Ceramic plate unit curtain wall system
By assembling prefabricated terracotta panel curtain walls into beam and column components through a suspension connection, the problems of high difficulty and low precision in on-site construction of terracotta panel materials and unitized curtain walls are solved, achieving efficient and low-cost installation.
Patent Information
- Application Number
- CN202520026216.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2035-01-07
AI Technical Summary
The connection between existing terracotta panel materials and unitized curtain walls is constructed on-site, resulting in high construction difficulty, low precision, low efficiency, and high cost.
The prefabricated terracotta panel curtain wall is assembled into beam and column components by means of suspension connection. The suspension components are used to achieve precise docking and installation of the terracotta panel curtain wall, reducing on-site processing and improving assembly accuracy and efficiency.
This improved the assembly precision of the terracotta panel unitized curtain wall, reduced construction difficulty, increased installation efficiency, shortened the construction cycle, and reduced costs.
Smart Images

Figure CN223937429U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of unitized curtain wall technology, specifically to a terracotta panel unitized curtain wall system. Background Technology
[0002] The application of terracotta panels in modern buildings with complex designs has enriched the effect of building facades; however, the current connection between terracotta panels and unitized curtain walls is carried out by on-site construction and assembly, which is difficult to carry out on-site construction, has low assembly accuracy, low construction efficiency, long construction period and high construction cost. Utility Model Content
[0003] This utility model provides a terracotta panel unitized curtain wall system, which assembles prefabricated terracotta panel curtain walls into beam components, first column components, and second column components through a suspension connection. The assembly accuracy is high, the construction difficulty is small, and the installation efficiency is high.
[0004] To solve the above-mentioned technical problems, the technical solution of this utility model is as follows:
[0005] This utility model provides a terracotta panel unitized curtain wall system, comprising:
[0006] The first column assembly and the second column assembly are connected at both ends of the beam assembly;
[0007] Both the first column assembly and the second column assembly include:
[0008] Support columns with a cross-shaped structure;
[0009] Multiple column-end terracotta panel curtain walls are suspended and connected to the four end faces of the supporting column through the first column suspension component. The multiple column-end terracotta panel curtain walls are arranged sequentially along the height direction of the supporting column.
[0010] Multiple column-mounted terracotta panel curtain walls are suspended and connected to the four corners of the supporting columns via second column suspension components. The multiple column-mounted terracotta panel curtain walls are arranged sequentially along the height direction of the supporting columns, and the column-mounted terracotta panel curtain walls are connected to the terracotta panel curtain walls at the ends of adjacent columns.
[0011] The beam assembly includes:
[0012] A rectangular supporting beam;
[0013] Multiple terracotta panel curtain walls at the upper corners of the horizontal beams are suspended and connected to the upper corners of the supporting horizontal beams near the outside via the first horizontal beam suspension component. The multiple terracotta panel curtain walls at the upper corners of the horizontal beams are arranged sequentially along the length of the supporting horizontal beams.
[0014] Multiple terracotta panel curtain walls on the sides of the beams are suspended and connected to the side of the supporting beams near the outside via a second beam suspension component. The multiple terracotta panel curtain walls on the sides of the beams are arranged sequentially along the length of the supporting beams, and the upper part of the terracotta panel curtain walls on the sides of the beams is connected to the lower part of the terracotta panel curtain wall at the upper corner of the beams.
[0015] Multiple terracotta panel curtain walls at the lower corners of the horizontal beams are suspended and connected to the lower corners of the supporting horizontal beams near the outside via a third horizontal beam suspension component. The multiple terracotta panel curtain walls at the lower corners of the horizontal beams are arranged sequentially along the length of the supporting horizontal beams, with the upper part of the terracotta panel curtain walls at the lower part of the side terracotta panel curtain walls of the horizontal beams connecting with the lower part of the side terracotta panel curtain walls of the horizontal beams.
[0016] Optionally, the supporting column includes:
[0017] Cross-shaped support column;
[0018] The end bearing seats are welded to the four end faces of the cross support column;
[0019] Fire-resistant coating applied to the outer surface of the cross-shaped support column;
[0020] A steel plate connected to the outside of the fireproof coating and the outside of the end support.
[0021] Optionally, the terracotta panel curtain wall at the end of the column includes:
[0022] Two vertically installed first load-bearing columns;
[0023] Multiple first load-bearing crossbeams are connected between two first load-bearing columns, and the multiple first load-bearing crossbeams are evenly distributed along the length of the first load-bearing columns;
[0024] Multiple crescent-shaped terracotta panels are connected to the two first supporting columns. The multiple crescent-shaped terracotta panels abut against the first supporting crossbeam. The multiple crescent-shaped terracotta panels are evenly arranged along the height direction of the first supporting columns.
[0025] Multiple first external corner ceramic panels are connected to the outer sides of the two first supporting columns. The multiple first external corner ceramic panels are located on both sides of the first crescent ceramic panel. The multiple first external corner ceramic panels are arranged together along the length of the first supporting columns.
[0026] Optionally, the column-mounted corner terracotta panel curtain wall includes:
[0027] Second load-bearing column;
[0028] Two third load-bearing columns are located on both sides of the second load-bearing column to form an L-shaped structure;
[0029] Multiple second load-bearing crossbeams are connected between two third load-bearing columns and the second load-bearing columns;
[0030] Multiple first corner terracotta panels are connected to multiple second load-bearing crossbeams. The multiple first corner terracotta panels are close to the second load-bearing columns. The multiple first corner terracotta panels are evenly connected and arranged along the height direction of the second load-bearing columns.
[0031] Multiple first straight terracotta panels are connected to multiple second load-bearing crossbeams. The multiple first straight terracotta panels are located on both sides of the first internal corner terracotta panel. The multiple first straight terracotta panels are evenly connected and arranged along the height direction of the second load-bearing column.
[0032] Multiple first-wave terracotta panels are connected to two third-support columns. The multiple first-wave terracotta panels are horizontally connected to the corresponding first straight terracotta panels. The multiple first-wave terracotta panels are evenly connected and arranged along the height direction of the second-support columns.
[0033] Optionally, both the first column suspension member and the second column suspension member include:
[0034] The first support seat has an inverted L-shaped structure. The vertical part of the first support seat is welded to the cross support column or the end support seat. The horizontal part of the first support seat is provided with a second adjustment groove.
[0035] A first connecting plate is connected to the horizontal part of the first bearing seat. A first adjusting groove is provided through the surface of the first connecting plate. The first adjusting groove corresponds to the second adjusting groove and is perpendicular to the second adjusting groove.
[0036] A suspension guide rail formed on the surface of the first connecting plate;
[0037] A first suspension plate has a limiting groove through its bottom, and the suspension guide rail is placed inside the limiting groove. A first internal threaded sleeve is formed in the middle of the first suspension plate, and a first height adjustment bolt is threadedly connected inside the first internal threaded sleeve. The bottom end of the first height adjustment bolt extends into the limiting groove and abuts against the upper surface of the suspension guide rail.
[0038] The outer side of the suspension guide rail is formed with a limiting block, and two limiting blocks are provided, with the two limiting blocks located on both sides of the first suspension plate respectively.
[0039] A first insertion part is formed on one side of the first suspension plate. The first insertion part is inserted into and cooperates with the first insertion cavity on the side of the first bearing column, the second bearing column or the third bearing column. The first insertion part is connected to the first bearing column, the second bearing column or the third bearing column through a through bolt and nut assembly.
[0040] Optionally, the supporting beam includes:
[0041] A rectangular frame load-bearing beam is connected to a cross-shaped support column.
[0042] The insulation layer is installed on the outer side of the load-bearing beam of the frame.
[0043] Optionally, the terracotta panel curtain wall at the upper corner of the crossbeam includes:
[0044] Multiple vertically arranged first connecting columns;
[0045] Multiple horizontally arranged first connecting beams are perpendicularly connected to the first connecting columns.
[0046] A first reinforcing crossbeam is connected between two adjacent first connecting beams. Two first reinforcing crossbeams are provided between two adjacent first connecting beams, and the two first reinforcing crossbeams are respectively close to both ends of the first connecting beam.
[0047] The second crescent-shaped terracotta panel is connected to the two first reinforcing crossbeams;
[0048] The third and second corner ceramic panels are respectively connected to the two first reinforcing crossbeams, and the third and second corner ceramic panels are located on both sides of the second crescent ceramic panel.
[0049] A first connecting beam that connects to multiple first connecting columns;
[0050] The second wave ceramic plate is connected to the first connecting beam, and the upper part of the second wave ceramic plate is connected to the third corner ceramic plate.
[0051] Optionally, the terracotta panel curtain wall on the side of the beam includes:
[0052] Multiple vertically arranged second connecting columns;
[0053] The second and third connecting beams are connected to multiple second connecting columns, and both the second and third connecting beams extend along the length of the frame load-bearing beam.
