the electrical elements are stored in the containing space 123, which helps to optimize the layout between the elements and facilitate the miniaturization of the volume of the complementary food constant-temperature bowl.
[0049] Preferably, by containing the electrical elements in the compression support 122, the dependence on other external support assemblies can be reduced, and the need for complex fixing components is reduced. This design not only saves production costs, but also improves the reliability of the product. At the same time, the designer can flexibly adjust the configuration of the electrical elements according to the size and layout of the containing space.
[0050] Moreover, through the support of the compression support 122, the electrical elements and the bowl body 2 can be effectively protected. In particular, during the transportation or operation of the product, the stable design of the compression support avoids the relative movement between the components, reduces the damage of vibration or impact to the electrical elements, and enhances the anti-vibration and anti-impact capability of the product.
[0051] Preferably, the top of the compression support 122 is provided with a heating element 4, and the containing space 123 is provided with a power supply member 5, which is electrically connected with the heating element 4.
[0052] Preferably, the heating element 4 can adopt components such as heating film, heating wire, and heating rod, and a suitable design can be selected according to actual needs.
[0053] Preferably, in some embodiments, the power supply member 5 includes a battery part and a battery, and the user can replace the battery by disassembling the lower shell body 121. In other embodiments, the power supply member 5 includes a battery and a charging port, and the battery can be charged through the charging port. Alternatively, the power supply member 5 includes a battery part, a battery, and a charging port, and the user can charge the battery through the charging port or replace the battery by disassembling the lower shell body 121. A suitable design can be selected according to actual needs.
[0054] As Figures 1 to 6As shown, the upper shell assembly 11 and the compression support 122 of the present embodiment are provided with a connecting assembly 13 capable of connecting the two; or, the upper shell assembly 11 and the lower shell body 121 are provided with a connecting assembly 13 capable of connecting the two.
[0055] Preferably, in the present embodiment, the connecting assembly 13 comprises a first connecting piece 131 provided on the compression support 122, which is connected with the upper shell assembly 11. Specifically, the first connecting piece 131 fixes the compression support 122 and the upper shell assembly 11 together by connecting means such as bolts, buckles, etc., ensuring the stability of the upper shell assembly and preventing it from loosening or shifting during use.
[0056] Preferably, in the present embodiment, the upper shell assembly 11 is provided with a third connecting piece 14 corresponding to the first connecting piece 131. The first connecting piece 131 is a plug-in column, and the third connecting piece 14 comprises a connecting column which is inserted into the plug-in column and connected by screws or clamps, which can be selected according to actual needs.
[0057] In the present embodiment, the third connecting piece 14 in the upper shell assembly 11 is inserted into the first connecting piece 131, and then connected by screws. During the screwing process, the upper shell assembly 11 and the compression support 122 gradually approach each other. At this time, the compression assembly 3 and the compression part 1221 also gradually approach each other, and the compression assembly 3 will compress the bowl body 2 on the compression part 1221.
[0058] Preferably, the connecting assembly 13 further comprises a second connecting piece 132 provided on the compression support 122, which is connected with the lower shell body 121.
[0059] The second connecting piece 132 fixes the compression support 122 and the lower shell body 121, so that the lower shell body and the compression support form a stable whole. This connection ensures the firmness of the lower shell body and the impact resistance of the product, while avoiding loosening or deformation of the lower shell part.
[0060] The cooperation of the first connecting piece 131 and the second connecting piece 132 enables the compression support 122 to effectively connect the upper shell assembly 11 and the lower shell body 121 into a whole, providing stability and load-bearing capacity for the entire shell structure. Through these two connecting points, the tight fit between the parts of the shell is ensured, thereby improving the stability and service life of the structure.
[0061] Preferably, in the present embodiment, the connecting assembly 13 further comprises a positioning protrusion 133 provided on the outer wall of the compression support 122, the outer wall of which is close to or abuts against the inner wall of the upper shell assembly 11 to realize positioning assembly.
[0062] Preferably, the first connecting member 131 is located on the top surface of the positioning protrusion 133, and the second connecting member 132 is located on the back surface of the positioning protrusion 133. By arranging the first connecting member 131 and the second connecting member 132 on the top surface and the back surface of the positioning protrusion 133 respectively, the conflict between them and the pressing part 1221 is avoided, which enables the pressing part 1221 to work independently, ensures that the bowl body 2 can be smoothly matched with the pressing assembly 3 and accurately fixed in the shell structure 1, thereby realizing accurate positioning and stable fixation.
