CN1074119C - 间接冷却式冰箱 - Google Patents

间接冷却式冰箱 Download PDF

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CN1074119C
CN1074119C CN93117996A CN93117996A CN1074119C CN 1074119 C CN1074119 C CN 1074119C CN 93117996 A CN93117996 A CN 93117996A CN 93117996 A CN93117996 A CN 93117996A CN 1074119 C CN1074119 C CN 1074119C
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refrigerating chamber
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air
evaporimeter
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赵光衍
李起泰
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WiniaDaewoo Co Ltd
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    • F25D2317/065Details or arrangements for circulating cooling fluids; Details or arrangements for circulating gas, e.g. air, within refrigerated spaces, not provided for in other groups of this subclass with forced air circulation characterised by the air return
    • F25D2317/0653Details or arrangements for circulating cooling fluids; Details or arrangements for circulating gas, e.g. air, within refrigerated spaces, not provided for in other groups of this subclass with forced air circulation characterised by the air return through the mullion
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
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    • F25D2317/066Details or arrangements for circulating cooling fluids; Details or arrangements for circulating gas, e.g. air, within refrigerated spaces, not provided for in other groups of this subclass with forced air circulation characterised by the air supply
    • F25D2317/0662Details or arrangements for circulating cooling fluids; Details or arrangements for circulating gas, e.g. air, within refrigerated spaces, not provided for in other groups of this subclass with forced air circulation characterised by the air supply from the corner
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    • F25D2317/00Details or arrangements for circulating cooling fluids; Details or arrangements for circulating gas, e.g. air, within refrigerated spaces, not provided for in other groups of this subclass
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    • F25D2317/067Details or arrangements for circulating cooling fluids; Details or arrangements for circulating gas, e.g. air, within refrigerated spaces, not provided for in other groups of this subclass with forced air circulation characterised by air ducts
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    • F25D2317/068Details or arrangements for circulating cooling fluids; Details or arrangements for circulating gas, e.g. air, within refrigerated spaces, not provided for in other groups of this subclass with forced air circulation characterised by the fans
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    • F25D2400/00General features of, or devices for refrigerators, cold rooms, ice-boxes, or for cooling or freezing apparatus not covered by any other subclass
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    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
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    • 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
    • F25D2700/00Means for sensing or measuring; Sensors therefor
    • F25D2700/12Sensors measuring the inside temperature
    • F25D2700/123Sensors measuring the inside temperature more than one sensor measuring the inside temperature in a compartment

Abstract

一种间接冷却式冰箱。含有设置在冷冻室里的一个蒸发器和第一和第二送风风扇的温度调节装置,并能独立地控制双方间能进行流体连通的冷冻室和冷藏室各自的温度。温度调节装置含有通过第一和第二通路能进行流体连通的冷冻室和冷藏室;设置在上述第一通路内的加热器;设置在上述冷冻室内的蒸发器;第一及第二送风风扇;设置在冷冻室和冷藏室里的温度检测元件;设置在上述蒸发器上的霜冻检测传感器。本发明能增大冷藏室的可用体积。

