Hollowed-out red brick wall structure imitating historical architectural art decoration
Patent Information
- Application Number
- CN202520343295.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-03-24
- Estimated Expiration
- 2035-02-28
AI Technical Summary
[0004]本实用新型提出一种仿历史建筑艺术装饰镂空红砖墙体结构,解决了相关技术中搭建镂空部分时需要注意涂抹在相邻的仿古红砖与镂空砖之间或各相邻镂空砖之间的泥浆的问题,提高镂空红砖墙的建筑效率
[0014]1、本实用新型主要包括框架墙、镂空组件,即通过框架墙与镂空组件的相互配合使本实用新型具有镂空结构,提高本实用新型的美观性。
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Figure CN224031952U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wall structure technical field, specifically, relate to a kind of hollow red brick wall structure of historical building art decoration imitation. BACKGROUND
[0002] Hollow red brick wall structure of historical building art decoration imitation, it is generally to combine traditional construction technology and modern design method, both retain the charm of historical building, also integrate modern function and aesthetic demand wall structure, in the construction process, usually use antique red brick as building material to imitate the texture of historical building.
[0003] At present, hollow red brick wall building is mostly built by antique red brick to form a frame structure, and the hollow part of the wall is built by special bricks (hollow bricks) inside the frame structure. However, during the construction process, it is not only necessary to ensure the relative position of each hollow brick in the frame structure, but also necessary to pay attention to the mud between adjacent antique red bricks and hollow bricks or between each adjacent hollow brick when ensuring the relative position of each hollow brick, which seriously affects the construction efficiency of hollow red brick wall. SUMMARY
[0004] The utility model provides a kind of hollow red brick wall structure of historical building art decoration imitation, solve the problem that mud between adjacent antique red bricks and hollow bricks or between each adjacent hollow brick needs to be paid attention to when building hollow part in relevant technology, improve the construction efficiency of hollow red brick wall.
[0005] The technical scheme of the utility model is as follows:
[0006] A kind of hollow red brick wall structure of historical building art decoration imitation, including frame wall, hollow assembly, the hollow assembly includes a plurality of first hollow bricks, a plurality of second hollow bricks, each adjacent first hollow brick and second hollow brick are provided with positioning unit;The frame wall includes frame top, frame bottom, frame middle part, the hollow assembly and frame middle part are located between frame top and frame bottom, and the frame middle part is evenly distributed with the hollow assembly as center.
[0007] Further, the positioning unit includes positioning block, second positioning slot, each first hollow brick has positioning block on both sides, each second hollow brick has second positioning slot on both sides, the frame middle part is provided with first positioning slot, and each positioning block is located in each first positioning slot and each second positioning slot respectively.
[0008] Further, the projection plane of each second hollow brick on horizontal plane is horizontally placed "H" shaped structure.
[0009] Further, each positioning block is provided with an injection cavity, and a matching gap is left between each first positioning groove and the matching positioning block and between each second positioning groove and the matching positioning block.
[0010] Further, each positioning block has a plurality of first flow holes, each first flow hole is arranged in a linear direction in sequence, and each first flow hole penetrates through one end of the positioning block away from the first hollow brick.
[0011] Further, each positioning block is provided with a plurality of second flow holes, the central axis of each second flow hole is perpendicular to the central axis of each first flow hole, and each second flow hole is arranged in a linear direction in sequence.
[0012] Further, each matching gap is located between one end of the positioning block away from the first hollow brick and the first positioning groove or the second positioning groove.
[0013] The working principle and beneficial effects of the utility model are as follows:
[0014] 1. The utility model mainly comprises a frame wall and a hollow assembly, that is, the utility model has a hollow structure through the mutual cooperation of the frame wall and the hollow assembly, and the appearance of the utility model is improved.
