CN219962592U - Narrow slit air-out type water-free milk warmer - Google Patents

Narrow slit air-out type water-free milk warmer Download PDF

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Publication number
CN219962592U
CN219962592U CN202223297021.3U CN202223297021U CN219962592U CN 219962592 U CN219962592 U CN 219962592U CN 202223297021 U CN202223297021 U CN 202223297021U CN 219962592 U CN219962592 U CN 219962592U
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China
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air
feeding bottle
annular
milk
side plate
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CN202223297021.3U
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Chinese (zh)
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韩永立
张文
廖才鹏
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Zhongshan Hanze Electrical Appliance Technology Co ltd
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Zhongshan Hanze Electrical Appliance Technology Co ltd
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Priority to CN202223297021.3U priority Critical patent/CN219962592U/en
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Abstract

The utility model provides a narrow-slit air-out type water-free milk warmer which comprises a machine body, wherein a milk bottle placing cavity is arranged in the machine body, air-out slits distributed in a circumferential annular mode are formed in the side wall of the milk bottle placing cavity, and a hot air fan and a hot air channel which is communicated with the air-out slits and the hot air fan are arranged in the machine body. According to the utility model, the hot air is blown to the feeding bottle in the feeding bottle placing cavity through the annular air outlet seam, and the feeding bottle in the feeding bottle placing cavity is directly heated, so that the feeding bottle can be heated without being soaked in hot water, the feeding bottle can not occupy moisture when taken out, cleaning of the feeding bottle is not required, the risk of bacterial contamination of the feeding bottle is avoided because hot water is not adopted, meanwhile, hot air can form a circulating vortex in the feeding bottle placing cavity through the annular air outlet seam, the heating effect is higher, the temperature of the milk is faster, time and speed are saved, and the feeding bottle is convenient for a user to use.