[0063] Preferably, the lower shell body 121 is provided with a fourth connecting member 1211 corresponding to the second connecting member 132. Preferably, the second connecting member 132 comprises a connecting column, and the fourth connecting member 1211 is a plug-in column. The connecting column is inserted into the plug-in column, and the connection can be realized by screws or clamping members. The appropriate design can be selected according to actual needs.
[0064] In other embodiments, the connecting assembly 13 comprises a first connecting member (such as a screw connection or a clamping connection) arranged between the upper shell assembly 11 and the lower shell body 121, and a second connecting member (such as a screw connection or a clamping connection) arranged between the lower shell body 121 and the pressing bracket 122.
[0065] Or, the connecting assembly 13 comprises a first connecting member (such as a screw connection or a clamping connection) arranged between the upper shell assembly 11 and the lower shell body 121, and a second connecting member (such as a screw connection or a clamping connection) arranged between the upper shell assembly 11 and the pressing bracket 122. The appropriate design can be selected according to actual needs.
[0066] As shown in the drawings, Figures 1 to 6 The pressing assembly 3 of the present embodiment comprises a pressing part 31 arranged on the upper shell assembly 11. When the upper shell assembly 11 and the lower shell assembly 12 are connected together through the connecting assembly 13, the pressing part 31 will contact and apply pressure to the bowl body 2, so as to tightly press the bowl body 2 in the shell structure 1. The function of the pressing part 31 is to ensure that the bowl body 2 can be stably fixed in the shell during the whole use process, and at the same time, to ensure that the baby food constant temperature bowl will not be loosened or fallen off due to vibration or external force during the heating process, thereby ensuring the use stability of the baby food constant temperature bowl.
[0067] Specifically, through the design of the pressing part 31, the bowl body can be fixed by mechanical force, which completely avoids the solidification problem, environmental protection problem and difficulty in cleaning and disassembly caused by using glue, so as to simplify the production process, reduce the potential scrap rate in production, and realize environmental protection.
[0068] And, since the pressing part 31 only relies on mechanical force to fix the bowl body 2, and the structure has a certain detachability, it is more convenient than the glue design during the disassembly, cleaning and maintenance of the product. Consumers can easily disassemble and clean, reducing the difficulty of cleaning, and also facilitating future maintenance and replacement of parts.
[0069] Since the pressing part 31 makes the fixing of the bowl body and the shell structure more stable and can be repeatedly disassembled and assembled, the production line can be flexibly adjusted, the time of relying on glue curing is reduced, and the production efficiency is improved. In addition, the product does not need to wait for the glue to cure during assembly, which also reduces the scrap rate caused by uneven curing or quality problems of the glue.
[0070] Further, by replacing the use of glue and other adhesives with mechanical pressing, not only the material cost is reduced, but also the rework and scrap caused by incomplete curing of the glue are avoided. In addition, the detachable design greatly reduces the maintenance cost in the later period, because each part of the product can be replaced and repaired individually.
[0071] As shown in Figures 1 to 6 The pressing assembly 3 of the present embodiment also includes a first pressing protrusion 32 provided on the outer wall of the bowl body 2, which is located below the pressing part 31.
[0072] In the present embodiment, in addition to the pressing part 31 provided on the upper shell assembly 11, the first pressing protrusion 32 is designed on the outer wall of the bowl body 2, which is located below the pressing part 31. The main function is that when the upper shell assembly 11 is connected to the lower shell assembly 12 through the connecting assembly 13, the pressing part 31 directly acts on the first pressing protrusion 32 through pressure, thereby exerting an effective pressing force on the bowl body 2 to ensure the stable installation of the bowl body in the shell structure.
[0073] Specifically, when the upper shell assembly 11 is connected to the lower shell assembly 12, the pressing part 31 exerts a downward pressure, and the interaction force between the first pressing protrusion 32 and the pressing part 31 firmly fixes the bowl body 2 in the shell structure 1. The first pressing protrusion 32 plays a role in enhancing the pressing effect, making the bowl body 2 and the shell form a more stable and tight fit, and preventing the bowl body from loosening due to external force or vibration.
