WO2021077670A1 - 一种智能弹盖式显温保温杯 - Google Patents

一种智能弹盖式显温保温杯 Download PDF

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Publication number
WO2021077670A1
WO2021077670A1 PCT/CN2020/080376 CN2020080376W WO2021077670A1 WO 2021077670 A1 WO2021077670 A1 WO 2021077670A1 CN 2020080376 W CN2020080376 W CN 2020080376W WO 2021077670 A1 WO2021077670 A1 WO 2021077670A1
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WO
WIPO (PCT)
Prior art keywords
cover
pop
temperature
cup
elastic cover
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PCT/CN2020/080376
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English (en)
French (fr)
Inventor
尹德青
陈喜旺
汪红军
柳明
金思敏
Original Assignee
南京盖乐普电子科技有限公司
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Publication of WO2021077670A1 publication Critical patent/WO2021077670A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45FTRAVELLING OR CAMP EQUIPMENT: SACKS OR PACKS CARRIED ON THE BODY
    • A45F3/00Travelling or camp articles; Sacks or packs carried on the body
    • A45F3/16Water-bottles; Mess-tins; Cups
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47GHOUSEHOLD OR TABLE EQUIPMENT
    • A47G19/00Table service
    • A47G19/22Drinking vessels or saucers used for table service
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01KMEASURING TEMPERATURE; MEASURING QUANTITY OF HEAT; THERMALLY-SENSITIVE ELEMENTS NOT OTHERWISE PROVIDED FOR
    • G01K1/00Details of thermometers not specially adapted for particular types of thermometer
    • G01K1/02Means for indicating or recording specially adapted for thermometers

Definitions

  • the utility model belongs to the technical field of thermos cups, in particular to an intelligent pop-lid type thermostable thermos cup.
  • the vacuum insulation cup can delay the heat dissipation of the water and other liquids contained inside, so as to achieve the purpose of heat preservation.
  • the user when the user is in use, he cannot intuitively know whether the real-time water temperature has reached a suitable drinking temperature. Therefore, it is inevitable that the user needs to sense the temperature by touch, which may easily cause burns to the user.
  • some thermos cups in the market currently have a temperature measuring device, and the real-time temperature in the thermos cup is measured by the temperature measuring device for the user's reference.
  • thermos flask on the market is basically a single screw cap method. As shown in Figure 1, manual screw rotation is required to open and close, which cannot be operated by one hand; it contradicts the pursuit of simple and convenient behavior and does not conform to the behavior habit. Humanized design concept.
  • the display area of the traditional smart thermos flask is on the top of the lid, and the viewing angle is relatively limited, which also contradicts the pursuit of simple and convenient behavior; moreover, the traditional smart thermos flask needs to be touched by human hands to wake up the display module to display the temperature , It is inconvenient to operate when holding the cup with one hand.
  • thermos flask A smart pop-lid type temperature-sensing thermos flask is provided to solve the problems involved in the above-mentioned background art.
  • An intelligent pop-lid type temperature-sensitive insulation cup comprising: a cup body, an upper pop-up cover, and a lower-screw cover, wherein the lower-screw cover is mounted on the cup body through thread rotation, and the upper pop-up cover is fixed by a pop-open type through a rotating shaft
  • a temperature detection module and a control module are arranged inside the upper elastic cover.
  • the temperature detection module is in contact with the air and liquid in the thermos cup to detect the real-time temperature in the cup and automatically control the linkage.
  • the LED module arranged on one side of the upper elastic cover displays the temperature.
  • the upper elastic cover includes: an upper shell of the elastic cover provided with a mounting hole on one side, an LED display module fixedly installed on the mounting hole, a battery module installed inside the upper shell of the elastic cover, and The control module, the display lens outside the upper shell of the elastic cover and aligned with the LED display module, is fastened to the middle shell of the elastic cover outside the upper shell of the elastic cover through a buckle, and is fixedly installed with the A raised part at the lower part of the shell in the elastic cover, and a temperature detection module arranged in the raised part.
  • the temperature detection module includes a fixed cover, a temperature sensing probe, and a sealing body.
  • the temperature sensing probe package sensor is fixedly installed on a raised fixed cover, and then the fixed cover is put on the upper elastic body.
