A tool-type construction elevator wall support frame
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-26
- Publication Date
- 2026-08-11
AI Technical Summary
[0004]传统施工电梯辅助架,多采用焊接固定或定制化钢构件,其长度、角度不可调节,无法适应不同建筑层高的需求
[0034]1、本实用新型的工具式施工电梯扶墙辅助架使用时,在建筑主体结构上确定四根主梁即前左主梁、前右主梁、后左主梁和后右主梁位置,在确定四根主梁位置的过程中,同时调整左纵向次梁、右纵向次梁、左倾斜次梁、右倾斜次梁和横向次梁的长度,以及调整左纵向次梁的前端和后端分别相对于前左主梁和后左主梁绕左右方向的转动角度、右纵向次梁的前端和后端分别相对于前右主梁和后右主梁绕左右方向的转动角度、左倾斜次梁的前端和后端分别相对于前左主梁和后左主梁绕左右方向的转动角度、右倾斜次梁的前端和后端分别相对于前右主梁和后右主梁绕左右方向的转动角度、以及横向次梁的左端和右端分别相对于后左主梁和后右主梁绕前后方向的转动角度,在建筑主体结构相应位置打孔,通过左前紧固件、右前紧固件、左后紧固件和右后紧固件分别竖向穿设前左锚板、前右锚板、后左锚板和后右锚板并均竖向可拆卸插接在建筑主体结构中,因此,其能够实现横向、纵向及斜向三维调节,适应不同层高、不停跨距的施工需求,可周转重复使用,符合绿色施工理念,适于大规模推广应用。
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Figure CN224619402U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of auxiliary equipment technology for building construction, and particularly to the field of auxiliary support frame for construction elevators, specifically a tool-type auxiliary support frame for construction elevators. Background Technology
[0002] Building construction refers to the production activities during the implementation phase of an engineering project. It is the process of building various types of structures, or the process of turning the lines on design drawings into a physical object at a designated location. It includes foundation construction, main structure construction, roofing construction, and decoration construction.
[0003] In the construction of high-rise buildings, the stability and safety of construction elevators are of paramount importance. Construction elevators are usually connected to the main building structure through a support frame to resist wind loads and the off-center load moment of the vibrating machine, ensuring the stable operation of the elevator cage.
[0004] Traditional construction elevator auxiliary frames mostly use welded or customized steel components, whose length and angle are not adjustable, making them unable to adapt to the needs of different building heights. Moreover, due to their fixed structure, traditional frames are difficult to reuse in different projects or sections, often becoming disposable items, which does not conform to the concept of green construction.
[0005] Therefore, it is desirable to provide a construction elevator support frame that can achieve three-dimensional adjustment in the horizontal, vertical and diagonal directions to adapt to the construction needs of different floor heights and continuous spans, and can be reused repeatedly, which is in line with the concept of green construction. Utility Model Content
[0006] In order to overcome the shortcomings of the prior art, one objective of this utility model is to provide a tool-type construction elevator wall support frame that can achieve three-dimensional adjustment in the horizontal, vertical and diagonal directions, adapt to the construction needs of different floor heights and continuous spans, can be reused, conforms to the concept of green construction, and is suitable for large-scale promotion and application.
[0007] Another objective of this utility model is to provide a tool-type construction elevator wall support frame, which is ingeniously designed, simple in structure, easy to manufacture, and has low manufacturing cost, making it suitable for large-scale promotion and application.
[0008] To achieve the above objectives, this utility model provides a tool-type construction elevator wall support auxiliary frame, characterized by comprising a front left main beam, a front right main beam, a rear left main beam, a rear right main beam, a front left anchor plate, a front right anchor plate, a rear left anchor plate, a rear right anchor plate, a left longitudinal secondary beam, a right longitudinal secondary beam, a left inclined secondary beam, a right inclined secondary beam, a transverse secondary beam, a left front fastener, a right front fastener, a left rear fastener, and a right rear fastener, wherein:
[0009] The front left main beam and the front right main beam are both vertically arranged and spaced apart from each other on the left and right. The rear left main beam and the rear right main beam are both vertically arranged and spaced apart from each other on the left and right. The front left main beam and the rear left main beam, as well as the front right main beam and the rear right main beam, are spaced apart from each other on the front and back. The front left anchor plate, the front right anchor plate, the rear left anchor plate, and the rear right anchor plate are all horizontally arranged. The front left main beam, the front right main beam, the rear left main beam, and the rear right main beam are respectively mounted on the front left anchor plate, the front right anchor plate, the rear left anchor plate, and the rear right anchor plate.
[0010] The left longitudinal secondary beam and the right longitudinal secondary beam are spaced apart from each other and located between the front left main beam and the rear left main beam, and between the front right main beam and the rear right main beam, respectively. The front end and the rear end of the left longitudinal secondary beam are respectively connected to the front left main beam and the rear left main beam, and their rotation angles relative to the front left main beam and the rear left main beam are adjustable in the left and right directions. The front end and the rear end of the right longitudinal secondary beam are respectively connected to the front right main beam and the rear right main beam, and their rotation angles relative to the front right main beam and the rear right main beam are adjustable in the left and right directions. Both the left longitudinal secondary beam and the right longitudinal secondary beam are longitudinal telescopic rods.
[0011] Both the left and right inclined secondary beams are inclined upwards and backwards in a front-to-back direction and are spaced apart from each other on the left and right. The left inclined secondary beam is located between the front left main beam and the rear left main beam and above the left longitudinal secondary beam. The right inclined secondary beam is located between the front right main beam and the rear right main beam and above the right longitudinal secondary beam. The front and rear ends of the left inclined secondary beam are respectively connected to the front left main beam and the rear left main beam and are respectively adjustable in rotation angle relative to the front left main beam and the rear left main beam in the left and right direction. The front and rear ends of the right inclined secondary beam are respectively connected to the front right main beam and the rear right main beam and are respectively adjustable in rotation angle relative to the front right main beam and the rear right main beam in the left and right direction. Both the left and right inclined secondary beams are inclined telescopic rods.
[0012] The transverse secondary beam is located between the rear left main beam and the rear right main beam. The left and right ends of the transverse secondary beam are respectively connected to the rear left main beam and the rear right main beam, and the rotation angle relative to the rear left main beam and the rear right main beam is adjustable in the front-rear direction. The transverse secondary beam is a transverse telescopic rod.
[0013] The left front fastener, the right front fastener, the left rear fastener, and the right rear fastener are all vertically arranged and respectively vertically pass through the front left anchor plate, the front right anchor plate, the rear left anchor plate, and the rear right anchor plate, and are all used for vertical detachable insertion into the main structure of the building.
[0014] Preferably, the longitudinal telescopic rod includes a front longitudinal rod, a rear longitudinal rod, a first fixing bolt, and a first fixing nut. The front end of the rear longitudinal rod is movably inserted into the rear end of the front longitudinal rod. The front end of the rear longitudinal rod has a first through hole along the left-right direction. There are multiple first through holes, spaced apart from each other. The rear end of the front longitudinal rod has a first through hole along the left-right direction. The first fixing bolt is positioned along the left-right direction and passes through the first through hole, one of the first through holes, and the first... A fixing nut is fixed and threadedly engaged with the first fixing nut. The front end of the front longitudinal member of the left longitudinal secondary beam and the rear end of the rear longitudinal member of the left longitudinal secondary beam are respectively connected to the front left main beam and the rear left main beam, and their rotation angles relative to the front left main beam and the rear left main beam are respectively adjustable in the left and right direction. The front end of the front longitudinal member of the right longitudinal secondary beam and the rear end of the rear longitudinal member of the right longitudinal secondary beam are respectively connected to the front right main beam and the rear right main beam, and their rotation angles relative to the front right main beam and the rear right main beam are respectively adjustable in the left and right direction.