[0074] Further, the cooperation of the first pressing protrusion 32 and the pressing part 31 can form a physical fixing point on the outer wall of the bowl body. When the upper shell assembly 11 exerts a pressing force, the first pressing protrusion 32 effectively increases the contact area and pressure between the bowl body and the shell, ensuring that the bowl body is more firmly fixed in the shell during the entire use process, preventing the bowl body from loosening or shifting. This improves the stability of the entire product, especially during use, avoiding separation or loosening of the bowl body and the shell due to external interference (such as baby collision, falling, etc.).
[0075] Further, the design of the first pressing protrusion 32 not only enhances the fixing effect of the bowl body, but also helps to improve the sealing performance. Since the pressing part 31 exerts pressure on the first pressing protrusion 32, the sealing performance between the bowl body and the shell structure is improved. This design reduces problems such as temperature fluctuations and leakage caused by poor sealing, thereby improving the safety and use experience of the product.
[0076] In this embodiment, the design of the first pressing protrusion 32 and the pressing part 31 achieves fixation through mechanical means, completely avoiding the use of glue or other adhesives. This not only reduces environmental problems caused by glue, but also improves the convenience during disassembly, avoiding the difficulty of disassembly after the glue solidifies, and facilitating recycling and processing in the later stage.
[0077] In addition, the design of the first pressing protrusion 32 in combination with the pressing part 31 avoids the uncertainty in the traditional glue curing process through the action of mechanical force. For example, problems such as long curing time and incomplete curing of glue can lead to high scrap rates in production. However, by using this mechanical fixation method, higher production precision and efficiency can be achieved, and product assembly and disassembly are more flexible and convenient, which can reduce problems caused by the complexity of the production process.
[0078] Moreover, the first pressing protrusion 32 enhances the stable connection between the bowl body and the shell, which can effectively disperse external impact forces and reduce the risk of damage to the bowl body caused by external forces directly acting on it. Especially when the bowl body is subjected to situations such as falling and colliding during use by babies, the stable connection structure can better protect the bowl body from being damaged, thereby prolonging the service life of the product.
[0079] In other embodiments, the pressing assembly 3 only includes the pressing part 31, which tightly presses the bowl body 2 in the shell structure 1 by abutting against the top of the bowl body 2. The appropriate design can be selected according to actual needs.
[0080] As shown in Figures 1 to 6 In this embodiment, the first pressing protrusion 32 is annular, and the pressing part 31 is also annular. When the upper shell assembly 11 is connected to the lower shell assembly 12 through the connecting assembly 13, the pressing part 31 uniformly exerts pressure downward on the first pressing protrusion 32. Since both are annular, the pressure is more uniformly applied, which can form a stable and uniform pressing force between the bowl body 2 and the shell structure 1, ensuring the firm fixation of the bowl body and better sealing effect.
[0081] Specifically, the contact between the annular pressing part 31 and the annular first pressing protrusion 32 can produce a uniform pressing effect on the entire outer circumference of the bowl, avoiding loosening or poor sealing caused by uneven pressure. The design of the annular structure helps to provide all-round stable support and ensure a tight fit between the bowl and the outer shell.
[0082] Furthermore, the ring design ensures that the pressure of the pressing part 31 on the first pressing protrusion 32 is evenly distributed, avoiding the problem of excessive or insufficient local pressing that may occur in traditional designs. Due to the uniform pressure, the entire bowl 2 can be stably fixed in the outer shell structure 1 without any loosening, thereby greatly enhancing the stability and safety of the bowl.
[0083] Furthermore, the contact between the annular pressing part 31 and the first pressing protrusion 32 forms a complete sealing ring. This design helps to reduce heat leakage that may occur during the heating process of the baby food constant temperature bowl. The improved sealing performance can effectively maintain the temperature, ensure the constant temperature effect of the baby food, and increase the comfort of the user experience. Moreover, this design can improve the sealing and waterproof function of the baby food constant temperature bowl, prevent water from seeping into the outer shell structure 1 from the connection between the pressing part 31 and the first pressing protrusion 32, and ensure that the electrical components (such as batteries, heating elements, etc.) inside the outer shell structure 1 can operate normally.
