Mounting plate assembly and mobile air conditioner assembly

By designing a movable first and second plate and a locking mechanism, the problem of cumbersome manufacturing and assembly of the mobile air conditioner mounting plate assembly is solved, achieving convenient installation adaptability and stability, and reducing production complexity and cost.

CN223610334UActive Publication Date: 2025-11-28HISENSE (GUANGDONG) AIR CONDITIONER
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Patent Information

Application Number
CN202520216765.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-11
Publication Date
2025-11-28
Estimated Expiration
2035-02-11

AI Technical Summary

Technical Problem

The existing manufacturing and assembly process for portable air conditioner mounting plate components is cumbersome, making it difficult to balance the needs of easy manufacturing and easy assembly.

Method used

The structure includes a first plate and a second plate. The second plate is movably connected to the first plate. The first and second locking parts of the locking mechanism enable flexible adjustment and stable fixation. The locking mechanism does not require holes to be made on the plate. It uses guide grooves and threaded connections to achieve convenient locking.

Benefits of technology

It simplifies the manufacturing process of mounting plate components, improves assembly efficiency and stability, reduces production costs, and adapts to the installation needs of different window sizes and specifications.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of air conditioners, in particular to a mounting plate assembly and a movable air conditioner assembly. In the embodiment of the invention, the first locking piece and the second locking piece are movably matched and connected, and the second locking piece and the first plate body can define the clamping space, so that when the first locking piece moves to one side of the second plate body along the first direction, the second locking piece can be directly operated to switch the locking mechanism to the locking state; therefore, the operation in the locking process is simpler and more convenient, and the mounting plate assembly is convenient to assemble. According to the locking mode provided by the embodiment of the invention, the operation of manufacturing holes in the plate bodies is not needed, so that the manufacturing time of the mounting plate assembly can be saved, the mounting plate assembly is convenient to manufacture, the problem of the alignment degree of the first plate body and the second plate body can be solved, and assembling of the locking mechanism is facilitated. Therefore, according to the mounting plate assembly provided by the embodiment of the invention, the mounting plate assembly can be conveniently assembled while being conveniently manufactured.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of air conditioners, in particular to an installation plate assembly and a mobile air conditioner assembly. BACKGROUND

[0002] When the mobile air conditioner is fixedly installed with the window, a suitable structure needs to be selected according to the size and installation position of the window, and different installation plate assemblies also need to be formulated according to different windows. The installation plate assembly is used for installing the air pipe of the mobile air conditioner.

[0003] However, in order to meet the use scenarios of windows of different size specifications, the manufacturing and assembly processes of the installation plate assembly are relatively cumbersome, and it is difficult to balance the requirements of convenient manufacturing and convenient assembly. CONTENT OF THE UTILITY MODEL

[0004] Therefore, it is necessary to provide an installation plate assembly and a mobile air conditioner assembly to facilitate the manufacturing and assembly of the installation plate assembly.

[0005] The installation plate assembly provided by the embodiments of the present application is used for a mobile air conditioner, and the installation plate assembly comprises:

[0006] a plurality of plate bodies, the plurality of plate bodies comprising a first plate body and a second plate body, the first plate body being provided with a guide groove extending in a first direction, and the second plate body being configured to be movably connected to the first plate body in the first direction; at least one first plate body and / or at least one first plate body being provided with a mounting hole for mounting an air pipe of the mobile air conditioner; and

[0007] a locking mechanism comprising a first locking member and a second locking member; one end of the first locking member being configured to be movably fitted into the guide groove, and the other end of the first locking member being movably connected to the second locking member, so that the locking mechanism has a locked state and an unlocked state;

[0008] When the locking mechanism is locked to the first plate body and the second plate body assembled with each other, the first locking member is located on one side of the second plate body in the first direction, and the second locking member and the first plate body define a clamping space for clamping the second plate body, so that the connected first plate body and the second plate body are relatively fixed; when the locking mechanism is switched from the locked state to the unlocked state, the relatively fixed first plate body and the second plate body can be separated.

[0009] The above technical solution has the following advantages or beneficial effects:

[0010] By configuring the plurality of plate bodies to include a first plate body and a second plate body, and enabling the second plate body to be movably connected to the first plate body along a first direction, the size of the plurality of plate bodies along the first direction after assembly can be flexibly adjusted according to the size specification of the window. By configuring the locking mechanism to include a first locking piece and a second locking piece, and enabling the first locking piece to movably fit with the guide groove on the first plate body along the first direction, the position of the first locking piece can be adjusted according to the relative position between the first plate body and the second plate body, and the first plate body and the second plate body are locked by the clamping space defined by the second locking piece and the first plate body, so that the relative fixation of the connected first plate body and second plate body is realized. In this process, since the first locking piece and the second locking piece are movably connected, and the second locking piece can define a clamping space with the first plate body, when the first locking piece moves to one side of the second plate body along the first direction, the locking mechanism can be directly switched to the locked state by operating the second locking piece, so that the operation of the locking process is more convenient, and the assembly of the plate assembly is facilitated. Compared with the method of making holes on the plate body and then passing the holes to realize locking, the locking method provided in the embodiment of the application does not need to perform the operation of making holes on the plate body, so that not only the manufacturing time of the plate assembly can be saved, but also the manufacturing of the plate assembly is facilitated, and the alignment problem of the first plate body and the second plate body is improved, which is beneficial to the assembly of the locking mechanism. Therefore, the plate assembly provided in the embodiment of the application can facilitate the manufacturing and assembly of the plate assembly.

[0011] In some embodiments of the application, at least one side of the second plate body arranged along the first direction is provided with a matching part; the matching part is configured to limit the first locking piece or the second locking piece.

[0012] The above technical solution has the following advantages or beneficial effects:

[0013] By providing the matching part, not only the stability of the locking can be improved when the locking mechanism is in the locked state, but also the installation position reference for the first locking piece or the second locking piece can be provided during the assembly of the plate assembly, and the installation efficiency and accuracy are further improved.

[0014] In some embodiments of the application, the matching part is configured as a notch, the notch penetrates one side of the second plate body along the first direction, and penetrates the second plate body along a second direction, the notch is used to limit the first locking piece; the first direction and the second direction intersect with each other, and the second direction and the thickness direction of the plate body are parallel to each other; or

[0015] The second plate body has a first side and a second side oppositely arranged along a second direction, the first side is used for abutting with the second locking member; the matching part is configured as a recess, the recess penetrates through one side of the second plate body along the first direction, and is recessed along a direction from the first side to the second side, the recess is used for limiting the second locking member; the first direction and the second direction intersect with each other, and the second direction and the thickness direction of the plate body are parallel to each other.

