Green energy-saving fabricated building framework

By adopting a design of interlocking grooves and threaded connections in the prefabricated building frame, the problem of thermal expansion and contraction caused by welding connections is solved, enabling rapid installation and disassembly of the support frame and improving the stability and safety of the structure.

CN223880507UActive Publication Date: 2026-02-06上海杨浦建筑设计有限公司
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Patent Information

Application Number
CN202423293515.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-02-06
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The welding connection method in the existing prefabricated building frame causes internal stress in the components when they expand and contract with temperature, which affects the structural safety and durability, and makes disassembly difficult and increases maintenance costs.

Method used

The design employs a snap-fit ​​groove and threaded connection. Through the combination of snap-fit ​​plate, threaded shaft, and snap-fit ​​shaft, the support frame can be quickly installed and disassembled. The connection strength and stability are increased by the cooperation between the threaded shaft and the fixing groove.

Benefits of technology

It enables rapid installation and disassembly of the support frame, reduces structural damage caused by thermal expansion and contraction, lowers maintenance costs, and improves the stability and safety of the structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of assembly type building frameworks, and discloses a green energy-saving assembly type building framework which comprises first supporting frames, second clamping grooves are formed in the tops of the outer walls of the two first supporting frames, second clamping plates are connected to the outer walls of the second clamping grooves in a sliding mode, and second supporting frames are fixedly connected to the tops of the second clamping plates. And the outer wall of one side of the outer wall of the second clamping plate is in threaded connection with a second threaded shaft, the other end of the second threaded shaft is in threaded connection with a clamping shaft, the rear side of the clamping shaft penetrates through the middle of the second clamping plate and is in threaded connection with a threaded rotating plate, and the front side of the outer wall of the clamping shaft is fixedly connected with a baffle. According to the assembling type vertical beam supporting frame, when the first supporting frame and the second supporting frame need to be connected, the second clamping plate at the bottom of the inner wall of the second supporting frame can be clamped in the outer wall of the second clamping groove, meanwhile, the clamping shaft is installed on the left side of the outer wall of the first supporting frame in a sliding mode, and therefore the function of assembling type rapid assembling and disassembling of the first vertical beam supporting frame and the second vertical beam supporting frame is achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to prefabricated building frame technical field especially relates to a kind of green energy-saving prefabricated building frame. BACKGROUND

[0002] Under the background of increasingly serious global environmental problems, sustainable development has become the core development concept of the construction industry. Building activities consume a large amount of resources and produce a lot of pollutants, with carbon dioxide emissions accounting for about 30%, so developing green energy-saving buildings has become a top priority to reduce dependence on natural resources and environmental damage, and to achieve the harmonious coexistence of buildings and the environment. With the enhancement of people's environmental awareness, consumers' recognition and demand for green buildings are increasing, green buildings not only provide a healthier and more comfortable living and working environment, but also reduce operating costs, and enterprises and institutions also prefer to choose green energy-saving buildings as office spaces to enhance corporate image and economic benefits, which provides a broad market space for the development of green energy-saving prefabricated building frames.

[0003] The prefabricated building frame on the market is basically composed of prefabricated wall panels, prefabricated columns and prefabricated beams. In traditional prefabricated building frames, welding is a common connection method, especially widely used in steel structures. Welding can provide strong connection strength, making the steel column and steel beam components form a stable overall structure, and showing reliable mechanical properties when bearing large loads. However, welding is a rigid connection method, and once welding is completed, there is almost no relative displacement space between components. When the building is in use and encounters temperature changes, internal stress will occur in the components due to the thermal expansion and contraction characteristics of steel. For example, during the alternating process of high temperature in summer and low temperature in winter, the steel components in the building frame will change in length due to thermal expansion and contraction, and the welding site cannot adapt to this deformation, which can easily cause cracks or even breakage at the welding site, seriously affecting the safety and durability of the building structure. Moreover, the welded structure is difficult to disassemble, and if the components need to be replaced due to building function adjustment or local damage, disassembling the welded parts not only requires professional cutting equipment and technology, but also may cause damage to surrounding components, increasing maintenance costs and difficulty. SUMMARY

[0004] To make up for the above shortcomings, the utility model provides a kind of green energy-saving prefabricated building frame, to improve the problem that welding is a rigid connection method in prior art, once welding is completed, there is almost no relative displacement space between components.

