CN206775764U - A portable thick film multi-dimensional heating module - Google Patents

A portable thick film multi-dimensional heating module Download PDF

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CN206775764U
CN206775764U CN201720033026.5U CN201720033026U CN206775764U CN 206775764 U CN206775764 U CN 206775764U CN 201720033026 U CN201720033026 U CN 201720033026U CN 206775764 U CN206775764 U CN 206775764U
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heating
main body
heat
shell
nano
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苏冠贤
周善智
项立显
郑劝文
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Dongguan Corehelm Electronic Technology Co ltd
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Dongguan Corehelm Electronic Technology Co ltd
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Abstract

The utility model discloses a portable thick film multi-dimensional heating module, which comprises an electric connection base and a heating main body arranged above the electric connection base, wherein the electric connection base comprises a base shell, an electric connection control circuit board, a power plug, a power line and a waterproof socket; the heating main part includes main body cover, heat conduction substrate inner bag, waterproof plug, main part lid, and heat conduction substrate inner bag bottom surface printing or spraying have the nanometer tombarthite thick liquids layer that generates heat of bottom, and heat conduction substrate inner bag lateral wall surface printing or spraying have the nanometer tombarthite thick liquids layer that generates heat of lateral wall, and main part lid internal surface printing or spraying have the nanometer tombarthite thick liquids layer that generates heat of lid, and each nanometer tombarthite thick liquids layer that generates heat is respectively through binding post and waterproof plug connection. The utility model discloses can hand-carry and can realize the three-dimensional heating of multidimension, heating efficiency is high and collect and cook, cook dish, food heat preservation function in an organic whole, as long as connect the power and can cook, cook dish, food heat preservation, convenient to use in arbitrary place.

Description

一种便携式厚膜多维加热模块A portable thick film multi-dimensional heating module

技术领域technical field

本实用新型涉及加热装置技术领域,尤其涉及一种便携式厚膜多维加热模块。The utility model relates to the technical field of heating devices, in particular to a portable thick-film multi-dimensional heating module.

背景技术Background technique

针对现有的厨房电器,一般都是固定装置且分类使用,在实际的使用过程中,现有的厨房电器会占用很大部分厨房空间,这给人们带来了很大困恼。For the existing kitchen appliances, they are generally fixed devices and used in different categories. In the actual use process, the existing kitchen appliances will occupy a large part of the kitchen space, which brings great troubles to people.

另外,对于习惯携带饭菜的人而言,做好的饭菜需要额外盛放进行携带,更不能将上述厨房电器携带到不同的环境进行做饭菜用。In addition, for people who are accustomed to carrying meals, the prepared meals need to be carried in an additional manner, and the above-mentioned kitchen appliances cannot be carried to different environments for cooking.

实用新型内容Utility model content

本实用新型的目的在于针对现有技术的不足而提供一种便携式厚膜多维加热模块,该便携式厚膜多维加热模块可随身携带并可实现多维立体加热,加热效率高且集煮饭、煮菜、食物保温功能于一体,在任意地点只要接上电源即可进行煮饭、煮菜、食物保温,使用方便。The purpose of this utility model is to provide a portable thick-film multi-dimensional heating module for the deficiencies of the prior art. The portable thick-film multi-dimensional heating module can be carried around and can realize multi-dimensional heating. , food heat preservation function in one, you can cook rice, vegetables, and food heat preservation at any place as long as you connect the power supply, which is convenient to use.

为达到上述目的,本实用新型通过以下技术方案来实现。In order to achieve the above object, the utility model is realized through the following technical solutions.

一种便携式厚膜多维加热模块,包括有接电底座、装设于接电底座上方的加热主体,接电底座包括有底座壳体、嵌装于底座壳体内部的接电控制线路板,接电控制线路板电连接有伸出于底座壳体外端侧且末端连接有电源插头的电源线,底座壳体的上表面装设有朝上凸出的防水插座,防水插座与接电控制线路板电连接;A portable thick film multi-dimensional heating module, including a power connection base, a heating body installed above the power connection base, the power connection base includes a base shell, a power connection control circuit board embedded in the base shell, and a power connection control circuit board. The electric control circuit board is electrically connected with a power cord that protrudes from the outer end of the base shell and is connected to a power plug at the end. A waterproof socket protruding upward is installed on the upper surface of the base shell, and the waterproof socket is connected to the electric control circuit board. electrical connection;

