Window sealing structure and air conditioner assembly

By installing elastic sealing sheets and locking structures on the windows to seal the gaps through which the refrigerant pipes pass, the problem of air leakage through windows when the air conditioner equipment is installed is solved, thereby improving the heating effect of the air conditioner and the convenience of user installation.

CN223374310UActive Publication Date: 2025-09-23GD MIDEA AIR CONDITIONING EQUIP CO LTD
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Patent Information

Application Number
CN202422408520.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-09-23
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

During the installation of the air conditioner equipment, when the flexible refrigerant pipe passes through the window, the window cannot be completely closed, and cold air enters the room through the gap, affecting the heating effect of the air conditioner.

Method used

The first sealing piece and the second sealing piece made of elastic material are respectively installed on the window frame and the window leaf. By abutting the deformation and rebound of the refrigerant pipe, the gap between the window leaf and the window frame is closed, and the movement of the window leaf is restricted by the window lock structure to ensure the sealing effect.

Benefits of technology

Without affecting the refrigerant pipes passing through the windows, it prevents indoor cold air from flowing out and outdoor cold air from entering, improves the thermal insulation effect and energy-saving performance of the windows, and reduces the difficulty of installation.

✦ Generated by Eureka AI based on patent content.

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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 is used for a window, the window comprises a window frame and a window leaf movably arranged on the window frame, the window sealing structure comprises a first sealing piece and a second sealing piece, the first sealing piece is used for being arranged on one of the window leaf and the window frame, and the second sealing piece is used for being arranged on the other of the window leaf and the window frame. The second sealing piece is used for being arranged on the other one of the window sash and the window frame. A pipe passing seam is formed between the window leaf and the window frame; the first sealing piece and the second sealing piece are both made of elastic materials. The first sealing piece and the second sealing piece wrap the refrigerant pipe and seal the pipe passing seam. According to the technical scheme provided by the utility model, cold air can be prevented from entering a room from the outside through the pipe seam to influence the heating effect of the air conditioner in the process of using the air conditioner in winter.
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Description

Technical Field

[0001] The utility model relates to the technical field of air conditioners, in particular to a window sealing structure and an air conditioner component. Background Art

[0002] During air conditioner installation, users may choose to open the window as wide as possible, or remove the window sash to maximize the window opening, allowing the outdoor unit to be transferred from the indoor space through the window and installed outdoors. In this case, a portion of the flexible refrigerant pipe will follow the outdoor unit through the window and extend outdoors, preventing the window sash from fully closing. This means that a gap must be left in the window to accommodate the flexible refrigerant pipe. In winter, cold air can enter the room through this gap, affecting the heating effect of the air conditioner. Utility Model Content

[0003] The main purpose of the utility model is to provide a window sealing structure and an air conditioner assembly, which is intended to seal the pipe gap between the window frame and the window leaf; so as to reduce the problem of window air leakage without affecting the refrigerant pipe passing through the window.

[0004] To achieve the above-mentioned purpose, the window sealing structure proposed in the present invention includes a first sealing plate and a second sealing plate, the first sealing plate is used to be arranged on one of the window leaf and the window frame, and the second sealing plate is used to be arranged on the other of the window leaf and the window frame; there is a pipe gap between the window leaf and the window frame; the first sealing plate and the second sealing plate are both made of elastic material; the first sealing plate and the second sealing plate cover the refrigerant pipe and seal the pipe gap.

[0005] In one embodiment, the first sealing piece is provided with a tube notch adapted to the outer contour of the refrigerant tube, the second sealing piece is provided on the window leaf, and the second sealing piece corresponds to the opening side of the tube notch and is used to abut the side of the refrigerant tube away from the bottom wall of the tube notch.

[0006] In one embodiment, avoidance steps are provided on both sides of the opening of the tube-passing notch, and both ends of the second sealing sheet are adapted to fill one of the avoidance steps.

[0007] In one embodiment, the first sealing sheet is provided with a notch mark for cutting, and the size of the notch mark is adapted to the outer contour size of the refrigerant tube.

[0008] In one embodiment, the refrigerant tube is squeezed by the first sealing sheet and the second sealing sheet, and a concave groove having an outer contour adapted to the refrigerant tube is formed on the first sealing sheet and the second sealing sheet.

[0009] In one embodiment, the first sealing sheet includes a first sealing layer and a second sealing layer, the first sealing layer is arranged on the window frame, and the second sealing layer is arranged on the first sealing layer. The second sealing layer and the second sealing sheet are both made of slow rebound material, and the rebound elasticity of the second sealing layer is greater than the rebound elasticity of the first sealing layer.

