Quick-assembly combined type high-strength alloy keel with keel, early-disassembly core and quick-assembly
Through the design and rapid assembly of the combined high-strength alloy keel with keel early disassembly and quickly assembled, the existing building formwork is solved, and the construction of the building formwork is assembled with a large workload, dangerous and difficult construction, and the construction period is achieved.
Patent Information
- Application Number
- CN202422592590.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-26
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-10-26
AI Technical Summary
The workload of existing building forms is large, which limits the construction period, and is dangerous and difficult to build, with high demand for wood, and it is difficult to fix wooden forms.
The combination of high-strength alloy keel with keel is adopted. The combination of high-strength alloy keel is quickly disassembled and installed through the combination of high-strength alloy keel, wing bone and core belt, and the combination of bolt fixation and a special locking structure is used to achieve rapid assembly.
It achieves rapid installation, simple structure, and convenient disassembly and assembly, greatly saves construction period, reduces labor intensity, improves safety performance, and improves grouting construction speed.
Smart Images

Figure CN223034536U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of building formwork, in particular to a high-strength alloy keel with an early demolition core and quick installation combined with keels. Background Art
[0002] A keel is a building material used to support shapes and fix structures; however, its workload is too large, which greatly limits the construction period. Currently, the commonly used methods are scaffolding and wooden formwork, which are very dangerous, difficult to build, require a large amount of wood, and it is very difficult to fix the wooden formwork.
[0003] Therefore, the defects of the prior art are: the workload is too large, which greatly limits the construction period, very dangerous, difficult to build, requires a large amount of wood, and it is very difficult to fix the wooden formwork. Summary of the Utility Model
[0004] Purpose of the utility model: To provide a method for quickly assembling a high-strength alloy keel with an early demolition core and quick installation combined with keels with better effects. The specific purpose can be seen from the multiple substantial technical effects in the specific implementation part.
[0005] To achieve the above purpose, the utility model adopts the following technical solutions:
[0006] Solution 1: A high-strength alloy keel with an early demolition core and quick installation combined with keels; the core content of this solution is a keel structure for quick disassembly and installation;
[0007] Solution 2: A method for quickly assembling a high-strength alloy keel with an early demolition core and quick installation combined with keels; the core content of this solution is a method;
[0008] To achieve the above purpose, the utility model adopts the following technical solutions:
[0009] Solution 1:
[0010] A high-strength alloy keel with an early demolition core and quick installation combined with keels, characterized in that
[0011] The combined high-strength alloy keel includes a high-strength alloy early demolition head 1. Both sides of the high-strength alloy early demolition head 1 include inclined surfaces, which can fit with the side bevel 8, and a groove 4 is arranged on the high-strength alloy early demolition head 1;
[0012] It also includes a high-strength alloy keel 2 that can be cooperatively butted with the high-strength alloy early demolition head 1. High-strength alloy wing keels 3 are arranged on both sides or one side of the high-strength alloy keel 2, and grooves 4 are also arranged on the high-strength alloy wing keels 3;
[0013] It also includes a high-strength alloy core belt 6 that can be pressed into the grooves 4 of the high-strength alloy early demolition head 1 and the high-strength alloy wing keels 3;
[0014] There are holes arranged on the groove 4 of the high-strength alloy wing bone 3, and there are also holes arranged on the high-strength alloy core belt 6;
[0015] There are mounting holes 7 arranged on the high-strength alloy keel 2;
[0016] The lower support column 5 extends downward from the high-strength alloy early-demolition head 1.
[0017] A further technical solution of the present utility model is that the combined high-strength alloy keel is arranged as a whole in a manner that the high-strength alloy keel 2 and the high-strength alloy early-demolition head 1 are arranged at intervals, and the side edge of the outermost high-strength alloy keel 2 is a vertical edge 11.
[0018] A further technical solution of the present utility model is that a vertical reinforcing rib 9 and a transverse reinforcing rib 10 are arranged in the middle of the high-strength alloy keel 2.