[0005] In order to achieve the above object, the utility model discloses the following technical scheme: a kind of green energy-saving fabricated building framework, including support frame one, the outer wall top of two support frame one is equipped with engaging slot two, the outer wall of engaging slot two is slidably connected with engaging plate two, the top of engaging plate two is fixedly connected with support frame two, the outer wall one side of engaging plate two is threadedly connected with threaded shaft two, the other end of threaded shaft two is threadedly connected with engaging shaft, the rear side of engaging shaft is penetrated through the middle part of engaging plate two and is threadedly connected with threaded rotating plate, the outer wall front side of engaging shaft is fixedly connected with baffle, the inward one side of two support frame one is provided with fixed mechanism, and the fixed mechanism is used for fixing.

[0006] Through the above technical scheme: the outer wall top of two support frame one is carefully designed and equipped with engaging slot two, the outer wall of these engaging slot two is slidably connected with engaging plate two, the top of engaging plate two is fixedly connected with support frame two, the outer wall one side of engaging plate two is also designed with threaded connection, and the outer wall is threadedly connected with threaded shaft two, and the other end of threaded shaft two is threadedly connected with engaging shaft, and the rear side of engaging shaft is penetrated through the middle part of engaging plate two, and is threadedly connected with threaded rotating plate, and this threaded connection mode not only guarantees the stability of engaging shaft, and in addition, the outer wall front side of engaging shaft is fixedly connected with baffle.

[0007] As further description of the above technical scheme:

[0008] The fixed mechanism includes threaded shaft one, the outer wall of threaded shaft one is slidably connected in the inner wall of support frame one, the inward one side of two support frame one is equipped with sliding slot, the bottom of two support frame one is provided with engaging plate one, the outward one side of engaging plate one is equipped with fixed slot, the outer wall of threaded shaft one is in contact with the outer wall of fixed slot, the outer wall of threaded shaft one is threadedly connected with threaded sleeve, the outer wall of fixed slot is slidably connected with engaging slot one, the outer wall of engaging plate one is slidably connected with connecting frame, the inner wall of connecting frame is equipped with threaded shaft one, and the outer wall of engaging slot one is slidably engaged in the outer wall of threaded shaft one.

[0009] Through the above technical scheme: the inward one side of two support frame one is equipped with sliding slot, the outward one side of engaging plate one is equipped with fixed slot, these fixed slots can be used to install other auxiliary components or be used for fixing threaded shaft one, the outer wall of threaded shaft one is in contact with the outer wall of fixed slot, the outer wall of threaded shaft one is threadedly connected with threaded sleeve, and the addition of threaded sleeve not only increases the strength of connection, and the outer wall of fixed slot is slidably connected with engaging slot one.

[0010] As further description of the above technical scheme:

[0011] The outer wall top of connecting frame is fixedly connected with protection plate, and the outer wall of threaded shaft one is slidably connected with gasket one.

[0012] Through the technical scheme, the outer wall top of the connecting frame is fixedly connected with a protection plate, and the protection plate is mainly used for protecting the top of the connecting frame from external impact and abrasion.

[0013] Further to the technical scheme, the outer wall of the connecting frame is fixedly connected with a protection plate, and the protection plate is mainly used for protecting the top of the connecting frame from external impact and abrasion.

[0014] The outer wall of the connecting frame is fixedly connected with a protection plate, and the protection plate is mainly used for protecting the top of the connecting frame from external impact and abrasion.

[0015] Through the technical scheme, the outer wall top of the connecting frame is fixedly connected with a protection plate, and the protection plate is mainly used for protecting the top of the connecting frame from external impact and abrasion.

[0016] Further to the technical scheme, the outer wall top of the connecting frame is fixedly connected with a protection plate, and the protection plate is mainly used for protecting the top of the connecting frame from external impact and abrasion.

