WO2017071322A1 - 冰箱间室及具有其冰箱 - Google Patents

冰箱间室及具有其冰箱 Download PDF

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Publication number
WO2017071322A1
WO2017071322A1 PCT/CN2016/090982 CN2016090982W WO2017071322A1 WO 2017071322 A1 WO2017071322 A1 WO 2017071322A1 CN 2016090982 W CN2016090982 W CN 2016090982W WO 2017071322 A1 WO2017071322 A1 WO 2017071322A1
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refrigerator compartment
damper
heating
air
refrigerator
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PCT/CN2016/090982
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English (en)
French (fr)
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吴乔晔
刘鹏
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青岛海尔股份有限公司
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Publication of WO2017071322A1 publication Critical patent/WO2017071322A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D17/00Arrangements for circulating cooling fluids; Arrangements for circulating gas, e.g. air, within refrigerated spaces

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  • the invention belongs to the technical field of household appliances, and particularly relates to a refrigerator compartment and a refrigerator having the same.
  • the present invention provides a refrigerator compartment.
  • the refrigerator compartment has two working modes of cooling and heating, and includes a box body and a door body for switching the refrigerator compartment, and a air passage device is arranged on the rear wall of the box body.
  • the air duct device includes a duct housing and an air duct, and an air outlet and a return air outlet are disposed on the air duct housing;
  • the refrigerator compartment is connected to the air duct through the air outlet and the air return port;
  • a fan disposed in the air duct and supplying air to the refrigerator compartment;
  • a first damper is disposed between the air outlet and the fan, and a second damper is disposed between the air return port and the fan;
  • the refrigerator compartment further includes a heating device and a partition, the partition partitioning the refrigerator compartment into at least two spaces, and the heating device and the air outlet are located in one of the spaces on the partition At least two through holes are provided, and one of the through holes is provided with a fan;
  • the refrigerator compartment further includes a controller, and the controller includes a temperature sensor.
  • the temperature sensor when the refrigerator compartment is heated, is configured to: when the refrigerator compartment temperature is higher than a set first threshold, the temperature sensor feeds back information to the The controller, the heating device stops heating.
  • the temperature sensor when the refrigerator compartment is cooled, is configured to feed back information to the control when the inter-refrigerator compartment temperature is lower than a set second threshold The first damper and the second damper are closed.
  • the first threshold is greater than the second threshold.
  • the separator is a heat insulating material.
  • the heating device is a heating wire.
  • the refrigerator compartment further includes a driving device, and the controller controls the driving device to drive the first damper and the second damper to open and close.
  • the heating device is disposed on a wall of the box opposite to the door body, between the air outlet and the air return opening.
  • a refrigerator comprising the refrigerator compartment according to any of the preceding claims, the refrigerator compartment being provided independently of the refrigerator compartment and the freezer compartment of the refrigerator.
  • the invention has the beneficial effects that: by providing a heating device in the refrigerating compartment of the air-cooled refrigerator, a refrigerator compartment can be directly converted between the heat preservation heating function and the cooling function, and the object is truly achieved. Multi-purpose, more energy-efficient, environmentally friendly, and more able to meet individual consumer needs.
  • FIG. 1 is a schematic view showing the structure of a refrigerator compartment in an embodiment of the present invention.
  • the refrigerator compartment 10 of the invention has refrigeration and system
  • the two working modes of heat include: a casing 11 and a door body 12 of the switch box 11, and a duct device 13 is disposed on the rear wall of the box 11.
  • the back wall referred to herein refers to the wall of the casing 11 opposite to the door body 12.
  • the casing 11 includes a liner 111 formed around the refrigerator compartment 10, a casing (not shown), and a foam layer 112 disposed between the liner 111 and the casing.
  • the air duct device 13 includes a duct housing 131 and an air duct (not shown).
  • the air duct housing 131 is provided with an air outlet 1311 and a return air opening 1312.
  • the refrigerator compartment 10 passes through the air outlet 1311 and the return air opening 1312 and the air duct.
  • a fan (not shown) for supplying air to the refrigerator compartment 10 is provided in the air duct, a first damper 1321 is disposed between the air outlet 1311 and the fan, and a second damper 1322 is disposed between the fan of the air return port 1312.