[0016] The above technical solution has the following advantages or beneficial effects:

[0017] By configuring the matching part as a notch, not only can the first locking member provide a locking space and a limiting space, thereby facilitating the second locking member and the first plate body to define a more stable and reliable clamping space, thereby improving the stability and reliability of the locking mechanism, but also the notch can be manufactured at the same time as the second plate body, thereby reducing the complexity and cost of the production process. By configuring the matching part as a recess, not only can the second locking member provide more stable support and limiting effect, thereby enhancing the locking effect of the entire locking mechanism, making the connection between the first plate body and the second plate body more firm and reliable, but also when the second locking member is subjected to a force, the force can be dispersed to a larger area, thereby improving the structural strength and stability of the mounting plate assembly. In addition, the recess can also be manufactured at the same time as the second plate body, thereby reducing the complexity and cost of the production process.

[0018] In some embodiments of the present application, the first locking member includes a first body part and a second body part connected to the first body part; the first body part is used for movably cooperating with the guide groove, and the second body part is threadedly connected with the second locking member.

[0019] The above technical solution has the following advantages or beneficial effects:

[0020] By threadedly connecting the second body part with the second locking member, the locking mechanism can be switched between the locked state and the unlocked state by rotating the second locking member, thereby further improving the assembly convenience of the mounting plate assembly.

[0021] In some embodiments of the present application, the first locking member further includes a third body part, the third body part is arranged at an end of the second body part away from the first body part; the third body part is configured to limit the second locking member from being separated from the first locking member.

[0022] The above technical solution has the following advantages or beneficial effects:

[0023] By arranging the third body part, not only can the first locking member and the second locking member remain in a connected state, thereby simplifying the operation of assembling the first locking member and the second locking member, and facilitating to improve the installation efficiency, but also the mechanism reliability and maintainability of the locking mechanism can be enhanced.

[0024] In some embodiments of the present application, the second locking member is provided with a through hole, the through hole comprises a first hole section and a second hole section arranged along the opening direction of the through hole, and the first hole section and the second hole section communicate with each other; the inner wall of the first hole section is threadedly connected with the outer wall of the second body part, and the third body part is clamped in the second hole section.

[0025] The above technical solution has the following advantages or beneficial effects:

[0026] By arranging the through hole into the first hole section and the second hole section, since the inner wall of the first hole section has threads and the inner wall of the second hole section is not provided with threads, it is beneficial to threadedly connect the second locking member and the second body part while facilitating the clamping of the third body part with the second locking member.

[0027] In some embodiments of the present application, the third body part comprises a plurality of sub-body parts; the plurality of sub-body parts are arranged at one end of the second body part away from the first body part and define a deformable space.

[0028] The above technical solution has the following advantages or beneficial effects:

[0029] By defining the deformable space, the plurality of sub-body parts can generate a certain elastic restoring force after being clamped into the second hole section, thereby exerting a clamping force on the inner wall of the second hole section, which is beneficial not only to the clamping of the third body part and the second locking member, but also to further enhancing the connection stability between the first locking member and the second locking member.

[0030] In some embodiments of the present application, the sub-body part has a first end connected to one end of the second body part away from the first body part, and a second end arranged opposite to the first end; the second end of the sub-body part is configured as a free end.

[0031] The above technical solution has the following advantages or beneficial effects:

[0032] By configuring the sub-body part as one end connected to the second body part and the other end as a free end, the deformable space can be defined between the plurality of sub-body parts. When the third body part is clamped into the second hole section, the second end of the sub-body part can be self-adaptively adjusted according to the inner wall of the second hole section, better fitting the inner wall of the second hole section, thereby facilitating the clamping of the third body part in the second hole section and also being beneficial to improving the tightness and stability of the clamping. In addition, such a sub-body part is also easy to manufacture and is more conducive to forming a deformable space.

[0033] In some embodiments of the present application, the third body part further comprises a clamping hook part arranged at the second end of the sub-body part; the clamping hook part is used for clamping on one side of the second locking member away from the first locking member.

[0034] The above technical solution has the following advantages or beneficial effects:

[0035] Since the hooking part can hook the second locking member away from the side of the first locking member, the limiting effect can be provided, the risk of the second locking member falling off the first locking member is reduced, and the reliability of the locking is further improved.

[0036] In some embodiments of the present application, the guide groove extends through both sides of the first plate body in the first direction.

[0037] The above technical solution has the following advantages or beneficial effects:

[0038] In the assembly process, the first locking member is conveniently inserted into the guide groove from any side of the first plate body in the first direction, more assembly operation space is provided, and therefore the installation difficulty can be reduced and the assembly efficiency can be improved.

[0039] The embodiment of the present application provides a mobile air conditioner assembly, which comprises:

[0040] The mobile air conditioner has an air pipe; and

[0041] In any of the above embodiments, one end of the air pipe is connected to the mounting plate assembly through the mounting hole.

[0042] The above technical solution has the following advantages or beneficial effects:

[0043] Since the mounting plate assembly has the convenience of manufacturing and assembly, the air pipe of the mobile air conditioner is facilitated to be installed, the overall assembly process is more flexible, and the use of windows of different sizes can be met.

[0044] Additional aspects and advantages of the embodiments of the present application will be given in part in the following description, become apparent from the following description, or be understood by those skilled in the art through the practice of the embodiments of the present application. BRIEF DESCRIPTION OF DRAWINGS

[0045] Various other advantages and benefits will become apparent to those of ordinary skill in the art upon reading the following detailed description of the embodiments. The accompanying drawings are intended to only illustrate embodiments and are not considered limiting of the present application. Moreover, like reference numerals designate like parts throughout the several views in the drawings. In the drawings:

[0046] Figure 1 A perspective structural schematic view of the mounting plate assembly provided for some embodiments of the present application is shown in the figure;

[0047] Figure 2 A partially exploded structural schematic view of the mounting plate assembly provided for some embodiments of the present application is shown in the figure;

[0048] Figure 3 A perspective structural schematic view of the mounting plate assembly provided for some embodiments of the present application is shown in the figure;

[0049] Figure 4 Partial exploded structural schematic view of the mounting plate assembly according to some embodiments of the present application;

[0050] Figure 5 Partial enlarged structural schematic view of the mounting plate assembly according to some embodiments of the present application; Figure 2

[0051] Figure 6 Perspective structural schematic view of the mounting plate assembly according to some embodiments of the present application;

[0052] Figure 7 Perspective structural schematic view of the mounting plate assembly according to some embodiments of the present application;

[0053] Figure 8 Structural schematic view of the cooperation between the first plate body and the locking mechanism according to some embodiments of the present application;

[0054] Figure 9 Side structural schematic view of the mounting plate assembly according to some embodiments of the present application;

[0055] Figure 10 Partial enlarged structural schematic view of the mounting plate assembly according to some embodiments of the present application; Figure 9

[0056] Side structural schematic view of the second plate body according to some embodiments of the present application; Figure 11

[0057] Perspective structural schematic view of the second plate body according to some embodiments of the present application; Figure 12

[0058] Partial structural schematic view of the cooperation between the second locking member and the second plate body according to some embodiments of the present application; Figure 13

[0059] Structural schematic view of the locking mechanism according to some embodiments of the present application; Figure 14

[0060] Partial structural schematic view of the cooperation between the first locking member and the second plate body according to some embodiments of the present application; Figure 15 Figure 14 Partial structural schematic view of the cooperation between the first locking member and the second plate body according to some embodiments of the present application;

[0061] Figure 16 Figure 15 Exploded structural schematic view of the structure shown in the figure;

[0062] Figure 17 Structural schematic view of the first locking member according to some embodiments of the present application;

[0063] Figure 18 ​​​A perspective view of the mounting plate assembly according to some embodiments of the present application is shown in FIG. 1A.

