Seamless mounting structure of thermal insulation boards for architectural decoration engineering
The seamless installation structure of the plate assembly, base assembly and adjustment assembly solves the problems of shrinkage deformation of the foaming agent and unstable connection, achieves flat positioning and convenient installation of the plate, and improves installation efficiency and stability.
Patent Information
- Application Number
- CN202511088991.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-05
- Publication Date
- 2025-10-17
AI Technical Summary
In the prior art, the gaps filled with foaming agents are prone to shrinkage and deformation under the action of temperature differences, resulting in cavities, which affects stability. In addition, the mechanical connections are discontinuous and prone to fatigue damage. The installation process is complicated and requires a lot of repairs.
It adopts plate components, base components and adjustment components, realizes seamless installation through limiting structure and adjustment mechanism, and utilizes the coordination of components such as fixing parts, pushing parts and rotating parts to realize flat positioning and convenient installation of plate.
The flatness of the panel installation is guaranteed, the shrinkage and deformation of the foaming agent is avoided, the installation process is simplified, and the connection stability and installation efficiency are improved.
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Figure CN120797922A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of building decoration engineering, in particular to a seamless installation structure of a thermal insulation board used in building decoration engineering. Background Art
[0002] The main body of the board, as a key material for building energy conservation, is usually composed of polymer mortar, glass fiber mesh cloth, flame-retardant molded polystyrene foam board or extruded board and other materials. Its installation quality directly affects the thermal insulation performance and service life of the building.
[0003] The existing technology generally uses foaming agent to fill the gaps between insulation boards. The foaming agent layer is limited by setting limiting protrusions on the side walls of the board. Although the filling stability is improved to a certain extent, it still relies on chemical filling materials in essence. Under the action of temperature difference stress cycle, its volume will shrink and deform, resulting in peeling cavities at the interface between the filling layer and the board.
[0004] Existing mechanical connection devices also generally have the problem of discontinuous force transmission paths. Under the action of wind loads, especially in high-rise buildings, the insulation panels are prone to slight vibrations, which will lead to fatigue damage of the connectors after long-term accumulation. At the same time, the building base surface facing the installation of the main body of the panel often has a certain degree of flatness deviation, resulting in a large amount of on-site finishing work during the installation process. Summary of the Invention
[0005] In order to solve the problems in the above-mentioned prior art that the use of foaming agents to fill gaps will cause cavities to appear under temperature difference cycles, affecting stability, and the installation and connection are relatively complicated and unstable, and a large amount of insulation board flatness finishing work is required subsequently, the present invention provides a seamless installation structure for insulation boards for building decoration projects, which is achieved through the following technical solutions.
[0006] A seamless installation structure for thermal insulation panels for building decoration projects, comprising a panel assembly, a base assembly, and an adjustment assembly. The panel assembly comprises a panel body and a splicing strip disposed on the panel body. A mounting notch is provided on one side of the panel body. A fixing member is installed within the mounting notch, and a movable member is connected to the fixing member.
[0007] The base assembly includes a base member and a mounting slot provided on the base member, a first pusher is provided inside the mounting slot, and a second pusher is provided on the upper side of the first pusher;
[0008] The adjustment component includes a rotating member and a control member fixedly connected to one end of the rotating member, and a positioning cavity is provided on the outer side of the control member.
[0009] As a preferred scheme of the seamless installation structure of the heat preservation plate for building decoration engineering, the fixing member comprises a fixing plate and limiting notches formed at two ends of the fixing plate, a limiting baffle is fixedly connected to the fixing plate, and a first spring is arranged on one side of the fixing plate.
[0010] As a preferred scheme of the seamless installation structure of the heat preservation plate for building decoration engineering, the moving member comprises a moving plate and limiting moving plates fixedly connected to two ends of the moving plate, and a second spring is arranged on the moving plate.
[0011] As a preferred scheme of the seamless installation structure of the heat preservation plate for building decoration engineering, the limiting moving plates are limited to slide inside the limiting notches, so that the moving plate moves inside the fixing plate, and two ends of the second spring are fixedly connected to the fixing plate and the moving plate.