[0054] The second connecting crossbeam has two beams, and the two second connecting crossbeams are respectively close to the upper end and the lower end of the second connecting column; the outer sides of the two second connecting crossbeams are connected to the second straight terracotta plate, and the upper second straight terracotta plate is connected to the second wave terracotta plate.
[0055] The third connecting beam is provided in two parts, and the two third connecting beams are symmetrically distributed between the two second connecting beams.
[0056] The outer sides of both third connecting beams are connected to second inside corner ceramic panels, and the two second inside corner ceramic panels are respectively connected to the corresponding second straight ceramic panels;
[0057] The two third connecting beams are each connected to a second connecting beam on their facing surfaces. The two second connecting beams extend horizontally and are away from the second connecting columns.
[0058] The third crescent-shaped ceramic slab is connected to the two second connecting beams;
[0059] The fourth yang corner ceramic plates are set on both sides of the third crescent ceramic plate. The two fourth yang corner ceramic plates are respectively connected to the corresponding second connecting beams, and the two fourth yang corner ceramic plates are respectively connected to the corresponding second yin corner ceramic plates.
[0060] Optionally, the terracotta panel curtain wall at the lower corner of the beam includes:
[0061] Multiple horizontally extending third connecting beams are evenly distributed along the length of the load-bearing beams of the frame.
[0062] The two third connecting columns are connected to the two ends of the third connecting beam. The two third connecting columns and the third connecting beam form a U-shaped structure. There are reinforcing beams connecting the two third connecting columns and the third connecting beam.
[0063] A fourth connecting beam is connected to multiple third connecting columns on the same side, and two fourth connecting beams extend along the length of the frame load-bearing beam;
[0064] The two fourth connecting beams are connected to the third wave terracotta panels on their opposite sides. The third wave terracotta panel away from the square frame load-bearing beam is connected to the second straight terracotta panel located at the bottom.
[0065] A second reinforcing crossbeam connects two adjacent third connecting beams. The second reinforcing crossbeam extends along the length of the load-bearing beam of the frame. Two second reinforcing crossbeams are provided between two adjacent third connecting beams, and the two second reinforcing crossbeams are respectively close to both ends of the third connecting beam.
[0066] A fourth crescent-shaped ceramic plate is connected to two second reinforcing crossbeams, and the fourth crescent-shaped ceramic plate abuts against the third connecting beam;
[0067] The fifth corner ceramic plates are set on both sides of the fourth crescent ceramic plate. The two fifth corner ceramic plates are respectively connected to the corresponding second reinforcing crossbeams, and the two fifth corner ceramic plates are respectively connected to the corresponding third wave ceramic plates.
[0068] Optionally, the first crossbeam suspension, the second crossbeam suspension, and the third crossbeam suspension all include:
[0069] The third bearing seat is welded to the rectangular bearing beam;
[0070] The second bearing plate, which is welded to the third bearing seat, has two sixth adjustment grooves through its surface;
[0071] The second support base is connected to the second support plate. The second support base has a U-shaped structure. Both sides of the second support base are formed with a fourth adjustment groove. Both sides of the second support base are formed with a third connecting plate. Both surfaces of the two third connecting plates are provided with a fifth adjustment groove. The two fifth adjustment grooves are respectively connected to the corresponding sixth adjustment grooves. The fifth adjustment grooves are perpendicular to the sixth adjustment grooves.
[0072] A first support plate has plug-in connecting parts formed at both ends. The surface of each plug-in connecting part is provided with a second plug-in cavity, which is T-shaped. Two second connecting plates are formed on the surface of the first support plate. The two second connecting plates are respectively connected to the two side walls of the second support seat. A third adjustment groove is provided through the surface of each of the two second connecting plates. The two third adjustment grooves are respectively connected to the corresponding fourth adjustment grooves. The third adjustment grooves are perpendicular to the fourth adjustment grooves.
[0073] The connecting corner plate has an L-shaped structure, and the first sidewall of the connecting corner plate is connected to the first connecting column, the second connecting column, or the third connecting column by a through bolt and nut assembly;
[0074] The second sidewall of the connecting corner plate is formed with a second insertion part, which is inserted into and engaged with the second insertion cavity;
[0075] The second plug-in part has a second internal threaded sleeve formed on the side away from the connecting angle plate. The second internal threaded sleeve is internally threaded with a second height adjustment bolt, and the bottom end of the second height adjustment bolt abuts against the plug-in part.
[0076] The above-described solution of this utility model has at least the following beneficial effects:
[0077] The above-mentioned solution of this utility model assembles the prefabricated terracotta panel curtain wall into a beam assembly, a first column assembly, and a second column assembly through a suspension connection. This method achieves high assembly precision, low construction difficulty, and high installation efficiency. Attached Figure Description
[0078] Figure 1 This is a structural schematic diagram of the terracotta panel unitized curtain wall system provided in an embodiment of this utility model;
[0079] Figure 2 This is a top sectional view of the first and second column assemblies in the terracotta panel unitized curtain wall system provided in an embodiment of this utility model.
[0080] Figure 3This is a top sectional view of the supporting column in the terracotta panel unitized curtain wall system provided in an embodiment of this utility model.
[0081] Figure 4 This is a top sectional view of the terracotta panel curtain wall at the end of the column in the terracotta panel unit curtain wall system provided by an embodiment of this utility model.
[0082] Figure 5 This is a top sectional view of the terracotta panel curtain wall at the inside corner of the column in the terracotta panel unit curtain wall system provided by an embodiment of this utility model;
[0083] Figure 6 This is a top view of the first and second column suspension components in the terracotta panel unitized curtain wall system provided in an embodiment of this utility model.
[0084] Figure 7 This is a front view of the first and second column suspension components in the terracotta panel unitized curtain wall system provided in an embodiment of this utility model.
[0085] Figure 8 This is a right view of the first and second column suspension components in the terracotta panel unitized curtain wall system provided in an embodiment of this utility model.
[0086] Figure 9 This is a right sectional view of the beam assembly in the terracotta panel unitized curtain wall system provided in an embodiment of this utility model.
[0087] Figure 10 This is a right sectional view of the terracotta panel curtain wall at the upper corner of the horizontal beam in the terracotta panel unit curtain wall system provided by an embodiment of this utility model.
[0088] Figure 11 This is a right sectional view of the terracotta panel curtain wall on the side of the beam in the terracotta panel unit curtain wall system provided by an embodiment of this utility model.
[0089] Figure 12 This is a right sectional view of the terracotta panel curtain wall at the lower corner of the horizontal beam in the terracotta panel unit curtain wall system provided by an embodiment of this utility model.
[0090] Figure 13 This is a right view of the first, second, and third horizontal beam suspension components in the terracotta panel unitized curtain wall system provided in an embodiment of this utility model.
[0091] Figure 14 This is a top view of the first, second, and third horizontal beam suspension components in the terracotta panel unitized curtain wall system provided in an embodiment of this utility model.
[0092] The annotations in the attached figures are explained as follows:
[0093] 1. First column assembly; 2. Horizontal beam assembly; 21. Supporting horizontal beam; 211. Square frame load-bearing beam; 212. Insulation layer; 22. Upper corner terracotta panel curtain wall of the horizontal beam; 221. First connecting column; 222. First connecting horizontal beam; 223. Second corrugated terracotta panel; 224. First reinforcing horizontal beam; 225. First connecting beam; 226. Second corner terracotta panel; 227. Third corner terracotta panel; 228. Second crescent-shaped terracotta panel; 23. First horizontal beam suspension component; 24. Second horizontal beam suspension component; 25. Side terracotta panel curtain wall of the horizontal beam; 251. Second connecting column; 252. Second connecting horizontal beam; 253. Third connecting horizontal beam; 254. Second connecting beam; 255. Second straight terracotta panel; 256. Second internal corner terracotta panel; 257. Fourth external corner terracotta panel; 258. Third crescent-shaped terracotta panel; 26. Third horizontal beam suspension component; 27. Lower part of the horizontal beam external corner terracotta panel curtain wall; 271. Third connecting column; 272. Reinforcing beam; 273. Third connecting beam; 274. Fourth connecting horizontal beam; 275. Third wavy terracotta panel; 276. Fifth external corner terracotta panel; 277. Second reinforcing horizontal beam; 278. Fourth crescent-shaped terracotta panel; 3. Second column assembly; 41. Support column; 411. Cross support column; 412. Fireproof coating; 413. End bearing seat; 41 4. Steel plate; 42. Terracotta panel curtain wall at the end of the column; 421. First load-bearing crossbeam; 422. First load-bearing column; 423. First crescent-shaped terracotta panel; 424. First external corner terracotta panel; 43. First column suspension component; 44. Terracotta panel curtain wall at the internal corner of the column; 441. Second load-bearing column; 442. Third load-bearing column; 443. Second load-bearing crossbeam; 444. First internal corner terracotta panel; 445. First straight terracotta panel; 446. First wavy terracotta panel; 45. Second column suspension component; 51. First insertion cavity; 52. First insertion part; 53. First suspension plate; 531. Limiting groove; 54. First internal threaded sleeve; 55. Suspension 56. Hanging guide rail; 57. Limiting block; 58. First connecting plate; 59. First adjusting groove; 50. First height adjusting bolt; 61. First bearing seat; 62. Second adjusting groove; 63. Second insertion part; 64. Second internal threaded sleeve; 65. First bearing plate; 66. Second insertion cavity; 67. Insertion connection part; 68. Second connecting plate; 69. Third adjusting groove; 60. Second bearing plate; 61. Third adjusting groove; 62. Second bearing seat; 63. Third internal threaded sleeve; 64. Second internal threaded sleeve; 65. First bearing plate; 66. Second insertion cavity; 67. Second insertion connection part; 68. Second connecting plate; 69. Third bearing seat. Detailed Implementation
[0094] Exemplary embodiments of the present disclosure will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art.
