WO2022253008A1 - 一种干衣柜 - Google Patents
一种干衣柜 Download PDFInfo
- Publication number
- WO2022253008A1 WO2022253008A1 PCT/CN2022/094101 CN2022094101W WO2022253008A1 WO 2022253008 A1 WO2022253008 A1 WO 2022253008A1 CN 2022094101 W CN2022094101 W CN 2022094101W WO 2022253008 A1 WO2022253008 A1 WO 2022253008A1
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- WIPO (PCT)
- Prior art keywords
- cabinet
- air
- drying
- room
- clothes
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Classifications
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- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F58/00—Domestic laundry dryers
- D06F58/10—Drying cabinets or drying chambers having heating or ventilating means
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47B—TABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
- A47B61/00—Wardrobes
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- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F58/00—Domestic laundry dryers
- D06F58/20—General details of domestic laundry dryers
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- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F58/00—Domestic laundry dryers
- D06F58/20—General details of domestic laundry dryers
- D06F58/206—Heat pump arrangements
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B40/00—Technologies aiming at improving the efficiency of home appliances, e.g. induction cooking or efficient technologies for refrigerators, freezers or dish washers
Definitions
- the invention relates to a clothes drying device, in particular to a drying cabinet.
- the equipment In daily life, in addition to drying clothes after washing, you can also use a dryer to dry clothes, especially in areas with high humidity, it is not easy to dry clothes normally, so using a clothes dryer is a better choice.
- the equipment generally adopts two methods: high-temperature hot air drying or low-temperature dehumidification.
- the high-temperature hot air drying method is generally simple in equipment, but consumes a lot of energy, noise is loud, and the drying speed is slow.
- Low-temperature dehumidification uses the dehumidification of the heat pump system. The function is to dry clothes continuously through circulating air in a closed space, which consumes less energy and has a faster drying speed. It is currently the most advanced mainstream drying equipment.
- heat pump dryers using the principle of dehumidification are divided into two types: cabinet type and drum type.
- the drum type clothes dryer is similar to a washing machine. While dehumidifying, the clothes are constantly tumbling to create more gaps between wet fabrics and increase evaporation.
- the drying speed is faster, but it will produce larger wrinkles, and the drying efficiency for more clothes or larger fabrics such as bed sheets and quilts is also relatively poor, and the noise is loud, and it is relatively expensive;
- the existing cabinet The vertical clothes dryer generally adopts the suspension method when drying clothes, and the effect is smooth, but the speed is slow, the efficiency is not high, and the capacity is also small.
- the existing two kinds of clothes drying equipment generally consume a lot of energy, which is not conducive to energy conservation and environmental protection.
- the dehumidification capacity which is mainly determined by the power of the dehumidification system
- the other is the speed of air circulation in the drying room, which is controlled by the circulation fan. , air duct design
- the third is the balance degree of humidity changes in each part of the wet fabric during the drying process.
- the higher the balance degree the faster the drying process, which is mainly determined by the balance degree of the wet fabric itself in contact with the flowing air. Decide.
- the dehumidified dry air is blown down from the top of the cabinet into the drying room through the fan, and after passing through the wet fabric, it becomes moist air and enters the dehumidification room from the air inlet at the bottom of the drying room After being condensed by the evaporator to remove the moisture in the air, it is heated by the condenser and blown into the air duct by the fan. Blows down into the drying chamber in a continuous cycle to dry damp fabrics.
- the present invention adopts reasonable dehumidification power, optimizes the air circulation speed according to the maximum dehumidification capacity at the same time, increases the area of each part of the fabric in contact with the air through a more reasonable structural design and original equipment, and improves the drying balance of the fabric itself to the greatest extent.
- this design achieves the maximum contact area between the fabric and the air through the reasonable design of the size of the cabinet, the innovative design of the clothes rail, and the use of dividers.
- the inner fabric or The surface of the folded inner layer is also in contact with the air as much as possible, so that the drying process is more uniform and the drying process is accelerated.
- a unique dryer air blower is designed, which can blow the wind into the fabric to be separated In the gap separated by the device, this accelerates the evaporation of moisture, thus greatly shortening the drying process.
- the space size of the present invention is more reasonable, and various fabrics can be unfolded better.
- the method of increasing the contact area between the unfolded fabric and the air is very effective.
- the present invention is better than other similar products.
