Semitransparent demisting cabinet door for refrigeration cabinet
By using semi-transparent glass and lights of varying brightness working together in the refrigeration cabinet, combined with an anti-fogging coating and a hollow layer, the problem of transparent cabinet doors affecting the display screen and non-transparent cabinet doors requiring opening is solved, achieving a low-energy defogging effect and clear visibility.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2026-03-20
AI Technical Summary
The transparent doors of existing refrigeration cabinets affect the display effect of transparent displays, while non-transparent doors need to be opened to see the contents inside. Furthermore, existing defogging methods consume a lot of energy.
It uses semi-transparent glass and lights of different brightness to work together, combined with an anti-fogging coating and a hollow layer, so that you can clearly see the contents inside without opening the cabinet door, and reduce energy consumption through the anti-fogging coating.
Without affecting the display effect of the transparent screen, the contents inside the refrigeration cabinet can be clearly seen, while reducing defogging energy consumption and improving the transparency and heat insulation performance.
Smart Images

Figure CN224018639U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of refrigeration cabinets, in particular to a semi-transparent defogging cabinet door for a refrigeration cabinet. BACKGROUND
[0002] With the improvement of people's living standards, refrigeration cabinets such as wine cabinets, refrigerators, and vending machines are widely used. The cabinet doors of refrigeration cabinets are usually transparent or non-transparent. For a refrigeration cabinet with a non-transparent cabinet door, although the temperature and humidity inside the cabinet and product information can be understood through the liquid crystal display screen, the actual objects inside the cabinet cannot be directly seen and the cabinet door needs to be opened to see the actual objects. For a refrigeration cabinet with a transparent cabinet door, the front of the cabinet door is transparent glass, and when a transparent display screen that does not affect the aesthetic effect of the storage cabinet needs to be set, the transparent cabinet will affect the display effect of the display screen. At the same time, due to the large temperature difference between the inside and outside of the refrigeration storage cabinet, fog will form on the glass door, affecting the visibility inside the cabinet. The current method for handling fog is to set a heating module, which consumes a lot of energy. SUMMARY
[0003] In view of the technical problems in the background art, the present application provides a semi-transparent defogging cabinet door for a refrigeration cabinet, which has a simple structure and can clearly see the actual objects inside the refrigeration cabinet without opening the cabinet door. When the content of the transparent display screen set on the cabinet door needs to be observed, the content can be clearly seen, and the defogging function has low energy consumption.
[0004] The present application provides a semi-transparent defogging cabinet door for a refrigeration cabinet, which is installed on the cabinet body of the refrigeration cabinet. The refrigeration cabinet is provided with lamps of different brightness. The semi-transparent defogging cabinet door for the refrigeration cabinet comprises a hollow glass assembly and a packaging assembly arranged around the hollow glass assembly. The hollow glass assembly comprises a semi-transparent glass, a first anti-fog glass, and a first hollow layer arranged between the semi-transparent glass and the first anti-fog glass. The first anti-fog glass comprises a first transparent base glass and a first anti-fog coating layer arranged on the inner and outer surfaces of the first transparent base glass.
[0005] In the technical solution of the present application, by arranging a semi-transparent glass, people can initially see the actual objects in the refrigeration cabinet through the semi-transparent glass. At the same time, by arranging lamps of different brightness in the refrigeration cabinet, the lamps of different brightness and the semi-transparent glass are used in cooperation, so that the actual objects inside the refrigeration cabinet can be clearly seen without opening the cabinet door. When a transparent display screen is arranged on the cabinet door, the lights inside the refrigeration cabinet are turned off, at which time the clarity of the actual objects inside the refrigeration cabinet is reduced, but the content displayed on the transparent display screen is clear. By arranging the first anti-fog coating layer, the anti-fog function can be realized to avoid fogging on the first anti-fog glass affecting the perspective effect.
[0006] In some embodiments, the semi-transparent glass comprises a third transparent base glass and a semi-transparent transfer layer, the semi-transparent transfer layer is arranged on the side of the third transparent base glass away from the first anti-fog glass.
[0007] In this embodiment, the third transparent base glass realizes the semi-transparent function by arranging the semi-transparent transfer layer.
