WO2016110131A1 - 无水保活装置及具有该无水保活装置的冰箱 - Google Patents
无水保活装置及具有该无水保活装置的冰箱 Download PDFInfo
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- WO2016110131A1 WO2016110131A1 PCT/CN2015/091089 CN2015091089W WO2016110131A1 WO 2016110131 A1 WO2016110131 A1 WO 2016110131A1 CN 2015091089 W CN2015091089 W CN 2015091089W WO 2016110131 A1 WO2016110131 A1 WO 2016110131A1
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- Prior art keywords
- keep
- exhaust
- alive
- air inlet
- box
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D85/00—Containers, packaging elements or packages, specially adapted for particular articles or materials
- B65D85/50—Containers, packaging elements or packages, specially adapted for particular articles or materials for living organisms, articles or materials sensitive to changes of environment or atmospheric conditions, e.g. land animals, birds, fish, water plants, non-aquatic plants, flower bulbs, cut flowers or foliage
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01K—ANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
- A01K63/00—Receptacles for live fish, e.g. aquaria; Terraria
- A01K63/02—Receptacles specially adapted for transporting live fish
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D81/00—Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents
- B65D81/18—Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents providing specific environment for contents, e.g. temperature above or below ambient
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F25—REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
- F25D—REFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
- F25D31/00—Other cooling or freezing apparatus
- F25D31/006—Other cooling or freezing apparatus specially adapted for cooling receptacles, e.g. tanks
Definitions
- the invention relates to a waterless keep-alive device and a refrigerator having the same.
- the refrigerator is mainly used for refrigerating and freezing foods at a low temperature so that the food has a long shelf life.
- Fish, shrimp, and shellfish products all need to live in water, so the existing containers for storing these aquatic products need to be filled with water, and oxygen needs to be introduced into the water to satisfy the survival of the aquatic products. condition.
- it is more and more popular for users to place fish, shrimp and shellfish in the refrigerator and keep them alive.
- the fish, shrimp and shellfish products are placed in the refrigerator without water. It is an important development trend of refrigerators to keep fish, shrimp and shellfish aquatic products in a viable state.
- the existing anhydrous keep-alive device usually has an oxygen concentration that does not meet the survival requirements of the aquatic product, so that the aquatic product survives in the water-free keep-alive device.
- the time is short.
- the present invention provides a waterless keep-alive device including a keep-alive box for keeping alive aquatic products, a temperature control module connected to the keep-alive box, a humidity control module, and a gas control module
- the gas control module includes an oxygen supply system and an exhaust system, the oxygen supply system including an air inlet disposed on one of the side walls of the heat retaining box, the exhaust system including the keep-alive An exhaust port on the other side wall of the box, and the air inlet and the exhaust port are disposed diagonally on a space.
- the keep-alive box includes a rear wall, oppositely disposed top and bottom walls, and opposite left and right side walls, the air inlet opening on the top wall, The exhaust port is opened on the bottom wall.
- the oxygen supply system further includes an intake duct connected to the air inlet and a seal fixed at one end of the intake duct to sealingly connect the intake duct and the air inlet.
- the sealing member includes a connecting portion that is connected to one end of the intake duct and protrudes into the air inlet, and a latching portion that protrudes outward from the connecting portion and is disposed outside the securing box.
- the connecting portion and the holding portion are both circular, and the diameter of the holding portion is larger than the diameter of the connecting portion, and the diameter of the connecting portion is larger than the intake pipe Diameter, the retaining box is recessed The air holding port communicates with the holding groove to form a ring shape by holding a holding groove for accommodating the holding portion.
- the seal member is integrally formed with the intake duct.
- the exhaust system includes an exhaust duct connected to the exhaust port and a connecting member fixed at one end of the exhaust duct to sealingly connect the exhaust port and the exhaust duct,
- the connecting member includes a base connected to one end of the exhaust pipe and protruding into the exhaust port, and a limiting portion connected to the end of the base and limited to the inside of the keep-alive box.
- the connecting member is disposed in a T shape, and the connecting member is provided with a through hole that penetrates through the base portion and the limiting portion and communicates with the exhaust duct.
- the retaining box is recessed with a limiting slot for receiving the limiting portion, and the limiting slot is connected to the exhaust port and combined to form a ring shape.
- the base of the connecting member is sleeved at one end of the exhaust duct.
- the present invention provides a refrigerator comprising the aforementioned water-saving keep-alive device.