[0064] Figure 19 A perspective view of the mounting plate assembly according to some embodiments of the present application is shown in FIG. 1A.

[0065] Figure 20 A perspective view of the mounting plate assembly according to some embodiments of the present application is shown in FIG. 1A.

[0066] Figure 21 A perspective view of the mounting plate assembly according to some embodiments of the present application is shown in FIG. 1A.

[0067] Figure 22 A perspective view of the mounting plate assembly according to some embodiments of the present application is shown in FIG. 1A.

[0068] Legend of reference signs:

[0069] Mounting plate assembly 100;

[0070] Plate body 110, mounting hole ak, first plate body 110a, guide groove g, second plate body 110b, fitting part p, notch q, recess x, first side s1, second side s2, third plate body 110c, sliding groove hc, sliding part hb;

[0071] Locking mechanism 120, first locking part 121, first body part 1211, second body part 1212, third body part 1213, sub-body part 12131, first end e1, second end e2, hook part 12132, deformable space E, second locking part 122, through hole tk, first hole segment tk1, second hole segment tk2, clamping space J;

[0072] Mounting structure 130;

[0073] First direction F1, second direction F2, third direction F3. DETAILED DESCRIPTION

[0074] In order to make the above objectives, features and advantages of the present application more apparent, specific embodiments of the present application will be described in detail below with reference to the accompanying drawings. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present application. It will be apparent, however, to one skilled in the art that the present application can be practiced without some or all of these details under other conditions and / or methods. Therefore, the specific details disclosed herein should not be interpreted as limiting the scope of the present application but merely as exemplifying the preferred embodiments thereof.

[0075] In the description of the application, it should be understood that, if there are these terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like, these terms indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the application.

[0076] In addition, if there are these terms "first", "second", these terms are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined as "first", "second" can explicitly or implicitly include at least one of the features. In the description of the application, if the term "multiple" appears, the meaning of "multiple" is at least two, such as two, three, etc., unless otherwise explicitly specified and limited.

[0077] In this application, unless otherwise explicitly specified and limited, if there are terms such as "mounting", "connecting", "connecting", "fixing" and the like, these terms should be broadly understood. For example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the internal communication of two elements or the interaction relationship between two elements, unless otherwise explicitly limited. For those skilled in the art, the specific meaning of the above terms in this application can be understood according to the specific circumstances.

[0078] In this application, unless otherwise explicitly specified and limited, if there are similar descriptions such as "first feature on or under second feature", the meaning can be that the first and second features are in direct contact, or the first and second features are indirectly in contact through an intermediate medium. Moreover, the first feature "above", "above" and "above" of the second feature can be that the first feature is directly above or obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature "below", "below" and "below" of the second feature can be that the first feature is directly below or obliquely below the second feature, or only indicates that the horizontal height of the first feature is less than that of the second feature.

[0079] It should be noted that, if an element is referred to as being "fixed" or "set" on another element, it can be directly on the other element or there can be an intervening element. If an element is referred to as being "connected" to another element, it can be directly connected to the other element or there can be an intervening element. If present, the terms "vertical", "horizontal", "upper", "lower", "left", "right", and similar terms used herein are for purposes of description and are not meant to be limiting.

[0080] In some embodiments, please refer to Figure 1 and Figure 2 , Figure 1 a perspective view of a mounting plate assembly 100 provided by some embodiments of the present application, Figure 2 a partially exploded view of the mounting plate assembly 100 provided by some embodiments of the present application, the mounting plate assembly 100 provided by embodiments of the present application is used in a mobile air conditioner. The mobile air conditioner is a complete machine in which a compressor, an evaporator and a condenser are integrated together, and the complete machine is installed indoors. In addition to being provided with an air inlet and an air outlet for heat exchange of the evaporator, the mobile air conditioner is also provided with a telescopic air pipe for heat exchange of the condenser, the air pipe including an air inlet pipe and an air outlet pipe, the air inlet pipe and the air outlet pipe being in communication with the outdoor environment respectively, so as to be able to take in air and exhaust air, achieving the purpose of outdoor heat exchange. The mounting plate assembly 100 provided by embodiments of the present application includes a plurality of plate bodies 110 and a locking mechanism 120.

[0081] The plate body 110 refers to a sheet structure or component with a certain thickness and a relatively large planar dimension. The relatively large planar dimension is relative to the thickness dimension of the plate body 110. The plate body 110 is the main component constituting the mounting plate assembly 100. The mounting plate assembly 100 can include two plate bodies 110, or three plate bodies 110, or other number of plate bodies 110, which is not specifically limited here. For example, Figure 1 and Figure 2 for example, a case where the plate body 110 is provided with two is shown. For example, Figure 3 and Figure 4 for example, Figure 3 a perspective view of a mounting plate assembly 100 provided by some other embodiments of the present application, Figure 4 a partially exploded view of the mounting plate assembly 100 provided by some embodiments of the present application, showing a case where the plate body 110 is provided with three.

[0082] The plurality of plate bodies 110 includes a first plate body 110a and a second plate body 110b, the first plate body 110a is provided with a guide groove g extending along the first direction F1, and the second plate body 110b is configured to be movably connected to the first plate body 110a along the first direction F1. At least one first plate body 110a and / or at least one first plate body 110a is provided with a mounting hole ak for mounting the air duct of the mobile air conditioner.

[0083] The number of first plate bodies 110a and second plate bodies 110b can be the same or different. The first plate body 110a is provided with at least one, and the second plate body 110b is provided with at least one. Herein, no specific limitation is made. Figure 1 and Figure 2 For example, it is shown that the first plate body 110a and the second plate body 110b are each provided with one. For example, Figure 3 and Figure 4 For example, it is shown that the first plate body 110a is provided with one, and the second plate body 110b is provided with two.

