CN1204364C - 除湿机 - Google Patents

除湿机 Download PDF

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CN1204364C
CN1204364C CNB001003259A CN00100325A CN1204364C CN 1204364 C CN1204364 C CN 1204364C CN B001003259 A CNB001003259 A CN B001003259A CN 00100325 A CN00100325 A CN 00100325A CN 1204364 C CN1204364 C CN 1204364C
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dehumidifier
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CN1262415A (zh
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冈田广和
中川义英
高马一丰
高见博之
松本良昭
秋山真一
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Sanyo Electric Co Ltd
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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
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    • F24F3/14Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling by humidification; by dehumidification
    • F24F3/153Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling by humidification; by dehumidification with subsequent heating, i.e. with the air, given the required humidity in the central station, passing a heating element to achieve the required temperature
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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
    • F25D17/04Arrangements for circulating cooling fluids; Arrangements for circulating gas, e.g. air, within refrigerated spaces for circulating air, e.g. by convection
    • F25D17/06Arrangements for circulating cooling fluids; Arrangements for circulating gas, e.g. air, within refrigerated spaces for circulating air, e.g. by convection by forced circulation
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
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    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
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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
    • 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
    • F25D2317/04Treating air flowing to refrigeration compartments
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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
    • 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
    • F25D2317/06Details 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
    • F25D2317/063Details 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 with air guides
    • 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
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Abstract

本发明提供一种设置在壁橱内角落或家具与家具之间狭窄空间里使用,且能不被橱柜内堆放的被盖或家具等阻塞其吸入口而降低其除湿效能的除湿机。它是在前後细长的除湿机机体前方设吸气口,且在机体上方设置排气口,将蒸发器、凝缩器依序配置在吸气口至排气口的机体内送风路的左右向(宽度方向),在橱内以吸气口向前方式设置该除湿机。

