Window kit for air conditioner

The window kit for air conditioners adjusts to fit different window sizes and securely attaches the exhaust guide means, preventing air leakage and ensuring easy installation without damaging the window.

WO2026029266A1PCT designated stage Publication Date: 2026-02-05LG ELECTRONICS INC
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Patent Information

Application Number
PCT/KR2024/015558
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-08-02
Filing Date
2024-10-15
Publication Date
2026-02-05

AI Technical Summary

Technical Problem

Existing window kits for mobile air conditioners fail to stably fix the exhaust guide means to swing-type windows, are not adjustable for various window sizes, allow re-introduction of outdoor air into the room, and can damage the window assembly during installation.

Method used

A window kit comprising a base member and side member that can be adjusted in shape and size, with flexible components and cover members to securely attach the exhaust guide means to a casement window without damaging it, minimizing gaps to prevent air leakage.

Benefits of technology

The kit provides stable fixation of the exhaust guide means, adjusts to various window sizes, prevents air recirculation, and ensures easy installation without damaging the window assembly.

✦ Generated by Eureka AI based on patent content.

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Abstract

A window kit for an air conditioner is provided. The window kit for an air conditioner, according to one embodiment, comprises: a base member which is mounted on a window frame to which a casement window is attached, is coupled to an exhaust guide extending from an exhaust port of a movable air conditioner, is installed between a rotating end of the casement window and the window frame, and includes an insertion hole into which a nozzle of the exhaust guide is inserted; and a side member which is mounted between the window frame and a side end intersecting the rotating end of the casement window, wherein at least one end of the base member is partially fitted into the side member.
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Description

Window kit for air conditioner

[0001] The present invention relates to a window kit for an air conditioner capable of fixing an exhaust guide means of a portable air conditioner to a window.

[0002] In general, an air conditioner is a cooling / heating system that cools or heats a room by repeatedly sucking in indoor air, exchanging heat with low-temperature or high-temperature refrigerant, and then discharging it into the room. It consists of a series of cycles consisting of a compressor, outdoor heat exchanger, expansion valve, and evaporator.

[0003] Air conditioners are largely composed of a separate air conditioner in which the indoor and outdoor units are separated, and an integrated air conditioner in which the indoor and outdoor units are combined.

[0004] The above-mentioned split-type air conditioner is mainly composed of an outdoor unit (also called the 'outdoor side' or 'radiation side') installed outdoors and an indoor unit (also called the 'indoor side' or 'heat absorption side') installed mainly inside a building. An outdoor heat exchanger and a compressor are installed in the outdoor unit, and an evaporator is installed in the indoor unit.

[0005] The above integrated air conditioner is a combined indoor and outdoor unit, and the indoor heat exchanger and outdoor heat exchanger are provided in one body, so that the entire air conditioner configuration is installed in one body.

[0006] The above-mentioned integrated air conditioner can be classified into a fixed air conditioner that is fixedly installed on a window, etc., and a mobile air conditioner that can move the main body to a required space and discharges heat-exchanged air to the outside through an exhaust guide means.

[0007] Among these, the mobile air conditioner may be configured such that an exhaust guide means is fixed to a window to discharge heat-exchanged air to the outside. A window kit for fixing the exhaust guide means of the mobile air conditioner may be provided on the window.

[0008] An embodiment of the present invention aims to provide a window kit that can stably fix an exhaust guide means of a mobile air conditioner to a swing-type window assembly.

[0009] An embodiment of the present invention is a window kit for fixing an exhaust guide means of a mobile air conditioner, and aims to provide a window kit whose shape and size can be adjusted so that it can be universally installed in window assemblies of various sizes.

[0010] An embodiment of the present invention aims to provide a window kit that can prevent air discharged to the outside through an exhaust guide means from being re-introduced into a room or cold air inside a room from being leaked out to the outside by minimizing an open area in a window assembly to which an exhaust guide means of a mobile air conditioner is fixed.

[0011] An embodiment of the present invention aims to provide a window kit that can be easily installed in a window assembly as a window kit for fixing an exhaust guide means of a mobile air conditioner.

[0012] An embodiment of the present invention aims to provide a window kit for fixing an exhaust guide means of a mobile air conditioner, which can be fixed without damaging a window assembly.

[0013] According to one embodiment of the present invention for solving the above problem, a window kit of an air conditioner comprises: a base member which is mounted on a window frame to which a casement window is connected, is coupled with an exhaust guide means extended from an exhaust port of a portable air conditioner, is mounted between a rotational end of the casement window and the window frame, and includes an insertion hole into which a nozzle of the exhaust guide means is inserted; and a side member which is mounted between a side end intersecting the rotational end of the casement window and the window frame, wherein at least one end of the base member is partially inserted and mounted in the side member.

[0014] The above base member may be configured to have a variable length, including a plurality of panels that are connected to each other so as to be retractable.

[0015] The side member may include a front portion disposed on one side of the window frame, a side portion formed by bending from the front portion and disposed between the window frame and the side end portion, and a connecting portion formed on one side of the side portion and having a connecting groove into which the one end of the base member is inserted.

[0016] The one end of the base member can be inserted into the joining groove and fixed to the joining portion through a fastening member.

[0017] The above-mentioned connecting portion is formed at the other end of the side portion, and one end of the front portion may be formed to protrude to one side more than one end of the side portion.

[0018] The side member is configured to have a variable shape, including a plurality of separable unit members, and the unit members may include a plurality of first unit front parts included in the front part, and a plurality of unit side parts included in the side part.

[0019] The side member may include a cut portion arranged between each unit member for separation of the unit member, wherein the cut portion may include a first cut line formed on the front portion and arranged between the plurality of first unit front portions, a second cut line formed on the side portion and arranged between the plurality of unit side portions, and a third cut line formed between the front portion and the side portion and connecting the first cut line and the second cut line.

[0020] The above first cutting line may be formed as an open hole structure, and the above second cutting line may be formed as a sunken groove structure.

[0021] On the front surface, a fourth cutting line intersecting the first cutting line is formed, and the first unit front surface may include a second unit front surface configured to be separable by the fourth cutting line.

[0022] The window frame includes a first frame portion, on which the base member is mounted, extending in one direction; a second frame portion, extending in a direction intersecting the first frame portion, on which the side member is mounted; and the side member may be configured to have a shape that varies depending on the size of the second frame portion, including a plurality of detachable unit members.

[0023] The unit member may include a unit front portion arranged on one side of the window frame, and a unit side portion formed by bending from the unit front portion and arranged between the window frame and the side end portion.

[0024] The above window frame further includes a third frame portion that extends in a direction intersecting the second frame portion and is positioned opposite the first frame portion, wherein one end of the front side of the unit may be positioned to protrude further toward the third frame portion than one end of the side side of the unit.