[0095] like Figures 1-14 As shown, this utility model provides a terracotta panel unitized curtain wall system, comprising:
[0096] The first column assembly 1 and the second column assembly 3 are connected to both ends of the crossbeam assembly 2;
[0097] Both the first column assembly 1 and the second column assembly 3 include:
[0098] The supporting column 41 has a cross-shaped structure;
[0099] Multiple column-end terracotta panel curtain walls 42 are suspended and connected to the four end faces of the supporting column 41 through the first column suspension member 43. The multiple column-end terracotta panel curtain walls 42 are arranged sequentially along the height direction of the supporting column 41.
[0100] Multiple column-mounted terracotta panel curtain walls 44 are suspended and connected to the four corners of the supporting column 41 by the second column suspension member 45. The multiple column-mounted terracotta panel curtain walls 44 are arranged in sequence along the height direction of the supporting column 41, and the column-mounted terracotta panel curtain walls 44 are connected to the adjacent column end terracotta panel curtain walls 42.
[0101] Crossbeam assembly 2 includes:
[0102] The supporting beam 21 has a rectangular structure;
[0103] Multiple terracotta panel curtain walls 22 at the upper corners of the horizontal beams are suspended and connected to the upper corners of the supporting horizontal beams 21 near the outside via the first horizontal beam suspension member 23. The multiple terracotta panel curtain walls 22 at the upper corners of the horizontal beams are arranged sequentially along the length of the supporting horizontal beams 21.
[0104] Multiple terracotta panel curtain walls 25 on the side of the beam are suspended and connected to the side of the supporting beam 21 near the outside via the second beam suspension member 24. The multiple terracotta panel curtain walls 25 on the side of the beam are arranged in sequence along the length of the supporting beam 21. The upper part of the terracotta panel curtain wall 25 on the side of the beam is connected to the lower part of the terracotta panel curtain wall 22 at the upper corner of the beam.
[0105] Multiple terracotta panel curtain walls 27 are located at the lower corners of the horizontal beams. These terracotta panel curtain walls 27 are suspended and connected to the lower corners of the supporting horizontal beam 21 near the outside via a third horizontal beam suspension member 26. The multiple terracotta panel curtain walls 27 are arranged sequentially along the length of the supporting horizontal beam 21. The upper part of the terracotta panel curtain walls 27 are connected to the lower part of the terracotta panel curtain walls 25 on the side of the horizontal beam.
[0106] In this embodiment, multiple column end terracotta panel curtain walls 42 are suspended and connected to the four end faces of the supporting column 41 by the first column suspension member 43, and multiple column inside corner terracotta panel curtain walls 44 are suspended and connected to the four inside corners of the supporting column 41 by the second column suspension member 45, so as to form the first column assembly 1 and the second column assembly 3.
[0107] Multiple upper corner terracotta panel curtain walls 22 of the crossbeams are suspended and connected to the upper corner of the supporting crossbeam 21 near the outside by the first crossbeam suspension member 23, multiple side terracotta panel curtain walls 25 of the crossbeams are suspended and connected to the supporting crossbeam 21 near the outside by the second crossbeam suspension member 24, and multiple lower corner terracotta panel curtain walls 27 of the crossbeams are suspended and connected to the lower corner of the supporting crossbeam 21 near the outside by the third crossbeam suspension member 26, so as to form the crossbeam assembly 2.
[0108] By manufacturing multiple column-end terracotta panel curtain walls 42, multiple column-corner terracotta panel curtain walls 44, multiple upper beam-corner terracotta panel curtain walls 22, multiple beam-side terracotta panel curtain walls 25, and multiple lower beam-corner terracotta panel curtain walls 27 into prefabricated unit curtain walls in the factory, processing accuracy can be guaranteed, which helps to improve subsequent assembly accuracy. No on-site processing is required, which can ensure the construction environment at the construction site. On-site installation of multiple column-end terracotta panel curtain walls 42, multiple column-corner terracotta panel curtain walls 44, multiple upper beam-corner terracotta panel curtain walls 22, multiple beam-side terracotta panel curtain walls 25, and multiple lower beam-corner terracotta panel curtain walls 27 can be achieved by suspension. The installation operation is simple and convenient, reducing construction difficulty, helping to improve installation efficiency, shorten the construction cycle, and reduce construction costs.
[0109] like Figure 3 As shown, in an optional embodiment of the present invention, the supporting column 41 includes:
[0110] Cross-shaped support column 411;
[0111] End bearing seats 413 are welded to the four end faces of the cross support column 411;
[0112] Fireproof coating 412 is provided on the outer side of the cross support column 411;
[0113] A steel plate 414 is connected to the outside of the fireproof coating 412 and the outside of the end bearing seat 413.
[0114] In this embodiment, the fire resistance of the support column 41 can be improved by setting the fireproof coating 412, and the installation of the fixed parts of the first column suspension 43 and the second column suspension 45 can be facilitated by the cross support column 411 and the end bearing seat 413; the service life of the support column 41 can be improved by setting a steel plate 414 on the outside of the fireproof coating 412 and the end bearing seat 413. The steel plate 414 is a galvanized steel plate 414.
[0115] In this embodiment, the support column 41 can be a constant diameter structure or a variable diameter structure. If the support column 41 is a variable diameter structure, the length of the end bearing seat 413 gradually changes along the height direction of the support column 41. When the diameter of the support column 41 gradually increases from bottom to top, the length of the end bearing seat 413 gradually decreases from top to bottom along the height direction of the support column 41 until the end bearing seat 413 is not provided at the bottom of the cross support column 411. When the diameter of the support column 41 gradually decreases from bottom to top, the length of the end bearing seat 413 gradually decreases from bottom to top along the height direction of the support column 41 until the end bearing seat 413 is not provided at the top of the cross support column 411.
[0116] In this embodiment, the support column 41 in the second column assembly 3 is of equal diameter, and the support column 41 in the first column assembly 1 is of variable diameter, and the diameter of the support column 41 in the first column gradually increases from bottom to top; in specific applications, the support columns 41 in the first column assembly 1 and the second column assembly 3 can be adjusted to be of equal diameter or variable diameter according to the on-site design requirements.
[0117] like Figure 4 As shown, in an optional embodiment of this utility model, the terracotta panel curtain wall 42 at the end of the column includes:
[0118] Two vertically installed first load-bearing columns 422;
[0119] Multiple first load-bearing crossbeams 421 are connected between two first load-bearing columns 422, and the multiple first load-bearing crossbeams 421 are evenly distributed along the length direction of the first load-bearing columns 422.
[0120] Multiple crescent-shaped ceramic plates 423 are connected to the two first supporting columns 422. The multiple crescent-shaped ceramic plates 423 abut against the first supporting beam 421. The multiple crescent-shaped ceramic plates 423 are evenly connected and arranged along the height direction of the first supporting columns 422.
[0121] Multiple first external corner ceramic plates 424 are connected to the outer sides of the two first supporting columns 422. The multiple first external corner ceramic plates 424 are located on both sides of the first crescent ceramic plate 423. The multiple first external corner ceramic plates 424 are arranged together along the length of the first supporting column 422.
[0122] In this embodiment, a load-bearing frame unit is formed by two first load-bearing columns 422 and multiple first load-bearing beams 421, and a column end terracotta panel curtain wall 42 is formed by multiple first crescent terracotta panels 423 and multiple first external corner terracotta panels 424. The column end terracotta panel curtain wall 42 is processed and assembled in the processing plant according to the design drawings, and the processing and assembly precision is high.
[0123] In this embodiment, the first supporting column 422 and the first supporting beam 421 are connected by an L-shaped aluminum alloy connector. The first sidewall of the L-shaped aluminum alloy connector is connected to the first supporting column 422 by a self-tapping screw, and the second sidewall of the L-shaped aluminum alloy connector is connected to the first supporting beam 421 by a self-tapping screw.
[0124] The first external corner ceramic panel 424 has a hollow cavity inside. The first external corner ceramic panel 424 is connected to the first supporting column 422 through an L-shaped aluminum alloy connector. The first side wall of the L-shaped aluminum alloy connector is connected to the first supporting column 422 through a first bolt and nut assembly. The screwing end of the bolt in the first bolt and nut assembly is located inside the T-shaped groove on the outside of the first supporting column 422. The second side wall of the L-shaped aluminum alloy connector is connected to the first external corner ceramic panel 424 through a second bolt and nut assembly. The nut in the second bolt and nut assembly is located inside the hollow cavity inside the first external corner ceramic panel 424.