[0017] Through the technical scheme, the outer wall top of the connecting frame is fixedly connected with a protection plate, and the protection plate is mainly used for protecting the top of the connecting frame from external impact and abrasion.

[0018] Further to the technical scheme, the outer wall top of the connecting frame is fixedly connected with a protection plate, and the protection plate is mainly used for protecting the top of the connecting frame from external impact and abrasion.

[0019] The outer wall of the connecting frame is fixedly connected with a protection plate, and the protection plate is mainly used for protecting the top of the connecting frame from external impact and abrasion.

[0020] Through the technical scheme, the outer wall top of the connecting frame is fixedly connected with a protection plate, and the protection plate is mainly used for protecting the top of the connecting frame from external impact and abrasion.

[0021] Further to the technical scheme, the outer wall top of the connecting frame is fixedly connected with a protection plate, and the protection plate is mainly used for protecting the top of the connecting frame from external impact and abrasion.

[0022] Two outer sides of the support frame two are fixedly connected with protection plates, and the bottom of the support frame one is fixedly connected with a mounting plate.

[0023] Through the technical scheme, the outer wall top of the connecting frame is fixedly connected with a protection plate, and the protection plate is mainly used for protecting the top of the connecting frame from external impact and abrasion.

[0024] Further to the technical scheme, the outer wall top of the connecting frame is fixedly connected with a protection plate, and the protection plate is mainly used for protecting the top of the connecting frame from external impact and abrasion.

[0025] The mounting plate is provided with expansion screws at the top four corners, and the outer wall of the expansion screws is slidably connected with a plurality of gaskets two.

[0026] The mounting plate is provided with expansion screws at the top four corners, and the outer wall of the expansion screws is slidably connected with a plurality of gaskets two.

[0027] The mounting plate is provided with expansion screws at the top four corners, and the outer wall of the expansion screws is slidably connected with a plurality of gaskets two.

[0028] 1、the utility model discloses when support frame one and support frame two need to be connected, the clamping plate two of support frame two inner wall bottom will be clamped in the outer wall of clamping groove two, and the clamping shaft of outer wall left side of support frame one can be slidably installed, and the threaded shaft two of outer wall front side of clamping groove two is connected with the threaded shaft two of outer wall front side of clamping groove two, and the threaded shaft two is rotated through the adjusting plate, so that the clamping plate two fixed on the outer wall of clamping shaft is cross -fixed, so as to reach the function of assembling type quick installation and disassembly vertical beam support frame one and support frame two.

[0029] 2、the utility model discloses in order to more conveniently install crossbeam connecting frame, the fixed mechanism is installed to the inner wall of support frame one towards the inside, and the mechanism has the sliding slot of the outer wall of support frame one and is fixed with the threaded shaft one of the outer wall sliding connection, and the outside of threaded shaft one passes through the fixed groove, and the outer wall of clamping plate one will be slidably clamped to the outer wall of clamping groove one set up in the connecting frame, so that the crossbeam connecting frame is supported and is installed and disassembled function of different size. BRIEF DESCRIPTION OF DRAWINGS

[0030] Figure 1 It is the front side perspective drawing of the green energy -saving assembling type building framework support frame one that the utility model proposes;

[0031] Figure 2 It is the local structure diagram of the green energy -saving assembling type building framework support frame two that the utility model proposes;

[0032] Figure 3 It is the local structure diagram of the green energy -saving assembling type building framework clamping plate two that the utility model proposes;

[0033] Figure 4 It is the local structure display diagram of the green energy -saving assembling type building framework clamping shaft that the utility model proposes;

[0034] Figure 5 It is the local structure diagram of the green energy -saving assembling type building framework clamping plate one that the utility model proposes;

[0035] Figure 6 It is the structure diagram of the green energy -saving assembling type building framework threaded shaft one that the utility model proposes.