[0010] In one embodiment, the hardness of the first sealing layer is greater than the hardness of the second sealing layer;

[0011] In one embodiment, the first sealing layer and the second sealing layer are both made of weather-resistant materials.

[0012] In one embodiment, the density of the first sealing layer is less than the density of the second sealing layer.

[0013] In one embodiment, the first sealing layer and the second sealing layer are formed as one body; or the first sealing layer and the second sealing layer are bonded and fixed.

[0014] In one embodiment, the first sealing layer is polyvinyl chloride sponge or nitrile rubber foam sponge; the second sealing layer is EPDM rubber sponge.

[0015] In one embodiment, the thickness of the first sealing sheet ranges from 10 mm to 25 mm.

[0016] In one embodiment, the window sealing structure further includes a window lock structure, and the window lock structure includes:

[0017] a first locking member and a second locking member, wherein one of the first locking member and the second locking member is mounted on the window frame, and the other is mounted on the window leaf; and

[0018] The connecting member is detachably connected to the first locking member and the second locking member, and has a first state; in the first state, the connecting member restricts the movement of the window leaf relative to the window frame.

[0019] The present solution also provides an air conditioner assembly, comprising an indoor unit, an outdoor unit, and a flexible refrigerant pipe assembly connecting the indoor unit and the outdoor unit; and the window sealing structure as described above.

[0020] In one embodiment, the air conditioner further includes a compressor, and the compressor is built into the indoor unit.

[0021] In one embodiment, the indoor unit is provided with moving wheels.

[0022] In the technical solution of the present invention, a first sealing piece and a second sealing piece made of elastic material are respectively installed on the window frame and the window leaf. The first sealing piece and the second sealing piece abut against the deformation and rebound of the refrigerant pipe to close the gap between the window leaf and the window frame as much as possible. After installing the air conditioner equipment, the user can close the window leaf to a state where the pipe gap is smaller, and use the first sealing piece and the second sealing piece to block the pipe gap on the window. When used in summer, it can prevent indoor cold air from flowing out; when used in winter, it can also reduce the outdoor cold air from entering the room and affecting the heating effect of the air conditioner. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.

[0024] Figure 1 This is a schematic diagram of a hinged window structure in which the window leaf rotation axis is vertically arranged on the right side of the window frame. At this time, the window leaf rotates to a certain angle and forms a pipe gap.

[0025] Figure 2 This is a structural diagram of an embodiment of the window sealing structure of the present invention;

[0026] Figure 3 This is a structural diagram of another embodiment of the window sealing structure of the present invention;

[0027] Figure 4 This is a structural diagram of the window sealing structure from another perspective;

[0028] Figure 5 A schematic diagram of a window sealing structure for refrigerant pipes;

[0029] Figure 6 This is a structural schematic diagram of an embodiment of a window lock structure installed on a window.

[0030] Description of Figure Numbers:

[0031] 10. Window; 11. Window frame; 12. Window leaf; 13. Pipe seam;

[0032] 20. First sealing piece; 23. Pipe notch; 231. Avoidance step; 24. First sealing layer; 25. Second sealing layer;

[0033] 30. Second cover;

[0034] 40. Window lock structure; 41. First lock member; 42. Second lock member; 43. Connecting member;

[0035] 50. Refrigerant pipe.

[0036] The realization of the purpose, functional features and advantages of the present invention will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION

[0037] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0038] It should be noted that if the embodiments of the present invention involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indications will also change accordingly.

[0039] In this utility model, unless otherwise specified or limited, the terms "connection" and "fixation" should be understood in a broad sense. For example, "fixation" can mean fixed connection, detachable connection, or integration; mechanical connection or electrical connection; direct connection or indirect connection through an intermediate medium; internal communication between two elements or interaction between two elements, unless otherwise specified. For those skilled in the art, the specific meanings of the above terms in this utility model can be understood according to specific circumstances.

[0040] In addition, if there are descriptions involving "first", "second", etc. in the embodiments of the present invention, the descriptions of "first", "second", etc. are only for descriptive purposes and cannot be understood as indicating or suggesting their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of such features. In addition, the meaning of "and / or" appearing throughout the text includes three parallel schemes. Taking "A and / or B" as an example, it includes scheme A, or scheme B, or a scheme in which A and B are satisfied at the same time. In addition, the technical solutions between the various embodiments can be combined with each other, but it must be based on the ability of ordinary technicians in this field to implement. When the combination of technical solutions is mutually contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by the present invention.