[0015] Preferably, the tool-type construction elevator wall-holding auxiliary frame further includes a first left front fixing plate, a second left front fixing plate, a first left front fixing bolt, a first left front fixing nut, a first left rear fixing plate, a second left rear fixing plate, a first left rear fixing bolt, a first left rear fixing nut, a first right front fixing plate, a second right front fixing plate, a first right front fixing bolt, a first right front fixing nut, a first right rear fixing plate, a second right rear fixing plate, a first right rear fixing bolt, and a first right rear fixing nut, wherein:
[0016] Both the first left front fixing plate and the second left front fixing plate are vertically arranged and are arranged along the front-rear direction and are spaced apart from each other on the left and right. Both the first left front fixing plate and the second left front fixing plate are located behind the front left main beam and are connected to the front left main beam. The front end of the left longitudinal secondary beam is located between the first left front fixing plate and the second left front fixing plate. The first left front fixing bolt is arranged along the left and right direction and passes through the second left front fixing plate, the front end of the left longitudinal secondary beam, the first left front fixing plate and the first left front fixing nut along the left and right direction, and is threadedly engaged with the first left front fixing nut.
[0017] Both the first left rear fixing plate and the second left rear fixing plate are vertically arranged and are arranged along the front-back direction and are spaced apart from each other on the left and right sides. Both the first left rear fixing plate and the second left rear fixing plate are located in front of the rear left main beam and are connected to the rear left main beam. The rear end of the left longitudinal secondary beam is located between the first left rear fixing plate and the second left rear fixing plate. The first left rear fixing bolt is arranged along the left-right direction and passes through the second left rear fixing plate, the rear end of the left longitudinal secondary beam, the first left rear fixing plate, and the first left rear fixing nut along the left-right direction, and is threadedly engaged with the first left rear fixing nut.
[0018] Both the first right front fixing plate and the second right front fixing plate are vertically arranged and are arranged along the front-back direction and are spaced apart from each other on the left and right. Both the first right front fixing plate and the second right front fixing plate are located after the front right main beam and are connected to the front right main beam. The front end of the right longitudinal secondary beam is located between the first right front fixing plate and the second right front fixing plate. The first right front fixing bolt is arranged along the left and right direction and passes through the second right front fixing plate, the front end of the right longitudinal secondary beam, the first right front fixing plate and the first right front fixing nut along the left and right direction, and is threadedly engaged with the first right front fixing nut.
[0019] Both the first right rear fixing plate and the second right rear fixing plate are vertically arranged and are arranged along the front-back direction, and are spaced apart from each other on the left and right. Both the first right rear fixing plate and the second right rear fixing plate are located in front of the rear right main beam and are connected to the rear right main beam. The rear end of the right longitudinal secondary beam is located between the first right rear fixing plate and the second right rear fixing plate. The first right rear fixing bolt is arranged along the left-right direction and passes through the second right rear fixing plate, the rear end of the right longitudinal secondary beam, the first right rear fixing plate, and the first right rear fixing nut along the left-right direction, and is threadedly engaged with the first right rear fixing nut.
[0020] Preferably, the tilting telescopic rod includes a front tilting rod, a rear tilting rod, a second fixing bolt, and a second fixing nut. Both the front and rear tilting rods are arranged along the tilting direction of the left tilting secondary beam. The front end of the rear tilting rod is movably inserted into the rear end of the front tilting rod along the tilting direction of the left tilting secondary beam. The front end of the rear tilting rod has a second through hole along the left-right direction. Multiple second through holes are spaced apart along the tilting direction of the left tilting secondary beam. The rear end of the front tilting rod has a second through hole along the left-right direction. The second fixing bolt is arranged along the left-right direction and along the... The second through hole, one of the second through holes, and the second fixing nut are threaded through in the left and right directions and are threaded into the second fixing nut. The front end of the front tilting rod of the left tilting secondary beam and the rear end of the rear tilting rod of the left tilting secondary beam are respectively connected to the front left main beam and the rear left main beam, and their rotation angles relative to the front left main beam and the rear left main beam are respectively adjustable in the left and right directions. The front end of the front tilting rod of the right tilting secondary beam and the rear end of the rear tilting rod of the right tilting secondary beam are respectively connected to the front right main beam and the rear right main beam, and their rotation angles relative to the front right main beam and the rear right main beam are respectively adjustable in the left and right directions.
[0021] Preferably, the tool-type construction elevator wall-holding auxiliary frame further includes a first left front connecting plate, a second left front connecting plate, a first left front connecting bolt, a first left front connecting nut, a first left rear connecting plate, a second left rear connecting plate, a first left rear connecting bolt, a first left rear connecting nut, a first right front connecting plate, a second right front connecting plate, a first right front connecting bolt, a first right front connecting nut, a first right rear connecting plate, a second right rear connecting plate, a first right rear connecting bolt, and a first right rear connecting nut, wherein:
[0022] Both the first left front connecting plate and the second left front connecting plate are vertically arranged and are both arranged along the inclination direction of the left inclined secondary beam and are spaced apart from each other. Both the first left front connecting plate and the second left front connecting plate are located after the front left main beam and are both connected to the front left main beam. The front end of the left inclined secondary beam is located between the first left front connecting plate and the second left front connecting plate. The first left front connecting bolt is arranged along the left and right direction and passes through the second left front connecting plate, the front end of the left inclined secondary beam, the first left front connecting plate and the first left front connecting nut along the left and right direction, and is threadedly engaged with the first left front connecting nut.
[0023] Both the first left rear connecting plate and the second left rear connecting plate are vertically arranged and are both arranged along the inclination direction of the left inclined secondary beam and are spaced apart from each other. Both the first left rear connecting plate and the second left rear connecting plate are located in front of the rear left main beam and are both connected to the rear left main beam. The rear end of the left inclined secondary beam is located between the first left rear connecting plate and the second left rear connecting plate. The first left rear connecting bolt is arranged along the left and right direction and passes through the second left rear connecting plate, the rear end of the left inclined secondary beam, the first left rear connecting plate and the first left rear connecting nut along the left and right direction, and is threadedly engaged with the first left rear connecting nut.
[0024] Both the first right front connecting plate and the second right front connecting plate are vertically arranged and are both arranged along the inclination direction of the left inclined secondary beam and are spaced apart from each other. Both the first right front connecting plate and the second right front connecting plate are located after the front right main beam and are both connected to the front right main beam. The front end of the right inclined secondary beam is located between the first right front connecting plate and the second right front connecting plate. The first right front connecting bolt is arranged along the left and right direction and passes through the second right front connecting plate, the front end of the right inclined secondary beam, the first right front connecting plate and the first right front connecting nut along the left and right direction, and is threadedly engaged with the first right front connecting nut.
[0025] Both the first right rear connecting plate and the second right rear connecting plate are vertically arranged and are both arranged along the inclination direction of the left inclined secondary beam, and are spaced apart from each other on the left and right. Both the first right rear connecting plate and the second right rear connecting plate are located in front of the rear right main beam and are both connected to the rear right main beam. The rear end of the right inclined secondary beam is located between the first right rear connecting plate and the second right rear connecting plate. The first right rear connecting bolt is arranged along the left and right direction and passes through the second right rear connecting plate, the rear end of the right inclined secondary beam, the first right rear connecting plate and the first right rear connecting nut along the left and right direction, and is threadedly engaged with the first right rear connecting nut.
[0026] Preferably, the transverse telescopic rod includes a left crossbar, a right crossbar, a third fixing bolt, and a third fixing nut. The right end of the left crossbar is movably inserted into the left end of the right crossbar. The right end of the left crossbar has a third through hole along the front-back direction. There are multiple third through holes, which are spaced apart from each other. The left end of the right crossbar has a third through hole along the front-back direction. The third fixing bolt is arranged along the front-back direction and passes through the third through hole, one of the third through holes, and the third fixing nut, and is threadedly engaged with the third fixing nut. The left end of the left crossbar and the right end of the right crossbar are respectively connected to the rear left main beam and the rear right main beam, and their rotation angles relative to the rear left main beam and the rear right main beam are adjustable around the front-back direction.