[0084] Furthermore, the ring-shaped pressing part 31 and the first pressing protrusion 32 make the assembly process simpler and more precise. The ring structure is easy to assemble mechanically, which can improve the assembly accuracy, reduce human error, and make it less likely to have asymmetrical pressure distribution problems during the assembly process, thereby reducing quality problems and scrap rate in production.
[0085] Furthermore, due to the annular structure design, the pressing part 31 can evenly press the first pressing protrusion 32, which not only ensures a firm connection but also makes disassembly simpler. Consumers or repair personnel can easily disassemble the product for cleaning or repair without worrying about uneven pressure or damage to components caused by disassembly. The ease of disassembly further enhances the maintainability of the product.
[0086] like Figures 1 to 6 As shown, an annular waterproof seal 33 is provided between the first pressing protrusion 32 and the pressing part 31 in this embodiment. When the upper shell assembly 11 and the lower shell assembly 12 are connected by the connecting assembly 13, the pressing part 31 applies pressure to the first pressing protrusion 32, so that the first pressing protrusion 32 is in close contact with the pressing part 31, and the annular waterproof seal 33 is located between the two, playing a sealing role to prevent moisture or other liquids from penetrating into the shell structure 1.
[0087] Specifically, the annular waterproof sealing member 33 can fill the tiny gap between the pressing part 31 and the first pressing convex edge 32 under pressure and form an effective sealing barrier to prevent liquid (such as water vapor, liquid food or other moisture) from leaking out through the connection part, which enhances the waterproof performance of the complementary food thermostat bowl and ensures that the temperature control system and other components in the bowl body are not affected by moisture or humidity.
[0088] The main function of the annular waterproof sealing member 33 is to enhance the sealing between the bowl body and the shell, especially during heating, to prevent steam or other moisture from leaking to the outside or inside, which can effectively isolate moisture and prevent hot water, steam or liquid from overflowing, ensuring the function of the complementary food thermostat bowl and the dryness of the use environment, and ensuring that the temperature control system and electronic components of the product are not affected by humidity.
[0089] Further, the complementary food thermostat bowl usually has a temperature control system or heating element, and moisture or humidity may cause damage to these electronic components, resulting in failure or short circuit. By setting the annular waterproof sealing member 33, moisture can be effectively isolated, and important components such as the temperature control system, battery and circuit inside can be protected, thereby prolonging the service life of the product and improving the safety and reliability of the product.
[0090] Specifically, the annular waterproof sealing member 33 can enhance the waterproof performance of the complementary food thermostat bowl, especially when the product needs to contact water or be heated, which can ensure complete waterproof effect, making the product better adapt to various environments (such as high humidity or water contact scenarios), while meeting relevant safety and waterproof standards. Consumers can use it with more confidence and do not need to worry about the safety hazards caused by moisture leakage.
[0091] Preferably, the annular waterproof sealing member 33 is usually made of environmentally friendly materials (such as food-grade silicone or rubber), which not only effectively realizes the sealing function, but also is not easy to age, non-toxic and harmless. In the use process of the product, the sealing member will not release harmful substances, which meets the modern environmental protection requirements and enhances the environmental protection of the product.
[0092] As shown in Figures 1 to 6 The annular waterproof sealing member 33 of the present embodiment includes a waterproof sealing sleeve sleeved outside the first pressing convex edge 32, which is simple to assemble, and the waterproof sealing member can provide friction force for the first pressing convex edge 32 and the pressing part 31, so that they do not easily rotate relative to each other, thereby ensuring that the bowl body does not rotate in the shell structure 1.
[0093] Specifically, in this embodiment, the annular waterproof sealing member 33 includes a waterproof sealing sleeve that is sleeved outside the first compression protrusion 32. This waterproof sealing sleeve not only plays a waterproof sealing role, but also generates friction through close contact with the first compression protrusion 32, thereby preventing relative rotation between the first compression protrusion 32 and the pressing portion 31 in the upper shell assembly 11. When the pressing portion 31 applies pressure through external force, the friction between the waterproof sealing sleeve and the first compression protrusion 32 increases, making the connection between the pressing portion 31 and the first compression protrusion 32 more secure and avoiding loosening or instability caused by rotation during use.