[0012] As a preferred scheme of the seamless installation structure of the heat preservation plate for building decoration engineering, the base member comprises a base plate and a limiting sliding rod fixedly arranged inside the base plate, and a third spring is arranged on the outside of the limiting sliding rod.
[0013] As a preferred scheme of the seamless installation structure of the heat preservation plate for building decoration engineering, the fixing plate is inserted into the inside of the installation sliding groove in cooperation, a clamping groove is formed in the inside of the installation sliding groove, so that a convex strip structure is formed on the installation sliding groove, and the convex strip structure can push the moving plate to move.
[0014] As a preferred scheme of the seamless installation structure of the heat preservation plate for building decoration engineering, the first pushing member comprises a pushing plate and a cooperation arc groove formed on the pushing plate, and limiting sliding strips are connected to two ends of the pushing plate; and the internal structures of the first pushing member and the second pushing member are same.
[0015] As a preferred scheme of the seamless installation structure of the heat preservation plate for building decoration engineering, the rotating member comprises a rotating shaft and rotating cams fixedly connected to the rotating shaft, and multiple rotating cams are arranged on the rotating shaft.
[0016] As a preferred scheme of the seamless installation structure of the heat preservation plate for building decoration engineering, the control member comprises a fixed shell and a first cooperation structure arranged inside the fixed shell, and a second cooperation structure is connected to the outside of the first cooperation structure;
[0017] The first cooperation structure comprises a cooperation sliding rod and a cooperation cover fixedly connected to one end of the cooperation sliding rod, a fourth spring is arranged on one side of the cooperation cover, a cooperation seat is connected to the cooperation sliding rod, and a cooperation inclined opening is formed in the cooperation seat;
[0018] The second matching structure comprises a moving straight rod and a matching wedge fixed on one side of the moving straight rod, and the other side of the moving straight rod is fixedly connected with a positioning clamping strip.
[0019] As a preferred scheme of the seamless installation structure of the heat preservation plate for building decoration engineering, the cross section shape of the matching cover is a regular hexagon, and a hole groove with the same cross section shape as the matching cover but slightly larger size is formed on the side of the fixed shell where the matching cover is installed, so that the matching cover is limited to slide in the hole groove.
[0020] The present application has the following beneficial effects:
[0021] 1. By setting the plate assembly and the base assembly, the sizes of the base pieces are the same, and by setting two base pieces, the plate body can be installed on the base pieces, so that the installation of the plate body is flat, and the subsequent installation of the plate body is flat, and the subsequent installation of the plate body is flat.
[0022] 2. By inserting the fixing piece into the inside of the installation sliding groove, the position of the plate body can be moved at will, and the installation position of the plate body can be adjusted, and by setting the adjusting assembly, the control member is rotated to rotate the rotating member, and the pushing plate is moved by the rotating cam in the matching arc groove, the second pushing member is synchronously moved in the opposite direction with the first pushing member, and finally the fixing piece is moved, the fixing piece and the installation sliding groove are fixed and positioned, the installation of the plate assembly is completed, and the installation process is more convenient.
[0023] 3. By setting the adjusting assembly, the movement of the first pushing member is controlled, so that the operation is more convenient and fast; by setting the matching cover, the matching cover is pressed by a tool to move, at this time, due to the movement of the matching seat, the moving straight rod and the positioning clamping strip are controlled to move by the matching connection between the matching wedge and the matching inclined port, so that the positioning clamping strip and the positioning cavity are separated from the clamping, then the rotating member is controlled to rotate, and the movement of the first pushing member is controlled, so that the installation of the plate assembly is controlled, the operation is simple and fast, and the work efficiency can be improved. BRIEF DESCRIPTION OF DRAWINGS
[0024] In order to more clearly illustrate the technical solutions of the present application, the drawings needed in the following specific implementation description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative effort on the basis of these drawings.