[0027] Preferably, the tool-type construction elevator wall-mounted auxiliary frame further includes a first left fixing plate, a second left fixing plate, a first left fixing bolt, a first left fixing nut, a first right fixing plate, a second right fixing plate, a first right fixing bolt, and a first right fixing nut, wherein:
[0028] Both the first left fixing plate and the second left fixing plate are vertically arranged and are arranged along the left-right direction and are spaced apart from each other. Both the first left fixing plate and the second left fixing plate are located on the right side of the rear left main beam and are connected to the rear left main beam. The left end of the transverse secondary beam is located between the first left fixing plate and the second left fixing plate. The first left fixing bolt is arranged along the front-back direction and passes through the first left fixing plate, the left end of the transverse secondary beam, the second left fixing plate and the first left fixing nut along the front-back direction, and is threadedly engaged with the first left fixing nut.
[0029] Both the first right fixing plate and the second right fixing plate are vertically arranged and along the left-right direction, and are spaced apart from each other. Both the first right fixing plate and the second right fixing plate are located on the left side of the rear right main beam and are connected to the rear right main beam. The right end of the transverse secondary beam is located between the first right fixing plate and the second right fixing plate. The first right fixing bolt is arranged along the front-back direction and passes through the first right fixing plate, the right end of the transverse secondary beam, the second right fixing plate and the first right fixing nut along the front-back direction, and is threadedly engaged with the first right fixing nut.
[0030] Preferably, there are multiple transverse secondary beams, which are arranged vertically at intervals.
[0031] More preferably, the number of transverse secondary beams is two.
[0032] Preferably, the left front fastener, the right front fastener, the left rear fastener, and the right rear fastener are all selected from chemical anchors and through-wall bolts.
[0033] The main beneficial effects of this utility model are as follows:
[0034] 1. When using the tool-type construction elevator wall support auxiliary frame of this utility model, the positions of four main beams—the front left main beam, the front right main beam, the rear left main beam, and the rear right main beam—are determined on the main building structure. During the determination of the four main beam positions, the lengths of the left longitudinal secondary beam, the right longitudinal secondary beam, the left inclined secondary beam, the right inclined secondary beam, and the transverse secondary beam are simultaneously adjusted. Additionally, the rotation angles of the front and rear ends of the left longitudinal secondary beam relative to the front left and rear left main beams, the right longitudinal secondary beam relative to the front right and rear right main beams, and the left inclined secondary beam relative to the front left and rear left main beams are adjusted. The rotation angles of the front and rear ends of the right-inclined secondary beams relative to the front right main beam and the rear right main beam in the left-right direction, and the rotation angles of the left and right ends of the transverse secondary beams relative to the rear left main beam and the rear right main beam in the front-back direction, are determined by drilling holes at corresponding positions in the main building structure. Front left anchor plates, front right anchor plates, rear left anchor plates, and rear right anchor plates are vertically inserted into the main building structure via left front fasteners, right front fasteners, left rear fasteners, and right rear fasteners, respectively. All are vertically detachable and plugged into the main building structure. Therefore, it can achieve three-dimensional adjustment in the horizontal, vertical, and diagonal directions, adapting to construction needs with different floor heights and continuous spans. It can be reused repeatedly, conforms to the concept of green construction, and is suitable for large-scale promotion and application.
[0035] 2. When using the tool-type construction elevator wall support auxiliary frame of this utility model, the positions of four main beams—the front left main beam, the front right main beam, the rear left main beam, and the rear right main beam—are determined on the main building structure. During the determination of the four main beam positions, the lengths of the left longitudinal secondary beam, the right longitudinal secondary beam, the left inclined secondary beam, the right inclined secondary beam, and the transverse secondary beam are simultaneously adjusted. Additionally, the rotation angles of the front and rear ends of the left longitudinal secondary beam relative to the front left and rear left main beams, the rotation angles of the front and rear ends of the right longitudinal secondary beam relative to the front right and rear right main beams, and the rotation angles of the front and rear ends of the left inclined secondary beam relative to the front left and rear right main beams are adjusted. The rotation angles of the main beam and the rear left main beam in the left and right directions, the rotation angles of the front and rear ends of the right inclined secondary beam relative to the front right main beam and the rear right main beam in the left and right directions, and the rotation angles of the left and right ends of the transverse secondary beam relative to the rear left main beam and the rear right main beam in the front and rear directions, are determined by drilling holes at corresponding positions in the main building structure. The front left anchor plate, front right anchor plate, rear left anchor plate, and rear right anchor plate are vertically inserted through the left front fastener, right front fastener, left rear fastener, and right rear fastener, respectively, and are all vertically detachable and plugged into the main building structure. Therefore, its design is ingenious, its structure is simple, its manufacturing is convenient, its manufacturing cost is low, and it is suitable for large-scale promotion and application.
[0036] These and other objects, features and advantages of this utility model will be fully apparent from the following detailed description and drawings, and can be achieved by the means, devices and combinations thereof specifically pointed out in the description of the utility model. Attached Figure Description
[0037] Figure 1 This is a three-dimensional schematic diagram of a specific embodiment of the tool-type construction elevator wall support auxiliary frame of this utility model in use.
[0038] Figure 2 yes Figure 1 A right-side view of the structure shown.
[0039] Figure 3 yes Figure 1 A rear view of the structure shown.
[0040] (Symbol Explanation)
[0041] 1. Front left main beam; 2. Front right main beam; 3. Rear left main beam; 4. Rear right main beam; 5. Front left anchor plate; 6. Front right anchor plate; 7. Rear left anchor plate; 8. Rear right anchor plate; 9. Left longitudinal secondary beam; 10. Right longitudinal secondary beam; 11. Left inclined secondary beam; 12. Right inclined secondary beam; 13. Transverse secondary beam; 14. Left front fastener; 15. Right front fastener; 16. Left rear fastener; 17. Right rear fastener; 18. Front longitudinal member; 19. Rear longitudinal member; 20. First fixing bolt; 21. First left front fixing bolt; 22. First left rear fixing bolt; 23. First right front fixing bolt; 24. First right rear fixing bolt. 25. Fixed bolt; 26. Front tilting rod; 27. Rear tilting rod; 28. Second fixed bolt; 29. First left front connecting bolt; 30. First left rear connecting bolt; 31. First right front connecting bolt; 32. Left crossbar; 33. Right crossbar; 34. Third fixed bolt; 35. First left fixed bolt; 36. First right fixed bolt; 37. Second right front fixed plate; 38. Second right rear fixed plate; 39. Second right front connecting plate; 40. Second right rear connecting plate; 41. Second left fixed plate; 42. Second right fixed plate; 43. Main building structure. Detailed Implementation
[0042] To better understand the technical content of this utility model, the following embodiments are provided for detailed description. In the description of this utility model, it should be understood that the terms "upper," "lower," "front," "rear," "left," "right," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0043] Please see Figures 1-3As shown, in a specific embodiment of this utility model, the tool-type construction elevator wall support frame of this utility model includes a front left main beam 1, a front right main beam 2, a rear left main beam 3, a rear right main beam 4, a front left anchor plate 5, a front right anchor plate 6, a rear left anchor plate 7, a rear right anchor plate 8, a left longitudinal secondary beam 9, a right longitudinal secondary beam 10, a left inclined secondary beam 11, a right inclined secondary beam 12, a transverse secondary beam 13, a left front fastener 14, a right front fastener 15, a left rear fastener 16, and a right rear fastener 17, wherein:
[0044] The front left main beam 1 and the front right main beam 2 are both vertically arranged and spaced apart from each other on the left and right. The rear left main beam 3 and the rear right main beam 4 are both vertically arranged and spaced apart from each other on the left and right. The front left main beam 1 and the rear left main beam 3, as well as the front right main beam 2 and the rear right main beam 4, are spaced apart from each other in front and behind. The front left anchor plate 5, the front right anchor plate 6, the rear left anchor plate 7 and the rear right anchor plate 8 are all horizontally arranged. The front left main beam 1, the front right main beam 2, the rear left main beam 3 and the rear right main beam 4 are respectively arranged (e.g., welded) on the front left anchor plate 5, the front right anchor plate 6, the rear left anchor plate 7 and the rear right anchor plate 8.
