CN212878920U - Multifunctional heating and heat-preserving container combination and multifunctional heating and heat-preserving container - Google Patents

Multifunctional heating and heat-preserving container combination and multifunctional heating and heat-preserving container Download PDF

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Publication number
CN212878920U
CN212878920U CN202020087338.6U CN202020087338U CN212878920U CN 212878920 U CN212878920 U CN 212878920U CN 202020087338 U CN202020087338 U CN 202020087338U CN 212878920 U CN212878920 U CN 212878920U
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China
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container
shell
heating
inner bag
heat
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CN202020087338.6U
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Chinese (zh)
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吉建刚
郑全礼
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Guangdong Jimi Youpin Intelligent Technology Co ltd
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Guangdong Jimi Youpin Intelligent Technology Co ltd
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Priority to CN202022345590.5U priority patent/CN214230913U/en
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Abstract

The utility model discloses a multi-functional heating heat preservation container combination and multi-functional heating heat preservation container, including multi-functional heating heat preservation container and rather than the complex charging base, wherein, multi-functional heating heat preservation container includes the container main part, the container main part includes the container inner bag, be equipped with in the container inner bag week side with the container inner bag forms the vacuum cavity and makes exposed container shell in container inner bag bottom, be equipped with on the container inner bag and make the exerted container support piece in container inner bag bottom, container shell with be equipped with the connecting plate between the container support piece, container shell container support piece the connecting plate with the formation is assembled to the container inner bag lateral wall the vacuum cavity. The problem of the cup of current accuse temperature cup adopt single-deck steel sheet structure, the cup heat dissipation is fast, keeps warm and relies on the electric energy heating completely, leads to the electric quantity consumption too fast of the battery that is used for the power supply in the container accuse temperature bottom is overcome.