- the drying process of wet fabrics is more evenly realized, so that the drying time is greatly shortened, especially for large-sized fabrics such as bed sheets and quilt covers, the drying time is shorter than that of existing products.
- the present invention can hold more clothes than similar dry closet products.
- the existing household dry closet equipment generally has a small capacity, but the present invention is equivalent to the capacity of a closet, and can dry multiple sets of bedding and even bedding at the same time. etc., which is not available in all household drying equipment at present.
- the drying temperature of this invention is about 40 degrees Celsius, which is suitable for most fabrics. It can not only dry ordinary clothes, but also suitable for fabrics that are not resistant to high temperatures. Because it is suspended, it will not stir back and forth like a clothes dryer Tumble without damaging clothes.
- This invention adopts the method of hanging clothes, so the clothes are flat and wrinkle-free after drying, especially the fabrics such as bed sheets and quilts are very smooth after drying, which is comparable to ironing, which is an effect that cannot be achieved by tumble dryers.
- Other dry closet equipments are also not as good as the present invention after drying clothes because they cannot expand the drying clothes in a large area like the present invention.
- this invention adopts the dehumidification effect of the heat pump system to dry clothes, which is more energy-saving than the traditional high-temperature hot air drying method.
- the present invention does not need to drive the drum and other equipment like the tumble dryer. More energy consumption, the energy consumption of the added equipment is much lower than that of the heat pump dryer, and at the same time, the noise of the related equipment of the present invention is lower, which is far lower than the noise emitted by the tumble dryer, which can achieve low noise and low energy consumption energy saving and environmental protection goals.
- this invention can also be used as an independent dehumidifier.
- Other heat pump drying wardrobes need to open the cabinet door to play the role of a dehumidifier, but this invention does not need to open the cabinet door. After the air inlet and the air outlet on the top of the cabinet are opened, it will automatically switch to the dehumidifier mode, which is practical and beautiful; in addition, the present invention can also be used as a separate wardrobe, and can always be kept in a specific humidity range by setting.
- the present invention specially designs preventive measures to prevent children or pets from entering the cabinet by mistake and cause danger. It is easy to cause suffocation danger. If the dry wardrobe is closed, if it is activated, the cabinet body is closed and the internal temperature rises. If it is mistakenly entered, it will be more dangerous. In addition to setting preventive measures such as child locks, the dry clothes dehumidification conversion mechanism of the present invention can further prevent this. One point, when an object over a certain weight touches the partition at the bottom of the cabinet, the partition will drop, thereby triggering the switch and switching to the dehumidifier mode. At this time, the air outlet at the bottom of the cabinet is opened, the cabinet is released from the closed state, and the hot air is dried at the same time Discharge the cabinet instead of blowing into the cabinet to avoid hazards.
- Fig. 1 is a schematic view of the front and side of the present invention.
- Fig. 2 is a schematic diagram of the clothes rail of the present invention.
- Fig. 3 is a schematic diagram of the separator of the present invention.
- Fig. 4 is a schematic diagram of the air blower for clothes drying of the present invention.
- Fig. 5 is a schematic diagram of the conversion of the clothes dryer and the dehumidifier of the present invention.
- a dry wardrobe and dehumidifier includes a cabinet door (20) and a closeable cabinet (3), and the cabinet (3) is divided into a drying room (1) and a dehumidification room (2).
- Dry air enters the air duct, and the air duct (8) connects the bottom and top of the cabinet body.
- the clothes hanger in the drying room is S-shaped, and the two ends are fixed on the support of the cabinet body.
- the quilt cover and the like are expanded to a larger area, and the present invention does not limit whether the clothes rail is single-layer or double-layer.
- a divider (10) below the clothes hanger and the divider (10) is mounted on the lower layer of the clothes rail (9).
- the divider (10) is two hollow strips, and the lower parts can be connected together or Separated, the width is just enough to slide back and forth on the clothes rail (9), which can separate the gaps between clothes or sheets and quilt covers, which is conducive to air flow, and clothes can be hung on the divider (10).
- the present invention does not limit the divider
- the specific shape also does not limit the form of bottom connection.
- the drying room (1) is provided with a clothes dryer (11), which is a fan with a long air nozzle (14), and the long air nozzle (14) can penetrate into the gap between clothes or sheets, quilts, etc.
- the strong wind is blown out from the gap to quickly blow out the moisture.
- the blowing angle can be adjusted.
- it is equipped with an air supply hose (15).
- the air supply hose can blow the wind into the sleeves of clothes and other parts that are not easy to contact with the wind.