  • the first damper 1321 and the second damper 1322 are both in an open state, and the air passing through the evaporator (not shown) is cooled to a lower temperature, and the cooled air is driven by the fan.
  • the air outlet of the fan comes out, enters the refrigerator compartment 10 through the air duct, and returns to the air duct through the air return port 1312.
  • the air duct, the air outlet 1311, the air return port 1312 and the refrigerator compartment 10 together form a refrigeration cycle.
  • the refrigerator compartment 10 further includes a heating device 113 and a partition 114 that partitions the refrigerator compartment 10 into at least two spaces, and the heating device 113 and the air outlet 1311 are located in one of the spaces.
  • the refrigerator compartment 10 is partitioned into two spaces by the partition plate 114 as an example.
  • the volume of the two spaces is different, and the larger space is the food placement space 14, and the smaller space is for accommodating heating.
  • the heating space 15 of the device 113 and the air outlet 1311, and the return air opening 1312 are located in the food placement space 14.
  • at least two through holes 115 and 117 are provided in the partition 114, and a fan 116 is disposed in the through hole 117.
  • the heating device 113 is disposed on a wall of the casing 11 opposite to the door body 12, and is located between the air outlet 1311 and the return air opening 1322.
  • the first damper 1321 and the second damper 1322 are both closed, and the hot air in the heating space 15 is radiated through the through holes 115 and 117 to the placing space 14 for placing the food to heat the food placing space 14,
  • the air in the food placement space 14 passes through and the other through hole 115 returns to the heating space 15 to achieve convection circulation of the air, so that the temperature in the refrigerator compartment 10 is continuously raised to achieve the user's setting.
  • Claim. Among them, the fan in the through hole 117 rotates when the heating device 113 operates, and the air circulation speed around the heating device 113 can be accelerated, so that the heating efficiency of the heating device 113 can be improved.
  • the heating device 113 is a heating wire
  • the partition plate 114 is a heat insulating material.
  • the heating wire can be insulated from the heat radiation to prevent the heating wire from directly placing the space on the food.
  • the direct baking prevents the water loss of the food from being severe and protects the wall material of the food placement space 14. It should be noted that the heating device 113 and the air outlet 1311 are located in the heating space 15 in order to change the cold air in the air duct from the air outlet 1311 into the heating space when the refrigerator compartment 10 is switched from the heating mode to the cooling mode.
  • the heating space 15 is preferentially cooled, so that the cooling rate of the whole refrigerator compartment 10 is accelerated; if the air outlet 1311 is placed outside the heating space 15, the cold air in the air duct directly enters the air outlet 1311 and enters the food pendulum. When the space 14 is placed, the hot air of the heating space 15 cannot be dissipated at one time, and the cooling rate of the entire refrigerator compartment 10 is slow.
  • the refrigerator compartment 10 further includes a display panel (not shown), a controller (not shown), and the display panel can be set
  • the display panel is electrically connected to the controller for displaying the working information of the refrigerator compartment 10 and obtaining user instructions.
  • the display panel of the refrigerator compartment 10 can also be connected to other compartments.
  • the display panels are integrated, for example, the display panels can be collectively disposed on the door of the refrigerator compartment (not shown).
  • the controller includes a temperature sensor (not shown), and the temperature sensor is disposed in the refrigerator compartment 10, and can be used to detect the temperature of the refrigerator compartment 10 to feed back information to the controller to control the start and stop of the heating apparatus 113. Opening and closing of the damper.
  • the controller can also control the start and stop of the fan 116.
  • the controller may be an integrated circuit including a Micro Controller Unit (MCU).
  • MCU Micro Controller Unit
  • the microcontroller may include a central processing unit (CPU), a read-only memory (ROM), a random access memory (RAM), and a timing. Module, digital to analog converter (A/D Converter), and several input/output ports.
  • the control device 21 can also adopt other forms of integrated circuits, such as Application Specific Integrated Circuits (ASICs) or Field-Programmable Gate Arrays (FPGAs).
  • ASICs Application Specific Integrated Circuits
  • FPGAs Field-Programmable Gate Arrays
  • the refrigerator compartment 10 further includes a driving device (not shown) for driving the opening and closing of the first damper 1321 and the second damper 1322.
