Framework structure for sliding door and air conditioner
By arranging a reinforcement on the inner wall of the first side panel of the air conditioner, connecting it to the top of the air conditioner body and below the air outlet, a sliding gap is formed, which solves the problem of weak side panel strength when the sliding door slides and achieves an improvement in overall strength.
Patent Information
- Application Number
- CN202422685587.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-04
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-11-04
AI Technical Summary
In the prior art, when the sliding door extends upward to the top, the upper portion of the front panel is divided into two parts, resulting in no connection between the left side panel and the main body, and reducing the overall strength of the left side panel.
By arranging a reinforcement on the inner wall of the first side panel and connecting it to the top of the air conditioner body and below the air outlet, a gap is formed for the sliding door to slide, the connection points between the first side panel and the air conditioner body are increased, and the overall strength is improved.
The provision of the reinforcement increases the support of the first side panel, improves its overall strength, and solves the problem of weak strength caused by the sliding space of the sliding door.
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Figure CN223425415U_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the technical field of air conditioners, and in particular to a skeleton structure for a sliding door and an air conditioner. Background Art
[0002] A front-exhaust cabinet air conditioner consists of a main body, a front panel, a rear frame, and a sliding door. The front panel houses the air outlet, and the sliding door is used to open and close the outlet. Both the top and bottom of the front panel can be connected to the main body of the cabinet air conditioner, with a space between the front panel and the main body for the sliding door to slide.
[0003] In the prior art, when a sliding door extends upward to the top, the upper portion of the front panel is divided into two parts (e.g., a left panel and a right panel). When the sliding door slides to one side, for example, to the left, space is required between the left panel and the main body for the sliding door to move. This results in a loss of connection between the left panel and the main body, reducing the overall strength of the left panel. Utility Model Content
[0004] The purpose of the present disclosure is to provide a skeleton structure for a sliding door and an air conditioner, wherein the skeleton structure connects a first side panel and an air conditioner body through a reinforcement member, and the lower part of the reinforcement member is connected to the lower part of the air outlet of the air conditioner body, so that the reinforcement member can support the first side panel and improve the overall strength of the first side panel.
[0005] In order to achieve the above object, according to a first aspect of the present disclosure, a skeleton structure for a sliding door is provided, comprising:
[0006] an air conditioner main body having an air outlet; and
[0007] The first side panel structure is arranged on one side of the air outlet in the left and right directions. The first side panel structure includes a first side panel and a reinforcement connected to the inner wall of the first side panel. The upper part of the reinforcement is connected to the top of the air conditioner body, and the lower part of the reinforcement is connected to the air conditioner body and is located below the air outlet. There is a gap between the reinforcement and the air conditioner body for the sliding door to slide.
[0008] Optionally, the skeleton structure further includes a top connecting member connected to the top of the air conditioner body; the top connecting member protrudes from the edge of the air conditioner body and is connected to the top of the reinforcement.
[0009] Optionally, a first connecting portion is provided on the top of the reinforcement, and a first matching portion matching with the first connecting portion is provided on the side of the top connecting portion close to the reinforcement.
[0010] Optionally, the top connector includes a first reinforcement structure, and the first reinforcement structure includes protrusions and / or recesses.
[0011] Optionally, a first positioning structure is provided between the top connecting member and the top of the air conditioner body.
[0012] Optionally, the air conditioner body is provided with a second connecting portion, the second connecting portion is located below the air outlet, and the reinforcement is connected to the second connecting portion.
[0013] Optionally, the air conditioner main body further includes a lower support frame, and the second connecting portion is connected to the lower support frame.
[0014] Optionally, the air conditioner body further includes a base, and the reinforcement is connected to the base.
[0015] Optionally, the air conditioner body further includes a rear frame, and the reinforcement is connected to the rear frame.
[0016] Optionally, the first side panel and the reinforcement are snap-connected.
[0017] Optionally, the first side panel structure further includes a column connected to an edge of the first side panel close to the air outlet.
[0018] Optionally, a bent portion extending inwardly is formed on an edge of the first side plate close to the air outlet;
[0019] A clamping portion is formed on the inner side wall of the first side plate, and the column is clamped between the bent portion and the clamping portion.
[0020] Optionally, a second positioning structure is provided between the reinforcement and the air conditioner body.
[0021] Optionally, the reinforcement member includes a second reinforcement structure, and the second reinforcement structure includes a protrusion and / or a recessed portion.
[0022] According to a second aspect of the present disclosure, an air conditioner is further provided, comprising a sliding door and the above-mentioned skeleton structure.
