Mounting assembly for exterior wall cladding

By setting adjustable structures with upper and lower connectors and rigid supports at the four corners of the exterior wall cladding, the problems of difficult installation and inconsistent gaps in the exterior wall cladding are solved, achieving convenient and precise installation and improving aesthetics.

CN223952157UActive Publication Date: 2026-02-27WEIFANG JINYI STEEL STRUCTURAL ENG TECHNICAL ADVISORY CO LTD
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Patent Information

Application Number
CN202520495417.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-20
Publication Date
2026-02-27
Estimated Expiration
2035-03-20

AI Technical Summary

Technical Problem

The existing exterior wall cladding is difficult to install, and the gaps between the panels are inconsistent, affecting the aesthetics.

Method used

By installing upper and lower connectors at the four corners of the exterior wall panel, combined with the internal and external adjustment connection structure of the rigid support and embedded parts, the position of the exterior wall panel in the internal, external, vertical, and horizontal directions can be adjusted. Precise installation is achieved through the upper and lower connection adjustment structures.

Benefits of technology

It improves the ease of installation, ensures the consistency of gaps between panels, and enhances the aesthetics after installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a mounting assembly for an exterior wall hanging plate, which relates to the technical field of building exterior wall hanging plates, is used for mounting the exterior wall hanging plate on a building main body, and comprises upper connecting pieces fixedly arranged at the left lower corner and the right lower corner of the exterior wall hanging plate respectively, lower connecting pieces are fixedly arranged at the left upper corner and the right upper corner of the exterior wall hanging plate respectively; embedded parts are fixedly arranged at the positions, located at the four corners of the outer wall hanging plate, of the building body respectively, rigid supporting parts are fixedly installed on the embedded parts respectively, and internal and external adjusting connecting structures are arranged between the rigid supporting parts and the corresponding embedded parts. The rigid supporting piece on the lower side is provided with an upper connection adjusting structure used for being connected with the corresponding upper connecting piece, and the rigid supporting piece on the upper side is provided with a lower connection adjusting structure used for being connected with the corresponding lower connecting piece. According to the utility model, the installation convenience is improved, the accurate installation is realized, and the consistency of gaps between plates is ensured.
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Description

TECHNICAL FIELD

[0001] The utility model relates to building outer wall hanging plate technical field especially, relates to a kind of installation components for outer wall hanging plate. BACKGROUND

[0002] Prefabricated sandwich outer wall hanging plate is a kind of composite board for building outer wall, its structure mainly includes two layers of wallboard and the thermal insulation material in the two layers of wallboard. Figure 14 As shown, the installation of the outer wall hanging plate is to set 3-4 hangers on its inner side, and the installation operation is realized by hanging the above multiple hangers on the corresponding hanging seats of the building body. Based on the fact that the hangers are hidden in the space between the hanging plate and the building body during installation, it is not easy to align and hang the wall plate hangers. In addition, the outer wall hanging plate is large in size and heavy in weight, which makes the installation work difficult. After installation, due to the position error of the hangers and the hanging seats, the gaps between the wall plates may not be consistent, which affects the appearance of the outer wall. Therefore, the installation method of the outer wall hanging plate needs to be optimized. SUMMARY

[0003] The technical problem to be solved by the utility model is to provide an installation component for outer wall hanging plate, which improves installation convenience and realizes accurate installation, thereby ensuring the consistency of the gaps between the plates.

[0004] To solve the above technical problems, the technical scheme of the utility model is as follows: an installation component for outer wall hanging plate is used to install the outer wall hanging plate on a building body, which comprises upper connecting pieces fixedly arranged at the lower left corner and the lower right corner of the outer wall hanging plate, and lower connecting pieces fixedly arranged at the upper left corner and the upper right corner of the outer wall hanging plate; pre-buried pieces are fixedly arranged at the four corner portions of the outer wall hanging plate on the building body, rigid support pieces are fixedly installed on the pre-buried pieces, and inner-outer adjusting connecting structures are arranged between the rigid support pieces and the corresponding pre-buried pieces; the rigid support pieces on the lower side are provided with upper connecting adjusting structures for connecting with the corresponding upper connecting pieces, and the rigid support pieces on the upper side are provided with lower connecting adjusting structures for connecting with the corresponding lower connecting pieces.