[0094] Specifically, when there is friction between the pressing portion 31 and the first compression protrusion 32, relative rotation between them is inhibited, and the friction formed between the waterproof sealing sleeve and the first compression protrusion 32 ensures that the bowl body 2 is fixed in the shell structure 1, thereby avoiding rotation, tilting, or displacement of the bowl body during use. This design ensures that the bowl body 2 always maintains a stable position in the shell structure 1 and does not loosen or fall off due to rotation or displacement, thereby improving the overall stability of the product, especially during use.
[0095] Further, when the bowl body rotates or displaces, it may cause leakage of complementary food, temperature changes, or effects on the temperature control system, which poses a risk to safety. By setting friction, rotation of the bowl body is avoided, ensuring the safety of the complementary food thermostat bowl during use and reducing accidental leakage or other potential dangers caused by instability of the bowl body.
[0096] Moreover, the waterproof sealing sleeve not only enhances the waterproof sealing effect, but also improves the sealing performance through close contact with the first compression protrusion 32. The increased friction makes the contact between the first compression protrusion 32 and the pressing portion 31 more secure, thereby effectively reducing the leakage of water vapor or liquid and ensuring the stability of the internal temperature control system and the temperature of the food.
[0097] Preferably, the design of the annular waterproof sealing member 33 simplifies the production and assembly process. By sleeving the waterproof sealing sleeve outside the first compression protrusion 32, a secure connection between the bowl body and the shell structure can be ensured without complex assembly steps, which not only improves production efficiency but also reduces product quality problems caused by improper assembly.
[0098] Preferably, the waterproof sealing member 33 can reduce relative movement and wear between the pressing portion 31 and the first compression protrusion 32 during long-term use by increasing friction, reducing wear between components, prolonging service life, and avoiding problems such as sealing failure or insecure connection caused by wear.
[0099] Preferably, the first pressing convex 32 and the pressing part 31 are loose or rotate between each other, which will produce unnecessary noise or vibration, affecting the use experience, and the increase of friction effectively avoids this situation, ensuring that the product is more quiet and stable during use, and improving the user's use experience.
[0100] As shown in Figures 1 to 6 , the pressing part 31 of the embodiment includes a second pressing convex which is inwardly folded at the top of the upper shell assembly 11, the top of the upper shell assembly 11 is provided with a relief hole, the outer wall of the bowl body 2 abuts against the side wall of the second pressing convex, and the bottom of the second pressing convex abuts against the top of the first pressing convex 32. Specifically, the side wall of the second pressing convex abuts against the outer wall of the bowl body 2, and the bottom abuts against the top of the first pressing convex 32. This design combines the coordination of different components to ensure the firm connection between the bowl body 2 and the shell structure 1 during assembly.
[0101] The second pressing convex is inwardly folded from the top of the upper shell assembly, providing an additional pressing area to further reinforce the connection between the bowl body 2 and the shell structure 1 through compression force.
[0102] In addition, the relief hole at the top of the upper shell assembly 11 ensures that the second pressing convex will not be blocked by other components during pressing, avoiding interference or misalignment problems that may occur during assembly, and the relief hole can expose the opening of the bowl body 2 for user use.
[0103] Preferably, the outer wall of the bowl body 2 abuts against the side wall of the second pressing convex, forming an additional support point to prevent the bowl body 2 from rotating or shifting during use. At the same time, the bottom of the second pressing convex abuts against the top of the first pressing convex 32, further ensuring the close fit between the pressing components and improving the sealing and stability.
[0104] Further, the precise fit of the second pressing convex and the first pressing convex can reduce the need for additional fixing components or complex connecting components, simplifying the production and assembly process, which not only reduces production costs, but also improves product consistency and stability.
[0105] As shown in Figures 1 to 6 , the design of the top of the bowl body 2 being higher than the top of the upper shell assembly 11 means that the upper edge of the bowl body 2 protrudes slightly above the top surface of the upper shell assembly 11 in the overall structure. This design is usually related to the fixed position and mounting method of the bowl body and the shell. Specifically, there is a certain height difference between the top of the bowl body 2 and the top of the upper shell assembly 11. This design can provide better support force and stability during assembly.
[0106] And this structure makes the top of the bowl 2 more operable in the shell structure, and in the assembly process, the bowl may be slightly stuck or embedded in the shell, thereby forming a more secure fixing effect, which may also make the shell assembly play a better role in sealing, fixing and overall stability.