[0008] In some embodiments, the semi-transparent glass further comprises a transparent coating layer arranged between the semi-transparent transfer layer and the third transparent base glass.
[0009] In this embodiment, by adding the transparent coating layer, the better perspective effect can be realized by the mutual coordination of the transparent coating layer and the semi-transparent transfer layer; meanwhile, the appearance effect of the semi-transparent glass can be improved by arranging the transparent coating layer.
[0010] In some embodiments, the light transmittance of the semi-transparent glass is > 50%.
[0011] In this embodiment, by reasonably controlling the light transmittance of the semi-transparent glass, the observation of the real objects in the cabinet by people is avoided when the transmittance is low, and the observation of the content of the transparent display screen is avoided when the transmittance is too high.
[0012] In some embodiments, the hollow glass assembly further comprises a second anti-fog glass and a second hollow layer; the second anti-fog glass is arranged on the side of the first anti-fog glass away from the semi-transparent glass, and the second hollow layer is arranged between the first anti-fog glass and the second anti-fog glass.
[0013] In this embodiment, by adding the second anti-fog glass and the second hollow layer, the heat insulation effect of the semi-transparent defogging cabinet door for refrigerators is further improved, and the low-temperature environment inside the refrigerator is ensured.
[0014] In some embodiments, the second anti-fog glass comprises a second transparent base glass and a second anti-fogging coating layer arranged on the inner and outer surfaces of the second transparent base glass.
[0015] In this embodiment, the anti-fogging function is realized by arranging the transparent second anti-fogging coating layer on the inner and outer surfaces of the second transparent base glass.
[0016] In some embodiments, the first hollow layer and the second hollow layer are inert gas layers.
[0017] In this embodiment, by arranging the inert gas, the overall thermal conductivity of the semi-transparent defogging cabinet door for refrigerators is reduced, the heat exchange between the inner and outer sides is reduced, and the fogging is avoided.
[0018] In some embodiments, the packaging assembly comprises a silicone glue and a hollow structure warm edge strip arranged between the translucent glass and the first anti-fog glass and between the first anti-fog glass and the second anti-fog glass; the warm edge strip is arranged on the inner side of the silicone glue.
[0019] In this embodiment, the silicone glue is arranged to tightly bond the translucent glass, the first anti-fog glass and the second anti-fog glass, avoiding air leakage; the warm edge strip is further arranged to achieve the heat insulation effect of the semi-transparent defogging cabinet door for refrigerators.
[0020] In some embodiments, the warm edge strip is a hollow aluminum strip.
[0021] In some embodiments, the first transparent base glass, the second transparent base glass and the third transparent base glass are all ultra-white glass with a thickness of 3-4 mm.
[0022] In this embodiment, the ultra-white glass is selected to improve the light transmittance of the glass, thereby improving the perspective effect of the semi-transparent defogging cabinet door for refrigerators.
[0023] The above description is only a summary of the technical solutions of the present application. In order to more clearly understand the technical means of the present application, the specific embodiments of the present application can be implemented according to the content of the specification, and in order to make the above and other purposes, features and advantages of the present application more obvious and easy to understand, the following will specifically describe the embodiments of the present application. BRIEF DESCRIPTION OF DRAWINGS
[0024] In order to more clearly illustrate the technical solutions of the present application, the following will briefly introduce the drawings used in the present application. Obviously, the drawings described below are only some embodiments of the present application, and those skilled in the art can obtain other drawings according to these drawings without creating any creative labor.
