Building wall heat insulation anticorrosion insulation board
Patent Information
- Application Number
- CN202521337226.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-27
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-06-27
AI Technical Summary
[0005]本实用新型的目的在于,提供一种建筑墙壁隔热防腐保温板,以解决现有技术中存在实际应用中,通过操作两侧弹簧进行固定存在明显局限性,在安装较大规格板材时,由于需要同步调节两侧弹簧的压缩量改变卡接轴位置,从而作业过程中必须多人协同操作,严重制约了单人施工效率的问题
[0026] 1. This application, through the coordinated arrangement of components in the installation mechanism, enables a single person to drive and operate the pull plate to precisely confine the insulation layer within the installation frame. This optimization significantly improves the efficiency of single-person construction, reduces construction condition limitations, and effectively avoids the technical defects of traditional installation processes that require multiple people to work together.
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Figure CN224755224U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of building insulation board technology, specifically a building wall heat insulation and anti-corrosion insulation board. Background Technology
[0002] Building insulation boards are boards used to improve the energy-saving performance of buildings. They are usually made of materials such as EPS, XPS, rock wool or polyurethane. They can effectively block heat transfer by external application or internal installation, reducing heating and cooling energy consumption by 30%-50% and reducing carbon emissions. They are widely used in the external wall insulation systems of residential and public buildings and are an important component of green buildings.
[0003] A search revealed a Chinese patent with publication number CN222667154U that discloses a heat-insulating and corrosion-resistant insulation board for building walls, including an installation frame and an outer wall panel. The rear side wall of the installation frame is provided with two anchor nails that are symmetrically distributed from left to right. The outer wall panel is located inside the installation frame, and limit components are provided on both the left and right sides of the inner wall of the installation frame.
[0004] While the above-mentioned solution can install exterior wall panels without damage, there are significant limitations in practical applications. When installing larger panels, the compression of the springs on both sides needs to be adjusted simultaneously to change the position of the clamping shaft, requiring multiple people to work together, which severely restricts the efficiency of single-person construction. Therefore, we provide a building wall thermal insulation and anti-corrosion insulation board to solve the above problems. Summary of the Invention
[0005] The purpose of this utility model is to provide a heat-insulating and corrosion-resistant insulation board for building walls, in order to solve the problem that in the practical application of the prior art, there are obvious limitations in fixing by operating the springs on both sides. When installing larger-sized boards, it is necessary to adjust the compression of the springs on both sides simultaneously to change the position of the clamping shaft, so that multiple people must work together during the operation, which seriously restricts the efficiency of single-person construction.
[0006] The technical solution of this utility model is: a heat insulation and corrosion-resistant insulation board for building walls, comprising an installation mechanism and a protective mechanism installed on the building wall, wherein the protective mechanism is disposed on the end face of the installation mechanism away from the building wall, and the installation mechanism includes;
[0007] The mounting frame has a mounting groove on one end face and a hollow upper end forming a working cavity. The lower inner wall of the working cavity has an adjustment groove that communicates with the mounting groove.
[0008] The driven rod, at least one set of which is movably installed inside the working cavity, with one end connected to the inner side wall of the working cavity;
[0009] A limiting plate is provided inside the mounting groove, and its upper end extends through an adjustment groove to the inner side of the working cavity to form a sliding connection structure with the driven rod. The limiting plate is connected to the protective mechanism.
[0010] A drive assembly includes a limiting block disposed at the other end of the driven rod, and the end faces of the limiting block and the driven rod that are in contact with each other are provided with mutually adaptable inclined surfaces.
[0011] Furthermore, the limiting plate has multiple sets of protruding limiting rods on the end face away from the mounting frame.
[0012] Furthermore, the protective mechanism includes an insulation layer, and the outer surface of the insulation layer has a limiting insertion hole that is compatible with the limiting insertion rod.
[0013] Furthermore, the driving component also includes:
[0014] A first connecting rod, one end of which is rotatably connected to the limiting block, and the other end of which extends through the inner sidewall of the working cavity to the outer side of the mounting frame;
[0015] A pull plate, which is rotatably connected to the first connecting rod and located outside the working cavity.
[0016] Furthermore, the pull plate is provided with multiple sets of second connecting rods extending through the mounting frame to the inner side of the working cavity on one end face near the mounting frame, and the extended ends are provided with baffles.
[0017] Furthermore, a support spring is provided on the second connecting rod, located between the baffle and the inner sidewall of the working cavity.
[0018] Furthermore, a return spring is provided between the driven rod and the end that contacts the inner side of the working cavity, and the two ends of the return spring are fixedly connected to the mounting frame and the driven rod, respectively.
