A box-shaped embedded part that can be adjusted in multiple dimensions, a curtain wall system, and a curtain wall construction method
Through multi-dimensionally adjustable box-type embedded parts and connecting plates, the complex installation of large cantilevered decorative strips in the building curtain wall is solved, and rapid and precise installation and efficient construction are achieved, and waterproof and sealing is improved.
Patent Information
- Application Number
- CN202310891629.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-19
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2043-07-19
AI Technical Summary
The installation of large cantilevered decorative strips in existing building curtain walls has a large burden of design, processing and installation, which affects the waterproof sealing effect and consumes manpower and material resources, and has cumbersome installation processes.
The box-type embedded parts that can be adjusted multi-dimensionally, including the embedded box and the connecting plate, can realize longitudinal, horizontal and vertical adjustment of the cantilevered large decorative strips through the sliding grooves and slides, combining positioning components and fixing parts to ensure quick and accurate installation.
It realizes the rapid and precise installation of large cantilevered decorative strips, improves the efficiency and quality of curtain wall construction, simplifies the construction process, and enhances the waterproof sealing effect.
Smart Images

Figure CN116791801B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of building curtain walls, and particularly relates to a box-shaped embedded part capable of multi-dimensional adjustment, a curtain wall system, and a curtain wall construction method. Background Art
[0002] In recent years, building energy-saving technologies have received unprecedented attention. As one of the building energy-saving technologies, external shading plays a crucial role. In the field of building curtain walls, large overhanging decorative strips as external shading components have emerged continuously. When the overhanging of the shading component is too large, it imposes a greater burden on the design, processing, and installation of the curtain wall: the connecting piece of the large decorative strip passes through the curtain wall facade for connection, damaging the waterproof and sealing effect of the facade; or it is integrated with the unit panel for installation, the panel is heavy, and processing and transportation are difficult, greatly reducing its economy; there is also an independent installation of the large decorative strip, but its support with adjacent unit panels is designed separately, the installation process is cumbersome, and it consumes a large amount of manpower and material resources. Summary of the Invention
[0003] An object of the present invention is to solve at least one of the technical problems existing in the prior art. For this purpose, the present invention provides a box-shaped embedded part capable of multi-dimensional adjustment, which can quickly and accurately complete the installation of an independent overhanging louver.
[0004] The present invention also provides a curtain wall system including the above-mentioned box-shaped embedded part capable of multi-dimensional adjustment.
[0005] The present invention also provides a curtain wall construction method using the above-mentioned box-shaped embedded part capable of multi-dimensional adjustment.
[0006] The box-shaped embedded part capable of multi-dimensional adjustment according to the first aspect embodiment of the present invention includes:
[0007] An embedded box body, including a rear side plate, two front side plates, and two inner side plates. A first sliding groove extending horizontally is provided on the rear side plate. The two front side plates are arranged at intervals horizontally. The rear side plate and each of the front side plates are arranged opposite to each other at intervals longitudinally. Each inner side plate is arranged longitudinally. One end of each inner side plate is respectively connected to the front side plate, and there is an interval between the other end of each inner side plate and the rear side plate, so as to define a first cavity extending horizontally between the rear side plate and the two inner side plates. A second cavity extending longitudinally is defined between adjacent inner side plates, and the first cavity and the second cavity are communicated; and
[0008] A first connecting plate, including a first sliding part and a first connecting part. A second sliding groove extending vertically is provided on the first sliding part. A first sliding member is slidably arranged on the first sliding groove and the second sliding groove, so that the first connecting plate can be slidably adjusted vertically and horizontally. A first fixing member for connection is provided on the first connecting part.
[0009] The box-shaped embedded part that can be adjusted in multiple dimensions according to the embodiment of the first aspect of the present invention has at least the following beneficial effects: By cooperating the embedded box body and the first connecting plate, and using the second cavity, the first sliding groove and the second sliding groove, the longitudinal, transverse and vertical adjustment requirements of the cantilever large decorative strip are met, so that the installation of the independent cantilever louvers can be rapid and precise, and the box-shaped embedded part has a simple structure and is convenient to use, thereby improving the construction efficiency and quality of the curtain wall.