Description

间接冷却式冰箱
本发明涉及一种间接冷却式冰箱,特别是那种采用了包含设置在冷冻室里的一个蒸发器和第一及第二送风风扇的温度调节装置,由此能独立地控制可在两者间进行流体连通的冷冻室和冷藏室的各自温度的间接冷却式冰箱。
通常的间接冷却式冰箱,配备着这样的温度调节装置,即它是包含设置在冷冻室里的一个蒸发器和一个送风风扇和设置在冷藏室内的阻尼挡板驱动装置。而且冷冻室通过第一和第二通路能和冷藏室进行流体连通。由蒸发器冷却了的空气中的一部分用送风风扇直接流入冷冻室,上述空气中的其余部分是根据冷藏室内的温度检测元件输出的信号,在要打开第二通路那样地使阻尼挡板动作时,通过上述的第二通路向冷藏室移动。在冷藏室内经过循环的空气通过第一通路一直向上移动到蒸发器,而流入冷冻室内的空气通过第一通路一直向下移动到蒸发器,由此,冷却就在冰箱内进行循环。
但是,由于在上述的温度调节装置中,送风风扇是根据冷冻室内的温度检测元件的信号而动作,阻尼挡板驱动装置是根据冷藏室内的温度检测元件的信号而动作的,所以冷藏室的温度受冷冻室的温度影响,而且由于冷藏室内的空气循环是由对流方式进行的,因此就使冷藏室的冷却效率降低,而且难确切地控制冷藏室的温度。
美国专利公报US-5,056,328号公开了一种包含设置在冷冻室内的第一蒸发器和第一送风风扇及设置在冷藏室内的第二蒸发器和第二送风风扇的温度调节装置。在冷冻室和冷藏室之间按规定设置着允许空气在它们间循环用的第一和第二通路。根据冷冻室和冷藏室各自的温度检测元件输出的信号能独立地控制第一和第二送风风扇及第一和第二蒸发器。但是,由于这样的温度调节装置使用两个蒸发器和两个送风风扇,因此不仅这些构件占用的体积太大,而且还有使制造费用上升、电能消耗多的问题。
日本实用新型公报昭60-143555号公开了一种包含设置在冷冻室内的一个蒸发器、和把冷气供给冷冻室那样地设置在冷冻室内的第一送风风扇、和开关阻尼挡板以便把冷气供给冷藏室或切断向冷藏室供给冷气的阻尼挡板驱动装置、和使供给到冷藏室的冷气进行循环那样地设置在冷藏室内的第二送风风扇的温度调节装置。由蒸发器冷却了的空气中的一部分用第一送风风扇直接流入冷冻室;借助把阻尼挡板打开,使上述空气中的其余部分通过第二通路供给冷藏室,并用第二送风风扇使其进行强制循环。采用一个蒸发器和二个送风风扇的上述温度调节装置能独立地分别对冷冻室和冷藏室的温度进行控制,但由于在第二通路内的空气移动是通过对流方式进行的,温度控制所要的时间就长,因此就降低了冰箱动作的可靠性。而且由于阻尼挡板驱动装置和第二送风风扇占用了冷藏室内相当部分的体积,使这些构件附近的空间不能得到确切的充分利用。
因此,本发明的目的是提供一种采用由设置在冷冻室内的一个蒸发器和两个送风风扇就能独立地对冷冻室和冷藏室的各自温度进行控制的温度调节装置的间接冷却式冰箱。
本发明的另一个目的是提供一种采用可弯曲的挡板替换阻尼挡板驱动装置、使第二送风风扇设置在冷冻室内,由此就能迅速地进行冷藏室温度控制、能提供更多冷藏室内的可用体积的温度调节装置的间接冷却式冰箱。
本发明的再一个目的是提供一种采用温度调节装置的间接冷却式冰箱,上述的温度调节装置是在蒸发器上形成霜冻时,能利用在冷冻室内经循环了的温度上升的空气和设置在第一通路内的除霜加热器进行除霜方式去霜的。
此外,本发明的另一个目的是提供一种采用了在第二送风风扇被停止时,能使用可弯曲的挡板来防止冷冻室内的冷气流入冷藏室内的温度调节装置的间接冷却式冰箱。
为达到上述目的,本发明提供了一种间接冷却式冰箱,它包括有温度调节装置,并采用了包含具有第一和第二前开门、一对侧壁、后壁及隔壁的壳体;按规定设置在上述隔壁的上侧的冷冻室;按规定设置在上述隔壁的下侧的、通过在隔壁上形成的第一通路和在后壁上形成的第二通路,能与上述冷冻室进行流体连通的冷藏室,其中,上述的温度调节装置含有设置在上述冷冻室内、使致冷剂蒸发用的蒸发器;设置在上述冷冻室内、把由蒸发器冷却了的空气直接供给冷冻室用的第一送风风扇;设置在上述冷冻室内、把由蒸发器冷却了的空气通过第二通路供给冷藏室用的第二送风风扇;一个端部固定在第一通路上、允许空气从冷藏室流向蒸发器、但防止空气从冷冻室流向冷藏室用的第一可弯曲挡板;和能把在蒸发器上形成的霜除去地设置在第一通路内的至少一个除霜加热器;设置在冷冻室内的第一温度检测元件;设置在冷藏室内的接近第二通路的第二温度检测元件;设置在冷藏室内的接近第一通路的第三温度检测元件;设置在蒸发器上、检测在其上形成的霜冻用的霜冻检测传感器;根据上述的温度检测元件和霜冻检测传感器的信号使上述的第一和第二送风风扇、除霜加热器、和压缩机驱动用的控制装置。