[0045] The left longitudinal secondary beam 9 and the right longitudinal secondary beam 10 are spaced apart from each other and located between the front left main beam 1 and the rear left main beam 3, and between the front right main beam 2 and the rear right main beam 4, respectively. The front end and the rear end of the left longitudinal secondary beam 9 are respectively connected to the front left main beam 1 and the rear left main beam 3, and their rotation angles relative to the front left main beam 1 and the rear left main beam 3 are adjustable in the left and right directions. The front end and the rear end of the right longitudinal secondary beam 10 are respectively connected to the front right main beam 2 and the rear right main beam 4, and their rotation angles relative to the front right main beam 2 and the rear right main beam 4 are adjustable in the left and right directions. Both the left longitudinal secondary beam 9 and the right longitudinal secondary beam 10 are longitudinal telescopic rods.
[0046] The left inclined secondary beam 11 and the right inclined secondary beam 12 are both inclined upwards and backwards in a front-to-back direction and are spaced apart from each other on the left and right. The left inclined secondary beam 11 is located between the front left main beam 1 and the rear left main beam 3 and above the left longitudinal secondary beam 9. The right inclined secondary beam 12 is located between the front right main beam 2 and the rear right main beam 4 and above the right longitudinal secondary beam 10. The front end and the rear end of the left inclined secondary beam 11 are respectively connected to the front left main beam 1 and the rear left main beam 3 and are respectively adjustable in rotation angle relative to the front left main beam 1 and the rear left main beam 3 in the left and right direction. The front end and the rear end of the right inclined secondary beam 12 are respectively connected to the front right main beam 2 and the rear right main beam 4 and are respectively adjustable in rotation angle relative to the front right main beam 2 and the rear right main beam 4 in the left and right direction. Both the left inclined secondary beam 11 and the right inclined secondary beam 12 are inclined telescopic rods.
[0047] The transverse secondary beam 13 is located between the rear left main beam 3 and the rear right main beam 4. The left and right ends of the transverse secondary beam 13 are respectively connected to the rear left main beam 3 and the rear right main beam 4, and the rotation angle relative to the rear left main beam 3 and the rear right main beam 4 is adjustable in the front-back direction. The transverse secondary beam 13 is a transverse telescopic rod.
[0048] The left front fastener 14, the right front fastener 15, the left rear fastener 16 and the right rear fastener 17 are all vertically arranged and respectively vertically pass through the front left anchor plate 5, the front right anchor plate 6, the rear left anchor plate 7 and the rear right anchor plate 8, and are all used for vertical detachable insertion into the main building structure 43.
[0049] The longitudinal telescopic rod can have any suitable configuration; please refer to [link / reference]. Figures 1-2 As shown, in a specific embodiment of this utility model, the longitudinal telescopic rod includes a front longitudinal rod 18, a rear longitudinal rod 19, a first fixing bolt 20, and a first fixing nut. The front end of the rear longitudinal rod 19 is movably inserted into the rear end of the front longitudinal rod 18. The front end of the rear longitudinal rod 19 is provided with a first through hole along the left-right direction. There are multiple first through holes, which are spaced apart from each other. The rear end of the front longitudinal rod 18 is provided with a first through hole along the left-right direction. The first fixing bolt 20 is provided along the left-right direction and passes through the first through hole, one of the first through holes, and... The first fixing nut is threadedly engaged with the first fixing nut. The front end of the front longitudinal rod 18 of the left longitudinal secondary beam 9 and the rear end of the rear longitudinal rod 19 of the left longitudinal secondary beam 9 are respectively connected to the front left main beam 1 and the rear left main beam 3, and their rotation angles relative to the front left main beam 1 and the rear left main beam 3 are respectively adjustable in the left and right directions. The front end of the front longitudinal rod 18 of the right longitudinal secondary beam 10 and the rear end of the rear longitudinal rod 19 of the right longitudinal secondary beam 10 are respectively connected to the front right main beam 2 and the rear right main beam 4, and their rotation angles relative to the front right main beam 2 and the rear right main beam 4 are respectively adjustable in the left and right directions.
[0050] With the above setup, when it is necessary to adjust the length of the left longitudinal secondary beam 9 and the right longitudinal secondary beam 10, unscrew the first fixing nut, pull out the first fixing bolt 20 in the left-right direction, and then move the rear longitudinal rod 19 back and forth to the desired length. Then, pass the first fixing bolt 20 through the first through hole, another first through hole and the first fixing nut in the left-right direction and thread it into the first fixing nut, thereby completing the length adjustment of the longitudinal telescopic rod.
[0051] The front and rear ends of the left longitudinal secondary beam 9 are respectively connected to the front left main beam 1 and the rear left main beam 3, and their rotation angles relative to the front left main beam 1 and the rear left main beam 3 are adjustable in the left-right direction. The front and rear ends of the right longitudinal secondary beam 10 are respectively connected to the front right main beam 2 and the rear right main beam 4, and their rotation angles relative to the front right main beam 2 and the rear right main beam 4 are adjustable in the left-right direction. Any suitable structure can be adopted. Please refer to [link / reference]. Figures 1-2 As shown, in a specific embodiment of this utility model, the tool-type construction elevator wall-holding auxiliary frame further includes a first left front fixing plate, a second left front fixing plate, a first left front fixing bolt 21, a first left front fixing nut, a first left rear fixing plate, a second left rear fixing plate, a first left rear fixing bolt 22, a first left rear fixing nut, a first right front fixing plate, a second right front fixing plate 37, a first right front fixing bolt 23, a first right front fixing nut, a first right rear fixing plate, a second right rear fixing plate 38, a first right rear fixing bolt 24, and a first right rear fixing nut, wherein:
[0052] The first left front fixing plate and the second left front fixing plate are both vertically arranged and are arranged along the front-back direction and are spaced apart from each other on the left and right. The first left front fixing plate and the second left front fixing plate are both located after the front left main beam 1 and are both connected (e.g., welded) to the front left main beam 1. The front end of the left longitudinal secondary beam 9 is located between the first left front fixing plate and the second left front fixing plate. The first left front fixing bolt 21 is arranged along the left and right direction and passes through the second left front fixing plate, the front end of the left longitudinal secondary beam 9, the first left front fixing plate and the first left front fixing nut along the left and right direction, and is threadedly engaged with the first left front fixing nut.
[0053] Both the first left rear fixing plate and the second left rear fixing plate are vertically arranged and are arranged along the front-back direction and are spaced apart from each other on the left and right. Both the first left rear fixing plate and the second left rear fixing plate are located in front of the rear left main beam 3 and are connected (e.g., welded) to the rear left main beam 3. The rear end of the left longitudinal secondary beam 9 is located between the first left rear fixing plate and the second left rear fixing plate. The first left rear fixing bolt 22 is arranged along the left-right direction and passes through the second left rear fixing plate, the rear end of the left longitudinal secondary beam 9, the first left rear fixing plate, and the first left rear fixing nut along the left-right direction, and is threadedly engaged with the first left rear fixing nut.
[0054] The first right front fixing plate and the second right front fixing plate 37 are both vertically arranged and along the front-back direction, and are spaced apart from each other on the left and right. The first right front fixing plate and the second right front fixing plate 37 are both located after the front right main beam 2 and are both connected (e.g., welded) to the front right main beam 2. The front end of the right longitudinal secondary beam 10 is located between the first right front fixing plate and the second right front fixing plate 37. The first right front fixing bolt 23 is arranged along the left and right direction and passes through the second right front fixing plate 37, the front end of the right longitudinal secondary beam 10, the first right front fixing plate, and the first right front fixing nut along the left and right direction, and is threadedly engaged with the first right front fixing nut.