- the specific shape and installation position of the device is provided with a clothes dryer (11), which is a fan with a long air nozzle (14), and the long air nozzle (14) can penetrate into the gap between clothes or sheets, quilts, etc.
- the strong wind is blown out from the gap to quickly blow out the moisture.
- the blowing angle can be adjusted.
- the air supply hose can blow the wind into the sleeves of clothes and other parts that are not easy to contact with the wind.
- the specific shape and installation position of the device is a
- the drying room is equipped with a drying clothes dehumidification conversion mechanism to realize the transformation from a drying wardrobe to a dehumidifier.
- the cabinet door (20) is provided with an air inlet (21) and an air inlet baffle (16), and the air inlet A baffle (17) is connected above the baffle (16), and the baffle (17) is linked with the air outlet changeover switch (19) on the top of the cabinet (19) and the air inlet baffle (16) through the connection mechanism (18), and the baffle (17)
- the air inlet baffle (16) can be lifted up and down, and the partition (17) can be lowered by the control of the motor or by gravity.
- the air outlet baffle (16) When the partition (17) rises , the air outlet baffle (16) also rises to block the air inlet (21) of the cabinet, and at the same time the interlocking air outlet switch (19) on the top of the cabinet is reset, the air outlet (22) of the top cabinet is closed, and the air outlet in the cabinet (23) Open it to become a dry wardrobe.
- the bottom partition (17) can bear the pressure below a certain weight.
- the partition (17) When the weight exceeds a certain weight, the partition (17) will be pressed down to open the air inlet baffle (16) to become a dehumidifier state; the present invention does not limit the specific position and shape of the air inlet (21) of the cabinet, nor does it limit the shape and switch form of the air inlet baffle (16), nor does the present invention limit the specific position and shape of the partition (17), The present invention does not limit the shape and switching mode of the air outlet switch (19), and the present invention does not limit the specific position and shape of the air outlet (23) in the cabinet and the air outlet (22) of the cabinet.