[0025] Figure 1 : The overall structural schematic diagram of the present application;
[0026] Figure 2 : The enlarged structural schematic diagram of A in the present application Figure 1
[0027] Figure 3 : The connecting structural schematic diagram of the plate assembly in the present application;
[0028] Figure 4 : The enlarged structural schematic diagram of B in the present application Figure 3
[0029] Figure 5 : The cross-sectional structural schematic diagram of the connection between the plate assembly and the base assembly in the present application;
[0030] Figure 6 : The enlarged structural schematic diagram of C in the present application Figure 5
[0031] Figure 7 : The exploded structural schematic diagram of the base assembly in the present application;
[0032] Figure 8 : The enlarged structural schematic diagram of D in the present application Figure 7
[0033] Figure 9 : The cross-sectional structural schematic diagram of the base piece in the present application;
[0034] Figure 10 : The enlarged structural schematic diagram of E in the present application Figure 9
[0035] Figure 11 : The cross-sectional structural schematic diagram of the connection between the control piece and the base plate in the present application;
[0036] Figure 12 : The cross-sectional structural schematic diagram of the base piece in the present application;
[0037] Figure 13 : The connecting structural schematic diagram between the first matching structure and the second matching structure in the present application.
[0038] The reference signs are as follows:
[0039] 10, plate assembly; 11, plate body; 12, splicing strip; 13, mounting notch; 14, fixing piece; 141, fixing plate; 142, limiting notch; 143, limiting baffle; 144, first spring; 15, moving piece; 151, moving plate; 152, limiting displacement plate; 153, second spring; 20, base assembly; 21, base piece; 211, base plate; 212, limiting sliding rod; 213, third spring; 22, mounting sliding groove; 23, first pushing piece; 231, pushing plate; 232, matching arc groove; 233, limiting sliding strip; 24, second pushing piece; 30, adjusting assembly; 31, rotating piece; 311, rotating shaft; 312, rotating cam; 32, control piece; 321, fixed shell; 322, first matching structure; 3221, matching displacement rod; 3222, matching cover; 3223, fourth spring; 3224, matching seat; 3225, matching bevel; 323, second matching structure; 3231, moving straight rod; 3232, matching wedge block; 3233, positioning clamping strip; 33, positioning cavity. DETAILED DESCRIPTION
[0040] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the present application.
[0041] Embodiment 1
[0042] Referring to Figures 1-8 As shown in FIG. 1, the first embodiment of the present application provides a seamless installation structure of thermal insulation plate for building decoration engineering, which comprises a plate assembly 10, a base assembly 20 and an adjusting assembly 30. The plate assembly 10 comprises a plate body 11 and a splicing strip 12 arranged on the plate body 11. One side of the plate body 11 is provided with a mounting notch 13. The mounting notch 13 is internally provided with a fixing piece 14. The fixing piece 14 is connected with a moving piece 15.
[0043] The splicing strip 12 is arranged on both sides of the plate body 11, which can be matched with other plate bodies 11 for installation. The mounting notch 13 is arranged on one side of the plate body 11 and is arranged in two places in up and down directions. The fixing piece 14 and the moving piece 15 are arranged in the mounting notch 13. The fixing piece 14 and the moving piece 15 in the two places of the mounting notch 13 are symmetrical.
[0044] The base assembly 20 comprises a base piece 21 and a mounting sliding groove 22 formed on the base piece 21, the inside of the mounting sliding groove 22 is provided with a first pushing piece 23, and the upper side of the first pushing piece 23 is provided with a second pushing piece 24; the mounting sliding groove 22 is formed on one side of the base piece 21 and can be connected with the fixing piece 14, and the first pushing piece 23 and the second pushing piece 24 are arranged in the middle part of the inside of the mounting sliding groove 22, so that the mounting sliding groove 22 is divided into two grooves arranged symmetrically above and below, and the two fixing pieces 14 arranged symmetrically above and below are respectively inserted into the two grooves.