[0084] The guide groove g is a structure for guiding the movement of a component (the first locking member 121 shown below) along the first direction F1. The guide groove g can be formed by cutting or other means to form a recessed structure recessed along the second direction F2 on the first plate body 110a, or it can be formed by extrusion molding or other molding methods. For example, referring to Figure 5 , Figure 5 For example, Figure 2 the local enlarged structure at M in FIG. 8, the guide groove g can be formed by extrusion molding, and no specific limitation is made herein.

[0085] It should be noted that the second direction F2 and the thickness direction of the plate body 110 are parallel to each other, and the first direction F1 and the second direction F2 intersect each other. For example, in the embodiments of the present application, the first direction F1, the second direction F2 and the third direction F3 are perpendicular to each other, the first direction F1 is parallel to the length direction of the plate body 110, and the third direction F3 is parallel to the width direction of the plate body 110, but it is not limited thereto. For example, the first direction F1 can also be parallel to the width direction of the plate body 110, and the third direction F3 can also be parallel to the length direction of the plate body 110. The dimensions of the plate body 110 in the length direction and the width direction can be equal or not equal, and no specific limitation is made herein.

[0086] The second plate body 110b and the first plate body 110a can be relatively moved along the first direction F1 when connected. For example, one of the first plate body 110a and the second plate body 110b is provided with a sliding groove hc extending along the first direction F1, and the other is provided with a sliding part hb which can be slid in the sliding groove hc. Along the first direction F1, the sliding groove hc penetrates both sides of the plate body 110 where the sliding groove hc is located along the first direction F1. For example, Figures 1 to 4 For example, the first plate body 110a is provided with a sliding part hb, and the second plate body 110b is provided with a sliding groove hc. Further, the sliding groove hc and the sliding part hb can be configured as a structure embedded with each other, which is not specifically limited here. For example, continuing with Figures 1 to 4 For example, the sliding part hb can be provided on both sides of the first plate body 110a along the third direction F3, and the sliding groove hc can be provided on both sides of the second plate body 110b along the third direction F3.

[0087] The mounting hole ak is provided on the corresponding plate body 110 along the second direction F2. "At least one first plate body 110a and / or at least one first plate body 110a is provided with a mounting hole ak" means that at least one plate body 110 among all plate bodies 110 is provided with a mounting hole ak, which can be a first plate body 110a or a second plate body 110b. For example, Figures 1 to 4 For example, a second plate body 110b is provided with a mounting hole ak. For example, Figure 6 Figure 6 For example, a first plate body 110a and a second plate body 110b are provided with mounting holes ak, respectively. For example, Figure 7 For example, Figure 7 For example, a first plate body 110a and a second plate body 110b are provided with mounting holes ak, respectively. For example,

[0088] The locking mechanism 120 includes a first locking part 121 and a second locking part 122. One end of the first locking part 121 is configured to be movably fitted in the guide groove g, and the other end of the first locking part 121 is movably connected with the second locking part 122, so that the locking mechanism 120 has a locking state and an unlocking state.

[0089] ​The locking mechanism 120 is used to restrict the movement of components or to fix components. Since the guide groove g extends along the first direction F1, one end of the first locking member 121 can movably engage with the guide groove g along the first direction F1. "Movable engagement" refers to a connection method between two components that allows them to be connected together while also allowing a certain degree of relative movement or activity between them. This engagement method is not a rigid fixed connection, but rather has a certain degree of flexibility and mobility, thereby enabling the locking mechanism 120 to switch between a locked state and an unlocked state. In the locked state, the locking mechanism 120 prevents the movement of the relevant component or object, serving a locking and fixing function. In the unlocked state, the relevant component or object can move freely, and the locking mechanism 120 no longer restricts it. The switching between these two states can be achieved through the mutual engagement of the first locking member 121 and the second locking member 122, as well as the movement of the first locking member 121 within the guide groove g.

[0090] Combined with reference Figures 8 to 10 , Figure 8 This is a schematic diagram of the structure of the first plate 110a and the locking mechanism 120 cooperating in some embodiments of this application. Figure 9 This is a side view of the mounting plate assembly 100 provided in some embodiments of this application. Figure 10 for Figure 9 The magnified schematic diagram of the local structure at point N is for illustrative purposes. Figures 8 to 10 The perspective shown is Figure 1 The image shows a side view. When the locking mechanism 120 is locked to the first plate 110a and the second plate 110b assembled together, the first locking member 121 is located on one side of the second plate 110b along the first direction F1. The second locking member 122 and the first plate 110a define a clamping space J for holding the second plate 110b, thus fixing the connected first plate 110a and second plate 110b relatively. When the locking mechanism 120 switches from the locked state to the unlocked state, the relatively fixed first plate 110a and second plate 110b can be separated.

[0091] When the locking mechanism 120 is locked with the first plate body 110a and the second plate body 110b assembled, that is, the first plate body 110a and the second plate body 110b are assembled together, the locking mechanism 120 can keep the relative positions of the first plate body 110a and the second plate body 110b unchanged. At this time, in the first direction F1, the first locking member 121 is located on one side of the second plate body 110b. The "clamping space J" refers to a space formed between the second locking member 122 and the first plate body 110a, which can clamp the second plate body 110b and constrain the second plate body 110b. The second plate body 110b is clamped, that is, the second locking member 122 abuts against the side of the second plate body 110b away from the first plate body 110a along the second direction F2. The position of the clamping space J can be understood in combination with the description of the position of the clamping space J in Figure 8 , Figure 8 It can be understood that, since the second locking member 122 is movably connected to the first locking member 121, the distance between the second locking member 122 and the first plate body 110a can be adjusted, so that the position of the second locking member 122 can be adjusted according to the thickness of the plate body 110 to form a clamping space J that can clamp the second plate body 110b. In combination with the description of the position of the clamping space J in Figure 1 、 Figure 3 、 Figure 6 and Figure 7 , the side of the second plate body 110b close to the corresponding locking mechanism 120 along the first direction F1 is clamped in the corresponding clamping space J. The clamped part of the second plate body 110b and the size of the clamped part can be determined according to the position of the locking mechanism 120 and the structure of the locking mechanism 120, which is not specifically limited here. In this way, through the positional relationship of the first locking member 121 relative to the second plate body 110b and the clamping effect of the second locking member 122 and the first plate body 110a on the second plate body 110b, the relative movement between the first plate body 110a and the second plate body 110b cannot occur, so that the first plate body 110a and the second plate body 110b are relatively locked and fixed.