[0010] For the box-shaped embedded part that can be adjusted in multiple dimensions according to the embodiment of the first aspect of the present invention, the embedded box body further includes two top plates and two positioning components. Each of the top plates is respectively arranged above the front side plate and the inner side plate. A third sliding groove extending transversely is provided on the top plate. The positioning component includes a third sliding part and a positioning plate. A fourth sliding groove extending longitudinally is provided on the positioning plate. The third sliding part is slidably arranged through the third sliding groove and the fourth sliding groove, so that the positioning plate can be slidably adjusted longitudinally and transversely.
[0011] For the box-shaped embedded part that can be adjusted in multiple dimensions according to the embodiment of the first aspect of the present invention, a card slot for vertical guidance is provided at the end of the positioning plate.
[0012] For the box-shaped embedded part that can be adjusted in multiple dimensions according to the embodiment of the first aspect of the present invention, the box-shaped embedded part that can be adjusted in multiple dimensions further includes a second fixing part, a second connecting plate and a second sliding part. The second connecting plate includes a second sliding part and a second connecting part. A fifth sliding groove extending transversely is provided on the second sliding part. The second fixing part is arranged on the front side plate through the fifth sliding groove. A sixth sliding groove extending vertically is provided on the second connecting part. The second sliding part is slidably arranged transversely through each of the sixth sliding grooves.
[0013] For the box-shaped embedded part that can be adjusted in multiple dimensions according to the embodiment of the first aspect of the present invention, the first connecting plate and the second connecting plate are angle codes.
[0014] The curtain wall system according to the embodiment of the second aspect of the present invention includes:
[0015] The box-shaped embedded part that can be adjusted in multiple dimensions as described in the embodiment of the first aspect of the present invention;
[0016] Columns;
[0017] Supporting rods, one end of the supporting rods is connected to the columns, and the other end of the supporting rods is installed in the first cavity.
[0018] For the curtain wall system according to the embodiment of the second aspect of the present invention, the curtain wall system includes a louver structure. The louver structure, the columns and the supporting rods are modularly arranged to form a cantilever louver unit.
[0019] The curtain wall construction method according to the third aspect embodiment of the present invention uses the box-shaped embedded part that can be adjusted in multiple dimensions as described in the first aspect embodiment of the present invention, and includes the following steps:
[0020] Install the embedded box body to the preset position, and slide the first sliding part on the rear side plate through the first sliding part;
[0021] Lift and install the column connected with the support rod member. After putting the support rod member into the first cavity along the second cavity, finely adjust the column longitudinally until the column is in a specific longitudinal position;
[0022] Taking the first cavity as the operation area, fixedly connect the support rod member and the first connection part through the first fixing part;
[0023] Slide and adjust the first connecting plate to finely adjust the column until the column is in a specific horizontal position and vertical position;
[0024] The upper and lower sides of the column are used for splicing, and the left and right sides of the column are used for installing the unit plate;
[0025] Embed the embedded box body and take waterproof measures to complete the construction.
[0026] According to the curtain wall construction method described in the third aspect embodiment of the present invention, the embedded box body further includes two top plates and two positioning components. Each top plate is respectively arranged above the front side plate and the inner side plate. The top plate is provided with a third chute extending horizontally. The positioning component includes a third sliding part and a positioning plate. The positioning plate is provided with a fourth chute extending longitudinally. The third sliding part is slidably arranged through the third chute and the fourth chute;
[0027] Before lifting and installing the column connected with the support rod member, slide and adjust the positioning plate until the positioning plate is in a suitable longitudinal position and horizontal position, and hoist the unit plate according to the position of the positioning plate;
[0028] When sliding and adjusting the first connecting plate, refer to the position of the unit plate, so that the column can be spliced with the unit plate when it is in a specific horizontal position and vertical position.
[0029] According to the curtain wall construction method described in the third aspect embodiment of the present invention, the curtain wall system includes a louver structure. The louver structure, the column and the support rod member are modularly arranged to form a cantilever louver unit. The method for splicing the upper and lower adjacent cantilever louver units includes:
[0030] Before splicing, a stabilizing rod for temporary fixation is arranged between the louver structure and the column;
[0031] Lift the louver structure to fix adjacent upper and lower columns to each other and fix adjacent upper and lower louver structures to each other;
[0032] Remove the stabilizing rod and carry out the assembly construction of the louver structure.
[0033] It is not difficult to understand that the curtain wall system in the second aspect embodiment of the present invention and the curtain wall construction method in the third aspect embodiment of the present invention both have the technical effect of the box-shaped embedded part that can be adjusted in multiple dimensions in the first aspect embodiment as described above, so details are not repeated here.