[0005] As a preferred technical scheme, the inner-outer adjusting connecting structure comprises an inner connecting lug fixedly arranged on the pre-buried piece and extending outward, an outer connecting lug arranged on the rigid support piece and connected with the inner connecting lug, an inner-outer connecting bolt arranged between the inner connecting lug and the outer connecting lug, and at least one of the bolt through holes in the inner connecting lug and the outer connecting lug is a long hole arranged in the inner-outer direction.

[0006] As a preferred technical scheme, the upper connecting adjusting structure comprises an upper supporting groove arranged on the rigid support and extending along the left-right direction, an upper supporting plate fixed on the upper connecting piece and extending into the upper supporting groove, and a supporting screw hole arranged through the bottom of the upper supporting groove, and a supporting screw is arranged on the supporting screw hole and used for abutting against the bottom of the upper supporting plate.

[0007] As a preferred technical scheme, the lower connecting adjusting structure comprises an upper connecting lug fixed on the rigid support, a lower connecting lug arranged on the lower connecting piece and used for connecting with the upper connecting lug, and a lower connecting screw arranged through the upper connecting lug and the lower connecting lug, wherein the screw through hole on the upper connecting lug is a long hole arranged along the left-right direction, and the screw through hole on the lower connecting lug is a long hole arranged along the up-down direction.

[0008] As a preferred technical scheme, the upper connecting piece comprises a heat-insulating upper connecting block, an inner upper connecting piece arranged on the inner side of the heat-insulating upper connecting block, and an outer upper connecting piece arranged on the outer side of the heat-insulating upper connecting block, wherein the inner upper connecting piece and the outer upper connecting piece are fixedly connected with the heat-insulating upper connecting block, and an upper heat-insulating space is arranged between the inner upper connecting piece and the outer upper connecting piece.

[0009] As a preferred technical scheme, the lower connecting piece comprises a heat-insulating lower connecting block, an inner lower connecting piece arranged on the inner side of the heat-insulating lower connecting block, and an outer lower connecting piece arranged on the outer side of the heat-insulating lower connecting block, wherein the inner lower connecting piece and the outer lower connecting piece are fixedly connected with the heat-insulating lower connecting block, and a lower heat-insulating space is arranged between the inner lower connecting piece and the outer lower connecting piece.

[0010] As a preferred technical scheme, the rigid support and the embedded part are shared by the corner portions of two adjacent outer wall panels.

[0011] As a preferred technical scheme, the rigid support and the embedded part are shared by the corner portions of four adjacent outer wall panels.

[0012] With the above technical scheme, the installation assembly for the outer wall hanging plate is used for installing the outer wall hanging plate on the building main body, comprising upper connecting pieces fixedly arranged at lower left corner and lower right corner of the outer wall hanging plate respectively, lower connecting pieces fixedly arranged at upper left corner and upper right corner of the outer wall hanging plate respectively; the building main body is fixedly provided with embedded pieces at four corner portions of the outer wall hanging plate respectively, and rigid support pieces are fixedly installed on the embedded pieces respectively, and inner-outer adjusting connecting structures are arranged between the rigid support pieces and the corresponding embedded pieces; the rigid support pieces on the lower side are provided with upper connecting adjusting structures for connecting the corresponding upper connecting pieces, and the rigid support pieces on the upper side are provided with lower connecting adjusting structures for connecting the corresponding lower connecting pieces. The installation assembly is arranged at the four corner portions of the outer wall hanging plate, so that the installation operation can be performed from the space outside the outer wall hanging plate and the building main body, and the installation convenience is improved. The rigid support pieces are used as the intermediate structures, the inner-outer adjusting connecting structures between the rigid support pieces and the embedded pieces are used for adjusting the positions of the outer wall hanging plate in the inner-outer direction, the upper connecting adjusting structures and the lower connecting adjusting structures are used for adjusting the positions of the outer wall hanging plate in the up-down and left-right directions together, the precise installation is realized, the consistency of the gaps between the plates is ensured, and the appearance after installation is ensured. BRIEF DESCRIPTION OF DRAWINGS