Description

除湿机
背景技术
本发明涉及一种除湿机,尤其是还能放置在狭窄空间中使用的除湿机。
技术领域
一般除湿机是放置在室内的一个角落,从吸气口吸入的室内空气,由设置在机体内部的构成冷冻循环构件的蒸发器除湿后,将除湿后的空气送回室内,以构成舒适的室内环境。
除湿机内部设有构成冷冻循环的压缩机、冷凝器、蒸发器及毛细管等构件,将由蒸发器除湿的室内空气中的水分,收集到配设在机体下方的集水桶,并在适当时候取出该集水桶、将水排去。
上述除湿机有如记载在日本专利公开公报「特开平6-229580号」的。但以前的除湿机的机体形状是沿着有空气出入口的正面方向将机体做成较长,形成横向宽度狭长,且纵深较短的构成。
在将该宽度方向细长构成的除湿机设置在壁橱内角落或家具与家具之间狭窄空间里使用时,因吸气口与橱柜内堆放的被褥或家具相对,故有吸气口阻塞,致使通气量减少、除湿能力下降的问题发生。在排除集水桶内之除湿水分时,亦有为取出该集水桶须将机体整体拉出的问题。
发明内容
本发明是为了解决上述问题而作出的,其目的是提供一种能设置在壁橱内角落或家具与家具之间狭窄空间里使用,且能不被橱柜内堆放的被褥或家具等阻塞其吸入口而降低其除湿效能、并能容易地进行排水处理的除湿机。
为了达到上述目的而作出的本发明的除湿机,在机体内设置由压缩机、冷凝器、蒸发器及送风扇形成的冷冻循环,使通过形成在上述机体上的吸气口而向排气口流过的室内空气,与上述蒸发器及冷凝器接触而予以除湿、干燥后,送风吐出,其特征在于,上述机体作成左右方向的宽度比前后方向的长度短的结构,上述吸气口设在前后方向的、使用时的上述机体前面及后面,同时,上述排气口设于上述机体上面部后方侧,在上述机体内部形成从上述吸气口至排气口的送风路径,上述送风路径内的机体内的左右方向上并列配置的上述蒸发器、上述冷凝器及上述送风扇,依次朝向上述排气口设置,同时,在机体内的下部前方设有能前后拉动的除湿水集水用的除湿水集水桶,而且在上述机体内下部后方配置上述压缩机,上述机体以前后细长的方式构成,以便设置在壁橱内宽度狭窄的空间里。
如上所述,若采用本发明的除湿机,由于它是在前后细长构造的除湿机机体前面设吸气口,故设置于壁橱内或家具与家具间空隙,能不会受被褥或家具等阻塞其吸气口。在狭窄空间进行顺畅通气除湿。又因可由前方能极简单地向前抽出除湿水储存水桶,进行除湿水处理,所以可不需要如现有技术那样将除湿机取出后再取出水桶,能免除取水桶的麻烦,改善其使用性。又因在细长机体前面或后面的吸气口进行吸气,将进行除湿的冷冻循环的蒸发器、冷凝器、送风扇等配设在与吸入方向垂直的机体左右方向,故在有限狭窄空间能容易组装,同时,亦可使吸入空气与蒸发器、冷凝器等有良好的接触,以确保充分的热交换性,发挥其除湿效果。
若依本发明,可将吸气口设在机体后面,如上所述,可由前后方同时吸气,故吸气量充分,能更有效地进行除湿。
若用本发明,由于在机体内部设置的送风路径,是将由吸气口吸入的空气,由直角转换为与机体前后方向垂直的机体左右方向(机体宽度方向),且形成通过机体宽度方向配设的蒸发器、冷凝器后,再向上变换方向予以排出的屈折通风路径,故其通风顺畅,能获得良好除湿效果。
附图说明
下面,参照着附图来说明本发明的实施例。
图1是表示将本发明除湿机在壁橱内使用的示例的正面图。
图2是表示除湿机内部构造及通风状态的概略顶视断面图。
图3是表示除湿机内部构造的概略纵断面图。
图4是表示沿除湿机机体宽度方向切断的概略纵断面图。
图5是从图3的相反方向(背面方向)表示的除湿机的概略纵断面图。
具体实施方式
1为除湿机机体(下称机体),该机体外侧面是由合成树脂形成的左壳2及右壳3构成的机壳4覆盖。5是形成在上述机壳4周围四侧面6、7、8、9中、最小面积侧面部上的栅格状吸气口,10是形成在与该吸气口5相对的另一侧面上的另一栅格状吸气口。
所谓机体1的前后方向的面,是指设有该吸气口的面。亦即,是机体前面6及后面7。故该机体1的形状是左右方向的宽度比前后的长度短。即如图2所示,是一种在其前后方向成细长的形体。而且将上述吸气口5形成在机体1的前面6上,而另一吸气口10则形成在该机体1的后面7上。
并且,如图2所示,在左壳2及右壳3中,无吸气口5、10的侧面8、9分别为机体1的左右两侧面,是机体的宽度部分。以前的除湿机的结构主要是机体宽度方向较长。故在尺寸关系上与以前的除湿机相反,如图1及图2所示,是一种机体宽度短(薄),有吸气口5、10的前后方向一侧较长的除湿机构造,故能如图1所示、在壁橱11内的被褥12与壁橱内侧壁13间的狭窄空间14里,将吸气口5向前地配设使用。因此,吸气口5、10可不同于以前的除湿机那样处于侧面,不会被橱柜内的被褥12阻塞。
在本实施例中,上述吸气口5、10是在机体前后面6、7各设一处、形成2个吸气口,但可以不限于2个,至少应在前面设有吸气口。
15是突出在除湿机后部的确保吸气空间用突出部,由于突出部15的存在,可使上述除湿机配设在壁橱11内时,不使后方吸气口10与橱内后壁(未图示)密接,使机体1后部离开橱内后壁,确保机体后部与橱内后壁间的适度空间,使吸气口10的吸气得以顺畅。
突出部15能与机壳4一体成型为突起。设置突起(为确保吸气空间之突出部)15的位置,可在机壳4后面的任何位置,且可不限定其设置个数,若设于分割的左右壳2、3嵌合的中间部,则可使除湿机顺畅地在该机体后确保一定空隙地,进行稳定的设置。若仅在该机体前面设吸气口,后面无吸气口时,可不设上述用以确保吸气空间的突出部15。
如图所示,将形成在机体1前面的吸气口5形成略凹于机壳4外表面位置的凹部35,而不与机壳4外表面成同一表面。这是因为当将除湿机设于壁橱内而关闭橱门使用时,吸气口5将与橱门密接而妨碍由前方的吸入性,通过形成略凹入的凹部35结构的吸气口5,即可在吸气口5左右两侧形成吸气用开口部,从而可从侧方(横向)代替前方吸入空气,以确保通气量。又,用凹部35的吸气口5吸入空气,可改善其吸入状态,以提高吸入效率;能将吸气口5的一部分形成凹部35来确保充分通气量,亦可将整个吸气口5作成同样的凹入状。