  • the temperature sensor is electrically connected to the driving device, and the driving device is configured to drive the opening and closing of the first damper 1321 and the second damper 1322 according to the temperature signal fed back by the temperature sensor.
  • the refrigerator compartment 10 is turned on in the heating mode, and the first damper 1321 and the second damper 1322 are both closed to prevent hot air from flowing into the cold air of the entire refrigerator (not shown).
  • the circulation system causes the loss of cooling capacity and affects the normal cooling of the refrigerator.
  • the heating device 113 starts heating, the fan 116 rotates, the temperature in the refrigerator compartment 10 starts to rise continuously, and the temperature sensor is configured to feedback information to the controller when the temperature in the refrigerator compartment 10 is higher than a set first threshold.
  • the heating device 113 stops heating and is in a heat preservation state; the heating mode can be used to thaw or heat the food, and can also be used for fermentation; when the display panel obtains the user's cooling instruction, the refrigerator compartment 10 is opened to the cooling mode, and the first damper 1321 And the second damper 1322 is opened, so that the refrigerator compartment 10 communicates with the cold air circulation system of the whole refrigerator, the heating device 113 stops heating, the fan 116 stops rotating, and the cold air first flows into the heating space 15 from the air outlet 1311, and then passes through the partition 114. The upper through hole flows into the food placing space 14 and finally flows out from the return air opening 1312.
  • the cold air continuously circulates in the refrigerator compartment 10, the temperature in the refrigerator compartment 10 starts to continuously decrease, and the temperature sensor is configured to be in the refrigerator compartment 10
  • the temperature sensor feeds back information to the controller, and the evaporator 13 stops cooling and is in a cold-keeping state. In this way, the heating mode and the cooling mode can be directly converted.