[0023] Through the above technical solution, i.e., the disclosed skeleton structure for a sliding door, the first side panel structure includes a first side panel and a reinforcement member connected to the first side panel. The upper portion of the reinforcement member is connected to the top of the air conditioner body, and a gap is formed between the reinforcement member and the air conditioner body for sliding the sliding door. Through the above arrangement, the first side panel and the reinforcement member are connected, the upper portion of the reinforcement member is connected to the top of the air conditioner body, and the lower portion of the reinforcement member is connected to the bottom of the air outlet of the air conditioner body, thereby achieving connection between the first side panel and the air conditioner body. At the same time, the reinforcement member can provide support for the first side panel, thereby improving the overall strength of the first side panel.
[0024] Other features and advantages of the present disclosure will be described in detail in the following detailed description. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] The accompanying drawings are used to provide a further understanding of the present disclosure and constitute a part of the specification. Together with the following detailed description, they are used to explain the present disclosure but do not constitute a limitation of the present disclosure. In the accompanying drawings:
[0026] Figure 1 It is a structural diagram of an air conditioner provided in the related art;
[0027] Figure 2 is a structural diagram of an air conditioner provided by some embodiments of the present disclosure;
[0028] Figure 3 is a structural diagram of an air conditioner provided in some embodiments of the present disclosure, wherein the air inlet is in an open state;
[0029] Figure 4 is a side view of an air conditioner provided by some embodiments of the present disclosure;
[0030] Figure 5 is based on Figure 4 A magnified view of part I in FIG;
[0031] Figure 6 is a top view of an air conditioner provided by some embodiments of the present disclosure, wherein the top cover is hidden;
[0032] Figure 7 is a partial enlarged view of the skeleton structure provided by some embodiments of the present disclosure;
[0033] Figure 8 is a top view of an air conditioner provided by some embodiments of the present disclosure, wherein the top cover is hidden and the sliding door and the sliding direction are schematically shown;
[0034] Figure 9 is a structural diagram of a first side panel structure provided by some embodiments of the present disclosure;
[0035] Figure 10 is based on Figure 9 The enlarged view of Part II in FIG.
[0036] Figure 11 is a side view of the skeleton structure provided by some embodiments of the present disclosure from another direction;
[0037] Figure 12 is based on Figure 11 The enlarged view of Part III in FIG.
[0038] Figure 13 is a cross-sectional structural diagram of the connection between the column and the first side panel provided in some embodiments of the present disclosure;
[0039] Figure 14 is a side view of the skeleton structure provided by some embodiments of the present disclosure from another direction;
[0040] Figure 15 is based on Figure 14 A magnified view of part A in FIG;
[0041] Figure 16 is based on Figure 14 A magnified view of part B in FIG;
[0042] Figure 17 is based on Figure 14 Enlarged view of part C in FIG;
[0043] Figure 18 is based on Figure 14 Enlarged view of part D in FIG;
[0044] Figure 19 is based on Figure 14 Enlarged view of part E in FIG;
[0045] Figure 20 is based on Figure 14 Enlarged view of part F in ;
[0046] Figure 21 is based on Figure 14 Magnified view of section G in .
[0047] Description of Reference Numerals
[0048] 100 - Air conditioner body; 101 - Air outlet; 110 - Air guide frame; 111 - Fifth mating portion; 112 - First positioning mating portion; 120 - Rear frame; 121 - Fourth mating portion; 122 - Sixth mating portion; 123 - Second positioning mating portion; 130 - Lower support frame; 131 - Second connecting portion; 132 - Third positioning mating portion; 140 - Base; 141 - Third mating portion;
[0049] 200 - first side panel structure; 210 - first side panel; 211 - buckle; 212 - installation space; 2121 - bending portion; 2122 - snap-fit portion; 220 - reinforcement member; 221 - first connecting portion; 222 - slot; 223 - fourth connecting portion; 224 - second positioning portion; 225 - second matching portion; 226 - third connecting portion; 227 - second reinforcement structure; 228 - third positioning portion;
[0050] 230-column;
[0051] 300 - top connector; 310 - connector body; 311 - first reinforcement structure; 312 - first positioning portion; 320 - first mating portion;
[0052] 400 - second side plate structure; 410 - second side plate; 411 - fifth connecting part; 412 - sixth connecting part;
[0053] 500 - sliding door; 600 - display assembly; 700 - top cover. DETAILED DESCRIPTION
[0054] The specific embodiments of the present disclosure will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are merely intended to illustrate and explain the present disclosure, and are not intended to limit the present disclosure.
