WO2022036928A1 - 一种冷热循环温控舒眠枕 - Google Patents

一种冷热循环温控舒眠枕 Download PDF

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Publication number
WO2022036928A1
WO2022036928A1 PCT/CN2020/133592 CN2020133592W WO2022036928A1 WO 2022036928 A1 WO2022036928 A1 WO 2022036928A1 CN 2020133592 W CN2020133592 W CN 2020133592W WO 2022036928 A1 WO2022036928 A1 WO 2022036928A1
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Prior art keywords
heat
cavity
temperature
peltier
cold
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PCT/CN2020/133592
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English (en)
French (fr)
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邓泽华
马俊
丘国良
郑迁
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浙江高裕家居科技股份有限公司
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Publication of WO2022036928A1 publication Critical patent/WO2022036928A1/zh

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47GHOUSEHOLD OR TABLE EQUIPMENT
    • A47G9/00Bed-covers; Counterpanes; Travelling rugs; Sleeping rugs; Sleeping bags; Pillows
    • A47G9/10Pillows

Definitions

  • the utility model relates to the technical field of pillows, in particular to a cold-heat cycle temperature-controlled sleeping pillow.
  • Pillows are necessary items for people to sleep and rest. Therefore, the quality and comfort of pillows will directly affect people's health. In winter, the temperature at night is low, and the cold air invades the head. In summer, the temperature at night is high and it is easy to cause unfavorable factors such as qi deficiency, especially for the elderly or those who are not in good health. etc., affect sleep quality.
  • the patent application number is 201220707074.5, and the patent title is a temperature-controlled pillow discloses a technical solution, which uses carbon fiber material to fill the interior of the pillow, and places a semiconductor refrigeration sheet on the bottom of the pillow. The wires are then connected to the DC/DC converter and finally to the DC power supply for the purpose of raising the overall temperature of the pillow if needed.
  • the technical solution of the above temperature control pillow can achieve the purpose of increasing the overall temperature of the pillow, it cannot precisely control the temperature. After reaching a comfortable temperature for the human body, the temperature control switch needs to be manually turned off to avoid the temperature being too high and the working time cannot be controlled. The temperature control switch needs to be turned on again, which affects the quality of sleep.
  • the present invention provides a cold-heat cycle temperature-controlled sleeping pillow integrating the functions of the cold and heat cycle, so as to solve the above problems.
  • a cold-heat cycle temperature-controlled sleeping pillow which includes a pillow body, a device bag arranged on one side of the pillow body, a heating/cooling mechanism accommodated in the device bag, a heat conduction device that transmits heat Fluid medium, a circulation mechanism connecting the heat-conducting fluid medium with the heating/cooling mechanism, and a control module electrically connected with the heating/cooling mechanism and the circulation mechanism.
  • the pillow body includes a cavity in communication with the equipment package.
  • the heating/cooling mechanism includes a Peltier heating assembly housed in an equipment bag.
  • the Peltier heating assembly includes a Peltier semiconductor and a heat dissipation module attached to the Peltier semiconductor.
  • the circulation mechanism includes an accommodating cavity connected with the Peltier semiconductor, a storage bag accommodated in the cavity of the pillow body, and a water pump connected between the storage bag and the accommodating cavity .
  • the accommodating cavity is used for accommodating the heat-conducting fluid medium and includes an input cavity that is attached to the Peltier semiconductor, an output cavity that communicates with the input cavity, and an output cavity arranged between the input cavity and the output cavity. spacer layers.
  • the control module includes a control unit and a temperature sensor arranged on the storage bag. The control unit controls the working state of the Peltier heating assembly and the water pump according to the temperature of the temperature sensor to automatically control the temperature of the heat transfer fluid medium in the storage bag.
  • the pillow body further includes a cover plate covering the cavity, and the cover plate and the cavity form a storage space.
  • a plurality of heat dissipation holes are provided on the surface of the equipment package to discharge the heat generated during operation.