- the water-saving keep-up device of the present invention is disposed on one of the side walls of the keep-alive box by setting the air inlet port on the other side wall of the keep-alive box,
- the air inlet and the exhaust port are arranged diagonally on the space, thereby ensuring that the oxygen concentration in the keep alive box meets the survival requirements of fish, shrimp and shellfish aquatic products.
- Figure 1 is a perspective view of a waterless keep-alive device of the present invention.
- Figure 2 is an exploded view of the water keep-up device of Figure 1.
- Figure 3 is an independent perspective view of the oxygen storage system and the exhaust system of the keep-alive box of Figure 2.
- FIG. 4 is a first perspective perspective view of the oxygen storage system and the exhaust system of the keep-alive box of FIG. 3.
- Figure 5 is a second perspective perspective view of the keep-alive box of Figure 4.
- Figure 6 is a perspective view of a third angle of the keep-alive box of Figure 5.
- Figure 7 is a perspective view of the seal of Figure 4.
- Figure 8 is a perspective view of the connector of Figure 4.
- Figure 9 is a perspective view of the storage box of Figure 2.
- the refrigerator of the present invention includes a case for storing articles and a door for opening and closing the case.
- An independent water-saving device 100 is disposed in the box, and the water-free keeping device 100 is used for storing fish, shrimp, and shellfish aquatic products.
- the water-free keep-up device 100 includes a keep-up box 10 for storing and preserving the aforementioned aquatic product, and the keep-alive box 10 Connected temperature control module, humidity control module and gas control module.
- the temperature control module is configured to detect and control the temperature in the keep-up box 10 in real time
- the humidity control module is configured to detect and control the humidity in the keep-up box 10 in real time
- the gas control module is used for real-time
- the oxygen concentration in the keep alive box 10 is detected and controlled to meet the particular living environment of the aforementioned aquatic product.
- the temperature control module and the humidity control module are both prior art and therefore will not be described in detail.
- the gas control module includes an oxygen supply system and an exhaust system
- the oxygen supply system includes an oxygen supply device, an intake port 11, and an intake port connecting the oxygen supply device and the intake port 11.
- the duct 12 includes an exhaust port 21, an exhaust device, and an exhaust duct 22 connecting the exhaust port 21 and the exhaust device.
- the air inlet 11 is disposed on one of the side walls of the heat retaining box 10, and the air outlet 21 is disposed on the other side wall of the heat retaining box 10, and the air inlet 11 is The exhaust port 21 is disposed diagonally to the space.
- the keep-up box 10 includes an open side 101, a rear wall 102 disposed opposite the open side 101, oppositely disposed top and bottom walls 103 and 104, and oppositely disposed left and right walls 105, 106,
- the mouth 11 is opened on the top wall 103
- the exhaust port 21 is opened on the bottom wall 104.
- the air inlet 11 is opened on the top wall 103 near the left side wall 105 and the rear wall 102
- the air outlet 21 is opened on the bottom wall 104 near the opening side 101 and the right side wall 106 to be at the top.
- the space formed between the wall 103 and the bottom wall 104 is diagonally disposed, so that waste gas (such as carbon dioxide) in the keep-up box 10 can be discharged from the keep-up box 10 through the exhaust port 21 and the exhaust duct 22.
- waste gas such as carbon dioxide
- oxygen when oxygen is injected into the keep-up tank 10 through the air inlet 11, oxygen can be prevented from being discharged out of the keep-up tank 10 together with other useless gases.
- the air inlet 11 and the air outlet 21 can also be opened on any two of the rear wall 102, the top wall 103, the bottom wall 104, the left side wall 105 and the right side wall 106, as long as the space is diagonally set. Yes, there is no limit here.
- the oxygen supply system further includes a seal 13 fixed to one end of the intake duct 12 to sealingly connect the intake duct 12 and the intake port 11.
- the intake duct 12 extends from the air inlet 11 to the rear wall 102 and is S-shaped on the rear wall 102 and finally extends to the oxygen supply.
- the sealing member 13 includes a connecting portion 131 connected to one end of the intake duct 12 and protruding into the air inlet 11 and protruding outward from the connecting portion 131 and being disposed outside the top wall 103 of the keep-alive box 10 The holding portion 132.
- the connecting portion 131 and the holding portion 132 are both circular, and the diameter of the holding portion 132 is larger than the diameter of the connecting portion 131, and the diameter of the connecting portion 131 is larger than that of the intake duct 12 diameter.
- the top wall 103 of the heat retaining box 10 is recessed with a holding groove 1031 for holding the holding portion 132.