  • the first threshold is greater than or equal to the second threshold.
  • the present invention also provides a refrigerator (not shown) which can obtain the advantageous effects of the refrigerator compartment in the above embodiments by adopting the refrigerator compartment described in each of the above embodiments, and The refrigerator His structure or function has not been improved, so the other structures of the refrigerator will not be described here.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Cold Air Circulating Systems And Constructional Details In Refrigerators (AREA)
  • Devices That Are Associated With Refrigeration Equipment (AREA)

Abstract

冰箱间室(10),具有制冷和制热两种工作模式,其包括箱体(11)和开关冰箱间室(10)的门体(12),箱体(11)的后壁上设有风道装置(13),冰箱间室(10)通过风道装置(13)的出风口(1311)和回风口(1312)与风道连通;设置在风道中并向冰箱间室(10)送风的风机;在出风口(1311)和风机之间设有第一风门(1321),在回风口(1312)和风机之间设有第二风门(1322);冰箱间室(10)还包括加热装置(113)和隔板(114),隔板(114)将冰箱间室(10)隔成至少两个空间,加热装置(113)和出风口(1312)位于其中一个空间内,隔板上至少设有两个通孔(115,117),其中一个通孔(115,117)中设有风扇(116)。

Description

冰箱间室及具有其冰箱
本申请要求了申请日为2015年10月26日,申请号为201510702383.1,发明名称为“冰箱间室及具有其的冰箱”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明属于家用电器技术领域,尤其涉及一种冰箱间室及具有其的冰箱。
背景技术
随着社会的发展,人们对生活品质要求越来越高,而现有的冰箱一般只具有冷藏室、冷冻室等将箱内温度保持在特定温度的各个间室,不能满足人们在居家生活中对食物储藏的多元化和个性化的需求,例如:平时吃剩留存的食品,一般都放进冰箱里保存,但是当再吃时,无论是凉吃还是回锅,卫生及口味都不如先前;另外,用户在进行解冻时也需要一定的温度对冷冻食物进行加热,目前都是将食物从冰箱中取出,再放到合适的容器中进行加热,频繁挪动食物造成用户使用的方便性很差。
因此,有必要提出一种既具有保温加热功能又具有制冷功能,并且在两种功能之间直接转换的独立冰箱间室。
发明内容
本发明的目的在于提供一种带有冰箱间室的冰箱,该冰箱间室能在保温加热功能和制冷功能之间直接转换。
为实现上述发明目的,本发明提供一种冰箱间室。
本发明的目的还在于提供一种冰箱。
其中,所述冰箱间室具有制冷和制热两种工作模式,其包括箱体和开关所述冰箱间室的门体,所述箱体的后壁上设有风道装置,
所述风道装置包括风道壳体和风道,在所述风道壳体上设有出风口和回风口;
所述冰箱间室通过所述出风口和所述回风口与所述风道连通;
设置在所述风道中并向所述冰箱间室送风的风机;
在所述出风口和所述风机之间设有第一风门,在所述回风口和所述风机之间设有第二风门;
所述冰箱间室还包括加热装置和隔板,所述隔板将所述冰箱间室隔成至少两个空间,所述加热装置和所述出风口位于其中一个空间内,所述隔板上至少设有两个通孔,其中一个通孔中设有风扇;
当所述冰箱间室制热时,所述第一风门和所述第二风门关闭,所述加热装置开始加热,所述风扇转动;
当所述冰箱间室制冷时,所述第一风门和所述第二风门打开,所述加热装置停止加热,所述风扇停止转动。
作为本发明的进一步改进,所述冰箱间室还包括控制器,所述控制器包括温度传感器。
作为本发明的进一步改进,当所述冰箱间室制热时,所述温度传感器被配置为当所述冰箱间室内温度高于设定的第一阈值时,所述温度传感器反馈信息至所述控制器,加热装置停止加热。
作为本发明的进一步改进,当所述冰箱间室制冷时,所述温度传感器被配置为当所述冰箱间室内温度低于设定的第二阈值时,所述温度传感器反馈信息至所述控制器,所述第一风门和所述第二风门关闭。
作为本发明的进一步改进,所述第一阈值大于所述第二阈值。
作为本发明的进一步改进,所述隔板为隔热材料。
作为本发明的进一步改进,所述加热装置为加热丝。