[0125] The first crescent-shaped ceramic plate 423 has a hollow cavity inside. The first crescent-shaped ceramic plate 423 is connected to the first supporting column 422 through an L-shaped aluminum alloy connector. The first side wall of the L-shaped aluminum alloy connector is connected to the first supporting column 422 through a self-tapping screw. The second side wall of the L-shaped aluminum alloy connector is connected to the first crescent-shaped ceramic plate 423 through a second bolt and nut assembly. The nut in the second bolt and nut assembly is located inside the hollow cavity of the first crescent-shaped ceramic plate 423.
[0126] In this embodiment, the length of the first crescent ceramic plate 423 and the length of the first external corner ceramic plate 424 can be the same or different. When arranging them, the lengths of the first crescent ceramic plate 423 and the first external corner ceramic plate 424 can be arranged at the same height or at different heights in the vertical direction. The specific arrangement can be adjusted according to the actual design and is not specifically limited here.
[0127] like Figure 5 As shown, in an optional embodiment of this utility model, the column-mounted corner ceramic panel curtain wall 44 includes:
[0128] Second load-bearing column 441;
[0129] Two third load-bearing columns 442 are located on both sides of the second load-bearing column 441 to form an L-shaped structure;
[0130] Multiple second load-bearing crossbeams 443 are connected between two third load-bearing columns 442 and the second load-bearing columns 441;
[0131] Multiple first corner terracotta panels 444 are connected to multiple second load-bearing crossbeams 443. The multiple first corner terracotta panels 444 are close to the second load-bearing column 441. The multiple first corner terracotta panels 444 are evenly connected and arranged along the height direction of the second load-bearing column 441.
[0132] Multiple first straight ceramic slabs 445 are connected to multiple second load-bearing crossbeams 443. The multiple first straight ceramic slabs 445 are located on both sides of the first internal corner ceramic slab 444. The multiple first straight ceramic slabs 445 are evenly connected and arranged along the height direction of the second load-bearing column 441.
[0133] Multiple first wave ceramic slabs 446 are connected to the two third supporting columns 442. The multiple first wave ceramic slabs 446 are horizontally connected to the corresponding first straight ceramic slabs 445. The multiple first wave ceramic slabs 446 are evenly connected and arranged along the height direction of the second supporting column 441.
[0134] In this embodiment, a load-bearing frame unit is formed by the second load-bearing column 441, two third load-bearing columns 442 and multiple second load-bearing crossbeams 443, and a column-corner terracotta panel curtain wall 44 is formed in conjunction with multiple first internal corner terracotta panels 444, multiple first straight terracotta panels 445 and multiple first corrugated terracotta panels 446. The column-corner terracotta panel curtain wall 44 is processed and assembled in the processing plant according to the design drawings, and the processing and assembly precision is high.
[0135] In this embodiment, the second load-bearing crossbeam 443 is connected to the second load-bearing column 441 and the third load-bearing column 442 through an L-shaped aluminum alloy connector. The first sidewall of the L-shaped aluminum alloy connector is connected to the second load-bearing crossbeam 443 through a self-tapping screw, and the second sidewall of the L-shaped aluminum alloy connector is connected to the second load-bearing column 441 or the third load-bearing column 442 through a self-tapping screw.
[0136] The first internal corner ceramic plate 444 has a hollow cavity inside. The first internal corner ceramic plate 444 is connected to the second load-bearing crossbeam 443 through an L-shaped aluminum alloy connector. The first side wall of the L-shaped aluminum alloy connector is connected to the second load-bearing crossbeam 443 through a self-tapping screw. The second side wall of the L-shaped aluminum alloy connector is connected to the first internal corner ceramic plate 444 through a second bolt and nut assembly. The nut in the second bolt and nut assembly is located inside the hollow cavity of the first internal corner ceramic plate 444.
[0137] The first straight ceramic plate 445 has a hollow cavity inside. The first straight ceramic plate 445 is connected to the second load-bearing crossbeam 443 through an L-shaped aluminum alloy connector. The first side wall of the L-shaped aluminum alloy connector is connected to the second load-bearing crossbeam 443 through a self-tapping screw. The second side wall of the L-shaped aluminum alloy connector is connected to the first straight ceramic plate 445 through a second bolt and nut assembly. The nut in the second bolt and nut assembly is located inside the hollow cavity of the first straight ceramic plate 445.
[0138] The first wave ceramic plate 446 has a hollow cavity inside. The first wave ceramic plate 446 is connected to the third support column 442 through an L-shaped aluminum alloy connector. The first side wall of the L-shaped aluminum alloy connector is connected to the third support column 442 through a first bolt and nut assembly. The screwing end of the bolt in the first bolt and nut assembly is located in the T-groove on the outside of the third support column 442. The second side wall of the L-shaped aluminum alloy connector is connected to the first wave ceramic plate 446 through a second bolt and nut assembly. The nut in the second bolt and nut assembly is located in the hollow cavity of the first wave ceramic plate 446.
[0139] In this embodiment, the lengths of the first inside corner ceramic plate 444, the first straight ceramic plate 445, and the first wavy ceramic plate 446 can be the same or different. When arranging them, the first inside corner ceramic plate 444, the first straight ceramic plate 445, and the first wavy ceramic plate 446 can be arranged at the same height or at different heights in the vertical direction. The specific arrangement is adjusted according to the actual design and is not specifically limited here.
[0140] In this embodiment, if the support column 41 is a variable diameter structure, the installation requirements when the support column 41 is a variable diameter structure can be met by adjusting the length of the first straight terracotta plate 445 and the second bearing beam 443, and by not using the first straight terracotta plate 445.
[0141] like Figures 6 to 8 As shown, in an optional embodiment of the present invention, both the first column suspension member 43 and the second column suspension member 45 include:
[0142] The first support seat 59 has an inverted L-shaped structure. The vertical part of the first support seat 59 is welded to the cross support column 411 or the end support seat 413. The horizontal part of the first support seat 59 is provided with a second adjustment groove 591.
[0143] A first connecting plate 57 is connected to the horizontal part of the first bearing seat 59. A first adjusting groove 571 is provided through the surface of the first connecting plate 57. The first adjusting groove 571 corresponds to the second adjusting groove 591 and the first adjusting groove 571 is perpendicular to the second adjusting groove 591.
[0144] Suspension guide rail 55 formed on the surface of the first connecting plate 57;
[0145] The first suspension plate 53 has a limit groove 531 through the bottom of the first suspension plate 53, and the suspension guide rail 55 is placed inside the limit groove 531. The first internal thread sleeve 54 is formed in the middle of the first suspension plate 53, and the first internal thread sleeve 54 is threadedly connected to the first height adjustment bolt 58. The bottom end of the first height adjustment bolt 58 extends into the limit groove 531 and abuts against the upper surface of the suspension guide rail 55.
[0146] Two limit blocks 56 are formed on the outer side of the suspension guide rail 55, and the two limit blocks 56 are respectively located on both sides of the first suspension plate 53.
[0147] A first insertion part 52 is formed on one side of the first suspension plate 53. The first insertion part 52 is inserted into and engaged with the first insertion cavity 51 on the side of the first support column 422, the second support column 441 or the third support column 442. The first insertion part 52 is connected to the first support column 422, the second support column 441 or the third support column 442 through a through bolt and nut assembly.
[0148] In this embodiment, during construction, the vertical part of the first bearing seat 59 is welded to the cross support column 411 or the end bearing seat 413. The first connecting plate 57 and the first bearing seat 59 are connected by bolts and nuts through the second adjusting groove 591 and the first adjusting groove 571. The position of the first connecting plate 57 can be adjusted through the second adjusting groove 591 and the first adjusting groove 571 to ensure the accuracy of the position of the first connecting plate 57.
[0149] The first insertion part 52 is inserted into the first insertion cavity 51, and the first insertion part 52 is connected to the first bearing column 422, the second bearing column 441, or the third bearing column 442 by the through bolt and nut. During assembly, the suspension guide rail 55 is inserted into the limiting groove 531. The limiting groove 531 and the suspension guide rail 55 provide a first limiting, and the two limiting blocks 56 and the first suspension plate 53 provide a second limiting to ensure suspension stability. The first height adjustment bolt 58 is screwed on, and the end of the first height adjustment bolt 58 abuts against the surface of the suspension guide rail 55 to adjust the suspension height and ensure suspension accuracy.
[0150] Through the above process, multiple terracotta panel curtain walls 42 at the ends of the columns and multiple terracotta panel curtain walls 44 at the inside corners of the columns are suspended on the supporting columns 41. The operation is simple and convenient, the installation accuracy is high, which helps to improve construction efficiency and save construction costs.