[0034] The additional aspects and advantages of the present invention will be partially given in the following description, partially become obvious from the following description, or be understood through the practice of the present invention. Description of the Drawings
[0035] The present invention will be further described below in conjunction with the drawings and embodiments;
[0036] Figure 1 It is a schematic structural diagram of the embedded box in the embodiment of the present invention;
[0037] Figure 2 It is a schematic structural diagram of the embedded box in the embodiment of the present invention when the first connecting plate, the second connecting plate and the positioning plate are installed;
[0038] Figure 3 It is a schematic diagram of lifting the louver structure in the embodiment of the present invention;
[0039] Figure 4 It is a schematic diagram of removing the stabilizing rod in the embodiment of the present invention;
[0040] Figure 5 It is a schematic diagram after construction is completed in the embodiment of the present invention;
[0041] Figure 6 It is a node diagram in the embodiment of the present invention.
[0042] Reference Signs:
[0043] Embedded box 100, rear side plate 110, first chute 111, front side plate 120, inner side plate 130, top plate 140, third chute 141, first cavity 150, second cavity 160;
[0044] First connecting plate 200, first sliding part 210, first sliding member 211, first connecting part 220, first fixing member 221;
[0045] Positioning plate 300, fourth chute 310, third sliding member 320, card slot 330;
[0046] Second connecting plate 400, second sliding portion 410, fifth chute 411, second connecting portion 420, sixth chute 421, second fixing member 430, second sliding member 440;
[0047] Louver structure 510, upright column 520, support member 530, stabilizing member 540. Detailed implementation manners
[0048] The embodiments of the present application will be described in detail below. The examples of the embodiments are shown in the accompanying drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the accompanying drawings are exemplary and are only used to explain the present application and should not be construed as a limitation to the present application.
[0049] In the description of the present application, it should be understood that the orientation or positional relationship indicated by terms such as up, down, front, back, left, right, etc. is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present application.
[0050] In the description of the present application, the meaning of several is one or more, and the meaning of multiple is at least two. Understandings such as greater than, less than, exceeding, etc. do not include the recited number, and understandings such as above, below, within, etc. include the recited number. If there is a description of first and second, it is only for the purpose of distinguishing technical features and should not be construed as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features or implicitly indicating the sequence relationship of the indicated technical features.
[0051] In the description of the present application, unless otherwise clearly defined, terms such as setting, installing, connecting, etc. should be understood in a broad sense. Those skilled in the art can reasonably determine the specific meanings of the above terms in the present application after combining with the specific content of the technical solution.
[0052] Refer to Figures 1 to 6 , the multidimensionally adjustable box-shaped embedded part of the first aspect embodiment of the present application is applied to a building curtain wall. The multidimensionally adjustable box-shaped embedded part includes an embedded box body 100 and a first connecting plate 200.
[0053] The embedded box body 100 includes a rear side plate 110, two front side plates 120 and two inner side plates 130. A first sliding groove 111 extending horizontally is provided on the rear side plate 110. The two front side plates 120 are arranged at intervals horizontally. The rear side plate 110 and each front side plate 120 are arranged opposite to each other at intervals longitudinally. Each inner side plate 130 is arranged longitudinally. One end of the inner side plate 130 is respectively connected to the front side plate 120, and there is a gap between the other end of the inner side plate 130 and the rear side plate 110, so as to define a first cavity 150 extending horizontally between the rear side plate 110 and the two inner side plates 130, and a second cavity 160 extending longitudinally is defined between adjacent inner side plates 130, and the first cavity 150 and the second cavity 160 are communicated; and the first connecting plate 200 includes a first sliding part 210 and a first connecting part 220. A second sliding groove extending vertically is provided on the first sliding part 210. A first sliding member 211 is slidably arranged on the first sliding groove 111 and the second sliding groove, so that the first connecting plate 200 can be slidably adjusted vertically and horizontally. A first fixing member 221 for connection is provided on the first connecting part 220. By cooperatively arranging the embedded box body 100 and the first connecting plate 200, the longitudinal, horizontal and vertical adjustment requirements of the cantilevered large decorative strip are met by using the second cavity 160, the first sliding groove 111 and the second sliding groove, so that the installation of the independent cantilevered louver can be fast and accurate, and the box-type embedded part has a simple structure and is convenient to use, thereby improving the construction efficiency and quality of the curtain wall. It can be understood that the first cavity 150 is defined as the installation and adjustment area of the support member 530, and the second cavity 160 is defined as the operation area for adjusting the first connecting plate 200, and the structure of the embedded box body 100 is reasonably designed to facilitate use and construction.