加热主体包括有主体外壳,主体外壳的内部成型有朝上开口的外壳容置腔,外壳容置腔内嵌装有导热基材内胆,主体外壳的底部于导热基材内胆的下端侧装设有与防水插座相配合的防水插头,主体外壳的上端部于外壳容置腔的上端开口处可相对开合地装设有主体盖体,导热基材内胆底部的外表面印刷或者喷涂有底部纳米稀土发热浆料层,导热基材内胆侧壁的外表面印刷或者喷涂有侧壁纳米稀土发热浆料层,主体盖体的内表面印刷或者喷涂有盖体纳米稀土发热浆料层,底部纳米稀土发热浆料层、侧壁纳米稀土发热浆料层、盖体纳米稀土发热浆料层分别通过接线端子与防水插头连接。The heating main body includes a main body shell. The interior of the main body shell is formed with an upward-opening housing cavity. The shell cavity is embedded with a heat-conducting base material liner. The bottom of the main body shell is mounted on the lower end of the heat-conducting base material liner. A waterproof plug matched with the waterproof socket is provided, and the upper end of the main body shell is relatively opened and closed with a main body cover at the upper end opening of the housing cavity, and the outer surface of the bottom of the heat-conducting substrate liner is printed or sprayed with The nano-rare earth heating paste layer at the bottom, the outer surface of the side wall of the heat-conducting substrate liner is printed or sprayed with a side-wall nano-rare-earth heating paste layer, and the inner surface of the main body cover is printed or sprayed with a cover body nano-rare-earth heating paste layer, The bottom nano-rare-earth heating slurry layer, the side-wall nano-rare-earth heating slurry layer, and the cover nano-rare-earth heating slurry layer are respectively connected to waterproof plugs through terminals.

其中,所述导热基材内胆与所述主体外壳之间装设有隔热填料层。Wherein, a heat-insulating filler layer is installed between the heat-conducting substrate liner and the main body shell.

其中,所述底座壳体的外表面装设有与所述接电控制线路板电连接的USB接口。Wherein, the outer surface of the base housing is provided with a USB interface electrically connected to the power connection control circuit board.

其中,所述底座壳体的内部嵌装有锂电池,锂电池与所述接电控制线路板电连接。Wherein, a lithium battery is embedded inside the base housing, and the lithium battery is electrically connected to the power connection control circuit board.

其中,所述主体外壳为塑胶外壳。Wherein, the main body shell is a plastic shell.

其中,所述导热基材内胆为铝合金内胆或者不锈钢内胆。Wherein, the heat-conducting substrate liner is an aluminum alloy liner or a stainless steel liner.

本实用新型的有益效果为:本实用新型所述的一种便携式厚膜多维加热模块,其包括接电底座、装设于接电底座上方的加热主体,接电底座包括底座壳体、接电控制线路板、电源插头、电源线、防水插座;加热主体包括主体外壳,主体外壳的外壳容置腔内嵌装导热基材内胆,主体外壳底部装设与防水插座相配合的防水插头,主体外壳上端部于外壳容置腔上端开口处装设主体盖体,导热基材内胆底部外表面印刷或者喷涂有底部纳米稀土发热浆料层,导热基材内胆侧壁外表面印刷或者喷涂有侧壁纳米稀土发热浆料层,主体盖体内表面印刷或者喷涂有盖体纳米稀土发热浆料层,各纳米稀土发热浆料层分别通过接线端子与防水插头连接。通过上述结构设计,本实用新型可随身携带并可实现多维立体加热,加热效率高且集煮饭、煮菜、食物保温功能于一体,在任意地点只要接上电源即可进行煮饭、煮菜、食物保温,使用方便。The beneficial effects of the utility model are: a portable thick-film multi-dimensional heating module described in the utility model, which includes a power connection base, a heating body installed above the power connection base, the power connection base includes a base shell, a power connection Control circuit board, power plug, power cord, and waterproof socket; the heating body includes a main shell, and a heat-conducting base material liner is embedded in the housing cavity of the main shell, and a waterproof plug matched with a waterproof socket is installed at the bottom of the main shell, and the main body The upper end of the shell is equipped with a main body cover at the opening of the upper end of the housing cavity. The outer surface of the bottom of the heat-conducting substrate liner is printed or sprayed with a bottom nano-rare earth heating paste layer, and the outer surface of the side wall of the heat-conducting substrate liner is printed or sprayed with The nano-rare-earth heating slurry layer on the side wall, the inner surface of the main body cover is printed or sprayed with the nano-rare-earth heating slurry layer, and each nano-rare-earth heating slurry layer is connected to the waterproof plug through the terminal. Through the above-mentioned structural design, the utility model can be carried around and can realize multi-dimensional three-dimensional heating. It has high heating efficiency and integrates the functions of cooking, cooking and food heat preservation. It can cook rice and vegetables at any place as long as it is connected to the power supply. , food insulation, easy to use.