  • the Peltier heating assembly includes a current control assembly, and the current control assembly changes the power of the Peltier heating assembly to perform heating or cooling under the control of the control unit.
  • the heat dissipation module is connected with the Peltier semiconductor to dissipate the heat generated by the non-working surface of the Peltier semiconductor when the Peltier semiconductor works.
  • the input cavity is in contact with the Peltier heating assembly to transfer heat to the thermally conductive fluid medium in the input cavity.
  • the included angle between the spacer layer and the end face of the output cavity is 1° to 3°, so that the heated/cooled heat-conducting fluid medium can be introduced into the output cavity to facilitate preferential pumping by the water pump.
  • the water pump is placed in the accommodating cavity for circulating the heat transfer fluid medium between the accommodating cavity and the circulation bag.
  • the temperature control sensor is arranged on the outer surface of the storage bag.
  • control unit includes a bluetooth/wifi unit, and the bluetooth/wifi unit controls the power of the Peltier heating assembly, adjusts the temperature and sets the working time through a smart APP.
  • the cold-heat cycle temperature-controlled sleeping pillow provided by the utility model can be connected to the APP through the equipment package provided on one side of the pillow, and the Peltier heating assembly heats the high thermal conductivity fluid medium of its accommodating cavity. /Refrigeration, the high heat transfer fluid medium and the storage bag are lowered by the water pump to meet the requirements of precise control of temperature and working time.
  • Figure 1 is a schematic structural diagram of a cold-heat cycle temperature-controlled comfort pillow provided by the utility model.
  • FIG. 2 is a schematic cross-sectional structural diagram of the cooling-heat cycle temperature-controlled comfort pillow of FIG. 1 at an angle.
  • FIG. 3 is a schematic partial cross-sectional structure diagram of another angle of the cooling-heat cycle temperature-controlled comfort pillow of FIG. 1 .
  • FIG. 1 to FIG. 3 are schematic structural diagrams of a cold-heat cycle temperature-controlled sleeping pillow provided by the present invention.
  • the cold-heat cycle temperature control sleep pillow includes a pillow body 10, an equipment bag 20 arranged on one side of the pillow body 10, a heating/cooling mechanism 30 accommodated in the equipment bag 20, a storage
  • the heat transfer fluid medium 40 in the heating/cooling mechanism 30 and used for transferring heat a circulation mechanism 50 connected with the heating/cooling mechanism 30, a control device electrically connected with the heating/cooling mechanism 30 and the circulation mechanism 50 Module 60.
  • the cold-heat cycle temperature-controlled sleep pillow also includes other functional modules such as pillowcases, electrical connection components, installation and fixing components, etc., which should be known to those skilled in the art. No more detailed description.
  • the pillow body 10 includes a cavity 11 and a cover plate 12 covering the cavity 11 .
  • the cavity 11 may be provided on the upper end surface or the side surface of the pillow body 10 .
  • the cavity 11 is provided on the upper end surface of the pillow body 10 .
  • the cover plate 12 and the opening of the cavity 11 have the same size to cooperate with them to form a storage space.
  • the cover plate 12 can be made of materials such as sponge, and is provided at the open end of the cavity 11 through a connecting device such as a zipper.
  • the equipment package 20 is located on one side of the pillow body 10 and is provided with a plurality of evenly distributed heat dissipation holes 21 .
  • the heat dissipation holes 21 are used to dissipate heat generated during operation.
  • the connection between the equipment bag 20 and the pillow body 10 may be integrally formed or separate.
  • the heating/cooling mechanism 30 includes a Peltier heating assembly 31 for heating/cooling, and a heat dissipation module 32 for the Peltier heating assembly 31 .
  • the cooling and heating working principle of the Peltier heating assembly 31 is based on the Peltier effect, that is, when there is a current passing through a loop composed of different conductors, in addition to generating irreversible Joule heat, the joints of the different conductors follow the same path. Depending on the direction of the current, there will be endothermic and exothermic phenomena, respectively.