Description

Narrow slit air-out type water-free milk warmer
[ field of technology ]
The utility model relates to the technical field of milk warmers, in particular to a narrow-slit air-out type anhydrous milk warmer.
[ background Art ]
The structure of the existing milk warmer is approximately the same, and the working principle is that water is filled into the milk warmer, the water in the milk warmer is heated by a heating body, and then milk in the milk bottle is heated and kept warm by heat transfer of the water. However, when the milk warmer is taken out of the milk bottle, a lot of water is often adhered to the milk bottle, and the water is wiped dry when the milk bottle is used each time, so that the milk bottle is inconvenient to clean. Moreover, the hot water easily breeds bacteria in the milk warmer to pollute the milk bottle, and the danger of the infant being infected can be caused when the infant is fed
There is a need for improvement in view of the above-mentioned problems.
[ utility model ]
The utility model provides a narrow-slit air-out type anhydrous milk warmer, which is convenient for a user to use and can prevent bacteria from breeding in the milk warmer to pollute a milk bottle.
The utility model is realized by the following technical scheme:
the narrow-slit air-out type water-free milk warmer comprises a machine body, a milk bottle placing cavity is arranged in the machine body, air-out slits distributed in a circumferential annular mode are formed in the side wall of the milk bottle placing cavity, and a hot air fan and a hot air channel communicated with the air-out slits and the hot air fan are arranged in the machine body.
As described above, the narrow slit air-out type water-free milk warmer, the hot air channel comprises a hot air channel arranged on the outer side of the feeding bottle placing cavity in a surrounding manner and an air-out channel communicated with the hot air channel and the air-out slit, the air-out channel is obliquely arranged, and the air-out slit is positioned at the lower end of the air-out channel.
As described above, the narrow slit air-out type water-free milk warmer is characterized in that the machine body is internally provided with the annular inner side plate and the annular outer side plate arranged outside the annular inner side plate, the feeding bottle placing cavity is arranged on the inner side of the annular inner side plate, the hot air flow passage is arranged between the annular inner side plate and the annular outer side plate, the annular inner side plate comprises a side plate main body and a first annular guide plate arranged at the upper end of the side plate main body, the annular outer side plate comprises a second annular guide plate arranged above the first annular guide plate, and an air-out channel is formed between the first annular guide plate and the second annular guide plate.
As described above, the narrow slit air-out type water-free milk warmer is characterized in that the machine body is internally provided with the mounting base plate, and the annular inner side plate is arranged on the mounting base plate.
The narrow slit air-out type water-free milk warmer is characterized in that the lower end of the side plate main body is provided with the clamping hook part which is used for being clamped on the mounting substrate.
The narrow-slit air-out type waterless milk warmer is characterized in that the lower end of the side plate main body is provided with a fastening part used for being fastened and connected with the mounting base plate.
As mentioned above, the mounting base plate is provided with an elastic temperature sensing device which can extend into the feeding bottle placing cavity.
As described above, the narrow slit air-out type water-free milk warmer comprises a fixed seat fixedly connected to the mounting substrate, a top pressure spring arranged on the fixed seat, a movable seat inserted into the milk bottle placing cavity under the top pressure of the top pressure spring, and a temperature sensing sensor arranged on the movable seat.
Compared with the prior art, the utility model has the following advantages:
according to the utility model, the hot air is blown to the feeding bottle in the feeding bottle placing cavity through the annular air outlet seam, and the feeding bottle in the feeding bottle placing cavity is directly heated, so that the feeding bottle can be heated without being soaked in hot water, the feeding bottle can not occupy moisture when taken out, the feeding bottle is not cleaned, the feeding bottle is convenient for a user to use, the risk of bacterial contamination of the feeding bottle is avoided because the hot water is not adopted, meanwhile, the hot air can form a circulating vortex in the feeding bottle placing cavity through the annular air outlet seam, the heating effect is higher, the temperature of the milk is faster, the time is saved, the speed is higher, and the use is convenient for the user.
[ description of the drawings ]
In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings that are required to be used in the description of the embodiments will be briefly described below.
FIG. 1 is a schematic diagram of a narrow slit air-out type waterless milk warmer of the present utility model;
FIG. 2 is a cross-sectional view taken along line A-A of FIG. 1;
FIG. 3 is a schematic view of the baby bottle of FIG. 2 with the baby bottle disposed therein;
FIG. 4 is a schematic view of the structure of the annular inner side plate of the present utility model;
fig. 5 is a schematic structural diagram of the elastic temperature sensing device of the present utility model.
[ detailed description ] of the utility model
In order to make the technical problems, technical schemes and beneficial effects solved by the utility model more clear, the utility model is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the utility model.
When embodiments of the present utility model refer to the ordinal terms "first," "second," etc., it is to be understood that they are merely used for distinguishing between them unless the order of their presentation is indeed dependent on the context.
In the description of the present utility model, it should be noted that, unless explicitly specified and limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be either fixedly connected, detachably connected, or integrally connected, for example; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium, and can be communication between two elements. The specific meaning of the above terms in the present utility model will be understood in specific cases by those of ordinary skill in the art.