[0055] In the present disclosure, the orientation words such as "up, down, left, right, front, back" used without the opposite description generally refer to the up, down, left, right, front, back in the drawings, that is, the up and down in the use state of the air conditioner, the side facing the user is the front, and the side away from the user is the back; the left side of the user is the left, and the right side of the user is the right; "inner and outer" refer to the inner and outer of the outline of the corresponding components; "far and near" refer to the corresponding structure or the corresponding component far away or close to another structure or component. In addition, the terms "first", "second", etc. used in the present disclosure are used to distinguish one element from another element, and do not have sequentiality and importance. In addition, in the following description, the same reference numerals in different drawings represent the same or similar elements unless otherwise explained. The above definitions are only used to explain and illustrate the present disclosure, and should not be understood as limiting the present disclosure.
[0056] The purpose of the present disclosure is to provide a skeleton structure for a sliding door and an air conditioner, which connects the first side plate 210 with the air conditioner body 100 through the reinforcing piece 220, so that the reinforcing piece 220 can form support for the first side plate 210, and improve the overall strength of the first side plate 210.
[0057] In order to achieve the above-mentioned purpose, as shown in Figures 2 to 21 According to the first aspect of the present disclosure, a skeleton structure for a sliding door is provided, which includes an air conditioner body 100 and a first side plate structure 200. The air conditioner body 100 has an air outlet 101; the first side plate structure 200 is arranged on one side of the air conditioner body 100 in the left-right direction, and the first side plate structure 200 includes a first side plate 210 and a reinforcing piece 220 connected to the inner side wall of the first side plate 210. The upper part of the reinforcing piece 220 is connected to the top of the air conditioner body 100, the lower part of the reinforcing piece 220 is connected to the air conditioner body 100 and is located below the air outlet 101, and the reinforcing piece 220 and the air conditioner body 100 have a gap for the sliding door 500 to slide.
[0058] According to the technical scheme, the first side plate structure 200 comprises a first side plate 210 and a reinforcing member 220 connected to the first side plate 210, and the upper portion of the reinforcing member 220 is connected to the top of the air conditioner body 100, so that a gap for the sliding door 500 to slide can be formed between the reinforcing member 220 and the air conditioner body 100. Through the above arrangement, the first side plate 210 and the reinforcing member 220 are connected, the upper portion of the reinforcing member 220 is connected to the top of the air conditioner body 100, and the lower portion of the reinforcing member 220 is connected to the position below the air outlet 101 of the air conditioner body 100, so that the first side plate 210 is connected to the air conditioner body 100, and the reinforcing member 220 can support the first side plate 210 to improve the overall strength of the first side plate 210.
[0059] It should be noted that the skeleton structure of the present disclosure is suitable for the case that the sliding door 500 extends to the top of the air conditioner (or the air conditioner body 100). Since a sliding space needs to be left for the sliding door 500, the first side plate 210 cannot be connected to the air conditioner body 100, which results in weak strength. However, in the embodiment of the present disclosure, the reinforcing member 220 is arranged on the inner side wall of the first side plate 210 and is spaced apart from the air conditioner body 100. The top of the reinforcing member 220 is connected to the top of the air conditioner body 100. The sliding gap is left for the sliding door 500, and the reinforcing member 220 can also support the first side plate 210 to improve the strength of the first side plate 210.
[0060] In some embodiments, the skeleton structure further comprises a second side plate structure 400 arranged on the other side of the air outlet 101 in the left-right direction and opposite to the first side plate structure 200, and the second side plate structure 400 is connected to the air conditioner body 100. The first side plate structure 200 and the second side plate structure 400 are respectively located on the opposite sides of the air outlet 101 in the left-right direction. Hereinafter, the first side plate structure 200 is located on the left side of the air outlet 101, and the second side plate structure 400 is located on the right side of the air outlet 101. The sliding door 500 is installed on the air conditioner body 100 in a sliding or rotating manner, can block the air outlet 101, and can be moved to the position between the reinforcing member 220 and the air conditioner body 100 through the sliding or rotating movement of the driving motor and other connecting structures to expose the air outlet 101, so as to realize the air outlet of the air conditioner through the air outlet 101.
[0061] It should be noted that the first side plate structure 200 described above can also be located on the right side of the air outlet 101, and the second side plate structure 400 can be located on the left side of the air outlet 101.