- the air inlet 11 communicates with the holding groove 1031 and is combined to form a ring shape. .
- the exhaust system further includes a connecting member 23 fixed to one end of the exhaust duct 22 to sealingly connect the exhaust port 21 and the exhaust duct 22.
- the exhaust duct 22 extends from the exhaust port 21 to the right side wall 106 and ultimately to the exhaust. Both the oxygen supply device and the exhaust device are disposed adjacent to the right side wall 106 and the top wall 103.
- the connecting member 23 includes a base portion 231 that is connected to one end of the exhaust duct 22 and protrudes into the exhaust port 21, and a limiting portion 232 that is connected to the end of the base portion 231 and is limited to the inside of the bottom wall 104 of the keep-up box 10.
- the connecting member 23 is disposed in a T shape, and the connecting member 23 defines a through hole 233 that penetrates through the base portion 231 and the limiting portion 232 and communicates with the exhaust duct 22 .
- a limiting slot 1041 is defined in the bottom of the bottom wall 104 of the heat retaining box 10 for receiving the limiting portion 232.
- the limiting slot 1041 is connected to the exhaust port 21 and combined to form a ring shape. .
- the intake duct 12, the exhaust duct 22, and the connecting portion 131 are all disposed in a hollow shape, so that when the intake duct 12 is assembled, it is only necessary to extend the connecting portion 131 into the air inlet 11 and be hard.
- the force is applied to the inner wall of the air inlet 11 until the latching portion 132 is restrained and received in the retaining groove 1031, so that the sealing connection between the intake duct 12 and the air inlet 11 can be achieved;
- the base portion 231 is firstly inserted into the exhaust port 21 and adhered to the inner wall of the exhaust port 21 under the action of a hard force until the limiting portion 232 is restrained and received in the limiting slot 1041, and then The base portion 231 is sleeved at one end of the exhaust duct 22, so that the sealed connection between the exhaust duct 22 and the exhaust port 21 is achieved.
- the sealing member 13 is integrally formed with the intake duct 12 , and the base portion 231 of the connecting member 23 is sleeved at one end of the exhaust duct 22 .
- the sealing member 13 can also be sleeved at one end of the intake duct 12, and the connecting member 23 can also be integrally formed with the exhaust duct 22.
- the water-saving keep-up device 100 further includes a storage box 30 placed in the keep-up box 10 and sealingly connected with the heat-protecting box 10, and the storage box 30 is a drawer.
- the utility model is provided in the form of a receiving box body 31 and a handle 32 for pulling the receiving box body 31.
- a sealing ring 33 is disposed on the inner side of the handle 32 for sealingly connecting the receiving box 30 and the keep-up box 10.
- the receiving box body 31 defines a receiving space 34 for accommodating fish, shrimp, and shellfish, and the air inlet 11 is located above the receiving space 34 to supply oxygen.
- the exhaust port 21 It is located below the container body 31 to facilitate the discharge of useless gas, thereby meeting the special survival needs of fish, shrimp and shellfish.
- the water-saving keep-up device 100 of the present invention provides the air inlet 11 on one of the side walls of the keep-up case 10 while the exhaust port 21 is disposed on the other side wall of the keep-up case 10.
- the useless gas such as carbon dioxide
- the keep-up box 10 can be discharged through the exhaust port 21 and the exhaust duct 22 to the keep-alive box 10.
- oxygen when oxygen is injected into the keep-up box 10 through the air inlet 11, oxygen can be prevented from being discharged out of the keep-alive box 10 together with other useless gases, thereby ensuring that the concentration of oxygen in the keep-up box 10 reaches fish, shrimp, and shellfish. Survival requirements for aquatic products.