Description

Multifunctional heating and heat-preserving container combination and multifunctional heating and heat-preserving container
[ technical field ] A method for producing a semiconductor device
The application relates to a heating container, in particular to a multifunctional heating and heat-preserving container combination and a multifunctional heating and heat-preserving container.
[ background of the invention ]
The temperature control cup is a heat preservation container which can heat water or other tea drinks in the cup to a specified temperature according to the use requirement. The existing temperature control cup consists of two parts, specifically a cup body for containing water or other tea drinks and a container temperature control bottom arranged at the bottom of the cup body for heating the water or other tea drinks in the cup body. Because the cup body of the existing temperature control cup adopts a structure of a single-layer steel plate, the heat dissipation of the cup body is fast, the heat preservation completely depends on electric energy heating, in order to maintain the heat preservation temperature, the temperature control bottom of the container needs to be continuously heated to maintain the constancy of the temperature, and therefore the electric quantity of a battery used for supplying power in the temperature control bottom of the container is too fast.
[ Utility model ] content
The utility model discloses to the cup of the current accuse temperature cup that above-mentioned prior art exists adopts individual layer steel sheet structure, and the cup heat dissipation is fast, keeps warm and relies on the electric energy heating completely, leads to the too fast problem of electric quantity consumption of the battery that is used for the power supply in the container accuse temperature bottom to make the improvement, provides a multi-functional heating heat preservation container.
In order to solve the technical problem, the multifunctional heating and heat-insulating container comprises a container body, wherein the container body comprises a container liner, and container shells which are arranged on the sides of the container liner, form a vacuum cavity with the container liner and enable the bottoms of the container liner to be exposed are arranged on the sides of the container liner.
As an improvement of the multifunctional heating and heat-insulating container, the container liner is provided with a container support piece which enables the bottom of the container liner to be exposed, a connecting plate is arranged between the container shell and the container support piece, and the container shell, the container support piece, the connecting plate and the side wall of the container liner are assembled to form the vacuum cavity.
As an improvement of the multifunctional heating and heat-preserving container, one end of the connecting plate close to the container supporting piece is bent upwards or downwards.
As an improvement of the multifunctional heating and heat-insulating container, the container liner is provided with a container supporting piece which enables the bottom of the container liner to be exposed, one end, far away from the container liner, of the container supporting piece is connected to the container shell, and the container shell, the container supporting piece and the side wall of the container liner are assembled to form the vacuum cavity.
As an improvement of above-mentioned multi-functional heating heat preservation container, be equipped with the heating plate on the container inner bag, be equipped with in the container main part and be used for the heating the container accuse temperature bottom of container main part, container accuse temperature bottom is including setting up base shell on the container shell, be equipped with in the base shell and be used for doing the power supply unit of heating plate power supply, power supply unit is including setting up battery in the base shell, be connected with control mainboard, charging ring and on the battery the heating plate, charging ring one side extends the base shell outside, be equipped with on the base shell and be used for opening and close the switch of battery, be equipped with the temperature regulation touch position that is used for adjusting heating temperature on the base shell.
The utility model discloses cup to above-mentioned current accuse temperature cup adopts individual layer steel sheet structure, and the cup heat dissipation is fast, keeps warm and relies on the electric energy heating completely, leads to the too fast problem of electric quantity consumption of the battery that is used for the power supply in the container accuse temperature bottom to make the improvement, provides a multi-functional heating heat preservation container combination.
The utility model provides a combination of multi-functional heating heat preservation container, is including the charging base who cooperates multi-functional heating heat preservation container, the charging base who cooperates multi-functional heating heat preservation container includes base shell, be equipped with the thimble in the base shell, the cover is equipped with the insulating layer on the thimble, cup joint on the insulating layer to the outer elasticity roof pressure of base shell the thimble makes the thimble remove to stretch out or retract base shell's elastic component, be connected with conductive terminal on the thimble, be equipped with as above on the charging base who cooperates multi-functional heating heat preservation container.
Compared with the prior art, the utility model has the advantages of as follows:
the utility model provides a multi-functional heating heat preservation container, including the vessel main part, the vessel main part includes container inner bag and vessel shell, the vessel shell with the container inner bag forms the vacuum cavity, just the vessel shell does not have the cladding the bottom of container inner bag. By adopting the structure, the temperature attenuation speed of water or other liquid in the container liner is reduced by utilizing the non-heat-conducting physical characteristic of the vacuum cavity, so that the temperature control bottom of the container matched with the vacuum cavity does not need to continuously heat the container main body to maintain the constant temperature, the consumption of electric quantity is reduced, and the cruising ability of the battery is improved. The problem of the cup of current accuse temperature cup adopt single-deck steel sheet structure, the cup heat dissipation is fast, keeps warm and relies on the electric energy heating completely, leads to the electric quantity consumption too fast of the battery that is used for the power supply in the container accuse temperature bottom is overcome.
[ description of the drawings ]
In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings used in the description of the embodiments will be briefly introduced below.
FIG. 1 is a perspective view of the multifunctional heating and insulating container of the present application;
FIG. 2 is a cross-sectional view of the multi-purpose heating and insulating container of the present application;
FIG. 3 is an enlarged view of a portion of FIG. 2 at A;
FIG. 4 is a second embodiment of the container body of the multipurpose heating and insulating container of the present application;
FIG. 5 is a partial enlarged view of the portion B in FIG. 4;
