Window sealing structure and air conditioner assembly

By using composite fabric and a removable sealing strip, the problem of windows not being able to close completely due to the flexible refrigerant pipes of air conditioners is solved, enabling convenient installation of the window sealing structure and adapting to various window types.

CN224065586UActive Publication Date: 2026-03-31GD MIDEA AIR CONDITIONING EQUIP CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

The flexible refrigerant pipes of existing air conditioners prevent windows from closing completely, and traditional window sealing structures are rigid, easily damaged, and inconvenient to install.

Method used

The sealing panels, made of composite fabric including a fleece layer, are connected by adhesive, featuring a detachable structure and zippers to adapt to different window types, providing a soft and easy-to-fold sealing structure.

Benefits of technology

While maintaining thermal insulation performance, the window sealing structure is more flexible, easier to fold and deform, improving installation convenience and applicability, and is suitable for a variety of window types.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224065586U_ABST
    Figure CN224065586U_ABST
Patent Text Reader

Abstract

The utility model discloses a window sealing structure and an air conditioner assembly, and relates to the technical field of air conditioners, the window sealing structure comprises a sealing sheet, the sealing sheet is connected with a window frame and / or a window leaf so as to shield at least part of a ventilation slot of a window, and a pipeline of an air conditioner can penetrate out to an outdoor space; the sealing piece is made of composite cloth and comprises at least two cloth layers connected with each other, and at least one cloth layer is made of flannelette. According to the technical scheme provided by the utility model, the window sealing structure is softer and is easy to bend and deform on the premise of keeping the heat insulation performance, so that the window sealing structure is more convenient to install.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of air conditioner technology, and in particular to a window sealing structure and an air conditioner component. Background Technology

[0002] In related technologies, air conditioner products equipped with flexible refrigerant pipes to connect the indoor and outdoor units allow users to install the air conditioner themselves onto windows. However, the outdoor unit is installed on the outside of the window, and a portion of the flexible refrigerant pipe extends through the window to the outside along with the outdoor unit. This results in the window not being able to close completely. In other words, a certain ventilation opening must be left in the window to accommodate the flexible refrigerant pipe.

[0003] The current solution involves providing users with foam boards or pearl cotton as window sealing structures. By installing these boards or cotton over the ventilation openings, insects or rainwater are prevented from entering the interior space. However, foam boards and pearl cotton have a certain structural rigidity and are easily damaged by excessive bending. Therefore, they cannot be well adapted for installation in different application scenarios, making the window sealing structure inconvenient to install. Utility Model Content

[0004] The main purpose of this utility model is to propose a window sealing structure and an air conditioner component, which aims to make the window sealing structure more flexible, easier to bend and deform, and thus easier to install, while maintaining its heat insulation performance.

[0005] To achieve the above objectives, the window sealing structure proposed in this utility model includes a sealing strip, which connects the window frame and / or the window leaf to block at least part of the ventilation opening of the window and allows the air conditioner pipes to pass through to the outdoor space; the sealing strip is configured as a composite fabric and includes at least two connected fabric layers, at least one of which is configured as velour.

[0006] In one embodiment, the fabric layer connected to the fleece is configured as a woven fabric.

[0007] In one embodiment, the woven fabric connected to the fleece is configured as Oxford cloth.

[0008] In one embodiment, two adjacent fabric layers are connected by an adhesive.

[0009] In one embodiment, the adhesive includes a first adhesive and a second adhesive, wherein the first adhesive covers the fabric layer and cures to form a first adhesive layer, and the second adhesive connects two adjacent first adhesive layers and cures to form a second adhesive layer.

[0010] In one embodiment, the first adhesive is configured as a two-component reactive adhesive.

[0011] In one embodiment, the second adhesive is configured as a hot melt adhesive.

[0012] In one embodiment, the cover includes two detachably connected fabric pieces, one of which is disposed on the window flap and the other of which is disposed on the window frame.