[0025] The window frame further includes a third frame portion that extends in a direction intersecting the second frame portion and is positioned on the opposite side of the first frame portion, wherein the side member includes a front portion that is positioned on one surface of the window frame, and a side portion that is formed by bending from the front portion and is positioned between the window frame and the side end portion, wherein one end portion of the front portion may be positioned to protrude further toward the third frame portion than one end portion of the side portion.

[0026] It may further include a first cover member covering between one end of the base member and the first frame portion; and a second cover member covering between the other end of the base member and the rotation end.

[0027] The first cover member may include a first coupling portion coupled to one end of the base member, a second coupling portion coupled to the first frame portion, and a first cover portion disposed between the first coupling portion and the second coupling portion and formed of a flexible material.

[0028] The second cover member may include a third coupling part coupled to the other end of the base member, a fourth coupling part coupled to the rotating end, and a second cover part disposed between the third coupling part and the fourth coupling part and formed of a flexible material.

[0029] The following effects can be expected from the window kit of the air conditioner according to the proposed embodiment.

[0030] According to the window kit of the air conditioner according to an embodiment of the present invention, the exhaust guide means can be stably fixed to the swing window through a structure that directly fixes the window kit to the window assembly.

[0031] The window kit of the air conditioner according to the embodiment of the present invention is configured to be adjustable in shape and size, so that it can be universally installed in window assemblies of various sizes.

[0032] According to the window kit of the air conditioner according to an embodiment of the present invention, by minimizing the open area in the window assembly of the swing type, it is possible to prevent air discharged to the outside through the exhaust guide means from being re-introduced into the room or cold air inside the room from being discharged to the outside.

[0033] According to the window kit of the air conditioner according to an embodiment of the present invention, the fixing means for fixing the window kit to the window is located in a place where it can be easily fixed indoors, so that the window kit can be easily fixed to the window assembly.

[0034] According to the window kit of the air conditioner according to an embodiment of the present invention, the window assembly can be fixed without being damaged, thereby preventing the appearance of the window assembly from being deteriorated.

[0035] FIG. 1 is a perspective view of a window kit of an air conditioner according to one embodiment equipped with an exhaust guide means of a mobile air conditioner.

[0036] Figure 2 is a perspective view of a window kit of an air conditioner according to one embodiment.

[0037] Figure 3 is an exploded perspective view of a window kit of an air conditioner according to one embodiment.

[0038] Figure 4 is an enlarged view of area A of Figure 2.

[0039] FIG. 5 is a perspective view of a side member of a window kit of an air conditioner according to one embodiment.

[0040] Figures 6 and 7 are perspective views showing a structure in which at least a portion of the side member is partially separated.

[0041] Figure 8 is a schematic drawing showing an enlarged view of the rear surface of the side member.

[0042] Figure 9 is a side view of the side member.

[0043] Figure 10 is a cross-sectional view taken along line 10-10 of Figure 9.

[0044] Figure 11 is a cross-sectional view taken along line 11-11 of Figure 9.

[0045] Figure 12 is a front view of the side member.

[0046] Figure 13 is a cross-sectional view taken along line 13-13 of Figure 12.

[0047] Figure 14 is a cross-sectional view taken along line 14-14 of Figure 1.

[0048] Figure 15 is a schematic diagram showing area B of Figure 14.

[0049] Figure 16 is a schematic diagram showing area C of Figure 14.

[0050] Figure 17 is a cross-sectional view taken along line 17-17 of Figure 1.

[0051] Figure 18 is a perspective view of a window assembly according to another embodiment.

[0052] Fig. 19 is a rear perspective view of a side member according to another embodiment.

[0053] Hereinafter, specific embodiments of the present invention will be described in detail, with reference to the drawings. However, the present invention is not limited to the embodiments that present the spirit of the present invention, and other regressive inventions or embodiments within the scope of the present invention can be easily proposed by adding, modifying, or deleting other components.

[0054] Fig. 1 is a perspective view of a window kit of an air conditioner according to one embodiment equipped with an exhaust guide means of a portable air conditioner. Fig. 2 is a perspective view of a window kit of an air conditioner according to one embodiment. Fig. 3 is an exploded perspective view of a window kit of an air conditioner according to one embodiment. Fig. 4 is an enlarged view of area A of Fig. 2.

[0055] Referring to FIGS. 1 to 4, an air conditioner (1) according to one embodiment may include a main body (11) and an exhaust guide means (12) configured to discharge air heat-exchanged from the main body (11) to the outside (particularly, outdoors).

[0056] As illustrated, the air conditioner (1) according to one embodiment is an integrated air conditioner in which an indoor unit and an outdoor unit are combined, and the indoor heat exchanger and the outdoor heat exchanger may be provided in one main body (11).

[0057] The main body (11) of the air conditioner (1) according to one embodiment may be configured to be movable to a required space. That is, the air conditioner (1) according to one embodiment may be a mobile air conditioner that discharges heat-exchanged air to the outside through an exhaust guide means (12). The exhaust guide means (12) of the mobile air conditioner (1) may be fixed to a window assembly (2) for stable air discharge, and configured to discharge heat-exchanged air to the outside.

[0058] Components forming a refrigeration cycle may be built into the main body (11). For example, a heat exchanger that functions as an evaporator and a condenser, a compressor, an expansion device, and a fan motor for air flow may be built into the main body (11). Although not shown, an intake port for sucking indoor air and an exhaust port for discharging heat-exchanged air into the room may be formed in the main body (11). In addition, an exhaust port for discharging air to the outdoors may be formed in the main body (11), and an exhaust guide means (12) may be mounted in the exhaust port.

[0059] Air in an indoor space where the main body (11) is placed can be sucked in through the intake port, heat-exchanged by a heat exchanger inside the main body (11), and then discharged into the indoor space through the discharge port. Other air that has passed through the heat exchanger and exchanged heat can pass through the exhaust port and be discharged into the outdoor space by the exhaust guide means (12). The mobile air conditioner (1) can cool or heat an indoor space through this operation.

[0060] The exhaust guide means (12) can guide the flow of air exhausted from the main body (11) by connecting the exhaust port of the main body (11) and the window kit (3) installed on the window frame (21). For example, the exhaust guide means (12) can include an exhaust pipe (121) forming an air flow path, a nozzle (122) disposed at an end of the exhaust pipe (121) and mounted on the window kit (3), and a main body connector (123) connecting the exhaust pipe (121) and the main body (11).

[0061] The exhaust pipe (121) may have a hollow tube shape inside. The exhaust pipe (121) may be flexible enough to bend depending on the position and height of the window assembly (2) to which the exhaust guide means (12) is connected. For example, the exhaust pipe (121) may be formed of a flexible plastic that is extendable in length. As illustrated in FIG. 1, the exhaust pipe (121) may be configured so that its inside maintains a circular shape even when bent.