附图说明Description of drawings

下面利用附图来对本实用新型进行进一步的说明,但是附图中的实施例不构成对本实用新型的任何限制。The utility model is further described below using the drawings, but the embodiments in the drawings do not constitute any limitation to the utility model.

图1为本实用新型的结构示意图。Fig. 1 is the structural representation of the utility model.

图2为本实用新型的剖面示意图。Fig. 2 is a schematic cross-sectional view of the utility model.

在图1和图2中包括有:In Figure 1 and Figure 2 include:

1——接电底座 11——底座壳体1——electric base 11——base shell

12——电源线 13——电源插头12——power cord 13——power plug

14——防水插座 2——加热主体14——waterproof socket 2——heating body

21——主体外壳 211——外壳容置腔21——Main body shell 211——Shell accommodating cavity

22——导热基材内胆 23——防水插头22——Heat-conducting substrate liner 23——Waterproof plug

24——主体盖体 251——底部纳米稀土发热浆料层24——Main body cover 251——Nano rare earth heating paste layer at the bottom

252——侧壁纳米稀土发热浆料层252——Nano rare earth heating paste layer on the side wall

253——盖体纳米稀土发热浆料层253——Cover Nano Rare Earth Heating Paste Layer

26——隔热填料层。26——heat insulation filler layer.

具体实施方式detailed description

下面结合具体的实施方式来对本实用新型进行说明。The utility model will be described below in conjunction with specific embodiments.

如图1和图2所示,一种便携式厚膜多维加热模块,包括有接电底座1、装设于接电底座1上方的加热主体2,接电底座1包括有底座壳体11、嵌装于底座壳体11内部的接电控制线路板,接电控制线路板电连接有伸出于底座壳体11外端侧且末端连接有电源插头13的电源线12,底座壳体11的上表面装设有朝上凸出的防水插座14,防水插座14与接电控制线路板电连接。As shown in Figure 1 and Figure 2, a portable thick film multi-dimensional heating module includes a power connection base 1, a heating body 2 installed above the power connection base 1, the power connection base 1 includes a base shell 11, an embedded The power connection control circuit board installed inside the base housing 11 is electrically connected to the power cord 12 protruding from the outer end of the base housing 11 and connected to a power plug 13 at the end. The surface is equipped with an upwardly protruding waterproof socket 14, and the waterproof socket 14 is electrically connected with the power connection control circuit board.