[0013] In one embodiment, the sealing structure further includes a zipper extending through opposite ends of the sealing sheet, and the two sheets of fabric are detachably connected by the zipper.

[0014] In one embodiment, the zipper is configured as a double-opening zipper with two zipper heads, and a through-hole can be formed between the two zipper heads, the through-hole being able to allow the air conditioner's pipes to pass through.

[0015] In one embodiment, the fabric layer connected to the fleece is configured as Oxford cloth, and the Oxford cloth is disposed near the zipper pull tab of the zipper head.

[0016] In one embodiment, one of the fabric pieces has a mounting side with an outwardly convex arc, the mounting side being disposed away from the other fabric piece, and the mounting side being connected to the window flap.

[0017] In one embodiment, the window sealing structure further includes a Velcro fastener, one of which has a rough side and a hook side located on the side edge of the sealing sheet, and the other is located on the window frame and the window leaf.

[0018] In one embodiment, the fabric layer connected to the fleece is configured as a nonwoven fabric.

[0019] This utility model also proposes an air conditioner assembly, including an air conditioner and the aforementioned window sealing structure.

[0020] This utility model utilizes fleece fabric, which has good warmth retention and softness, in composite fabrics to replace insulation materials such as foam boards or pearl cotton. This makes the window sealing structure more flexible, easier to bend and deform while maintaining a certain level of insulation performance. Users can more easily fold, stretch or squeeze the window sealing structure to adapt it to different application scenarios, thereby improving the ease of installation of the window sealing structure. Attached Figure Description

[0021] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0022] Figure 1 A front view of an embodiment of the window sealing structure provided by this utility model;

[0023] Figure 2 for Figure 1 The diagram shows the hierarchical structure of the cover sheet;

[0024] Figure 3 for Figure 1 The diagram shows the configuration of the window sealing structure installed in front of the window.

[0025] Figure 4 for Figure 1 A schematic diagram of the window sealing structure on the window;

[0026] Figure 5 for Figure 1 A magnified view of a section at point A in the middle;

[0027] Figure 6 for Figure 1 Rear view of the window enclosure structure shown;

[0028] Figure 7 for Figure 6 A magnified view of a section at point B.

[0029] Explanation of icon numbers:

[0030] 100. Window sealing structure; 110. Sealing panel; 111. Fabric layer; 112. First adhesive layer; 113. Second adhesive layer; 114. Fabric sheet; 115. Installation side; 120. Zipper; 121. Zipper head; 122. Pull tab; 130. Installation Velcro; 200. Window; 201. Window frame; 202. Window sash; 203. Ventilation opening; 204. First window gap; 205. Second window gap; 300. Piping.

[0031] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0032] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0033] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.

[0034] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0035] This utility model proposes a window sealing structure 100, applied to a window 200. The window 200 includes a window frame 201 and a window flap 202 movably disposed on the window frame 201. When opened, a ventilation opening 203 is formed between the window flap 202 and the window frame 201. Please refer to [link / reference]. Figures 1 to 4 In one embodiment of the present invention, the window sealing structure 100 includes a sealing plate 110, which connects the window frame 201 and / or the window leaf 202 to block at least part of the ventilation opening 203 and to allow the air conditioner pipe 300 to pass through to the outdoor space.

[0036] Specifically, after the air conditioner is installed, the window sash 202 can be closed to a minimum ventilation opening 203. Then, the sealing strip 110 is installed on the window frame 201 and / or the window sash 202, using the sealing strip 110 to block the ventilation opening 203 on the window 200. This reduces the risk of rainwater or insects entering the indoor space through the ventilation opening 203. On the other hand, the air conditioner's ductwork 300 can extend outdoors through a pipe opening on the sealing strip 110 or through a pipe space between the sealing strip 110 and the window 200 to meet the air conditioner's installation requirements.