[0055] Both the first right rear fixing plate and the second right rear fixing plate 38 are vertically arranged and along the front-back direction, and are spaced apart from each other on the left and right. Both the first right rear fixing plate and the second right rear fixing plate 38 are located in front of the rear right main beam 4 and are connected (e.g., welded) to the rear right main beam 4. The rear end of the right longitudinal secondary beam 10 is located between the first right rear fixing plate and the second right rear fixing plate 38. The first right rear fixing bolt 24 is arranged along the left-right direction and passes through the second right rear fixing plate 38, the rear end of the right longitudinal secondary beam 10, the first right rear fixing plate, and the first right rear fixing nut along the left-right direction, and is threadedly engaged with the first right rear fixing nut.
[0056] With the above configuration, when it is necessary to adjust the rotation angle of the front end of the left longitudinal secondary beam 9 relative to the front left main beam 1 in the left-right direction, loosen the first left front fixing nut. At this time, the front end of the left longitudinal secondary beam 9 can be rotated around the axis of the first left front fixing bolt 21 (along the left-right direction) to the desired position, and then tighten the first left front fixing nut to complete the adjustment of the rotation angle of the front end of the left longitudinal secondary beam 9 relative to the front left main beam 1 in the left-right direction. The adjustment of the rotation angle of the rear end of the left longitudinal secondary beam 9 relative to the rear left main beam 3 in the left-right direction, as well as the adjustment of the rotation angle of the front end and the rear end of the right longitudinal secondary beam 10 relative to the front right main beam 2 and the rear right main beam 4 in the left-right direction, are similar and will not be described again here.
[0057] The tilting telescopic rod can have any suitable configuration; please refer to [link / reference]. Figures 1-2As shown, in a specific embodiment of this utility model, the inclined telescopic rod includes a front inclined rod 25, a rear inclined rod 26, a second fixing bolt 27, and a second fixing nut. Both the front inclined rod 25 and the rear inclined rod 26 are arranged along the inclined direction of the left inclined secondary beam 11. The front end of the rear inclined rod 26 is movably inserted into the rear end of the front inclined rod 25 along the inclined direction of the left inclined secondary beam 11. The front end of the rear inclined rod 26 is provided with a second through hole along the left-right direction. Multiple second through holes are spaced apart along the inclined direction of the left inclined secondary beam 11. The rear end of the front inclined rod 25 is provided with a second through hole along the left-right direction. The second fixing bolt 27 is arranged along the left-right direction... The second through hole, one of the second through holes, and the second fixing nut are threaded through and threaded into the second fixing nut. The front end of the front tilting rod 25 of the left tilting secondary beam 11 and the rear end of the rear tilting rod 26 of the left tilting secondary beam 11 are respectively connected to the front left main beam 1 and the rear left main beam 3, and their rotation angles relative to the front left main beam 1 and the rear left main beam 3 are respectively adjustable in the left and right directions. The front end of the front tilting rod 25 of the right tilting secondary beam 12 and the rear end of the rear tilting rod 26 of the right tilting secondary beam 12 are respectively connected to the front right main beam 2 and the rear right main beam 4, and their rotation angles relative to the front right main beam 2 and the rear right main beam 4 are respectively adjustable in the left and right directions.
[0058] With the above setup, when it is necessary to adjust the length of the left inclined secondary beam 11 and the right inclined secondary beam 12, unscrew the second fixing nut, pull out the second fixing bolt 27 in the left-right direction, and then move the rear inclined rod 26 in the inclined direction of the left inclined secondary beam 11 to the desired length. Then, pass the second fixing bolt 27 through the second through hole, another second through hole and the second fixing nut in the left-right direction and thread it into the second fixing nut, thereby completing the length adjustment of the inclined telescopic rod.
[0059] The front and rear ends of the left inclined secondary beam 11 are respectively connected to the front left main beam 1 and the rear left main beam 3, and their rotation angles relative to the front left main beam 1 and the rear left main beam 3 are adjustable in the left-right direction. The front and rear ends of the right inclined secondary beam 12 are respectively connected to the front right main beam 2 and the rear right main beam 4, and their rotation angles relative to the front right main beam 2 and the rear right main beam 4 are adjustable in the left-right direction. Any suitable structure can be adopted. Please refer to [link / reference]. Figures 1-2As shown, in a specific embodiment of this utility model, the tool-type construction elevator wall-holding auxiliary frame further includes a first left front connecting plate, a second left front connecting plate, a first left front connecting bolt 28, a first left front connecting nut, a first left rear connecting plate, a second left rear connecting plate, a first left rear connecting bolt 29, a first left rear connecting nut, a first right front connecting plate, a second right front connecting plate 39, a first right front connecting bolt 30, a first right front connecting nut, a first right rear connecting plate, a second right rear connecting plate 40, a first right rear connecting bolt 31, and a first right rear connecting nut, wherein:
[0060] Both the first left front connecting plate and the second left front connecting plate are vertically arranged and are arranged along the inclination direction of the left inclined secondary beam 11, and are spaced apart from each other on the left and right. Both the first left front connecting plate and the second left front connecting plate are located after the front left main beam 1 and are connected (e.g., welded) to the front left main beam 1. The front end of the left inclined secondary beam 11 is located between the first left front connecting plate and the second left front connecting plate. The first left front connecting bolt 28 is arranged along the left and right direction and passes through the second left front connecting plate, the front end of the left inclined secondary beam 11, the first left front connecting plate and the first left front connecting nut along the left and right direction, and is threadedly engaged with the first left front connecting nut.
[0061] Both the first left rear connecting plate and the second left rear connecting plate are vertically arranged and are arranged along the inclination direction of the left inclined secondary beam 11, and are spaced apart from each other on the left and right. Both the first left rear connecting plate and the second left rear connecting plate are located in front of the rear left main beam 3 and are connected (e.g., welded) to the rear left main beam 3. The rear end of the left inclined secondary beam 11 is located between the first left rear connecting plate and the second left rear connecting plate. The first left rear connecting bolt 29 is arranged along the left and right direction and passes through the second left rear connecting plate, the rear end of the left inclined secondary beam 11, the first left rear connecting plate and the first left rear connecting nut along the left and right direction, and is threadedly engaged with the first left rear connecting nut.
[0062] The first right front connecting plate and the second right front connecting plate 39 are both vertically arranged and are both arranged along the inclination direction of the left inclined secondary beam 11 and are spaced apart from each other. The first right front connecting plate and the second right front connecting plate 39 are both located after the front right main beam 2 and are both connected (e.g., welded) to the front right main beam 2. The front end of the right inclined secondary beam 12 is located between the first right front connecting plate and the second right front connecting plate 39. The first right front connecting bolt 30 is arranged along the left and right direction and passes through the second right front connecting plate 39, the front end of the right inclined secondary beam 12, the first right front connecting plate and the first right front connecting nut along the left and right direction, and is threadedly engaged with the first right front connecting nut.
[0063] Both the first right rear connecting plate and the second right rear connecting plate 40 are vertically arranged and are arranged along the inclination direction of the left inclined secondary beam 11, and are spaced apart from each other on the left and right. Both the first right rear connecting plate and the second right rear connecting plate 40 are located in front of the rear right main beam 4 and are connected (e.g., welded) to the rear right main beam 4. The rear end of the right inclined secondary beam 12 is located between the first right rear connecting plate and the second right rear connecting plate 40. The first right rear connecting bolt 31 is arranged along the left and right direction and passes through the second right rear connecting plate 40, the rear end of the right inclined secondary beam 12, the first right rear connecting plate and the first right rear connecting nut along the left and right direction, and is threadedly engaged with the first right rear connecting nut.