- the present invention has broad prospects in daily life.
- clothes drying equipment is a necessary electrical appliance in the family, and the application market is extremely extensive and is constantly growing. It satisfies people's living needs in many places.
- the processing technology and materials used in this invention are very mature and perfect for the current industrial system. Satisfactory products can be obtained at a relatively low cost, which has extremely high practicability.
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- Engineering & Computer Science (AREA)
- Textile Engineering (AREA)
- Drying Of Solid Materials (AREA)
- Accessory Of Washing/Drying Machine, Commercial Washing/Drying Machine, Other Washing/Drying Machine (AREA)
Abstract
一种热泵式干衣柜,包括柜门(20)和可封闭的柜体(3),柜体(3)内分隔成干衣间(1)和抽湿间(2),干衣间(1)由循环风扇、S型挂衣架(9)、干衣送风器(11)、分隔器(10)、干衣除湿转换机构(16、17、18、19)组成,抽湿间(2)由压缩机、冷凝器(6)、蒸发器(5)、储水箱(7)、柜底进风口(4)、出风口(22、23)、风道(8)及相关控制系统构成。干衣间(1)的潮湿空气由柜底进风口(4)进入抽湿间(2),经蒸发器(5)、冷凝器(6)后,成为干燥的热风由柜体顶部出风口(23)重新进入干衣间(1),如此不断循环,通过充分加大潮湿织物与干燥空气接触面积的技术方法,实现快速干衣。干衣柜可以不打开柜门(20)变成除湿机,干衣柜能耗低、噪音小、容量大。
Description
本发明涉及一种干衣设备,特别涉及一种干衣柜。
日常生活中,洗涤衣物后除了晾晒干衣外,也可以使用干衣机进行干衣,尤其在湿度较大地区正常晾晒不容易干衣,使用干衣机成为更好的选择,目前的干衣设备普遍采用的是高温热风烘干或者低温除湿这两种方式,高温热风烘干的方式一般设备简单,但是耗能大,噪音大,干衣速度慢,低温除湿利用的是热泵系统的抽湿作用,在封闭的空间里通过循环风不断抽湿实现干衣,耗能较小,干衣速度比较快,是目前比较先进的主流干衣设备普遍采用的方式。
目前利用抽湿原理的热泵式干衣机分为柜体式和滚筒式两种,滚筒式干衣机类似洗衣机,在抽湿同时,通过不断翻滚衣物来促使潮湿织物间产生更多间隙,增加蒸发面积,相对柜体式干衣机干衣速度较快,但是会产生较大褶皱,针对较多衣物或者床单被罩等较大织物的干燥效率也比较差,而且噪音大,比较昂贵;现有的柜体式干衣机在干衣时一般采用悬挂方式,效果平整,但速度较慢,效率不高,容量也小,同时现有的两种干衣设备普遍能耗较大不利于节能环保。
对热泵式干衣机来说,影响干衣效果的主要有三个因素,第一是抽湿能力,主要由抽湿系统的功率大小决定;另一个是干衣间空气循环的快慢,由循环风扇、风道设计决定;第三是潮湿织物在干燥过程中自身各个部分湿度变化的均衡程度,均衡度越高,干燥过程越快,主要由潮湿织物自身各部分所接触到流动空气的均衡程度所决定。
本发明解决技术问题所采用的技术方案是:经过除湿的干燥空气从柜子顶部经风扇向下吹入干衣间,经过潮湿织物后,变成潮湿空气从干衣间底部进风口进入抽湿间,经蒸发器冷凝除去空气中的水分后,又经冷凝器加热,被风扇吹入风道,风道连接柜顶的出风口,这样又变成干燥的热空气从柜子顶部吹出,经风扇推动向下吹入干衣间,如此不断循环实现对潮湿织物的干燥。本发明采用合理的除湿功率,同时根据除湿能力最大优化空气循环速度,通过更合理的结构设计和独创的设备使织物各部分增大接触空气的面积,最大程度提高织物自身的干燥均衡程度,相对于现有的产品,本设计通过对柜体尺寸的合理设计,对挂衣杆的创新设计,以及使用分隔器,达到让织物尽可能增加跟空气的接触面积,除织物外层,织物内里或折叠后的内层表面也尽可能接触空气,从而让干衣过程更加均匀,加速干燥进程,同时设计了独有的干衣送风器,干衣送风器可以将风吹入织物间被分隔器分隔出的空隙中,这样加速湿气蒸发,从而大大缩短干燥过程。