  • the cover body has an opening at the installation position of the temperature probe. Install the sealing body on the fixed cover, and just expose the temperature probe.
  • the temperature probe can be a plane with the top of the sealing body, or it can be extended or Protruding the sealing body.
  • the temperature detection module on the upper part of the upper elastic cover is aligned with the water outlet of the lower screw cap, and the sealing body is just aligned with the lower screw cap.
  • the water outlet is sealed, and the temperature sensing probe is exposed at the water outlet, which can fully contact the air and liquid inside the cup body.
  • the material of the sealing body is silica gel.
  • control module and the LED display module are connected through an FPC, and the battery module and the temperature detection module are both connected to the control module through a connecting wire.
  • one side of the upper elastic cover and the lower rotary cover are hinged together by a rotating shaft and a torsion spring, and the other side is restricted and locked by the elastic cover button.
  • both the upper elastic cover and the lower screw cover are provided with a rotating shaft hole, a torsion spring is installed on one side of the rotating shaft hole, and one end of the torsion spring is fixed on the rotating shaft hole of the lower rotating cover. The other end of the spring is fixed on the upper elastic cover so that the upper elastic cover has a tendency to open upwards.
  • the rotating shaft passes through the rotating shaft hole of the lower rotating cover, the torsion spring, and the rotating shaft hole of the upper elastic cover in turn, and the upper elastic cover and the downward rotating One end of the cover is hinged together.
  • a mounting groove is provided on the other side of the upper elastic cover and the lower rotary cover, and the elastic cover button is installed in the mounting groove of the lower rotary cover by a pin rotation, and the upper part of the elastic cover button
  • a strip-shaped buckle is fixedly connected, and a protrusion is provided on the top of the buckle, which is adapted to the fixed groove provided on the upper elastic cover, and a support reset is provided at the bottom of the elastic cover button. spring.
  • the utility model relates to an intelligent pop-lid type thermos flask, which provides an intelligent scheme for a pop-lid type vacuum flask that is operated by one hand.
  • the temperature detection function is realized by modifying the structure of the sealing body on the bomb cover; at the same time, the temperature display is placed on the front side, and the display area is more in line with the visual angle; in addition, the algorithm of temperature detection and sensing is used to realize the temperature detection function without touching and touching.
  • the water display function when the thermos cup contains water, while retaining the original human hand touch display function, it provides another kind of touch-free function. Just shake or invert the water in the cup to make it completely contact the temperature sensor to trigger the action. On the one hand, the temperature is detected, and the LED is automatically lit to display the temperature at the same time.
  • One-handed operation can know the temperature of the water in the cup without touching it, optimizing the user experience.
  • Fig. 1 is a schematic diagram of the structure of the prior art.
  • Figure 2 is a schematic diagram of the structure of the utility model.
  • Fig. 3 is a schematic diagram of the open lid state of the present utility model.
  • Fig. 4 is a schematic diagram of the closed state of the utility model.
  • Fig. 5 is an exploded schematic diagram of the hinged upper elastic cover and the lower screw cover of the present invention.
  • Figure 6 is an exploded schematic diagram of the upper bomb cover of the present utility model.
  • FIG. 7 is an exploded schematic diagram of the temperature detection module of the present invention.
  • Fig. 8 is a schematic diagram of the position of the temperature sensing probe and the water outlet in the present invention.
  • the reference signs are: cup body 1, upper elastic cover 2, lower screw cover 3, upper elastic cover 21, LED display module 22, battery module 23, control module 24, display lens 25, elastic cover middle shell 26, temperature
  • the detection module 27, the water outlet 31, the spout seat 32, the shaft hole 41, the torsion spring 42, the shaft 43, the elastic cover button 51, the mounting groove 52, the pin 53, the buckle 54, the protrusion 55, the card slot 56,
  • an intelligent pop-lid type temperature-sensitive insulation cup includes three parts: a cup body 1, a pop-lid component 2, and a temperature-measuring component.
  • the cup body 1 includes a cup body, an inner liner fixedly installed inside the cup body, and a vacuum insulation layer arranged between the cup body and the inner liner.
  • the elastic cover assembly includes an upper elastic cover 2 and a lower screw cover 3, wherein the lower screw cover 3 includes a water outlet 31 arranged in the middle of the screw cover, and is arranged outside the water outlet 31
  • the spout at the edge and the internal thread arranged on the inner side wall are screwed to the upper part of the cup body 1.