[0037] It should be noted that the pipe 300 includes, but is not limited to, refrigerant pipes, air inlet pipes, or air outlet pipes. For example, when the air conditioner is a portable air conditioner, its outdoor air outlet is connected to an air outlet pipe, which needs to extend out of the window to expel the air that has completed heat exchange with the outdoor heat exchanger. That is, the sealing plate 110 of this utility model can be configured to allow the pipe 300 to pass through, depending on the specific needs of the air conditioner product. This application does not impose any specific limitations on this.

[0038] Specifically, the sealing plate 110 of this utility model can be applied to windows 200 with various opening forms, including but not limited to flip windows, sliding windows, folding windows or wing windows, etc. The rotation axis of the flip window 202 can be horizontally extended and located on the upper or lower side of the window frame 201, or vertically extended and located on the left or right side of the window frame 201.

[0039] Please refer to Figure 3 , Figure 3 The window 200 is a hinged window structure with the rotation axis of the window leaf 202 vertically located on the right side of the window frame 201. In one embodiment, the sealing plate 110 can cover the three-sided opening formed after the hinged window is opened. Specifically, the window leaf 202 is rotatably connected to the window frame 201, and the ventilation opening 203 includes two opposing second window openings 205 and a first window opening 204 connecting the two second window openings 205. The first window opening 204 is opposite to and far away from the rotation axis of the window leaf 202, and the sealing plate 110 can cover the first window opening 204 and the second window opening 205.

[0040] It is understandable that in the case of sliding windows, since the single-sided opening formed after the window sash 202 is opened, and the ventilation opening 203 is regularly shaped, the sealing plate 110 of this application can also be set as a simple straight plate structure, which can effectively block the ventilation opening 203, while allowing the refrigerant pipe to extend from the indoor space to the outdoor space.

[0041] It is understood that the air conditioner of this utility model can be a split-type air conditioner that is easy for users to install themselves. It uses flexible refrigerant pipes to connect the indoor heat exchanger of the indoor unit and the outdoor heat exchanger of the outdoor unit, and refrigerant is injected into the refrigerant circuit before the equipment leaves the factory. In this way, when users install the equipment themselves, they only need to fix the indoor unit and the outdoor unit separately, without the need to install refrigerant pipes and add refrigerant, thereby reducing the difficulty of installation and enabling users to install it themselves.

[0042] However, this design is not limited to this. In other embodiments, the air conditioner of this utility model can also be a common split-type air conditioner or an integrated air conditioner, such as a window air conditioner integrated unit. In this case, the outdoor unit of the air conditioner refers to the part of the window air conditioner that extends to the outside.

[0043] Please see Figure 2 Optionally, the cover 110 is configured as a composite fabric and includes at least two connected fabric layers 111, at least one of which is configured as fleece.

[0044] Generally speaking, fabrics can be classified into woven fabrics, nonwoven fabrics, and composite fabrics. Woven fabrics include cotton, silk, and velvet, while nonwoven fabrics are commonly known as non-woven cloth. Composite fabrics refer to materials formed by bonding or laminating multiple layers of different materials, including fabric, together. For example, materials obtained by combining woven fabrics with nonwoven fabrics or combining woven fabrics with films.

[0045] Among them, fleece is a type of woven fabric. Its essence is a fabric with a surface pile formed by weaving process or based on the finishing of woven fabric. It has a soft and fluffy texture through special weaving or finishing processes. Its core characteristics are warmth and comfortable touch. It specifically includes corduroy, velvet, coral fleece, polar fleece and suede, etc.

[0046] This utility model utilizes fleece fabric, which has good warmth retention and softness, in composite fabrics to replace insulation materials such as foam boards or pearl cotton. This makes the window sealing structure 100 more flexible, easier to bend and deform while maintaining a certain level of insulation performance. Users can more easily fold, stretch or squeeze the window sealing structure 100 to adapt it to different application scenarios, thereby improving the ease of installation of the window sealing structure 100.