[0092] Thus, by configuring the plurality of plate bodies 110 to include the first plate body 110a and the second plate body 110b, and enabling the second plate body 110b to be movably connected to the first plate body 110a along the first direction F1, the size of the plurality of plate bodies 110 along the first direction F1 after assembly can be flexibly adjusted according to the size specifications of the window. By configuring the locking mechanism 120 to include the first locking member 121 and the second locking member 122, and enabling the first locking member 121 to movably cooperate with the guide slot g on the first plate body 110a along the first direction F1, the position of the first locking member 121 can be adjusted according to the relative position between the first plate body 110a and the second plate body 110b, and the first plate body 110a and the second plate body 110b are locked by the clamping space J defined by the second locking member 122 and the first plate body 110a, so as to realize the relative fixation of the connected first plate body 110a and the second plate body 110b. In this process, since the first locking member 121 is movably connected with the second locking member 122, and the second locking member 122 can define the clamping space J with the first plate body 110a, when the first locking member 121 moves to one side of the second plate body 110b along the first direction F1, the locking mechanism 120 can be directly switched to the locked state by operating the second locking member 122, so that the operation of the locking process is more convenient, and the assembly of the mounting plate assembly 100 is facilitated. Compared with the way of making holes on the plate body 110 and then passing the holes to realize the locking of the locking mechanism 120, the locking method provided in the embodiment of the present application does not need to perform the operation of making holes on the plate body 110, so that not only the manufacturing time of the mounting plate assembly 100 can be saved, but also the manufacturing of the mounting plate assembly 100 is facilitated, and the alignment problem of the first plate body 110a and the second plate body 110b can be improved, which is beneficial to the assembly of the locking mechanism 120. Thus, the mounting plate assembly 100 provided in the embodiment of the present application can facilitate the manufacturing and assembly of the mounting plate assembly 100.

[0093] It should be noted that the mounting plate assembly 100 shown above can have different separation states in a non-use state, and can have different combination states in a use state, which are not specifically limited here. For example, in the non-use state, any one of the plurality of plate bodies 110 can be independently arranged and not connected between the corresponding plate bodies 110, or when the plurality of plate bodies 110 includes two first plate bodies 110a and one second plate body 110b, one of the first plate bodies 110a and the second plate body 110b are connected, and the other first plate body 110a is independently arranged. For another example, in the use state, when the total number of first plate bodies 110a and second plate bodies 110b is greater than three, all first plate bodies 110a and all second plate bodies 110b can be alternately arranged along the first direction F1. For another example, in the use state, when the total number of first plate bodies 110a and second plate bodies 110b is greater than three, some plate bodies 110 can be selected for combination according to the size specification of the window, so that the total number of first plate bodies 110a and second plate bodies 110b is less than three, and the combination state of the mounting plate assembly 100 is not specifically limited here. In this way, different size specifications of the window can be more flexibly met, and the needs of easy manufacturing and easy assembly can also be considered. It can be understood that the three-dimensional structure diagram of the mounting plate assembly 100 shown above and below in the embodiments of the present application can be understood as a combination state of the mounting plate assembly 100, but the non-use state and the use state of the mounting plate assembly 100 are not limited. Figure 1 The above-mentioned cases or Figure 3 The above-mentioned cases are combined, which are not specifically limited here. In this way, different size specifications of the window can be more flexibly met, and the needs of easy manufacturing and easy assembly can also be considered. It can be understood that the three-dimensional structure diagram of the mounting plate assembly 100 shown above and below in the embodiments of the present application can be understood as a combination state of the mounting plate assembly 100, but the non-use state and the use state of the mounting plate assembly 100 are not limited.

[0094] In some embodiments, please continue to refer to Figures 1 to 4 , Figure 6 , Figure 7 and Figure 10 , and in combination with Figure 11 , Figure 11 the side view structure diagram of the second plate body 110b provided by some embodiments of the present application, at least one side of the second plate body 110b arranged along the first direction F1 is provided with a matching part p. The matching part p is configured to limit the first locking part 121 or the second locking part 122.

[0095] The matching part p is a structure provided on the second plate body 110b and matched with the first locking part 121 or the second locking part 122 in the locking mechanism 120. The second plate body 110b can be provided with the matching part p on both sides arranged along the first direction F1, or the second plate body 110b can be provided with the matching part p on one side arranged along the first direction F1. For example, as shown in FIGS. 1 to Figure 4 , Figure 6 and Figure 7For example, it is shown that the second plate body 110b is provided with the matching part p on both sides along the first direction F1. It can be understood that when the second plate body 110b is provided with the matching part p on both sides along the first direction F1, the installation operation can be performed from one side of the second plate body 110b along the first direction F1, or the installation operation can be performed from the other side of the second plate body 110b along the first direction F1, further increasing the flexibility of installation, and the installation efficiency can be improved.

[0096] By providing the matching part p, not only the stability of the locking can be improved when the locking mechanism 120 is in the locked state, but also the installation position reference for the first locking piece 121 or the second locking piece 122 can be provided during the assembly of the installation plate assembly 100, further improving the installation efficiency and accuracy.

[0097] In some embodiments, please continue to refer to Figures 1 to 4 , Figure 6 , Figure 7 , Figure 10 and Figure 11 , the matching part p is configured as a notch q, the notch q penetrates one side of the second plate body 110b along the first direction F1, and penetrates the second plate body 110b along the second direction F2, and the notch q is used to limit the first locking piece 121.

[0098] The notch q not only penetrates one side of the second plate body 110b in the first direction F1, but also penetrates the entire second plate body 110b in the second direction F2 different from the first direction F1. This means that the notch q can be formed on one side of the second plate body 110b along the first direction F1. When the first locking piece 121 cooperates with the notch q, the edge and shape of the notch q can limit the movement of the first locking piece 121, so that the first locking piece 121 can be in the required position, facilitating the locking function of the locking mechanism 120 to the first plate body 110a and the second plate body 110b. The shape and structure of the notch q can be determined according to the structure of the first locking piece 121, as long as the first locking piece 121 can be limited. For example, the notch q can be a U-shaped port. Of course, the notch q can also be a V-shaped port, which is not limited here.

[0099] In this way, by configuring the matching part p as the notch q, not only can the first locking piece 121 be provided with a locking space and a limiting space, thereby facilitating the second locking piece 122 and the first plate body 110a to define a more stable and reliable clamping space J, thereby improving the stability and reliability of the locking mechanism 120, but also the notch q can be made at the same time when the second plate body 110b is made, reducing the complexity and cost of the production process.

[0100] In some embodiments, please refer to Figure 12 and Figure 13 ,Figure 12 This is a three-dimensional structural diagram of the second plate 110b provided in some other embodiments of this application. Figure 13 This is a partial structural diagram of the second locking member 122 and the second plate 110b provided in some other embodiments of this application. The second plate 110b has a first side s1 and a second side s2 disposed opposite to each other along the second direction F2. The first side s1 is used to abut against the second locking member 122. The mating part p is constructed as a recess x, which penetrates one side of the second plate 110b along the first direction F1 and is recessed in the direction from the first side s1 to the second side s2. The recess x is used to limit the second locking member 122.