  • a temperature detection module 27 is arranged inside the upper elastic cover 2, and the temperature detection module 27 is aligned with the water outlet 31 of the lower screw cover 3.
  • Both the upper elastic cover 2 and the lower screw cover 3 are provided with a shaft hole 41 on one side, a torsion spring 42 is installed on one side of the shaft hole 41, and one end of the torsion spring 42 is fixed in the shaft hole 41 of the lower screw cover 3 The other end of the torsion spring 42 is fixed to the shaft hole 41 of the upper elastic cover 2 so that the upper elastic cover 2 has a tendency to open upwards.
  • the shaft 43 passes through the shaft hole 41, the torsion spring 42, and the upper elastic cover 3 in turn.
  • the shaft hole 41 of the cover 2 hinges one end of the upper elastic cover 2 and the lower screw cover 3 together.
  • An elastic cover button 51 is provided on the other side of the upper elastic cover 2 and the lower screw cover 3.
  • a mounting groove 52 is provided on the outside of the side walls of the upper elastic cover 2 and the lower screw cover 3, and the elastic cover button 51 is rotatably installed in the mounting groove 52 of the lower screw cover 3 by a pin 53, so A strip-shaped buckle 54 is fixedly connected to the upper part of the knob of the upper elastic cover 2, a protrusion 55 is provided on the top of the buckle 54, and a fixing groove 56 (located in the upper elastic cover 2) is provided on the upper elastic cover 2 In the mounting groove 52 on the upper elastic cover 2 (not shown in the drawings), a support return spring is provided at the bottom of the elastic cover button 51.
  • the temperature detection module 27 on the upper part of the upper elastic cover 2 is aligned with the water outlet 31 of the lower screw cover 3, and fits and seals, and the strip buckle 54 is fixed on the upper elastic cover 2
  • the slot 56 is matched and buckled to lock the other side of the upper elastic cover 2 and the lower screw cover 3.
  • the temperature measuring component is arranged on the upper elastic cover 2, as shown in FIG. 6, which includes: the upper elastic cover 21, the LED display module 22, the battery module 23, the control module 24, the display lens 25, and the elastic cover The case 26 and the temperature detection module 27.
  • the upper shell 21 of the elastic cover includes an upper bottom surface and a side wall connected with the upper bottom surface, and is an integrally formed structure, and a predetermined gap is left between the side wall and the outer edge of the upper bottom surface.
  • a mounting hole is provided on the side wall close to the elastic cover button 51, the LED display module 22 is fixedly installed on the mounting hole through the mounting hole, and a battery module 23 is installed inside the upper shell 21 of the elastic cover And control module 24.
  • a display lens 25 and a middle shell 26 of the elastic cover are sleeved on a predetermined gap outside the side wall of the upper shell 21 of the elastic cover, wherein the display lens 25 is exactly aligned with the LED display module 22, and the display lens 25 is exactly aligned with the LED display module 22.
  • the lens 25 is preferably a convex lens.
  • the middle shell 26 of the elastic cover and the upper shell 21 of the elastic cover are fixedly connected by a screw thread, and a convex temperature detection module 27 is arranged inside the middle shell 26 of the elastic cover.
  • the temperature detection module 27 includes a fixed cover 271, a temperature sensing probe 272 and a sealing body 273.
  • the temperature sensing probe 272 encapsulates the sensor and is fixedly installed on the raised fixed cover 271, and the sealing body 273 is a silicone piece, which is sleeved on the fixed cover 271, in the mounting position of the temperature sensing probe 272 With an opening left, the sealing body 273 is mounted on the fixed cover 271, and the temperature sensing probe 272 is just exposed.
  • the temperature sensing probe can be a plane with the top of the sealing body, or it can extend or protrude from the sealing body. As shown in FIG.
  • the sealing body 273 is just aligned with the spout seat 32 and the water outlet 31 of the lower screw cap 3.
  • the sealing body 273 is just aligned with the lower screw cap 3.
  • the spout seat 32 and the water outlet 31 of the screw cap 3 form a seal, but because the temperature sensing probe 272 is exposed, it can fully contact the liquid inside the cup body at the water outlet 31, thereby realizing temperature detection.