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Abstract
一种无水保活装置(100)及具有该无水保活装置的冰箱,所述无水保活装置(100)包括用于保活水产品的保活箱(10)、与所述保活箱(10)相连接的温度控制模块、湿度控制模块及气体控制模块,所述气体控制模块包括供氧系统和排气系统,所述供氧系统包括设置在所述保活箱(10)其中一侧壁上的进气口(11),所述排气系统包括设置在所述保活箱(10)另一侧壁上的排气口(21),且所述进气口(11)与所述排气口(21)呈空间对角线设置,从而能够保证保活箱(10)内的氧气浓度达到鱼、虾、贝类水产品的生存要求。
Description
本申请要求了申请日为2015年01月07日,申请号为201510006481.1,发明名称为“无水保活装置及具有该无水保活装置的冰箱”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。
本发明涉及一种无水保活装置及具有该无水保活装置的冰箱。
冰箱主要用于低温冷藏、冷冻食品,以使食品具有较长的保存期限。鱼、虾、贝类水产品都需要生活在水中,从而现有的用于存放该些水产品的容器都需要注满水,同时还需要在水内通入氧气以满足该些水产品的生存条件。随着技术的快速发展,将鱼、虾、贝类水产品放置在冰箱中并能够保持存活状态越来越受到用户的青睐,而将鱼、虾、贝类水产品放置在冰箱内无水的容器中并使得鱼、虾、贝类水产品能够保持存活状态则是冰箱的一重要发展趋势。
对于上述该些水产品来说,氧气也是必不可少的,而现有的无水保活装置通常氧气浓度达不到水产品的生存需求,从而使得水产品在无水保活装置中生存的时间较短。
有鉴于此,有必要对现有的无水保活装置予以改进,以解决上述问题。
发明内容
本发明的目的在于提供一种无水保活装置,该无水保活装置能够使得鱼、虾、贝类水产品在无水的环境下存活时间较长。
为实现上述发明目的,本发明提供了一种无水保活装置,其包括用于保活水产品的保活箱、与所述保活箱相连接的温度控制模块、湿度控制模块及气体控制模块,所述气体控制模块包括供氧系统和排气系统,所述供氧系统包括设置在所述保活箱其中一侧壁上的进气口,所述排气系统包括设置在所述保活箱另一侧壁上的排气口,且所述进气口与所述排气口呈空间对角线设置。
作为本发明的进一步改进,所述保活箱包括后壁、相对设置的顶壁和底壁及相对设置的左侧壁和右侧壁,所述进气口开设在所述顶壁上,所述排气口开设在所述底壁上。
作为本发明的进一步改进,所述供氧系统还包括与所述进气口相连的进气管道及固定在所述进气管道一端以密封连接所述进气管道和进气口的密封件,所述密封件包括与进气管道一端相连并突伸入所述进气口的连接部及自连接部向外突伸并卡设在所述保活箱外侧的卡持部。
作为本发明的进一步改进,所述连接部与所述卡持部均呈圆形,且所述卡持部的直径大于所述连接部的直径,所述连接部的直径大于所述进气管道的直径,所述保活箱上凹设有用
以卡持收容所述卡持部的卡持槽,所述进气口与所述卡持槽相连通并组合形成环状。
作为本发明的进一步改进,所述密封件与所述进气管道一体成型设置。
作为本发明的进一步改进,所述排气系统包括与所述排气口相连的排气管道及固定在所述排气管道一端以密封连接所述排气口和排气管道的连接件,所述连接件包括与排气管道一端相连并突伸入排气口的基部及与基部末端相连并限位在保活箱内的限位部。
作为本发明的进一步改进,所述连接件呈T型设置,且所述连接件开设有同时贯穿所述基部和限位部并与排气管道相连通的通孔。
作为本发明的进一步改进,所述保活箱内凹设有供限位收容所述限位部的限位槽,所述限位槽与所述排气口相连通并组合形成环状。
作为本发明的进一步改进,所述连接件的基部套设在所述排气管道的一端。
本发明的目的还在于提供一种冰箱,该冰箱能够使得鱼、虾、贝类水产品在无水的环境下存活时间较长。
为实现上述发明目的,本发明提供了一种冰箱,其包括前述无水保活装置。
本发明的有益效果是:本发明的无水保活装置通过将进气口设置在保活箱的其中一侧壁上,同时将排气口设置在保活箱的另一侧壁上,以使得进气口与排气口呈空间对角线设置,从而能够保证保活箱内的氧气浓度达到鱼、虾、贝类水产品的生存要求。
图1是本发明的无水保活装置的立体图。
图2是图1所示无水保活装置的分解图。
图3是图2中保活箱上未设置供氧系统和排气系统的独立立体图。
图4是图3中保活箱上设置有供氧系统和排气系统的第一角度立体图。
图5是图4所示保活箱的第二角度立体图。
图6是图5所示保活箱的第三角度立体图。