[0041] During air conditioner installation, users may choose to open the window as wide as possible, or remove the window sash to maximize the window opening, allowing the outdoor unit to be transferred from the indoor space through the window and installed outdoors. In this case, a portion of the refrigerant pipe will extend through the window, following the outdoor unit and extending outdoors, preventing the window sash from fully closing. This means that a gap must be left in the window to accommodate the flexible refrigerant pipe. In winter, cold air can enter the room through this gap, affecting the heating effect of the air conditioner.

[0042] In view of this, the utility model proposes a window sealing structure to seal the pipe gap between the window frame and the window leaf, thereby improving the problem of window air leakage without affecting the refrigerant pipe passing through the window.

[0043] During air conditioner installation, users can choose to open the window as wide as possible, or remove the window slats to maximize the window size, allowing them to pass the outdoor unit from the indoor space through the window and install it outdoors. In this case, a portion of the flexible refrigerant pipe will extend through the window with the outdoor unit and out to the outdoors, preventing the window slats from closing completely. This means that a certain gap must be left in the window to accommodate the flexible refrigerant pipe.

[0044] Specifically, the present application scheme can be applied to windows of various opening forms, including but not limited to flip windows, sliding windows, folding windows or folding-wing windows, etc., wherein the window leaf rotation axis of the flip window can be horizontally extended and arranged on the upper or lower side of the window frame, or vertically extended and arranged on the left or right side of the window frame.

[0045] Please refer to Figure 1 , Figure 1 The window 10 in the figure is a flip window structure in which the rotation axis of the window leaf 12 is vertically arranged on the right side of the window frame 11, and there is a pipe seam 13 with three sides of the slit between the window leaf 12 and the window frame 11. Figures 2 to 4 The first sealing piece 20 is arranged on the window frame 11, and the second sealing piece 30 is arranged on the window page 12; the first sealing piece 20 and the second sealing piece 30 can block the three-side openings formed after the flip window is opened, and the first sealing piece 20 and the second sealing piece 30 are both made of elastic material.

[0046] Reference Figures 2 to 4 In one embodiment, a pipe notch 23 is provided on the first sealing piece 20 or the second sealing piece 30, and the refrigerant pipe 50 passes through the pipe notch 23. The first sealing piece 20 and the second sealing piece 30 cover the refrigerant pipe 50 and seal the pipe gap 13 to prevent the refrigerant from flowing due to the temperature difference between indoor and outdoor, thereby affecting the cooling or heating effect.

[0047] Specifically, the first sealing piece 20 is provided with a pipe notch 23 adapted to the outer contour of the refrigerant pipe 50, and the second sealing piece 30 is provided on the window leaf 12, and the second sealing piece 30 corresponds to the opening side of the pipe notch 23 and is used to abut the side of the refrigerant pipe 50 away from the bottom wall of the pipe notch 23.

[0048] In addition, refer to Figure 4 The first sealing piece 20 surrounds the entire window frame 11. The second sealing piece 30 can be provided in a corresponding manner or separately at the location where the refrigerant pipe 50 passes through. Its length is greater than the diameter of the refrigerant pipe. In one embodiment, the opening of the pipe notch 23 is provided with a relief step 231 on both sides. Each end of the second sealing piece 30 is adapted to fill a relief step 231.

[0049] Reference Figure 3 and Figure 5 In another embodiment, the first sealing sheet 20 is provided with a notch mark for cutting, and the size of the notch mark is adapted to the outer contour size of the refrigerant tube 50; the user can cut out the notch during use, and bend the cut part to abut against the refrigerant tube 50 for better sealing; if the height of the refrigerant tube 50 needs to be adjusted later, the cut part can be bent back without affecting subsequent use.

[0050] In other embodiments, the first sealing sheet 20 and the second sealing sheet 30 are made of an elastic material, and utilize their rebound properties to compress the refrigerant tube 50 to deform, and then seal the gap around the refrigerant tube 50 during the subsequent rebound process to achieve a sealing effect. Specifically, the first sealing sheet 20 and the second sealing sheet 30 compress the refrigerant tube 50, and a recessed groove is formed on the first sealing sheet 20 and the second sealing sheet 30 to fit the outer contour of the refrigerant tube 50.