Examples: the narrow slit air-out type water-free milk warmer shown in fig. 1 to 5 comprises a machine body 1, a milk bottle placing cavity 11 is arranged in the machine body 1, air-out slits 2 distributed in a circumferential annular mode are arranged on the side wall of the milk bottle placing cavity 11, and a hot air fan 3 and a hot air channel 4 communicated with the air-out slits 2 and the hot air fan 3 are arranged in the machine body 1. In this embodiment, blow the feeding bottle of placing the intracavity to the feeding bottle through annular air-out seam air-out, directly place the feeding bottle of intracavity to the feeding bottle and heat, make the feeding bottle need not soak in hot water like this and also heat, the feeding bottle just can not possess moisture when taking out, need not clean the feeding bottle, and because do not adopt hot water, just there is not the risk of breeding the bacterial contamination feeding bottle, can make hot-blast in the feeding bottle place the intracavity through annular air-out seam air-out simultaneously and form the circulation vortex, the heating effect is higher, milk temperature intensification is faster, and is more save time, swiftly, convenience of customers uses. In this embodiment, blow the feeding bottle of placing the intracavity to the feeding bottle through annular air-out seam air-out, directly place the feeding bottle of intracavity to the feeding bottle and heat, make the feeding bottle need not soak in hot water like this and also heat, the feeding bottle just can not possess moisture when taking out, need not clean the feeding bottle, convenience of customers uses, and because do not adopt hot water, just there is not the risk of breeding the bacterial contamination feeding bottle, can make hot-blast in the feeding bottle place intracavity and form the circulation vortex through annular air-out seam air-out simultaneously, the heating effect is higher, milk temperature intensification is more quick, more save time, swiftly, convenience of customers uses.
Further, the hot air channel 4 includes a hot air channel 41 disposed around the outside of the feeding bottle accommodating cavity 11 and an air outlet channel 42 communicating the hot air channel 41 with the air outlet slot 2, the air outlet channel 42 is disposed obliquely, and the air outlet slot 2 is disposed at the lower end of the air outlet channel 42. The air outlet channel 42 is obliquely arranged, so that hot air can be blown to the bottom of the feeding bottle placing cavity 11, namely to the bottom of the feeding bottle when the feeding bottle is heated,
further, in order to effectively form the air outlet channel 42, an annular inner side plate 5 and an annular outer side plate 6 arranged on the outer side of the annular inner side plate 5 are arranged in the machine body 1, the feeding bottle placing cavity 11 is arranged on the inner side of the annular inner side plate 5, the hot air flow channel 41 is arranged between the annular inner side plate 5 and the annular outer side plate 6, the annular inner side plate 5 comprises a side plate main body 51 and a first annular guide plate 52 arranged at the upper end of the side plate main body 51, the annular outer side plate 6 comprises a second annular guide plate 61 arranged above the first annular guide plate 52, and the air outlet channel 42 is formed between the first annular guide plate 52 and the second annular guide plate 61. Simple structure, convenient assembly.
Further, in order to facilitate the installation of the annular inner side plate 5 in the machine body 1, an installation substrate 7 is disposed in the machine body 1, and the annular inner side plate 5 is disposed on the installation substrate 7.
Further, a hook 53 for being engaged with the mounting board 7 is provided at the lower end of the side plate main body 51. The lower end of the side plate main body 51 is provided with a fastening portion 54 for fastening and connecting with the mounting board 7. When the annular inner side plate 5 is installed on the installation substrate 7, the annular inner side plate 5 is pre-clamped on the installation substrate 7 through the clamping hook part 53, then the fastening part 54 and the installation substrate 7 are connected through the fastening part, and the annular inner side plate 5 can be stably installed on the installation substrate 7.
Further, in order to effectively detect the temperature of the feeding bottle in the feeding bottle placing cavity 11, the mounting substrate 7 is provided with an elastic temperature sensing device 8 which can extend into the feeding bottle placing cavity 11. When milk warming is needed, the milk bottle is placed in the milk bottle placing cavity 11, and the bottom of the milk bottle is clung to the elastic temperature sensing device 8 at the moment, so that the elastic temperature sensing device 8 accurately detects the temperature of the milk bottle.
Further, the elastic temperature sensing device 8 includes a fixed base 81 fixedly connected to the mounting substrate 7, a pressing spring 82 disposed on the fixed base 81, a movable base 83 inserted into the feeding bottle placing cavity 11 under the pressing of the pressing spring 82, and a temperature sensing sensor 84 disposed on the movable base 83. When the feeding bottle is placed into the feeding bottle placing cavity 11, the temperature sensing sensor 84 can be elastically clung to the bottom of the feeding bottle through the jacking spring 82, so that the temperature sensing sensor 84 accurately detects the temperature of the feeding bottle, and the feeding bottle placing device is simple in structure and convenient for a user to use.
The working principle of the embodiment is as follows:
in this embodiment, blow the feeding bottle of placing the intracavity to the feeding bottle through annular air-out seam air-out, directly place the feeding bottle of intracavity to the feeding bottle and heat, make the feeding bottle need not soak in hot water like this and also heat, the feeding bottle just can not possess moisture when taking out, need not clean the feeding bottle, convenience of customers uses, and because do not adopt hot water, just there is not the risk of breeding the bacterial contamination feeding bottle, can make hot-blast in the feeding bottle place intracavity and form the circulation vortex through annular air-out seam air-out simultaneously, the heating effect is higher, milk temperature intensification is more quick, more save time, swiftly, convenience of customers uses.
The above description of various embodiments provided in connection with the specific disclosure is not intended to limit the practice of the utility model to those descriptions. The method, structure, etc. similar to or identical to those of the present utility model, or some technical deductions or substitutions are made on the premise of the inventive concept, should be regarded as the protection scope of the present utility model.