  • the heat absorbed and released is proportional to the current intensity, and the Peltier effect of metal materials is relatively weak, while that of semiconductor materials is much stronger. Therefore, the thermoelectric cooling and heating devices that have been practically used are all made of semiconductor materials.
  • the Peltier heating assembly 31 includes a Peltier semiconductor 311 for heating/cooling.
  • the Peltier semiconductor 311 includes a working surface 312 and a non-working surface 313 .
  • the working surface 312 will be heated/cooled according to the needs of the user, and due to the characteristics of the Peltier semiconductor 311, when the working surface 312 is heated/cooled, The non-working surface 313 will perform opposite work.
  • the Peltier heating assembly 31 does not play a substantial role in the operation.
  • the heat dissipation module 32 is arranged on the non-working surface 313, and is used to conduct the heat generated by the non-working surface 313 into the air when the Peltier semiconductor 311 is cooled, so as to ensure the heating of the Peltier.
  • Component 31 works fine. It can be understood that, the heat dissipation module 32 can be made of different types of heat dissipation materials, such as copper, graphene, and the like.
  • There are other components on the Peltier heating assembly 31 such as wires, various auxiliary electronic components, etc., which are in the prior art and will not be repeated here.
  • the heat transfer fluid medium 40 can absorb external heat to increase or decrease its own temperature, and circulates in each container through the circulation mechanism 50, thereby changing the temperature of its own surrounding environment.
  • the heat transfer fluid medium 40 may be different kinds of medium, such as water, oil, and the like.
  • the circulation mechanism 50 includes a accommodating cavity 51 provided in the equipment package 20 and used for storing the heat transfer fluid medium 40, and a cavity 51 provided in the cavity 11 of the pillow body 10 and used for storing after heating/cooling.
  • the storage bag 52 of the heat transfer fluid medium 40 is a water pump 53 connected between the accommodating cavity 51 and the storage bag 52 . It is conceivable that there is a conveying pipeline between the water pump 53 and the accommodating cavity 51 and the storage bag 52, and the on-off valve and the like are techniques known to those skilled in the art, and will not be repeated here.
  • the accommodating cavity 51 includes an input cavity 511 , an output cavity 513 , and a spacer layer 512 located between the input cavity 511 and the output cavity 513 .
  • the input cavity 511 is in contact with the working surface 312 for absorbing the energy generated from the Peltier heating element 31 to heat/cool the thermally conductive fluid medium 40 .
  • the output cavity 513 communicates with the input cavity 511 and is used to store the fluid heat-conducting medium 40 after heating/cooling, so as to communicate with the heat-conducting fluid medium 40 in the storage bag 52 under the driving of the water pump 53 exchange.
  • the input cavity 511 is connected with the output cavity 513 by two conveying pipes, and the other end of the conveying pipe is connected with the storage bag 52 .
  • the spacer layer 512 guides the heated/cooled heat transfer fluid medium 40 into the output cavity 513, and separates the processed and unprocessed heat transfer fluid medium 40 to avoid the unprocessed heat transfer fluid medium 40.
  • the heat transfer fluid medium 40 is pumped by the water pump 53, which affects the use effect of the cold-heat cycle temperature-controlled sleep pillow.
  • the included angle between the spacer layer 512 and the end face of the output cavity 513 is an acute angle ⁇ , and the acute angle ⁇ can be designed according to actual needs. In an example, the acute angle ⁇ is 2°.
  • the storage bag 52 is provided in the cavity 11 in the pillow body 10 for storing the heat-conducting fluid medium 40 after heating/cooling, and dissipates heat/cold air through the surface of the storage bag 52 to change the The temperature around the bag 52 is stored for the purpose of controlling the temperature of the entire pillow body 10 .
  • the water pump 53 is arranged in the accommodating cavity 51 , and when the water pump 53 works, the heat transfer fluid medium 40 is driven to flow between the accommodating cavity 51 and the storage bag 52 for heat exchange.
  • the water pump 53 itself is in the prior art and will not be repeated here.