[0051] It can be understood that in the scenario of a sliding window, since the sliding window forms a single-sided slit after the window leaf 12 is opened, and the pipe slit 13 has a regular shape, the first sealing piece 20 and the second sealing piece 30 of the present application scheme can also be set to a simple straight plate structure, which can well seal the pipe slit 13 and at the same time allow the refrigerant pipe 50 to extend from the indoor space to the outdoor space.

[0052] Reference Figure 2 and Figure 4Specifically, to improve the thermal insulation effect, the first sealing sheet 20 includes a first sealing layer 24 and a second sealing layer 25. The first sealing layer 24 is provided on the window frame 11, and the second sealing layer 25 is provided on the first sealing layer 24. Both the second sealing layer 25 and the second sealing sheet 30 are made of a slow-rebound material, and the resilience of the second sealing layer 25 is greater than that of the first sealing layer 24. On the one hand, the double-layered sealing sheet can prevent cold air or hot air from escaping through the gap between the window leaf 12 and the window frame 11, thereby improving the thermal insulation effect and energy-saving performance of the window 10. On the other hand, the two layers have different hardnesses. Specifically, the first sealing layer 24 has a higher hardness and uses a harder material. When placed horizontally or vertically, it will not be severely deformed by gravity, thereby providing a better sealing effect. The second sealing layer 25 has a lower hardness and uses a softer material to facilitate installation and adapt to window frames 11 or window leaves 12 of different shapes. The other side of the second sealing layer 25 abuts against the window leaf 12 or the window frame 11 to form a seal, and the refrigerant tube 50 part abuts against the second sealing sheet 30 to prevent air flow around the refrigerant tube 50 .

[0053] To ensure that the first sealing sheet 20 and the second sealing sheet 30 can effectively seal the pipe gap 13, the second sealing layer 25 and the second sealing sheet 30 are both made of a slow-rebound material, and the resilience of the second sealing layer 25 is greater than that of the first sealing layer 24. Thus, the second sealing layer 25 and the second sealing sheet 30 are both slow-rebound and can be recessed to form the outer contour of the flexible refrigerant tube 50, thereby effectively sealing the pipe gap 13.

[0054] In addition, in order to improve the service life of the first sealing sheet 20, the first sealing layer 24 and the second sealing layer 25 are both made of weather-resistant materials; thus, under different natural environmental conditions, such as temperature, humidity, ultraviolet rays, wind, rain, hail and other harsh weather conditions, they can maintain their original performance and appearance without being affected.

[0055] In addition, in order to reduce the air leakage problem caused by the pores of the first sealing layer 24 and the second sealing layer 25, for example, when the first sealing layer 24 uses a sponge with large pores, by setting the density of the first sealing layer 24 to be lower than the density of the second sealing layer 25, the second sealing layer 25 can prevent air from penetrating through the sealing sheet.

[0056] In this embodiment, the second sealing sheet 30 is made of the same material as the second sealing layer 25 ; in other embodiments, the material may be replaced as needed.

[0057] In order to facilitate the installation of the flexible refrigerant pipe 50 and to ensure the sealing of the pipe gap 13, so as to prevent the cold air outside from blowing into the room and affecting the indoor heating effect, in one embodiment, the second sealing layer 25 is provided with a pipe gap 23 adapted to the outer contour of the refrigerant pipe 50; in this embodiment, the first sealing layer 24 can be a hard plate, such as plastic, steel sheet, etc.; the second sealing layer 25 is set to rubber or silicone material; the pipe gap 23 is set on the second sealing layer 25 according to the outer contour of the flexible refrigerant pipe 50. During installation, the flexible refrigerant pipe 50 is inserted into the pipe gap 23, so that the window leaf 12 abuts the second sealing layer 25 to achieve the sealing of the pipe gap 13. Specifically, the pipe gap 23 is rectangular, and the inner corner of the pipe gap 23 is an arc-shaped transition, so that there is no gap in the pipe gap 13, which has a better sealing effect.

[0058] In another embodiment, the tube notch 23 is formed by cutting the first sealing sheet 20 , for example, by cutting and bending the first sealing sheet 20 according to the diameter of the refrigerant tube 50 .

[0059] In one embodiment, the first sealing layer 24 and the second sealing layer 25 of the sealing sheet are formed as one body; in other embodiments, the first sealing layer 24 and the second sealing layer 25 are bonded and fixed, for example, by glue.