[0062] The nozzle (122) can be mounted on the window kit (3). For example, the nozzle (122) can be mounted on the base member (100) described below. The nozzle (122) can be placed at one end of the exhaust pipe (121). The nozzle (122) can discharge air discharged from the main body (11). That is, the nozzle (122) fixes the exhaust guide means (12) to the window kit (3), so that the discharged air can be completely discharged to the outside. For example, the nozzle (122) can be formed of a plastic material.

[0063] A body connector (123) may be provided between the body (11) and the exhaust pipe (121). The body connector (123) may be configured so that the other end of the exhaust pipe (121) is mounted on the body (11).

[0064] A window kit (3) of an air conditioner according to one embodiment may be provided to secure an exhaust guide means (12) to a window assembly (2). For example, a nozzle (122) of an exhaust guide means (12) may be mounted on the window kit (3) of the air conditioner.

[0065] The window assembly (2) may be formed in a casement structure. The window assembly (2) may include a window frame (21) formed to be opened and a window (22) rotatably connected to the window frame (21) in a casement manner. For example, the window (22) may be configured to open and close the opening of the window frame (21) by rotating around a rotation axis connected to the window frame (21). Although FIG. 1 illustrates a window (22) that rotates toward the outside with respect to the window frame (21), the present invention is not limited thereto, and the window (22) may be configured to rotate toward the inside with respect to the window frame (21).

[0066] The window (22) may be configured to open and close the opening of the window frame (21) by rotating. For example, the window (22) may include a fixed end (22a) arranged on the side of the rotation axis, a rotation end (22b) located opposite the fixed end (22a) and moving along an arcuate trajectory when the window (22) is opened and closed, and a side end (22c) connecting the fixed end (22a) and the rotation end (22b). Here, the fixed end (22a) may constitute the rotation axis of the window (22), but is not limited thereto, and the fixed end (22a) may be arranged adjacent to the rotation axis of the window (22).

[0067] The window frame (21) may include a first frame portion (21a) corresponding to the fixed end portion (22a), a second frame portion (21b) corresponding to the rotation end portion (22b), and a third frame portion (21c) corresponding to the side end portion (22c). When the window (22) is closed, the first frame portion (21a) may be arranged to face the fixed end portion (22a), the second frame portion (21b) may be arranged to face the rotation end portion (22b), and the third frame portion (21c) may be arranged to face the side end portion (22c). The first frame portion (21a), the second frame portion (21b), and the third frame portion (21c) may define an opening of the window frame (21).

[0068] A base member (100) described later can be coupled between the second frame portion (21b) and the rotation end portion (22b). A side member (200, 300) described later can be fixed between the third frame portion (21c) and the side end portion (22c). The base member (100) and the side members (200, 300) can shield the space between the window frame (21) and the window (22) formed when the window (22) is opened.

[0069] The second frame portion (21b) may have a first length (L1), and the third frame portion (21c) may have a second length (L2). In one embodiment, the window kit (3) of the air conditioner may be configured to be structurally changeable when the sizes of the second frame portion (21b) and the third frame portion (21c) are changed.

[0070] The window assembly (2) may further include an opening member (23) configured to open and close the window (22) relative to the window frame (21). For example, the opening member (23) may be coupled to the third frame portion (21c). The opening member (23) may adjust the opening angle of the window (22) by rotation.

[0071] In this specification, the structure of a window (22) in which the first frame portion (21a) corresponding to the fixed end portion (22a) constitutes the right end of the window frame (21) and the rotating end portion (22b) opens and closes to the outside has been described as a reference, but the embodiments of the present invention are not limited thereto and can be applied to windows (22) having other types of opening and closing structures. For example, the embodiments of the present invention can be applied to a window assembly (2) having a opening and closing structure in which the window (22) rotates around the upper or lower end of the window frame (21). In addition, the embodiments of the present invention can be applied to a structure of a window assembly (2) in which the window (22) opens and closes to the inside.

[0072] A window kit (3) of an air conditioner according to one embodiment may include a base member (100) disposed between a second frame member (21b) and a rotation end member (22b), a side member (200, 300) disposed between a third frame member (21c) and a side end member (22c), and a cover member (400) that shields a gap formed between the respective components.

[0073] The base member (100) is fixed to the window frame (21) and the window (22) and can be connected to the exhaust guide means (12). For example, one end of the base member (100) can be connected to the second frame part (21b), and the other end can be connected to the rotating end (22b) of the window (22).

[0074] The base member (100) may include a plurality of panels (110, 120, 130). For example, the base member (100) may include a first panel (110) to which the exhaust guide means (12) is connected, a second panel (120) connected to the first panel (110) and slidably inserted and removed in the longitudinal direction of the first panel (110), and a third panel (130) connected to the second panel (120) and slidably inserted and removed in the longitudinal direction of the second panel (120). The base member (100) may be configured to have a variable length through the above structure. The length of the base member (100) may be variable depending on the first length (L1) of the second frame portion (21b).

[0075] An insertion hole (110a) into which a nozzle (122) is inserted may be formed in the first panel (110). The insertion hole (110a) may be configured to allow the nozzle (122) to pass through. For example, one end and the other end of the first panel (110) may be formed to be bent so that the second panel (120) can slide.

[0076] The side members (200, 300) can be connected to one end and the other end of the base member (100). The side members (200, 300) can shield a space formed between the third frame member (21c) and the side end (22c). One end of the side members (200, 300) can be connected to the third frame member (21c), and the other end can be connected to the side end (22c) of the window (22).

[0077] The side members (200, 300) may include a first side member (200) coupled to one end of the base member (100) and a second side member (300) coupled to the other end. The first side member (200) and the second side member (300) may have a symmetrical structure with respect to each other. For example, the first side member (200) may be coupled to the third panel (130) of the base member (100), and the second side member (300) may be coupled to the first panel (110) of the base member (100).

[0078] The first side member (200) may include a front portion (210), a side portion (220) bent from the front portion (210), and a connecting portion (230) formed at the lower end of the side portion (220).

[0079] The front portion (210) may be positioned on the third frame portion (21c). The front portion (210) may have a structure extending in the extension direction of the third frame portion (21c). For example, the front portion (210) may be positioned on the front surface of a rib formed on the third frame portion (21c). The front portion (210) may be formed to be partially detachable.

[0080] The side portion (220) can shield the space formed between the third frame portion (21c) and the side end portion (22c). The side portion (220) can have a shape corresponding to the area between the third frame portion (21c) and the side end portion (22c). For example, the side portion (220) can have a right-angled triangle shape. The side portion (220) can be formed to be partially separable.