在除湿机后方确保吸入空间时,此种使吸气口凹入的方法,可用来代替上述突出部15、同样能起突出部的作用。亦即,使后方吸气口10如前面吸气口5所示,将吸气口10作成不与机壳4外表面处于同一面,可略凹入机壳外表面。由此,即使吸气口10与橱柜内后壁密接,而且从正面(后方)的吸入不充分时,也会由于左右两侧方具有吸气用开口,可从该两侧吸入空气,故能不减低吸气率,能有效地维持所要的通气量。
16为排气口,如图3所示,形成在机体的顶部表面17的后侧。在该机体的顶部表面17的上述排气口16相反侧部分的正面侧部形成有操作部18,并将操作开关19等设在该处,由此,在设置除湿机时,由于该操作开关19位于前方,故开关操作方便,其操作性及使用方便性都较好。
又因,机体1内上部形成有;从上述机体前后吸气口5、10通至机体上部的上述排气口16的送风路径20,同时,又在机体内部配设有构成冷冻循环的压缩机21、冷凝器22、蒸发器23、毛细管(未图示)、送风扇24,及使送风扇24转动的扇用马达25等。且在上述送风路径20上设有构成冷冻循环要素的冷凝器22、蒸发器23、及送风扇24,而且上述蒸发器23与冷凝器22在上述送风路径20中,沿机体1内的左右方向前后(宽度方向)朝向上述排气口16依序排列配设。这样,在蒸发器23后方设冷凝器22,又在冷凝器22后配置送风扇24,在与吸气方向成垂直的方向,亦即沿机壳面积较宽的左右侧面方向予以设置,故将这些冷冻循环结构要素设置在宽度方向较狭窄的机体中,亦可有效利用该内部空间进行设置,且能使吸进的空气与蒸发器23及冷凝器22充分接触,以获得充分的热交换面积。
上述压缩机21配设在机体1下部的后方位置。34、38为不使致冷剂以液态状回归压缩机21用的气·液分离器。26为除湿水集水用的除湿水储水桶,在储水桶26底部向上凹陷地形成手拉部26b,能自由拉出地与上述压缩机21并排设于机体下部前方。符号28为输送除湿机时用的把手。
正如图5及图2所示,以围绕送风扇24的方式,在送风路径20内设风洞29,在该风洞29一方的侧面上形成圆形吸气部30与冷凝器22及蒸发器23相向,上方的矩形排气部31即与排气口16相向。由此,由于有该风洞29,因而当送风扇24转动时,由吸气口5、10从机体前后方向导入的室内空气,在送风路径20内如图2之箭头所示,在垂直于前后方向的机体左右方向(机体宽度方向),以直角变换流向,使气流能全面与冷凝器22及蒸发器23接触而过。通过后,变为垂直上升流经风洞29内,由排气口16送出。
因此,上述送风路径20是使从机体前后的吸气口5、10吸入机体1内的室内空气,直角变换为与机体1前后垂直的机体左右方向的流动方向,在其通过机体宽度方向的过程中,与冷凝器22及蒸发器23全面接触,以进行有效的除湿及除湿空气的干燥,通过冷凝器22及蒸发器23后,变换为垂直上升的流向,由排气口16排出的曲折通风构造的送风路径。
具有上述结构成的冷冻循环运转时,将含有较多湿气的室内空气吸入机体通风后,首先,通过蒸发器23与其接触使水分结露而予以去除水分,再将除湿后的空气通过冷凝器22,以夺取冷凝器22的热量而成为高温干燥空气,由排气口16排出。
上述在蒸发器23上结露的空气中水分落在设置在蒸发器23下方的排水盘32后,储存在上述除湿水储水桶26(下称水桶)里。在上述水桶26上设有检测「水满」时的水量检测开关33,再在机体上面部17的操作部18上配置与该水量检测开关33连动而呜响的蜂呜器及显示灯,即可报知水桶26的除湿水的排水周期。水桶是以可自由抽出的方式设在具有吸气口5的机体前后方向的下方,故能如图1所示,将除湿机1配置在壁橱11使用时,亦能简单地由前方抽取水桶,以处理满桶除湿水,处理后的安装亦极简单。
本发明的除湿机由于有如上所述构造,故使用在如图1所示的壁橱11内时,即使在机体侧面有;壁橱内的橱壁或被褥等障碍物密接于除湿机机体1,因该吸气口5、10是设在前面及后面而不在其侧面,所以能不闭塞该吸气口5、10。因此,通气量不致以减少,而可进行高效率的除湿运转。可在壁橱内进行有效的除湿,防止生霉以维持高度卫生性的收藏。
同样,在房间的角落,在房壁与家具间、家具与家具间的狭窄空间,亦因将吸气口5、10开设于前后面而没有被家具闭塞的问题。故能有效地通气,使房间成为舒适环境。
由于在排除除湿水时,可将水桶26直接向前抽出,故能容易地将除湿水废弃,没有现有技术那样须将除湿机取出,再取出水桶的不便,能容易地完成排水处理。
如上所述,若采用本发明第1方案的除湿机,由于它是在前后细长构造的除湿机机体前面设吸气口,故设置于壁橱内或家具与家具间空隙,能不会受被褥或家具等阻塞其吸气口。在狭窄空间进行顺畅通气除湿。又因可由前方能极简单地向前抽出除湿水储存水桶,进行除湿水处理,所以可不需要如现有技术那样将除湿机取出后再取出水桶,能免除取水桶的麻烦,改善其使用性。又因在细长机体前面或后面的吸气口进行吸气,将进行除湿的冷冻循环的蒸发器、冷凝器、送风扇等配设在与吸入方向垂直的机体左右方向,故在有限狭窄空间能容易组装,同时,亦可使吸入空气与蒸发器、冷凝器等有良好的接触,以确保充分的热交换性,发挥其除湿效果。
若依本发明第2方案,可将吸气口设在机体后面,如上所述,可由前后方同时吸气,故吸气量充分,能更有效地进行除湿。
若用本发明的第3方案,由于在机体内部设置的送风路径,是将由吸气口吸入的空气,由直角转换为与机体前后方向垂直的机体左右方向(机体宽度方向),且形成通过机体宽度方向配设的蒸发器、冷凝器后,再向上变换方向予以排出的屈折通风路径,故其通风顺畅,能获得良好除湿效果。