[0064] With the above configuration, when it is necessary to adjust the rotation angle of the front end of the left inclined secondary beam 11 relative to the front left main beam 1 in the left-right direction, loosen the first left front connecting nut. At this time, the front end of the left inclined secondary beam 11 can be rotated around the axis of the first left front connecting bolt 28 (along the left-right direction) to the desired position, and then tighten the first left front connecting nut to complete the adjustment of the rotation angle of the front end of the left inclined secondary beam 11 relative to the front left main beam 1 in the left-right direction. The adjustment of the rotation angle of the rear end of the left inclined secondary beam 11 relative to the rear left main beam 3 in the left-right direction, and the adjustment of the rotation angle of the front end and the rear end of the right inclined secondary beam 12 relative to the front right main beam 2 and the rear right main beam 4 in the left-right direction are similar and will not be described again here.
[0065] The lateral telescopic rod can have any suitable configuration; please refer to [link / reference]. Figure 1 and Figure 3 As shown, in a specific embodiment of this utility model, the transverse telescopic rod includes a left crossbar 32, a right crossbar 33, a third fixing bolt 34, and a third fixing nut. The right end of the left crossbar 32 is movably inserted into the left end of the right crossbar 33. The right end of the left crossbar 32 is provided with a third through hole along the front-back direction. There are multiple third through holes, which are spaced apart from each other. The left end of the right crossbar 33 is provided with a third through hole along the front-back direction. The third fixing bolt 34 is provided along the front-back direction and passes through the third through hole, one of the third through holes, and the third fixing nut, and is threadedly engaged with the third fixing nut. The left end of the left crossbar 32 and the right end of the right crossbar 33 are respectively connected to the rear left main beam 3 and the rear right main beam 4, and their rotation angles relative to the rear left main beam 3 and the rear right main beam 4 are adjustable around the front-back direction.
[0066] With the above setup, when it is necessary to adjust the length of the transverse secondary beam 13, unscrew the third fixing nut, pull out the third fixing bolt 34 along the front-back direction, then move the left crossbar 32 left and right to the desired length, and pass the third fixing bolt 34 through the third through hole, another third through hole and the third fixing nut along the front-back direction, and thread the third fixing nut to complete the length adjustment of the transverse telescopic rod.
[0067] The left and right ends of the transverse secondary beam 13 are respectively connected to the rear left main beam 3 and the rear right main beam 4, and their rotation angles relative to the rear left main beam 3 and the rear right main beam 4 around the front-rear direction are adjustable. Any suitable structure can be adopted. Please refer to [link / reference needed]. Figure 1 and Figure 3 As shown, in a specific embodiment of this utility model, the tool-type construction elevator wall-holding auxiliary frame further includes a first left fixing plate, a second left fixing plate 41, a first left fixing bolt 35, a first left fixing nut, a first right fixing plate, a second right fixing plate 42, a first right fixing bolt 36, and a first right fixing nut, wherein:
[0068] The first left fixing plate and the second left fixing plate 41 are both vertically arranged and are arranged along the left-right direction and are spaced apart from each other. The first left fixing plate and the second left fixing plate 41 are both located on the right side of the rear left main beam 3 and are both connected (e.g., welded) to the rear left main beam 3. The left end of the transverse secondary beam 13 is located between the first left fixing plate and the second left fixing plate 41. The first left fixing bolt 35 is arranged along the front-back direction and passes through the first left fixing plate, the left end of the transverse secondary beam 13, the second left fixing plate 41 and the first left fixing nut along the front-back direction, and is threadedly engaged with the first left fixing nut.
[0069] Both the first right fixing plate and the second right fixing plate 42 are vertically arranged and along the left-right direction, and are spaced apart from each other. Both the first right fixing plate and the second right fixing plate 42 are located on the left side of the rear right main beam 4 and are connected (e.g., welded) to the rear right main beam 4. The right end of the transverse secondary beam 13 is located between the first right fixing plate and the second right fixing plate 42. The first right fixing bolt 36 is arranged along the front-back direction and passes through the first right fixing plate, the right end of the transverse secondary beam 13, the second right fixing plate 42 and the first right fixing nut along the front-back direction, and is threadedly engaged with the first right fixing nut.
[0070] With the above setup, when it is necessary to adjust the angle of rotation of the left end of the transverse secondary beam 13 relative to the rear left main beam 3 in the front-back direction, loosen the first left fixing nut. At this time, the left end of the transverse secondary beam 13 can be rotated around the axis of the first left fixing bolt 35 (along the front-back direction) to the desired position. Tighten the first left fixing nut to complete the adjustment of the angle of rotation of the left end of the transverse secondary beam 13 relative to the rear left main beam 3 in the front-back direction. The adjustment of the angle of rotation of the right end of the transverse secondary beam 13 relative to the rear right main beam 4 in the front-back direction is similar and will not be described again here.
[0071] The number of the transverse secondary beams 13 can be determined as needed. Preferably, there are multiple transverse secondary beams 13, which are vertically spaced apart. "Multiple" here refers to two or more beams. Please refer to [link to relevant documentation]. Figure 1 and Figure 3 As shown, in a specific embodiment of this utility model, the number of transverse secondary beams 13 is 2.
[0072] The left front fastener 14, the right front fastener 15, the left rear fastener 16, and the right rear fastener 17 can be any suitable fastener. Preferably, each of the following fasteners is selected from chemical anchors and through-wall bolts: chemical anchors and through-wall bolts. If there are multiple left front fasteners 14, right front fasteners 15, left rear fasteners 16, and right rear fasteners 17 (where "multiple" refers to two or more), then the fasteners can include both types mentioned above, or even other types of fasteners. The selection can be made according to the actual situation. For example, chemical anchors can be used at the main beam position of the main building structure 43, and through-wall bolts can be used at the floor slab position of the main building structure 43. In a specific embodiment of this utility model, the number of the left front fastener 14, the number of the right front fastener 15, the number of the left rear fastener 16, and the number of the right rear fastener 17 are all 6, arranged in a 3x2 matrix. The left front fastener 14 and the right front fastener 15 are chemical anchors, and the first two of the left rear fastener 16 and the right rear fastener 17 are through-wall bolts, and the last four are chemical anchors.
[0073] The left longitudinal secondary beam 9, the right longitudinal secondary beam 10, the left inclined secondary beam 11, the right inclined secondary beam 12, and the transverse secondary beam 13 can be secondary beams of any suitable material. In a specific embodiment of this utility model, the left longitudinal secondary beam 9, the right longitudinal secondary beam 10, the left inclined secondary beam 11, the right inclined secondary beam 12, and the transverse secondary beam 13 are all square steel.
[0074] In use, the positions of four main beams—front left main beam 1, front right main beam 2, rear left main beam 3, and rear right main beam 4—are determined on the main building structure 43. During the determination of these positions, the lengths of the left longitudinal secondary beam 9, right longitudinal secondary beam 10, left inclined secondary beam 11, right inclined secondary beam 12, and transverse secondary beam 13 are simultaneously adjusted. Additionally, the rotation angles of the front and rear ends of the left longitudinal secondary beam 9 relative to the front left main beam 1 and rear left main beam 3, the rotation angles of the front and rear ends of the right longitudinal secondary beam 10 relative to the front right main beam 2 and rear right main beam 4, and the rotation angles of the front and rear ends of the left inclined secondary beam 11 are adjusted accordingly. Holes are drilled at corresponding positions in the main building structure 43 relative to the rotation angles of the front left main beam 1 and the rear left main beam 3 in the left and right directions, the rotation angles of the front end and rear end of the right inclined secondary beam 12 relative to the front right main beam 2 and the rear right main beam 4 in the left and right directions, and the rotation angles of the left end and right end of the transverse secondary beam 13 relative to the rear left main beam 3 and the rear right main beam 4 in the front and rear directions. The front left anchor plate 5, the front right anchor plate 6, the rear left anchor plate 7, and the rear right anchor plate 8 are vertically inserted into the main building structure 43 through the left front fastener 14, the right front fastener 15, the left rear fastener 16, and the right rear fastener 17, respectively, and are all vertically detachable.