  • control module 24 and the LED display module 22 are connected through an FPC flexible circuit board, and the battery module 23 and the temperature detection module 27 are all connected through a connecting wire.
  • the integration degree of the temperature detection module 27 is improved, and the volume is reduced.
  • thermos cup when the pop-lid 2 is closed on the thermos cup, the temperature probe 272 is exposed outside the sealing body 273 and can be screwed down.
  • the water outlet 31 of 3 detects the temperature.
  • the thermos cup When the thermos cup is filled with liquid, shakes or inverts the cup body, the liquid in the thermos cup will fully contact the temperature probe 272, and at the same time, the temperature probe 272 will induce a change in the capacitance of the liquid.
  • the control module analyzes the sensing change value, obtains the real-time temperature in the thermos cup, and automatically controls the LED module to display the temperature.
  • the temperature sensing probe 272 will automatically sense and display the temperature after touching the liquid water.
  • the algorithm of the software in the control module can distinguish the water vapor normally produced by the thermos cup, and will not produce a malfunction display.
  • the original human touch display function can still be retained, and at the same time, the above-mentioned one does not need to be touched, as long as the water in the cup is shaken or inverted so that it can completely contact the temperature sensor. Trigger action.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Table Devices Or Equipment (AREA)
  • Cookers (AREA)

Abstract