进一步的,加热主体2包括有主体外壳21,主体外壳21的内部成型有朝上开口的外壳容置腔211,外壳容置腔211内嵌装有导热基材内胆22,主体外壳21的底部于导热基材内胆22的下端侧装设有与防水插座14相配合的防水插头23,主体外壳21的上端部于外壳容置腔211的上端开口处可相对开合地装设有主体盖体24,导热基材内胆22底部的外表面印刷或者喷涂有底部纳米稀土发热浆料层251,导热基材内胆22侧壁的外表面印刷或者喷涂有侧壁纳米稀土发热浆料层252,主体盖体24的内表面印刷或者喷涂有盖体纳米稀土发热浆料层253,底部纳米稀土发热浆料层251、侧壁纳米稀土发热浆料层252、盖体纳米稀土发热浆料层253分别通过接线端子与防水插头23连接。Further, the heating main body 2 includes a main body shell 21, the inside of the main body shell 21 is formed with an upwardly open shell accommodating cavity 211, the shell accommodating cavity 211 is embedded with a heat-conducting substrate liner 22, and the bottom of the main body shell 21 A waterproof plug 23 matched with the waterproof socket 14 is installed on the lower end side of the heat-conducting substrate liner 22, and a main body cover is installed on the upper end of the main body shell 21 at the upper end opening of the shell accommodating cavity 211 so that it can be opened and closed relatively. body 24, the outer surface of the bottom of the heat-conducting base material liner 22 is printed or sprayed with a bottom nano-rare earth heating paste layer 251, and the outer surface of the side wall of the heat-conducting base material liner 22 is printed or sprayed with a side wall nano-rare earth heating paste layer 252 , the inner surface of the main body cover 24 is printed or sprayed with a cover nano-rare earth heating paste layer 253, a bottom nano-rare earth heating paste layer 251, a side wall nano-rare earth heating paste layer 252, and a cover nano-rare earth heating paste layer 253 They are respectively connected to waterproof plugs 23 through connection terminals.

需进一步解释,主体外壳21为塑胶外壳,导热基材内胆22为铝合金内胆或者不锈钢内胆;当然,上述材料并不构成对本实用新型的限制,即本实用新型的主体外壳21、导热基材内胆22还可以采用其他的材料制备而成。Further explanation is required, the main body shell 21 is a plastic shell, and the heat-conducting substrate liner 22 is an aluminum alloy liner or a stainless steel liner; of course, the above-mentioned materials do not constitute a limitation to the present utility model, that is, the main body shell 21 of the present utility model, the heat-conducting The substrate liner 22 can also be made of other materials.

在本实用新型使用过程中,加热主体2搭放于接地底座的底座壳体11上表面且防水插头23、防水插座14对接,待烹饪或者烹饪好的食物放置于导热基材内胆22;当使用者需要煮饭、煮菜或者保温食物时,将电源线12末端的电源插头13插入插座,通电后的接电控制线路板为防水插座14供电,防水插座14为防水插头23供电,防水插头23为底部纳米稀土发热浆料层251、侧壁纳米稀土发热浆料层252、盖体纳米稀土发热浆料层253供电,底部纳米稀土发热浆料层251、侧壁纳米稀土发热浆料层252、盖体纳米稀土发热浆料层253通电后产生热量,其中底部纳米稀土发热浆料层251、侧壁纳米稀土发热浆料层252所产生的热量直接传导至导热基材内胆22,导热基材内胆22再热量传导至食物中;另外,对于本实用新型的盖体纳米稀土发热浆料层253而言,盖体纳米稀土发热浆料层253通电后产生热量,且热量经空气传导的方式传导至导热基材内胆22的食物中。During the use of the utility model, the heating main body 2 is placed on the upper surface of the base shell 11 of the ground base and the waterproof plug 23 and the waterproof socket 14 are docked, and the food to be cooked or cooked is placed in the heat-conducting substrate liner 22; When the user needs to cook, cook or keep food warm, the power plug 13 at the end of the power cord 12 is inserted into the socket. 23 supplies power to the bottom nano-rare earth heating slurry layer 251, the side wall nano-rare earth heating slurry layer 252, and the cover body nano-rare-earth heating slurry layer 253, the bottom nano-rare earth heating slurry layer 251, and the side wall nano-rare earth heating slurry layer 252 1. The cover body nano-rare earth heating paste layer 253 generates heat after being energized, wherein the heat generated by the bottom nano-rare earth heating paste layer 251 and the side wall nano-rare earth heating paste layer 252 is directly conducted to the heat-conducting substrate liner 22, and the heat-conducting base Material liner 22 conducts heat to the food again; in addition, for the cover body nano-rare earth heating slurry layer 253 of the present invention, the cover body nano-rare-earth heating slurry layer 253 generates heat after being energized, and the heat is conducted through the air. The way is conducted to the food in the heat-conducting substrate liner 22.