[0025] Figure 1 is an exploded view of the semi-transparent defogging cabinet door for refrigerators in the embodiments of the present application;
[0026] Figure 2 is an exploded view of the semi-transparent glass in the embodiments of the present application;
[0027] Figure 3 is an exploded view of the first anti-fog glass in the embodiments of the present application;
[0028] Figure 4 is an exploded view of the second anti-fog glass in the embodiments of the present application;
[0029] Reference numerals: 100 - translucent defogging door for refrigerator; 1 - hollow glass assembly; 2 - encapsulated assembly; 11 - translucent glass; 12 - first anti-fog glass; 13 - first hollow layer; 14 - second anti-fog glass; 15 - second hollow layer; 21 - silicone glue; 22 - warm edge strip; 111 - third transparent base glass; 112 - translucent transfer layer; 113 - transparent coating layer; 121 - first transparent base glass; 122 - first anti-fogging coating; 141 - second transparent base glass; 142 - second anti-fogging coating. DETAILED DESCRIPTION
[0030] The embodiments of the technical solutions of the present application will be described in detail below with reference to the accompanying drawings. The following embodiments are only used to more clearly illustrate the technical solutions of the present application, and therefore only serve as examples, and cannot limit the protection scope of the present application.
[0031] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs; the terms used herein are only for the purpose of describing specific embodiments and are not intended to limit the present application; the terms "include" and "have" and any variations thereof in the specification and claims of the present application and the above description of drawings are intended to cover non-exclusive inclusion.
[0032] In the description of the embodiments of the present application, the technical terms "first", "second", etc. are only used to distinguish different objects, and cannot be understood as indicating or implying relative importance or implicitly indicating the number, specific order or primary and secondary relationship of the indicated technical features. In the description of the embodiments of the present application, the meaning of "a plurality of" is two or more, unless otherwise explicitly and specifically limited.
[0033] Reference herein to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the present application. The appearance of this phrase in various places in the specification does not necessarily all refer to the same embodiment, nor is it necessarily mutually exclusive or alternative to other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0034] In the description of the embodiments of the present application, the term "a plurality of" refers to two or more (including two), and similarly, "a plurality of groups" refers to two or more groups (including two groups), and "a plurality of pieces" refers to two or more pieces (including two pieces).
[0035] In the description of the embodiments of this application, the technical terms "inner" and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing the embodiments of this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the embodiments of this application.
[0036] In the description of the embodiments of this application, unless otherwise expressly specified and limited, technical terms such as "installation," "connection," "joining," and "fixing" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. For those skilled in the art, the specific meaning of the above terms in the embodiments of this application can be understood according to the specific circumstances.
[0037] Refrigerated display cases typically have either transparent or opaque doors. For opaque doors, the contents must be opened to see them; for transparent doors, the transparent design can negatively impact the display quality when a transparent screen is installed that doesn't detract from the aesthetics of the storage unit. Furthermore, current methods for dealing with fogging in refrigerated display cases usually involve using heating modules, which consume significant amounts of energy.
[0038] To address the technical problems of non-transparent cabinet doors requiring opening to see the contents, transparent cabinet doors affecting the display effect of transparent screens, and high energy consumption for defogging in heating modules, this application provides a semi-transparent defogging cabinet door for refrigeration cabinets. By using semi-transparent glass and lighting of varying brightness within the refrigeration cabinet, the combined effect of these lights and the semi-transparent glass allows for a relatively clear view of the contents inside the refrigeration cabinet without opening the door. When a transparent display screen is installed on the door, and the lights inside the refrigeration cabinet are turned off, the clarity of the contents seen inside the cabinet decreases, while the content displayed on the transparent screen remains relatively clear. Furthermore, by applying a first anti-fogging coating, an anti-fogging function is achieved, preventing fogging on the first anti-fogging glass from affecting the visibility effect. The anti-fogging process is also energy-efficient and environmentally friendly.
[0039] Please refer to Figure 1The structure diagram of the semi-transparent defogging cabinet door 100 for the refrigerator provided by the embodiment is installed on the cabinet of the refrigerator, the refrigerator is provided with lamps with different brightness, and a switch for controlling the closing of the lamps is arranged; the semi-transparent defogging cabinet door 100 for the refrigerator comprises a hollow glass assembly 1 and a packaging assembly 2 arranged around the hollow glass assembly 1; the hollow glass assembly 1 comprises a semi-transparent glass 11, a first anti-fog glass 12 and a first hollow layer 13 arranged between the semi-transparent glass 11 and the first anti-fog glass 12; the first anti-fog glass 12 comprises a first transparent base glass 121 and a first anti-fog coating 122 arranged on the inner and outer surfaces of the first transparent base glass 121. Specifically, the first anti-fog coating 122 is transparent. When the semi-transparent defogging cabinet door 100 for the refrigerator is installed on the refrigerator, the semi-transparent glass 11 is located on the side far away from the cabinet, and the first anti-fog glass 12 is located on the side close to the cabinet, that is, the semi-transparent glass 11 is located on the outer side, and the first anti-fog glass 12 is located on the inner side. In actual use, a transparent display screen which does not affect the aesthetic effect can be arranged on the semi-transparent glass 11 according to the requirement.