[0101] The specific structural form of the mating part p is a recessed portion on the second plate 110b. That is, a recess x is provided on the second plate 110b to serve as a structure for mating with the second locking member 122. The recess x can limit the movement of the second locking member 122. When the second locking member 122 mates with the recess x, the shape, edge, and depth of the recess x will restrict the movement of the second locking member 122.

[0102] Thus, by constructing the mating part p as a recess x, not only can it provide more stable support and limiting effect for the second locking member 122, thereby enhancing the locking effect of the entire locking mechanism 120 and making the connection between the first plate 110a and the second plate 110b more robust and reliable, but it can also distribute the force to a larger area when the second locking member 122 is subjected to force, thereby improving the structural strength and stability of the mounting plate assembly 100. In addition, the recess x can be made simultaneously when manufacturing the second plate 110b, reducing the complexity and cost of the manufacturing process.

[0103] In some embodiments, please refer to Figures 14 to 17 , Figure 14 This is a schematic diagram of the structure of the locking mechanism 120 provided in some embodiments of this application. Figure 15 for Figure 14 A schematic diagram of the cross-sectional structure with the mid-section view along the AA direction. Figure 16 for Figure 15 The diagram shows the exploded structure. Figure 17 The diagram below shows the structure of a first locking member 121 provided in some embodiments of this application. The first locking member 121 includes a first body portion 1211 and a second body portion 1212 connected to the first body portion 1211. The first body portion 1211 is movably fitted into the guide groove g, and the second body portion 1212 is threadedly connected to the second locking member 122.

[0104] The first body part 1211 is capable of moving in the guiding groove g in the first direction F1. The second body part 1212 is threadedly connected with the second locking member 122. The thread connection is to threadedly screw the second body part 1212 and the second locking member 122 together by using the helical structure of the thread, and the distance between the second locking member 122 and the second plate body 110b can be controlled by rotating, and the fastening force for fixing the first plate body 110a and the second plate body 110b relative to each other can be provided, and meanwhile, the disassembly and adjustment can be facilitated when needed.

[0105] In this way, by threadedly connecting the second body part 1212 and the second locking member 122, the locking mechanism 120 can be switched between the locked state and the unlocked state by rotating the second locking member 122, and the assembly convenience of the mounting plate assembly 100 is further improved.

[0106] Of course, in some other embodiments, the second body part 1212 and the second locking member 122 can be configured to be elastically connected. In this way, the second locking member 122 can be clamped with the first plate body 110a by the elastic force. That is, the first plate body 110a and the second plate body 110b can be locked in a tensioning manner. In some other embodiments, the size of the clamping space can also be adjusted by a locking buckle manner, so as to lock the first plate body 110a and the second plate body 110b. As long as the first plate body 110a and the second plate body 110b can be locked by the clamping space, no specific limitation is made herein.

[0107] In some embodiments, please continue to refer to Figures 15 to 17 The first locking member 121 further comprises a third body part 1213, which is arranged at one end of the second body part 1212 away from the first body part 1211, and is configured to limit the second locking member 122 from being detached from the first locking member 121.

[0108] The third body part 1213 and the first body part 1211 are respectively located at two ends of the second body part 1212, and the third body part 1213 is mainly used to limit the second locking member 122 from being detached from the first locking member 121.

[0109] By arranging the third body part 1213, the first locking member 121 and the second locking member 122 can be kept in the connected state, so as to simplify the operation of assembling the first locking member 121 and the second locking member 122, and facilitate to improve the installation efficiency, and the mechanism reliability and maintainability of the locking mechanism 120 can be enhanced.

[0110] In some embodiments, please continue to refer to Figures 15 to 17The second locking member 122 is provided with a through hole tk, the through hole tk includes a first hole section tk1 and a second hole section tk2 arranged along the opening direction of the through hole tk, and the first hole section tk1 and the second hole section tk2 communicate with each other. The inner wall of the first hole section tk1 is threadedly connected with the outer wall of the second body part 1212, and the third body part 1213 is clamped in the second hole section tk2.

[0111] The hole diameter of the first hole section tk1 and the hole diameter of the second hole section tk2 can be the same or different. The second hole section tk2 can be a constant-diameter hole or not, which is not specifically limited here. For example, Figure 15 and Figure 16 For example, the case where the second hole section tk2 is a constant-diameter hole is shown.

[0112] By arranging the through hole tk as the first hole section tk1 and the second hole section tk2, since the inner wall of the first hole section tk1 has threads and the inner wall of the second hole section tk2 is not provided with threads, it is beneficial to facilitate the clamping of the third body part 1213 with the second locking member 122 while threadedly connecting the second locking member 122 and the second body part 1212.

[0113] In some embodiments, please continue to refer to Figures 15 to 17 The third body part 1213 is configured to have elasticity.

[0114] Since the third body part 1213 can elastically deform under the action of an external force and can recover after the external force is removed, the third body part 1213 and the second locking member 122 can be connected in an elastic clamping manner, and under the action of elastic force, not only the assembly of the first locking member 121 and the second locking member 122 is facilitated, but also the reliability of the clamping connection is improved.

[0115] In some embodiments, please continue to refer to Figures 15 to 17 The third body part 1213 includes a plurality of sub-body parts 12131; the plurality of sub-body parts 12131 are arranged at the end of the second body part 1212 away from the first body part 1211, and define a deformable space E.

[0116] The deformable space E refers to the space region enclosed or defined by the plurality of sub-body parts 12131 at the end of the second body part 1212 away from the first body part 1211. The deformable space E provides physical accommodation and space for the elastic deformation of the third body part 1213. When the third body part 1213 is subjected to an external force, the plurality of sub-body parts 12131 can adapt to the external force by producing displacement, distortion, stretching and other deformation modes into this deformable space E.

[0117] By defining the deformable space E, the plurality of sub-body portions 12131 can generate a certain elastic restoring force after being clamped into the second hole section tk2, thereby exerting a clamping force on the inner wall of the second hole section tk2, which is conducive to the clamping of the third body portion 1213 and the second locking member 122, and can further enhance the connection stability between the first locking member 121 and the second locking member 122.

[0118] In some embodiments, please continue to refer to Figures 15 to 17 , the sub-body portion 12131 has a first end e1 connected to one end of the second body portion 1212 away from the first body portion 1211, and a second end e2 disposed opposite the first end e1. The second end e2 of the sub-body portion 12131 is configured as a free end.