作为本发明的进一步改进,所述冰箱间室还包括驱动装置,所述控制器控制所述驱动装置驱动所述第一风门和第二风门开闭。
作为本发明的进一步改进,所述加热装置设于所述箱体与所述门体相对的壁上,位于所述出风口和所述回风口之间。
相应地,一种冰箱,包括如上任意一项权利要求所述的冰箱间室,所述冰箱间室独立于冰箱的冷藏室和冷冻室设置。
与现有技术相比,本发明的有益效果是:通过在风冷冰箱的制冷间室内设置加热装置,形成一种能在保温加热功能和制冷功能之间直接转换冰箱间室,真正达到一物多用、更加节能、环保,也更能满足个性化的消费需求。
附图说明
图1是本发明一具体实施方式中冰箱间室的结构示意图。
具体实施方式
以下将结合附图所示的各实施方式对本发明进行详细描述。但这些实施方式并不限制本发明,本领域的普通技术人员根据这些实施方式所做出的结构、方法、或功能上的变换均包含在本发明的保护范围内。
参图1所示为本发明冰箱间室10的一较佳实施方式。本发明该冰箱间室10具有制冷和制 热两种工作模式,其包括:箱体11、开关箱体11的门体12,在箱体11的后壁上设有风道装置13。这里所说的后壁指的是箱体11上与门体12相对的壁。
具体地,箱体11包括形成在冰箱间室10周围的内胆111,外壳(图未示)及设置在内胆111和外壳间的发泡层112。风道装置13包括风道壳体131和风道(图未示),在风道壳体131上设有出风口1311和回风口1312,冰箱间室10通过出风口1311和回风口1312与风道连通。在风道中设有向冰箱间室10送风的风机(图未示),在出风口1311和风机之间设有第一风门1321,在回风口1312风机之间设有第二风门1322,在冰箱间室10制冷的模式下,第一风门1321和第二风门1322均处于打开状态,经过蒸发器(图未示)的空气被冷却至较低温度,冷却后的空气在风机的驱动下从风机出风口(图未示)出来,经风道进入冰箱间室10,再经回风口1312回到风道中,风道、出风口1311、回风口1312及冰箱间室10共同构成制冷循环回路。
进一步地,冰箱间室10还包括加热装置113和隔板114,隔板114将冰箱间室10隔成至少两个空间,加热装置113和出风口1311位于其中一个空间内。在本实施方式中,以隔板114将冰箱间室10隔成两个空间为例进行说明,两个空间的容积不同,较大的空间为食品摆放空间14,较小的空间为容纳加热装置113和出风口1311的加热空间15,回风口1312则位于食品摆放空间14中。优选地,隔板114上至少设有两个通孔115和117,其中通孔117中设有风扇116。加热装置113设于箱体11与门体12相对的壁上,位于出风口1311和回风口1322之间。
加热装置113在工作时,第一风门1321和第二风门1322均关闭,加热空间15中的热空气通过通孔115和117散发到摆放食品的摆放空间14以加热食品摆放空间14,食品摆放空间14内的空气则通过而另一个通孔115回到加热空间15内,以实现空气的对流循环,从而可使冰箱间室10内的温度持续升高,以达到用户的设定要求。其中,通孔117中的风扇在加热装置113工作时转动,可加快加热装置113周围的空气流通速度,从而可提高加热装置113的加热效率。优选地,加热装置113为加热丝,隔板114为隔热材料,除了可以防止用户触碰到加热装置113,还可以起到隔绝加热丝热辐射作用,避免加热丝直接对食品摆放空间14的直接烘烤,防止食品水份流失严重,保护食品摆放空间14的室壁材料。这里需要说明的是,加热装置113和出风口1311共同位于加热空间15内,是为了在冰箱间室10从制热模式转换为制冷模式时,风道内的冷风从出风口1311出来直接进入加热空间15内,优先给加热空间15降温,从而使得整个冰箱间室10的降温速度加快;如果将出风口1311置于加热空间15外,则风道内的冷风从出风口1311出来直接进入的是食品摆放空间14,加热空间15的热空气一时无法散出,整个冰箱间室10的降温速度慢。
更进一步地,冰箱间室10还包括显示面板(图未示)、控制器(图未示),显示面板可设 置于冰箱间室10门体12上,显示面板与控制器电性连接,用于显示冰箱间室10的工作信息并获取用户指令,当然,冰箱间室10的显示面板也可与其他间室的显示面板集成在一起,例如,显示面板可以集中设置在冰箱冷藏室的门体上(图未示)。
上述实施方式中,控制器包括温度传感器(图未示),温度传感器设于冰箱间室10内,其可用于检测冰箱间室10的温度以反馈信息至控制器控制加热装置113的启停和风门的开闭。当然,控制器还可控制风扇116的启停。优选地,控制器可以是包括微控制器(Micro Controller Unit,MCU)的集成电路。本领域技术人员所熟知的是,微控制器可以包括中央处理单元(Central Processing Unit,CPU)、只读存储模块(Read-Only Memory,ROM)、随机存储模块(Random Access Memory,RAM)、定时模块、数字模拟转换模块(A/D Converter)、以及若干输入/输出端口。当然,控制装置21也可以采用其它形式的集成电路,如特定用途集成电路(Application Specific Integrated Circuits,ASIC)或现场可编程门阵列(Field-programmable Gate Array,FPGA)等。