FIG. 6 shows a third embodiment of the container body of the multipurpose heating and insulating container according to the present invention;
FIG. 7 is an enlarged view of a portion of FIG. 6 at C;
FIG. 8 is a perspective view of the charging base of the multifunctional heating and heat-preserving container of the present application;
FIG. 9 is an exploded view of the charging base of the present application in combination with a multifunctional heating and insulating container;
FIG. 10 is a cross-sectional view of the charging base of the present application in combination with a multifunctional heating and insulating container;
fig. 11 is a partial enlarged view of fig. 10 at D.
[ detailed description ] embodiments
In order to make the technical problems, technical solutions and advantageous effects solved by the present application more clear and obvious, the present application 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 merely illustrative of the present application and are not intended to limit the present application.
The multifunctional heating and heat-preserving container shown in fig. 1-3 comprises a container main body 30, wherein the container main body 30 comprises a container liner 8, and a container shell 10 forming a vacuum cavity 9 with the container liner 8 is arranged on the container liner 8 in the circumferential direction. The container outer shell 10 does not cover the bottom of the container inner 8. The cavity formed by the container liner 8 and the container shell 10 is a vacuum cavity 9, which has a heat preservation function because of air isolation. By adopting the structure, the temperature attenuation speed of water or other liquid in the container liner 8 is reduced by utilizing the physical heat insulation function of the vacuum cavity 9, so that the container temperature control bottom matched with the vacuum cavity does not need to continuously heat the container main body to maintain the constancy of the temperature, thereby reducing the loss of the electric quantity of the battery, further prolonging the service life of the battery and improving the cruising ability. The problem of the cup of current accuse temperature cup adopt single-deck steel sheet structure, the cup heat dissipation is fast, keeps warm and relies on the electric energy heating completely, leads to the electric quantity consumption too fast of the battery that is used for the power supply in the container accuse temperature bottom is overcome.
The vacuum chamber 9 is provided with a vacuum hole on the container body 30 to extract air therein, so that the container body has a physical heat preservation effect.
As can be seen from fig. 1 to 3, the container liner 8 is provided with a container support 16 bent and attached to a side wall of the container liner 8, the container support 16 has a cavity exposing a bottom of the container liner 8, the container support 16 is fixed to the side wall of the container liner 8 by an annular welding process, a connecting plate 17 is provided between the container support 16 and the container shell 10, a cross section of the connecting plate 17 is U-shaped, and two ends of the connecting plate 17 are fixed to the container shell 10 and the container support 16 respectively by an annular welding process. As can be seen, the container shell 10, the container support 16, the connecting plate 17 and the side wall of the container liner 8 are welded together and a vacuum process is adopted to form the vacuum cavity 9. Utilize split type plate welding to assemble the formation the structure of vacuum cavity 9 has solved the external container 10 lug weld form on the container inner bag 8 the problem that the defective rate is high during the vacuum cavity 9, avoided simultaneously the external container 10 bends and forms the problem that big fillet is not pleasing to the eye. Meanwhile, the vacuum cavity 9 extends to the bottom, the size of the vacuum cavity 9 is further enlarged, and the heat preservation effect of the container is further enhanced.
Fig. 4 shows an embodiment of a multifunctional heating and heat-preserving container, which differs from the above embodiments only in the shape of the connecting plate 17, and it can be seen from the figure that one end of the connecting plate 17 close to the container support 16 is bent to extend into the vacuum chamber 9, and the connecting plate 17 is welded with the support 16 in a tight fit manner.
As can be seen from fig. 6 to 7, the container liner 8 is provided with a container support 16 bent and attached to a side plate of the container liner 8, one end of the container support 16 away from the container liner 8 is connected to the container shell 10, two ends of the container support 16 are welded to the container liner 8 and the container shell 10 by an annular welding process, and the container shell 10, the container support 16 and the container liner 8 are welded to side walls thereof and form the vacuum chamber 9 by a vacuum pumping process. Utilize split type plate welding to assemble the formation the structure of vacuum cavity 9 has solved the external container 10 lug weld form on the container inner bag 8 the problem that the defective rate is high during the vacuum cavity 9, avoided simultaneously the external container 10 bends and forms the problem that big fillet is not pleasing to the eye. Meanwhile, the vacuum cavity 9 extends to the bottom, the size of the vacuum cavity 9 is further enlarged, and the heat preservation effect of the container is further enhanced.
Can know by the multi-functional heating heat preservation container shown in fig. 1-2, furtherly, be equipped with heating plate 211 on the container inner bag 8, be equipped with on the container main part 30 and be used for the heating container accuse temperature bottom 100 of container main part 30, container accuse temperature bottom 100 is including setting up base shell 20 on the container shell 10, be equipped with in the base shell 20 and be used for doing power supply unit 21 of heating plate 211 power supply, power supply unit 21 is including setting up battery 212 in the base shell 20, the last electricity of battery 212 is connected with control mainboard 213, charging ring 214 and heating plate 211, charging ring 214 one side extends to the base shell 20 outside, be equipped with on the base shell 20 and be used for opening and close the switch 23 of battery 212. A bracket for fixing the battery 212 is arranged in the container shell 10, and a heat insulation layer is arranged between the battery 212 and the heating sheet 211. By adopting the structure, the structure is compact and reasonable.
As can be seen from fig. 1-2, the multifunctional heating and heat-preserving container further includes a temperature-adjusting touch position 24 for adjusting temperature on a side wall of the base casing 20. The user passes through temperature regulation touches position 24 can adjust the temperature of needs directly perceivedly, simultaneously, temperature regulation touches position 24 and sets up can avoid user's mistake to bump on the lateral wall of base shell 20.
