CN206514606U - A kind of inner container of icebox of antifrost - Google Patents

A kind of inner container of icebox of antifrost Download PDF

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Publication number
CN206514606U
CN206514606U CN201720038974.8U CN201720038974U CN206514606U CN 206514606 U CN206514606 U CN 206514606U CN 201720038974 U CN201720038974 U CN 201720038974U CN 206514606 U CN206514606 U CN 206514606U
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super
groove
wall
side wall
coating structure
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CN201720038974.8U
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Chinese (zh)
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张旭
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Tianjin Super Hydrophobic Nanotechnology Co ltd
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Tianjin Technology Co Ltd
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Abstract

The utility model provides a kind of inner container of icebox of antifrost, including inner bag body, the inner bag body constitutes accommodating chamber by left side wall, right side wall, rear wall, upper wall and lower wall, the inner surface of the inner bag body is provided with coating structure, and the coating structure is super lubricant coating structure or the super-amphiphobic coating structure being made up of adhesive layer and super-amphiphobic coating.Super lubricant coating structure on inner bag body provided with the super-amphiphobic coating structure being made up of adhesive layer and super-amphiphobic coating or with the super lubricated surface material of groove-like substrate, the fluid resistance of inner bag body surface can be reduced, globule aggregation is not had on inner bag body, so that frost will not be produced;Guiding gutter, the first water leg and the second water leg are provided with inner bag body, the globule after cooling can be rapidly entered by guiding gutter to be collected in the first water leg or the second water leg, it is to avoid the globule causes ponding after flowing to inner bag body bottom portion.