[0045] The adjusting assembly 30 comprises a rotating piece 31 and a control piece 32 fixedly connected to one end of the rotating piece 31, and the outer side of the control piece 32 is provided with a positioning cavity 33; the rotating piece 31 and the control piece 32 are fixedly connected together, and the rotating piece 31 is arranged between the first pushing piece 23 and the second pushing piece 24, so that the movement of the rotating piece 31 can drive the first pushing piece 23 and the second pushing piece 24 to move synchronously, and the positioning cavity 33 is formed in the inside of the base piece 21 and used to connect with the control piece 32.
[0046] The fixing piece 14 comprises a fixed plate 141 and a limiting slot 142 formed at both ends of the fixed plate 141, a limiting baffle 143 is fixedly connected to the fixed plate 141, and the fixed plate 141 is provided with a first spring 144 on one side; one end of the fixed plate 141 is arranged in the inside of the mounting slot 13, so that the limiting baffle 143 moves in the limiting slot 142 on the mounting slot 13 to limit the limiting baffle 143, and the first spring 144 is also arranged in the inside of the mounting slot 13, so that the two ends of the first spring 144 are fixedly connected to the plate body 11 and the fixed plate 141.
[0047] The moving piece 15 comprises a moving plate 151 and a limiting displacement plate 152 fixedly connected to both ends of the moving plate 151, and the moving plate 151 is provided with a second spring 153; the limiting displacement plate 152 is limitedly slid in the limiting slot 142, so that the moving plate 151 moves in the fixed plate 141, and the two ends of the second spring 153 are fixedly connected to the fixed plate 141 and the moving plate 151.
[0048] The base piece 21 comprises a base plate 211 and a limiting sliding rod 212 fixedly arranged in the inside of the base plate 211, and the outer side of the limiting sliding rod 212 is provided with a third spring 213; the limiting sliding rod 212 is evenly arranged at equal intervals in the inside of the base plate 211, and the third spring 213 is arranged on the outer side of the limiting sliding rod 212, and the third spring 213 is arranged on both sides of the limiting sliding rod 212, and is used to connect the first pushing piece 23 and the second pushing piece 24 with the base plate 211.
[0049] The first pushing piece 23 comprises a pushing plate 231 and a matching arc groove 232 formed on the pushing plate 231, and both ends of the pushing plate 231 are connected with limiting sliding strips 233; the limiting sliding strips 233 are arranged at four corners of the pushing plate 231 and are limited to slide on the slide groove formed on the base plate 211, so as to limit the movement of the pushing plate 231; meanwhile, the internal structures of the first pushing piece 23 and the second pushing piece 24 are the same.
[0050] The fixing plate 141 is matched and inserted into the installation sliding groove 22, the installation sliding groove 22 is provided with a clamping groove, the edge of the installation sliding groove 22 close to 111 is connected to form a convex strip structure, the convex strip structure can push and move the moving plate 151, when the rotating piece 31 drives the first pushing piece 23 and the second pushing piece 24 to move, the fixing plate 141 can be pushed to move, at this time, due to the limitation of the convex strip structure to the moving plate 151, the moving plate 151 moves in the fixing plate 141, and finally the fixing plate 141 is clamped with the installation sliding groove 22, and the positioning and fixing are completed.
[0051] Embodiment 2
[0052] Referring to Figures 6-13 The second embodiment of the application is shown in the drawings, which is further improved on the basis of the first embodiment, wherein the rotating piece 31 comprises a rotating shaft 311 and a rotating cam 312 fixedly connected to the rotating shaft 311, and the rotating cam 312 is arranged at multiple positions on the rotating shaft 311; the rotating cam 312 is matched and arranged in the matching arc groove 232, so that when the rotating shaft 311 drives the rotating cam 312 to rotate, the first pushing piece 23 and the second pushing piece 24 can be synchronously pushed to rotate.