[0047] Optionally in this embodiment, the cover 110 is composed of two fabric layers 111 of different types. Of course, in other embodiments, the cover 110 may also be composed of three or more fabric layers 111, wherein each fabric layer 111 may be made of a different material, or at least two fabric layers 111 may be made of the same material.

[0048] Optionally, in this embodiment, the fabric layer 111 connected to the fleece is configured as a woven fabric. Thus, utilizing the excellent properties of the woven fabric, such as its ability to withstand high-frequency friction and localized impact, improves the applicability and service life of the sealing strip 110, which is beneficial for the application of the window sealing structure 100 on the window 200. Of course, in other embodiments, the fabric layer 111 connected to the fleece is configured as a non-woven fabric; that is, the sealing strip 110 of the window sealing structure 100 can be formed by combining non-woven fabric with fleece.

[0049] Optionally, in this embodiment, the woven fabric connected to the fleece is configured as Oxford cloth. This allows the sealing strip 110 to more easily maintain its installed shape after being bent by the user, thereby improving the installation stability of the window sealing structure 100. Secondly, the Oxford cloth can also be made waterproof through a waterproofing process, such as by attaching a PU (Polyurethane) coating or a PVC (Polyvinyl Chloride) film to the Oxford cloth to achieve excellent waterproof performance. Thus, by using waterproof Oxford cloth combined with fleece to form the sealing strip 110 of the window sealing structure 100, the window sealing structure 100 can possess good waterproof performance and flexibility while also having a certain degree of thermal insulation. In rainy or snowy weather, this prevents rainwater from penetrating the window sealing structure 100 and entering the room.

[0050] Of course, in other embodiments, the cover 110 may also be formed by combining other types of woven fabric with fleece, for example, by combining cotton or silk with fleece. The cover 110 of the window structure 100 may also be formed by combining two different types of fleece, for example, by combining fleece and suede.

[0051] It is understood that there are various ways to bond and fix different fabric layers 111. For example, please refer to... Figure 2 In this embodiment, optionally, two adjacent fabric layers 111 are connected by adhesive. By using adhesive to bond and fix the different fabric layers 111 into a single unit, the structural stability of the sealing plate 110 can be improved, preventing the window sealing structure 100 from dispersing into multiple fabric pieces during use, thus reducing its ability to block the ventilation opening 203. Specifically, optionally, the surfaces of two adjacent fabric layers 111 are completely covered with adhesive. This comprehensive bonding allows the sealing plate 110 to be cut at any position, meaning that users can freely cut the outer edge of the sealing plate 110 to make the shape of the window sealing structure 100 more suitable for the user's installation scenario. For example, the window sealing structure 100 can be provided to users as a rectangular sheet structure when it is manufactured and sold. Users can cut the sealing sheet 110 of the window sealing structure 100 according to their own air conditioner and window 200 installation situation. This can prevent the window sealing structure 100 from being too redundant and affecting the aesthetics, such as avoiding the problem of the window sealing structure 100 drooping down due to excessive width, while ensuring that the window sealing structure 100 just covers the ventilation opening 203.

[0052] Of course, in other embodiments, other means can be used to achieve the bonding and fixing of different fabric layers 111, such as molding process, hot pressing process or needle and thread sewing process. This utility model does not make specific limitations in this regard, as long as the different fabric layers 111 of the sealing sheet 110 are not prone to delamination and the sealing sheet 110 is dense and durable.

[0053] Please see Figure 2 Optionally, in this embodiment, the adhesive includes a first adhesive and a second adhesive. The first adhesive covers the fabric layer 111 and cures to form a first adhesive layer 112. The second adhesive connects two adjacent first adhesive layers 112 and cures to form a second adhesive layer 113. Specifically, the first adhesive is first cured on the surface of the fabric layer 111 to form the first adhesive layer 112, and then the second adhesive is used to connect the two first adhesive layers 112. The first adhesive layer 112 can form a three-dimensional polymer structure on the surface of the fabric layer 111 to provide high bonding strength and flexibility, and to enhance the bonding strength of the second adhesive. This improves the bonding strength and connection stability of the two fabric layers 111. Of course, in other embodiments, only one type of adhesive can be used to bond the two fabric layers 111.