[0019] A further technical solution of the present utility model is that the high-strength alloy core belt 6 is U-shaped, and one side wall of the U-shape is an inclined wall.
[0020] A further technical solution of the present utility model is that the support column 5 can be docked with the support structure below.
[0021] A further technical solution of the present utility model is that the high-strength alloy wing bone 3 is welded on both sides or one side of the high-strength alloy keel 2.
[0022] A further technical solution of the present utility model is that the transverse reinforcing rib 10 includes multiple groups.
[0023] Solution Two:
[0024] A quick assembly method for a combined high-strength alloy keel with a keel early-demolition core and quick installation, characterized by including the following steps:
[0025] Prepare the high-strength alloy early-demolition head 1, the high-strength alloy keel 2, and the high-strength alloy core belt 6;
[0026] First, make the inclined surfaces on both sides of the high-strength alloy early-demolition head 1 fit with the side bevel 8;
[0027] The high-strength alloy early-demolition head 1 and the high-strength alloy keel 2 are arranged alternately;
[0028] The high-strength alloy core belt 6 is pressed into the grooves 4 of the high-strength alloy early-demolition head 1 and the high-strength alloy keel 2;
[0029] Use bolts to fix the alternately arranged high-strength alloy early-demolition head 1 and high-strength alloy keel 2;
[0030] The lower support column 5 of the high-strength alloy early-demolition head 1 is supported on the ground;
[0031] Utilize a quick - installation combined high - strength alloy keel with a keel - supported early - removal core. The combined high - strength alloy keel includes a high - strength alloy early - removal head 1. Both sides of the high - strength alloy early - removal head 1 include inclined surfaces that can fit with the side bevel 8, and a groove 4 is arranged on the high - strength alloy early - removal head 1;
[0032] It also includes a high - strength alloy keel 2 that can be cooperatively docked with the high - strength alloy early - removal head 1. High - strength alloy wing keels 3 are arranged on both sides or one side of the high - strength alloy keel 2, and grooves 4 are also arranged on the high - strength alloy wing keels 3;
[0033] It also includes a high - strength alloy core belt 6 that can be pressed into the grooves 4 of the high - strength alloy early - removal head 1 and the high - strength alloy wing keels 3;
[0034] Holes are arranged on the groove 4 of the high - strength alloy wing keel 3, and holes are also arranged on the high - strength alloy core belt 6;
[0035] Installation holes 7 are arranged on the high - strength alloy keel 2;
[0036] The high - strength alloy early - removal head 1 extends downward with a lower support column 5.
[0037] A further technical solution of the present utility model is that the installation holes 7 of the high - strength alloy keel 2 can be butt - joined with high - strength alloy formwork through bolts.
[0038] A further technical solution of the present utility model is that the part of the groove 4 where the high - strength alloy core belt 6 is not pressed can fit with the end of the high - strength alloy formwork.
[0039] A further technical solution of the present utility model is that it also includes a special clamping structure. The clamping structure 12 is cylindrical. A double - wall groove 14 is arranged in the middle of the cylinder, and clamping holes 13 are arranged on both sides of the cylinder. The double - wall groove 14 can hold the hole walls 16 of two thicknesses. It also includes an insertion part 15. The insertion part 15 can be inserted into the clamping holes 13 for fixation; rapid clamping can be carried out.
[0040] A further technical solution of the present utility model is that the insertion part 15 is a right - angle structure.