因此在容纳大量织物的同时,具有比同滚筒式干衣机更快速的干衣效果,同时干衣后无褶皱,非常平整,且干衣温度不高,不伤衣服,基本适合绝大多数织物,耗电量只相当与滚筒式干衣机一半左右,噪音小,静音节能,高效便利,在节能环保方面尤其突出。
与现有技术相比,本发明所达到的技术效果。
快速干衣:本发明空间尺寸更合理,各种织物可以更好的展开,同时所采用的增大展开织物与空气接触面积的方法非常有效,在同等功率的条件下,本发明比其它同类产品更均匀地实现潮湿织物的干燥过程,从而干燥时间极大缩短,尤其像床单、被罩这样的大尺寸织物干燥时间比现有产品干燥时间都要更短。
容量较大:本发明相对同类干衣柜产品可以容纳更多的衣物,现有的家用干衣柜设备普遍容量较小,而本发明等同与一个衣柜的容量,可以同时干燥多套床品,甚至被褥等,这是目前所有家用干衣设备所不具备的。
不伤衣物:本发明干衣温度在40摄氏度左右,适用绝大多数织物,不仅能干燥普通衣物,不耐高温类织物都可以适用,因为是悬挂的方式,不会像干衣机那样来回搅动翻滚,不会损伤衣物。
平整无皱:本发明采用悬挂干衣的方式,所以干衣后平整无褶皱,尤其床单、被罩等织物干燥后非常平整,堪比熨烫,这是滚筒式干衣机等无法达到的效果,其它干衣柜设备因为不能像本发明一样大面积展开干衣,所以干衣后也不如本发明的效果。
节能环保:本发明采用热泵系统的抽湿作用干衣,较传统的高温热风烘干方式更加节能,同时本发明除压缩机能耗外,不需要像滚筒式干衣机那样必须驱动滚筒等设备增加更多能耗,所增加的设备相对于热泵式干衣机能耗要低很多,同时本发明相关设备噪音较低,远低于滚筒式干衣机所发出的噪音,能实现低噪音,低能耗的节能环保目标。
一机多用:除干衣外,本发明还以做为独立的除湿机使用,其它热泵式干衣柜,需要打开柜门才能发挥除湿机的作用,而本发明不需要打开柜门,当柜底进风口和柜顶出风口打开后自动转换成除湿机模式,实用切美观;此外本发明还可以做为单独的衣柜使用,并可以通过设定始终保持在特定的湿度范围,在南方的梅雨季节可以保持衣物干燥;也可以做为干燥柜,对需要保持在一定湿度才能储藏的物品,本发明尤其适用;可以代替阳台,因为容量大,干衣速度快,切噪音小,能耗低,所以完全能承担阳台的功能,不必再使阳台杂乱、拥挤,大大解放室内空间。
安全保障:本发明在考虑实用功能的同时,特别设计了防止儿童或宠物误入柜子造成危险的防范措施,对于封闭的柜体,比如冰箱等,一旦儿童或宠物误入导致柜门关闭后就容易发生窒息危险,干衣柜封闭后如果启动,柜体封闭加之内部温度升高,如果误入会更加危险,除设置童锁之类的防范措施,本发明的干衣除湿转换机构可以进一步防止这一点,当超高过一定重量的物体接触柜底隔板,隔板就会下降,从而触发开关,转换为除湿机模式,此时,柜底的出风口打开,柜子解除封闭状态,同时干燥热风排出柜体而不是吹向柜内从而避免危险发生。
图1本发明正面和侧面的示意图。
图2是本发明挂衣杆示意图。
图3是本发明分隔器示意图。
图4是本发明干衣送风器示意图。
图5是本发明干衣机和除湿机转换示意图。
图中:1.干衣间,2.抽湿间,3.柜体,4.柜底进风口,5.蒸发器,6.冷凝器,7.储水箱,8.风道,9.挂衣杆,10.分隔器,11.干衣送风器,12.连接件,13.风扇,14.吹风嘴,15.送风软管,16.进风口挡板,17.隔板,18.连接机构,19.出风口转换开关,20.柜门,21.柜体进风口,22.柜体出风口,23.柜内出风口。
参考图1,一种干衣柜兼除湿机,包括柜门(20)和可封闭的柜体(3),柜体(3)内分为干衣间(1)和抽湿间(2),抽湿间(2)内有压缩机、蒸发器(5)、冷凝器(6),柜底进风口(4),底部储水箱(7),其特征是经冷凝器(6)加热后的干燥空气进入风道内,风道(8)连接柜体底部和顶部,柜体顶部有柜内出风口(23),干燥热风在干衣间(1)内双层S型挂衣架(9)、分隔器(10)、干衣送风器(11)的作用下,与潮湿织物充分接触变为潮湿空气,再次进入抽湿间,干衣除湿转换机构可实现干衣柜向除湿机的转变。
参考图2,干衣间挂衣杆成S型,两端固定在柜体支撑件上,挂衣杆有上下两层,并固定在一起,挂衣杆除悬挂一般衣物外,可以让床单、被罩等展开更大面积, 本发明不限定挂衣杆是单层还是双层。
参考图3,挂衣架下面设有分隔器(10),分隔器(10)装在挂衣杆(9)下层,分隔器(10)是两个中空长条状,下部可以连接在一起也可分开,宽度正好可以在挂衣杆(9)上来回滑动,可以将衣服之间或床单、被罩间的间隙隔开,利于空气流动,分隔器(10)上可以挂衣服,本发明不限定分隔器的具体形状,也不限定底端连接的形式。