[0013] The following drawings only aim to schematically illustrate and explain the utility model, and do not limit the range of the utility model. Among them:

[0014] Figure 1 It is the structure schematic view of the corner portion of the utility model in the outer wall hanging plate;

[0015] Figure 2 It is Figure 1 the enlarged structure schematic view of the structure I of

[0016] Figure 3 It is Figure 2 the A-A structure schematic view of

[0017] Figure 4 It is Figure 3 the enlarged structure schematic view of the embedded piece in

[0018] Figure 5 It is Figure 4 the B-B structure schematic view of

[0019] Figure 6 It is Figure 4 the C-C structure schematic view of

[0020] Figure 7 It is Figure 3 the enlarged structure schematic view of the rigid support piece in

[0021] Figure 8 It isFigure 7 is a top view structural schematic diagram of the present application;

[0022] Figure 9 is a right view structural schematic diagram of the present application; Figure 7

[0023] Figure 10 is a top view structural schematic diagram of the present application; Figure 3

[0024] Figure 11 is a right view structural schematic diagram of the present application; Figure 10

[0025] Figure 12 is a top view structural schematic diagram of the present application; Figure 3

[0026] Figure 13 is a right view structural schematic diagram of the present application; Figure 12

[0027] Figure 14 is a structural principle diagram of the prior wall hanging plate with hanging parts.

[0028] In the figure: 1 - building main body; 2 - pre-embedded part; 3 - rigid support part; 4 - inner-outer adjusting connecting structure; 41 - inner connecting lug; 42 - inner transverse connecting lug; 43 - inner vertical connecting lug; 44 - outer connecting lug; 45 - outer transverse connecting lug; 46 - outer vertical connecting lug; 47 - inner-outer connecting bolt; 5 - upper connecting part; 51 - heat-insulating upper connecting block; 52 - upper inner connecting part; 53 - upper outer connecting part; 54 - upper heat-insulating interval; 6 - upper connecting adjusting structure; 61 - upper supporting groove; 62 - upper supporting plate; 63 - supporting bolt; 7 - lower connecting part; 71 - heat-insulating lower connecting block; 72 - lower inner connecting part; 73 - lower outer connecting part; 74 - lower heat-insulating interval; 8 - lower connecting adjusting structure; 81 - upper connecting lug; 82 - lower connecting lug; 83 - lower connecting bolt; 9 - outer wall hanging plate; 91 - inner leaf wall plate; 92 - outer leaf wall plate; 93 - heat-insulating material; 94 - hanging part. DETAILED DESCRIPTION

[0029] The present application will be further described below in conjunction with the drawings and examples. In the following detailed description, only certain exemplary embodiments of the present application are described by way of illustration. It goes without saying that those skilled in the art can recognize that the described embodiments can be modified in various ways without departing from the spirit and scope of the present application. Therefore, the drawings and description are essentially illustrative, and are not intended to limit the scope of protection of the claims.

[0030] As Figure 1 , Figure 2 and Figure 3 ​​​​​As shown, an installation assembly for exterior wall cladding panels is used to install exterior wall cladding panels 9 onto a building body 1. It includes upper connectors 5 fixedly disposed at the lower left and lower right corners of the exterior wall cladding panel 9, and lower connectors 7 fixedly disposed at the upper left and upper right corners of the exterior wall cladding panel 9. In this embodiment, the exterior wall cladding panel 9 is connected to the building body 1 at its four corners, facilitating installation from outside the space between the exterior wall cladding panel 9 and the building body 1, thus improving installation convenience.