[0054] In some embodiments of the present application, the embedded box body 100 further includes two top plates 140 and two positioning components. Each top plate 140 is respectively disposed above the front side plate 120 and the inner side plate 130. A third chute 141 extending in the transverse direction is provided on the top plate 140. The positioning component includes a third sliding member 320 and a positioning plate 300. A fourth chute 310 extending in the longitudinal direction is provided on the positioning plate 300. The third sliding member 320 is slidably disposed through the third chute 141 and the fourth chute 310, so that the positioning plate 300 can be slidably adjusted in the longitudinal and transverse directions. It can be understood that the cooperation between the rear side plate 110 and the first connecting plate 200 can be used for the positioning and adjustment of the overhanging large decorative strip. Further, the cooperation between the top plate 140 and the positioning component can be used for the positioning and adjustment of the unit plates on both sides of the overhanging large decorative strip. Both the overhanging large decorative strip and the unit plates can be based on each other according to the actual situation, so as to improve the installation accuracy complementarily and make the overall construction quality of the curtain wall system higher. More specifically, by determining the relative position relationship in the vertical direction between the unit plate and the positioning plate 300, the positioning in the vertical direction is realized. Then, by synchronously moving the positioning plate 300 and the unit plate, the positioning plate 300 can be adjusted horizontally and longitudinally along the third chute 141 and the fourth chute 310, so as to realize the precise positioning of the unit plate.
[0055] Preferably, a card slot 330 for vertical guidance is provided at the end of the positioning plate 300. It should be noted that by providing a sliding portion on the unit plate that cooperates with the card slot 330, after the unit plate and the card slot 330 are slidably engaged, fine adjustment of the vertical position can be performed, and the unit plate can move synchronously during horizontal and longitudinal adjustment. Therefore, after being adjusted to a suitable vertical position, the horizontal and longitudinal adjustment can be realized by moving the positioning plate 300, which is convenient to use and can be quickly and accurately installed. In some other embodiments, other structural members capable of positioning can also be provided at the end of the positioning plate 300, and corresponding structures that cooperate with them can be provided on the corresponding unit plates, so as to realize vertical positioning and adjustment to ensure accurate position.
[0056] In some embodiments of the present application, the box-shaped embedded part that can be adjusted multidimensionally further includes a second fixing member 430, a second connecting plate 400, and a second sliding member 440. The second connecting plate 400 includes a second sliding portion 410 and a second connecting portion 420. A fifth chute 411 extending horizontally is provided on the second sliding portion 410. The second fixing member 430 passes through the fifth chute 411 and is arranged on the front side plate 120. A sixth chute 421 extending vertically is provided on the second connecting portion 420. The second sliding member 440 is slidably arranged horizontally through each sixth chute 421. It can be understood that this box-shaped embedded part is used to position and adjust the cantilever support member 530. Therefore, in order to ensure the stability of fixation and the accuracy of adjustment and avoid tilting due to the excessive length of the member, a first connecting plate 200 is provided on the rear side plate 110 of the embedded box 100, and a second connecting plate 400 is provided on the front side plate 120 of the embedded box 100. The first connecting plate 200 and the second connecting plate 400 are arranged in cooperation. After the support member 530 is adjusted to the appropriate longitudinal position, the first connecting plate 200 and the second connecting plate 400 are respectively fixedly connected to the support member 530, and then the support member 530 is adjusted horizontally and vertically by moving the first connecting plate 200 and the second connecting plate 400 to further ensure the accurate position.
[0057] Preferably, the first connecting plate 200 and the second connecting plate 400 are angle codes, that is, the first connecting portion 220 and the first sliding portion 210 are arranged perpendicular to each other, and the second sliding portion 410 and the second connecting portion 420 are arranged perpendicular to each other. Specifically, the structures of the first connecting plate 200 and the second connecting plate 400 are the same. More specifically, in the upper and middle parts of the structure of this box-shaped embedded part, there is an open T-shaped cavity, and the edges are closed cavities, and the whole is a symmetric structure. Two horizontal long holes are opened on the rear side plate 110 for adjustable horizontal positioning; each of the two front side plates 120 is provided with a keyhole composed of a large round hole and a vertical long hole for adjustable vertical positioning; two horizontal open long holes are opened on the two top plates 140 for adjustable horizontal positioning, and a vertical open long hole is opened on the positioning plate 300 for adjustable longitudinal positioning.