[0075] Therefore, by adopting this utility model, the main beam is fixed to the main structure of the building through anchor plates and fasteners. The main beam, longitudinal secondary beams, inclined secondary beams, and transverse secondary beams are interconnected to form a triangular stable frame structure, ensuring safety and reliability. The longitudinal secondary beams, inclined secondary beams, and transverse secondary beams can expand and contract vertically, obliquely, and laterally, realizing three-dimensional adjustment in the longitudinal, oblique, and transverse directions to adapt to the construction needs of different floor heights and continuous spans. Furthermore, the connection method of each component is simplified, improving construction efficiency, meeting the use of various types of construction elevators, and allowing for reuse with a high turnover rate. This optimizes economic benefits to a certain extent, reduces material consumption, and solves the problems of fixed design, complex installation, low efficiency, low reuse rate, and insufficient economy of the wall support auxiliary frame, which is in line with modern green construction.
[0076] In summary, the tool-type construction elevator wall support frame of this utility model can achieve three-dimensional adjustment in the horizontal, vertical and diagonal directions, adapt to the construction needs of different floor heights and continuous spans, can be reused, conforms to the concept of green construction, has an ingenious design, simple structure, is easy to manufacture, has low manufacturing cost, and is suitable for large-scale promotion and application.
[0077] Therefore, it is evident that the objective of this utility model has been fully and effectively achieved. The function and structural principles of this utility model have been demonstrated and explained in the embodiments. Without departing from the stated principles, any modifications can be made to the implementation methods. Therefore, this utility model includes all modified embodiments based on the spirit and scope of the claims.
Claims
1. A tool-type construction elevator wall-holding auxiliary frame, characterized in that, This includes the front left main beam, front right main beam, rear left main beam, rear right main beam, front left anchor plate, front right anchor plate, rear left anchor plate, rear right anchor plate, left longitudinal secondary beam, right longitudinal secondary beam, left inclined secondary beam, right inclined secondary beam, transverse secondary beam, left front fastener, right front fastener, left rear fastener, and right rear fastener, wherein: The front left main beam and the front right main beam are both vertically arranged and spaced apart from each other on the left and right. The rear left main beam and the rear right main beam are both vertically arranged and spaced apart from each other on the left and right. The front left main beam and the rear left main beam, as well as the front right main beam and the rear right main beam, are spaced apart from each other on the front and back. The front left anchor plate, the front right anchor plate, the rear left anchor plate, and the rear right anchor plate are all horizontally arranged. The front left main beam, the front right main beam, the rear left main beam, and the rear right main beam are respectively mounted on the front left anchor plate, the front right anchor plate, the rear left anchor plate, and the rear right anchor plate. The left longitudinal secondary beam and the right longitudinal secondary beam are spaced apart from each other and located between the front left main beam and the rear left main beam, and between the front right main beam and the rear right main beam, respectively. The front end and the rear end of the left longitudinal secondary beam are respectively connected to the front left main beam and the rear left main beam, and their rotation angles relative to the front left main beam and the rear left main beam are adjustable in the left and right directions. The front end and the rear end of the right longitudinal secondary beam are respectively connected to the front right main beam and the rear right main beam, and their rotation angles relative to the front right main beam and the rear right main beam are adjustable in the left and right directions. Both the left longitudinal secondary beam and the right longitudinal secondary beam are longitudinal telescopic rods. Both the left and right inclined secondary beams are inclined upwards and backwards in a front-to-back direction and are spaced apart from each other on the left and right. The left inclined secondary beam is located between the front left main beam and the rear left main beam and above the left longitudinal secondary beam. The right inclined secondary beam is located between the front right main beam and the rear right main beam and above the right longitudinal secondary beam. The front and rear ends of the left inclined secondary beam are respectively connected to the front left main beam and the rear left main beam and are respectively adjustable in rotation angle relative to the front left main beam and the rear left main beam in the left and right direction. The front and rear ends of the right inclined secondary beam are respectively connected to the front right main beam and the rear right main beam and are respectively adjustable in rotation angle relative to the front right main beam and the rear right main beam in the left and right direction. Both the left and right inclined secondary beams are inclined telescopic rods. The transverse secondary beam is located between the rear left main beam and the rear right main beam. The left and right ends of the transverse secondary beam are respectively connected to the rear left main beam and the rear right main beam, and the rotation angle relative to the rear left main beam and the rear right main beam is adjustable in the front-rear direction. The transverse secondary beam is a transverse telescopic rod. The left front fastener, the right front fastener, the left rear fastener, and the right rear fastener are all vertically arranged and respectively vertically pass through the front left anchor plate, the front right anchor plate, the rear left anchor plate, and the rear right anchor plate, and are all used for vertical detachable insertion into the main structure of the building.
2. The tool-type construction elevator wall support auxiliary frame as described in claim 1, characterized in that, The longitudinal telescopic rod includes a front longitudinal rod, a rear longitudinal rod, a first fixing bolt, and a first fixing nut. The front end of the rear longitudinal rod is movably inserted into the rear end of the front longitudinal rod. The front end of the rear longitudinal rod has a first through hole along the left-right direction. There are multiple first through holes, which are spaced apart from each other. The rear end of the front longitudinal rod has a first through hole along the left-right direction. The first fixing bolt is positioned along the left-right direction and passes through the first through hole, one of the first through holes, and the first fixing nut along the left-right direction. The nut is threaded and engages with the first fixing nut. The front end of the front longitudinal member of the left longitudinal secondary beam and the rear end of the rear longitudinal member of the left longitudinal secondary beam are respectively connected to the front left main beam and the rear left main beam, and their rotation angles relative to the front left main beam and the rear left main beam are respectively adjustable in the left and right directions. The front end of the front longitudinal member of the right longitudinal secondary beam and the rear end of the rear longitudinal member of the right longitudinal secondary beam are respectively connected to the front right main beam and the rear right main beam, and their rotation angles relative to the front right main beam and the rear right main beam are respectively adjustable in the left and right directions.
3. The tool-type construction elevator wall support auxiliary frame as described in claim 1, characterized in that, The tool-type construction elevator wall-holding auxiliary frame also includes a first left front fixing plate, a second left front fixing plate, a first left front fixing bolt, a first left front fixing nut, a first left rear fixing plate, a second left rear fixing plate, a first left rear fixing bolt, a first left rear fixing nut, a first right front fixing plate, a second right front fixing plate, a first right front fixing bolt, a first right front fixing nut, a first right rear fixing plate, a second right rear fixing plate, a first right rear fixing bolt, and a first right rear fixing nut, wherein: Both the first left front fixing plate and the second left front fixing plate are vertically arranged and are arranged along the front-rear direction and are spaced apart from each other on the left and right. Both the first left front fixing plate and the second left front fixing plate are located behind the front left main beam and are connected to the front left main beam. The front end of the left longitudinal secondary beam is located between the first left front fixing plate and the second left front fixing plate. The first left front fixing bolt is arranged along the left and right direction and passes through the second left front fixing plate, the front end of the left longitudinal secondary beam, the first left front fixing plate and the first left front fixing nut along the left and right direction, and is threadedly engaged with the first left front fixing nut. Both the first left rear fixing plate and the second left rear fixing plate are vertically arranged and are arranged along the front-back direction and are spaced apart from each other on the left and right sides. Both the first left rear fixing plate and the second left rear fixing plate are located in front of the rear left main beam and are connected to the rear left main beam. The rear end of the left longitudinal secondary beam is located between the first left rear fixing plate and the second left rear fixing plate. The first left rear fixing bolt is arranged along the left-right direction and passes through the second left rear fixing plate, the rear end of the left longitudinal secondary beam, the first left rear fixing plate, and the first left rear fixing nut along the left-right direction, and is threadedly engaged with the first left rear fixing nut. Both the first right front fixing plate and the second right front fixing plate are vertically arranged and are arranged along the front-back direction and are spaced apart from each other on the left and right. Both the first right front fixing plate and the second right front fixing plate are located after the front right main beam and are connected to the front right main beam. The front end of the right longitudinal secondary beam is located between the first right front fixing plate and the second right front fixing plate. The first right front fixing bolt is arranged along the left and right direction and passes through the second right front fixing plate, the front end of the right longitudinal secondary beam, the first right front fixing plate and the first right front fixing nut along the left and right direction, and is threadedly engaged with the first right front fixing nut. Both the first right rear fixing plate and the second right rear fixing plate are vertically arranged and are arranged along the front-back direction, and are spaced apart from each other on the left and right. Both the first right rear fixing plate and the second right rear fixing plate are located in front of the rear right main beam and are connected to the rear right main beam. The rear end of the right longitudinal secondary beam is located between the first right rear fixing plate and the second right rear fixing plate. The first right rear fixing bolt is arranged along the left-right direction and passes through the second right rear fixing plate, the rear end of the right longitudinal secondary beam, the first right rear fixing plate, and the first right rear fixing nut along the left-right direction, and is threadedly engaged with the first right rear fixing nut.