一种智能弹盖式显温保温杯,包括:杯身(1),上弹盖(2),下旋盖(3),下旋盖(3)螺接于杯身(1)上部,上弹盖(2)通过转轴(43)采用弹开式固定在下旋盖(3)上,在上弹盖(2)内部设置有温度检测模组(27)和控制模块(24),通过温度检测模组(27)与保温杯内的液体接触,检测实时温度,并自动控制设置在上弹盖(2)一侧的LED显示模组(22)显示温度。该保温杯将温度检测模组(27)、控制模块(24)和LED显示模组(22)全部集成到上弹盖(2)上,通过改造上弹盖(2)上密封体(273)的结构实现温度探测的功能;通过把温度显示放置在正侧面,更符合视觉角度;另外,提供一种无需触摸,只需摇晃或倒置保温杯,让水接触到温感探头从而触发动作,检测水温、显示温度。实现单手操作,优化用户体验。

Description

一种智能弹盖式显温保温杯 技术领域
本实用新型属于保温杯技术领域,尤其是一种智能弹盖式显温保温杯。
背景技术
众所周知的,保温杯通过真空绝热层能使装在内部的水等液体延缓散热,以达到保温的目的。然而当用户在使用过程时,不能直观的了解到实时的水温,是否达到适饮温度,因此,不可避免会造成用户需触感感知温度,容易造成对用户的烫伤。为了即使了解保温杯内的温度,目前市场内的部分保温杯加入了测温装置,通过测温器件测量保温杯内的实时温度,供用户参考。
而且,在当今快节奏的都市生活中,越来越多的人习惯于在一边工作或学习的同时,一边喝水,因此需要单手实现开盖、喝水、关盖等一系列操作。但是,市场上的传统智能显温保温杯基本都是单旋盖方式,如附图1所示,需要手动螺纹旋转开合,无法单手操作;与追求简单便利的行为习惯相矛盾,不符合人性化设计理念。另外,传统智能显温保温杯的显示区域均在盖子顶部,视角相对局限,同样与追求简单便利的行为习惯相矛盾;而且,传统智能显温保温杯都需要人手触摸,才能唤醒显示模块显示温度,当单手握杯时操作不便。
技术问题
提供一种智能弹盖式显温保温杯,以解决上述背景技术所涉及的问题。
技术解决方案
一种智能弹盖式显温保温杯,包括:杯身,上弹盖,下旋盖,其中,下旋盖通过螺纹旋转装在所述杯身上部,上弹盖通过转轴采用弹开式固定在所述下旋盖上,在所述上弹盖内部设置有温度检测模组和控制模块,通过温度检测模组与保温杯内的空气和液体接触,检测杯内实时温度,并自动联动控制设置在所述上弹盖一侧的LED模组显示温度。
作为一个优选方案,所述上弹盖包括:在一侧设置有安装孔的弹盖上壳、固定安装在安装孔上的LED显示模组、安装在所述弹盖上壳内部的电池模块和控制模块,在所述弹盖上壳外部、且与所述LED显示模组相对齐的显示透镜,通过卡扣卡合固定在所述弹盖上壳外部的弹盖中壳,固定安装所述弹盖中壳下部的凸起部,以及设置在所述凸起部内的温度检测模组。
作为一个优选方案,所述温度检测模组包括包含固定盖、感温探头和密封体,所述感温探头封装传感器固定安装在凸起的固定盖上,然后固定盖再套装在所述上弹盖主体上,在感温探头的安装位置留有开口,将密封体安装到固定盖上,且刚好把感温探头裸露在外,感温探头可以与密封体顶部是一个平面,也可以伸出或者凸出密封体。
作为一个优选方案,所述当上弹盖和下旋盖合盖后,上弹盖上部的温度检测模组与所述下旋盖的出水口相对齐,所述密封体刚好与下旋盖的出水口密封,且所述感温探头裸露于出水口处,可以充分接触杯体内部空气和液体。
作为一个优选方案,密封体的材质为硅胶。
作为一个优选方案,所述控制模块和所述LED显示模组通过FPC连接,电池模块、温度检测模组通过均通过带有连接导线与控制模块相连。
作为一个优选方案,所述上弹盖和下旋盖一侧通过转轴和扭簧配合铰接在一起,另一侧通过弹盖按钮限位锁死。
作为一个优选方案,所述上弹盖和下旋盖一侧均设有转轴孔,在所述转轴孔一侧安装有扭簧,所述扭簧的一端固定在下旋盖的转轴孔上,扭簧的另一端固定上弹盖上,使上弹盖有向上打开的趋势,转轴依次穿过下旋盖的转轴孔、扭簧、上弹盖的转轴孔,将所述上弹盖和下旋盖一端铰接在一起。
作为一个优选方案,所述上弹盖和下旋盖上的另一侧设置有个安装槽,所弹盖按钮通过销钉转动安装在所述下旋盖的安装槽内,所述弹盖按钮上部固定连接有一个条形卡扣,在所述卡扣顶部设置有凸起部,与设置在所述上弹盖上的固定卡槽相适配,在所述弹盖按钮底部设置有一个支撑复位弹簧。
有益效果
本实用新型涉及一种智能弹盖式显温保温杯,提供了一种针对单手操作的弹盖式保温杯的智能化方案,通过将所有控制,显示,供电的模组全部设计到弹盖上,通过改造弹盖上密封体的结构实现温度探测的功能;同时,把温度显示放置在正侧面,显示区域更符合视觉角度;另外,还通过温度探测传感的算法,实现无需触摸,触水显示的功能,当保温杯中盛有水,在保留原有人手触摸显示功能的同时,提供另外一种无需触摸,只要摇晃或倒置杯中水让其完全接触到温感探头从而触发动作,一方面检测到温度,同时自动点亮LED显示温度。实现单手操作无需触摸就能知道杯中水的温度,优化用户体验。