[0081] The coupling portion (230) may be formed on one surface of the side portion (220). For example, the coupling portion (230) may be formed at the lower end of the side portion (220) adjacent to the base member (100). One end of the base member (100) may be coupled to the coupling portion (230). The coupling portion (230) may include a coupling groove (230a) formed by being recessed toward the side portion (220). One end of the third panel (130) may be inserted into the coupling groove (230a) formed in the coupling portion (230) of the first side member (200). One end of the third panel (130) inserted into the coupling groove (230a) may be fixed to the coupling portion (230) via a fastening member (230b).

[0082] The second side member (300) may include a front portion (310), a side portion (320) bent from the front portion (310), and a coupling portion (330) formed at a lower end of the side portion (320). The structures of the front portion (310), the side portion (320), and the coupling portion (330) of the second side member (300) may be identical to the structures of the front portion (210), the side portion (220), and the coupling portion (230) of the first side member (200), respectively.

[0083] The coupling portion (330) may be formed on one surface of the side portion (320). For example, the coupling portion (330) may be formed at the lower end of the side portion (320) adjacent to the base member (100). One end of the base member (100) may be coupled to the coupling portion (330). The coupling portion (330) may include a coupling groove (330a) formed by being recessed toward the side portion (320). One end of the first panel (110) may be inserted into the coupling groove (330a) formed in the coupling portion (330) of the first side member (300). The one end of the first panel (110) inserted into the coupling groove (330a) may be fixed to the coupling portion (330) via a fastening member (330b).

[0084] A window kit (3) of an air conditioner according to one embodiment may include a cover member (400) that shields a gap formed in a space between the window assembly (2). The cover member (400) may include a first cover member (401) that shields a gap between a first frame portion (21a) of a window frame (21) and a fixed end portion (22a) of a window (22), a second cover member (402) that shields a gap between a base member (100) and a second frame portion (21b) of the window frame (21), and a third cover member (403) that shields a gap between the base member (100) and a rotational end portion (22b) of the window (22).

[0085] Meanwhile, the second cover member (402) can mutually connect the base member (100) and the second frame portion (21b) of the window frame (21). The third cover member (403) can mutually connect the base member (100) and the rotation end portion (22b) of the window (22).

[0086] The first cover member (401) may have a shape extending along the extension direction of the first frame portion (21a) and the fixed end portion (22a) of the window (22). The second cover member (402) may have a shape extending along the extension direction of the base member (100) and the second frame portion (21b). The third cover member (403) may have a shape extending along the extension direction of the base member (100) and the rotational end portion (22b) of the window (22). The coupling relationship between the window frame (21) and the window (22) via the cover member (400) will be described in detail with reference to FIGS. 14 to 17.

[0087] According to one embodiment, the window kit (3) of the air conditioner may further include a finishing member (500) coupled to a side end of the side member (200, 300). The finishing member (500) may be coupled to a side end of the side member (200, 300) facing a side end portion (22c) of the window (22). When the side member (200, 300) is partially separated, the side end of the side member (200, 300) may have a protruding portion having an irregular shape. The finishing member (500) may cover the side end of the side member (200, 300) facing the side end portion (22c) to prevent exposure of the protruding portion. The size and shape of the finishing member (500) may vary depending on the size and shape of the side end of the side member (200, 300).

[0088] Hereinafter, the specific shapes of the side members (200, 300) will be described in detail with reference to FIGS. 5 to 13. In this specification, common contents regarding the side members (200, 300) are described based on the second side member (300). However, the description regarding the second side member (300) can be equally applied to the first side member (200).

[0089] Fig. 5 is a perspective view of a side member of a window kit of an air conditioner according to one embodiment. Figs. 6 and 7 are perspective views showing a structure in which at least a portion of the side member is partially separated. Fig. 8 is a schematic diagram showing an enlarged rear view of the side member.

[0090] Referring to FIGS. 5 to 8, a side member (200, 300) according to one embodiment may include a first side member (200) and a second side member (300). The first side member (200) and the second side member (300) may be formed in a mutually symmetrical structure.

[0091] First, the first side member (200) will be described. As described above, the first side member (200) may include a front portion (210), a side portion (220) formed by bending from the front portion (210), and a connecting portion (230) formed on one surface of the side portion (220).

[0092] One end of the front portion (210) may be formed to protrude further toward the first frame portion (21a) than one end of the side portion (220). That is, the one end of the front portion (210) may be positioned closer to the first frame portion (21a) than one end of the side portion (220). Accordingly, the side portion (220) can more airtightly seal the gap between the window frame (21) and the window (22).

[0093] The first side member (200) may include a plurality of detachably configured unit members (201). The unit member (201) may include a first unit front portion (211) and a unit side portion (221). The first unit front portion (211) may be detachably configured from the front portion (210). The unit side portion (221) may be detachably configured from the side portion (220). The first unit front portion (211) and the unit side portion (221) may be integrally configured. That is, the integrally formed first unit front portion (211) and the unit side portion (221) may constitute the unit member (201).

[0094] The first side member (200) can be adjusted in size and shape by separating the unit member (201) to fit the size and shape of the window assembly (2) to be installed. For example, the first side member (200) can be adjusted in size and shape by separating the unit member (201) to fit the third frame portion (21c) of the window frame (21) and the side end portion (22c) of the window (22).

[0095] A plurality of first unit front portions (211) may be arranged in the extension direction of the front portion (210). Each of the plurality of first unit front portions (211) may have the same size, but is not limited thereto and may have different sizes.

[0096] A plurality of unit side portions (221) may be arranged in the extension direction of the side portion (220). Each of the plurality of unit side portions (221) may have a different shape. For example, the unit side portion (221) may have a shape that is bent from one end of the first unit front portion (211) and extends downward in an inclined direction. The unit side portion (221) may have a shape that becomes narrower as it goes downward.

[0097] In the first unit front portion (211) and the unit side portion (221) constituting the unit member (201), one end of the first unit front portion (211) may be formed to protrude further toward the first frame portion (21a) than one end of the unit side portion (221). Accordingly, the side portion (220) can more airtightly seal the gap between the window frame (21) and the window (22) even if the unit member (201) is separated and its size changes.

[0098] Each first unit front part (211) may include a second unit front part (212). The second unit front part (212) may be configured to be detachable from the first unit front part (211). When the second unit front part (212) is detached from the first unit front part (211), an escape structure for the open member (23) may be formed. In the window kit (3) of the air conditioner according to one embodiment, when the open member (23) is positioned on the side of the first side member (200), an escape structure for the open member (23) may be formed by detaching the second unit front part (212) from the first unit front part (211).