[0036] Legend:

[0037] 1, support frame one; 2, fixed mechanism; 201, clamping plate one; 202, clamping groove one; 203, connecting frame; 204, sliding groove; 205, threaded shaft one; 206, threaded sleeve; 207, fixed groove; 3, clamping plate two; 4, support frame two; 5, clamping groove two; 6, clamping shaft; 7, threaded shaft two; 8, baffle; 9, threaded rotating plate; 10, adjusting plate; 11, protective plate; 12, protective strip; 13, gasket one; 14, protective plate; 15, soft pad; 16, gasket two; 17, protective pad; 18, installation; 19, expansion screw. DETAILED DESCRIPTION

[0038] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0039] Please refer to the drawings Figure 2 - the drawings Figure 4 An embodiment provided by the present application: a green energy-saving fabricated building framework, comprising a support frame one 1, two support frame one 1s are provided with clamping groove two 5 on the top of the outer wall, the outer wall of the clamping groove two 5 is slidably connected with clamping plate two 3, the top of the clamping plate two 3 is fixedly connected with support frame two 4, the outer wall of the clamping plate two 3 is threadedly connected with threaded shaft two 7 on one side of the outer wall, the other end of the threaded shaft two 7 is threadedly connected with clamping shaft 6, the rear side of the clamping shaft 6 penetrates the middle part of the clamping plate two 3 and is threadedly connected with threaded rotating plate 9, and the outer wall of the clamping groove two 5 is designed with a sliding connection structure, so that the clamping plate two 3 can smoothly slide thereon. The top of the clamping plate two 3 is connected with the support frame two 4 in a fixed connection manner, so as to ensure the stability of the whole structure, the outer wall front side of the clamping shaft 6 is fixedly connected with baffle 8, the inward side of the two support frame one 1s is provided with fixed mechanism 2, and the fixed mechanism 2 is used for fixing;

[0040] Specifically, the top of the outer wall of the two support frames 1 is carefully designed with engaging grooves 25. Engaging plates 23 are slidably connected to the outer wall of these engaging grooves 25, allowing the engaging plates 23 to move flexibly on the support frame 1. The top of the engaging plates 23 is fixedly connected to the support frame 24. One side of the outer wall of the engaging plates 23 is also designed with a threaded connection, through which a threaded shaft 27 is threadedly connected. The other end of the threaded shaft 27 is threadedly connected to the engaging shaft 6. This design allows the engaging shaft 6 to be firmly fixed on the engaging plates 23. The rear side of the engaging shaft 6 passes through the middle of the engaging plates 23 and is threadedly connected to a threaded rotating plate 9. This threaded connection method not only ensures the stability of the engaging shaft 6, but also has a baffle 8 fixedly connected to the front side of the outer wall of the engaging shaft 6.

[0041] Please see the appendix Figure 5 - Appendix Figure 6 The fixing mechanism 2 includes a threaded shaft 205, the outer wall of which is slidably connected to the inner wall of the support frame 1. Each of the two support frames 1 has an inwardly facing sliding groove 204. Each of the two support frames 1 has a locking plate 201 at its bottom, and a fixing groove 207 on its outward facing side. The outer wall of the threaded shaft 205 contacts the outer wall of the fixing groove 207. A threaded sleeve 206 is threadedly connected to the outer wall of the threaded shaft 205, and a locking groove 207 is slidably connected to the outer wall of the fixing groove 207. 2. The outer side of the locking plate 201 is provided with fixing grooves 207. These fixing grooves 207 are designed to ensure a stable connection between the locking plate 201 and the threaded shaft 205. The outer wall of the threaded shaft 205 is in close contact with the outer wall of the fixing groove 207, thereby ensuring the fixation and stability between the two. The outer wall of the locking plate 201 is slidably connected to the connecting frame 203. The inner wall of the connecting frame 203 is provided with the threaded shaft 205. The outer wall of the locking groove 202 is slidably engaged with the outer wall of the threaded shaft 205.