[0054] Optionally in this embodiment, the first adhesive is configured as a two-component reactive adhesive. Specifically, the two-component reactive adhesive can be an oil-based polyurethane two-component adhesive. Thus, the first adhesive layer 112 has a stable, reliable structure and is easy to implement. Of course, in other embodiments, the first adhesive can also be of other types, such as a one-component reactive adhesive; other types of two-component reactive adhesives can also be used, such as epoxy resin-amine, or organosilicon-platinum catalyst, etc.

[0055] Optionally, in this embodiment, the second adhesive is configured as a hot melt adhesive. Specifically, the material of the second adhesive is configured as PUR hot melt adhesive (Polyurethane Reactive, moisture-curing reactive polyurethane hot melt adhesive, whose main component is terminal isocyanate polyurethane prepolymer). Thus, the structure of the first adhesive layer 112 is stable, reliable, and easy to implement. Of course, in other embodiments, the second adhesive can also be of other types, such as a two-component reactive adhesive; or other types of one-component reactive adhesives can be used, such as EVA (Ethylene Vinyl Acetate Copolymer) hot melt adhesive.

[0056] Optionally in this embodiment, the composite process of Oxford cloth and velvet can be as follows: first, both the composite surfaces of Oxford cloth and velvet are calendered to obtain calendered surfaces of both; then, an oil-based polyurethane two-component adhesive is coated onto the calendered surfaces and dried and cured to form a first adhesive layer 112; then, PUR hot melt adhesive is coated onto the calendered surface of one of the Oxford cloth or velvet, and the two are heated, laminated, rolled up, and cured together.

[0057] It's easy to understand that the sash 110, composed of Oxford cloth and velvet, serves two purposes. First, it insulates against heat, preventing the cool or warm air in the indoor space from exchanging heat with the outdoor air at the ventilation opening 203, thus reducing temperature fluctuations in the indoor space and saving energy for the air conditioner. Second, the combination of Oxford cloth and velvet creates a more complex layered structure in the sash 110, which improves its sound insulation performance.

[0058] Please see Figure 5 and Figure 7 Optionally in this embodiment, the sealing strip 110 includes two detachably connected fabric pieces 114, one of which is disposed on the window sash 202 and the other on the window frame 201. It is understood that when the user needs to open the window sash 202 to a larger angle, that is, when the horizontal width of the ventilation opening 203 needs to be increased, the sealing strip 110, which is adapted to the original width of the ventilation opening 203, obviously cannot meet this requirement. In this embodiment, by setting the sealing plate 110 as two detachable fabric pieces 114, when the user has the aforementioned needs, the sealing plate 110 can be directly split into two fabric pieces 114 on the window 200. The fabric piece 114 on the window flap 202 will move with the opening action of the window flap 202, while the fabric piece 114 on the window frame 201 will remain in its position. When the user needs to reuse the sealing plate 110 to cover the ventilation opening 203, the width of the ventilation opening 203 can be reduced so that the two fabric pieces 114 can be reconnected. In this way, the ease of use and flexibility of the window sealing structure 100 can be improved. Of course, in other embodiments, the sealing plate 110 can also be set as a single piece of fabric.

[0059] Furthermore, it is worth mentioning that when there is a partial split between the two fabric pieces 114, the location of this partial split can form a passage for the air conditioner's pipe 300 to pass through. That is, the two fabric pieces 114 are not completely separated at this time, but only partially separated, such as at the end or middle. In this way, the need for the air conditioner's pipe 300 to pass through can be met, while also effectively concealing the ventilation opening 203. Of course, in other embodiments, a passage space for the pipe 300 to pass through can also be constructed between the sealing plate 110 and the window 202. For example, after arching the edge of the sealing plate 110 in a direction away from the window 202, a passage space will be created between the arched edge of the sealing plate 110 and the window 202. Alternatively, a pipe passage notch can be cut out at the edge of the sealing plate 110, which allows the air conditioner's pipe 300 to pass through.