[0099] The first side member (200) may include a cut portion (200l) to facilitate separation of the unit member (201). The cut portion (200l) may be configured in a groove (g) or hole (h) shape to facilitate separation. For example, the cut portion (200l) may include a first front cut line (210a) arranged between adjacent first unit front portions (211), a second front cut line (210b) arranged between the front portion (210) and the side portion (220), and a first side cut line (220a) and a second side cut line (220b) arranged between adjacent unit side portions (221).

[0100] The first front cutting line (210a) may be positioned between adjacent first unit front portions (211) to facilitate separation of the first unit front portions (211). For example, the first front cutting line (210a) may extend in a direction from the front portion (210) toward the side portion (220).

[0101] The second front cut line (210b) may be arranged between the front portion (210) and the side portion (220). The second front cut line (210b) may be connected to the first front cut line (210a). The second front cut line (210b) may be formed by extending downward from one end of the first front cut line (210a). The second front cut line (210b) may be provided to separate the front portion (210) and the side portion (220). On one side and the other side of the second front cut line (210b), a first unit front portion (211) and a unit side portion (221) included in different unit members (201) may be arranged.

[0102] The first side cut line (220a) and the second side cut line (220b) are arranged between adjacent unit side parts (221), thereby facilitating separation of the unit side parts (221). The first side cut line (220a) may be connected to the second front cut line (210b). The first side cut line (220a) may extend laterally from the lower end of the second front cut line (210b). The second side cut line (220b) may extend downward from one end of the first side cut line (220a).

[0103] The size of the unit side portion (221) can be changed depending on the spacing between the plurality of first side cutting lines (220a) arranged in one direction. The spacing between the plurality of second side cutting lines (220b) arranged in one direction can decrease as it goes downward.

[0104] The unit side portion (221) may include a first part (221a) positioned above the side boundary portion (221c) and a second part (221b) positioned below it. As will be described later, the thickness of the second part (221b) may be formed to be smaller than the thickness of the first part (221a). Through the above structure, even if the interval between the second side cut lines (220b) in the second part (221b) is narrowed, the unit side portion (221) can be easily separated.

[0105] A third front cutting line (210c) and a fourth front cutting line (210d) can be formed on the front portion (210).

[0106] The third front cut line (210c) may extend in the extension direction of the front portion (210). For example, the third front cut line (210c) may have a shape extending in the vertical direction. The third front cut line (210c) may be formed to easily separate the second unit front portion (212).

[0107] The fourth front cut line (210d) may be positioned below the first front cut line (210a). The fourth front cut line (210d) may extend in a direction parallel to the first front cut line (210a). For example, the fourth front cut line (210d) may be formed in an area where the second front cut line (210b) is not formed to separate the second unit front portion (212).

[0108] That is, the second unit front part (212) can be easily separated through the first front cutting line (210a), the third front cutting line (210c), and the fourth front cutting line (210d).

[0109] Hereinafter, the second side member (300) will be described. The second side member (300) may have a structure symmetrical to the first side member (200) described above.

[0110] The second side member (300) may include a front portion (310), a side portion (320) formed by bending from the front portion (310), and a connecting portion (330) formed on one surface of the side portion (320). One end of the front portion (310) may be formed to protrude further toward the first frame portion (21a) than one end of the side portion (320). The one end of the front portion (310) may be arranged adjacent to the first frame portion (21a). Therefore, the side portion (320) may more airtightly seal the gap between the window frame (21) and the window (22).

[0111] The second side member (300) may include a plurality of detachably configured unit members (301). The unit member (301) may include a first unit front portion (311) and a unit side portion (321). The first unit front portion (311) may be detachably configured from the front portion (310). The unit side portion (321) may be detachably configured from the side portion (320). The first unit front portion (311) and the unit side portion (321) may be integrally configured. That is, the integrally formed first unit front portion (311) and the unit side portion (321) may constitute the unit member (301).

[0112] The second side member (300) can be adjusted in size by separating the unit member (301) according to the size of the window frame (21) and window (22) to be installed. For example, the second side member (300) can be adjusted in size by separating the unit member (301) according to the size of the third frame portion (21c) of the window frame (21) and the size of the side end portion (22c) of the window (22).

[0113] A plurality of first unit front portions (311) may be arranged in the extension direction of the front portion (310). Each of the plurality of first unit front portions (311) may have the same size, but is not limited thereto and may have different sizes.

[0114] A plurality of unit side portions (321) may be arranged in the extension direction of the side portion (320). Each of the plurality of unit side portions (321) may have a different shape. For example, the unit side portion (321) may have a shape that is bent from one end of the first unit front portion (311) and extends downward in an inclined direction. The unit side portion (321) may have a shape that becomes narrower as it goes downward.

[0115] In the first unit front portion (311) and the unit side portion (321) constituting the unit member (301), one end of the first unit front portion (311) may be formed to protrude further toward the first frame portion (21a) than one end of the unit side portion (321). Accordingly, the side portion (320) can more airtightly seal the gap between the window frame (21) and the window (22) even if the unit member (301) is separated and its size changes.

[0116] Each first unit front portion (311) may include a second unit front portion (312). The second unit front portion (312) may be configured to be detachable from the first unit front portion (311). When the second unit front portion (312) is detached from the first unit front portion (311), an escape structure for the opening member (33) may be formed. When the opening member (33) is mounted on a window frame (21) or window (22) to which the second side member (300) is coupled, an escape structure for the opening member (33) may be formed by detaching the second unit front portion (312) from the first unit front portion (311).

[0117] The second side member (300) may include a cut portion (300l) to facilitate separation of the unit member (301). The cut portion (300l) may be configured in a groove or hole shape to facilitate separation. For example, the cut portion (300l) may include a first front cut line (310a) arranged between adjacent first unit front portions (311), a second front cut line (310b) arranged between the front portion (310) and the side portion (320), and a first side cut line (320a) and a second side cut line (320b) arranged between adjacent unit side portions (321).

[0118] The first front cutting line (310a) may be positioned between adjacent first unit front portions (311) to facilitate separation of the first unit front portions (311). For example, the first front cutting line (310a) may extend in a direction from the front portion (310) toward the side portion (320).

[0119] The second front cut line (310b) may be arranged between the front portion (310) and the side portion (320). The second front cut line (310b) may be connected to the first front cut line (310a). The second front cut line (310b) may be formed by extending downward from one end of the first front cut line (310a). The second front cut line (310b) may be provided to separate the front portion (310) and the side portion (320). On one side and the other side of the second front cut line (310b), a first unit front portion (311) and a unit side portion (321) included in different unit members (301) may be arranged.

[0120] The first side cut line (320a) and the second side cut line (320b) are arranged between adjacent unit side parts (321), thereby facilitating separation of the unit side parts (321). The first side cut line (320a) may be connected to the second front cut line (310b). The first side cut line (320a) may extend laterally from the lower end of the second front cut line (310b). The second side cut line (320b) may extend downward from one end of the first side cut line (320a).