[0151] like Figure 4 and Figure 5 As shown, in an optional embodiment of the present invention, the first supporting column 422, the third supporting column 442 and the second supporting column 441 are all provided with reinforcing inserts with a grid-shaped structure inside.
[0152] In this embodiment, the strength of the first supporting column 422, the third supporting column 442, and the second supporting column 441 can be improved by setting a reinforcing insert with a grid-shaped structure, thus ensuring safety.
[0153] like Figure 9 As shown, in an optional embodiment of the present invention, the supporting beam 21 includes:
[0154] A rectangular frame load-bearing beam 211 is connected to a cross-shaped support column 411.
[0155] Insulation layer 212 is installed on the outer side of the load-bearing beam 211 of the square frame.
[0156] In this embodiment, the square frame load-bearing beam 211 is connected to the ceiling. By setting an insulation layer 212 on the outside of the square frame load-bearing beam 211, the overall insulation performance can be improved.
[0157] like Figure 10 As shown, in an optional embodiment of this utility model, the terracotta panel curtain wall 22 at the upper external corner of the beam includes:
[0158] Multiple vertically arranged first connecting columns 221;
[0159] Multiple horizontally arranged first connecting beams 225 are perpendicularly connected to the first connecting column 221;
[0160] A first reinforcing crossbeam 224 is connected between two adjacent first connecting beams 225. Two first reinforcing crossbeams 224 are provided between two adjacent first connecting beams 225, and the two first reinforcing crossbeams 224 are respectively close to the two ends of the first connecting beams 225.
[0161] The second crescent-shaped ceramic plate 228 is connected to the two first reinforcing crossbeams 224;
[0162] The third corner ceramic plate 227 and the second corner ceramic plate 226 are respectively connected to the two first reinforcing crossbeams 224. The third corner ceramic plate 227 and the second corner ceramic plate 226 are located on both sides of the second crescent ceramic plate 228.
[0163] A first connecting beam 222 that is connected to multiple first connecting columns 221;
[0164] The second wave ceramic plate 223 is connected to the first connecting beam 222, and the upper part of the second wave ceramic plate 223 is connected to the third corner ceramic plate 227.
[0165] In this embodiment, a load-bearing frame unit is formed by multiple first connecting columns 221, multiple first connecting beams 225, multiple first reinforcing beams 224, and first connecting beams 222. This unit, together with second crescent-shaped terracotta panels 228, third corner terracotta panels 227, second corner terracotta panels 226, and second wave terracotta panels 223, forms the upper corner terracotta panel curtain wall 22. The upper corner terracotta panel curtain wall 22 is processed and assembled in a factory according to the design drawings, with high processing and assembly precision.
[0166] The first connecting column 221 and the first connecting beam 225 are joined to form an L-shaped structure. An L-shaped connecting core is inserted into the joint between the first connecting column 221 and the first connecting beam 225. The connecting core is connected to the first connecting column 221 and the first connecting beam 225 by a self-tapping screw.
[0167] The first connecting beam 225 is connected to the first reinforcing crossbeam 224 via an L-shaped aluminum alloy connector. The first sidewall of the L-shaped aluminum alloy connector is connected to the first connecting beam 225 via a first bolt and nut assembly. The screwing end of the bolt in the first bolt and nut assembly is located in the T-slot on the outside of the first connecting beam 225. The second sidewall of the L-shaped aluminum alloy connector is connected to the first reinforcing crossbeam 224 via the first bolt and nut assembly. The screwing end of the bolt in the first bolt and nut assembly is located in the T-slot on the outside of the first reinforcing crossbeam 224.
[0168] The first connecting column 221 is connected to the first connecting beam 222 via an L-shaped aluminum alloy connector. The first sidewall of the L-shaped aluminum alloy connector is connected to the first connecting column 221 via a first bolt and nut assembly. The screwing end of the bolt in the first bolt and nut assembly is located in the T-slot on the outside of the first connecting column 221. The second sidewall of the L-shaped aluminum alloy connector is connected to the first connecting beam 222 via the first bolt and nut assembly. The screwing end of the bolt in the first bolt and nut assembly is located in the T-slot on the outside of the first connecting beam 222.
[0169] Both the second external corner ceramic plate 226 and the third external corner ceramic plate 227 have hollow cavities inside. The second external corner ceramic plate 226 and the third external corner ceramic plate 227 are connected to the first reinforcing beam 224 through L-shaped aluminum alloy connectors. The first side wall of the L-shaped aluminum alloy connector is connected to the first reinforcing beam 224 through self-tapping screws. The second side wall of the L-shaped aluminum alloy connector is connected to the second external corner ceramic plate 226 or the third external corner ceramic plate 227 through a second bolt and nut assembly. The nut in the second bolt and nut assembly is located inside the hollow cavity of the second external corner ceramic plate 226 or the third external corner ceramic plate 227.
[0170] The second crescent-shaped ceramic plate 228 has a hollow cavity inside. The second crescent-shaped ceramic plate 228 is connected to the first reinforcing beam 224 through an L-shaped aluminum alloy connector. The first side wall of the L-shaped aluminum alloy connector is connected to the first reinforcing beam 224 through a first bolt and nut assembly. The screwing end of the bolt in the first bolt and nut assembly is located in the T-groove on the outside of the first reinforcing beam 224. The second side wall of the L-shaped aluminum alloy connector is connected to the second crescent-shaped ceramic plate 228 through a second bolt and nut assembly. The nut in the second bolt and nut assembly is located in the hollow cavity of the second crescent-shaped ceramic plate 228.
[0171] The second wave ceramic plate 223 has a hollow cavity inside. The second wave ceramic plate 223 is connected to the first connecting beam 222 through an L-shaped aluminum alloy connector. The first side wall of the L-shaped aluminum alloy connector is connected to the first connecting beam 222 through a first bolt and nut assembly. The screwing end of the bolt in the first bolt and nut assembly is located in the T-groove on the outside of the first connecting beam 222. The second side wall of the L-shaped aluminum alloy connector is connected to the second wave ceramic plate 223 through a second bolt and nut assembly. The nut in the second bolt and nut assembly is located in the hollow cavity of the second wave ceramic plate 223.
[0172] In this embodiment, the lengths of the second crescent-shaped ceramic plate 228, the second external corner ceramic plate 226, the third external corner ceramic plate 227, and the second wave ceramic plate 223 can be the same or different. When arranging them, the second crescent-shaped ceramic plate 228, the second external corner ceramic plate 226, the third external corner ceramic plate 227, and the second wave ceramic plate 223 can be arranged horizontally aligned or horizontally staggered. The specific arrangement can be adjusted according to the actual design and is not specifically limited here.
[0173] like Figure 11 As shown, in an optional embodiment of this utility model, the terracotta panel curtain wall 25 on the side of the beam includes:
[0174] Multiple vertically arranged second connecting columns 251;
[0175] The second connecting beam 252 and the third connecting beam 253 are connected to multiple second connecting columns 251. Both the second connecting beam 252 and the third connecting beam 253 extend along the length direction of the square frame bearing beam 211.
[0176] Two second connecting beams 252 are provided, and the two second connecting beams 252 are respectively close to the upper end and the lower end of the second connecting column 251; the outer sides of the two second connecting beams 252 are connected to second straight ceramic plates 255, and the upper second straight ceramic plate 255 is connected to the second wave ceramic plate 223.
[0177] There are two third connecting beams 253, and the two third connecting beams 253 are symmetrically distributed between the two second connecting beams 252.
[0178] The outer sides of the two third connecting crossbeams 253 are each connected to a second inner corner ceramic plate 256, and the two second inner corner ceramic plates 256 are respectively connected to the corresponding second straight ceramic plate 255.
[0179] The two third connecting beams 253 are each connected to a second connecting beam 254 on their opposing surfaces. The two second connecting beams 254 extend horizontally and are away from the second connecting column 251.
[0180] A third crescent-shaped ceramic plate 258 connected to the two second connecting beams 254;
[0181] The fourth yang corner ceramic plates 257 are set on both sides of the third crescent ceramic plate 258. The two fourth yang corner ceramic plates 257 are respectively connected to the corresponding second connecting beam 254, and the two fourth yang corner ceramic plates 257 are respectively connected to the corresponding second yin corner ceramic plates 256.
[0182] In this embodiment, a load-bearing frame unit is formed by the second connecting column 251, the second connecting beam 252, the third connecting beam 253, and the second connecting beam 254. The beam side terracotta panel curtain wall 25 is formed in conjunction with the second straight terracotta panel 255, the second inside corner terracotta panel 256, the fourth outside corner terracotta panel 257, and the third crescent terracotta panel 258. The beam side terracotta panel curtain wall 25 is processed and assembled in the processing plant according to the design drawings, with high processing and assembly precision.
[0183] The second connecting beam 252 and the third connecting beam 253 are both connected to the second connecting column 251 via L-shaped aluminum alloy connectors. The first sidewall of the L-shaped aluminum alloy connector is connected to the second connecting column 251 via a first bolt and nut assembly. The screwing end of the bolt in the first bolt and nut assembly is located in the T-slot on the outside of the second connecting column 251. The second sidewall of the L-shaped aluminum alloy connector is connected to the second connecting beam 252 or the third connecting beam 253 via the first bolt and nut assembly. The screwing end of the bolt in the first bolt and nut assembly is located in the T-slot on the outside of the second connecting beam 252 or the third connecting beam 253.