[0040] In the technical scheme of the embodiment, the packaging assembly 2 is arranged to package the hollow glass assembly 1 around, so as to form the semi-transparent defogging cabinet door 100 for the refrigerator. The semi-transparent glass 11 is arranged to make the semi-transparent defogging cabinet door 100 for the refrigerator become semi-transparent. Compared with the non-transparent cabinet door, people can preliminarily see the real objects in the refrigerator through the semi-transparent glass 11. Meanwhile, the lamps with different brightness are arranged in the refrigerator, and the power switch for controlling the lamps is arranged on the outer side of the refrigerator. The brightness of the lamps in the refrigerator is adjusted to adjust the clarity of the real objects in the refrigerator, that is, the real objects in the refrigerator are clearly seen (referred to as perspective) without opening the cabinet door through the cooperation of the lamps with different brightness and the semi-transparent glass 11. When the transparent display screen is arranged on the cabinet door, the lamps in the refrigerator are turned off to see the content displayed on the transparent display screen. At this time, the clarity of the real objects in the refrigerator is reduced, and the content displayed on the transparent display screen is clear (referred to as display). It can be seen that the display and the perspective can be switched through the cooperation of the lamps with different brightness and the semi-transparent glass 11. The first anti-fog coating 122 in transparent state is arranged on the inner and outer surfaces of the first transparent base glass 121. The first anti-fog coating 122 can realize the anti-fog function to avoid the fogging on the first anti-fog glass 12 to affect the perspective effect. Meanwhile, the first anti-fog coating 122 is arranged in transparent state to further improve the perspective effect. The first hollow layer 13 is arranged to improve the heat insulation effect of the semi-transparent defogging cabinet door 100 for the refrigerator to ensure the low-temperature environment in the refrigerator.
[0041] Further, in the embodiment, the first anti-fog coating 122 is arranged on the inner and outer surfaces of the first transparent base glass 121. Figure 2As shown, the translucent glass 11 comprises a third transparent base glass 111 and a translucent transfer layer 112, the translucent transfer layer 112 is arranged on the side of the third transparent base glass 111 away from the first anti-fog glass 12, that is, the translucent transfer layer 112 is arranged on the outer side of the third transparent base glass 111. Specifically, the thickness of the translucent transfer layer 112 is 15-25 μm, preferably 20 μm, and the required pattern is printed on one side of the third transparent base glass 111 by using the transfer technology to achieve the translucent effect. The transfer technology is a UV transfer process. Specifically, first, a layer of UV glue is silk-screen printed on the surface where the transfer layer is to be formed; then the glass to be transferred is placed in a jig; the transfer mold transfers the texture to the surface of the glass by rolling, and the translucent transfer layer 112 is formed by ultraviolet curing.
[0042] In the technical scheme of the embodiment of the present application, the translucent transfer layer 112 is arranged on the outer side of the third transparent base glass 111, so that the third transparent base glass 111 realizes the translucent function, and a better translucent effect is achieved by using a simple structure. At the same time, the transfer technology is simple to operate and has good controllability of the translucent effect.