[0062] Since no sliding space for the sliding door 500 is required between the second side panel structure 400 and the air conditioner main body 100, the second side panel structure 400 can be fixedly connected to the air conditioner main body 100 using any suitable structure. In some embodiments, the second side panel structure 400 includes a second side panel 410 having a fifth connecting portion 411 and a sixth connecting portion 412; the air conditioner main body 100 includes an air guide frame 110 having a fifth matching portion 111 and a rear frame 120 having a sixth matching portion 122; the fifth connecting portion 411 is connected to the fifth matching portion 111, and the sixth connecting portion 412 is connected to the sixth matching portion 122, so as to connect the second side panel 410 to the air guide frame 110 and the rear frame 120.
[0063] The fifth connecting portion 411 and the sixth connecting portion 412 can be any suitable structure, and the fifth matching portion 111 and the sixth matching portion 122 only need to be corresponding structures that can be connected and matched with the fifth connecting portion 411 and the sixth connecting portion 412. Figure 12 As shown, in some embodiments, the fifth connecting portion 411 and / or the sixth connecting portion 412 are configured as buckles; the fifth mating portion 111 and / or the sixth mating portion 122 are configured as slots. The fifth connecting portion 411 and the sixth connecting portion 412 can both be buckles, and the fifth mating portion 111 and the sixth mating portion 122 can both be slots corresponding to the buckles. Through the engagement of the buckles and the slots, the front end of the second side panel 410 is connected to the air guide 110, and the rear end is connected to the rear frame 120.
[0064] It should be noted that the fifth connecting part 411 and the sixth connecting part 412 can also be magnetic, and the fifth matching part 111 and the sixth matching part 122 can be magnetic parts corresponding to the magnetic parts or matching parts made of iron material, that is, the second side panel 410 can be connected to the air guide frame 110 and the rear frame 120 of the air conditioner body 100 by magnetic attraction.
[0065] It should be noted that the air outlet 101 extends in the up and down directions, and a display component is arranged above the air outlet 101. In order to expose the display component and the air outlet 101, the first side panel structure 200 and the second side panel structure 400 are divided into two parts, left and right. When the sliding door 500 slides to the left to expose the air outlet 101, the gap between the reinforcement 220 of the first side panel structure 200 and the air conditioner body 100 (air guide frame 110) is used for the sliding door 500 to slide.
[0066] Optionally, the skeleton structure further includes a top connector 300 connected to the top of the air conditioner body 100; the top connector 300 protrudes from the edge of the air conditioner body 100 and is connected to the top of the reinforcement 220. Figure 4 and Figure 5As shown, in some embodiments, the air conditioner body 100 includes an air guide frame 110; the skeleton structure also includes a top connecting member 300 connected to the top of the air guide frame 110, and the top connecting member 300 protrudes from the air guide frame 110 toward the side of the reinforcement 220 and is connected to the top of the reinforcement 220, thereby forming a gap between the reinforcement 220, the top connecting member 300 and the air guide frame 110 for accommodating the sliding door 500.
[0067] In some embodiments, a first connecting portion 221 is provided at the top of the reinforcement 220; a first matching portion 320 that matches the first connecting portion 221 is provided on the side of the top connecting member 300 close to the reinforcement 220, and the first connecting portion 221 is connected to the first matching portion 320 to connect the top of the reinforcement 220 to the top connecting member 300 connected to the air conditioner body 100.
[0068] Among them, the reinforcement 220 can be connected to the top of the air conditioner body 100 through a top connecting member 300, wherein the reinforcement 220 can be formed with a first connecting portion 221, and the top connecting member 300 can include a connecting member body 310 and a first matching portion 320 located on the side of the connecting member body 310 and corresponding to the first connecting portion 221. The first connecting portion 221 and the first matching portion 320 can be matched and connected to achieve a fixed connection between the reinforcement 220 and the top connecting member 300. At the same time, since the top connecting member 300 can be connected to the top of the air guide frame 110, the reinforcement 220 can be fixedly connected to the air guide frame 110, thereby forming support for the upper part of the first side panel 210 and improving the overall strength.
[0069] The number of the first connection parts 221 and the first matching parts 320 can be multiple and correspond one to one, wherein the multiple first matching parts 320 can be arranged at intervals along the side of the connector body 310, and the multiple first connection parts 221 can also be arranged at intervals along the upper end of the reinforcement 220.
[0070] The first connecting portion 221 and the first matching portion 320 can be constructed using any suitable structure, such as Figure 6 and Figure 7 As shown, in some embodiments, the first connecting portion 221 and the first mating portion 320 both include mounting holes, and the first connecting portion 221 and the first mating portion 320 are connected by a bolt assembly. The first mating portion 320 can be an ear extending outward from the connector body 310, with a mounting hole formed therein, while the first connecting portion 221 can be a flange with a mounting hole formed on the top of the reinforcement member 220. The bolt assembly passes through the two mounting holes to securely connect the reinforcement member 220 to the top connector 300.