在本发明的温度调节装置中,通过在冷冻室内设置一个蒸发器和第一送风风扇及第二送风风扇,能根据分别设置冷冻室和冷藏室里的温度检测元件的信号,独立地控制冷冻室和冷藏室各自的温度;在蒸发器上形成霜冻时,能使除霜加热器动作,进行除霜方式的去霜。温度控制装置能根据各个温度检测元件和霜冻检测传感器的信号确切地控制第一和第二送风风扇、压缩机和除霜加热器。
图1是本发明的间接冷却式冰箱的正面图。
图2是沿图1的Ⅱ-Ⅱ线的剖面图。
图3是图2的A部分放大的剖面图。
图4是本发明的温度控制回路的方框图。
图5是本发明的湿度控制回路的详细说明图。
下面,参照看附图,详细地说明本发明的最佳实施例。
先参照图1,它是本发明的间接冷却式冰箱的正面图,它表示第一和第二前开门是处在分开的状态下。如图所示,冰箱10具有第一和第二前开门14、16(参见图2)和一对侧壁18及后壁20(参见图2)、和带有隔壁22的外壳12。冷冻室24按规定设置在隔壁22的上侧,冷藏室26按规定设置在隔壁22的下侧。通过在隔壁22内形成的第一通路28(参见图2)和在后壁20内形成的第二通路30,冷冻室24能与冷藏室26进行流体连通。如图2所示,使致冷剂蒸发用的蒸发器32(用虚线表示的)按规定配置在后壁20和阻挡板36之间的蒸发器室34中。第一送风用的风扇38装在后壁20上,第二送风用的风扇40装在阻挡板36上。阻挡板36具有由第一风扇38的作用能使冷气流入冷冻室24用的开孔42。第二通路具有通过第二风扇40的作用能使冷气流入冷藏室26用的入口44。流入入口44的空气通过在后壁20上形成的第二通路30一直运送到冷藏室26,第二通路30从冷藏室26的入口侧开始分成两股、形成分支通道46,分支通道46具有向冷藏室26供给冷气用的多个排出口48。
图2是表示沿图1的Ⅱ-Ⅱ线的剖面图,如图所示,在隔壁22内形成的第一通道28具有第一可弯曲挡板50(参见图3),可弯曲挡板50允许空气从冷藏室26流向蒸发器32,但防止空气从冷冻室24流向冷藏室26。
第一通路28做成有两个部分、即具有能使冷气从冷冻室24向蒸发器32移动的上侧部分和能使在冷藏室26内循环过的空气向蒸发器32移动的下侧部分,并通过这两部分能进行冰箱里的空气循环。
第二通路30的多个排出口48也允许空气从蒸发器32流向冷藏室26,而且最好具有防止反方向流动用的多个第二可弯曲挡板52。位于第一通路28下侧部分的是多个除霜加热器54,它们是在蒸发器32上形成霜时,将霜除去用的。霜检测用的传感器62位于蒸发器32上,检测蒸发器上是否形成霜冻。第一温度检测元件56设置在冷冻室24内、检测冷冻室内部的温度。第二温度检测元件58设置在冷藏室26中的第二通路30附近、检测新流入冷藏室26内的空气的温度。第三温度检测元件60设置在冷藏室26内的第一通路28附近、检测在冷藏室26内循环过的空气的温度。因此,第二和第三温度检测元件58、60的各自基准温度具有不同的数值,即第二温度检测元件的基准温度比第三温度检测元件的基准温度低。
现在参照图3,它是表示图2的第一可弯曲挡板50的放大剖面图,如图所示,第一弯曲挡板50的一个端部固定在托架64上。托架64有比第一可弯曲挡板50小的孔,附设在第一通路28的下端部分的隔板22上。因此,在冷藏室26经过循环的空气,借助把第一可弯曲挡板50向上地加压,在使第二送风风扇40动作的情况下,允许空气能向蒸发器32移动。与此相反,在使第二送风风扇40停止的情况下,第一可弯曲挡板50由自重作用而向下移动,就防止了冷冻室24内的空气倒流到冷藏室26内。下面,参照着附表和附图,说明送风风扇、蒸发器32和除霜加热器等根据湿度检测元件和霜冻检测传感器的信号进行动作的过程。