[0053] The control piece 32 comprises a fixed shell 321 and a first matching structure 322 arranged in the fixed shell 321, and the outer side of the first matching structure 322 is connected with a second matching structure 323, one end of the fixed shell 321 is fixedly connected to the rotating shaft 311, so that the rotation of the fixed shell 321 can drive the rotating shaft 311 to rotate, and the other side of the fixed shell 321 is located outside the base plate 211, so as to facilitate adjustment;
[0054] The first matching structure 322 comprises a matching moving rod 3221 and a matching cover 3222 fixedly connected to one end of the matching moving rod 3221, and one side of the matching cover 3222 is provided with a fourth spring 3223; the matching moving rod 3221 is connected with a matching seat 3224, and the matching seat 3224 is provided with a matching inclined mouth 3225; the second matching structure 323 comprises a moving straight rod 3231 and a matching wedge block 3232 fixedly connected to one side of the moving straight rod 3231, and the other side of the moving straight rod 3231 is fixedly connected with a positioning clamping strip 3233.
[0055] The cooperation cover 3222 is fixedly connected to one end of the cooperation moving rod 3221, and the cross section shape of the cooperation cover 3222 is a regular hexagon, a hole groove with the same cross section shape as the cooperation cover 3222 but slightly larger size is arranged on one side of the fixed shell 321, so that the cooperation cover 3222 is limitedly slid in the hole groove, and the two ends of the fourth spring 3223 are fixedly connected to the fixed shell 321 and the cooperation cover 3222 respectively, to reset the movement of the first cooperation structure 322;
[0056] The cooperation seat 3224 is fixedly connected to the cooperation moving rod 3221, and the two side edges of the cooperation inclined port 3225 are inclinedly arranged, and the two side edges of the cooperation wedge block 3232 adopt the same inclination angle as the cooperation inclined port 3225, so that the cooperation wedge block 3232 is connected to the inside of the cooperation inclined port 3225, at this time, when the cooperation moving rod 3221 drives the cooperation seat 3224 to move, the movement of the moving straight rod 3231 can be controlled by the cooperation between the cooperation inclined port 3225 and the cooperation wedge block 3232, and the second cooperation structure 323 is uniformly arranged at the same angle outside the fixed shell 321, so that the coupling between the final second cooperation structure 323 and the positioning cavity 33 is more stable.
[0057] The working principle of the present application is as follows:
[0058] In use, first, the fixing piece 14 is inserted into the inside of the installation sliding groove 22, at this time, the plate body 11 can be moved on the base piece 21 to adjust the position, and other plate bodies 11 are simultaneously installed on the base piece 21, and the splicing strips 12 are matched with each other, so that the positioning and installation between the plate bodies 11 are completed.
[0059] Then, the cooperation cover 3222 is moved by a tool, and the tool is clamped into the inside of the fixed shell 321, at this time, the cooperation cover 3222 is moved to drive the cooperation seat 3224 to move through the cooperation moving rod 3221, and the cooperation inclined port 3225 and the cooperation wedge block 3232 are connected, so that the moving straight rod 3231 drives the positioning clamping strip 3233 to retract into the inside of the fixed shell 321, so that the positioning clamping strip 3233 is separated from the positioning cavity 33, and then the control piece 32 is rotated.
[0060] By rotating the control member 32, the rotating shaft 311 can be rotated, and then the rotating cam 312 is matched in the matching arc groove 232, so that the rotating cam 312 drives the first pushing member 23 and the second pushing member 24 to move, and then drives the fixing member 14 to move, and finally through the cooperation between the fixing member 14, the moving member 15 and the installation sliding groove 22, the position of the plate body 11 is positioned and fixed, after the fixing is completed, the tool is loosened, the first matching structure 322 is reset under the action of the fourth spring 3223, the positioning clamping strip 3233 is re-clamped with the positioning cavity 33, and the final fixing is completed.
[0061] The preferred embodiments of the application disclosed above are only used to help explain the application. The preferred embodiments do not describe all the details and limit the application to the specific embodiments. Obviously, according to the content of the specification, many modifications and changes can be made. The specification selects and specifically describes these embodiments in order to better explain the principles and practical applications of the application, so that those skilled in the art can well understand and utilize the application. The application is limited by the claims and the entire scope and equivalents thereof.