[0058] Referring to Figures 1 to 6 , for the curtain wall system according to the second aspect embodiment of the present application, the curtain wall system can be a building curtain wall, especially a curtain wall system with large decorative lines. The curtain wall system includes the box-shaped embedded part that can be adjusted multidimensionally according to the first aspect embodiment of the present application, a column 520, and a support member 530. By innovating in aspects such as the support structure, the curtain wall system structure, and the installation process, the economic and social benefits are remarkable.
[0059] In some embodiments of the present application, the curtain wall system includes a louver structure 510. The louver structure 510, the column 520, and the support member 530 are modularly arranged to form a cantilever louver unit. It can be understood that the cantilever louver units for shading form a cantilever large decorative strip system. The cantilever louver unit includes a front-end decorative member and a rear-end unit column 520. The front-end decorative member includes a support member 530 composed of square tubes and a louver structure 510 made of aluminum alloy. The rear-end unit column 520 includes a front profile of the public column made of aluminum alloy and a rear profile of the public column made of aluminum alloy. The two form an aluminum alloy public column profile. There are two front and rear insertion wings on both sides of the public column profile, which can be inserted into adjacent curtain wall unit panels; there are two front and rear rubber strips on both sides of the public column profile, which can be correspondingly pressed and sealed with the rubber strips of adjacent curtain wall unit panels; there are square notches at the front and rear of the public column profile, which can allow the support member 530 of the square tube and the pipe sleeve to pass through. Integrating the support member 530 into the louver structure 510 for modular design can not only solve the problems of cumbersome installation procedures and large consumption of manpower and material resources, but also make the waterproof and sealing effect better, and the on-site construction can be easier.
[0060] Referring to Figures 1 to 6 , the curtain wall construction method according to the third aspect embodiment of the present application. The curtain wall construction method can be the construction method of the curtain wall system according to the second aspect embodiment of the present application. The curtain wall construction method uses the multi-dimensionally adjustable box-shaped embedded part according to the first aspect embodiment of the present application, and includes the following steps:
[0061] Install the embedded box 100 to the preset position, and slide the first sliding part 210 on the rear side plate 110 through the first sliding part 211;
[0062] Lift and install the column 520 connected with the support member 530. After putting the support member 530 into the first cavity 150 along the second cavity 160, longitudinally fine-tune the column 520 until the column 520 unit is in a specific longitudinal position;
[0063] Taking the first cavity 150 as the operation area, fixedly connect the support member 530 and the first connection part 220 through the first fixing part 221;
[0064] Slide and adjust the first connecting plate 200 to finely adjust the column 520 unit until the column 520 unit is in a specific lateral position and vertical position;
[0065] The upper and lower sides of the column 520 are used for splicing, and the left and right sides of the column 520 are used for installing with the unit panel;
[0066] Embed the embedded box 100 and take good waterproof measures to complete the construction.
[0067] In some embodiments of the present application, the embedded box body 100 further includes two top plates 140 and two positioning components. Each top plate 140 is respectively arranged above the front side plate 120 and the inner side plate 130. A third sliding groove 141 extending in the transverse direction is provided on the top plate 140. The positioning component includes a third sliding member 320 and a positioning plate 300. A fourth sliding groove 310 extending in the longitudinal direction is provided on the positioning plate 300. The third sliding member 320 is slidably arranged through the third sliding groove 141 and the fourth sliding groove 310;
[0068] Before hoisting and connecting the column 520 with the support rod member 530, slide and adjust the positioning plate 300 until the positioning plate 300 is in a suitable longitudinal position and transverse position, and hoist the unit plate according to the position of the positioning plate 300;
[0069] When sliding and adjusting the first connecting plate 200, it is carried out with reference to the position of the unit plate, so that the column 520 can be spliced with the unit plate when it is in a specific transverse position and vertical position.