[0015] 2. The hollow assembly in the utility model mainly comprises a plurality of first hollow bricks and a plurality of second hollow bricks, and a positioning unit is arranged between each adjacent first hollow brick and second hollow brick, that is, the positioning unit between the first hollow brick and the second hollow brick plays a positioning role, so that the adjacent first hollow brick and the second hollow brick can play a mutual constraint role, the relative position between the two can be quickly found, the influence degree of the slurry (concrete slurry) between the adjacent first hollow brick and the frame wall and between the adjacent first hollow brick and the second hollow brick on the subsequent installation of the first hollow brick and the second hollow brick is reduced, the installation efficiency of the hollow assembly on the frame wall is improved, and the building efficiency of the overall structure of the utility model (the building efficiency of the hollow red brick wall) is ensured.
[0016] 3. The frame wall in the utility model mainly comprises a frame top, a frame bottom and a frame middle part, the frame top, the frame bottom and the frame middle part are cemented through the slurry; the frame top, the frame bottom and the frame middle part are all composed of a plurality of antique red bricks and are cemented with each other to simulate the texture of historical buildings. The hollow assembly and the frame middle part are located between the frame top and the frame bottom, that is, after the installation of the hollow assembly is completed, the utility model is capped (the frame top is fixed on the frame middle part), and the building work of the utility model is completed. DRAWINGS
[0017] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0018] Figure 1 This is a schematic diagram of the structure of an embodiment;
[0019] Figure 2 This is a schematic diagram of the structure of the bottom of the frame, the middle of the frame, the first hollow brick, and the second hollow brick in this embodiment when they cooperate with each other;
[0020] Figure 3 for Figure 2 Enlarged view of a portion of point A in the middle;
[0021] Figure 4 for Figure 2 A truncated top view;
[0022] Figure 5 This is a schematic diagram of the structure of the first hollow brick in this embodiment.
[0023] In the picture:
[0024] 1. Frame wall; 11. Top of frame; 12. Bottom of frame; 13. Middle of frame; 131. First positioning groove; 2. Hollow component; 21. First hollow brick; 211. Positioning block; 2111. Injection cavity; 2112. First flow channel hole; 2113. Second flow channel hole; 22. Second hollow brick; 221. Second positioning groove; 3. Fitting clearance. Detailed Implementation
[0025] The technical solutions of this utility model will be clearly and completely described below with reference to the embodiments of this utility model. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this utility model.
[0026] like Figure 1 As shown, this embodiment proposes a hollowed-out red brick wall structure that imitates the art of historical architecture. It mainly includes a frame wall 1 and a hollowed-out component 2. The presence of the hollowed-out component 2 gives the wall structure a hollowed-out part, thereby improving the overall aesthetics of this embodiment.
[0027] The hollow assembly 2 comprises a plurality of first hollow bricks 21 and a plurality of second hollow bricks 22. In order to improve the installation efficiency of the hollow assembly 2, a positioning unit is arranged between each adjacent first hollow brick 21 and second hollow brick 22, so that the first hollow brick 21 and the second hollow brick 22 can constrain each other, thereby constraining the first hollow brick 21 and the second hollow brick 22 in a relative position (an expected installation position), reducing the influence (influencing the positioning accuracy) of the concrete slurry used to fix the hollow assembly 2 on the installation of each first hollow brick 21 and each second hollow brick 22, and enabling each first hollow brick 21 and each second hollow brick 22 installed subsequently to quickly find the installation position, thereby effectively improving the construction efficiency of the wall structure.
[0028] Preferably, the first hollow bricks 21 and the second hollow bricks 22 in the embodiment are arranged in sequence and are spaced apart, so as to constrain and position the adjacent hollow bricks through the positioning unit between the first hollow bricks 21 and the second hollow bricks 22.
[0029] Since the hollow assembly 2 is built by the first hollow bricks 21 and the second hollow bricks 22 in sequence, in order to avoid the frame structure of the frame wall 1 interfering with the building work of the hollow assembly 2, the frame wall 1 in the embodiment mainly comprises a frame top 11, a frame bottom 12 and a frame middle 13, and the frame top 11, the frame bottom 12 and the frame middle 13 are fixed by means of concrete slurry bonding and other common wall building methods. The frame top 11, the frame bottom 12 and the frame middle 13 are all formed by a plurality of antique red bricks adhered to each other, so as to simulate the texture of historical buildings and further improve the aesthetic appearance of the overall structure of the embodiment. The hollow assembly 2 and the frame middle 13 are both located between the frame top 11 and the frame bottom 12, that is, after the installation of the hollow assembly 2 is completed, the frame top 11 is fixed on the frame middle 13 to seal the top of the embodiment, and the building work of the embodiment is completed.