需进一步指出,本实用新型的底部纳米稀土发热浆料层251、侧壁纳米稀土发热浆料层252、盖体纳米稀土发热浆料层253来对食物进行加热,即本实用新型可以实现立体多维加热,加热效率高。It should be further pointed out that the nano-rare earth heating slurry layer 251 at the bottom of the utility model, the nano-rare earth heating slurry layer 252 on the side wall, and the nano-rare earth heating slurry layer 253 on the cover body heat the food, that is, the utility model can realize three-dimensional multi-dimensional Heating, high heating efficiency.

综合上述情况可知,通过上述结构设计,本实用新型可随身携带并可实现多维立体加热,加热效率高且集煮饭、煮菜、食物保温功能于一体,在任意地点只要接上电源即可进行煮饭、煮菜、食物保温,使用方便。其中,本实用新型将传统厨房电器变成了随身携带式电器,将广泛应用于外出旅游、公司上班族、学生族、打工单身族、病人汤药携带;使用时,先将食物配好,走到哪里插上电源,打开开关就可以享受自己独特的美食。Based on the above situation, it can be seen that through the above structural design, the utility model can be carried with you and can realize multi-dimensional heating. It has high heating efficiency and integrates the functions of cooking, cooking and food insulation. It is convenient to use for cooking rice, cooking vegetables and keeping food warm. Among them, the utility model turns traditional kitchen appliances into portable appliances, which will be widely used in traveling, company office workers, student families, working singles, and carrying soup and medicine for patients; Where to plug in the power, turn on the switch and enjoy your own unique food.

作为优选的实施方式,如图2所示,导热基材内胆22与主体外壳21之间装设有隔热填料层26。在本实用新型工作过程中,隔热填料层26能够起到保温隔热的作用,进而提高本实用新型的能效。As a preferred embodiment, as shown in FIG. 2 , a heat-insulating filler layer 26 is installed between the heat-conducting substrate liner 22 and the main body shell 21 . During the working process of the utility model, the thermal insulation filler layer 26 can play the role of thermal insulation, thereby improving the energy efficiency of the utility model.

作为优选的实施方式,底座壳体11的外表面装设有与接电控制线路板电连接的USB接口。在本实用新型使用过程中,当周围不存在AC电源插座时,使用者可通过USB接口连接直流电源来为接电控制线路板通电,进而实现直流供电加热。As a preferred embodiment, the outer surface of the base housing 11 is provided with a USB interface electrically connected to the power connection control circuit board. During the use of the utility model, when there is no AC power socket around, the user can connect the DC power supply through the USB interface to energize the power connection control circuit board, and then realize DC power supply and heating.

作为优选的实施方式,底座壳体11的内部嵌装有锂电池,锂电池与接电控制线路板电连接。在本实用新型使用过程中,使用者可以无需外接交流电源或者直流电源来实现通电加热,可直接利用锂电池的电量来实现通电加热,使用方便。As a preferred embodiment, a lithium battery is embedded inside the base housing 11 , and the lithium battery is electrically connected to the power connection control circuit board. During the use of the utility model, the user does not need to connect an external AC power supply or DC power supply to realize energized heating, and can directly use the power of the lithium battery to realize energized heating, which is convenient to use.

以上内容仅为本实用新型的较佳实施例,对于本领域的普通技术人员,依据本实用新型的思想,在具体实施方式及应用范围上均会有改变之处,本说明书内容不应理解为对本实用新型的限制。The above content is only a preferred embodiment of the present utility model. For those of ordinary skill in the art, according to the idea of the present utility model, there will be changes in the specific implementation and scope of application. The content of this specification should not be understood as Limitations on the Invention.

Claims (6)