  • the control module 60 includes a temperature sensor 61 for monitoring the temperature value of the storage bag 52 , and a control unit 62 for controlling the working states of the Peltier heating element 31 and the water pump 53 .
  • the temperature sensor 61 is arranged on the storage bag 52 and can directly acquire the current temperature of the surface of the storage bag 52 .
  • the control unit 62 may include a bluetooth/wifi unit 621, and other control devices, such as PLC, processor, and various electronic devices. Through the Bluetooth/wifi unit 621, the user can view the temperature and working time in real time through the APP used by the smart device, and at the same time, the user can also independently adjust the required temperature and working time.
  • control devices As for other control devices, they should be in the prior art, and these control devices control the working states of the Peltier heating assembly 31 and the water pump 53 by receiving the control signals of the Bluetooth/wifi unit 621 . Specifically, the control unit 62 controls the start and stop of the water pump 53 according to the temperature returned by the temperature sensor 61 and user instructions, and controls the output power of the Peltier heating assembly 31 . As for the specific control method, such as the power switch and the magnitude of the input current, it should be in the prior art and will not be repeated here.
  • the heating/cooling mechanism 30 starts to work after the power supply is connected, and the intelligent device is connected through the control module 60, and the user sets the required temperature and temperature through the intelligent APP. Working hours are enough, no need to plug or unplug the power supply, and users can quickly switch between pre-set cooling or heating temperatures.