Description

A kind of inner container of icebox of antifrost
Technical field
The utility model belongs to technical field of refrigeration equipment, more particularly to a kind of inner container of icebox of antifrost.
Background technology
Direct cooling refrigerator cools down food using the mode of natural convection air in refrigerator.Direct cooling refrigerator is generally all in ice The air that case inner bag roof is provided with around evaporator, evaporator produces heat exchange with evaporator, and air transfers heat to steaming Device is sent out, cold is passed to air by evaporator.Air is absorbed after cold, and temperature drop, density increases and moved downward.Refrigerator The air of inner bag bottom produces heat exchange with cooled food, and food transfers heat to air, and air is obtained after heat, temperature Go up, density reduces and moved upwards, is raised to again around evaporator, transfers heat to evaporator.
But, direct cooling refrigerator is in process of refrigerastion, and moisture can be in evaporator surface or the refrigerator close to evaporator in case Frost layer is condensed on the internal face of inner bag.This layer of frost can hinder the heat exchange of evaporator surface, so as to influence refrigeration.It is existing The refrigerator provided in technology, its inner bag does not possess antifrost function, and the refrigeration of refrigerator can be caused after long-time use and is reduced, And power consumption increase.
Utility model content
The purpose of this utility model is can be prevented for the above-mentioned problems in the prior art there is provided one kind in refrigerator Portion's frosting, and the inner container of icebox of the antifrost with captation.
The utility model solves the technical scheme that its technical problem used:
A kind of inner container of icebox of antifrost, including inner bag body, the inner bag body by left side wall, right side wall, rear wall, Upper wall and lower wall constitute accommodating chamber, and the inner surface of the inner bag body is provided with coating structure, and the coating structure applies for super lubrication Rotating fields or the super-amphiphobic coating structure being made up of adhesive layer and super-amphiphobic coating.
Further, offered respectively in the one side of the interior accommodating chamber of the direction of the left side wall, right side wall and rear wall to Correspondence offers at least one perpendicular to rear wall on a few guiding gutter vertically, the left side wall and right side wall The first water leg is provided with first groove, first groove, first water leg is the rectangular parallelepiped structure of upper end open, institute The length and height for stating the first water leg are slightly less than the length and height of the first groove, and the width of first water leg is more than the The width of one groove, the lower wall and rear wall junction are offered and left side wall and right side wall vertical the second groove, institute State and the second water leg is provided with the second groove, second water leg is the rectangular parallelepiped structure of upper end open, and described second catchments The length and width of groove is slightly less than the length and width of the second groove, and the height of second water leg is more than the height of the second groove Degree, the water guide rooved face is provided with coating structure, and the coating structure is for super lubricant coating structure or by adhesive layer and super-amphiphobic Coat composed super-amphiphobic coating structure.
Further, the guiding gutter respectively has two respectively on left side wall, right side wall and rear wall.
Further, first groove respectively has three respectively on left side wall and right side wall, and in left side wall and right side It is uniformly distributed on wall, and the bottom of two first grooves positioned at bottommost is concordant with the upper surface of lower wall.
Further, the adhesive layer is gluing agent material, and the gluing agent material is epoxy resin, butadiene-styrene rubber second Alkene and its copolymer analog, Lauxite TPO, polyurethanes, polyvinyl acetate, polyamide-based or styrene and its Block copolymerization species material.
Further, the super-amphiphobic coating is to be prepared by the fluorine-containing nanoparticle with polymolecularity and caking property Super-amphiphobic material.
Further, the super lubricant coating structure is with the super lubricated surface material of groove-like substrate.
Compared with prior art, the beneficial effect of the utility model generation is:
1) super lubricant coating structure or super-amphiphobic coating structure are set on inner bag body, can effectively suppress coffee, fruit The adhesion of juice, soy sauce, microorganism etc., and because both coating structures all have good drag reduction capability, inner bag can be avoided Body produces frosting and breed bacteria, while also having good corrosion resistance;
2) guiding gutter, the first water leg and the second water leg are provided with inner bag body, and water guide rooved face is provided with super profit Sliding coating structure or super-amphiphobic coating structure, therefore fast guiding can be played a part of, the globule after cooling can be by leading Tank is rapidly entered to be collected in the first water leg or the second water leg, it is to avoid the globule, which is flowed to, causes product after inner bag body bottom portion Water.
Brief description of the drawings
The utility model is further illustrated below in conjunction with the accompanying drawings:
Fig. 1 is overall structure diagram of the present utility model;
Fig. 2 is the structural representation of super-amphiphobic coating structure.
Wherein:1. inner bag body, 2. left side walls, 3. right side walls, 4. rear walls, 5. upper walls, 6. lower walls, 7. adhesive layers, 8. Super-amphiphobic coating, 9. guiding gutters, 10. first water legs, 11. second water legs.
Embodiment
The utility model is described further with reference to embodiment:
As shown in Figure 1-2, the inner container of icebox for the antifrost that the utility model is provided, including inner bag body 1, the inner bag sheet Body 1 constitutes accommodating chamber by left side wall 2, right side wall 3, rear wall 4, upper wall 5 and lower wall 6, and the inner surface of the inner bag body 1 is provided with Coating structure, the coating structure is super lubricant coating structure or the super-amphiphobic coating being made up of adhesive layer 7 and super-amphiphobic coating 8 Structure.
Further, the super lubricant coating structure is with the super lubricated surface material of groove-like substrate.With groove-like Described in patent of the super lubricated surface material of substrate in Publication No. CN 105237797A, this material can be in for a long time In the environment of bacteria breed, suppress surface contaminant attachment and corrosion speed, and with automatically cleaning, it is anticorrosive, antifouling, The performance such as Anti-ice-and-snow, anti-oxidant, anti-fog.
Further, the adhesive layer 7 is gluing agent material, and the gluing agent material is epoxy resin, butadiene-styrene rubber Ethene and its copolymer analog, Lauxite TPO, polyurethanes, polyvinyl acetate, polyamide-based or styrene and Its block copolymerization species material.
Further, the super-amphiphobic coating 8 is to be prepared into by the fluorine-containing nanoparticle with polymolecularity and caking property The super-amphiphobic material arrived.Super-amphiphobic coating 8 can be coated on inner bag body 1 by adhesive layer 7, wherein, by with high dispersive The super-amphiphobic material that the fluorine-containing nanoparticle of property and caking property is prepared is remembered in Publication No. CN 102585244A patent Carry, this material has Water-proof and oil-proof characteristic.
Therefore, the utility model on inner bag body 1 by setting super lubricant coating structure or super-amphiphobic coating structure, energy Enough adhesions for effectively suppressing coffee, fruit juice, soy sauce, microorganism etc., and because both coating structures all have good drag reduction Ability, can avoid inner bag body 1 from producing frosting and breed bacteria, while also having good corrosion resistance;
Further, offered respectively in the one side of the interior accommodating chamber of the left side wall 2, the direction of right side wall 3 and rear wall 4 Correspondence offers at least one perpendicular to rear at least one guiding gutter 9 vertically, the left side wall 2 and right side wall 3 The first water leg 10 is provided with first groove of side wall 4, first groove, first water leg 10 is the length of upper end open Cube structure, the length and height of first water leg 10 are slightly less than the length and height of the first groove, and described first catchments The width of groove 10 is more than the width of the first groove, and the lower wall 6 is offered and left side wall 2 and right side wall 3 with the junction of rear wall 4 The second water leg 12 is provided with the second vertical groove, second groove, second water leg 12 is upper end open Rectangular parallelepiped structure, the length and width of second water leg 12 is slightly less than the length and width of the second groove, second collection The height of tank 12 is more than the height of the second groove, and the surface of guiding gutter 9 is provided with coating structure, and the coating structure is super profit Sliding coating structure or the super-amphiphobic coating structure being made up of adhesive layer 7 and super-amphiphobic coating 8.
Further, the guiding gutter 9 respectively has two respectively on left side wall 2, right side wall 3 and rear wall 4.
Further, first groove respectively has three respectively on left side wall 2 and right side wall 3, and in left side wall 2 and the right side It is uniformly distributed on side wall 3, and the bottom of two first grooves positioned at bottommost is concordant with the upper surface of lower wall 6.
Guiding gutter 9, the first water leg 10 and the second water leg 11 are provided with inner bag body 1, and the surface of guiding gutter 9 is provided with Coating structure with the super lubricated surface material of groove-like substrate is applied by the super-amphiphobic that adhesive layer 7 and super-amphiphobic coating 8 are constituted Rotating fields, because both coating structure skin resistances are extremely low, therefore can act as the effect of fast guiding, the water after cooling Pearl can be rapidly entered by guiding gutter 9 to be collected in first water leg 10 or the second water leg 11, it is to avoid in the globule is flowed to Courage body 1 causes ponding behind bottom.
In summary, the utility model provide one kind can antifouling, antifrost, while preventing inner bag body bottom portion ponding Antifrost inner container of icebox.
It is described in detail above by embodiment to of the present utility model, but the content is only of the present utility model Preferred embodiment, it is impossible to be considered as being used to limit practical range of the present utility model.It is all to be made according to present utility model application scope Equivalent change with improve etc., all should still belong within patent covering scope of the present utility model.