[0121] The spacing between a plurality of first side cutting lines (320a) arranged in one direction can be changed depending on the size of the unit side portion (321). The spacing between a plurality of second side cutting lines (320b) arranged in one direction can be reduced toward the bottom.

[0122] The unit side portion (321) may include a first part (321a) positioned above the side boundary portion (321c) and a second part (321b) positioned below it. As will be described later, the thickness of the second part (321b) may be formed to be smaller than the thickness of the first part (321a). Through the above structure, even if the interval between the second side cut lines (320b) decreases toward the bottom, the unit side portion (321) can be easily separated.

[0123] A third front cutting line (310c) and a fourth front cutting line (310d) may be formed on the front portion (310).

[0124] The third front cut line (310c) may extend in the extension direction of the front portion (310). For example, the third front cut line (310c) may have a shape extending in the vertical direction. The third front cut line (310c) may be formed to easily separate the second unit front portion (312).

[0125] The fourth front cut line (310d) may be positioned below the first front cut line (310a). The fourth front cut line (310d) may extend in a direction parallel to the first front cut line (310a). For example, the fourth front cut line (310d) may be formed in an area where the second front cut line (310b) is not formed to separate the second unit front portion (312).

[0126] That is, the second unit front part (312) can be easily separated through the first front cutting line (310a), the third front cutting line (310c), and the fourth front cutting line (310d).

[0127] The first front cut line (310a) may include a first sub-cut line (310e) positioned on one side of the third front cut line (310c) and a second sub-cut line (310f) positioned on the other side. That is, the first front cut line (310a) may be divided into a first sub-cut line (310e) and a second sub-cut line (310f) positioned on the other side of the third front cut line (310c). The first sub-cut line (310e) may form one side of the second unit front portion (312). For example, the first sub-cut line (310e) may be formed longer than the second sub-cut line (310f).

[0128] Hereinafter, the structure of the cut portion (300l) will be described with reference to FIGS. 9 to 13.

[0129] Fig. 9 is a side view of the side member. Fig. 10 is a cross-sectional view taken along line 10-10 of Fig. 9. Fig. 11 is a cross-sectional view taken along line 11-11 of Fig. 9.

[0130] Referring to FIGS. 9 to 11, the second side cut line (320b) may have a groove (g) structure in the shape of a sunken home. The second side cut line (320b) may be configured to enable precise separation through the groove (g) structure.

[0131] The side portion (320) on which the second side cut line (320b) is formed may have different widths depending on the thickness. For example, the second side cut line (320b) may include first to third regions (A1, A2, A3) according to the depth of the recess. The depth of the recess of the second side cut line (320b) may become deeper as it goes from the first region (A1) to the third region (A3).

[0132] The width of the first region (A1) of the second side cut line (320b) may be greater than the width of the second region (A2). The width of the second region (A2) of the second side cut line (320b) may be greater than the width of the third region (A3). The width of the first region (A1) of the second side cut line (320b) may become smaller as it goes toward the second region (A2). The width of the third region (A3) of the second side cut line (320b) may become smaller as it goes away from the second region (A2). The width of the second region (A2) of the second side cut line (320b) may be generally constant.

[0133] The second front cut line (310b) may have a hole (h) structure formed by opening. Since the second front cut line (310b) is formed between the front portion (310) and the side portion (320), it can be configured to be separated with little force through the hole (h) structure.

[0134] The third front cut line (310c) may have a groove (g) structure in the shape of a home. The groove (g) of the third front cut line (310c) may be defined by a first surface positioned close to the side surface (320) and a second surface positioned farther from the side surface (320). The first surface of the groove (g) of the third front cut line (310c) may extend in the thickness direction of the front surface (310), and the second surface may be formed to be inclined so as to become closer to the first surface as it increases in the thickness direction of the front surface (310).

[0135] Through the above structure, even when the second unit front part (312) is separated along the third front cutting line (310c), the front part (310) can form a neat appearance.

[0136] Fig. 12 is a front view of the side member. Fig. 13 is a cross-sectional view taken along line 13-13 of Fig. 12.

[0137] Referring to FIGS. 12 and 13, the first front cut line (310a) may have a hole (h) structure formed by opening. Since the first front cut line (310a) is formed in multiple pieces in a narrow area, it can be configured to enable precise separation through the hole (h) structure.

[0138] Meanwhile, the first side cut line (320a) may have substantially the same cross-sectional structure as the second side cut line (320b) described above. For example, the first side cut line (320a) may have a groove (g) structure in the shape of a sunken groove. The first side cut line (320a) may be configured to enable precise separation through the groove (g) structure.

[0139] The first part (321a) may have a first thickness (t1), and the second part (321b) may be formed to have a second thickness (t2) smaller than the first thickness (t1). Through the above structure, even if the interval between the second side cut lines (320b) in the second part (321b) becomes narrow, the unit side portions (321) may be easily separated.

[0140] Although not shown, the fourth front cut line (310d) may be formed with a structure similar to the first front cut line (310a). That is, the fourth front cut line (310d) may have a hole (h) structure formed by opening. Since the fourth front cut lines (310d) are formed in multiple pieces in a narrow area, they can be configured to enable precise separation through the hole (h) structure.

[0141] Referring to FIGS. 14 to 17, a shielding structure through a cover member (400) is described.

[0142] Fig. 14 is a cross-sectional view taken along line 14-14 of Fig. 1. Fig. 15 is a schematic diagram showing area B of Fig. 14. Fig. 16 is a schematic diagram showing area C of Fig. 14. Fig. 17 is a cross-sectional view taken along line 17-17 of Fig. 1.

[0143] First, referring to FIGS. 14 to 16, the window kit (3) of the air conditioner according to one embodiment may include a cover member (400) that shields a gap formed in a space between the window assembly (2). The cover member (400) may include a first cover member (401) that shields a gap between a first frame portion (21a) of a window frame (21) and a fixed end portion (22a) of a window (22), a second cover member (402) that shields a gap between a base member (100) and a second frame portion (21b) of the window frame (21), and a third cover member (403) that shields a gap between the base member (100) and a rotational end portion (22b) of the window (22).

[0144] The first cover member (401) may have a shape extending along the extension direction of the first frame portion (21a) and the fixed end portion (22a) of the window (22). The second cover member (402) may have a shape extending along the extension direction of the base member (100) and the second frame portion (21b). The third cover member (403) may have a shape extending along the extension direction of the base member (100) and the rotational end portion (22b) of the window (22).

[0145] The first cover member (401) may include a first coupling portion (401a) coupled to a first frame portion (21a) of a window frame (21), a second coupling portion (401b) coupled to a fixed end portion (22a) of a window (22), and a cover portion (401c) disposed between the first coupling portion (401a) and the second coupling portion (401b).