[0071] The top of the top connector 300 and the top of the reinforcement 220 are connected via the first connecting portion 221 and the first mating portion 320, making the connection between the top connector 300 and the reinforcement 220 more convenient. In other embodiments, the top connector 300 and the reinforcement 220 can also be connected using any other fixing method such as welding or bonding.
[0072] In yet other embodiments, in order to achieve connection between the reinforcement member 220 and the top of the air conditioner body 100, an extension portion extending toward the top of the reinforcement member 220 may be formed on the top of the air conditioner body 100, and the extension portion may be connected to the top of the reinforcement member 220. Alternatively, an extension portion extending toward the top of the air conditioner body 100 may be formed on the top of the reinforcement member 220, and the extension portion may be connected to the top of the air conditioner body 100, and a gap for accommodating a sliding door may also be formed between the reinforcement member 220 and the air conditioner body 100.
[0073] It should be noted that the top connector 300 can be connected to the air guide frame 110 or the display assembly 600 on the top of the air guide frame 110 in any appropriate connection manner.
[0074] To improve the overall strength of top connector 300, top connector 300 optionally includes a first reinforcement structure 311, which is used to increase the strength of top connector 300 while also facilitating lightweighting of top connector 300. First reinforcement structure 311 may include protrusions and / or depressions; that is, first reinforcement structure 311 may adopt any suitable structure. For example, when top connector 300 is a sheet metal component, first reinforcement structure 311 may be a protrusion or depression formed on the sheet metal component, or a combination of protrusions and depressions, thereby improving the strength of top connector 300 through structural design or deformation reinforcement.
[0075] In order to facilitate the connection between the top connector 300 and the top of the air conditioner body 100 , optionally, a first positioning structure is provided between the top connector 300 and the top of the air conditioner body 100 .
[0076] In some embodiments, when the air conditioner body 100 includes the air guide frame 110, in order to achieve the positioning of the top connecting member 300 and the air guide frame 110 when they are installed, as shown in FIG. Figure 7 、 Figure 21As shown, the first positioning structure includes a first positioning portion 312 provided or formed on the top connector 300, and a first positioning and matching portion 112 provided on the air guide frame 110 of the air conditioner body 100. The first positioning portion 312 cooperates with the first positioning and matching portion 112 of the air guide frame 110 to position the top connector 300 and the air guide frame 110 during installation. For example, the first positioning portion 312 can be configured as a through hole, and the first positioning and matching portion 112 can be a boss or positioning pin provided on the top of the air guide frame 110 or the top of the display assembly 600. By cooperating between the through hole and the boss or positioning pin, the top connector 300 and the air guide frame 110 are positioned during installation.
[0077] like Figure 14 and Figure 19 As shown, optionally, the air conditioner body 100 is provided with a second connecting portion 131, and the second connecting portion 131 is located below the air outlet 101, and the reinforcement member 220 is connected to the second connecting portion 131. In particular, a second matching portion 225 is provided on the reinforcement member 220 corresponding to the second connecting portion 131 of the air conditioner body 100, and the connection between the second connecting portion 131 and the second matching portion 225 is used to achieve the connection between the reinforcement member 220 and the air conditioner body 100 below the air outlet 101.
[0078] In some embodiments, the air conditioner body 100 may further include an air guide frame 110 and a lower support frame 130 connected to the bottom of the air guide frame 110, wherein the lower support frame 130 is provided with or has a second connecting portion 131; the reinforcement member 220 includes a second mating portion 225 corresponding to the second connecting portion 131; the second connecting portion 131 and the second mating portion 225 are connected to connect the reinforcement member 220 to the lower support frame 130. The second connecting portion 131 and the second mating portion 225 may also be any suitable structural form. For example, the second connecting portion 131 and the second mating portion 225 may both be through holes, and the two may be connected by a bolt assembly. Of course, one of the second connecting portion 131 and the second mating portion 225 may also be a through hole, and the other may be a screw hole, and the two may be connected by screws.