[0184] The second connecting beam 254 is connected to the third connecting beam 253 by a through bolt and nut, and the screw end of the bolt in the through bolt and nut is located in the T-groove on the outside of the third connecting beam 253.
[0185] The second straight ceramic plate 255 has a hollow cavity inside. The second straight ceramic plate 255 is connected to the second connecting beam 252 through an L-shaped aluminum alloy connector. The first side wall of the L-shaped aluminum alloy connector is connected to the second connecting beam 252 through a first bolt and nut assembly. The screwing end of the bolt in the first bolt and nut assembly is located in the T-groove on the outside of the second connecting beam 252. The second side wall of the L-shaped aluminum alloy connector is connected to the second straight ceramic plate 255 through a second bolt and nut assembly. The nut in the second bolt and nut assembly is located in the hollow cavity of the second straight ceramic plate 255.
[0186] The second corner ceramic plate 256 has a hollow cavity inside. The second corner ceramic plate 256 is connected to the third connecting beam 253 through an L-shaped aluminum alloy connector. The first side wall of the L-shaped aluminum alloy connector is connected to the third connecting beam 253 through a first bolt and nut assembly. The screwing end of the bolt in the first bolt and nut assembly is located in the T-groove on the outside of the third connecting beam 253. The second side wall of the L-shaped aluminum alloy connector is connected to the second corner ceramic plate 256 through a second bolt and nut assembly. The nut in the second bolt and nut assembly is located in the hollow cavity of the second corner ceramic plate 256.
[0187] The fourth corner ceramic panel 257 has a hollow cavity inside. The fourth corner ceramic panel 257 is connected to the second connecting beam 254 through an L-shaped aluminum alloy connector. The first side wall of the L-shaped aluminum alloy connector is connected to the second connecting beam 254 through a through bolt and nut. The second side wall of the L-shaped aluminum alloy connector is connected to the fourth corner ceramic panel 257 through a second bolt and nut assembly. The nut in the second bolt and nut assembly is located inside the hollow cavity of the fourth corner ceramic panel 257.
[0188] The third crescent-shaped ceramic plate 258 has a hollow cavity inside. The third crescent-shaped ceramic plate 258 is connected to the second connecting beam 254 through an L-shaped aluminum alloy connector. The first side wall of the L-shaped aluminum alloy connector is connected to the second connecting beam 254 through a through bolt and nut. The second side wall of the L-shaped aluminum alloy connector is connected to the third crescent-shaped ceramic plate 258 through a second bolt and nut assembly. The nut in the second bolt and nut assembly is located inside the hollow cavity of the third crescent-shaped ceramic plate 258.
[0189] In this embodiment, the lengths of the second straight ceramic plate 255, the second inside corner ceramic plate 256, the fourth outside corner ceramic plate 257, and the third crescent ceramic plate 258 can be the same or different. When arranging them, the second straight ceramic plate 255, the second inside corner ceramic plate 256, the fourth outside corner ceramic plate 257, and the third crescent ceramic plate 258 can be arranged horizontally aligned or horizontally staggered. The specific arrangement can be adjusted according to the actual design and is not specifically limited here.
[0190] like Figure 12As shown, in an optional embodiment of this utility model, the terracotta panel curtain wall 27 at the lower external corner of the beam includes:
[0191] Multiple horizontally extending third connecting beams 273 are evenly distributed along the length direction of the frame bearing beam 211.
[0192] The two third connecting columns 271 are connected to both ends of the third connecting beam 273. The two third connecting columns 271 and the third connecting beam 273 form a U-shaped structure. The two third connecting columns 271 and the third connecting beam 273 are connected by reinforcing beams 272.
[0193] A fourth connecting beam 274 is connected to multiple third connecting columns 271 on the same side, and the two fourth connecting beams 274 extend along the length direction of the square frame bearing beam 211.
[0194] The two fourth connecting beams 274 are connected to the third wave terracotta plate 275 on their opposite sides. The third wave terracotta plate 275 away from the square frame load beam 211 is connected to the second straight terracotta plate 255 located at the bottom.
[0195] A second reinforcing crossbeam 277 is connected between two adjacent third connecting beams 273. The second reinforcing crossbeam 277 extends along the length of the frame load-bearing beam 211. Two second reinforcing crossbeams 277 are provided between two adjacent third connecting beams 273, and the two second reinforcing crossbeams 277 are respectively close to both ends of the third connecting beam 273.
[0196] The fourth crescent-shaped terracotta plate 278 is connected to the two second reinforcing crossbeams 277, and the fourth crescent-shaped terracotta plate 278 abuts against the third connecting beam 273;
[0197] The fifth convex corner ceramic plates 276 are set on both sides of the fourth crescent ceramic plate 278. The two fifth convex corner ceramic plates 276 are respectively connected to the corresponding second reinforcing crossbeam 277, and the two fifth convex corner ceramic plates 276 are respectively connected to the corresponding third wave ceramic plate 275.
[0198] In this embodiment, a load-bearing frame unit is formed by the third connecting column 271, the reinforcing beam 272, the third connecting beam 273, the fourth connecting crossbeam 274, and the second reinforcing crossbeam 277. This unit is combined with multiple third corrugated terracotta panels 275, multiple fifth corner terracotta panels 276, and multiple fourth crescent terracotta panels 278 to form the lower corner terracotta panel curtain wall 27 of the crossbeam. The lower corner terracotta panel curtain wall 27 of the crossbeam is processed and assembled in the factory according to the design drawings, with high processing and assembly precision.
[0199] The third connecting column 271 and the third connecting beam 273 are joined to form an L-shaped structure. An L-shaped connecting core is inserted into the joint between the third connecting column 271 and the third connecting beam 273. The connecting core is connected to the third connecting column 271 and the third connecting beam 273 by self-tapping screws. Both ends of the reinforcing beam 272 are connected to the third connecting column 271 and the third connecting beam 273 by self-tapping screws respectively.
[0200] The second reinforcing crossbeam 277 is connected to the third connecting beam 273 via an L-shaped aluminum alloy connector. The first sidewall of the L-shaped aluminum alloy connector is connected to the third connecting beam 273 via a first bolt and nut assembly. The screwing end of the bolt in the first bolt and nut assembly is located in the T-slot on the outside of the third connecting beam 273. The second sidewall of the L-shaped aluminum alloy connector is connected to the second reinforcing crossbeam 277 via the first bolt and nut assembly. The screwing end of the bolt in the first bolt and nut assembly is located in the T-slot on the outside of the second reinforcing crossbeam 277.
[0201] The fourth connecting beam 274 is connected to the third connecting column 271 via an L-shaped aluminum alloy connector. The first sidewall of the L-shaped aluminum alloy connector is connected to the third connecting column 271 via a first bolt and nut assembly. The screwing end of the bolt in the first bolt and nut assembly is located in the T-slot on the outside of the third connecting column 271. The second sidewall of the L-shaped aluminum alloy connector is connected to the fourth connecting beam 274 via the first bolt and nut assembly. The screwing end of the bolt in the first bolt and nut assembly is located in the T-slot on the outside of the fourth connecting beam 274.
[0202] The third wave ceramic plate 275 has a hollow cavity inside. The third wave ceramic plate 275 is connected to the fourth connecting beam 274 through an L-shaped aluminum alloy connector. The first side wall of the L-shaped aluminum alloy connector is connected to the fourth connecting beam 274 through a first bolt and nut assembly. The screwing end of the bolt in the first bolt and nut assembly is located in the T-groove on the outside of the fourth connecting beam 274. The second side wall of the L-shaped aluminum alloy connector is connected to the third wave ceramic plate 275 through a second bolt and nut assembly. The nut in the second bolt and nut assembly is located in the hollow cavity of the third wave ceramic plate 275.
[0203] The fifth external corner ceramic plate 276 has a hollow cavity inside. The fifth external corner ceramic plate 276 is connected to the second reinforcing crossbeam 277 through an L-shaped aluminum alloy connector. The first side wall of the L-shaped aluminum alloy connector is connected to the fourth connecting crossbeam 274 through a first bolt and nut assembly. The screwing end of the bolt in the first bolt and nut assembly is located in the T-groove on the outside of the second reinforcing crossbeam 277. The second side wall of the L-shaped aluminum alloy connector is connected to the fifth external corner ceramic plate 276 through a second bolt and nut assembly. The nut in the second bolt and nut assembly is located in the hollow cavity of the fifth external corner ceramic plate 276.