  • the temperature control sensor 51 provided on the storage bag 52 monitors that the temperature of the thermally conductive fluid medium 40 in the storage bag 52 is lower than or higher than the set temperature, the Peltier semiconductor heating element 31 will be automatically adjusted The power level is used to increase or decrease the temperature of the Peltier semiconductor working surface 312 until the temperature reaches the user's requirement.
  • the heat dissipation module 32 disposed on the non-working surface of the Peltier semiconductor 313 will absorb the heat generated by the heat dissipation module 32 and pass through the heat dissipation hole 21 above the equipment package 20 Emit it into the air to ensure the working temperature and avoid overheating protection from affecting its temperature control effect.
  • the temperature of the non-working surface 313 is generally 0°C to +5°C.
  • the head presses the surface cover 12 to make the bottom of the pillow directly contact the surface of the storage bag 52, and the temperature is transferred to the surface of the storage bag 52.
  • the top of the cover plate 12 can reduce or increase the user's body temperature by 2°C to 3°C, and both the pillow body 10 and the cover plate 12 can be made of thermal insulation materials, so they can maintain the same temperature for a long time.
  • the temperature only needs to be set through the APP. It satisfies the requirement of heating and cooling cycle and can accurately control the temperature through APP.

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Otolaryngology (AREA)
  • Pulmonology (AREA)
  • Thermotherapy And Cooling Therapy Devices (AREA)

Abstract

一种冷热循环温控舒眠枕,其包括枕头主体(10),设备包(20),加热/制冷机构(30),导热流体介质(40),循环机构(50),以及控制模组(60)。枕头主体(10)包括腔体(11)。加热/制冷机构(30)包括帕尔贴加热组件(31)。帕尔贴加热组件(31)包括帕尔贴半导体(311),以及散热模组(32)。循环机构(50)包括容置腔(51),储存袋(52),以及水泵(53)。容置腔(51)用于容置导热流体介质(40)并包括输入腔(511),输出腔(513),以及间隔层(512)。控制模组(60)包括控制单元(62),以及温度传感器(61)。冷热循环温控舒眠枕能够通过控制模组(60)连接APP来控制帕尔贴加热组件(31)对其容置腔(51)内导热流体介质(40)加热/制冷,并通过水泵(53)将导热流体介质(40)与储存袋(52)内导热流体介质(40)交换,达到精确控制温度以及工作时长的目的。

Description

一种冷热循环温控舒眠枕 技术领域
本实用新型涉及枕头技术领域,特别涉及一种冷热循环温控舒眠枕。
背景技术