参照着图4,它是表示本发明的温度控制回路的方框图。图2所示的第一、第二和第三温度检测元件以及霜冻检测传感器被连接在温度控制回路的电路里,把检测到的信号输送到上述回路里。温度控制回路根据上述的温度检测元件和霜冻检测元件传送来的信号,使第一及第二送风风扇和除霜加热器、压缩机动作,并由此控制冷冻室24和冷藏室26的温度。
为了对第一和第二送风风扇及除霜加热器、压缩机的动作进行自动控制,把由第一、第二和第三温度检测元件及霜冻检测传感器提供的所有信号的一切可能组合构成参考数据。
其结果如下列的真值表那样。
在上述的真值表中,“S1”表示由冷冻室的第一温度检测元件输出的信号,“S2”表示由位于邻接第二通路的冷藏室内的第二温度检测元件输出的信号,“S3”表示由位于邻接第一通路的冷藏室内的第三温度检测元件输出的信号,“D”表示由霜冻检测传感器输出的信号。用逻辑高级“H”和逻辑低级“L”来表示各个信号S1、S2、S3及D。信号S1、S2和S3的逻辑低级“L”是在各个检测到的温度超过各个预先限定的温度时发生的,而信号D的逻辑高级“H”是在蒸发器上形成的霜层厚度超过预先限定的厚度时发生的。另一方面,“FAN1”、“COMP”、“FAN2”及“HEATER”表示对第一送风风扇、压缩机、第二送风风扇及除霜加热器的各个控制信号,各个控制信号都有逻辑高级“H”和逻辑低级“L”。控制信号“H”表示动作开始,控制信号“L”表示动作停止。
通过布尔函数的应用可把上述真值表中的各个控制信号的“FAN1”、“COMP”、“FAN2”和“HEATER”用下式加以表示。FAN1= S1COMP= S1(S2+S3)FAN2= S2S3+DHEATER=S1S3D(S2+S3)
由上述的一些关系式确定的各个输出信号能得到如图5所示的结构。由图5可清楚地看出,在冷冻室内的温度上升到基准温度以上时,(S1=“L”);就使第一送风风扇和压缩机动作(FAN1或COMP=“H”)。另外,在第二和第三温度检测元件中任意一个检测到比基准温度高的温度时(S2=“L”或S3=“L”),就使第二送风风扇或压缩机动作(FAN2或COPM=“H”)。在霜冻检测传感器检测到蒸发器上形成规定厚度的霜时(D=“H”),就使第二送风风扇动作,使冷藏室26内的空气向蒸发器移动,进行第一次除霜方式的去霜。在进行第一次除霜方式后,霜没被除去时,就使除霜加热器动作,提高通过第一通路28的空气的温度,并由此进行第二次除霜方式的去霜。
采用发明的温度调节装置,使用设置在冷冻室内的一个蒸发器及第一和第二送风风扇就能独立地控制冷冻室24和冷藏室26各自的温度,因而能提供更大的冷藏室26内的可用的体积。
此外,通过在第一通路28内设置除霜加热器,在蒸发器上形成霜冻时,把冷冻室内循环过的空气通过上述的加热器之后,使其向蒸发器移动,由此就能有效地进行除霜方式的去霜。
                  真值表
S1    S2   S3   D  FAN1 COMP FAN2 HEATER
 H    H    H    H    L    L    H    HH    H    H    L    L    L    L    LH    H    L    H    L    L    H    LH    L    H    H    L    L    H    HH    L    H    L    L    L    H    LH    L    L    H    L    L    H    LH    L    L    L    L    H    H    LL    H    H    H    H    H    H    LL    H    H    L    H    H    L    LL    H    L    H    H    H    H    LL    H    L    L    H    H    H    LL    L    H    H    H    H    H    LL    L    H    L    H    H    H    LL    L    L    H    H    H    H    LL    L    L    L    H    H    H    L