附图说明
图1是现有技术的结构示意图。
图2是本实用新型的结构示意图。
图3是本实用新型的开盖状态示意图。
图4是本实用新型的闭盖状态示意图。
图5是本实用新型中上弹盖和下旋盖铰接的爆炸示意图。
图6是本实用新型中上弹盖的爆炸示意图。
图7是本实用新型中温度检测模组的爆炸示意图。
图8是本实用新型中温度感温探头与出水口的位置示意图。
附图标记为:杯身1、上弹盖2、下旋盖3、弹盖上壳21、LED显示模组22、电池模块23、控制模块24、显示透镜25、弹盖中壳26、温度检测模组27、出水口31、壶嘴座32、转轴孔41、扭簧42、转轴43、弹盖按钮51、安装槽52、销钉53、卡扣54、凸起部55、卡槽56、固定盖271、感温探头272、密封体273。
本发明的实施方式
如附图2~4所示,一种智能弹盖式显温保温杯,包括:杯身1、弹盖组件2、测温组件三部分。
杯身1,包括杯体,固定安装在所述杯体内部的内胆,以及设置在所述杯体与内胆之间的真空绝热层。
如附图5所示,弹盖组件包括上弹盖2和下旋盖3,其中,所述下旋盖3包括设置在所述旋盖中部的出水口31,设置在所述出水口31外边缘处的壶嘴口,以及设置在所述内部侧壁上的内螺纹,并与所述杯身1上部螺接。在上弹盖2内部设置有温度检测模组27,且所述温度检测模组27与所述下旋盖3的出水口31相对齐。所述上弹盖2和下旋盖3一侧均设有转轴孔41,在所述转轴孔41一侧安装有扭簧42,所述扭簧42的一端固定在下旋盖3的转轴孔41上,扭簧42的另一端固定上弹盖2的转轴孔41上,使上弹盖2有向上打开的趋势,转轴43依次穿过下旋盖3的转轴孔41、扭簧42、上弹盖2的转轴孔41,将所述上弹盖2和下旋盖3一端铰接在一起。所述上弹盖2和下旋盖3的另一侧设置有弹盖按钮51。更具体,在所述上弹盖2和下旋盖3的侧壁外部设置有个安装槽52,所弹盖按钮51通过销钉53转动安装在所述下旋盖3的安装槽52内,所述上弹盖2旋钮上部固定连接有一个条形卡扣54,在所述卡扣54顶部设置有凸起部55,与设置在所述上弹盖2上的固定卡槽56(位于所述上弹盖2上的安装槽52内,附图中未标出)相适配,在所述弹盖按钮51底部设置有一个支撑复位弹簧。
当处于闭盖状态时,上弹盖2上部的温度检测模组27与所述下旋盖3出水口31相对齐、贴合密封,所述条形卡扣54与上弹盖2上的固定卡槽56相适配、扣合,将上弹盖2和下旋盖3的另一侧锁死。当开启上弹盖2时,下按弹盖按钮51,克服支撑复位弹簧的弹力,条形卡扣54以销钉53为轴向安装槽52外侧旋转,条形卡扣54与固定卡槽56脱离,由于扭簧42蓄能,使上弹盖2有向上打开的趋势,因此,上弹盖2会自动弹开,完成开盖动作。
测温组件设置在所述上弹盖2上,如附图6所示,其包括:弹盖上壳21、LED显示模组22、电池模块23、控制模块24、显示透镜25、弹盖中壳26和温度检测模组27。在所述弹盖上壳21包括上底面和与所述上底面相连接的侧壁,为一体成型结构,且所述侧壁与上底面外边缘之间留有预定间隙。在所述侧壁上靠近弹盖按钮51一侧设置有安装孔,LED显示模组22穿过所述安装孔固定安装在安装孔上,在所述弹盖上壳21内部安装有电池模块23和控制模块24。在所述弹盖上壳21侧壁外的留有的预定间隙上套装有显示透镜25和弹盖中壳26,其中,显示透镜25刚好与所述LED显示模组22相对齐,所述显示透镜25优选为凸透镜,弹盖中壳26与弹盖上壳21之间通过螺纹固定连接,在所述弹盖中壳26的内部设置有凸起的温度检测模组27。
在进一步实施过程中,所述温度检测模组27包括包含固定盖271、感温探头272和密封体273。如附图7所示,所述感温探头272封装传感器固定安装在凸起的固定盖271上,密封体273是硅胶件,套装在所述固定盖271上,在感温探头272的安装位置留有开口,将密封体273安装到固定盖271上,且刚好把感温探头272裸露在外,感温探头可以与密封体顶部是一个平面,也可以伸出或者凸出密封体。如附图8所示,密封体273刚好与所述与下旋盖3的壶嘴座32、出水口31对齐,当上弹盖2和下旋盖3合盖后,密封体273刚好与下旋盖3的壶嘴座32、出水口31形成密封,但是因为感温探头272是裸露的刚好在出水口31处可以充分接触杯体内部液体,从而实现温度检测。