[0031] In this embodiment, "up" and "down" are directional definitions that conform to conventional understanding; "inner" and "outer" are defined as the direction closer to the main building 1 and the direction farther away from the building; "left" and "right" are defined as left and right when facing the exterior wall panel 9 from the outside. The above definitions are only for more clearly describing the structural principle of this embodiment and are not intended to limit the scope of protection.

[0032] like Figure 2 , Figure 3 , Figure 10 and Figure 11 As shown, the upper connector 5 in this embodiment includes a heat-insulating upper connector 51. The heat-insulating upper connector 51 is made of a material with a certain hardness and heat insulation function, such as hardwood or wood-plastic composite. An upper inner connector 52 is provided on the inner side of the heat-insulating upper connector 51, and an upper outer connector 53 is provided on the outer side. The upper inner connector 52 and the upper outer connector 53 are respectively fixedly connected to the heat-insulating upper connector 51. This fixed connection can be achieved by connecting each component separately with its own bolts, or by connecting them together with a through double-ended bolt. This embodiment does not impose any limitations and only illustrates the latter. Of course, the double-ended bolts are made of a material with poor thermal conductivity, which is a common technique in this field and will not be elaborated further here. An upper heat-insulating gap 54 is provided between the upper inner connector 52 and the upper outer connector 53, thereby preventing thermal bridges between them and ensuring the heat insulation performance of the exterior wall panel 9.

[0033] Conventionally, the exterior wall panel 9 includes an inner leaf wall panel 91, an outer leaf wall panel 92, and insulation material 93 between the inner leaf wall panel 91 and the outer leaf wall panel 92. In this embodiment, the upper connector 5 is disposed in the space of the insulation material 93, thereby... Figure 3 and Figure 10 As shown, the upper inner connector 52 and the upper outer connector 53 preferably have a tie structure, such as tie screws, on their far side walls to improve the tie capacity between the upper connector 5 and the inner leaf wall panel 91 and the outer leaf wall panel 92, thereby ensuring the connection performance of the outer wall panel 9.

[0034] like Figure 2 , Figure 3 , Figure 12 and Figure 13As shown, the lower connecting piece 7 comprises a heat insulation lower connecting block 71, the inner side of which is provided with a lower inner connecting piece 72 and the outer side of which is provided with a lower outer connecting piece 73, the lower inner connecting piece 72 and the lower outer connecting piece 73 are fixedly connected with the heat insulation lower connecting block 71 respectively, and a lower heat insulation spacing 74 is arranged between the lower inner connecting piece 72 and the lower outer connecting piece 73. The structural principle of the lower connecting piece 7 is consistent with that of the upper connecting piece 5, which will not be described here. It is also located at the position of the thermal insulation material 93 of the outer wall cladding 9, and the pull connection structure is arranged to improve the pull connection ability with the inner leaf wall panel 91 and the outer leaf wall panel 92.

[0035] As shown in Figure 1 , Figure 2 and Figure 3 , the building body 1 is fixedly provided with a pre-embedded part 2 at each of the four corner portions of the outer wall cladding 9, the rigid support part 3 is fixedly installed on the pre-embedded part 2, and the inner-outer adjusting connecting structure 4 is arranged between the rigid support part 3 and the corresponding pre-embedded part 2. The inner-outer adjusting connecting structure 4 realizes the position adjustment of the outer wall cladding 9 in the inner-outer direction, so as to promote the smooth transition between the outer surfaces of all the outer wall claddings 9 after installation, and facilitate the guarantee of the aesthetic degree.

[0036] As shown in Figures 3 to 8 , the inner-outer adjusting connecting structure 4 of the embodiment comprises an inner connecting lug 41 fixedly arranged on the pre-embedded part 2 and outwardly extended, the outer connecting lug 44 for connecting with the inner connecting lug 41 is arranged on the rigid support part 3, the inner-outer connecting bolt 47 is arranged between the inner connecting lug 41 and the outer connecting lug 44, and at least one of the bolt through holes on the inner connecting lug 41 and the outer connecting lug 44 is a long hole arranged in the inner-outer direction. Through the above long hole arrangement, the outer connecting lug 44 has a space for movement in the inner-outer direction relative to the inner connecting lug 41, after the outer connecting lug 44 is adjusted to a suitable position, the inner-outer connecting bolt 47 is used for fixing, and the connection operation after the inner-outer adjustment is completed.