[0204] The fourth crescent-shaped ceramic plate 278 has a hollow cavity inside. The fourth crescent-shaped ceramic plate 278 is connected to the second reinforcing crossbeam 277 through an L-shaped aluminum alloy connector. The first side wall of the L-shaped aluminum alloy connector is connected to the fourth connecting crossbeam 274 through a first bolt and nut assembly. The screwing end of the bolt in the first bolt and nut assembly is located in the T-groove on the outside of the second reinforcing crossbeam 277. The second side wall of the L-shaped aluminum alloy connector is connected to the fourth crescent-shaped ceramic plate 278 through a second bolt and nut assembly. The nut in the second bolt and nut assembly is located in the hollow cavity of the fourth crescent-shaped ceramic plate 278.
[0205] In this embodiment, the lengths of the third wave ceramic plate 275, the fifth corner ceramic plate 276, and the fourth crescent ceramic plate 278 can be the same or different. When arranging them, the third wave ceramic plate 275, the fifth corner ceramic plate 276, and the fourth crescent ceramic plate 278 can be arranged horizontally aligned or horizontally staggered. The specific arrangement can be adjusted according to the actual design and is not specifically limited here.
[0206] like Figure 13 and Figure 14 As shown, in an optional embodiment of the present invention, the first crossbeam suspension member 23, the second crossbeam suspension member 24, and the third crossbeam suspension member 26 each include:
[0207] The third load-bearing seat 69 is welded to the square frame load-bearing beam 211;
[0208] The second bearing plate 68 is welded to the third bearing seat 69, and two sixth adjustment grooves 681 are provided through the surface of the second bearing plate 68.
[0209] The second support seat 67 is connected to the second support plate 68. The second support seat 67 has a U-shaped structure. The second support seat 67 has a fourth adjustment groove 671 formed through both side walls. The second support seat 67 has a third connecting plate 672 formed on both sides. The surface of the two third connecting plates 672 is provided with a fifth adjustment groove 673. The two fifth adjustment grooves 673 are respectively connected to the corresponding sixth adjustment grooves 681. The fifth adjustment grooves 673 and the sixth adjustment grooves 681 are perpendicular to each other.
[0210] A first support plate 65 has plug-in connecting portions 652 formed at both ends. The surface of the plug-in connecting portion 652 is provided with a second plug-in cavity 651, which has a T-shaped structure. Two second connecting plates 66 are formed on the surface of the first support plate 65. The two second connecting plates 66 are respectively connected to the two side walls of the second support seat 67. A third adjusting groove 661 is provided through the surface of each of the two second connecting plates 66. The two third adjusting grooves 661 are respectively connected to the corresponding fourth adjusting grooves 671. The third adjusting grooves 661 and the fourth adjusting grooves 671 are perpendicular to each other.
[0211] The connecting corner plate 61 has an L-shaped structure. The first side wall of the connecting corner plate 61 is connected to the first connecting column 221, the second connecting column 251 or the third connecting column 271 by a through bolt and nut assembly.
[0212] The second sidewall of the connecting corner plate 61 is formed with a second insertion part 62, which is inserted into and engaged with the second insertion cavity 651.
[0213] The second plug-in part 62 has a second internal threaded sleeve 64 formed on the side away from the connecting angle plate 61. The second internal threaded sleeve 64 is internally threaded with a second height adjustment bolt 63. The bottom end of the second height adjustment bolt 63 abuts against the plug-in part 652.
[0214] In this embodiment, during construction, the third bearing seat 69 is welded to the square frame bearing beam 211, and the second bearing plate 68 is welded to the third bearing seat 69. The second bearing seat 67 and the second bearing plate 68 are connected by bolts and nuts through the fifth adjustment groove 673 and the sixth adjustment groove 681. The installation position of the second bearing seat 67 can be adjusted through the fifth adjustment groove 673 and the sixth adjustment groove 681 to ensure accurate installation of the second bearing seat 67. The second connecting plate 66 is connected to the side wall of the second bearing seat 67 through the third adjustment groove 661 and the fourth adjustment groove 671, thereby realizing the installation of the first bearing plate 65. The position of the first bearing plate 65 can be adjusted through the third adjustment groove 661 and the fourth adjustment groove 671 to ensure accurate installation of the first bearing plate 65.
[0215] The connecting angle plate 61 is connected to the first connecting column 221, the second connecting column 251, or the third connecting column 271 by through bolts and nuts. During assembly, the second plug-in part 62 is inserted into the second plug-in cavity 651 of the T-shaped structure. The second plug-in part 62 and the second plug-in cavity 651 achieve horizontal positioning. The second height adjustment bolt 63 is screwed on, and the second height adjustment bolt 63 abuts against the plug-in connection part 652 to achieve suspension height adjustment and ensure suspension accuracy.
[0216] Through the above process, multiple terracotta panel curtain walls 22 at the upper corners of the horizontal beams, multiple terracotta panel curtain walls 25 on the sides of the horizontal beams, and multiple terracotta panel curtain walls 27 at the lower corners of the horizontal beams are suspended and installed on the supporting horizontal beams 21. The operation is simple and convenient, the installation accuracy is high, and it helps to improve construction efficiency and save construction costs.
[0217] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications should also be considered within the protection scope of this utility model.
Claims
1. A terracotta panel unitized curtain wall system, characterized in that: include: The first column assembly (1) and the second column assembly (3) are connected to both ends of the beam assembly (2); Both the first column assembly (1) and the second column assembly (3) include: The supporting column (41) has a cross-shaped structure; Multiple column end terracotta panel curtain walls (42) are suspended and connected to the four end faces of the supporting column (41) by the first column suspension member (43). The multiple column end terracotta panel curtain walls (42) are arranged in sequence along the height direction of the supporting column (41). Multiple column-mounted terracotta panel curtain walls (44) are suspended and connected to the four corners of the supporting column (41) by a second column suspension member (45). The multiple column-mounted terracotta panel curtain walls (44) are arranged in sequence along the height direction of the supporting column (41). The column-mounted terracotta panel curtain walls (44) are connected to the adjacent column end terracotta panel curtain walls (42). The beam assembly (2) includes: A rectangular support beam (21); Multiple horizontal beam upper corner terracotta panel curtain walls (22) are suspended and connected to the upper corner of the supporting horizontal beam (21) near the outside by the first horizontal beam suspension member (23). Multiple horizontal beam upper corner terracotta panel curtain walls (22) are arranged in sequence along the length direction of the supporting horizontal beam (21). Multiple beam-side terracotta panel curtain walls (25) are suspended and connected to the side of the supporting beam (21) near the outside via a second beam suspension member (24). The multiple beam-side terracotta panel curtain walls (25) are arranged sequentially along the length of the supporting beam (21). The upper part of the beam-side terracotta panel curtain wall (25) is connected to the lower part of the upper corner terracotta panel curtain wall (22) of the beam. Multiple terracotta panel curtain walls (27) at the lower corners of the horizontal beams are suspended and connected to the lower corners of the supporting horizontal beam (21) near the outside via a third horizontal beam suspension member (26). The multiple terracotta panel curtain walls (27) at the lower corners of the horizontal beams are arranged sequentially along the length of the supporting horizontal beam (21). The upper part of the terracotta panel curtain walls (27) at the lower corners of the horizontal beams is connected to the lower part of the terracotta panel curtain wall (25) on the side of the horizontal beam.
2. The terracotta panel unitized curtain wall system according to claim 1, characterized in that, The supporting column (41) includes: Cross-shaped support column (411); The end bearing seats (413) are welded to the four end faces of the cross support column (411); Fire-retardant coating (412) is provided on the outer surface of the cross support column (411); A steel plate (414) is connected to the outside of the fireproof coating (412) and the outside of the end support (413).
3. The terracotta panel unitized curtain wall system according to claim 2, characterized in that, The terracotta panel curtain wall (42) at the end of the column includes: Two vertically installed first load-bearing columns (422); Multiple first load-bearing crossbeams (421) are connected between two first load-bearing columns (422), and the multiple first load-bearing crossbeams (421) are evenly distributed along the length direction of the first load-bearing columns (422). Multiple crescent-shaped ceramic slabs (423) are connected to the two first supporting columns (422). The multiple crescent-shaped ceramic slabs (423) abut against the first supporting beam (421). The multiple crescent-shaped ceramic slabs (423) are evenly connected and arranged along the height direction of the first supporting columns (422). Multiple first external corner ceramic panels (424) are connected to the outer sides of the two first supporting columns (422). The multiple first external corner ceramic panels (424) are located on both sides of the first crescent ceramic panel (423). The multiple first external corner ceramic panels (424) are arranged together along the length of the first supporting column (422).