4. The tool-type construction elevator wall support auxiliary frame as described in claim 1, characterized in that, The tilting telescopic rod includes a front tilting rod, a rear tilting rod, a second fixing bolt, and a second fixing nut. Both the front and rear tilting rods are arranged along the tilting direction of the left tilting secondary beam. The front end of the rear tilting rod is movably inserted into the rear end of the front tilting rod along the tilting direction of the left tilting secondary beam. The front end of the rear tilting rod has a second through hole along the left-right direction; multiple second through holes are spaced apart along the tilting direction of the left tilting secondary beam. The rear end of the front tilting rod has a second through hole along the left-right direction. The second fixing bolt is arranged along the left-right direction and... The second through hole, one of the second through holes, and the second fixing nut are threaded through and engaged with the second fixing nut. The front end of the front tilting rod of the left tilting secondary beam and the rear end of the rear tilting rod of the left tilting secondary beam are respectively connected to the front left main beam and the rear left main beam, and their rotation angles relative to the front left main beam and the rear left main beam are respectively adjustable in the left and right directions. The front end of the front tilting rod of the right tilting secondary beam and the rear end of the rear tilting rod of the right tilting secondary beam are respectively connected to the front right main beam and the rear right main beam, and their rotation angles relative to the front right main beam and the rear right main beam are respectively adjustable in the left and right directions.
5. The tool-type construction elevator wall support auxiliary frame as described in claim 1, characterized in that, The tool-type construction elevator wall-mounted auxiliary frame further includes a first left front connecting plate, a second left front connecting plate, a first left front connecting bolt, a first left front connecting nut, a first left rear connecting plate, a second left rear connecting plate, a first left rear connecting bolt, a first left rear connecting nut, a first right front connecting plate, a second right front connecting plate, a first right front connecting bolt, a first right front connecting nut, a first right rear connecting plate, a second right rear connecting plate, a first right rear connecting bolt, and a first right rear connecting nut, wherein: Both the first left front connecting plate and the second left front connecting plate are vertically arranged and are both arranged along the inclination direction of the left inclined secondary beam and are spaced apart from each other. Both the first left front connecting plate and the second left front connecting plate are located after the front left main beam and are both connected to the front left main beam. The front end of the left inclined secondary beam is located between the first left front connecting plate and the second left front connecting plate. The first left front connecting bolt is arranged along the left and right direction and passes through the second left front connecting plate, the front end of the left inclined secondary beam, the first left front connecting plate and the first left front connecting nut along the left and right direction, and is threadedly engaged with the first left front connecting nut. Both the first left rear connecting plate and the second left rear connecting plate are vertically arranged and are both arranged along the inclination direction of the left inclined secondary beam and are spaced apart from each other. Both the first left rear connecting plate and the second left rear connecting plate are located in front of the rear left main beam and are both connected to the rear left main beam. The rear end of the left inclined secondary beam is located between the first left rear connecting plate and the second left rear connecting plate. The first left rear connecting bolt is arranged along the left and right direction and passes through the second left rear connecting plate, the rear end of the left inclined secondary beam, the first left rear connecting plate and the first left rear connecting nut along the left and right direction, and is threadedly engaged with the first left rear connecting nut. Both the first right front connecting plate and the second right front connecting plate are vertically arranged and are both arranged along the inclination direction of the left inclined secondary beam and are spaced apart from each other. Both the first right front connecting plate and the second right front connecting plate are located after the front right main beam and are both connected to the front right main beam. The front end of the right inclined secondary beam is located between the first right front connecting plate and the second right front connecting plate. The first right front connecting bolt is arranged along the left and right direction and passes through the second right front connecting plate, the front end of the right inclined secondary beam, the first right front connecting plate and the first right front connecting nut along the left and right direction, and is threadedly engaged with the first right front connecting nut. Both the first right rear connecting plate and the second right rear connecting plate are vertically arranged and are both arranged along the inclination direction of the left inclined secondary beam, and are spaced apart from each other on the left and right. Both the first right rear connecting plate and the second right rear connecting plate are located in front of the rear right main beam and are both connected to the rear right main beam. The rear end of the right inclined secondary beam is located between the first right rear connecting plate and the second right rear connecting plate. The first right rear connecting bolt is arranged along the left and right direction and passes through the second right rear connecting plate, the rear end of the right inclined secondary beam, the first right rear connecting plate and the first right rear connecting nut along the left and right direction, and is threadedly engaged with the first right rear connecting nut.
6. The tool-type construction elevator wall support auxiliary frame as described in claim 1, characterized in that, The transverse telescopic rod includes a left crossbar, a right crossbar, a third fixing bolt, and a third fixing nut. The right end of the left crossbar is movably inserted into the left end of the right crossbar. The right end of the left crossbar has a third through hole along the front-back direction. There are multiple third through holes, which are spaced apart from each other. The left end of the right crossbar has a third through hole along the front-back direction. The third fixing bolt is arranged along the front-back direction and passes through the third through hole, one of the third through holes, and the third fixing nut, and is threaded into the third fixing nut. The left end of the left crossbar and the right end of the right crossbar are respectively connected to the rear left main beam and the rear right main beam, and their rotation angles relative to the rear left main beam and the rear right main beam are adjustable around the front-back direction.
7. The tool-type construction elevator wall support auxiliary frame as described in claim 1, characterized in that, The tool-type construction elevator wall-mounted auxiliary frame also includes a first left fixing plate, a second left fixing plate, a first left fixing bolt, a first left fixing nut, a first right fixing plate, a second right fixing plate, a first right fixing bolt, and a first right fixing nut, wherein: Both the first left fixing plate and the second left fixing plate are vertically arranged and are arranged along the left-right direction and are spaced apart from each other. Both the first left fixing plate and the second left fixing plate are located on the right side of the rear left main beam and are connected to the rear left main beam. The left end of the transverse secondary beam is located between the first left fixing plate and the second left fixing plate. The first left fixing bolt is arranged along the front-back direction and passes through the first left fixing plate, the left end of the transverse secondary beam, the second left fixing plate and the first left fixing nut along the front-back direction, and is threadedly engaged with the first left fixing nut. Both the first right fixing plate and the second right fixing plate are vertically arranged and are set along the left-right direction, and are spaced apart from each other. Both the first right fixing plate and the second right fixing plate are located on the left side of the rear right main beam and are connected to the rear right main beam. The right end of the transverse secondary beam is located between the first right fixing plate and the second right fixing plate. The first right fixing bolt is set along the front-back direction and passes through the first right fixing plate, the right end of the transverse secondary beam, the second right fixing plate and the first right fixing nut along the front-back direction, and is threadedly engaged with the first right fixing nut.
8. The tool-type construction elevator wall support auxiliary frame as described in claim 1, characterized in that, The number of transverse secondary beams is multiple, and the multiple transverse secondary beams are arranged vertically at intervals.
9. The tool-type construction elevator wall support auxiliary frame as described in claim 8, characterized in that, The number of transverse secondary beams is 2.
10. The tool-type construction elevator wall support frame as described in claim 1, characterized in that, The left front fastener, the right front fastener, the left rear fastener, and the right rear fastener are all selected from chemical anchors and through-wall bolts.