参考图4,干衣间(1)设有干衣送风器(11),送风器是具有长风嘴(14)的风扇,长风嘴(14)可以深入衣服间隙或床单、被罩等空隙吹出强风,将湿气快速吹出,吹风角度可以调节,同时配有送风软管(15),送风软管可以将风吹入衣服袖子等不易接触风的部位,本发明不限定送风器的具体形状和安装位置。
参考图5,干衣间设有干衣除湿转换机构可实现干衣柜向除湿机的转变,柜门(20)下方设有柜体进风口(21)和进风口挡板(16),进风口挡板(16)上方连接一个隔板(17),隔板(17)通过连接机构(18)与柜顶出风口转换开关(19)以及进风口挡板(16)联动,隔板(17)可以带着进风口挡板(16)升降,隔板(17)可以由电机控制下降,也可以由重力下压下降,当停止电机控制或失去上方压力时因为弹簧作用,隔板(17)会带着进风口挡板(16)升起,当隔板(17)带着进风口挡板(16)下降,会露出柜门(20)下的柜体进风口(21),同时会联动柜顶出风口转换开关(19),柜体出风口(22)在柜体顶部向外打开,柜内出风口(23)关闭从而由干衣柜变成除湿机,当隔板(17)升起时,出风口挡板(16)也随着升起挡住柜体进风口(21),同时联动的柜顶出风口转换开关(19)复位,顶部柜体出风口(22)关闭,柜内出风口(23)打开,变成干衣柜状态,底部隔板(17)能承受一定重量以下的压力,超过一定重量时隔板(17)会下压使进风口挡板(16)打开变成除湿机状态;本发明不限定柜体进风口(21)的具体位置和形状,也不限定进风口挡板(16)的形状和开关形式,本发明也不限定隔板(17)具体位置和形状,本发明不限定出风口转换开关(19)的形状和开关方式,本发明不限定柜内出风口(23)和柜体出风口(22)的具体位置和形状。
以上公开的仅为本申请的一个具体实施例,但本申请并非局限于此,任何本领域专业人员能思之变换,都落在本申请的保护范围之内。
本发明在日常生活中具有广阔的前景,在很多国家和地区,干衣设备是家庭必备的电器,应用市场极为广泛且处在不断增长之中,尤其本发明的设计比现有产品能更多地满足人们的生活需求,同时该发明所应用的加工制作工艺和材料对目前工业体系来说已经非常成熟、完善,可以以较低成本获得满意的产品,具有极高的实用性。
Claims (10)
- 一种干衣柜,包括柜门和可封闭的柜体,柜体内分为干衣间和抽湿间,所述干衣间和抽湿间彼此分隔开,其特征是,所述干衣间顶部设有风扇向干衣间内吹风,所述干衣间内设有S型挂衣杆能让床单、被罩等大型织物更大面积展开,所述干衣间内设有分隔器可以分隔织物造成间隙,所述干衣间内设有干衣送风器能让空气吹入织物间隙和里层,所述干衣间内设有柜底隔板、干衣除湿转换机构;所述抽湿间内有压缩机、蒸发器、冷凝器、底部储水箱以及连接柜体底部和顶部的风道,在风道底部设有风扇;潮湿空气由柜内进风口进入抽湿间,通过蒸发器冷凝除去水分、再经冷凝器加热后变成干燥空气进入风道内,从顶部柜内出风口吹向干衣间,干燥热风在干衣间与潮湿织物充分接触变为潮湿空气,再次进入抽湿间,如此不断循环实现干衣。
- 根据权利要求1所述的一种干衣柜,其特征是S型挂衣杆呈S型,两端固定在柜体支撑件上,挂衣杆是单层或双层,双层更方便挂床单、被罩。
- 根据权利要求1所述的一种干衣柜,其特征是在挂衣杆上设有分隔器,所述分隔器能让织物之间保持空隙。
- 根据权利要求1所述的一种干衣柜,其特征是干衣间设有干衣送风器,所述干衣送风器具有长风嘴或长软管能吹出风,能变换风嘴吹风角度。
- 根据权利要求1所述的一种干衣柜,其特征是所述干衣除湿转换机构在不打开柜门的条件下,能实现干衣柜向除湿机的转变,所述干衣除湿转换机构包括柜体进风口、控制柜体进风口开关的挡板、出风口转换开关、进风口挡板和出风口转换开关之间的联动机构、柜内出风口和柜体出风口。
- 根据权利要求5所述的一种干衣机,其特征是所述进风口挡板与所述出风口转换开关能通过之间的联动机构联动,所述出风口转换开关在打开柜内出风口时能关闭柜体出风口、在关闭柜内出风口时能打开柜体出风口。
- 根据权利要求1所述的一种干衣柜,其特征是在所述干衣间底部设有可升降的隔板,所述隔板通过联动机构与出风口转换开关以及进风口挡板联动。
- 根据权利要求1所述的一种干衣机,其特征是风道下端设有风扇,风道上端出风口处设有顶部风扇,顶部风扇所处空间与干衣间联通并充分敞开。
- 根据权利要求1所述的一种干衣机,其特征是干衣间内上下不同部位设有湿度传感器,系统会根据湿度传感器之间的读数关系自动确定干衣程度。
- 根据权利要求1所述的一种干衣机,其特征是干衣间内,柜体的四面均设有挂衣杆,可以悬挂毛巾、浴巾、枕套等小型织物。
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| CN118685974B (zh) * | 2024-07-05 | 2025-09-30 | 珠海格力电器股份有限公司 | 一种干衣撑架、干衣机及控制方法 |
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