Claims
1. A seamless installation structure for thermal insulation panels for building decoration projects, comprising a panel assembly (10), a base assembly (20) and an adjustment assembly (30), characterized in that: The plate assembly (10) comprises a plate body (11) and a splicing strip (12) arranged on the plate body (11), and a mounting slot (13) is provided on one side of the plate body (11), a fixing member (14) is installed inside the mounting slot (13), and a moving member (15) is connected to the fixing member (14); The base assembly (20) includes a base member (21) and a mounting slot (22) provided on the base member (21); a first push member (23) is provided inside the mounting slot (22), and a second push member (24) is provided on the upper side of the first push member (23); The adjustment assembly (30) comprises a rotating member (31) and a control member (32) fixedly connected to one end of the rotating member (31), and a positioning cavity (33) is provided on the outer side of the control member (32).
2. The seamless installation structure of thermal insulation board for building decoration engineering according to claim 1 is characterized by: The fixing member (14) comprises a fixing plate (141) and limiting notches (142) provided at both ends of the fixing plate (141); a limiting baffle (143) is fixedly connected to the fixing plate (141); and a first spring (144) is provided on one side of the fixing plate (141).
3. The seamless installation structure of thermal insulation board for building decoration engineering according to claim 2 is characterized by: The moving member (15) comprises a moving plate (151) and displacement limiting plates (152) fixedly connected to both ends of the moving plate (151); a second spring (153) is provided on the moving plate (151).
4. The seamless installation structure of thermal insulation board for building decoration engineering according to claim 3 is characterized by: The displacement limiting plate (152) performs limiting sliding inside the limiting notch (142), so that the movable plate (151) moves inside the fixed plate (141), and the two ends of the second spring (153) are respectively fixedly connected to the fixed plate (141) and the movable plate (151).
5. The seamless installation structure of thermal insulation board for building decoration engineering according to claim 4 is characterized by: The base member (21) comprises a base plate (211) and a position-limiting slide rod (212) fixedly arranged inside the base plate (211), and a third spring (213) is arranged on the outer side of the position-limiting slide rod (212).
6. The seamless installation structure of thermal insulation board for building decoration engineering according to claim 5, characterized in that: The fixed plate (141) is inserted into the interior of the installation slide groove (22), and a card slot is provided inside the installation slide groove (22), so that a convex strip structure is formed on the installation slide groove (22), and the convex strip structure can push the movable plate (151) to move.
7. The seamless installation structure of thermal insulation board for building decoration engineering according to claim 6, characterized in that: The first pushing member (23) comprises a pushing plate (231) and a matching arc groove (232) provided on the pushing plate (231); both ends of the pushing plate (231) are connected to a limiting slide bar (233); the first pushing member (23) and the second pushing member (24) have the same internal structure.
8. The seamless installation structure of thermal insulation board for building decoration engineering according to claim 7, characterized in that: The rotating member (31) comprises a rotating shaft (311) and a rotating cam (312) fixedly connected to the rotating shaft (311), and the rotating cam (312) is arranged at multiple locations on the rotating shaft (311).
9. The seamless installation structure of thermal insulation board for building decoration engineering according to claim 8, characterized in that: The control member (32) comprises a fixed shell (321) and a first matching structure (322) arranged inside the fixed shell (321), and the outer side of the first matching structure (322) is connected to a second matching structure (323); The first matching structure (322) includes a matching shift rod (3221) and a matching cover (3222) fixedly connected to one end of the matching shift rod (3221), and a fourth spring (3223) is provided on one side of the matching cover (3222). The matching shift rod (3221) is connected to a matching seat (3224), and the matching seat (3224) is provided with a matching oblique opening (3225); The second matching structure (323) includes a movable straight rod (3231) and a matching wedge (3232) fixedly connected to one side of the movable straight rod (3231), and a positioning clip (3233) is fixedly connected to the other side of the movable straight rod (3231).
10. The seamless installation structure of thermal insulation board for building decoration engineering according to claim 9, characterized in that: The cross-sectional shape of the mating cover (3222) is a regular hexagon, and a hole groove having the same cross-sectional shape as the mating cover (3222) but slightly larger in size is provided on one side of the fixed housing (321) on which the mating cover (3222) is mounted, so that the mating cover (3222) can slide within the hole groove.