图7是图4中密封件的立体图。
图8是图4中连接件的立体图。
图9是图2中收容箱的立体图。
为了使本发明的目的、技术方案和优点更加清楚,下面结合附图和具体实施例对本发明进行详细描述。
如图1与图2所示,本发明的冰箱包括用以存放物品的箱体及用以打开和关闭所述箱体的门体。所述箱体内设置有独立的无水保活装置100,所述无水保活装置100用以存放鱼、虾、贝类水产品。
所述无水保活装置100包括用于存放并保活前述水产品的保活箱10、与所述保活箱10
相连接的温度控制模块、湿度控制模块及气体控制模块。所述温度控制模块用以实时检测并控制所述保活箱10内的温度,所述湿度控制模块用以实时检测并控制所述保活箱10内的湿度,所述气体控制模块用以实时检测并控制所述保活箱10内的氧气浓度,从而以满足前述水产品的特殊生存环境。所述温度控制模块及湿度控制模块均为现有技术,故不再详细说明。
如图3至图8所示,所述气体控制模块包括供氧系统和排气系统,所述供氧系统包括氧气供应装置、进气口11及连接氧气供应装置与进气口11的进气管道12,所述排气系统包括排气口21、排气装置及连接排气口21与排气装置的排气管道22。所述进气口11设置在所述保活箱10的其中一侧壁上,所述排气口21设置在所述保活箱10的另一侧壁上,且所述进气口11与所述排气口21呈空间对角线设置。
所述保活箱10包括开口侧101、与开口侧101相对设置的后壁102、相对设置的顶壁103和底壁104及相对设置的左侧壁105和右侧壁106,所述进气口11开设在所述顶壁103上,所述排气口21开设在所述底壁104上。本实施例中,进气口11开设在顶壁103上靠近左侧壁105与后壁102处,排气口21开设在底壁104上靠近开口侧101与右侧壁106处,以在顶壁103与底壁104之间所形成的空间内呈对角线设置,从而保活箱10内的无用气体(如二氧化碳)就可通过排气口21和排气管道22排出保活箱10,同时在通过进气口11向保活箱10内注入氧气时,还可避免氧气与其他无用气体一起排出保活箱10。当然,进气口11与排气口21也可开设在后壁102、顶壁103、底壁104、左侧壁105与右侧壁106中的任意两个上,只要呈空间对角线设置即可,于此不予限制。
所述供氧系统还包括固定在所述进气管道12一端以密封连接所述进气管道12和进气口11的密封件13。所述进气管道12自所述进气口11延伸至所述后壁102并在后壁102上呈S型盘绕,最后再延伸至所述氧气供应装置。所述密封件13包括与进气管道12一端相连并突伸入所述进气口11的连接部131及自连接部131向外突伸并卡设在所述保活箱10顶壁103外侧的卡持部132。所述连接部131与所述卡持部132均呈圆形,且所述卡持部132的直径大于所述连接部131的直径,所述连接部131的直径大于所述进气管道12的直径。所述保活箱10的顶壁103上凹设有用以卡持收容所述卡持部132的卡持槽1031,所述进气口11与所述卡持槽1031相连通并组合形成环状。
所述排气系统还包括固定在所述排气管道22一端以密封连接所述排气口21和排气管道22的连接件23。所述排气管道22自所述排气口21延伸至所述右侧壁106,最终延伸至所述排气装置。所述氧气供应装置与排气装置均靠近所述右侧壁106和顶壁103设置。所述连接件23包括与排气管道22一端相连并突伸入排气口21的基部231及与基部231末端相连并限位在保活箱10底壁104内侧的限位部232。所述连接件23呈T型设置,且所述连接件23开设有同时贯穿所述基部231和限位部232并与排气管道22相连通的通孔233。所述保活箱10的底壁104内侧凹设有供限位收容所述限位部232的限位槽1041,所述限位槽1041与所述排气口21相连通并组合形成环状。
所述进气管道12、排气管道22及所述连接部131均呈中空状设置,从而,在组装所述进气管道12时,只需将连接部131伸入进气口11并在硬力作用下与进气口11的内壁相贴合,直至卡持部132限位收容在卡持槽1031内,这样即可实现进气管道12与进气口11的密封连接;而在组装所述排气管道22时,先将基部231伸入排气口21并在硬力作用下与排气口21的内壁相贴合,直至限位部232限位收容在限位槽1041内,然后再将所述基部231套设在排气管道22的一端,这样即可实现排气管道22与排气口21的密封连接。
本实施方式中,所述密封件13与所述进气管道12一体成型设置,所述连接件23的基部231套设在所述排气管道22的一端。当然,在其他实施方式中,所述密封件13也可套设在所述进气管道12的一端,所述连接件23也可与所述排气管道22一体成型设置。