[0042] Specifically, both support frames 1 have inward sliding grooves 204 on their inner sides. These sliding grooves 204 are designed to facilitate the installation and adjustment of other components. Both support frames 1 have locking plates 201 at their bottoms. The locking plates 201 have fixing grooves 207 on their outward sides. These fixing grooves 207 can be used to install other auxiliary components or to fix threaded shafts 205. The outer wall of the threaded shaft 205 contacts the outer wall of the fixing grooves 207. This design ensures the stability of the threaded shaft 205 during use. The outer wall of the threaded shaft 205 is threadedly connected with a threaded sleeve 206. The addition of the threaded sleeve 206 not only increases the strength of the connection, but also has a locking groove 202 slidably connected to the outer wall of the fixing grooves 207.

[0043] Please see the appendix Figure 1 - Appendix Figure 3The outer wall top of the connecting frame 203 is fixedly connected with a protective plate 11, the outer wall of the threaded shaft one 205 is slidably connected with a gasket one 13, the outer wall of the connecting frame 203 is fixedly connected with protective strips 12 on the front and rear sides, the outer wall of the threaded rotating plate 9 is fixedly connected with an adjusting plate 10, the outer wall of the supporting frame one 1 is fixedly connected with protective pads 17 on the upper and lower ends, the outer wall of the supporting frame one 1 is fixedly connected with a protective pad 17 on the upper and lower ends, and the protective pads 17 are designed to protect the outer wall of the supporting frame one 1 during use and reduce noise during the carrying or moving of the supporting frame one 1; the protective pads 17 on the outer wall of the supporting frame one 1 are symmetrically designed on the upper and lower ends;

[0044] Specifically, the outer wall top of the connecting frame 203 is fixedly connected with a protective plate 11, the outer wall of the threaded shaft one 205 is slidably connected with a gasket one 13, the gasket one 13 is used to reduce friction during the movement of the threaded shaft one 205, the outer wall of the connecting frame 203 is fixedly connected with protective strips 12 on the front and rear sides, the protective strips 12 are designed to further protect the connecting frame 203 from damage during use, and in addition, the outer wall of the threaded rotating plate 9 is fixedly connected with an adjusting plate 10, and the adjusting plate 10 is mainly used to facilitate the user to adjust the position of the threaded rotating plate 9 according to the actual needs, so as to achieve better use effect.

[0045] Please refer to the attached Figure 2 - attached Figure 4 The outer wall of the supporting frame two 4 is fixedly connected with soft pads 15 on the front and rear sides, the soft pads 15 are symmetrically designed on the front and rear sides of the outer wall of the supporting frame two 4, the outward sides of the two supporting frames two 4 are fixedly connected with protective plates 14, the bottoms of the two supporting frames one 1 are fixedly connected with mounting plates 18, the top four corners of the mounting plates 18 are threadedly connected with expansion screws 19, the outer walls of the plurality of expansion screws 19 are slidably connected with gaskets two 16, and the outer walls of the plurality of expansion screws 19 are slidably connected with gaskets two 16; these gaskets two 16 can effectively prevent the expansion screws 19 from loosening during use, thereby ensuring the stability and safety of the entire supporting frame system;

[0046] Specifically, the outer wall of the supporting frame two 4 is fixedly connected with soft pads 15 on the front and rear sides, the soft pads 15 are symmetrically designed on the front and rear sides of the outer wall of the supporting frame two 4, the outward sides of the two supporting frames two 4 are fixedly connected with protective plates 14, the bottoms of the two supporting frames one 1 are fixedly connected with mounting plates 18, the top four corners of the mounting plates 18 are threadedly connected with expansion screws 19.

[0047] Working principle: when the support frame 1 and the support frame 4 need to be connected, the clamping plate 3 in the inner wall of the support frame 4 is clamped in the outer wall of the clamping groove 5, and the clamping shaft 6 is slidably installed on the left side of the outer wall of the support frame 1, so as to fix the clamping plate 3, and the threaded shaft 7 threaded on the front side of the outer wall of the clamping groove 5 is rotated through the adjusting plate 10, so that the threaded shaft 7 is rotated along the threaded groove in the clamping shaft 6, so as to cross-fix the clamping plate 3 fixed on the outer wall of the clamping shaft 6, so as to achieve the function of assembling and disassembling the vertical beam support frame 1 and the support frame 4 quickly.