Claims (1)

1.一种除湿机,在机体内设置由压缩机、冷凝器、蒸发器及送风扇形成的冷冻循环,使通过形成在上述机体上的吸气口而向排气口流过的室内空气,与上述蒸发器及冷凝器接触而予以除湿、干燥后,送风吐出,其特征在于,
上述机体作成左右方向的宽度比前后方向的长度短的结构,
上述吸气口设在前后方向的、使用时的上述机体前面及后面,同时,
上述排气口设于上述机体上面部后方侧,在上述机体内部形成从上述吸气口至排气口的送风路径,
上述送风路径内的机体内的左右方向上并列配置的上述蒸发器、上述冷凝器及上述送风扇,依次朝向上述排气口设置,同时,
在机体内的下部前方设有能前后拉动的除湿水集水用的除湿水集水桶,而且
在上述机体内下部后方配置上述压缩机,上述机体以前后细长的方式构成,以便设置在壁橱内宽度狭窄的空间里。
CNB001003259A 1999-01-29 2000-01-25 除湿机 Expired - Fee Related CN1204364C (zh)

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TWI769178B (zh) * 2016-09-28 2022-07-01 日商松下知識產權經營股份有限公司 除濕裝置
JP6846591B2 (ja) * 2016-09-28 2021-03-24 パナソニックIpマネジメント株式会社 除湿装置
CN112984650B (zh) * 2021-02-21 2022-02-18 宁波爱科特环境电器有限公司 多功能除湿机

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