[0119] The free end means that the second end e2 of the sub-body portion 12131 is not directly connected or constrained by other fixed components or structures in structure, and is in a relatively free state with a certain activity allowance in space. Without direct connection restriction, the free end can move or deform relatively freely when affected by external force or its own elasticity, etc. For example, when an external force acts on the third body portion 1213, the free end can swing, bend, stretch, etc. within a certain range, and can respond accordingly according to the direction and size of the external force to adapt to the changes and stress conditions of the entire structure. The free state of the free end provides flexibility for the function realization of the entire structure, and can define the aforementioned deformable space E.

[0120] By configuring the sub-body portion 12131 as one end connected to the second body portion 1212 and the other end as a free end, the deformable space E can be defined between the plurality of sub-body portions 12131. When the third body portion 1213 is clamped into the second hole section tk2, the second end e2 of the sub-body portion 12131 can be self-adaptively adjusted according to the inner wall of the second hole section tk2, better fitting the inner wall of the second hole section tk2, thereby facilitating the clamping of the third body portion 1213 to the second hole section tk2, and also conducive to improving the tightness and stability of the clamping. In addition, such sub-body portion 12131 is also easy to manufacture, and is more conducive to forming the deformable space E.

[0121] In some embodiments, please continue to refer to Figures 15 to 17 , the third body portion 1213 further includes a clamping hook portion 12132 provided at the second end e2 of the sub-body portion 12131. The clamping hook portion 12132 is used for clamping on the side of the second locking member 122 away from the first locking member 121.

[0122] The hooking portion 12132 is a structure of the third body portion 1213 located at the second end e2 of the sub-body portion 12131, configured to be engaged with the second locking member 122. For example, the hooking portion 12132 can have a shape similar to a hook or a buckle, capable of hooking or buckling the second locking member 122 from the side of the second locking member 122 facing away from the first locking member 121, so that the connection and fixation between the third body portion 1213 and the second locking member 122 can be achieved in this way.

[0123] Since the hooking portion 12132 can hook the side of the second locking member 122 facing away from the first locking member 121, a limiting effect can be provided, reducing the risk of the second locking member 122 falling off the first locking member 121, further improving the reliability of the locking.

[0124] In some embodiments, please continue to refer to 1 to Figure 4 、 Figure 6 and Figure 7 , along the first direction F1, the guide groove g extends through both sides of the first plate body 110a along the first direction F1.

[0125] In this way, during assembly, the first locking member 121 can be inserted into the guide groove g from either side of the first plate body 110a along the first direction F1, providing more assembly operation space, thereby reducing the difficulty of installation and improving the assembly efficiency.

[0126] In some embodiments, please continue to refer to 1 to Figure 4 、 Figure 6 and Figure 7 , both the first plate body 110a and the second plate body 110b can be movably fitted along the first direction F1 along both sides of the third direction F3, and the guide groove g is arranged in the middle region of the first plate body 110a.

[0127] In this way, the stress on the mounting plate assembly 100 as a whole is more uniform, thereby improving the stability and reliability of the mounting plate assembly 100 as a whole.

[0128] In some embodiments, please refer to Figure 18 , Figure 18 is a perspective structural schematic diagram of the mounting plate assembly 100 provided by another embodiment of the present application, the plurality of plate bodies 110 further includes a third plate body 110c, the third plate body 110c is provided with a guide groove g extending along the first direction F1, and the third plate body 110c is provided with a fitting portion p on one side along the first direction F1.

[0129] Thus, the third plate body 110c is provided with one side of the matching portion p, and the first plate body 110a can be arranged on the side. The other side of the third plate body 110c along the first direction F1 can be arranged with the second plate body 110b. For example, in one combination state of the mounting plate assembly 100, the arrangement of the second plate body 110b, the third plate body 110c, the first plate body 110a, and the second plate body 110b along the first direction F1 can be formed, and two adjacent plate bodies 110 can be movably connected along the first direction F1. In the use state, the adjacent two plate bodies 110 can be locked by the plurality of locking mechanisms 120. The locking of the connected second plate body 110b and the third plate body 110c, and the locking of the connected third plate body 110c and the first plate body 110a can be understood with reference to the aforementioned locking of the connected first plate body 110a and the second plate body 110b, and will not be repeated here.

[0130] For example, the guiding groove g on the third plate body 110c can be provided with two, and one of the guiding grooves g is closer to one side of the third plate body 110c along the third direction F3, and the other guiding groove g is closer to the other side of the third plate body 110c along the third direction F3. The guiding groove g on the first plate body 110a is arranged in the middle of the first plate body 110a, so that a more stable mounting plate assembly 100 can be formed. At this time, one side of the first plate body 110a connected with the third plate body 110c can be provided with two matching portions p. Figure 18

[0131] Thus, by providing the third plate body 110c, the mounting plate assembly 100 can have a more flexible assembly state.

[0132] It should be noted that in some cases illustrated in some embodiments described above, the first plate body 110a is a plate body 110 provided with a guiding groove g, the second plate body 110b is a plate body 110 provided with a matching portion p, and the third plate body 110c is a plate body 110 provided with both a guiding groove g and a matching portion p. Of course, the plurality of plate bodies 110 can also include plate bodies 110 that can be assembled in other forms, which are not specifically limited here. The length of each plate body 110 in the plurality of plate bodies 110 along the first direction F1 can be the same or different, which is not specifically limited here.

[0133] In some embodiments, please refer to Figure 19 and Figure 20 , Figure 19 for the mounting plate assembly 100 provided by some other embodiments of the present application, Figure 20 ​For some other embodiments of the present application, a partially exploded structural schematic diagram of the mounting plate assembly 100 is provided, the mounting plate assembly 100 further comprises a mounting structure 130, the mounting structure 130 is clamped with the corresponding plate body 110 through the mounting hole ak. The mounting structure 130 is used to be connected with the air pipe.

[0134] By setting the mounting structure 130, not only the air pipe can be installed more quickly, but also the sealing performance at the mounting hole ak can be improved.

[0135] In the following, the assembly process of the mounting plate assembly 100 provided by the embodiments of the present application is exemplarily described in combination with the contents shown in some of the above embodiments, but is not limited thereto.

[0136] Exemplarily, in one embodiment, the assembly process of the mounting plate assembly 100 provided by the embodiments of the present application comprises the following steps:

[0137] Step S110, in combination with reference to Figure 2 and Figure 14 , the first plate body 110a, the second plate body 110b and the locking mechanism 120 are provided;

[0138] Step S120, in combination with reference to Figure 21 , the first plate body 110a and the second plate body 110b are assembled along the first direction F1 and installed in the sliding rail (not shown in the figure) of the window frame;

[0139] Step S130, in combination with reference to Figure 22 , the locking mechanism 120 is movably connected to the first plate body 110a along the first direction F1 through the guide groove g;

[0140] Step S140, in combination with reference to Figure 1 , the relative positions of the first plate body 110a and the second plate body 110b are adjusted, the locking mechanism 120 is moved to one side of the second plate body 110b along the first direction F1, when the second body part 1212 of the first locking part 121 is clamped at the notch q, the second locking part 122 is rotated, so that the locking mechanism 120 is in the locked state, the second locking part 122 and the first plate body 110a define a clamping space J for clamping the second plate body 110b, the first plate body 110a and the second plate body 110b connected are relatively fixed, and the assembled mounting plate assembly 100 is obtained.