[0043] Further, in the embodiment of the present application, as shown, Figure 2 The translucent glass 11 further comprises a transparent coating layer 113 arranged between the translucent transfer layer 112 and the third transparent base glass 111. Specifically, the thickness of the transparent coating layer 113 is 5-10 nm, and the transparent coating layer 113 is first formed on one side of the third transparent base glass 111 by a coating process, and then the required pattern is printed on the transparent coating layer 113 by using the transfer technology to achieve the translucent effect. The coating process is a magnetron sputtering coating process, which is performed by using a magnetron sputtering device. Specifically, the magnetron sputtering device is checked, and the translucent glass 11 with a clean and dry surface is placed in the magnetron sputtering device. After the device is vacuumed, argon gas is introduced, and the magnetron sputtering device is started to perform coating. The detection results of the light transmittance of the actual produced glass show that when the transparent coating layer 113 is not arranged between the translucent transfer layer 112 and the third transparent base glass 111, the light transmittance is less than 80%, and when the transparent coating layer 113 is arranged between the transparent transfer layer 112 and the third transparent base glass 111, the light transmittance is higher than 80%.
[0044] In the technical scheme of the embodiment of the present application, the transparent coating layer 113 is additionally arranged between the translucent transfer layer 112 and the third transparent base glass 111, and the transparent coating layer 113 and the translucent transfer layer 112 cooperate with each other to achieve a better perspective effect, that is, the real objects in the cabinet can be clearly seen with the help of the light inside the refrigerator; at the same time, the arrangement of the transparent coating layer 113 can improve the appearance effect of the translucent glass 11.
[0045] Further, in the embodiment of the present application, the light transmittance of the translucent glass 11 is >50%, preferably >75%, and in particular, the light transmittance of the translucent glass 11 is adjusted by adjusting the thickness, pattern and the thickness of the transparent coating layer 113 of the translucent transfer layer 112.
[0046] In the technical solution of the embodiment of the present application, the light transmittance of the translucent glass 11 is reasonably controlled to ensure that the translucent glass 11 is in a suitable light transmittance range, thereby avoiding the influence on the observation of the real objects in the cabinet when the transmittance is low, and avoiding the influence on the observation of the content of the transparent display screen when the transmittance is too high.
[0047] Further, in the embodiment of the present application, as shown in Figure 1 the hollow glass assembly 1 further comprises a second anti-fog glass 14 and a second hollow layer 15; the second anti-fog glass 14 is arranged on the side of the first anti-fog glass 12 away from the translucent glass 11, and the second hollow layer 15 is arranged between the first anti-fog glass 12 and the second anti-fog glass 13. Specifically, when the translucent defogging cabinet door 100 for refrigerators is installed on the refrigerator, the translucent glass 11, the first hollow layer 13, the first anti-fog glass 12, the second hollow layer 15 and the second anti-fog glass 14 are arranged from outside to inside.
[0048] In the technical solution of the embodiment of the present application, the second anti-fog glass 14 and the second hollow layer 15 are added to increase the thickness of the translucent defogging cabinet door 100 for refrigerators, and the presence of the second hollow layer 15 can further improve the heat insulation effect of the translucent defogging cabinet door 100 for refrigerators to ensure the low-temperature environment inside the refrigerator. In addition, by adding the second anti-fog glass 14 and the second hollow layer 15, the gradient change of the temperature outside, the temperature in the first hollow layer 13 and the temperature in the second hollow layer 15 is smaller, thereby preventing fogging to some extent, and the first anti-fog glass 12 and the second anti-fog glass 14 themselves have anti-fog effect, and by the partial mutual cooperation, the anti-fog effect is maximized to avoid the influence of fogging on the see-through effect of the translucent defogging cabinet door 100 for refrigerators.
[0049] Further, in the embodiment of the present application, as shown in Figure 4 the second anti-fog glass 14 comprises a second transparent base glass 141 and a second anti-fog coating 142 arranged on the inner and outer surfaces of the second transparent base glass 141. Specifically, the second anti-fog coating 142 is transparent. The first anti-fog coating 122 and the second anti-fog coating 142 are both nano anti-fog liquid (the nano anti-fog liquid provided by Silver Sea Nanometer Technology Co., Ltd. can be selected, and the main components are nano silicon dioxide and a compound); the thickness of the first anti-fog coating 122 and the second anti-fog coating 142 is 15-25 nm, and preferably 20 nm.