[0041] The present utility model adopting the above - mentioned technical solutions has the following beneficial effects compared with the prior art: rapid installation, simple structure, convenient disassembly and assembly, can greatly save the construction period, reduce the intensity of manual labor, good safety performance, and faster grouting and erection. BRIEF DESCRIPTION OF THE DRAWINGS
[0042] In order to further illustrate the present utility model, the following is further described in conjunction with the drawings:
[0043] Figure 1 It is the structural diagram of the utility model;
[0044] Figure 2 Structural diagram of a high-strength alloy keel with a beveled edge for a utility model;
[0045] Figure 3 Side sectional view of the overall structure;
[0046] Figure 4 Cross-sectional view of a high-strength alloy fin bone;
[0047] Figure 5 Side view of a high-strength alloy fin bone;
[0048] Figure 6 High-strength alloy keel with beveled edges on both sides;
[0049] Figure 7 High-strength alloy keel with a beveled edge on one side and a flat edge on the other side;
[0050] Figure 8 Structural diagram of a high-strength alloy core strip;
[0051] Figure 9 Cross-sectional view of a high-strength alloy core strip;
[0052] Figure 10 Preferred structural diagram of a clamping structure;
[0053] Wherein: 1. High-strength alloy early demolition head; 2. High-strength alloy keel; 3. High-strength alloy fin bone; 4. Groove; 5. Lower support column; 6. High-strength alloy core strip; 7. Mounting hole; 8. Beveled edge on the side; 9. Vertical reinforcing rib; 10. Horizontal reinforcing rib; 11. Vertical edge; 12. Clamping structure; 13. Clamping hole; 14. Double-wall groove; 15. Insertion part; 16. Hole wall. Specific implementation method
[0054] The present invention will be further illustrated below in conjunction with the accompanying drawings and specific embodiments. It should be understood that the following specific embodiments are only used to illustrate the present invention and not to limit the scope of the present invention. In the description of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", "top", "bottom", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention. In addition, unless otherwise clearly specified and defined, the terms "installation", "connection", and "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0055] It should be noted that in this text, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variation thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or elements inherent to such process, method, article or device.
[0056] This patent provides multiple parallel solutions. The different expressions belong to improved solutions or parallel solutions based on the basic solution. Each solution has its own unique features. In addition, the technical features involved in different embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other. The fixing method not described in the text can be any one of screw fixing, bolt fixing or glue bonding.
[0057] Embodiment 1: In combination with all the accompanying drawings; a quick-install combined high-strength alloy keel with a keel early-demolition core, characterized in that
[0058] The combined high-strength alloy keel includes a high-strength alloy early-demolition head 1. Both sides of the high-strength alloy early-demolition head 1 include inclined surfaces that can fit with the side inclined edges 8, and a groove 4 is arranged on the high-strength alloy early-demolition head 1;
[0059] It also includes a high-strength alloy keel 2 that can be cooperatively docked with the high-strength alloy early-demolition head 1. High-strength alloy wing bones 3 are arranged on both sides or one side of the high-strength alloy keel 2, and grooves 4 are also arranged on the high-strength alloy wing bones 3;
[0060] It also includes a high-strength alloy core belt 6 that can be pressed into the grooves 4 of the high-strength alloy early-demolition head 1 and the high-strength alloy wing bones 3;
[0061] Holes are arranged on the grooves 4 of the high-strength alloy wing bones 3, and holes are also arranged on the high-strength alloy core belt 6;
[0062] Mounting holes 7 are arranged on the high-strength alloy keel 2;
[0063] The high-strength alloy early-demolition head 1 extends downward with a lower support column 5. The substantial technical effects and their implementation processes, that is, the basic functions, of the technical solution here are as follows: A fast-assembly method for a combined high-strength alloy keel with a keel early-demolition core, characterized by including the following steps,
[0064] Prepare the high-strength alloy early-demolition head 1, the high-strength alloy keel 2, and the high-strength alloy core belt 6;
[0065] First, make the inclined surfaces and the side bevel edges 8 on both sides of the high-strength alloy early-demolition head 1 fit;
[0066] The high-strength alloy early-demolition head 1 and the high-strength alloy keel 2 are arranged alternately;
[0067] The high-strength alloy core belt 6 is pressed into the grooves 4 of the high-strength alloy early-demolition head 1 and the high-strength alloy keel 2;
[0068] Use bolts to fix the alternately arranged high-strength alloy early-demolition head 1 and high-strength alloy keel 2;
[0069] The lower support column 5 of the high-strength alloy early-demolition head 1 is supported on the ground below.