[0107] Preferably, the top of the bowl 2 is higher than the top of the upper shell assembly 11, which helps to ensure the sealing between the shell structure and the bowl, and due to the design of the protruding top of the bowl, it can be more closely contacted to the inner side of the shell, thereby improving the sealing effect.
[0108] And the design of the bowl top higher than the upper shell assembly can make the bowl more firmly embedded or stuck in the upper shell assembly, increasing the stability of the structure, and due to more and more stable contact points between the bowl and the shell, displacement or rotation of the bowl during use will be effectively avoided.
[0109] In addition, when the top of the bowl 2 is higher than the upper shell assembly 11, it can effectively prevent food from overflowing the shell structure during heating or use. Food, liquid or steam may expand or evaporate during heating, and the design of the protruding top can provide additional space for these substances to prevent them from overflowing.
[0110] Preferably, the design of the bowl top higher than the upper shell assembly can also give a more modern and fashionable appearance, and its streamlined and protruding shape may be more in line with the aesthetic needs of consumers, and has a certain level of visual appeal, enhancing the visual appeal of the product.
[0111] Preferably, the upper shell assembly 11 can be an upper cover, and the lower shell body 121 can be a shell; or, the upper shell assembly 11 can be a shell, and the lower shell body 121 can be a bottom cover; or, the upper shell assembly 11 is an upper half shell, and the lower shell body 121 is a lower half shell, etc. The appropriate design can be selected according to actual needs.
[0112] Preferably, the shell structure 1 further comprises a top cover assembly 15 capable of closing the opening of the top of the bowl 2, so as to ensure that the bowl 2 is not contaminated by dust or other impurities when not in use.
[0113] As shown in The bowl 2 of the embodiment is made of glass material, specifically, glass as a non-metal material will not be corroded by acidic, alkaline substances or grease like metal, so that the glass bowl 2 can keep the surface smooth and clean during long-term use, without rusting, thereby avoiding the release of metal material or corrosion substances, which is very important for the health of the user, especially in food contact scenarios, to avoid harmful substances entering the food.
[0114] Preferably, many metal materials may release harmful metal components such as lead and cadmium when in contact with food, especially when exposed to oil, acid or alkali for a long time, which may potentially harm human health. However, the bowl body 2 made of glass material can avoid this problem because glass material is generally non-reactive and will not react with the ingredients in food or release harmful substances.
[0115] Since glass material does not react with food, it will not affect the taste or quality of food. In contrast, some metal materials may cause metal ions to enter food at high temperatures or in acidic environments, changing the flavor of food or producing harmful chemicals. The use of a glass bowl body can maintain the original taste and nutritional ingredients of food, ensuring food safety and taste.
[0116] Further, the glass surface is smooth and does not easily absorb oil or stains, and is not easily corroded by acidic or alkaline cleaners. Therefore, the glass bowl body 2 is very easy to clean, and compared to metal materials, glass material is easier to keep clean and less likely to leave stubborn stains or limescale, reducing the difficulty of maintenance and cleaning and improving the user's experience.
[0117] Further, glass material does not have the odor that metal or plastic materials may have, and does not emit harmful gases or chemically contaminate food when used for a long time. In addition, glass material does not contain toxic substances and meets food safety standards, further protecting the user's health.
[0118] Further, glass is a recyclable material that can be recycled at the end of the product's life cycle, reducing the burden on the environment. Compared to disposable plastic or difficult-to-degrade materials, glass is more environmentally friendly and helps achieve the goal of sustainable development.
[0119] Preferably, the bowl body 2 can also be made of materials such as stainless steel, ceramic or silicone, allowing for selection of appropriate designs according to actual needs.
[0120] Preferably, the following are the advantages of the above example materials:
[0121] 1. Stainless steel is not prone to rust and can resist acid, alkali and oil erosion, so it is very suitable for long-term use and has a smooth surface that does not easily stick to stains or oil, making it easy to clean.
[0122] 2. Ceramic can better maintain the temperature of food, especially hot or cold food, which can extend the temperature maintenance time of food, and is non-toxic and odorless, without releasing harmful substances, making it suitable for direct contact with food.