[0079] like Figure 14 and Figure 20As shown, the air conditioner body 100 further comprises a base 140, and the reinforcing member 220 is connected to the base 140 to further improve the connection strength with the air conditioner body 100. In some embodiments, the reinforcing member 220 can comprise a third connecting portion 226; the air conditioner body 100 further comprises a base 140 connected to the lower support frame 130, and the base 140 has a third matching portion 141; the third connecting portion 226 and the third matching portion 141 are connected to connect the reinforcing member 220 to the base 140. By connecting the first connecting portion 221 of the reinforcing member 220 to the top connecting member 300 and the top of the air deflector 110, connecting the second connecting portion 131 to the lower support frame 130, and connecting the third connecting portion 226 to the third matching portion 141 of the base 140, the reinforcing member 220 is connected to the main components of the air conditioner to form a whole, thereby improving the overall strength and rigidity of the first side plate structure 200.
[0080] As shown in Figure 14 and Figure 17 As shown, the air conditioner body 100 further comprises a rear frame 120, and the reinforcing member 220 is connected to the rear frame 120. In some embodiments, the air conditioner body 100 comprises the air deflector 110 and the rear frame 120 connected to each other, wherein the front end of the air deflector 110 forms the air outlet 101, the rear frame 120 has an air inlet formed thereon, the reinforcing member 220 comprises a fourth connecting portion 223, and the rear frame 120 comprises a fourth matching portion 121, the fourth connecting portion 223 and the fourth matching portion 121 can be connected to fix the rear part of the reinforcing member 220 to the rear frame 120, thereby improving the overall strength of the reinforcing member 220. It can be understood that the rear part of the reinforcing member 220 can be integrally formed with a flange, and the fourth connecting portion 223 (e.g. a through hole) can be formed on the flange, thereby facilitating the connection with the rear frame 120.
[0081] It should be noted that the fourth connecting portion 223 and the fourth matching portion 121 can be multiple, the multiple fourth connecting portions 223 are arranged on the reinforcing member 220 in the up-down direction, and the multiple fourth matching portions 121 are arranged on the rear frame 120 in the up-down direction, and the two can correspond one by one.
[0082] It can be understood that the fourth connecting portion 223 and the fourth matching portion 121 can also be any suitable structure, for example, the fourth connecting portion 223 and the fourth matching portion 121 can both be through holes, and the two can be connected by a bolt assembly. Of course, one of the fourth connecting portion 223 and the fourth matching portion 121 can be a through hole, and the other can be a threaded hole, and the two can be connected by a screw.
[0083] Optionally, in order to achieve a more efficient and quick connection between the reinforcement 220 and the air conditioner body 100 and ensure the alignment of each connecting part and the matching part, a second positioning structure is provided between the reinforcement 220 and the air conditioner body 100.
[0084] To facilitate the connection between the reinforcement member 220 and the rear frame 120, that is, to achieve positioning of the reinforcement member 220 when connected to the rear frame 120, in some embodiments, the second positioning structure may include a second positioning portion 224 provided or formed on the reinforcement member 220, and a second positioning and matching portion 123 provided or formed on the rear frame 120 and corresponding to the second positioning portion 224. For example, the second positioning portion 224 may be configured as at least two through holes, and the second positioning and matching portion 123 may be configured as a boss or a positioning pin. By mating the through holes with the boss or the positioning pin, the positioning of the reinforcement member 220 when connected to the rear frame 120 is achieved.
[0085] like Figure 14 and Figure 18 As shown, in some embodiments, the second positioning structure further includes a third positioning portion 228 provided on or formed on the reinforcement member 220, and a third positioning matching portion 132 provided on or formed on the lower support frame 130 and corresponding to the third positioning portion 228. With reference to the second positioning portion 224 and the second positioning matching portion 123, for example, the third positioning portion 228 can be configured as at least two through holes, and the third positioning matching portion 132 can be configured as a boss or a positioning pin. By matching the through holes with the boss or the positioning pin, the positioning of the reinforcement plate when connected to the lower support frame 130 is achieved.
[0086] The first side panel 210 and the reinforcement member 220 may be connected in any suitable manner. In some embodiments, the first side panel 210 and the reinforcement member 220 are connected by snapping, and the connection structure is simple and convenient.
[0087] like Figure 9 and Figure 10 As shown, in one embodiment, the inner wall of the first side panel 210 may be formed with a buckle 211, and the reinforcement 220 may be formed with a slot 222 corresponding to the buckle 211, and the buckle 211 and the slot 222 cooperate to connect the first side panel 210 and the reinforcement 220.