如图2与图9所示,所述无水保活装置100还包括放置在所述保活箱10内并与所述保活箱10密封连接的收容箱30,所述收容箱30呈抽屉状设置,并包括收容箱本体31及抽拉收容箱本体31的拉手32。所述拉手32内侧设有密封圈33,用以密封连接所述收容箱30和所述保活箱10。所述收容箱本体31内限定有用以收容鱼、虾、贝类水产品的收容空间34,且所述进气口11位于所述收容空间34的上方以便于供应氧气,所述排气口21位于收容箱本体31的下方以便于排出无用气体,从而满足鱼、虾、贝类水产品的特殊生存需要。
综上所述,本发明的无水保活装置100通过将进气口11设置在保活箱10的其中一侧壁上,同时将排气口21设置在保活箱10的另一侧壁上,以使得进气口21与排气口21呈空间对角线设置,从而保活箱10内的无用气体(如二氧化碳)就可通过排气口21和排气管道22排出保活箱10,同时在通过进气口11向保活箱10内注入氧气时,还可避免氧气与其他无用气体一起排出保活箱10,进而能够保证保活箱10内的氧气浓度达到鱼、虾、贝类水产品的生存要求。
以上实施例仅用以说明本发明的技术方案而非限制,尽管参照较佳实施例对本发明进行了详细说明,本领域的普通技术人员应当理解,可以对本发明的技术方案进行修改或者等同替换,而不脱离本发明技术方案的精神和范围。
Claims (10)
- 一种无水保活装置,包括用于保活水产品的保活箱、与所述保活箱相连接的温度控制模块,其特征在于:还包括湿度控制模块及气体控制模块,所述气体控制模块包括供氧系统和排气系统,所述供氧系统包括设置在所述保活箱其中一侧壁上的进气口,所述排气系统包括设置在所述保活箱另一侧壁上的排气口,且所述进气口与所述排气口呈空间对角线设置。
- 根据权利要求1所述的无水保活装置,其特征在于:所述保活箱包括后壁、相对设置的顶壁和底壁及相对设置的左侧壁和右侧壁,所述进气口开设在所述顶壁上,所述排气口开设在所述底壁上。
- 根据权利要求1所述的无水保活装置,其特征在于:所述供氧系统还包括与所述进气口相连的进气管道及固定在所述进气管道一端以密封连接所述进气管道和进气口的密封件,所述密封件包括与进气管道一端相连并突伸入所述进气口的连接部及自连接部向外突伸并卡设在所述保活箱外侧的卡持部。
- 根据权利要求3所述的无水保活装置,其特征在于:所述连接部与所述卡持部均呈圆形,且所述卡持部的直径大于所述连接部的直径,所述连接部的直径大于所述进气管道的直径,所述保活箱上凹设有用以卡持收容所述卡持部的卡持槽,所述进气口与所述卡持槽相连通并组合形成环状。
- 根据权利要求3所述的无水保活装置,其特征在于:所述密封件与所述进气管道一体成型设置。
- 根据权利要求1所述的无水保活装置,其特征在于:所述排气系统包括与所述排气口相连的排气管道及固定在所述排气管道一端以密封连接所述排气口和排气管道的连接件,所述连接件包括与排气管道一端相连并突伸入排气口的基部及与基部末端相连并限位在保活箱内的限位部。
- 根据权利要求6所述的无水保活装置,其特征在于:所述连接件呈T型设置,且所述连接件开设有同时贯穿所述基部和限位部并与排气管道相连通的通孔。
- 根据权利要求6所述的无水保活装置,其特征在于:所述保活箱内凹设有供限位收容所述限位部的限位槽,所述限位槽与所述排气口相连通并组合形成环状。
- 根据权利要求6所述的无水保活装置,其特征在于:所述连接件的基部套设在所述排气管道的一端。
- 一种冰箱,其特征在于:包括如权利要求1至9中任意一项所述的无水保活装置。
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| CN105053154A (zh) * | 2015-08-31 | 2015-11-18 | 沈阳海尔电冰箱有限公司 | 无水保活装置及具有该无水保活装置的制冷装置 |
| CN106172163B (zh) * | 2016-08-31 | 2021-12-03 | 山东商业职业技术学院 | 一种水产品无水保活智能运输集装箱 |
| CN107436067B (zh) * | 2017-06-30 | 2019-12-06 | 青岛海尔股份有限公司 | 冷藏冷冻装置及其控制方法 |
| CN116412578A (zh) * | 2021-12-29 | 2023-07-11 | 合肥美的电冰箱有限公司 | 储物设备和储物柜 |
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