[0019] Furthermore, the sliding connection structure includes:
[0020] The first driven toothed plate is disposed on the lower end face of the end that contacts the inner side of the working cavity;
[0021] The second driven toothed plate is embedded in the upper end face of the limiting plate and is located below the first driven toothed plate;
[0022] The driven gear meshes with the first driven gear plate and the second driven gear plate, and is fixedly connected to the front and rear side walls of the inner side of the working cavity via a connecting shaft.
[0023] Furthermore, the limiting plate has outward-facing limiting notches on both sides, and the inner side of the limiting notches is connected to the edge of the opening of the horizontally moving adjustment groove.
[0024] Furthermore, a heat insulation board is fixedly connected to the inner wall of the heat insulation layer, and an anti-corrosion board is fixedly connected to the outer surface of the heat insulation board. The outer surface of the anti-corrosion board is fixedly connected to the heat insulation layer.
[0025] The advantages of this utility model compared with the prior art are:
[0026] 1. This application, through the coordinated arrangement of components in the installation mechanism, enables a single person to drive and operate the pull plate to precisely confine the insulation layer within the installation frame. This optimization significantly improves the efficiency of single-person construction, reduces construction condition limitations, and effectively avoids the technical defects of traditional installation processes that require multiple people to work together.
[0027] 2. This application achieves multiple protections for building walls through the coordinated arrangement of components in the protective mechanism. This optimization can significantly reduce indoor and outdoor heat conduction, alleviate thermal stress damage caused by temperature fluctuations, extend the service life of the walls, block moisture penetration, inhibit steel corrosion and wall cracking, greatly extend the building maintenance cycle, and improve the stability and durability of the overall structure. Attached Figure Description
[0028] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0029] Figure 2 This is an exploded view of the overall structure of this utility model;
[0030] Figure 3 This is a diagram showing the state of the limiting plate and the driven rod of this utility model in use.
[0031] Figure 4 This is a cross-sectional schematic diagram of the mounting frame portion of this utility model;
[0032] Figure 5 This is a schematic diagram of the overall structure of the mounting frame of this utility model;
[0033] Figure 6 This is a three-dimensional structural diagram of the limiting block of this utility model;
[0034] Figure 7 for Figure 3 Enlarged view of point A in the middle;
[0035] Figure 8 for Figure 4 Enlarged view at point B in the middle;
[0036] Figure 9 for Figure 5Enlarged view of point C in the middle. Detailed Implementation
[0037] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0038] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in this utility model embodiment are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.
[0039] Furthermore, the use of terms such as "first" and "second" in this utility model is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of the various embodiments can be combined with each other, but only on the basis of being achievable by those skilled in the art. If the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed by this utility model.
[0040] See Figure 1-9This utility model discloses a heat-insulating and corrosion-resistant insulation board for building walls, comprising an installation mechanism 2 and a protective mechanism 3 installed on a building wall 1. The protective mechanism is disposed on the end face of the installation mechanism 2 away from the building wall. A fixing hole is provided on the surface of the installation frame 201. The installation frame 201 can be fixed to the surface of the building wall 1 by the cooperation of the fixing component and the fixing hole. The installation process of the installation frame 201 and the fixing component are existing technologies and will not be described in detail in this application. The installation mechanism includes: an installation frame 201, wherein an installation groove 2010 is provided on one end face of the installation frame 201, and the upper end is hollow to form a working inner cavity 200. The lower inner wall of the working inner cavity 200 is provided with an adjustment groove that communicates with the installation groove 2010. 2100; and a driven rod 203, wherein at least one set of driven rods 203 is movably installed inside the working cavity 200, and one end is connected to the inner side wall of the working cavity 200; a limiting plate 204, wherein the limiting plate 204 is disposed inside the mounting groove 2010, and the upper end extends through the adjusting groove 2100 to the inner side of the working cavity 200 to form a sliding connection structure with the driven rod 203, wherein the limiting plate 204 is connected to the protective mechanism 3; a driving assembly, wherein the driving assembly includes a limiting block 202, wherein the limiting block 202 is disposed at the other end of the driven rod 203, and the end faces of the limiting block 202 and the driven rod 203 that contact each other are provided with mutually adaptable inclined surfaces. In use, by controlling the movement of the limit block 202, the driven rod 203 is moved closer to or further away from both sides of the working inner cavity 200, thereby controlling the interconnected limit plates 204, and thus enabling the installation or unloading of the protective mechanism 3. (See also...) Figure 3-4 In this configuration, two sets of driven rods 203 are preferably formed, with a limit block 202 provided between the two sets of driven rods 203. The contact end faces are provided with mutually compatible inclined surfaces. By controlling the movement of the limit block 202, the distance between the two driven rods 203 can be reduced or increased.