[0060] Please see Figures 5 to 7 Optionally, in this embodiment, the window sealing structure 100 further includes a zipper 120 passing through both ends of the sealing panel 110, and the two fabric panels 114 are detachably connected by the zipper 120. That is, one side of the zipper 120 is located on one of the fabric panels 114, and the other side is located on the other fabric panel 114. When the zipper 120 is fully opened, the two fabric panels 114 are separated into two independent parts; when the zipper 120 is fully closed, the two fabric panels 114 form a complete sealing panel 110 to cover the ventilation opening 203. Thus, the structure is simple and easy to implement.

[0061] Of course, in other embodiments, the two pieces of cloth 114 can be detachably connected by magnets or Velcro. For example, magnets are provided on the side edges of the two pieces of cloth 114 facing each other, and the magnetic attraction is used to attract the two pieces of cloth 114 together to form a complete cover sheet 110.

[0062] Please see Figure 7Optionally, the zipper 120 is configured as a double-opening zipper with two zipper heads 121. A pipe passage is formed between the two zipper heads 121, allowing the air conditioner's pipes 300 to pass through. In this embodiment, the interval between the two zipper heads 121 corresponds to the partial splitting point of the two fabric pieces 114. Thus, by adjusting the relative positions of the two zipper heads 121 on the zipper teeth, the relative position of the pipe passage on the window frame 201 can be adjusted, allowing the pipe passage on the sealing plate 110 to adapt to different air conditioner devices and different installation scenarios, thereby improving the flexibility and convenience of the window sealing structure 100 and enhancing the user experience. Of course, in other embodiments, a single zipper head 121 can also be used, with the gap formed between the zipper head 121 and the clip located at one end of the zipper teeth allowing the refrigerant pipe to pass through. In other embodiments, a pipe opening can be directly made on the sealing plate 110. It can be understood that if a pipe opening is to be made on the sealing plate 110, the pipe opening can be made before the sealing plate 110 is sold at the factory, or it can be made by the user at the equipment installation site according to actual needs.

[0063] Optionally, the fabric layer 111 connected to the velvet is configured as Oxford cloth, with the Oxford cloth positioned near the pull tab 122 of the zipper pull 121 of the zipper 120. It is understood that after the window sealing structure 100 is correctly installed on the window 200, the pull tab 122 of the zipper 120 will face the interior space to facilitate user operation of the pull tab 122 to open and close the zipper 120. Based on this, the Oxford cloth is positioned near the pull tab 122, allowing it to face the interior space, i.e., to be visible to the user on the side of the window sealing structure 100. Because of the bright and clean appearance of the Oxford cloth, its facing towards the interior space enhances the overall quality of the window sealing structure 100. Specifically, the Oxford cloth can be selected in light colors such as white or sky blue to match the light-colored decor of the interior space, helping to integrate the window sealing structure 100 with the interior decoration. Secondly, using quick-drying fleece facing outwards also facilitates the drying speed of the sealing strip 110 in rainy or snowy weather, thereby reducing the risk of mold growth on the window sealing structure 100 due to continuous dampness. Of course, in other embodiments, the Oxford cloth can also be positioned away from the pull tab 122, that is, with the fleece facing inwards.

[0064] Please see Figure 1Optionally, one piece of fabric 114 has a convexly curved mounting side 115, which is positioned away from another piece of fabric 114 and connects to the window sash 202. Thus, the convexly curved mounting side 115 has a longer length, allowing for more flexible adaptation to window sashes 202 of different sizes and shapes, thereby facilitating the installation of the fabric 114 and the window sash 202 and improving the usability of the window sealing structure 100. Of course, in other embodiments, the shape of the mounting side 115 can also be configured as three connected straight segments, that is, making the sealing panel 110 approximately an isosceles trapezoid.