[0070] In some embodiments of the present application, the curtain wall system includes a louver structure 510. The louver structure 510, the column 520 and the support rod member 530 are modularly arranged to form a cantilever louver unit. The method for splicing the upper and lower adjacent cantilever louver units includes:
[0071] Before splicing, a stabilizing rod member 540 for temporary fixation is arranged between the louver structure 510 and the column 520;
[0072] Hoist the louver structure 510 to fix the upper and lower adjacent columns 520 to each other and fix the upper and lower adjacent louver structures 510 to each other;
[0073] Remove the stabilizing rod member 540 and carry out the assembly construction of the louver structure 510.
[0074] It can be understood that the unit plates on both sides of the cantilever large decorative strip are inserted into the cantilever large decorative strip plate through the slots; and are correspondingly pressed and sealed by the rubber strips. The support rod member 530 of the independent cantilever louver unit realizes the function of left - right adjustment through the two transverse long circular holes on the rear side plate 110 and the first connecting plate 200, and through the transverse long circular holes on the second connecting plate 400; realizes the function of up - down adjustment through connecting with the vertical long circular holes on the first connecting plate 200 and the second connecting plate 400; realizes the function of front - back adjustment through the front - back adjustment of the support rod member 530 itself and then fixing with the first connecting plate 200 and the second connecting plate 400, so as to meet the three - dimensional six - direction adjustment of the independent cantilever louver unit.
[0075] It can be understood that T-shaped transverse open long holes are provided on the two top plates 140 of the box-shaped embedded parts. They are connected by T-shaped bolts and the positioning plate 300. Vertical long holes are provided at one end of the positioning plate 300 connected to the T-shaped transverse long round holes of the top plate 140, and a T-shaped notch is provided at the other end for connection with the aluminum alloy hanging ears of the unit plate. The T-shaped transverse long round holes on the box-shaped embedded parts can realize the left-right adjustment of the floor code. The long round holes of the positioning plate 300 can realize the front-back adjustment. The adjustment bolts on the aluminum alloy hanging ears of the unit plate realize the up-down adjustment function of the plate, so as to meet the three-dimensional six-direction adjustment of the unit plates on the left and right sides of the independent cantilever louver unit. Thus, the box-shaped embedded parts perfectly realize the three-dimensional six-direction adjustment and hanging of three adjacent unit plates.
[0076] It should be noted that in terms of structure, the independent cantilever louver unit is formed by connecting a vertical public column, a horizontal connecting rod member and a vertical louver to form an independent unit structure. The processed and assembled louver unit is a unit similar to the shape of the Chinese character 'ji', that is, the public column and the louver above the unit are connected by a rod member, and the lower part of the unit is in an open and unconnected state, without forming a closed three-sided or quadrilateral stress structure, which is prone to deformation and instability. Therefore, before hanging, the stable rod member 540 is detachably arranged to realize temporary fixation. The lower part of the louver unit is temporarily fixed to the outer profile of the aluminum alloy louver and the public column through a steel square pipe and an angle steel adapter, forming a stable quadrilateral structure. After the public column and the louver are both installed, the stable rod member 540 is disassembled, so as to quickly and accurately complete the hanging of the independent cantilever louver.
[0077] The technical features of the above-described embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above-described embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as the scope recorded in this specification.
[0078] The embodiments of the present application have been described in detail above in conjunction with the accompanying drawings. However, the present application is not limited to the above embodiments. Within the scope of knowledge possessed by those of ordinary skill in the art in the technical field, various changes can be made without departing from the purpose of the present application.
Claims
1. A box-shaped embedded part with multi-dimensional adjustment, characterized in that: include: The embedded box body comprises a rear side panel, two front side panels and two inner side panels, wherein the rear side panel is provided with a first slide groove extending in the transverse direction, the two front side panels are spaced apart in the transverse direction, the rear side panel and each of the front side panels are spaced apart in the longitudinal direction and are opposite to each other, each of the inner side panels is arranged in the longitudinal direction, one end of the inner side panel is respectively connected to the front side panels, and there is a gap between the other end of the inner side panel and the rear side panel, so that a first cavity extending in the transverse direction is defined between the rear side panel and the two inner side panels, a second cavity extending in the longitudinal direction is defined between adjacent inner side panels, and the first cavity is connected to the second cavity; and The first connecting plate includes a first sliding portion and a first connecting portion. The first sliding portion is provided with a second sliding groove extending vertically. The first sliding groove and the second sliding groove are slidably provided with a first sliding member so that the first connecting plate can be slidably adjusted vertically and horizontally. The first connecting portion is provided with a first fixing member for connection.