其中,所述控制模块24和所述LED显示模组22通过FPC软性线路板连接、电池模块23、温度检测模组27都通过连接线连接。提高温度检测模组27的集成度,减小体积。
为了方便理解智能弹盖式显温保温杯的技术方案,对其工作原理做出简要说明:当保温杯合上弹盖2时,感温探头272是裸露在密封体273外,可以在下旋盖3的出水口31探测温度。当保温杯内盛液体,摇晃或者倒置杯体,保温杯内液体会充分与感温探头272接触,同时感温探头272对液体产生感应也会产生电容的变化。通过控制模块解析感应变化值,获得保温杯内的实时温度,并自动控制LED模组显示温度。从而实现无需触摸,只要摇晃或倒置,使得感温探头272触到液态水后,自动感应并显示温度。其中,控制模块中软件的算法可以分辨保温杯正常产生的水蒸气,不会产生出现误动作显示。
对于本领域技术人员而言,在具体实施过程中,可仍然保留原有的人手触摸显示功能,同时,提供上述一种无需触摸,只要摇晃或倒置杯中水让其完全接触到温感探头从而触发动作。
另外需要说明的是,在上述具体实施方式中所描述的各个具体技术特征,在不矛盾的情况下,可以通过任何合适的方式进行组合。为了避免不必要的重复,本发明对各种可能的组合方式不再另行说明。

Claims (9)

  1. 一种智能弹盖式显温保温杯,包括杯身,上弹盖,下旋盖,下旋盖螺接于所述杯身上部,上弹盖通过转轴采用弹开式固定在所述下旋盖上,其特征在于:在所述上弹盖内部设置有温度检测模组和控制模块,通过的温度检测模组与保温杯内的空气和液体接触,检测杯内实时温度,并自动联动控制设置在所述上弹盖的侧面的LED显示模组显示温度。
  2. 根据权利要求1所述的智能弹盖式显温保温杯,其特征在于,所述上弹盖包括:在一侧设置有安装孔的弹盖上壳、固定安装在安装孔上的LED显示模组、安装在所述弹盖上壳内部的电池模块和控制模块,在所述弹盖上壳外部、且与所述LED显示模组相对齐的显示透镜,通过卡扣卡合固定在所述弹盖上壳外部的弹盖中壳,固定安装所述弹盖中壳下部的凸起部,以及设置在所述凸起部内的温度检测模组。
  3. 根据权利要求2所述的智能弹盖式显温保温杯,其特征在于,所述温度检测模组包括包含固定盖、感温探头和密封体,所述感温探头封装传感器固定安装在凸起的固定盖上,然后固定盖再套装在所述上弹盖主体上,在感温探头的安装位置留有开口,将密封体安装到固定盖上,且刚好把感温探头裸露在外。
  4. 根据权利要求3所述的智能弹盖式显温保温杯,其特征在于,所述当上弹盖和下旋盖合盖后,上弹盖上部的温度检测模组与所述下旋盖的出水口相对齐,所述密封体刚好与下旋盖的出水口密封,且所述感温探头裸露于出水口处,可以充分接触杯体内部空气和液体。
  5. 根据权利要求4所述的智能弹盖式显温保温杯,其特征在于,密封体的材质为硅胶。
  6. 根据权利要求3所述的智能弹盖式显温保温杯,其特征在于,所述感温探头与密封体顶部位于同一平面,或向外凸出于密封体。
  7. 根据权利要求1~6中任一项所述的智能弹盖式显温保温杯,其特征在于,所述上弹盖和下旋盖一侧通过转轴和扭簧配合铰接在一起,另一侧通过弹盖按钮限位锁死。
  8. 根据权利要求7所述的智能弹盖式显温保温杯,其特征在于,所述上弹盖和下旋盖一侧均设有转轴孔,在所述转轴孔一侧安装有扭簧,所述扭簧的一端固定在下旋盖的转轴孔上,扭簧的另一端固定上弹盖的转轴孔上,使上弹盖有向上打开的趋势,转轴依次穿过下旋盖的转轴孔、扭簧、上弹盖的转轴孔,将所述上弹盖和下旋盖一端铰接在一起。
  9. 根据权利要求7所述的智能弹盖式显温保温杯,其特征在于,所述上弹盖和下旋盖上的另一侧设置有个安装槽,所弹盖按钮通过销钉转动安装在所述下旋盖的安装槽内,所述弹盖按钮上部固定连接有一个条形卡扣,在所述卡扣顶部设置有凸起部,与设置在所述上弹盖上的固定卡槽相适配,在所述弹盖按钮底部设置有一个支撑复位弹簧。
PCT/CN2020/080376 2019-10-22 2020-03-20 一种智能弹盖式显温保温杯 WO2021077670A1 (zh)

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