[0048] In order to more conveniently install the cross beam connecting frame 203, the fixing mechanism 2 is installed on the inner wall of the support frame 1, the mechanism has the sliding groove 204 in the outer wall of the support frame 1, the threaded shaft 205 slidably connected to the outer wall of the sliding groove 204, the threaded sleeve 206 threaded on the outer side of the threaded shaft 205, the sliding groove 204 is fixed through the threaded sleeve 206, and the two threaded shafts 205 slidably arranged on the outer wall of the sliding groove 204 can be slid to different positions, so as to adapt to different sizes of the connecting frame 203, and the outer wall of the clamping plate 1 201 is slidably clamped to the outer wall of the clamping groove 1 202 in the connecting frame 203, so as to support the cross beam connecting frame 203.

[0049] Finally, it should be pointed out that: the above-mentioned is only the preferred embodiment of the present application, and is not used to limit the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced, any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application, should be included in the protection scope of the present application.

Claims

1. A green energy-saving fabricated building framework, comprising a support frame one (1), characterized in that: The outer wall top of two supporting frames (1) is provided with clamping grooves (5), the outer wall of the clamping grooves (5) is slidably connected with clamping plates (3), the top of the clamping plates (3) is fixedly connected with supporting frames (4), the outer wall of the clamping plates (3) is screwedly connected with threaded shafts (7) on one side, the other end of the threaded shafts (7) is screwedly connected with clamping shafts (6), the outer wall of the clamping shafts (6) is fixedly connected with baffle plates (8) on the front side, and the inward sides of the two supporting frames (1) are provided with fixing mechanisms (2). ​ 2. The green energy-saving fabricated building framework according to claim 1, characterized in that: The fixing mechanism (2) comprises a threaded shaft (205), the outer wall of the threaded shaft (205) is slidably connected with the inner wall of the supporting frame (1), the inward sides of the two supporting frames (1) are both provided with sliding grooves (204), the bottoms of the two supporting frames (1) are both provided with clamping plates (201), the outward sides of the clamping plates (201) are both provided with fixing grooves (207), the outer wall of the threaded shaft (205) is in contact with the outer wall of the fixing groove (207), the outer wall of the threaded shaft (205) is screwedly connected with a threaded sleeve (206), the outer wall of the fixing groove (207) is slidably connected with a clamping groove (202), the outer wall of the clamping plate (201) is slidably connected with a connecting frame (203), the inner wall of the connecting frame (203) is provided with the threaded shaft (205), and the outer wall of the clamping groove (202) is slidably clamped on the outer wall of the threaded shaft (205).

3. The green energy-saving fabricated building framework according to claim 2, characterized in that: The outer wall top of the connecting frame (203) is fixedly connected with a protective plate (11), and the outer wall of the threaded shaft (205) is slidably connected with a gasket (13).

4. The green energy-saving fabricated building framework according to claim 2, characterized in that: The outer wall front and back sides of the connecting frame (203) are both fixedly connected with protective strips (12), and the outer wall of the threaded rotating plate (9) is fixedly connected with an adjusting plate (10).

5. The green energy-saving fabricated building framework according to claim 1, characterized in that: The outer wall upper and lower ends of the supporting frame (1) are both fixedly connected with protective pads (17), and the protective pads (17) are symmetrically designed on the outer wall upper and lower ends of the supporting frame (1).

6. The green energy-saving fabricated building framework according to claim 1, characterized in that: The outer wall front and back sides of the supporting frame (4) are both fixedly connected with soft pads (15), and the soft pads (15) are symmetrically designed on the outer wall front and back sides of the supporting frame (4).

7. The green energy-saving fabricated building framework according to claim 1, characterized in that: The outward sides of the two supporting frames (4) are both fixedly connected with protective plates (14), and the bottoms of the two supporting frames (1) are both fixedly connected with mounting plates (18).

8. The green energy-saving fabricated building framework according to claim 7, characterized in that: The top of the mounting plate (18) is screwedly connected with expansion screws (19) at four corner positions, and the outer walls of the expansion screws (19) are all slidably connected with gaskets (16).