[0070] It can quickly achieve support and is safer and more reliable.
[0071] It can greatly increase the strength of the overall structure.
[0072] Embodiment 2: As a further improvable scheme or a parallel scheme or an alternative independent scheme, the combined high-strength alloy keel is arranged as a whole in a way that the high-strength alloy keel 2 and the high-strength alloy early-demolition head 1 are arranged at intervals, and the side edge of the outermost high-strength alloy keel 2 is a vertical edge 11. The substantial technical effects and their implementation processes, that is, the basic functions, of the technical solution here are as follows: At the outermost position, there is no need to continue connecting with a straight edge.
[0073] Example 3: As a further improvable solution, a parallel solution, or an alternative independent solution, vertical reinforcing ribs 9 and transverse reinforcing ribs 10 are arranged in the middle of the high-strength alloy keel 2. The substantial technical effects achieved by the technical solution here and its implementation process, that is, the basic functions, are as follows: Therefore, the overall strength is very high.
[0074] Example 4: As a further improvable solution, a parallel solution, or an alternative independent solution, the high-strength alloy core belt 6 is U-shaped, and one side wall of the U shape is an inclined wall. The substantial technical effects achieved by the technical solution here and its implementation process, that is, the basic functions, are as follows: Refer to Figure 5 and Figure 6 , and it can be quickly pressed and fixed.
[0075] Example 5: As a further improvable solution, a parallel solution, or an alternative independent solution, the support column 5 can be docked with the support structure below. The substantial technical effects achieved by the technical solution here and its implementation process, that is, the basic functions, are as follows: Thus, rapid support on the ground is realized.
[0076] Example 6: As a further improvable solution, a parallel solution, or an alternative independent solution, the high-strength alloy wing ribs 3 are welded on both sides or one side of the high-strength alloy keel 2.
[0077] Example 7: As a further improvable solution, a parallel solution, or an alternative independent solution, the transverse reinforcing ribs 10 include multiple groups. The substantial technical effects achieved by the technical solution here and its implementation process, that is, the basic functions, are as follows: The strength is better.
[0078] Solution 2:
[0079] Example 8: As a further improvable solution, a parallel solution, or an alternative independent solution, a combined high-strength alloy keel with a keel early demolition core and quick installation is used. The combined high-strength alloy keel includes a high-strength alloy early demolition head 1. Both sides of the high-strength alloy early demolition head 1 include inclined surfaces, and these surfaces can fit with the side bevel 8. Moreover, a groove 4 is arranged on the high-strength alloy early demolition head 1;
[0080] It also includes a high-strength alloy keel 2 that can be cooperatively docked with the high-strength alloy early demolition head 1. High-strength alloy wing ribs 3 are arranged on both sides or one side of the high-strength alloy keel 2, and grooves 4 are also arranged on the high-strength alloy wing ribs 3;
[0081] It also includes a high-strength alloy core belt 6 that can be pressed into the grooves 4 of the high-strength alloy early demolition head 1 and the high-strength alloy wing ribs 3;
[0082] Holes are arranged on the grooves 4 of the high-strength alloy wing ribs 3, and holes are also arranged on the high-strength alloy core belt 6;
[0083] There are mounting holes 7 arranged on the high-strength alloy keel 2;
[0084] The high-strength alloy early-demolition head 1 extends downward with a lower support column 5.
[0085] Example Nine: As a further improvable solution, a parallel solution, or an alternative independent solution, the mounting holes 7 of the high-strength alloy keel 2 can be butt-connected to the high-strength alloy formwork through bolts. The substantial technical effects achieved by the technical solution herein and its implementation process, that is, the basic function, are as follows: This example is a parallel solution to some subsequent solutions.
[0086] Example Ten: As a further improvable solution, a parallel solution, or an alternative independent solution, the part in the groove 4 where the high-strength alloy core belt 6 is not pressed can fit the end of the high-strength alloy formwork. The substantial technical effects achieved by the technical solution herein and its implementation process, that is, the basic function, are as follows: Therefore, the overall structure has a high degree of fit and good integrity.