[0050] In the technical scheme of the embodiment of the present application, the second anti-fogging coating 142 is transparent, and the second anti-fogging coating 142 can realize the anti-fogging function, avoid the fogging on the second anti-fogging glass 14 to affect the perspective effect, and further improve the perspective effect by setting the second anti-fogging coating 142 to be transparent. The first anti-fogging coating 122 and the second anti-fogging coating 142 are set to be hydrophilic nano anti-fogging solution, so that the surface of the first anti-fogging glass 12 and the second anti-fogging glass 14 has super hydrophilic properties. The hydrophilic group of the surface active agent adsorbs water molecules, reduces the interaction force between the water molecules, and makes the water molecules unable to gather into water droplets, but spread into transparent water film, thereby avoiding the light scattering caused by the water droplets to cause the blurred vision, and thus not affecting the perspective effect of the semi-transparent defogging cabinet door 100 for the refrigerator.
[0051] Further, in the embodiment of the present application, as shown in Figure 1 The first hollow layer 13 and the second hollow layer 15 are inert gas layers, and the inert gas is preferably argon.
[0052] In the technical scheme of the embodiment of the present application, the first hollow layer 13 and the second hollow layer 15 are set to be argon layers, thereby reducing the overall thermal conductivity of the semi-transparent defogging cabinet door 100 for the refrigerator, reducing the heat exchange between the inside and the outside, and thereby avoiding the fogging.
[0053] Further, in the embodiment of the present application, as shown in Figure 1 The packaging assembly 2 includes silicone glue 21 and warm edge strips 22 arranged between the semi-transparent glass 11 and the first anti-fogging glass 12 and between the first anti-fogging glass 12 and the second anti-fogging glass 14. The warm edge strips 22 are arranged on the inner side of the silicone glue 21. Specifically, the silicone glue 21 and the warm edge strips 22 are arranged on the periphery of the semi-transparent glass 11, the first anti-fogging glass 12 and the second anti-fogging glass 14. The temperature resistance range of the silicone glue 21 is -40℃-120℃. The warm edge strips 22 are hollow aluminum strips made of aluminum alloy. The warm edge strips 22 are hollow structures, and are bonded with the semi-transparent glass 11, the first anti-fogging glass 12 and the second anti-fogging glass 14 by hot-melt butyl glue.
[0054] In the technical scheme of the embodiment of the present application, the silicone glue 21 is arranged to tightly bond the semi-transparent glass 11, the first anti-fogging glass 12 and the second anti-fogging glass 14, thereby avoiding the air leakage. The warm edge strips 22 are arranged on the inner side of the silicone glue 21, and the existence of the warm edge strips 22 can further realize the heat insulation and heat preservation effect of the semi-transparent defogging cabinet door 100 for the refrigerator, and increase the temperature of the edges of the semi-transparent glass 11, the first anti-fogging glass 12 and the second anti-fogging glass 14, thereby reducing the possibility of fogging.
[0055] Further, in the embodiment of the present application, the first transparent substrate glass 121, the second transparent substrate glass 141 and the third transparent substrate glass 111 are all ultra-white glass with a thickness of 3-4mm, preferably 3.2mm.
[0056] In the technical solution of the embodiment of the present application, the first transparent substrate glass 121, the second transparent substrate glass 141 and the third transparent substrate glass 111 are set as ultra-white glass, thereby improving the light transmittance of the glass and further improving the perspective effect of the semi-transparent defogging cabinet door 100 for refrigerators.
[0057] Further, in the embodiment of the present application, the molecular sieve is arranged in the first hollow layer 13 and the second hollow layer 14 for absorbing the moisture sealed in the first hollow layer 13 and the second hollow layer 15. Specifically, the molecular sieve can be arranged at the corners without affecting the perspective.
[0058] Further, in the embodiment of the present application, in order to further improve the perspective effect of the semi-transparent defogging cabinet door 100 for refrigerators, different brightness lamps can be selectively arranged between the semi-transparent glass 11 and the first anti-fog glass 12, between the first anti-fog glass 12 and the second anti-fog glass 14, and on the side of the second anti-fog glass 14 close to the refrigerator. Under the mutual coordination of the different brightness lights in the refrigerator, the semi-transparent glass 11 and the different brightness lights between different glasses, the perspective effect is improved.