[0041] In this specific example, the limiting plate 204 is provided with multiple sets of protruding limiting rods 205 on the end face away from the mounting frame 201. The limiting rods 205 are fixedly connected to the outer surface of the limiting plate 204. Through the setting of the inclined surfaces of the limiting block 202 and the driven rod 203, when the driving limiting block 202 slides on the inner wall of the mounting frame 201, it can push the two driven rods 203 to slide away from each other synchronously in the inner wall of the mounting frame 201.
[0042] See Figure 2-5In the structure, the protective mechanism 3 includes an insulation layer 301. The outer surface of the insulation layer 301 is provided with a limiting insertion hole 302 that is compatible with the limiting insertion rod 205. The protective mechanism 3 is provided on the outside of the building wall 1. The protective mechanism 3 includes an insulation layer 301. The outer surface of the insulation layer 301 is provided with a limiting insertion hole 302 that is compatible with the limiting insertion rod 205. By driving the limiting insertion rod 205 to be embedded into the limiting insertion hole 302, the insulation layer 301 can be effectively limited to the mounting frame 201.
[0043] Specifically, the driving assembly further includes a first connecting rod 209, one end of which is rotatably connected to the limiting block 202, and the other end extends through the inner sidewall of the working cavity 200 to the outer side of the mounting frame 201; and a pull plate 201, which is rotatably connected to the first connecting rod 209 and located outside the working cavity 200. The outer surface of the first connecting rod 209 and the mounting frame 201 are threadedly connected. The end of the first connecting rod 209 away from the limiting block 202 passes through the pull plate 210 and is rotatably connected to the pull plate 210. A rotating handle 230 is fixedly installed on the end of the first connecting rod 209 away from the limiting block 202. The handle 230 allows construction personnel to drive the first connecting rod 209 to rotate more conveniently. Because the mounting frame 201 and the first connecting rod 209 are threadedly connected, driving the first connecting rod 209 to rotate can simultaneously drive the pull plate 210 to move.
[0044] Specifically, the pull plate 201 has multiple sets of second connecting rods 211 extending through the mounting frame 201 to the inside of the working cavity 200 on one end face near the mounting frame 201, and a baffle 212 is provided at the extended end. At the same time, a support spring 213 is provided on the second connecting rod 211, located between the baffle 212 and the inner side wall of the working cavity 200. By driving the pull plate 210 to move, the baffle 212 at the end of the second connecting rod 211 away from the pull plate 210 can be driven to move synchronously inside the mounting frame 201, effectively compressing the support spring 213 and causing it to shrink and deform.
[0045] Specifically, a return spring 214 is provided between the end of the driven rod 203 that contacts the inner side of the working cavity 200. The two ends of the return spring 214 are fixedly connected to the mounting frame 201 and the driven rod 203, respectively. The inner wall of the mounting frame 201 is fitted with the return spring 214. The two ends of the return spring 214 are fixedly connected to the mounting frame 201 and the driven rod 203, respectively. When the end of the driven rod 203 away from the return spring 214 is no longer under pressure, the return spring 214 can effectively push the driven rod 203 to slide towards the center of the mounting frame 201 in the inner wall of the mounting frame 201.
[0046] Specifically, the sliding connection structure includes a first driven toothed plate 208, which is disposed on the lower end face of the end that contacts the inner side of the working inner cavity 200; a second driven toothed plate 2080, which is embedded in the upper end face of the limiting plate 204 and located below the first driven toothed plate 208; and a driven gear 207, which meshes with the first driven toothed plate 208 and the second driven toothed plate 2080, and is fixedly connected to the front and rear side walls of the inner side of the working inner cavity 200 through a connecting shaft 206. The connecting shaft 206 effectively limits the driven gear 207, making the driven gear 207 more stable during rotation.
[0047] Specifically, to ensure the stability of the limiting plate 204 when moving in conjunction with the driven plate 203, the limiting plate 204 has limiting notches 2040 with outward openings on both sides. The inner side of the limiting notch 2040 is connected to the edge of the opening of the horizontally moving adjustment groove 2100, so that the edge of the opening of the horizontally moving adjustment groove 2100 is located inside the limiting notch 2040, effectively ensuring that no deviation occurs during the movement.