[0123] 3、Silicone has good elasticity and durability, can be used in extreme temperature (from -40 °C to 230 °C), and not easy to deformation, silicone surface has certain anti-skid effect, use will not easily slip, and meet the food safety standards, will not release harmful substances, suitable for food contact.
[0124] In other embodiments, the housing structure 1 is a whole housing structure, the pressing assembly 3 is movably connected to the housing structure, when the bowl 2 is assembled in the housing structure 1, the pressing assembly 3 can press the bowl 2 on the pressing part 1221, the pressing assembly 3 can be rotatably or slidably connected to the housing structure, when it is needed to assemble or disassemble the bowl 2, the pressing assembly 3 can be operated on the housing structure to move away from or close to the bowl 2, so as to realize the pressing or disassembly of the bowl 2.
[0125] In other embodiments, the pressing assembly 3 is movably connected to the housing structure, when the bowl 2 is assembled in the housing structure 1, the pressing assembly 3 can press the bowl 2 on the pressing part 1221, the pressing assembly 3 can be rotatably or slidably connected to the housing structure, when it is needed to disassemble the bowl 2, the pressing assembly 3 can be disassembled to move away from the bowl 2, and suitable design can be selected according to actual needs.
[0126] The above is only to further illustrate the technical content of the present application by way of examples, so that the reader can more easily understand, but does not represent the embodiment of the present application is limited to this, any technical extension or re-creation made according to the present application, are protected by the present application. The scope of protection of the present application is subject to the claims.
Claims
1. A baby food thermostatic bowl, characterized in that, The shell structure (1) and the bowl body (2) are detachably connected, and a pressing assembly (3) is arranged between the shell structure (1) and the bowl body (2), and the shell structure (1) is provided with a pressing part (1221) corresponding to the bowl body (2), when the bowl body (2) is assembled into the shell structure (1), the pressing assembly (3) can press the bowl body (2) on the pressing part (1221), so that the bowl body (2) is assembled into the shell structure (1).
2. The baby food thermostat bowl according to claim 1, wherein, The shell structure (1) comprises an upper shell assembly (11) and a lower shell assembly (12), the pressing assembly (3) is arranged between the upper shell assembly (11) and the bowl body (2), and the pressing part (1221) is arranged in the lower shell assembly (12).
3. The baby food thermostat bowl according to claim 2, wherein, The lower shell assembly (12) comprises a lower shell shell body (121) and a pressing support (122) arranged in the lower shell shell body (121), and the bottom of the pressing support (122) and the lower shell shell body (121) have a containing space (123) capable of containing electrical elements; the pressing part (1221) is arranged at the top of the pressing support (122). The upper shell assembly (11) and the pressing support (122) are provided with a connecting assembly (13) capable of connecting them; or, the upper shell assembly (11) and the lower shell shell body (121) are provided with a connecting assembly (13) capable of connecting them.
4. The baby food thermostat bowl according to claim 1, wherein, The pressing assembly (3) comprises a pressing part (31) arranged in the upper shell assembly (11).
5. The baby food thermostat bowl according to claim 4, wherein, The pressing assembly (3) further comprises a first pressing protruding edge (32) arranged on the outer wall of the bowl body (2), and the first pressing protruding edge (32) is located below the pressing part (31).
6. The baby food thermostat bowl according to claim 5, wherein, The first pressing protruding edge (32) is annular, and the pressing part (31) is annular.
7. The baby food thermostat bowl according to claim 6, wherein, An annular waterproof sealing piece (33) is arranged between the first pressing protruding edge (32) and the pressing part (31).
8. The baby food thermostat bowl according to claim 7, wherein, The annular waterproof sealing piece (33) comprises a waterproof sealing sleeve arranged outside the first pressing protruding edge (32).
9. The baby food thermostat bowl according to claim 4, wherein, The pressing part (31) comprises a second pressing protruding edge folded inward at the top of the upper shell assembly (11), the top of the upper shell assembly (11) is provided with a avoiding hole, the outer wall of the bowl body (2) abuts against the side wall of the second pressing protruding edge, and the bottom of the second pressing protruding edge abuts against the top of the first pressing protruding edge (32).
10. The baby food thermos bowl according to any one of claims 1 to 9, wherein, The bowl body (2) is made of glass.