[0065] Please see Figure 1 and Figure 5 Optionally, in this embodiment, the window sealing structure 100 further includes a Velcro fastener 130. One of the rough and hook sides of the Velcro fastener 130 is located on the side edge of the sealing plate 110, and the other is located on the window frame 201 and the window leaf 202. Thus, the Velcro fastener enables a detachable connection between the sealing plate 110 and the window 200, resulting in a simple structure and convenient assembly / disassembly. Of course, in other embodiments, the sealing plate 110 can also be fixed to the window 200 by adhesive, screwing, snap-fitting, or riveting.

[0066] Optionally, the Velcro 130 can be installed and fixed to the cover sheet by adhesive or self-adhesive, or by sewing it on. This application does not impose any specific limitations on this. For example, the Velcro 130 can be a self-adhesive structure, bonded and fixed to the Oxford cloth to improve the installation reliability of the Velcro 130.

[0067] This utility model also proposes an air conditioner assembly, which includes an air conditioner and a window sealing structure. The specific structure of the window sealing structure is as described in the above embodiments. Since this air conditioner assembly adopts all the technical solutions of all the above embodiments, it has at least all the beneficial effects brought about by the technical solutions of the above embodiments, which will not be described in detail here.

[0068] The above description is merely an exemplary embodiment of the present utility model and does not limit the patent scope of the present utility model. Any equivalent structural transformations made based on the technical concept of the present utility model and the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.

Claims

1. A window seal structure, characterized by comprising: The sealing window structure comprises a sealing sheet connected to the window frame and / or window sash, capable of blocking at least part of the ventilation gap of the window and allowing the pipeline of the air conditioner to pass through to the outdoor space. The sealing sheet is configured as a composite cloth, comprising at least two cloth layers connected to each other, at least one of the cloth layers being configured as a velvet cloth.

2. The window sealing structure of claim 1, wherein The cloth layer connected to the velvet cloth is configured as a woven cloth.

3. The window sealing structure of claim 2, wherein, The woven cloth connected to the velvet cloth is configured as an oxford cloth.

4. The window sealing structure of claim 1, wherein The adjacent two cloth layers are connected by an adhesive.

5. The window sealing structure of claim 4, wherein The adhesive comprises a first adhesive and a second adhesive, the first adhesive is coated on the cloth layer and solidified to form a first adhesive layer, and the second adhesive connects the adjacent two first adhesive layers and is solidified to form a second adhesive layer.

6. The window sealing structure of claim 5, wherein, The first adhesive is configured as a two-component reactive adhesive, and / or the second adhesive is configured as a hot melt adhesive.

7. The window sealing structure of claim 1, wherein The sealing sheet comprises two detachably connected cloth pieces, one of which is arranged on the window sash and the other of which is arranged on the window frame.

8. The window sealing structure of claim 7, wherein, The sealing window structure further comprises a zipper passing through the opposite ends of the sealing sheet, and the two cloth pieces are detachably connected by the zipper. And / or, the zipper is configured as a double-zipper and has two zipper heads, and a pipe passing opening is formed between the two zipper heads, which allows the pipeline of the air conditioner to pass through. And / or, the cloth layer connected to the velvet cloth is configured as an oxford cloth, and the oxford cloth is arranged close to the pull tab of the zipper head. And / or, one of the cloth pieces has an installation side edge in the form of an outward convex arc, which is arranged away from the other cloth piece and connected to the window sash.

9. The window sealing structure of claim 1, wherein The sealing window structure further comprises a magic tape, one of the nap surface and the hook surface of the magic tape is arranged on the side edge of the sealing sheet, and the other is arranged on the window frame and the window sash. And / or, the cloth layer connected to the velvet cloth is configured as a non-woven cloth.

10. An air conditioner assembly comprising: The sealing window structure comprises an air conditioner and a sealing window structure according to any one of claims 1 to 9.