The charging base matched with the multifunctional heating and heat-preserving container shown in fig. 8-11 comprises a base shell 1, wherein a thimble 2 in contact with the charging ring 214 is arranged in the base shell 1, an insulating layer 3 is sleeved on the thimble 2, the insulating layer 3 is sleeved with an elastic piece 4 which elastically pushes the thimble 2 outwards from the base shell 1 to enable the thimble 2 to move and extend out or retract into the base shell 1, and the thimble 3 is connected with a conductive terminal 5. As can be seen from the figure, the elastic member 4 is sleeved on the insulating layer 3, the elastic member 4 elastically presses the thimble 2 toward the outside of the base housing 1, so that the thimble 2 extends out of or retracts into the base housing 1, and the thimble 2 is electrically connected to an external circuit through the conductive terminal 5 arranged thereon. The elastic piece 4 has no current passing through the thimble 2 in the process of being electrically connected with an external circuit, and by adopting the structure, the problem that the thimble cannot rebound and reset due to the fact that the spring in the charging base is arranged in the thimble and the overlarge current easily causes the failure of the spring in the processes of powering on the charging base and the external circuit in the prior art is solved, so that the situation that the thimble cannot smoothly extend out or retract into the base shell 1 after the spring loses elasticity is avoided.
As can be seen from fig. 8 to fig. 11, the charging base for a multifunctional heating and heat-preserving container further includes a base housing 1 including an upper base housing 11 and a lower base housing 12 covering the upper base housing 11, the lower base housing 12 is provided with an annular groove 13 for placing the elastic element 4, and the thimble 2 is disposed in a mounting hole 14 formed by the annular groove 13. With this structure, the annular groove 13 and the mounting hole 14 formed by the annular groove 13 play a role of fixing the elastic element 4 and the thimble 2, so that the structure is more stable and reliable.
As can be known from the charging base matched with the multifunctional heating and heat-preserving container shown in fig. 8-11, further, the insulating layer 3 includes a lower insulating layer 31 and an upper insulating layer 32 disposed on the lower insulating layer 31, the conductive terminal 5 is disposed between the lower insulating layer 31 and the upper insulating layer 32, and the elastic member 4 is sleeved on the lower insulating layer 31. By adopting the structure, the purpose that the elastic piece 4 is not contacted with current is realized while the thimble 2 is electrically connected with an external circuit, the conductive terminal 5 is arranged between the lower insulating layer 31 and the insulating layer 32, the conductive terminal 5 is prevented from being contacted with other accessories, the safety is enhanced, and the insulating layer 3 can be high-temperature-resistant silica gel.
As can be seen from the charging base shown in fig. 8 to 11, in cooperation with the multifunctional heating and heat-preserving container, further, a through hole 33 with an opening gradually increasing toward the conductive terminal 5 is formed in the lower insulating layer 31, and the thimble 2 is sleeved in the through hole 33. The conductive terminal 5 and the thimble 2 are fixed by welding, and enough soldering positions are reserved in the through hole 33. With this structure, the stability of the conductive terminal 5 is enhanced, and the movement of the conductive terminal 5 is prevented.
As can be seen from the charging base shown in fig. 8 to 11, in cooperation with the multifunctional heating and heat-preserving container, further, the thimble 2 is provided with a stopper 6 for controlling the height of the thimble 2 extending out of the base housing 1. The drawing shows a specific structure of the limit block 6, the limit block 6 can control the extending height of the thimble 2 by adjusting the specific position of the limit block 6 while the thimble 2 can not be completely separated from the housing 1 by extending outward at the peripheral side of the thimble 2, and by adopting the structure, the stability and the safety of the structure are enhanced.
The multifunctional heating and heat-preserving container combination comprises a cover, wherein the cover covers the multifunctional heating and heat-preserving container, and the multifunctional heating and heat-preserving container is placed on a charging base matched with the multifunctional heating and heat-preserving container. By adopting the combination, the problem that the electric quantity of a battery used for supplying power in the temperature control bottom of the container is too fast due to the fact that the cup body of the conventional temperature control cup is of a single-layer steel plate structure, the heat dissipation of the cup body is fast, and the heat preservation completely depends on electric energy heating is solved, and the problem that the ejector pin cannot rebound and reset due to the fact that the spring in the charging base is embedded in the ejector pin and too large current is easily caused in the processes of electrifying the charging base and the outside.
The utility model discloses scheme a multi-functional heating heat preservation container's theory of operation as follows:
the utility model provides a multi-functional heating heat preservation container, including the vessel main part, the vessel main part includes container inner bag and vessel shell, the vessel shell with the container inner bag forms the vacuum cavity, just the vessel shell does not have the cladding the bottom of container inner bag. By adopting the structure, the temperature attenuation speed of water or other liquid in the container liner is reduced by utilizing the non-heat-conducting physical characteristic of the vacuum cavity, so that the temperature control bottom of the container matched with the vacuum cavity does not need to continuously heat the container main body to maintain the constant temperature, the consumption of electric quantity is reduced, and the cruising ability of the battery is improved. The problem of the cup of current accuse temperature cup adopt single-deck steel sheet structure, the cup heat dissipation is fast, keeps warm and relies on the electric energy heating completely, leads to the electric quantity consumption too fast of the battery that is used for the power supply in the container accuse temperature bottom is overcome.
It should be understood that the terms "first", "second", etc. are used herein to describe various information, but the information should not be limited to these terms, and these terms are only used to distinguish one type of information from another. For example, "first" information may also be referred to as "second" information, and similarly, "second" information may also be referred to as "first" information, without departing from the scope of the present application. Furthermore, the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience in describing the present application and simplifying the description, but do not indicate or imply that the referred devices or elements must have a specific orientation, be constructed in a specific orientation, and be operated, and thus, should not be construed as limiting the present application.
The foregoing is illustrative of one or more embodiments provided in connection with the detailed description and is not intended to limit the disclosure to the particular forms disclosed. Similar or identical methods, structures, etc. as used herein, or several technical inferences or substitutions made on the concept of the present application should be considered as the scope of the present application.