[0146] The first connecting portion (401a) may be attached to the first frame portion (21a) of the window frame (21). For example, the first connecting portion (401a) may be attached to the first frame portion (21a) via an adhesive member. The first connecting portion (401a) may extend along the extension direction of the first frame portion (21a).

[0147] The second connecting portion (401b) may be attached to the fixed end (22a) of the window (22). For example, the second connecting portion (401b) may be attached to the fixed end (22a) via an adhesive member. The second connecting portion (401b) may extend along the extension direction of the fixed end (22a).

[0148] The cover portion (401c) may have one end connected to the first coupling portion (401a) and the other end connected to the second coupling portion (401b). The cover portion (401c) may stably shield the gap between the window frame (21) and the window (22). For example, the cover portion (401c) may be made of a flexible film material.

[0149] The second cover member (402) may include a first coupling portion (402a) coupled to the base member (100), a second coupling portion (402b) coupled to the second frame portion (21b) of the window frame (21), and a cover portion (402c) disposed between the first coupling portion (402a) and the second coupling portion (402b).

[0150] The first connecting portion (402a) may be attached to the base member (100). For example, the first connecting portion (402a) may be attached to the front end of the base member (100) via an adhesive member. The first connecting portion (402a) may extend along the extension direction of the base member (100).

[0151] The second connecting portion (402b) may be attached to the second frame portion (21b) of the window frame (21). For example, the second connecting portion (402b) may be attached to the second frame portion (21b) via an adhesive member. The second connecting portion (402b) may extend along the extension direction of the second frame portion (21b).

[0152] The cover portion (402c) may have one end connected to the first connecting portion (402a) and the other end connected to the second connecting portion (402b). The cover portion (402c) may stably shield the gap between the second frame portion (21b) of the window frame (21) and the base member (100). For example, the cover portion (402c) may be composed of a flexible film material.

[0153] Through the above structure, the second cover member (402) can mutually connect the base member (100) and the second frame portion (21b) of the window frame (21).

[0154] The third cover member (403) may include a first coupling portion (403a) coupled to the base member (100), a second coupling portion (403b) coupled to the rotation end portion (22b) of the window (22), and a cover portion (403c) disposed between the first coupling portion (403a) and the second coupling portion (403b).

[0155] The first connecting portion (403a) may be attached to the base member (100). For example, the first connecting portion (403a) may be attached to the rear end of the base member (100) via an adhesive member. The first connecting portion (403a) may extend along the extension direction of the base member (100).

[0156] The second connecting portion (403b) may be attached to the rotational end (22b) of the window (22). For example, the second connecting portion (403b) may be attached to the rotational end (22b) of the window (22) via an adhesive member. The second connecting portion (403b) may extend along the extension direction of the rotational end (22b) of the window (22).

[0157] The cover portion (403c) may have one end connected to the first coupling portion (403a) and the other end connected to the second coupling portion (403b). The cover portion (403c) may stably shield the gap between the rotating end portion (22b) of the window (22) and the base member (100). For example, the cover portion (403c) may be made of a flexible film material.

[0158] Through the above structure, the third cover member (403) can mutually connect the base member (100) and the rotation end (22b) of the window (22).

[0159] Meanwhile, the cover member (400) may be formed by placing an adhesive member on one end and the other end of a flexible film.

[0160] Referring to Fig. 17, one end of the front portion (310) of the second side member (300) can be in contact with the first frame portion (21a) of the window frame (21). For example, one end of the front portion (310) of the second side member (300) that is positioned toward the first frame portion (21a) can be in contact with one surface of the first frame portion (21a). Since the one end of the front portion (310) of the second side member (300) is formed to protrude to one side more than one end of the side portion (320), the gap between the first frame portion (21a) and the fixed end (22a) of the window (22) can be stably shielded. Through the above structure, the second side member (300) can further block outside air from entering and inside air from leaving.

[0161] The above contents can be equally applied to the front part (210) of the first side member (200). That is, one end of the front part (210) of the first side member (200) can be in contact with one surface of the first frame part (21a) of the window frame (21).

[0162] According to the window kit of the air conditioner according to an embodiment of the present invention, the exhaust guide means can be stably fixed to the swing window through a structure that directly fixes the window kit to the window frame.

[0163] According to the window kit of the air conditioner according to an embodiment of the present invention, the size is configured to be adjustable, so that it can be installed in a variety of sizes of window openings without being restricted by the size of the window openings.

[0164] According to the window kit (3) of the air conditioner according to one embodiment, by minimizing the open area through a structure capable of completely shielding the gap area in the window assembly (2), it is possible to prevent air discharged to the outside through the exhaust guide means (12) from being re-introduced into the room or cold air in the room from being leaked to the outside.

[0165] According to the window kit (3) of the air conditioner according to one embodiment, the fixing means for fixing the window kit (3) to the window assembly (2) is located in a place that is easily accessible indoors, so that the window kit (3) can be easily fixed to the window assembly (2).

[0166] According to the window kit (3) of the air conditioner according to one embodiment, the window kit (3) can be fixed to the window frame (21) without damaging the window frame (21), thereby preventing the aesthetic appearance of the window frame (21) from being deteriorated.

[0167] Meanwhile, the present invention may have various other embodiments in addition to the aforementioned embodiments. Below, other embodiments of the present invention will be described with reference to the drawings. Among the components of other embodiments of the present invention, those that are identical to those of the aforementioned embodiments may be omitted for detailed description and illustration, and may be described using the same drawing reference numerals. In other words, only the structures that differ from the aforementioned embodiments will be described below, and other components not described may be identical to those of the aforementioned embodiments.

[0168] Fig. 18 is a perspective view of a window assembly according to another embodiment. Fig. 19 is a rear perspective view of a side member according to another embodiment.

[0169] Referring to FIGS. 18 and 19, the window assembly (2) according to one embodiment may further include a first adhesive portion (24). The first adhesive portion (24) may be provided to secure the window kit (3) for an air conditioner to the window frame (21) and the window (22).

[0170] The first adhesive portion (24) may be provided on at least one of the first frame portion (21a), the second frame portion (21b), and the third frame portion (21c) of the window frame (21). For example, the first connecting portion (401a) of the first cover member (401) may be attached to the first adhesive portion (24) provided on the first frame portion (21a). The second connecting portion (402b) of the second cover member (402) may be attached to the first adhesive portion (24) provided on the second frame portion (21b). The side members (200, 300) may be attached to the first adhesive portion (24) provided on the third frame portion (21c).

[0171] Additionally, the first adhesive portion (24) may be provided at the rotation end (22b) of the window (22). For example, the second joining portion (403b) of the third cover member (403) may be attached to the first adhesive portion (24) provided at the rotation end (22b) of the window (22).