4. The terracotta panel unitized curtain wall system according to claim 3, characterized in that, The column-mounted terracotta panel curtain wall (44) includes: Second load-bearing column (441); Two third load-bearing columns (442) are located on both sides of the second load-bearing column (441) to form an L-shaped structure; Multiple second load-bearing crossbeams (443) are connected between two third load-bearing columns (442) and the second load-bearing column (441); Multiple first corner terracotta panels (444) are connected to multiple second load-bearing crossbeams (443). The multiple first corner terracotta panels (444) are close to the second load-bearing column (441). The multiple first corner terracotta panels (444) are evenly connected and arranged along the height direction of the second load-bearing column (441). Multiple first straight terracotta panels (445) are connected to multiple second load-bearing crossbeams (443). The multiple first straight terracotta panels (445) are located on both sides of the first internal corner terracotta panel (444). The multiple first straight terracotta panels (445) are evenly connected and arranged along the height direction of the second load-bearing column (441). Multiple first wave ceramic slabs (446) are connected to two third supporting columns (442). The multiple first wave ceramic slabs (446) are horizontally connected to the corresponding first straight ceramic slabs (445). The multiple first wave ceramic slabs (446) are evenly connected and arranged along the height direction of the second supporting column (441).
5. The terracotta panel unitized curtain wall system according to claim 4, characterized in that, Both the first column suspension member (43) and the second column suspension member (45) include: The first support seat (59) has an inverted L-shaped structure. The vertical part of the first support seat (59) is welded to the cross support column (411) or the end support seat (413). The horizontal part of the first support seat (59) is provided with a second adjustment groove (591). A first connecting plate (57) is connected to the horizontal part of the first bearing seat (59). A first adjusting groove (571) is provided through the surface of the first connecting plate (57). The first adjusting groove (571) corresponds to the second adjusting groove (591), and the first adjusting groove (571) is perpendicular to the second adjusting groove (591). Suspension rail (55) formed on the surface of the first connecting plate (57); A first suspension plate (53) is provided with a limiting groove (531) through the bottom of the first suspension plate (53), and the suspension guide rail (55) is placed inside the limiting groove (531); a first internal thread sleeve (54) is formed in the middle of the first suspension plate (53), and a first height adjustment bolt (58) is threadedly connected inside the first internal thread sleeve (54). The bottom end of the first height adjustment bolt (58) extends into the limiting groove (531) and abuts against the upper surface of the suspension guide rail (55); The suspension guide rail (55) has a limiting block (56) formed on the outside. There are two limiting blocks (56), and the two limiting blocks (56) are located on both sides of the first suspension plate (53). A first insertion part (52) is formed on one side of the first suspension plate (53). The first insertion part (52) is inserted into the first insertion cavity (51) on the side of the first support column (422), the second support column (441) or the third support column (442). The first insertion part (52) is connected to the first support column (422), the second support column (441) or the third support column (442) through a through bolt and nut assembly.
6. The terracotta panel unitized curtain wall system according to claim 2, characterized in that, The supporting beam (21) includes: A rectangular frame support beam (211) is connected to a cross support column (411); The insulation layer (212) is installed on the outer side of the load-bearing beam (211) of the frame.
7. The terracotta panel unitized curtain wall system according to claim 6, characterized in that, The upper corner terracotta panel curtain wall (22) of the beam includes: Multiple vertically arranged first connecting columns (221); Multiple horizontally arranged first connecting beams (225) are perpendicularly connected to the first connecting column (221); A first reinforcing crossbeam (224) is connected between two adjacent first connecting beams (225). Two first reinforcing crossbeams (224) are provided between two adjacent first connecting beams (225), and the two first reinforcing crossbeams (224) are respectively close to the two ends of the first connecting beams (225). A second crescent-shaped ceramic plate (228) connected to the two first reinforcing crossbeams (224); The third corner ceramic plate (227) and the second corner ceramic plate (226) are respectively connected to the two first reinforcing crossbeams (224), and the third corner ceramic plate (227) and the second corner ceramic plate (226) are respectively located on both sides of the second crescent ceramic plate (228); A first connecting beam (222) connected to multiple first connecting columns (221); The second wave ceramic plate (223) is connected to the first connecting beam (222), and the upper part of the second wave ceramic plate (223) is connected to the third corner ceramic plate (227).
8. The terracotta panel unitized curtain wall system according to claim 7, characterized in that, The terracotta panel curtain wall (25) on the side of the beam includes: Multiple vertically arranged second connecting columns (251); The second connecting beam (252) and the third connecting beam (253) are connected to multiple second connecting columns (251). Both the second connecting beam (252) and the third connecting beam (253) extend along the length direction of the square frame bearing beam (211). The second connecting beam (252) is provided in two parts, and the two second connecting beams (252) are respectively close to the upper end and lower end of the second connecting column (251); the outer sides of the two second connecting beams (252) are connected to the second straight ceramic plate (255), and the upper second straight ceramic plate (255) is connected to the second wave ceramic plate (223); Two third connecting beams (253) are provided, and the two third connecting beams (253) are symmetrically distributed between the two second connecting beams (252); The outer sides of the two third connecting crossbeams (253) are connected to second internal corner ceramic plates (256), and the two second internal corner ceramic plates (256) are respectively connected to the corresponding second straight ceramic plates (255); The two third connecting beams (253) are connected to the second connecting beams (254) on their opposite sides. The two second connecting beams (254) extend horizontally and are away from the second connecting column (251). A third crescent-shaped ceramic plate (258) connected to the two second connecting beams (254); The fourth yang corner ceramic plates (257) are set on both sides of the third crescent ceramic plate (258). The two fourth yang corner ceramic plates (257) are respectively connected to the corresponding second connecting beam (254), and the two fourth yang corner ceramic plates (257) are respectively connected to the corresponding second yin corner ceramic plates (256).
9. The terracotta panel unitized curtain wall system according to claim 8, characterized in that, The lower corner terracotta panel curtain wall (27) of the beam includes: Multiple horizontally extending third connecting beams (273) are evenly distributed along the length direction of the frame bearing beam (211); The two third connecting columns (271) are connected to the two ends of the third connecting beam (273). The two third connecting columns (271) and the third connecting beam (273) form a U-shaped structure. The two third connecting columns (271) and the third connecting beam (273) are connected by reinforcing beams (272). A fourth connecting beam (274) is connected to multiple third connecting columns (271) on the same side, and two fourth connecting beams (274) extend along the length direction of the square frame bearing beam (211); The two fourth connecting beams (274) are connected to the third wave terracotta plate (275) on the sides away from each other. The third wave terracotta plate (275) away from the square frame supporting beam (211) is connected to the second straight plate terracotta plate (255) located at the bottom. A second reinforcing crossbeam (277) is connected between two adjacent third connecting beams (273). The second reinforcing crossbeam (277) extends along the length of the frame load-bearing beam (211). Two second reinforcing crossbeams (277) are provided between two adjacent third connecting beams (273), and the two second reinforcing crossbeams (277) are respectively close to the two ends of the third connecting beam (273). A fourth crescent-shaped ceramic plate (278) is connected to two second reinforcing crossbeams (277), and the fourth crescent-shaped ceramic plate (278) abuts against a third connecting beam (273); The fifth corner ceramic plates (276) are set on both sides of the fourth crescent ceramic plate (278). The two fifth corner ceramic plates (276) are respectively connected to the corresponding second reinforcing crossbeam (277), and the two fifth corner ceramic plates (276) are respectively connected to the corresponding third wave ceramic plate (275).
10. The terracotta panel unitized curtain wall system according to claim 9, characterized in that, The first crossbeam suspension member (23), the second crossbeam suspension member (24), and the third crossbeam suspension member (26) each include: A third bearing seat (69) is welded to the square frame bearing beam (211); The second support plate (68) is welded to the third support seat (69), and two sixth adjustment grooves (681) are provided through the surface of the second support plate (68); A second support seat (67) is connected to the second support plate (68). The second support seat (67) has a U-shaped structure. A fourth adjustment groove (671) is formed through both sides of the second support seat (67). A third connecting plate (672) is formed on both sides of the second support seat (67). A fifth adjustment groove (673) is provided through the surface of the two third connecting plates (672). The two fifth adjustment grooves (673) are respectively connected to the corresponding sixth adjustment grooves (681). The fifth adjustment grooves (673) and the sixth adjustment grooves (681) are perpendicular to each other. A first support plate (65) has plug-in connecting parts (652) formed at both ends. The plug-in connecting parts (652) have a second plug-in cavity (651) on their surface. The second plug-in cavity (651) has a T-shaped structure. Two second connecting plates (66) are formed on the surface of the first support plate (65). The two second connecting plates (66) are respectively connected to the two side walls of the second support seat (67). A third adjustment groove (661) is provided through the surface of each of the two second connecting plates (66). The two third adjustment grooves (661) are respectively connected to the corresponding fourth adjustment grooves (671). The third adjustment grooves (661) and the fourth adjustment grooves (671) are perpendicular to each other. The connecting corner plate (61) has an L-shaped structure. The first sidewall of the connecting corner plate (61) is connected to the first connecting column (221), the second connecting column (251) or the third connecting column (271) by a through bolt and nut assembly. The second sidewall of the connecting corner plate (61) is formed with a second insertion part (62), which is inserted into the second insertion cavity (651). The second plug-in part (62) has a second internal threaded sleeve (64) formed on the side away from the connecting angle plate (61). The second internal threaded sleeve (64) is internally threaded with a second height adjustment bolt (63). The bottom end of the second height adjustment bolt (63) abuts against the plug-in part (652).