2. The box-shaped embedded part capable of multi-dimensional adjustment according to claim 1, wherein: The embedded box body also includes two top plates and two positioning assemblies, each of the top plates is respectively arranged above the front side plate and the inner side plate, the top plate is provided with a third slide groove extending in the transverse direction, the positioning assembly includes a third sliding member and a positioning plate, the positioning plate is provided with a fourth slide groove extending in the longitudinal direction, the third sliding member can be slidably passed through the third slide groove and the fourth slide groove, so that the positioning plate can be slidably adjusted in the longitudinal and transverse directions.
3. The box-shaped embedded part capable of multi-dimensional adjustment according to claim 2, characterized in that: A slot for vertical guidance is provided on the end of the positioning plate.
4. The multi-dimensionally adjustable box-shaped embedded part according to claim 1, characterized in that: The multi-dimensionally adjustable box-type embedded part also includes a second fixing part, a second connecting plate and a second sliding part. The second connecting plate includes a second sliding portion and a second connecting portion. The second sliding portion is provided with a fifth sliding groove extending in the transverse direction. The second fixing part is arranged on the front side plate through the fifth sliding groove. The second connecting portion is provided with a sixth sliding groove extending in the vertical direction. The second sliding part can be slidably arranged in the transverse direction through each of the sixth sliding grooves.
5. The multi-dimensionally adjustable box-shaped embedded part according to claim 4, characterized in that: The first connecting plate and the second connecting plate are angle brackets.
6. A curtain wall system, characterized in that: include: The multi-dimensionally adjustable box-shaped embedded part according to any one of claims 1 to 5; pillars; A support rod, one end of which is connected to the column, and the other end of which is installed in the first cavity.
7. The curtain wall system according to claim 6, characterized in that: The curtain wall system includes a louver structure, and the louver structure, the columns and the supporting rods are modularly arranged to form a cantilevered louver unit.
8. A construction method for a curtain wall system, characterized in that, Using the multi-dimensionally adjustable box-shaped embedded part according to claim 1 includes the following steps: Install the embedded box to a preset position, and slide the first sliding portion onto the rear side panel using the first sliding member; hoisting a column connected to a support rod, placing the support rod into the first cavity along the second cavity, and then fine-tuning the column longitudinally until the column is in a specific longitudinal position; Taking the first cavity as the operating area, the support rod and the first connecting portion are fixedly connected by the first fixing member; Sliding and adjusting the first connecting plate to fine-tune the column until the column is in a specific horizontal position and vertical position; The upper and lower sides of the column are used for splicing, and the left and right sides of the column are used for installation with the unit panels; The embedded box is embedded in advance and waterproof measures are taken to complete the construction.
9. The curtain wall system construction method according to claim 8, characterized in that: The embedded box body further includes two top plates and two positioning assemblies, each of the top plates is respectively arranged above the front side plate and the inner side plate, the top plates are provided with a third slide groove extending in the transverse direction, the positioning assembly includes a third sliding member and a positioning plate, the positioning plate is provided with a fourth slide groove extending in the longitudinal direction, and the third sliding member can slide through the third slide groove and the fourth slide groove; Before hoisting the column connected to the support rod, slide and adjust the positioning plate until the positioning plate is in a suitable longitudinal position and transverse position, and hoist the unit plate according to the position of the positioning plate; When the first connecting plate is slidably adjusted, the position of the unit plate is referred to so that the column can be spliced with the unit plate when it is in a specific horizontal position and vertical position.
10. The curtain wall system construction method according to claim 8, characterized in that: The curtain wall system includes a louver structure, wherein the louver structure, the columns, and the supporting rods are modularly arranged to form a cantilevered louver unit, and a method for splicing the upper and lower adjacent cantilevered louver units includes: Before splicing, a stabilizing rod is provided between the shutter structure and the column for temporary fixation; Hoisting the louver structure so that the upper and lower adjacent columns are fixed to each other, so that the upper and lower adjacent louver structures are fixed to each other; The stabilizing rod is disassembled, and the louver structure is assembled.
Citation Information
Patent Citations
Curtain wall hanging system
CN112832433A
Embedded connecting structure for curtain wall installation
CN215670127U