[0172] Meanwhile, the side member (200, 300) according to one embodiment may further include second and third adhesive portions (240, 340). The first side member (200) may include the second adhesive portion (240), and the second side member (300) may include the third adhesive portion (340).

[0173] The second adhesive portion (240) can be placed on the rear surface of the front portion (210) of the first side member (200). The second adhesive portion (240) can be attached to the first adhesive portion (24) provided on the third frame portion (21c) of the window frame (21), thereby firmly fixing the first side member (200) to the third frame portion (21c) of the window frame (21).

[0174] The third adhesive portion (340) can be placed on the rear surface of the front portion (310) of the second side member (300). The third adhesive portion (340) can be attached to the first adhesive portion (24) provided on the third frame portion (21c) of the window frame (21), thereby firmly fixing the second side member (300) to the third frame portion (21c) of the window frame (21).

[0175] The first adhesive portion (24), the second adhesive portion (240), and the third adhesive portion (340) may be formed of a Velcro member. For example, the first adhesive portion (24) and the second adhesive portion (240) may be formed of a mutually attachable Velcro member. In addition, the first adhesive portion (24) and the third adhesive portion (340) may be formed of a mutually attachable Velcro member.

[0176] The window kit (3) of the air conditioner according to the present embodiment can secure the side members (200, 300) to the window frame (21) through the first adhesive portion (24), the second adhesive portion (240), and the third adhesive portion (340). Therefore, the side members (200, 300) can be firmly secured to the window frame (21) without damaging the window frame (21).

[0177] According to the window kit of the air conditioner according to an embodiment of the present invention, the exhaust guide means can be stably fixed to the swing window through a structure that directly fixes the window kit to the window assembly, and thus, the possibility of industrial application is recognized.

[0178] The window kit of the air conditioner according to the embodiment of the present invention is configured to be adjustable in shape and size, and can be universally installed in window assemblies of various sizes, and thus its industrial applicability is recognized.

[0179] According to the window kit of an air conditioner according to an embodiment of the present invention, the open area in a swing-type window assembly is minimized, so that air discharged to the outside through an exhaust guide means is prevented from being re-introduced into the room or cold air inside the room from being discharged to the outside, and thus its industrial applicability is recognized.

[0180] According to the window kit of the air conditioner according to an embodiment of the present invention, the fixing means for fixing the window kit to the window is located in a place where it can be easily fixed indoors, so that the window kit can be easily fixed to the window assembly, and thus its industrial applicability is recognized.

[0181] According to the window kit of the air conditioner according to an embodiment of the present invention, the window assembly can be fixed without being damaged, thereby preventing the appearance of the window assembly from being deteriorated, and thus its industrial applicability is recognized.

Claims

1. In a window kit of an air conditioner, which is mounted on a window frame to which a sliding window is connected and is combined with an exhaust guide means extended from an exhaust port of a portable air conditioner, A base member mounted between the rotating end of the above-mentioned window and the window frame, the base member including an insertion hole into which the nozzle of the above-mentioned exhaust guide means is inserted; and Including a side member mounted between the side end intersecting the rotating end of the above-mentioned window and the window frame, A window kit of an air conditioner, wherein at least one end of the base member is partially inserted into and mounted on the side member.

2. In paragraph 1, The above base member is, A window kit for an air conditioner configured to have a variable length, including a plurality of panels connected to each other so as to be retractable.

3. In paragraph 1, The above side member is, The front part is placed on one side of the above window frame, A side portion formed by bending from the front portion and arranged between the window frame and the side end portion, and An air conditioner window kit including a joint formed on one side of the side portion and having a joint groove into which the one end of the base member is inserted.

4. In paragraph 3, The above one end of the above base member, An air conditioner window kit inserted into the above-mentioned joint groove and fixed to the joint portion through a fastening member.

5. In paragraph 3, The above-mentioned connecting portion is formed at the other end of the side portion, One end of the above front part, An air conditioner window kit formed by protruding to one side from one end of the above side portion.

6. In paragraph 3, The above side member is, It is configured to have a variable shape, including a plurality of detachable unit members, The above unit absence is, A plurality of first unit front portions included in the above front portion, and A window kit of an air conditioner comprising a plurality of unit side sections included in the above side section.

7. In paragraph 6, The above side member is, Including a cut-out portion placed between each unit member for separation of the unit member, The above cut portion is, A first cutting line formed on the front surface and arranged between the plurality of first unit front surfaces, A second cutting line formed on the side surface and arranged between the plurality of unit side surfaces, and An air conditioner window kit formed between the front portion and the side portion, and including a third cutting line connecting the first cutting line and the second cutting line.

8. In paragraph 7, The above first cutting line is formed as an open hole structure, The above second cutting line is a window kit of an air conditioner formed with a sunken groove structure.

9. In paragraph 7, On the front surface, a fourth cutting line is formed that intersects the first cutting line. An air conditioner window kit including a second unit front portion configured such that the first unit front portion is separable by the fourth cutting line.

10. In paragraph 1, The above window frame, A first frame portion, on which the above base member is mounted and extends in one direction; It includes a second frame portion extending in a direction intersecting the first frame portion and on which the side member is mounted, The above side member is, A window kit of an air conditioner configured to have a variable shape depending on the size of the second frame portion, including a plurality of detachable unit members.

11. In paragraph 10, The above unit absence is, A front unit placed on one side of the above window frame, and An air conditioner window kit comprising a unit side portion formed by bending from the front portion of the unit and positioned between the window frame and the side end portion.

12. In paragraph 11, The above window frame, Further comprising a third frame portion extending in a direction intersecting the second frame portion and positioned opposite the first frame portion, An air conditioner window kit in which one end of the front part of the unit is positioned so as to protrude further toward the third frame part than one end of the side part of the unit.

13. In paragraph 10, The above window frame, Further comprising a third frame portion extending in a direction intersecting the second frame portion and positioned opposite the first frame portion, The above side member is, A front part arranged on one side of the above window frame, and It is formed by bending from the front portion and includes a side portion arranged between the window frame and the side end portion. An air conditioner window kit in which one end of the front part protrudes further toward the third frame part than one end of the side part.

14. In paragraph 10, A first cover member covering between one end of the base member and the first frame portion; and An air conditioner window kit further comprising a second cover member covering between the other end of the base member and the rotating end.

15. In paragraph 14, The above first cover member, A first connecting portion connected to one end of the base member; A second connecting portion connected to the first frame portion, and It includes a first cover part formed of a flexible material and disposed between the first connecting part and the second connecting part, The above second cover member, A third connecting member connected to the other end of the base member; A fourth connecting member connected to the above rotating end, and An air conditioner window kit including a second cover portion formed of a flexible material and disposed between the third connecting portion and the fourth connecting portion.

Citation Information

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