枕头是人们睡觉休息所必须要用的物品,因此,枕头的质量和舒适性将直接影响到人们的健康。在冬天,夜间温度低,寒气入侵头部,而在夏天夜间温度高又容易导致气虚等不利因素,特别是对于老人或身体不好的人,睡觉时容易着凉、头痛、患感冒以及得颈椎病等,影响睡眠质量。专利申请号为201220707074.5,专利名称为一种温控枕头的一件专利公开了一种技术方案,其使用碳纤维材料填充于枕头内部,并将半导体制冷片放于枕头底部,通过导线与温控开关连接,导线再与DC/DC转换器连接,最后与直流电源连接,以在需要时提高枕头整体温度的目的。
上述温控枕的技术方案虽然可以达到提高枕头整体温度的目的,但无法精确控制温度,达到人体舒适的温度之后需要手动关闭温控开关以避免温度过高且不能控制工作时长,且温度下降后需要重新开启温控开关,影响睡眠质量。
实用新型内容
有鉴于此,本实用新型提供了一种集冷热循环功能为一体的冷热循环温控舒眠枕,以解决上述问题。
一种冷热循环温控舒眠枕,其包括一个枕头主体,一个设置在所述枕头主体一侧的设备包,一个收容于所述设备包中的加热/制冷机构,一种传递热量的导热流体介质,一个将所述导热流体介质与所述加热/制冷机构相连的循环机构,一个与所述加热/制冷机构及循环机构电性连接的控制模组。所述枕头主体包括一个与所述设备包相连通的腔体。所述加热/制冷机构包括一个收容于设备包中的帕尔贴加热组件。所述帕尔贴加热组件包括一个帕尔贴半导体,以及一个与所述帕尔贴半导体相贴的散热模组。所述循环机构包括一个与所述帕尔贴半导体连接的容置腔,一个收容于所述枕头主体的腔体中的储存袋,以及一个连接在所述储存袋与容置腔之间的水泵。所述容置腔用于容置导热流体介质并 包括一个与所述帕尔贴半导体相贴的输入腔,一个与所述输入腔连通的输出腔,以及一个设置在所述输入腔与输出腔之间的间隔层。当水泵工作时驱动所述导热流体介质在所述容置腔与储存袋之间流动以进行热交换。所述控制模组包括一个控制单元,以及一个设置在所述储存袋上的温度传感器。所述控制单元根据所述温度传感器的温度控制所述帕尔贴加热组件与水泵的工作状态以自动地控制所述储存袋中的导热流体介质的温度。
进一步地,所述枕头主体还包括一个盖设在所述腔体上的盖板,所述盖板与腔体形成一个储存空间。
进一步地,所述设备包表面设有多个散热孔,用于排出工作时产生的热量。
进一步地,所述帕尔贴加热组件包括一个电流控制组件,所述电流控制组件在所述控制单元的控制下改变帕尔贴加热组件的功率以进行加热或者制冷。
进一步地,所述散热模组与所述帕尔贴半导体相连接以在所述帕尔贴半导体工作时将其非工作面产生的热量散发出去。
进一步地,所述输入腔与所述帕尔贴加热组件接触以将热量传递给该输入腔内的导热流体介质。
进一步地,所述间隔层与所述输出腔端面之间的夹角为1°~3°,能够将加热/制冷过的导热流体介质导入输出腔便于水泵优先抽取。
进一步地,所述水泵放置于所述容置腔中,用于将所述导热流体介质在所述容置腔与循环袋之间进行循环输送。
进一步地,所述温控传感器设置于所述储存袋的外表面上。
进一步地,所述控制单元包括蓝牙/wifi单元,所述蓝牙/wifi单元通过智能APP来控制所述帕尔贴加热组件的功率大小,调节温度以及设定工作时长。
与现有技术相比,本实用新型提供的冷热循环温控舒眠枕能够通过设于枕头一侧的设备包连接APP,所述帕尔贴加热组件对其容置腔高导热流体介质加热/制冷,通过水泵降高导热流体介质与所述储存袋达到精确控制温度以及工作时长的要求。
附图说明
图1为本实用新型提供的一种冷热循环温控舒适枕的结构示意图。
图2为图1的冷热循环温控舒适枕的一个角度的截面结构示意图。
图3为图1的冷热循环温控舒适枕的另一个角度的局部截面结构示意图。
具体实施方式
以下对本实用新型的具体实施例进行进一步详细说明。应当理解的是,此处对本实用新型实施例的说明并不用于限定本实用新型的保护范围。
如图1至图3所示,其为本实用新型提供的一种冷热循环温控舒眠枕的结构示意图。所述冷热循环温控舒眠枕包括一个枕头主体10,一个设置在所述枕头主体10一侧的设备包20,一个收容于所述设备包20中的加热/制冷机构30,一种收容于加热/制冷机构30中并用于传递热量的导热流体介质40,一个与所述加热/制冷机构30相连的循环机构50,一个与所述加热/制冷机构30及循环机构50电性连接的控制模组60。可以想到的是,所述冷热循环温控舒眠枕还包括其他的一些功能模块如枕套,电气连接组件,安装固定组件等等,其应当为本领域技术人员所习知的技术,在此不再一一详细说明。
所述枕头主体10包括一个腔体11,以及一个盖设在所述腔体11上的盖板12。可以理解的是,所述腔体11可以设于所述枕头主体10上端面或者侧面。在本实施例中,所述腔体11设于所述枕头主体10上端面。所述盖板12与所述腔体11的开口具有相同尺寸以与其配合而形成一个储存空间。可以想到的是,所述盖板12可以由海绵等材料制成,并通过拉链等连接装置设置在所述腔体11的开口端。