1.一种便携式厚膜多维加热模块,其特征在于:包括有接电底座(1)、装设于接电底座(1)上方的加热主体(2),接电底座(1)包括有底座壳体(11)、嵌装于底座壳体(11)内部的接电控制线路板,接电控制线路板电连接有伸出于底座壳体(11)外端侧且末端连接有电源插头(13)的电源线(12),底座壳体(11)的上表面装设有朝上凸出的防水插座(14),防水插座(14)与接电控制线路板电连接;1. A portable thick film multi-dimensional heating module, characterized in that it includes a power connection base (1), a heating body (2) installed above the power connection base (1), and the power connection base (1) includes a base The housing (11), the power connection control circuit board embedded in the base housing (11), the power connection control circuit board is electrically connected with a power plug ( 13) The power cord (12), the upper surface of the base shell (11) is equipped with a waterproof socket (14) protruding upwards, and the waterproof socket (14) is electrically connected to the power connection control circuit board; 加热主体(2)包括有主体外壳(21),主体外壳(21)的内部成型有朝上开口的外壳容置腔(211),外壳容置腔(211)内嵌装有导热基材内胆(22),主体外壳(21)的底部于导热基材内胆(22)的下端侧装设有与防水插座(14)相配合的防水插头(23),主体外壳(21)的上端部于外壳容置腔(211)的上端开口处可相对开合地装设有主体盖体(24),导热基材内胆(22)底部的外表面印刷或者喷涂有底部纳米稀土发热浆料层(251),导热基材内胆(22)侧壁的外表面印刷或者喷涂有侧壁纳米稀土发热浆料层(252),主体盖体(24)的内表面印刷或者喷涂有盖体纳米稀土发热浆料层(253),底部纳米稀土发热浆料层(251)、侧壁纳米稀土发热浆料层(252)、盖体纳米稀土发热浆料层(253)分别通过接线端子与防水插头(23)连接。The heating main body (2) includes a main body shell (21), and the interior of the main body shell (21) is formed with an upward-opening shell accommodation cavity (211), and a heat-conducting substrate liner is embedded in the shell accommodation cavity (211) (22), the bottom of the main body shell (21) is equipped with a waterproof plug (23) matched with the waterproof socket (14) on the lower end side of the heat-conducting substrate liner (22), and the upper end of the main body shell (21) is on the The upper opening of the housing cavity (211) can be relatively opened and closed with a main body cover (24), and the outer surface of the bottom of the heat-conducting substrate liner (22) is printed or sprayed with a bottom nano-rare earth heating paste layer ( 251), the outer surface of the side wall of the heat-conducting substrate liner (22) is printed or sprayed with a side wall nano-rare earth heating slurry layer (252), and the inner surface of the main body cover (24) is printed or sprayed with a cover body nano-rare-earth heating paste layer The slurry layer (253), the bottom nano-rare earth heating slurry layer (251), the side wall nano-rare earth heating slurry layer (252), and the cover nano-rare earth heating slurry layer (253) respectively pass the terminal and the waterproof plug (23 )connect. 2.根据权利要求1所述的一种便携式厚膜多维加热模块,其特征在于:所述导热基材内胆(22)与所述主体外壳(21)之间装设有隔热填料层(26)。2. A portable thick-film multi-dimensional heating module according to claim 1, characterized in that: a heat-insulating filler layer ( 26). 3.根据权利要求1所述的一种便携式厚膜多维加热模块,其特征在于:所述底座壳体(11)的外表面装设有与所述接电控制线路板电连接的USB接口。3. A portable thick-film multi-dimensional heating module according to claim 1, characterized in that: the outer surface of the base shell (11) is provided with a USB interface electrically connected to the electrical connection control circuit board. 4.根据权利要求1所述的一种便携式厚膜多维加热模块,其特征在于:所述底座壳体(11)的内部嵌装有锂电池,锂电池与所述接电控制线路板电连接。4. A portable thick-film multi-dimensional heating module according to claim 1, characterized in that: a lithium battery is embedded inside the base shell (11), and the lithium battery is electrically connected to the power connection control circuit board . 5.根据权利要求1所述的一种便携式厚膜多维加热模块,其特征在于:所述主体外壳(21)为塑胶外壳。5. A portable thick-film multi-dimensional heating module according to claim 1, characterized in that: the main body shell (21) is a plastic shell. 6.根据权利要求1所述的一种便携式厚膜多维加热模块,其特征在于:所述导热基材内胆(22)为铝合金内胆或者不锈钢内胆。6. A portable thick-film multi-dimensional heating module according to claim 1, characterized in that: the heat-conducting substrate liner (22) is an aluminum alloy liner or a stainless steel liner.
CN201720033026.5U 2017-01-12 2017-01-12 A portable thick film multi-dimensional heating module Active CN206775764U (en)

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