[0087] Example Eleven: As a further improvable solution, a parallel solution, or an alternative independent solution, it further includes a dedicated clamping structure. The clamping structure 12 is cylindrical. There is a double-wall groove 14 arranged in the middle of the cylinder, and clamping holes 13 are arranged on both sides of the cylinder. The double-wall groove 14 can hold the hole walls 16 with two thicknesses. It also includes an insertion part 15. The insertion part 15 can be inserted into the clamping holes 13 for fixation; rapid clamping can be carried out. The substantial technical effects achieved by the technical solution herein and its implementation process, that is, the basic function, are as follows: Referring to the last drawing, rapid insertion and fixation can be achieved. The double-wall groove 14 can tightly fit the metal walls of two adjacent different components, realizing stable insertion and fixation.
[0088] Example Twelve: As a further improvable solution, a parallel solution, or an alternative independent solution, the insertion part 15 is a right-angle structure. The substantial technical effects achieved by the technical solution herein and its implementation process, that is, the basic function, are as follows: It can be quickly installed and disassembled.
[0089] The high-strength alloy mentioned in the text is an alloy material with relatively high strength.
[0090] Innovatively, the above various effects exist independently, and the combination of the above results can also be achieved with a set of structures.
[0091] It should be noted that the multiple solutions provided by this patent include their own basic solutions, which are independent of each other and do not restrict each other. However, they can also be combined with each other without conflict to achieve the co-realization of multiple effects.
[0092] The above has shown and described the basic principles, main features and advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and all these changes and improvements fall within the scope of protection required.
Claims
1. Quick-installation high-strength alloy keel with early core removal, characterized by: The combined high-strength alloy keel comprises a high-strength alloy early-removal head (1), wherein both sides of the high-strength alloy early-removal head (1) comprise inclined surfaces which can fit with the side bevels (8), and a groove (4) is arranged on the high-strength alloy early-removal head (1); It also comprises a high-strength alloy keel (2) capable of being docked with the high-strength alloy early-disassembly head (1), high-strength alloy wing bones (3) are arranged on both sides or one side of the high-strength alloy keel (2), and grooves (4) are also arranged on the high-strength alloy wing bones (3); It also includes a high-strength alloy core strip (6) that can be pressed into the groove (4) of the high-strength alloy early-removal head (1) and the high-strength alloy wing bone (3); The groove (4) of the high-strength alloy wing bone (3) is provided with a hole, and the high-strength alloy core band (6) is also provided with a hole; The high-strength alloy keel (2) is provided with mounting holes (7); The high-strength alloy early removal head (1) extends downward and has a lower support column (5).
2. The high-strength alloy keel with early core removal and quick assembly as claimed in claim 1 is characterized in that: The combined high-strength alloy keel is arranged as a whole in a manner that the high-strength alloy keel (2) and the high-strength alloy early-disassembly head (1) are arranged at intervals, and the side of the high-strength alloy keel (2) at the edge is a vertical edge (11).
3. The high-strength alloy keel with early core removal and quick assembly as claimed in claim 1 is characterized in that: A vertical reinforcing rib (9) and a transverse reinforcing rib (10) are arranged in the middle of the high-strength alloy keel (2).
4. The high-strength alloy keel with early core removal and quick assembly as claimed in claim 1, characterized in that: The high-strength alloy core strip (6) is quasi-U-shaped, and one side wall of the U-shape is an inclined wall.
5. The high-strength alloy keel with early core removal and quick assembly as claimed in claim 1, characterized in that: The support column (5) can be connected to the support structure below.
6. The high-strength alloy keel with early core removal and quick assembly as claimed in claim 1, characterized in that: The high-strength alloy wing bones (3) are welded to both sides or one side of the high-strength alloy keel (2).
7. The high-strength alloy keel with early core removal and quick assembly as claimed in claim 1, characterized in that: The transverse reinforcing ribs (10) include a plurality of groups.