所述设备包20位于所述枕头主体10的一侧,并设有多个均匀分布的散热孔21。所述散热孔21用于散发工作时产生的热量。所述设备包20与所述枕头主体10的连接方式可以为是一体成型,也可以分体设置。
所述加热/制冷机构30包括一个用于加热/制冷的帕尔贴加热组件31,以及一个用于所述帕尔贴加热组件31上的散热模组32。所述帕尔贴加热组件31的制冷、加热工作原理是基于帕尔贴效应,即指当有电流通过不同的导体组成的回路时,除产生不可逆的焦耳热外,在不同导体的接头处随着电流方向的不同会分别出现吸热、放热现象。吸收和放出的热量与电流强度成正比,且金属材料的帕尔帖效应比较微弱,半导体材料则要强得多,因此得到实际应用的温差电制冷、加热器件都是由半导体材料制成的。当然可以想到的是,所述导热流体介质可以是不同种类的介质,如水,油等。所述帕尔贴加热组件31包括一个 用于加热/制冷的帕尔贴半导体311。所述帕尔贴半导体311包括有工作面312和非工作面313。所述帕尔贴半导体311在工作时,所述工作面312会按照用户的需求进行加热/制冷,而由于所述帕尔贴半导体311的特性,所述工作面312在进行加热/制冷时,所述非工作面313会进行相反的做功,如所述工作面312在制冷时,所述非工作面313会产生加热效应,其为帕尔贴效应,无法避免且所述非工作面313在所述帕尔贴加热组件31工作中不起到实质性的作用。所述散热模组32设置在所述非工作面313上,用于在其所述帕尔贴半导体311制冷时,将所述非工作面313产生的热量传导到空气中,保证帕尔贴加热组件31可以正常工作。可以理解的是,所述散热模组32可以是不同种类的散热材料制成,如铜,石墨烯等。所述帕尔贴加热组件31上还有其它部件,如导线,各种辅助电子元器件等,其为现有技术,在此不再赘述。
所述导热流体介质40能够吸收外界的热量以提高或降低自身的温度,并通过所述循环机构50使在各个容器内循环,进而改变其自身周围环境的温度。当然可以想到的是,所述导热流体介质40可以是不同种类的介质,如水,油等。
所述循环机构50包括一个设置在所述设备包20中并用于储存所述导热流体介质40的容置腔51,一个设置在所述枕头主体10的腔体11中并用于储存加热/制冷之后的所述导热流体介质40的储存袋52,一个连接在所述容置腔51与所述储存袋52之间的水泵53。可以想到的是,在所述水泵53与容置腔51及储存袋52之间还具有输送管道,开关阀等为本领域技术人员所习知的技术,在此不再赘述。所述容置腔51包括一个输入腔511,一个输出腔513,以及一个位于之间所述输入腔511与输出腔513之间的间隔层512。所述输入腔511与所述工作面312接触,用于吸收来自所述帕尔贴加热组件31所产生的能量以加热/制冷所述所述导热流体介质40。所述输出腔513与所述输入腔511连通并用于储存加热/制冷之后的所述流体导热介质40,以在所述水泵53的驱动下与所述储存袋52内的所述导热流体介质40交换。所述输出腔513与输入腔511的连通方式有很多,在本实施例中,所述输入腔511用两根输送管连接与输出腔513,输送管的另一端与所述储存袋52连接。所述间隔层512将加热/制冷过的所述导热流体介质40导入所述输出腔513,并将已加工和未加工的所述导热流体介质40分隔开来,避免未经加工的所述导热流体介质40被所述水泵53抽取,影 响所述冷热循环温控舒眠枕的使用效果。请参阅图2,为了便于所述导热流体介质40流动,所述间隔层512与所述输出腔513端面之间的夹角为锐角α,所述锐角α角度可以根据实际需求设计,在本实施例中,所述锐角α为2°。所述储存袋52设于所述枕头主体10内的腔体11,用于储存加热/制冷后的所述导热流体介质40,并透过所述储存袋52表面散发热量/冷气以改变所述储存袋52周围的温度,以达到控制整个枕头主体10的温度的目的。所述水泵53设于所述容置腔51内,当水泵53工作时驱动所述导热流体介质40在所述容置腔51与储存袋52之间流动以进行热交换。所述水泵53本身为现有技术,在此不再赘述。
所述控制模组60包括一个用于监测所述储存袋52的温度值的温度传感器61,以及一个用于控制所述帕尔贴加热组件31及水泵53的工作状态的控制单元62。所述温度传感器61设于所述储存袋52上,并能够直接获取所述储存袋52表面的当前温度。所述控制单元62可以包括一个蓝牙/wifi单元621,以及其他的一些控制器件,如PLC,处理器,以及各种电子器件。通过蓝牙/wifi单元621可以使得用户能够通过智能设备使用的APP实时查看温度和工作时间,同时用户还能够自主调节所需要的温度和工作时间。至于其他的控制器件,其应当为现有技术,这些控制器件通过接收所述蓝牙/wifi单元621的控制信号来控制所述帕尔贴加热组件31及水泵53的工作状态。具体地,该控制单元62根据所述温度传感器61所回传的温度,以及用户指令来控制所述水泵53的启停,并控制所述帕尔贴加热组件31的输出功率大小。至于具体的控制方法,如电源开关,输入电流的大小,其应当为现有技术,在此不再赘述。