[0030] As Figures 2-3As shown, the positioning unit in the embodiment includes positioning blocks 211 and second positioning grooves 221. Correspondingly, each first hollow brick 21 has a positioning block 211 on each side, and each positioning block 211 is integrally formed with the first hollow brick 21 to ensure the connection strength therebetween. Each second hollow brick 22 has a second positioning groove 221 on each side to facilitate the mutual cooperation and constraint of the adjacent first hollow brick 21 and the second hollow brick 22. Meanwhile, the frame middle part 13 is uniformly distributed in the center of the hollow assembly 2, and the frame middle part 13 is provided with a first positioning groove 131 to facilitate the cooperation of the frame wall 1 with the positioning unit. Preferably, the frame middle part 13 includes two red brick column plates, each of which has a first positioning groove 131 to facilitate the cooperation of the two sides of the hollow assembly 2 with the frame middle part 13, thereby achieving better fixing effect. Specifically, each positioning block 211 is located in each first positioning groove 131 and each second positioning groove 221, that is, each first positioning groove 131 and each second positioning groove 221 has a positioning block 211. Through the cooperation of each positioning block 211 and each positioning groove, the movement of the first hollow brick 21 and the second hollow brick 22 in the axial direction of the frame opening of the frame wall 1 is constrained, and the constraint work is completed.
[0031] Preferably, as shown in the drawings, Figure 4 As shown, after each second hollow brick 22 in the embodiment has a second positioning groove 221 on each side, the projection plane of each second hollow brick 22 on the horizontal plane is a horizontally placed "H" shaped structure. In this way, when the adjacent first hollow brick 21 and the second hollow brick 22 cooperate with each other, the movement of the first hollow brick 21 and the second hollow brick 22 in the direction of both ends of the axial direction of the frame opening of the frame wall 1 can be constrained, the constraint effect of the first hollow brick 21 and the second hollow brick 22 is strengthened, and the stability of the installation of the hollow assembly 2 is effectively improved.
[0032] Meanwhile, each positioning block 211 is provided with an injection cavity 2111, and each injection cavity 2111 is in communication with the matching first positioning groove 131 and the matching second positioning groove 221. That is, by injecting concrete slurry into the injection cavity 2111, the concrete slurry can flow into the second positioning groove 221 and the first positioning groove 131 (the gap between the first hollow brick 21 and the second hollow brick 22 and the gap between the first hollow brick 21 and the frame middle part 13). After the concrete slurry solidifies, it can fix the hollow assembly 2.
[0033] There is a cooperation gap 3 between each first positioning groove 131 and the matching positioning block 211 and between each second positioning groove 221 and the matching positioning block 211, which ensures that there is enough gap between the positioning block 211 and each positioning groove to accommodate the concrete slurry, ensures that there is enough concrete slurry to fix the hollow assembly 2, and ensures the fixing stability of the hollow assembly 2.
[0034] Preferably, each fitting gap 3 is located between the end of the positioning block 211 away from the first hollow brick 21 and the first positioning groove 131 or the second positioning groove 221, that is, the fitting gap 3 is located between each positioning block 211 and the groove bottom of each positioning groove (the first positioning groove 131 or the second positioning groove 221), and the positioning block 211 and the groove wall of each positioning groove abut to avoid the concrete slurry flowing out, causing waste of the concrete slurry and causing the concrete slurry to flow to the frame opening of the frame wall 1, affecting the installation of the first hollow brick 21 and the second hollow brick 22 in the later period.