Claims (7)

1. a kind of inner container of icebox of antifrost, it is characterised in that:Including inner bag body, the inner bag body is by left side wall, right side Wall, rear wall, upper wall and lower wall constitute accommodating chamber, and the inner surface of the inner bag body is provided with coating structure, the coating structure The super-amphiphobic coating structure constituted for super lubricant coating structure or by adhesive layer and super-amphiphobic coating.
2. the inner container of icebox of antifrost according to claim 1, it is characterised in that:The left side wall, right side wall and rear side At least one guiding gutter vertically, the left side wall and right side are offered in the one side of the interior accommodating chamber of direction of wall respectively Correspondence offers at least one first groove perpendicular to rear wall, first groove and is provided with the first water leg, institute on wall The rectangular parallelepiped structure that the first water leg is upper end open is stated, the length and height of first water leg are slightly less than the first groove Length and height, the width of first water leg are more than the width of the first groove, and the lower wall is opened up with rear wall junction Have with left side wall and right side wall vertical the second groove, be provided with the second water leg in second groove, described second catchments Groove is the rectangular parallelepiped structure of upper end open, and the length and width of second water leg is slightly less than the length and width of the second groove Degree, the height of second water leg is more than the height of the second groove, and the water guide rooved face is provided with coating structure, the coating Structure is super lubricant coating structure or the super-amphiphobic coating structure being made up of adhesive layer and super-amphiphobic coating.
3. the inner container of icebox of antifrost according to claim 2, it is characterised in that:The guiding gutter is on left side wall, right side Respectively there are two on wall and rear wall respectively.
4. the inner container of icebox of antifrost according to claim 2, it is characterised in that:First groove is in left side wall and the right side Respectively there are three on the wall of side respectively, and be uniformly distributed on left side wall and right side wall, and two positioned at bottommost are described first recessed The bottom of groove is concordant with the upper surface of lower wall.
5. the inner container of icebox of the antifrost according to claim any one of 1-4, it is characterised in that:The adhesive layer is gluing Agent material, the gluing agent material be epoxy resin, butadiene-styrene rubber ethene and its copolymer analog, Lauxite TPO, Polyurethanes, polyvinyl acetate, polyamide-based or styrene and its block copolymerization species material.
6. the inner container of icebox of the antifrost according to claim any one of 1-4, it is characterised in that:The super-amphiphobic coating is The super-amphiphobic material prepared by the fluorine-containing nanoparticle with polymolecularity and caking property.
7. the inner container of icebox of the antifrost according to claim any one of 1-4, it is characterised in that:The super lubricant coating knot Structure is with the super lubricated surface material of groove-like substrate.
CN201720038974.8U 2017-01-13 2017-01-13 A kind of inner container of icebox of antifrost Active CN206514606U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720038974.8U CN206514606U (en) 2017-01-13 2017-01-13 A kind of inner container of icebox of antifrost

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720038974.8U CN206514606U (en) 2017-01-13 2017-01-13 A kind of inner container of icebox of antifrost

Publications (1)

Publication Number Publication Date
CN206514606U true CN206514606U (en) 2017-09-22

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111023655A (en) * 2018-10-09 2020-04-17 青岛海尔特种电冰柜有限公司 Refrigeration device with overhead evaporator
CN111486647A (en) * 2019-01-28 2020-08-04 上海荥科制冷设备有限公司 Anti-freezing embedded equipment for inner wall of refrigerator

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111023655A (en) * 2018-10-09 2020-04-17 青岛海尔特种电冰柜有限公司 Refrigeration device with overhead evaporator
CN111023655B (en) * 2018-10-09 2022-08-23 青岛海尔特种电冰柜有限公司 Refrigeration device with overhead evaporator
CN111486647A (en) * 2019-01-28 2020-08-04 上海荥科制冷设备有限公司 Anti-freezing embedded equipment for inner wall of refrigerator

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Effective date of registration: 20230417

Address after: 300399 Room 303, Building 3, Zone B, Airport International Advanced Business Park, Hangshuang Road, Dongli District, Tianjin

Patentee after: Tianjin Super Hydrophobic Nanotechnology Co.,Ltd.

Address before: Rooms 33 and 34, Room 211, Building 6, Science and Technology Park, Hebei University of Technology, Shuangkou Town, Beichen District, Tianjin, 300000

Patentee before: TIANJIN ULTRAFINE TECH. CO.,LTD.