[0141] In step S110, the locking mechanism 120 can be provided to the user after being assembled. In combination with reference to Figures 14 to 17 By using the locking structure shown in some of the above embodiments, the first locking part 121 and the second locking part 122 can be in a structure that is matched as a whole. In this way, the user does not need to assemble the locking mechanism 120, and the installation process of the user can be simplified.

[0142] In steps S120 to S140, since the first plate body 110a and the second plate body 110b can be movably connected along the first direction F1, the positions of the first plate body 110a and the second plate body 110b can be adjusted according to the size specifications of the window. Since the first plate body 110a and the second plate body 110b are locked by clamping the second plate body 110b through the clamping space J, the locking step is more convenient, and the installation is further simplified and the installation efficiency is improved by the notch q matched on the second plate body 110b, thereby improving the user experience.

[0143] It should be noted that in the above-mentioned process, the locking mechanism 120 can also be installed on the first plate body 110a first; before the locking mechanism 120 is installed on the first plate body 110a, the relative positions of the first plate body 110a and the second plate body 110b can also be adjusted first. The installation can be performed according to the specific use, which is not specifically limited here.

[0144] In some embodiments, the embodiments of the present application provide a mobile air conditioner assembly, including a mobile air conditioner and the mounting plate assembly 100 in any of the above embodiments. The mobile air conditioner has an air duct, one end of the air duct is connected to the mounting plate assembly 100 through the mounting hole ak.

[0145] Among them, the air duct includes an air inlet pipe and an air outlet pipe, the air inlet pipe and the air outlet pipe are arranged at the window, and the length of the air inlet pipe and the air outlet pipe extending out of the window can be adjusted by moving. The length of the air inlet pipe and the air outlet pipe extending out of the window can be set according to the use, which is not specifically limited here, so as to facilitate communication with outdoor air and have good adaptability. In addition, in use, one of the various embodiments of the mounting plate assembly 100 illustrated in combination with the above embodiments can be that the first plate body 110a and the second plate body 110b are alternately arranged along the first direction F1. Other combination states can be understood with reference to the foregoing embodiments, which will not be described here.

[0146] Since the mounting plate assembly 100 has the convenience of manufacturing and assembly, it is beneficial to install the air duct of the mobile air conditioner, so that the overall assembly process is more flexible and can meet the use of windows of different size specifications.

[0147] The technical features of the above-mentioned embodiments can be combined arbitrarily, in order to make the description simple, not all possible combinations of the technical features in the above-mentioned embodiments are described, however, as long as the combination of these technical features does not exist contradictory, it should be considered as the scope of the present application.

[0148] The above embodiments only express several implementation ways of the present application, and the description is relatively specific and detailed, but it should not be understood as a limitation to the patent scope of the application. It should be pointed out that for ordinary skilled persons in the art, several modifications and improvements can be made without departing from the concept of the present application, which all belong to the protection scope of the present application. Therefore, the protection scope of the patent of the present application should be subject to the appended claims.

Claims

1. A mounting plate assembly for a mobile air conditioner, comprising: The mounting plate assembly comprises: a plurality of plate bodies, including a first plate body and a second plate body, the first plate body being provided with a guide groove extending in a first direction, the second plate body being configured to be movably connected to the first plate body in the first direction; at least one of the first plate body and / or the first plate body being provided with a mounting hole for mounting an air duct of the mobile air conditioner; and a locking mechanism including a first locking member and a second locking member; one end of the first locking member being configured to be movably fitted into the guide groove, the other end of the first locking member being movably connected to the second locking member, so that the locking mechanism has a locked state and an unlocked state; wherein, when the locking mechanism is locked in the first plate body and the second plate body assembled with each other, the first locking member is located on one side of the second plate body in the first direction, and the second locking member and the first plate body define a clamping space for clamping the second plate body, so that the first plate body and the second plate body connected with each other are relatively fixed; when the locking mechanism is switched from the locked state to the unlocked state, the relatively fixed first plate body and the second plate body can be separated.

2. The mounting plate assembly of claim 1, wherein, At least one side of the second plate body provided in the first direction is provided with a fitting part; The fitting part is configured to limit the first locking member or the second locking member.

3. The mounting plate assembly of claim 2, wherein, The fitting part is configured as a notch, the notch penetrating one side of the second plate body in the first direction and penetrating the second plate body in a second direction, the notch being used for limiting the first locking member; the first direction and the second direction intersect with each other, and the second direction and the thickness direction of the plate body are parallel to each other; or The second plate body has a first side and a second side oppositely arranged in the second direction, and the first side is used for abutting with the second locking member; the fitting part is configured as a recess, the recess penetrating one side of the second plate body in the first direction and being recessed in a direction from the first side to the second side, the recess being used for limiting the second locking member; the first direction and the second direction intersect with each other, and the second direction and the thickness direction of the plate body are parallel to each other.

4. The mounting plate assembly of any one of claims 1-3, wherein, The first locking member includes a first body part and a second body part connected to the first body part; The first body part is used for movably fitting into the guide groove, and the second body part is threadedly connected with the second locking member.

5. The mounting plate assembly of claim 4, wherein, The first locking member further includes a third body part provided at one end of the second body part away from the first body part; The third body part is configured to limit the second locking member from being separated from the first locking member.

6. The mounting plate assembly of claim 5, wherein, The second locking member is provided with a through hole, the through hole including a first hole section and a second hole section arranged in a direction in which the through hole is formed, and the first hole section and the second hole section communicate with each other; The inner wall of the first hole section is threadedly connected with the outer wall of the second body part, and the third body part is clamped in the second hole section.

7. The mounting plate assembly of claim 6, wherein, The third body part includes a plurality of sub-body parts; The plurality of sub-body portions are arranged at an end of the second body portion away from the first body portion, and define a deformable space.

8. The mounting plate assembly of claim 7, wherein, The sub-body portion has a first end connected to an end of the second body portion away from the first body portion, and a second end arranged opposite to the first end. The second end of the sub-body portion is configured as a free end.

9. The mounting plate assembly of claim 8, wherein, The third body portion further comprises a hook portion arranged at the second end of the sub-body portion. The hook portion is used for clamping a side of the second locking member away from the first locking member.

10. A mobile air conditioner assembly characterized by, Comprising: A mobile air conditioner having an air duct; And The mounting plate assembly of any one of claims 1-9, one end of the air duct being connected to the mounting plate assembly through the mounting hole.