Claims (5)

1. The utility model provides a multi-functional heating heat preservation container, includes container main body (30), its characterized in that, container main body (30) are including container inner bag (8), be equipped with on container inner bag (8) week side with container inner bag (8) form vacuum cavity (9) and make container inner bag (8) bottom exposed container shell (10), be equipped with on container inner bag (8) and make container inner bag (8) bottom exposed container support piece (16), container shell (10) with be equipped with connecting plate (17) between container support piece (16), container shell (10) container support piece (16) connecting plate (17) with container inner bag (8) lateral wall is assembled and is formed vacuum cavity (9).
2. The multipurpose heating and insulating container according to claim 1, wherein one end of the connecting plate (17) near the container support (16) is bent upward or downward.
3. The multifunctional heating and heat-preserving container as claimed in claim 1, wherein the container liner (8) is provided with a container support member (16) for exposing the bottom of the container liner (8), one end of the container support member (16) far away from the container liner (8) is connected to the container shell (10), and the container shell (10), the container support member (16) and the side wall of the container liner (8) are assembled to form the vacuum cavity (9).
4. The multifunctional heating and heat-preserving container according to claim 1, wherein a heating sheet (211) is arranged on the container inner container (8), a container temperature control bottom (100) for heating the container main body (30) is arranged on the container main body (30), the container temperature control bottom (100) comprises a base shell (20) arranged on the container shell (10), a power supply device (21) for supplying power to the heating sheet (211) is arranged in the base shell (20), the power supply device (21) comprises a battery (212) arranged in the base shell (20), the battery (212) is electrically connected with a control main board (213), a charging ring (214) and the heating sheet (211), one side of the charging ring (214) extends to the outer side of the base shell (20), and a switch (23) for opening and closing the battery (212) is arranged on the base shell (20), and a temperature adjusting touch position (24) for adjusting the heating temperature is arranged on the base shell (20).
5. The multifunctional heating and heat-preserving container combination is characterized by comprising a charging base matched with the multifunctional heating and heat-preserving container, wherein the charging base matched with the multifunctional heating and heat-preserving container comprises a base shell (1), a thimble (2) is arranged in the base shell (1), an insulating layer (3) is sleeved on the thimble (2), the insulating layer (3) is sleeved with an elastic piece (4) which elastically pushes and presses the thimble (2) outwards from the base shell (1) so that the thimble (2) can move to extend out or retract into the base shell (1), the thimble (2) is connected with a conductive terminal (5), and the charging base matched with the multifunctional heating and heat-preserving container is provided with the multifunctional heating and heat-preserving container according to any one of claims 1-4.
CN202020087338.6U 2020-01-14 2020-01-14 Multifunctional heating and heat-preserving container combination and multifunctional heating and heat-preserving container Active CN212878920U (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN202020087338.6U CN212878920U (en) 2020-01-14 2020-01-14 Multifunctional heating and heat-preserving container combination and multifunctional heating and heat-preserving container
CN202022345590.5U CN214230913U (en) 2020-01-14 2020-01-14 Charging base matched with multifunctional heating and heat-insulating container

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020087338.6U CN212878920U (en) 2020-01-14 2020-01-14 Multifunctional heating and heat-preserving container combination and multifunctional heating and heat-preserving container

Related Child Applications (1)

Application Number Title Priority Date Filing Date
CN202022345590.5U Division CN214230913U (en) 2020-01-14 2020-01-14 Charging base matched with multifunctional heating and heat-insulating container

Publications (1)

Publication Number Publication Date
CN212878920U true CN212878920U (en) 2021-04-06

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CN202020087338.6U Active CN212878920U (en) 2020-01-14 2020-01-14 Multifunctional heating and heat-preserving container combination and multifunctional heating and heat-preserving container
CN202022345590.5U Active CN214230913U (en) 2020-01-14 2020-01-14 Charging base matched with multifunctional heating and heat-insulating container

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CN202022345590.5U Active CN214230913U (en) 2020-01-14 2020-01-14 Charging base matched with multifunctional heating and heat-insulating container

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CN214230913U (en) 2021-09-21

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