[0037] As shown in Figure 2 and Figure 3 , the lower rigid support part 3 is provided with an upper connection adjusting structure 6 for connecting with the corresponding upper connecting piece 5, and the upper rigid support part 3 is provided with a lower connection adjusting structure 8 for connecting with the corresponding lower connecting piece 7. With the rigid support part 3 as the intermediate structure, the upper connection adjusting structure 6 and the lower connection adjusting structure 8 are used to realize the position adjustment of the outer wall cladding 9 in the up-down and left-right directions, realize accurate installation, facilitate the guarantee of the consistency of the gap between the panels, and facilitate the guarantee of the aesthetic degree after installation.

[0038] As shown in Figure 3 , Figures 7 to 9As shown, the upper connection adjusting structure 6 comprises an upper supporting groove 61 arranged on the rigid support 3 and extending in the left-right direction, and the upper connecting member 5 is fixedly provided with an upper supporting plate 62 extending into the upper supporting groove 61. For the upper connecting member 5 of the embodiment, the upper supporting plate 62 is fixedly arranged on the upper inner connecting member 52 or the upper outer connecting member 53. The upper supporting groove 61 limits the inner-outer direction of the upper supporting plate 62, so that the upper supporting plate 62 is mounted with the adjusting position of the rigid support 3 in the inner-outer direction, and the outer wall panel 9 is adjusted in the inner-outer direction position, and the upper supporting plate 62 has the freedom of left-right direction movement in the upper supporting groove 61, so as to realize the position adjustment of the outer wall panel 9 in the left-right direction. The upper supporting groove 61 can be formed by two groove plates with a gap in the middle, and preferably, groove end plates are fixedly arranged between the left ends and the right ends of the two groove plates, so as to improve the rigidity of the groove body and ensure the reliability of the connection.

[0039] The upper supporting groove 61 is provided with a supporting screw hole penetratingly arranged at the groove bottom, and a supporting screw 63 for abutting against the bottom of the upper supporting plate 62 is mounted on the supporting screw hole. By rotating the supporting screw 63, the supporting screw 63 is moved in the up-down direction relative to the upper supporting groove 61, the upper supporting plate 62 supported on the supporting screw 63 is adjusted in the up-down direction position, and the outer wall panel 9 is adjusted in the up-down direction position. After adjustment, the supporting screw 63 and the supporting screw hole can be self-locked by the gravity of the outer wall panel 9, and the installation is reliable.

[0040] For the installation of the outer wall panels 9 on the building body 1 from bottom to top, the space between the adjacent upper outer wall panel 9 and the adjacent lower outer wall panel 9 is close to closed during installation. After the supporting height of the supporting screw 63 in the upper connection adjusting structure 6 is adjusted, the upper supporting plate 62 of the adjacent upper outer wall panel 9 is inserted into the corresponding upper supporting groove 61, so as to directly form the installation connection, which simplifies the installation operation and improves the installation convenience. After supporting, only the position of the outer wall panel 9 needs to be adjusted left and right.

[0041] As shown in the drawings, Figure 3 , Figures 7 to 9As shown, the lower connecting adjusting structure 8 comprises an upper connecting lug 81 fixedly arranged on the rigid support 3, the lower connecting lug 7 is provided with a lower connecting lug 82 for connecting with the upper connecting lug 81, and a lower connecting bolt 83 is arranged between the upper connecting lug 81 and the lower connecting lug 82. The bolt through hole on the upper connecting lug 81 is a long hole arranged in the left-right direction, and the bolt through hole on the lower connecting lug 82 is a long hole arranged in the up-down direction. Through the above cross-shaped long holes, the position of the lower connecting lug 82 and the upper connecting lug 81 can be adjusted in the up-down and left-right directions of the outer wall panel 9, and after adjustment, the lower connecting bolt 83 can still be conveniently used for fixed connection. Therefore, the four corner positions of the outer wall panel 9 are all formed into mounting connections, and the mounting is stable and reliable.