[0060] In one embodiment, when the first sealing layer 24 and the second sealing layer 25 are made of materials with different resilience properties, the adhesive between the first sealing layer 24 and the second sealing layer 25 can be removed, and the refrigerant tube 50 and the sealing sheet can be squeezed through the window leaf 12. A recessed groove that fits the outer contour of the refrigerant tube 50 is formed in the second sealing layer 25 or in the second sealing layer 25 and the first sealing layer 24. The second sealing layer 25 covers the outer contour of the flexible refrigerant tube 50, thereby effectively sealing the tube gap 13. In this embodiment, the first sealing layer 24 and the second sealing layer 25 are made of sponges with different densities.

[0061] To ensure the sealing effect of the first sealing sheet 20, the thickness of the first sealing sheet 20 ranges from 10 mm to 25 mm, for example, 12 mm, 13 mm, 14 mm, 15 mm, 16 mm, 17 mm, etc. The thickness range of the first sealing sheet 20 is the same as that of the first sealing sheet 20, so that the material of the first sealing sheet 20 can be used to simultaneously manufacture the second sealing sheet 30 during the manufacture of the first sealing sheet 20, thereby saving manufacturing costs.

[0062] In some embodiments, the first sealing layer 24 and the second sealing layer 25 are made of insulating sponge. In this way, the first sealing sheet 20 not only seals the air but also provides heat insulation, preventing the indoor air from exchanging heat with the outdoor air passing through the pipe seam 13. This reduces indoor temperature fluctuations and saves energy. Of course, in other embodiments, the first sealing sheet 20 can also be made of other materials with good thermal insulation properties, which is not specifically limited in this application.

[0063] Specifically, the first sealing layer 24 is made of polyvinyl chloride sponge or nitrile rubber foam sponge, while the second sealing layer 25 is made of EPDM sponge. The first sealing layer 24 is made of PVC sponge, while the second sealing layer 25 is made of NBR sponge or EPDM sponge. This ensures that the first sealing layer 24 is harder than the second sealing layer 25, while also ensuring that the second sealing layer 25 has a higher resilience than the first sealing layer 24, thereby sealing the gaps around the outer periphery of the flexible refrigerant pipe 50.

[0064] Reference Figures 2 to 4 Specifically, the first and second sealing sheets 20, 30 can be attached to the window frame 11 and window leaf 12 in a variety of ways. For example, in some embodiments, the window sealing structure further includes Velcro. Using Velcro to secure the first and second sealing sheets 20, 30 not only simplifies the structure and facilitates assembly and disassembly, but also provides a long service life. Even if the old Velcro becomes ineffective, it can be easily replaced with a new one. Of course, in other embodiments, the first and second sealing sheets 20, 30 can also be detachably connected using other structures, including but not limited to snap fasteners, male-female buckles (also known as male-female buckles or flip-up buckles), and the like.

[0065] Reference Figure 6 In order to ensure the sealing of the pipe gap 13, the window sealing structure also includes a window lock structure 40, which includes a first lock member 41, a second lock member 42 and a connecting member 43. One of the first lock member 41 and the second lock member 42 is installed on the window frame 11, and the other is installed on the window leaf 12; the connecting member 43 is detachably connected to the first lock member 41 and the second lock member 42, and has a first state; in the first state, the connecting member 43 restricts the movement of the window leaf 12 relative to the window frame 11.

[0066] By installing the first locking member 41 and the second locking member 42 on the window frame 11 and the window leaf 12 respectively, and connecting the first locking member 41 and the second locking member 42 by using the connecting member 43, a new restraining means can be constructed between the window leaf 12 and the window frame 11, and the freedom of movement of the window leaf 12 on the window frame 11 is restrained, thereby limiting the opening of the pipe seam 13, so as to prevent the window leaf 12 from being completely blown open without being restrained by the original locking mechanism, thereby affecting the sealing effect of the sealing piece.

[0067] Specifically, in the first state, the connector 43 tightens the window leaf 12 and the window frame 11, so that the window leaf 12 and the window frame 11 always abut against the sealing plate, ensuring the sealing effect. Of course, when it is necessary to open the window leaf 12 to a larger angle and increase the pipe gap 13, the connector 43 can be loosened. That is, when the connector 43 is in the second state, the window leaf 12 can be opened normally.

[0068] In this way, the user can flexibly adjust the size of the pipe gap 13 of the window 10 according to different needs.

[0069] The present invention also provides an air conditioner assembly comprising an air conditioner and the aforementioned window sealing structure. The specific structure of the window sealing structure is similar to that of the aforementioned embodiments. Since the present air conditioner assembly utilizes all of the technical solutions of all of the aforementioned embodiments, it at least possesses all of the beneficial effects brought about by the technical solutions of the aforementioned embodiments, which will not be detailed here. The refrigerant pipe 50 of the air conditioner can pass through the window sealing structure.