Claims (7)

1、一种间接冷却式冰箱,它包括有温度调节装置,并采用了包含具有第一和第二前开门、一对侧壁、后壁及隔壁的壳体;按规定设置在上述隔壁的上侧的冷冻室;按规定设置在上述隔壁的下侧的、通过在隔壁上形成的第一通路和在后壁上形成的第二通路,能与上述冷冻室进行流体连通的冷藏室,其特征在于,上述的温度调节装置含有设置在上述冷冻室内、使致冷剂蒸发用的蒸发器;设置在上述冷冻室内、把由蒸发器冷却了的空气直接供给冷冻室用的第一送风风扇;设置在上述冷冻室内、把由蒸发器冷却了的空气通过第二通路供给冷藏室用的第二送风风扇;一个端部固定在第一通路上、允许空气从冷藏室流向蒸发器、但防止空气从冷冻室流向冷藏室用的第一可弯曲挡板;和能把在蒸发器上形成的霜除去地设置在第一通路内的至少一个除霜加热器;设置在冷冻室内的第一温度检测元件;设置在冷藏室内的接近第二通路的第二温度检测元件;设置在冷藏室内的接近第一通路的第三温度检测元件;设置在蒸发器上、检测在其上形成的霜冻用的霜冻检测传感器;根据上述的温度检测元件和霜冻检测传感器的信号使上述的第一和第二送风风扇、除霜加热器、和压缩机驱动用的控制装置。
2、如权利要求1所述的间接冷却式冰箱,其特征在于,上述的温度调节装置含有一端固定在上述第二通路上,能允许空气从上述蒸发器流向冷藏室,但防止空气相反地从冷藏室流向蒸发器的第二可弯曲挡板。
3、如权利要求1所述的间接冷却式冰箱,其特征在于,上述的第一送风风扇是在上述冷冻室内的温度到达冷冻室的第一温度检测元件的基准温度时被驱动的,上述的第二送风风扇是在位于冷藏室内的第二通路附近的第二温度检测元件和位于冷藏室内的第一通路附近的第三温度检测元件中的一个达到基准温度时被驱动的。
4、如权利要求1所述的间接冷却式冰箱,其特征在于,上述的第二送风风扇是在蒸发器上形成霜冻时,为了进行第一次除霜方式的去霜而被驱动的。
5、如权利要求1所述的间接冷却式冰箱,其特征在于,上述的除霜加热器是在没有完全除去霜时,为了进行第二次除霜方式的去霜而被驱动的。
6、如权利要求1所述的间接冷却式冰箱,其特征在于,上述的第一送风扇是装在冷冻室的后壁上的,上述的第二送风风扇是装在冷冻室的阻挡板上的。
7、如权利要求1所述的间接冷却式冰箱,其特征在于,上述第二温度检测元件的基准温度是比第三温度检测元件的基准温度低。
CN93117996A 1992-10-09 1993-10-09 间接冷却式冰箱 Expired - Fee Related CN1074119C (zh)

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