[0059] Please refer to Figures 1 to 4 According to one or more embodiments of the present application, by arranging the semi-transparent glass 11 and setting different brightness lights in the refrigerator, the mutual coordination of the different brightness lights and the semi-transparent glass 11 can be used to clearly see the actual objects inside the refrigerator without opening the door. When the transparent display screen is arranged on the door, the light inside the refrigerator is turned off, at this time, the clarity of the actual objects inside the refrigerator is reduced, while the content displayed on the transparent display screen is clearer. By arranging the first anti-fog coating 122, the anti-fog function of the first anti-fog glass 12 can be realized, by arranging the second anti-fog coating 142, the anti-fog function of the second anti-fog glass 13 can be realized, thereby avoiding the fogging on the first anti-fog glass 12 and the second anti-fog glass 13 affecting the perspective effect. By arranging the first hollow layer 13 and the second hollow layer 15, the overall thermal conductivity of the semi-transparent defogging cabinet door 100 for refrigerators is reduced, the heat exchange between the inside and outside is reduced, and the fogging is avoided.
[0060] Note that the present application is not limited to the above-described embodiments. The above-described embodiments are merely examples, and embodiments having substantially the same configuration, function, and effect as the technical idea of the present application are included in the technical scope of the present application. Furthermore, other modes constructed by applying various modifications to the embodiments, or by combining part of the configurations of the embodiments, which can be conceived by those skilled in the art, without departing from the spirit of the present application, are also included in the scope of the present application.
Claims
1. A semi-transparent defrosting cabinet door for a refrigeration cabinet, installed on the cabinet body of the refrigeration cabinet, wherein the refrigeration cabinet is equipped with lights of different brightness, characterized in that, The device includes an insulated glass assembly and an encapsulation assembly disposed around the insulated glass assembly; the insulated glass assembly includes a translucent glass, a first anti-fog glass, and a first insulating layer disposed between the translucent glass and the first anti-fog glass; the first anti-fog glass includes a first transparent base glass and a first anti-fog coating disposed on the inner and outer surfaces of the first transparent base glass.
2. The semi-transparent defrosting cabinet door for refrigeration cabinets according to claim 1, characterized in that, The translucent glass includes a third transparent base glass and a translucent transfer layer, wherein the translucent transfer layer is disposed on the side of the third transparent base glass away from the first anti-fog glass.
3. The semi-transparent defrosting cabinet door for refrigeration cabinets according to claim 2, characterized in that, The translucent glass also includes a transparent coating layer disposed between the translucent transfer layer and the third transparent substrate glass.
4. The semi-transparent defrosting cabinet door for refrigeration cabinets according to claim 3, characterized in that, The light transmittance of the translucent glass is >50%.
5. The semi-transparent defrosting cabinet door for refrigeration cabinets according to claim 4, characterized in that, The insulating glass assembly further includes a second anti-fog glass and a second insulating layer; the second anti-fog glass is disposed on the side of the first anti-fog glass away from the translucent glass, and the second insulating layer is disposed between the first anti-fog glass and the second anti-fog glass.
6. The semi-transparent defrosting cabinet door for refrigeration cabinets according to claim 5, characterized in that, The second anti-fog glass includes a second transparent base glass and a second anti-fog coating disposed on the inner and outer surfaces of the second transparent base glass.
7. The semi-transparent defrosting cabinet door for refrigeration cabinets according to claim 6, characterized in that, The first hollow layer and the second hollow layer are inert gas layers.
8. The semi-transparent defrosting cabinet door for refrigeration cabinets according to claim 6, characterized in that, The encapsulation assembly includes silicone sealant disposed between the translucent glass and the first anti-fog glass, and between the first anti-fog glass and the second anti-fog glass, and a hollow warm edge strip; the warm edge strip is disposed on the inner side of the silicone sealant.
9. The semi-transparent defrosting cabinet door for a refrigeration cabinet according to claim 8, characterized in that, The warm edge strip is a hollow aluminum strip.
10. The semi-transparent defrosting cabinet door for a refrigeration cabinet according to claim 9, characterized in that, The first transparent substrate glass, the second transparent substrate glass, and the third transparent substrate glass are all ultra-clear glass with a thickness of 3-4 mm.