优选地,冰箱间室10还包括一驱动装置(图未示),用来驱动第一风门1321和第二风门1322的开闭。温度传感器电性连接驱动装置,驱动装置被设置为根据温度传感器反馈的温度信号驱动第一风门1321和第二风门1322的开闭。
具体地,当显示面板获取到用户制热的指令时,冰箱间室10开启制热模式,第一风门1321和第二风门1322均关闭,可防止热空气流入整个冰箱(图未示)的冷风循环系统,造成冷量流失,影响冰箱正常制冷。加热装置113开始加热,风扇116转动,冰箱间室10内的温度开始持续上升,温度传感器被配置为当冰箱间室10内温度高于设定的第一阈值时,温度传感器反馈信息至控制器,加热装置113停止加热并处于保温状态;制热模式可用来解冻或加热食物,还可用来发酵;当显示面板获取到用户制冷的指令时,冰箱间室10开启到制冷模式,第一风门1321和第二风门1322均打开,使得冰箱间室10与整个冰箱的冷风循环系统连通,加热装置113停止加热,风扇116停止转动,冷风先从出风口1311流进加热空间15,再经由隔板114上的通孔流入食品摆放空间14,最后从回风口1312流出,冷风在冰箱间室10内不断循环,冰箱间室10内的温度开始持续下降,温度传感器被配置为当冰箱间室10内温度低于设定的第二阈值时,温度传感器反馈信息至控制器,蒸发器13停止制冷并处于保冷状态。如此,制热模式和制冷模式可以直接转换。
需要说明的是,上述第一阈值大于或等于第二阈值。
相应地,本发明还提供一种冰箱(未图示),该冰箱通过采用上述各实施方式中介绍的冰箱间室,可以取得上述各实施方式中冰箱间室具有的有益效果,并且,由于对该冰箱的其 他结构或功能并未做出改进,故在此对该冰箱的其它结构也不再赘述。
对于本领域技术人员而言,显然本发明不限于上述示范性实施例的细节,而且在不背离本发明的精神或基本特征的情况下,能够以其他的具体形式实现本发明。因此,无论从哪一点来看,均应将实施例看作是示范性的,而且是非限制性的,本发明的范围由所附权利要求而不是上述说明限定,因此旨在将落在权利要求的等同要件的含义和范围内的所有变化囊括在本发明内。不应将权利要求中的任何附图标记视为限制所涉及的权利要求。
此外,应当理解,虽然本说明书按照实施方式加以描述,但并非每个实施方式仅包含一个独立的技术方案,说明书的这种叙述方式仅仅是为清楚起见,本领域技术人员应当将说明书作为一个整体,各实施例中的技术方案也可以经适当组合,形成本领域技术人员可以理解的其他实施方式。

Claims (10)

  1. 一种冰箱间室,具有制冷和制热两种工作模式,其包括箱体和开关所述冰箱间室的门体,所述箱体的后壁上设有风道装置,
    所述风道装置包括风道壳体和风道,在所述风道壳体上设有出风口和回风口;
    所述冰箱间室通过所述出风口和所述回风口与所述风道连通;
    设置在所述风道中并向所述冰箱间室送风的风机;
    在所述出风口和所述风机之间设有第一风门,在所述回风口和所述风机之间设有第二风门;
    其特征在于,所述冰箱间室还包括加热装置和隔板,所述隔板将所述冰箱间室隔成至少两个空间,所述加热装置和所述出风口位于其中一个空间内,所述隔板上至少设有两个通孔,其中一个通孔中设有风扇;
    当所述冰箱间室制热时,所述第一风门和所述第二风门关闭,所述加热装置开始加热,所述风扇转动;
    当所述冰箱间室制冷时,所述第一风门和所述第二风门打开,所述加热装置停止加热,所述风扇停止转动。
  2. 根据权利要求1所述的冰箱间室,其特征在于,所述冰箱间室还包括控制器,所述控制器包括温度传感器。
  3. 根据权利要求2所述的冰箱间室,其特征在于,当所述冰箱间室制热时,所述温度传感器被配置为当所述冰箱间室内温度高于设定的第一阈值时,所述温度传感器反馈信息至所述控制器,加热装置停止加热。
  4. 根据权利要求3所述的冰箱间室,其特征在于,当所述冰箱间室制冷时,所述温度传感器被配置为当所述冰箱间室内温度低于设定的第二阈值时,所述温度传感器反馈信息至所述控制器,所述第一风门和所述第二风门关闭。
  5. 根据权利要求4所述的冰箱间室,其特征在于,所述第一阈值大于所述第二阈值。
  6. 根据权利要求1所述的冰箱间室,其特征在于,所述隔板为隔热材料。
  7. 根据权利要求1所述的冰箱间室,其特征在于,所述加热装置为加热丝。
  8. 根据权利要求2所述的冰箱间室,其特征在于,所述冰箱间室还包括驱动装置,所述控制器控制所述驱动装置驱动所述第一风门和第二风门开闭。
  9. 根据权利要求1所述的冰箱间室,其特征在于,所述加热装置设于所述箱体与所述 门体相对的壁上,位于所述出风口和所述回风口之间。
  10. 一种冰箱,其特征在于,包括如上任意一项权利要求所述的冰箱间室,所述冰箱间室独立于冰箱的冷藏室和冷冻室设置。
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