Claims (8)

1. The narrow-slit air-out type water-free milk warmer comprises a machine body (1), and is characterized in that a milk bottle placing cavity (11) is arranged in the machine body (1), air-out slits (2) distributed in a circumferential annular mode are arranged on the side wall of the milk bottle placing cavity (11), and a hot air fan (3) and a hot air channel (4) which is communicated with the air-out slits (2) and the hot air fan (3) are arranged in the machine body (1); the utility model discloses a feeding bottle, including feeding bottle, hot-blast passageway (4) are located including the ring hot-blast passageway (41) and the intercommunication in the feeding bottle placed the chamber (11) outside hot-blast passageway (41) with air-out passageway (42) of air-out seam (2), be equipped with annular interior side board (5) in organism (1), feeding bottle placed the chamber (11) and locate the inboard of annular interior side board (5), annular interior side board (5) include curb plate main part (51) and locate first annular guide plate (52) of curb plate main part (51) upper end, first annular guide plate (52) top is equipped with second annular guide plate (61), first annular guide plate (52) with form between second annular guide plate (61) air-out passageway (42).
2. The narrow slit air-out type water-free milk warmer of claim 1, wherein the air-out passage (42) is obliquely arranged, and the air-out slit (2) is located at the lower end of the air-out passage (42).
3. The narrow slit air-out type water-free milk warmer according to claim 2, wherein an annular outer side plate (6) arranged outside the annular inner side plate (5) is arranged in the machine body (1), the hot air flow passage (41) is arranged between the annular inner side plate (5) and the annular outer side plate (6), and the annular outer side plate (6) comprises the second annular guide plate (61).
4. A slot air-out type waterless milk warmer according to claim 3, wherein a mounting base plate (7) is arranged in the machine body (1), and the annular inner side plate (5) is arranged on the mounting base plate (7).
5. The narrow slit air-out type waterless milk warmer of claim 4, wherein a clamping hook portion (53) for being clamped on the mounting substrate (7) is arranged at the lower end of the side plate main body (51).
6. The narrow slit air-out type waterless milk warmer of claim 4, wherein a fastening portion (54) for fastening connection with the mounting substrate (7) is provided at a lower end of the side plate main body (51).
7. The narrow slit air-out type waterless milk warmer of claim 6, wherein the mounting base plate (7) is provided with an elastic temperature sensing device (8) which can extend into the milk bottle placing cavity (11).
8. The narrow slit air-out type water-free milk warmer according to claim 7, wherein the elastic temperature sensing device (8) comprises a fixed seat (81) fixedly connected to the mounting substrate (7), a top pressure spring (82) arranged on the fixed seat (81), a movable seat (83) inserted into the milk bottle placing cavity (11) under the top pressure of the top pressure spring (82), and a temperature sensing sensor (84) arranged on the movable seat (83).
CN202223297021.3U 2022-12-08 2022-12-08 Narrow slit air-out type water-free milk warmer Active CN219962592U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223297021.3U CN219962592U (en) 2022-12-08 2022-12-08 Narrow slit air-out type water-free milk warmer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223297021.3U CN219962592U (en) 2022-12-08 2022-12-08 Narrow slit air-out type water-free milk warmer

Publications (1)

Publication Number Publication Date
CN219962592U true CN219962592U (en) 2023-11-07

Family

ID=88591524

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223297021.3U Active CN219962592U (en) 2022-12-08 2022-12-08 Narrow slit air-out type water-free milk warmer

Country Status (1)

Country Link
CN (1) CN219962592U (en)

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