[0035] As shown in Figure 5 Each positioning block 211 has a plurality of first flow holes 2112, each first flow hole 2112 penetrates the end of the positioning block 211 away from the first hollow brick 21, that is, each injection cavity 2111 communicates with each positioning groove through a plurality of first flow holes 2112, and each first flow hole 2112 is arranged in a linear direction, that is, through the cooperation of a plurality of first flow holes 2112, the flow efficiency of the concrete slurry from the injection cavity 2111 to the positioning groove is ensured, and the phenomenon of low efficiency and concrete slurry solidification in the injection cavity 2111 to block each second flow hole 2113 (the positioning groove is not completely filled with concrete slurry) is prevented, affecting the fixing strength and stability of each first hollow brick 21 and each second hollow brick 22.
[0036] At the same time, each positioning block 211 is provided with a plurality of second flow holes 2113, the center axis of each second flow hole 2113 is perpendicular to the center axis of each first flow hole 2112, and each second flow hole 2113 is arranged in a linear direction, that is, the concrete slurry entering the injection cavity 2111 can flow to the groove wall of each positioning groove through each second flow hole 2113, contact the groove wall of each positioning groove, and solidify on the groove wall of each positioning groove (in each second flow hole 2113), so that a fixed column capable of cooperating with each second flow hole 2113 is formed on the groove wall of each positioning groove, further reinforcing the installation stability of each first hollow brick 21 and second hollow brick 22 on the frame wall 1.
[0037] The above is only a preferred embodiment of the present application, and is not intended to limit the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. An art deco openwork red brick wall structure imitating historical architecture, comprising a frame wall (1), an openwork assembly (2), characterized in that, The hollow assembly (2) comprises a plurality of first hollow bricks (21) and a plurality of second hollow bricks (22), and a positioning unit is arranged between each adjacent first hollow brick (21) and second hollow brick (22). The frame wall (1) comprises a frame top (11), a frame bottom (12), and a frame middle (13), the hollow assembly (2) and the frame middle (13) are located between the frame top (11) and the frame bottom (12), and the frame middle (13) is uniformly distributed in a central symmetry mode with the hollow assembly (2) as the center.
2. The art and craft of imitating historical architecture ornamental openwork red brick wall structure according to claim 1, characterized in that, The positioning unit comprises positioning blocks (211) and second positioning grooves (221), each first hollow brick (21) has a positioning block (211) on each side, each second hollow brick (22) has a second positioning groove (221) on each side, and the frame middle (13) is provided with first positioning grooves (131), each positioning block (211) is located in each first positioning groove (131) and each second positioning groove (221) one by one.
3. The art and craft of imitating historical architecture ornamental perforated red brick wall structure according to claim 2, characterized in that, The projection plane of each second hollow brick (22) on a horizontal plane is a horizontally placed "H" shaped structure.
4. The art deco fretwork red brick wall structure of claim 2 or 3, wherein, Each positioning block (211) is provided with an injection cavity (2111), a matching gap (3) is left between each first positioning groove (131) and the matching positioning block (211), and between each second positioning groove (221) and the matching positioning block (211), and each injection cavity (2111) is in communication with the matching first positioning groove (131) and the matching second positioning groove (221).
5. The art and craft of imitating historical architecture of a decorative perforated red brick wall body structure as claimed in claim 4, wherein, Each positioning block (211) has a plurality of first flow channel holes (2112), each first flow channel hole (2112) is arranged in a linear direction, and each first flow channel hole (2112) penetrates one end of the positioning block (211) away from the first hollow brick (21).
6. The art and craft of imitating historical architecture ornamental perforated red brick wall structure according to claim 5, characterized in that, Each positioning block (211) is provided with a plurality of second flow channel holes (2113), the central axis of each second flow channel hole (2113) is perpendicular to the central axis of each first flow channel hole (2112), and each second flow channel hole (2113) is arranged in a linear direction.
7. The art and craft of imitating historical architecture ornamental perforated red brick wall structure according to claim 5, characterized in that, Each matching gap (3) is located between one end of the positioning block (211) away from the first hollow brick (21) and the first positioning groove (131) or the second positioning groove (221) one by one.