[0042] In actual arrangement, the corner of the outer wall panel 9 is arranged to avoid the space of the embodiment. For the upper and lower adjacent two outer wall panels 9, the space can be arranged at the lower left corner and the lower right corner of the upper adjacent outer wall panel 9, or at the upper left corner and the upper right corner of the lower adjacent outer wall panel 9, or at the lower left corner and the lower right corner of the upper adjacent outer wall panel 9 and at the upper left corner and the upper right corner of the lower adjacent outer wall panel 9. This embodiment is not limited, and the space is arranged at the lower left corner and the lower right corner of the upper adjacent outer wall panel 9, as shown in Figures 1 to 3 Therefore, the space is arranged at the inner leaf panel 91 and the thermal insulation material 93 of the upper adjacent outer wall panel 9, and the outer leaf panel 92 still maintains the integrity of the outer surface. In this arrangement, the upper inner connecting piece 52 of the upper connecting piece 5 of the embodiment is integrally provided with an inner leaf connecting portion extending to the inner leaf panel 91, so as to further improve the pulling effect of the upper connecting piece 5.

[0043] Preferably, the corresponding corners of the upper and lower adjacent two outer wall panels 9 share one rigid support 3 and one embedded part 2, so as to simplify the structure of the rigid support 3 and the embedded part 2, reduce the embedding error of the embedded part 2, simplify the installation process, and further improve the operation convenience. It should be noted that, with respect to the connection of the same rigid support 3 and embedded part 2, the upper side is used to connect the upper structure, and the lower side is used to connect the lower structure. Therefore, the upper of the upper connecting piece 5 of the embodiment is defined with respect to the rigid support 3 to be connected, rather than the orientation of the outer wall panel 9. The lower connecting piece 7 is the same.

[0044] More preferably, as shown in Figure 1 and Figure 2As shown, four adjacent outer wall panels 9 share one rigid support 3 and embedded part 2 at the corresponding corner, which further simplifies the structure of the rigid support 3 and embedded part 2, reduces the embedding error of the embedded part 2, simplifies the installation process, and further improves the operation convenience. Figures 4 to 9 As shown, the inner connecting lug 41 includes two oppositely arranged inner horizontal connecting lugs 42, and inner vertical connecting lugs 43 are respectively arranged at the proximal ends of the two inner horizontal connecting lugs 42, the rigid support 3 includes outer horizontal connecting lugs 45 for connecting with the two inner horizontal connecting lugs 42, and outer vertical connecting lugs 46 are arranged at the middle of the outer horizontal connecting lugs 45 and located between the two inner vertical connecting lugs 43, the outer vertical connecting lugs 46 are used for bolted connection with the two inner vertical connecting lugs 43, so as to realize horizontal and vertical multi-bolted connection, further improve the connection strength between the rigid support 3 and the embedded part 2, and the rigid support 3 itself constitutes a T-shaped structure, which has better supporting capacity.

[0045] The outer wall panel 9 of the embodiment adopts corner installation connection, which is convenient for installation operation in the larger space outside the building main body 1 and the outer wall panel 9, improves the installation convenience, and the corner installation enables four adjacent outer wall panels 9 to share one embedded part 2 and rigid support 3, greatly reduces the number of embedded parts 2, reduces the position error influence of the embedded parts 2, improves the installation precision, simplifies the installation time, and reduces the installation cost. The embodiment further realizes accurate installation of the outer wall panel 9 through three-way adjustment in the inner-outer direction, the up-down direction and the left-right direction, which is beneficial to ensure the consistency of the gap between the panels and the aesthetic degree after installation.