[0048] Specifically, the inner wall of the insulation layer 301 is fixedly connected to a heat insulation board 303, and the outer surface of the heat insulation board 303 is fixedly connected to an anti-corrosion board 304. The outer surface of the anti-corrosion board 304 is fixedly connected to the insulation layer 301. Through the synergistic effect of the insulation layer 301, the heat insulation board 303, and the anti-corrosion board 304, the building wall 1 can be protected in multiple ways, effectively reducing indoor and outdoor heat conduction, alleviating thermal stress damage caused by temperature fluctuations, extending the service life of the wall, blocking moisture penetration, inhibiting steel corrosion and wall cracking, significantly extending the building maintenance cycle, and improving the stability and durability of the overall structure.
[0049] In addition to the preferred embodiments described above, there are other embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the scope of protection claimed by this utility model.
Claims
1. A heat-insulating and corrosion-resistant insulation board for building walls, comprising an installation mechanism (2) and a protective mechanism (3) installed on a building wall (1), wherein the protective mechanism (3) is disposed on the end face of the installation mechanism (2) away from the building wall, characterized in that, The installation mechanism includes; Mounting frame (201), one side end face of the mounting frame (201) is provided with mounting groove (2010), and the upper end is hollow to form a working inner cavity (200), and the lower inner wall of the working inner cavity (200) is provided with an adjustment groove (2100) that communicates with the mounting groove (2010). Driven rod (203), at least one set of driven rods (203) are movably installed inside the working cavity (200), and one end is connected to the inner side wall of the working cavity (200); The limiting plate (204) is disposed inside the mounting groove (2010), and its upper end extends through the adjusting groove (2100) to the inside of the working inner cavity (200) to form a sliding connection structure with the driven rod (203). The limiting plate (204) is connected to the protective mechanism (3). The driving assembly includes a limiting block (202) disposed at the other end of the driven rod (203), and the end faces of the limiting block (202) and the driven rod (203) that are in contact with each other are provided with mutually adapted inclined surfaces.
2. The building wall heat insulation and corrosion protection board according to claim 1, characterized in that, The limiting plate (204) has multiple sets of protruding limiting rods (205) on the end face away from the mounting frame (201).
3. A building wall heat insulation and corrosion-resistant insulation board according to claim 1 or 2, characterized in that, The protective mechanism (3) includes an insulation layer (301), and the outer surface of the insulation layer (301) is provided with a limiting insertion hole (302) that is compatible with the limiting insertion rod (205).
4. The building wall heat insulation and corrosion protection board according to claim 3, characterized in that, The driving component also includes: The first connecting rod (209) has one end rotatably connected to the limiting block (202) and the other end extends through the inner side wall of the working cavity (200) to the outer side of the mounting frame (201); Pull plate (210), which is rotatably connected to the first connecting rod (209) and located outside the working inner cavity (200).
5. A building wall heat insulation and corrosion-resistant insulation board according to claim 4, characterized in that, The pull plate (210) has multiple sets of second connecting rods (211) extending through the mounting frame (201) to the inside of the working cavity (200) on one end face near the mounting frame (201), and the extended end is provided with a baffle (212).
6. A building wall heat insulation and corrosion-resistant insulation board according to claim 5, characterized in that, A support spring (213) is provided on the second connecting rod (211) and between the baffle (212) and the inner side wall of the working cavity (200).
7. A building wall heat insulation and corrosion-resistant insulation board according to claim 6, characterized in that, A return spring (214) is provided between the driven rod (203) and the inner end of the working cavity (200) in contact with one end. The two ends of the return spring (214) are fixedly connected to the mounting frame (201) and the driven rod (203) respectively.
8. A building wall heat insulation and corrosion-resistant insulation board according to claim 7, characterized in that, The sliding connection structure includes: The first driven toothed plate (208) is disposed on the lower end face of one end of the working inner cavity (200); The second driven toothed plate (2080) is embedded in the upper end face of the limiting plate (204) and is located below the first driven toothed plate (208); Driven gear (207) meshes with the first driven gear plate (208) and the second driven gear plate (2080), and is fixedly connected to the front and rear side walls of the working cavity (200) via a connecting shaft (206).
9. A building wall heat insulation and corrosion-resistant insulation board according to claim 8, characterized in that, The outer surface of the limiting plate (204) is provided with a limiting notch (2040) with the opening facing outward. The inner side of the limiting notch (2040) is connected to the edge of the opening of the horizontally moving adjustment groove (2100).
10. A building wall heat insulation and corrosion-resistant insulation board according to claim 9, characterized in that, The inner wall of the insulation layer (301) is fixedly connected to a heat insulation plate (303), and the outer surface of the heat insulation plate (303) is fixedly connected to an anti-corrosion plate (304). The outer surface of the anti-corrosion plate (304) and the insulation layer (301) are fixedly connected.
Citation Information
Patent Citations
Building wall heat-insulation anti-corrosion insulation board
CN222667154U