[0088] The inner sidewall of the first side panel 210 may be formed with a plurality of clips 211, and the corresponding reinforcement member 220 may also be formed with a plurality of slots 222. The clips 211 correspond to the slots 222 in a one-to-one manner and are connected by a snap fit. The clips 211 and slots 222 may be arranged at intervals in the vertical, left-right, and front-back directions. For example, a plurality of clips 211 can be formed at the front of the first side panel 210, and a plurality of slots 222 can be arranged at the front of the corresponding reinforcement 220. After the two are connected, the front of the first side panel 210 can be connected to the front of the reinforcement 220; a plurality of clips 211 can be formed at the middle of the first side panel 210, and a plurality of slots 222 can be arranged at the middle of the corresponding reinforcement 220. After the two are connected, the middle of the first side panel 210 can be connected to the middle of the reinforcement 220; in addition, a plurality of slots 222 arranged in the up-down direction can be formed at the rear of the reinforcement 220. Similarly, a plurality of clips 211 arranged in the up-down direction can be formed at the rear of the first side panel 210. Through the snap-fitting of the two, the connection between the first side panel 210 and the rear of the reinforcement 220 is achieved.
[0089] It should be noted that the specific structures of the buckle 211 and the slot 222 can be designed with reference to the known structures in the relevant technology, and will not be described in detail here.
[0090] Since the reinforcement 220 can support the first side panel 210 in the middle and rear portions, the edge of the first side panel 210 facing the air inlet has no effective support and its overall strength is relatively weak. Optionally, the first side panel structure 200 further includes a column 230 connected to the edge of the first side panel 210 near the air outlet 101. By arranging the column 230 extending in the vertical direction at the edge of the first side panel 210 near the air outlet 101, the strength of this edge is improved.
[0091] The columns 230 can be arranged at the edge of the first side plate in any suitable manner, such as Figure 13 As shown, in some embodiments, a bent portion 2121 is formed on the edge of the first side panel 210 near the air outlet 101, and the inner side wall of the first side panel 210 is formed with a clamping portion 2122, and the column 230 is clamped between the bent portion 2121 and the clamping portion 2122. The bent portion 2121 can extend along the edge of the first side panel 210 in the vertical direction, and the clamping portion 2122 can be multiple and spaced apart in the vertical direction. The bent portion 2121 and the multiple clamping portions 2122 define an installation space 212. The column 230 can be inserted from one end of the installation space 212 and clamped into the installation space 212, facilitating the installation of the column 230.
[0092] In order to improve the strength and rigidity of the reinforcement 220 body, as Figure 9 and Figure 10As shown, in some embodiments, the reinforcement member 220 includes a second reinforcement structure 227, which includes raised portions and / or recessed portions. Specifically, the reinforcement member 220 may include multiple outwardly convex raised portions or inwardly concave recessed portions, thereby forming the second reinforcement structure 227 to enhance the strength of the reinforcement member 220. Of course, the second reinforcement structure 227 may also include both raised portions and recessed portions, which can also serve to strengthen the reinforcement member 220.
[0093] According to a second aspect of the present disclosure, an air conditioner is also provided, which may include a sliding door 500 and the above-mentioned frame structure. Therefore, the air conditioner also has all the advantages of the above-mentioned frame structure, which will not be described in detail here.
[0094] The air conditioner may include an air conditioner main body 100 consisting of an air guide frame 110, a rear frame 120, a lower support frame 130 and a base 140, and also includes a first side panel structure 200 installed on the left side of the front part of the air conditioner main body 100 and a second side panel structure 400 on the right side. An air inlet is formed in the middle of the air guide frame 110, and a display component 600 is installed above the air inlet. The air inlet and the display component 600 are blocked by a sliding door 500 installed between the first side panel structure 200 and the second side panel structure 400, and the sliding door 500 can slide laterally to the gap between the first side panel structure 200 and the air guide frame 110 to open the air inlet and expose the display component 600. The first side panel structure 200 includes a first side panel 210 and a reinforcement member 220 connected to the inner sidewall of the first side panel 210. The upper portion of the reinforcement member 220 is connected to the top of the air conditioner body 100, and the lower portion of the reinforcement member 220 is connected to the lower portion of the air outlet 101 of the air conditioner body 100. A gap is provided between the reinforcement member 220 and the air conditioner body 100 for sliding the sliding door 500. Since the first side panel 210 is connected to the reinforcement member 220, the top portion of the reinforcement member 220 is connected to the top of the air conditioner body 100, and the lower portion of the reinforcement member 220 is connected to the corresponding position below the air outlet 101 of the air conditioner body 100, thereby connecting the first side panel 210 to the air conditioner body 100. Furthermore, the reinforcement member 220 provides support for the first side panel 210, thereby improving the overall strength of the first side panel 210.
[0095] It should be noted that the air conditioner may also include other components necessary for a cabinet air conditioner, such as a heat pump system, a fresh air system, etc., to meet the normal operation needs of the air conditioner.