[0046] The basic principle, main features and advantages of the utility model are shown and described above. It should be understood by those skilled in the art that the utility model is not limited by the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principle of the utility model. Without departing from the spirit and scope of the utility model, the utility model can have various changes and improvements, and these changes and improvements all fall within the scope of the claimed utility model. The scope of protection of the utility model is defined by the appended claims and their equivalents.

Claims

1. An installation assembly for an external wall cladding for installation of the external wall cladding to a building main body, characterized by: The upper connecting piece is fixedly arranged at the lower left corner and the lower right corner of the outer wall hanging plate respectively, and the lower connecting piece is fixedly arranged at the upper left corner and the upper right corner of the outer wall hanging plate respectively; the embedded part is fixedly arranged at the four corner portions of the outer wall hanging plate of the building body respectively, the rigid support is fixedly installed on the embedded part respectively, and the inner-outer adjusting connecting structure is arranged between the rigid support and the corresponding embedded part; the upper connecting adjusting structure for connecting with the corresponding upper connecting piece is arranged on the lower rigid support, and the lower connecting adjusting structure for connecting with the corresponding lower connecting piece is arranged on the upper rigid support.

2. A mounting assembly for an exterior wall cladding panel according to claim 1, characterised in that: The inner-outer adjusting connecting structure comprises an inner connecting lug fixedly arranged on the embedded part and extending outward, the outer connecting lug is arranged on the rigid support and connected with the inner connecting lug, the inner-outer connecting bolt is arranged between the inner connecting lug and the outer connecting lug, and at least one of the bolt through holes in the inner connecting lug and the outer connecting lug is a long hole arranged in the inner-outer direction.

3. A mounting assembly for an exterior wall cladding panel according to claim 1, wherein: The upper connecting adjusting structure comprises an upper supporting groove arranged on the rigid support and extending in the left-right direction, the upper supporting plate is fixedly arranged on the upper connecting piece and extends into the upper supporting groove, the supporting screw hole is arranged at the groove bottom of the upper supporting groove in a penetrating manner, and the supporting bolt for abutting against the bottom of the upper supporting plate is arranged on the supporting screw hole.

4. A mounting assembly for an exterior wall cladding panel according to claim 1, wherein: The lower connecting adjusting structure comprises an upper connecting lug fixedly arranged on the rigid support, the lower connecting lug is arranged on the lower connecting piece and connected with the upper connecting lug, the lower connecting bolt is arranged between the upper connecting lug and the lower connecting lug, the bolt through hole in the upper connecting lug is a long hole arranged in the left-right direction, and the bolt through hole in the lower connecting lug is a long hole arranged in the up-down direction.

5. A mounting assembly for an exterior wall siding panel according to claim 1, wherein: The upper connecting piece comprises a heat-insulating upper connecting block, the inner side of the heat-insulating upper connecting block is provided with an upper inner connecting piece, the outer side of the heat-insulating upper connecting block is provided with an upper outer connecting piece, the upper inner connecting piece and the upper outer connecting piece are fixedly connected with the heat-insulating upper connecting block respectively, and the upper inner connecting piece and the upper outer connecting piece are provided with an upper heat-insulating interval.

6. A mounting assembly for an exterior wall cladding panel according to claim 1, wherein: The lower connecting piece comprises a heat-insulating lower connecting block, the inner side of the heat-insulating lower connecting block is provided with a lower inner connecting piece, the outer side of the heat-insulating lower connecting block is provided with a lower outer connecting piece, the lower inner connecting piece and the lower outer connecting piece are fixedly connected with the heat-insulating lower connecting block respectively, and the lower inner connecting piece and the lower outer connecting piece are provided with a lower heat-insulating interval.

7. A mounting assembly for an external wall cladding panel according to any one of claims 1 to 6, wherein: The rigid support and the embedded part are shared by the corresponding corner portions of the two adjacent outer wall hanging plates in the up-down direction.

8. A mounting assembly for an external wall cladding panel as claimed in any one of claims 1 to 6, characterised in that: The rigid support and the embedded part are shared by the corresponding corner portions of the four adjacent outer wall hanging plates.