[0070] To facilitate user-friendly installation, split-type air conditioners use a flexible refrigerant pipe 50 to connect the indoor heat exchanger of the indoor unit and the outdoor heat exchanger of the outdoor unit. Refrigerant is injected into the refrigerant circuit before the unit leaves the factory. This allows users to install the unit themselves by simply securing the indoor and outdoor units separately, eliminating the need to assemble the refrigerant pipe 50 and inject refrigerant. This reduces installation effort and facilitates user-friendly installation. Furthermore, placing the compressor in the indoor unit reduces the weight of the outdoor unit, making it easier for users to move the unit to a suitable location. This reduces installation complexity and labor costs, especially in regions where labor costs are high.

[0071] The above description is merely an optional embodiment of the present invention and does not limit the patent scope of the present invention. All equivalent structural transformations made by utilizing the contents of the present invention specification and drawings under the inventive concept of the present invention, or direct / indirect application in other related technical fields are included in the patent protection scope of the present invention.

Claims

1. A window sealing structure for a window, wherein the window comprises a window frame and a window leaf movably mounted on the window frame, characterized in that: The window sealing structure comprises: A first sealing sheet and a second sealing sheet, the first sealing sheet being arranged on one of the window leaf and the window frame, and the second sealing sheet being arranged on the other of the window leaf and the window frame; a pipe gap being provided between the window leaf and the window frame, and a refrigerant pipe being passed through the pipe gap; the first sealing sheet and the second sealing sheet being made of elastic material; The first sealing sheet and the second sealing sheet cover the refrigerant pipe and seal the pipe seam.

2. The window sealing structure according to claim 1, wherein: The first sealing piece is provided with a pipe notch adapted to the outer contour of the refrigerant pipe, and the second sealing piece is provided on the window leaf, and the second sealing piece corresponds to the opening side of the pipe notch and is used to abut the side of the refrigerant pipe away from the bottom wall of the pipe notch.

3. The window sealing structure according to claim 2, wherein: Both sides of the opening of the tube notch are provided with avoidance steps, and both ends of the second sealing piece are adapted to fill one of the avoidance steps.

4. The window sealing structure according to claim 1, wherein: The first sealing sheet is provided with a notch mark for cutting, and the size of the notch mark is adapted to the outer contour size of the refrigerant tube; Alternatively, the refrigerant tube is squeezed by the first sealing sheet and the second sealing sheet, and a concave groove having an outer contour adapted to the refrigerant tube is formed on the first sealing sheet and the second sealing sheet.

5. The window sealing structure according to claim 1, wherein: The first sealing sheet includes a first sealing layer and a second sealing layer. The first sealing layer is arranged on the window frame, and the second sealing layer is arranged on the first sealing layer. Both the second sealing layer and the second sealing sheet are made of slow-rebound material, and the resilience of the second sealing layer is greater than that of the first sealing layer.

6. The window sealing structure according to claim 5, wherein: The hardness of the first sealing layer is greater than the hardness of the second sealing layer; And / or, the first sealing layer and the second sealing layer are both made of weather-resistant materials; And / or, the density of the first sealing layer is less than the density of the second sealing layer.

7. The window sealing structure according to claim 5, wherein: The first sealing layer and the second sealing layer are formed as one body; or the first sealing layer and the second sealing layer are bonded and fixed.

8. The window sealing structure according to claim 5, wherein: The first sealing layer is polyvinyl chloride sponge or nitrile rubber foam sponge; the second sealing layer is EPDM rubber sponge.

9. The window sealing structure according to claim 1, wherein: The thickness of the first sealing sheet ranges from 10 mm to 25 mm.

10. The window sealing structure according to claim 1, wherein: The window sealing structure further includes a window lock structure, which includes: a first locking member and a second locking member, wherein one of the first locking member and the second locking member is mounted on the window frame, and the other is mounted on the window leaf; and The connecting member is detachably connected to the first locking member and the second locking member, and has a first state; in the first state, the connecting member restricts the movement of the window leaf relative to the window frame.

11. An air conditioner assembly, characterized in that: It comprises an indoor unit, an outdoor unit and a flexible refrigerant pipe assembly connecting the indoor unit and the outdoor unit; and a window sealing structure according to any one of claims 1 to 10.

12. The air conditioner assembly according to claim 11, wherein: The air conditioner further includes a compressor, which is built into the indoor unit; and / or the indoor unit is provided with moving wheels.