[0096] The present invention discloses a framework structure for a sliding door and an air conditioner. The framework structure includes an air conditioner body 100 and a first side panel structure 200. The first side panel structure 200 includes a first side panel 210 and a reinforcement member 220 connected to the first side panel 210. The upper portion of the reinforcement member 220 is connected to the top of the air conditioner body 100, and a gap is formed between the reinforcement member 220 and the air conditioner body 100 for sliding the sliding door 500. Through the above arrangement, the first side panel 210 and the reinforcement member 220 are connected, with the upper portion of the reinforcement member 220 connected to the top of the air conditioner body 100 and the lower portion of the reinforcement member 220 connected to a corresponding position below the air outlet 101 of the air conditioner body 100, thereby connecting the first side panel 210 to the air conditioner body 100. At the same time, the reinforcement member 220 can provide support for the first side panel 210, thereby improving the overall strength of the first side panel 210.
[0097] The preferred embodiments of the present disclosure are described in detail above in conjunction with the accompanying drawings. However, the present disclosure is not limited to the specific details of the above embodiments. Within the technical concept of the present disclosure, various simple modifications can be made to the technical solutions of the present disclosure, and these simple modifications all fall within the scope of protection of the present disclosure.
[0098] It should also be noted that the various specific technical features described in the above specific embodiments can be combined in any appropriate manner without contradiction. In order to avoid unnecessary repetition, the present disclosure will not further describe various possible combinations.
[0099] In addition, the various embodiments of the present disclosure may be arbitrarily combined, and as long as they do not violate the concept of the present disclosure, they should also be regarded as the contents disclosed by the present disclosure.
Claims
1. A frame structure for a sliding door, characterized in that: include: an air conditioner main body having an air outlet; and The first side panel structure is arranged on one side of the air outlet in the left and right directions. The first side panel structure includes a first side panel and a reinforcement connected to the inner wall of the first side panel. The upper part of the reinforcement is connected to the top of the air conditioner body, and the lower part of the reinforcement is connected to the air conditioner body and is located below the air outlet. There is a gap between the reinforcement and the air conditioner body for the sliding door to slide.
2. The frame structure for a sliding door according to claim 1, characterized in that: The skeleton structure further includes a top connecting piece connected to the top of the air conditioner main body; the top connecting piece protrudes from the edge of the air conditioner main body and is connected to the reinforcement piece.
3. The frame structure for a sliding door according to claim 2, characterized in that: A first connecting portion is provided on the top of the reinforcement, and a first matching portion matching with the first connecting portion is provided on the side of the top connection member close to the reinforcement.
4. The frame structure for a sliding door according to claim 2, characterized in that: The top connector includes a first reinforcement structure including protrusions and / or recesses.
5. The frame structure for a sliding door according to claim 4, characterized in that: A first positioning structure for positioning the top connecting piece and the top of the air conditioner body is provided between the top connecting piece and the top of the air conditioner body.
6. The frame structure for a sliding door according to claim 1, characterized in that: The air conditioner main body is provided with a second connecting portion, the second connecting portion is located below the air outlet, and the reinforcement is connected to the second connecting portion.
7. The frame structure for a sliding door according to claim 6, characterized in that: The air conditioner main body further includes a lower support frame, and the second connecting portion is connected to the lower support frame.
8. The frame structure for a sliding door according to claim 1, characterized in that: The air conditioner main body further includes a base, and the reinforcement is connected to the base.
9. The frame structure for a sliding door according to claim 1, characterized in that: The air conditioner main body further includes a rear frame, and the reinforcement is connected to the rear frame.
10. The frame structure for a sliding door according to claim 1, characterized in that: The first side plate is snap-connected to the reinforcement.
11. The frame structure for a sliding door according to claim 1, characterized in that: The first side panel structure further includes a column connected to an edge of the first side panel close to the air outlet.
12. The frame structure for a sliding door according to claim 11, characterized in that: The edge of the first side plate close to the air outlet is formed with a bent portion that bends and extends inward; A clamping portion is formed on the inner side wall of the first side plate, and the column is clamped between the bent portion and the clamping portion.
13. The frame structure for a sliding door according to claim 1, characterized in that: A second positioning structure for positioning the reinforcement and the air conditioner body is provided between the reinforcement and the air conditioner body.
14. The frame structure for a sliding door according to any one of claims 1 to 13, characterized in that: The reinforcement member includes a second reinforcement structure including a raised portion and / or a recessed portion.
15. An air conditioner, characterized in that: The invention comprises a sliding door and the skeleton structure according to any one of claims 1 to 14.