在使用所述冷热循环温控舒眠枕时,连接电源后所述加热/制冷机构30即开始工作,通过所述控制模组60连接智能设备,用户通过智能APP设定所需要的温度以及工作时间即可,无需拔插电源,且用户能够快速切换预先设定好的制冷或制热温度。当设于储存袋52上的温控传感器51监测到所述储存袋52内的所述导热流体介质40温度低于或高于设定温度时,会自动调节所述帕尔贴半导体加热组件31的功率大小以提高或降低帕尔贴半导体工作面312的温度,直到温度达到用户的需求。所述帕尔贴加热组件31在制冷时,设置于所述帕尔贴半导体非工作面313上的所述散热模组32会吸收其产生的热量并通过所述设备包20上方的散热孔21散发到空气中,以保障工作温度,避免进入过热保护影 响其温控效果。所述帕尔贴加热组件31在制热时,非工作面313的温度一般在0℃~+5℃。
与现有技术相比,本实用新型提供的冷热循环温控舒眠枕在当用户躺下时,头部压迫表面盖板12使其底部与储存袋52表面直接接触,将温度传递到所述盖板12顶部,使用户的体感温度下降或上升2℃~3℃,且枕头主体10与所述盖板12都可以使用保温性材料制成,因此能够长时间保持同一温度,若需调节温度只需要通过APP设置即可。满足了冷热循环且能够通过APP精确控制温度的要求。
以上仅为本实用新型的较佳实施例,并不用于局限本实用新型的保护范围,任何在本实用新型精神内的修改、等同替换或改进等,都涵盖在本实用新型的权利要求范围内。

Claims (10)

  1. 一种冷热循环温控舒眠枕,其特征在于:所述冷热循环温控舒眠枕包括一个枕头主体,一个设置在所述枕头主体一侧的设备包,一个收容于所述设备包中的加热/制冷机构,一种传递热量的导热流体介质,一个与所述加热/制冷机构相连的循环机构,一个与所述加热/制冷机构及循环机构电性连接的控制模组,所述枕头主体包括一个与所述设备包相连通的腔体,所述加热/制冷机构包括一个收容于所述设备包中的帕尔贴加热组件,所述帕尔贴加热组件包括一个帕尔贴半导体,以及一个与所述帕尔贴半导体相贴的散热模组,所述循环机构包括一个与所述帕尔贴半导体连接的容置腔,一个收容于所述枕头主体的腔体中的储存袋,以及一个连接在所述储存袋与容置腔之间的水泵,所述容置腔用于容置导热流体介质并包括一个与所述帕尔贴半导体相贴的输入腔,一个与所述输入腔连通的输出腔,以及一个设置在所述输入腔与输出腔之间的间隔层,当水泵工作时驱动所述导热流体介质在所述容置腔与储存袋之间流动以进行热交换,所述控制模组包括一个控制单元,以及一个设置在所述储存袋上的温度传感器,所述控制单元根据所述温度传感器的温度控制所述帕尔贴加热组件与水泵的工作状态以自动地控制所述储存袋中的导热流体介质的温度。
  2. 如权利要求1所述的冷热循环温控舒眠枕,其特征在于:所述枕头主体还包括一个盖设在所述腔体上的盖板,所述盖板与腔体形成一个储存空间。
  3. 如权利要求1所述的冷热循环温控舒眠枕,其特征在于:所述设备包表面设有多个散热孔,用于排出工作时产生的热量。
  4. 如权利要求1所述的冷热循环稳控舒眠枕,其特征在于:所述帕尔贴加热组件包括一个电流控制组件,所述电流控制组件在所述控制单元的控制下改变帕尔贴加热组件的功率以进行加热或者制冷。
  5. 如权利要求1所述的冷热循环温控舒眠枕,其特征在于:所述散热模组与所述帕尔贴半导体相连接以在所述帕尔贴半导体工作时将其非工作面产生的热量散发出去。
  6. 如权利要求1所述的冷热循环温控舒眠枕,其特征在于:所述输入腔与所述帕尔贴加热组件接触以将热量传递给该输入腔内的导热流体介质。
  7. 如权利要求1所述的冷热循环稳控舒眠枕,其特征在于:所述间隔层与所述输出腔端面之间的夹角为1°~3°以将加热/制冷过的导热流体介质导入所述输出腔并便于所述水泵优先抽取。
  8. 如权利要求1所述的冷热循环温控舒眠枕,其特征在于:所述水泵放置于所述容置腔中,用于将所述导热流体介质在所述容置腔与循环袋之间进行循环输送。
  9. 如权利要求1所述的冷热循环温控舒眠枕,其特征在于:所述温控传感器设置于所述储存袋的外表面上。
  10. 如权利要求1所述的冷热循环温控舒眠枕,其特征在于:所述控制单元包括蓝牙/wifi单元,所述蓝牙/wifi单元通过智能APP来控制所述帕尔贴加热组件的功率大小,调节温度以及设定工作时长。
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