Multi-point pulling climbing frame for staggered balcony
By employing a multi-point tie structure of horizontal beams, inclined and vertical support components at the staggered balcony, the problem of instability in the fixation of traditional climbing scaffolds at staggered balconies is solved, achieving higher vertical load capacity and stability.
Patent Information
- Application Number
- CN202520527105.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-03-25
AI Technical Summary
Traditional climbing scaffolds cannot be effectively fixed at staggered balconies, resulting in poor local stability, especially insufficient load-bearing capacity in the vertical direction.
A multi-point tie structure is adopted, including a crossbeam, an inclined first support component, and a vertical second support component. The crossbeam is bolted to the wall and the main body of the climbing frame, forming multiple tie forces to improve stability.
This enhances the fixation of the climbing scaffold body at the staggered balcony, improves the vertical load-bearing capacity and overall stability, and solves the stability problem of traditional climbing scaffolds in such situations.
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Figure CN223952211U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to building climbing frame technical field, concretely is a kind of staggered balcony multi-point tie climbing frame. BACKGROUND
[0002] Climbing frame is a kind of building scaffold commonly used in construction engineering, it can satisfy the demand of building construction individual building, climbing frame is up with structure, usually will adopt inverted seat to do force support pad, climbing frame main body is fixed on the outside of balcony structure, for staff use, since on some building houses balcony is not neat vertical distribution, usually there will be some staggered distribution balcony, this leads to traditional inverted seat cannot be connected, easily cause local unable to adhere tie fixing.
[0003] In the Chinese invention patent with publication No. CN107642241A discloses a kind of force support structure and construction method of prefabricated balcony, one end of support frame is installed on balcony, other end is installed on climbing frame main body by inverted seat, and is connected with the balcony of upper layer by inclined rod on the side close to climbing frame main body, realize the fixing effect of climbing frame, although through horizontal support frame and inclined rod, can fix in some to lack tie part, however the side of central support frame far from wall is only connected by inclined rod, and the load capacity in vertical direction is poor, in long time use, it is easy to affect its stability. UTILITY MODEL CONTENT
[0004] The utility model aims at making up for the deficiency of prior art, provide a kind of staggered balcony multi-point tie climbing frame.
[0005] To achieve the above object, the utility model provides the following technical scheme:
[0006] A kind of staggered balcony multi-point tie climbing frame, including vertical climbing frame main body, the side of climbing frame main body close to wall is arranged on wall, the side of climbing frame main body close to wall is also provided with tie mechanism, for the fixed effect of climbing frame main body at the point of attachment structure missing place of climbing frame main body;
[0007] Tie mechanism includes crossbeam, one end of crossbeam is installed on wall, the other end of crossbeam is connected with climbing frame main body;
[0008] The top of one end of crossbeam close to climbing frame main body is connected with the first support assembly of adjustable length, first support assembly is inclined distribution, and the top of first support assembly is connected on the wall above crossbeam, to make through first support assembly to the fixed effect of crossbeam;
[0009] The bottom of the cross beam near one end of the climbing frame body is connected with a length-adjustable second supporting assembly, the second supporting assembly is vertically downwardly distributed, and the bottom of the second supporting assembly is connected to a wall below the cross beam, so that the second supporting assembly supports below the cross beam.
[0010] Further, a plurality of first connecting holes are formed in the opposite sides of the cross beam, the first connecting holes are horizontally distributed at equal distances along the center line of the cross beam, a moving sleeve is sleeved outside the cross beam, second connecting holes are formed in the opposite sides of the moving sleeve, and the moving sleeve is fixed by bolts successively penetrating the second connecting holes and the first connecting holes;
[0011] The top and the bottom of the moving sleeve are fixedly connected with the bottom of the first supporting assembly and the top of the second supporting assembly by bolts.
[0012] Further, when the number of the moving sleeves is plural, the moving sleeves are respectively a first moving sleeve, a second moving sleeve and the like from the wall to the climbing frame body on the cross beam, and the last moving sleeve is located at one end of the cross beam near the climbing frame body, the bottom of the first moving sleeve to the last second moving sleeve is connected with a length-adjustable third supporting assembly, and the bottom of the third supporting assembly is arranged on the wall, so as to strengthen the support of the cross beam.
[0013] Further, a first mounting plate is arranged between the top of the first supporting assembly and the wall;
[0014] The top of the first mounting plate is fixedly connected with the wall, a plurality of third connecting holes are formed in one side of the first mounting plate, and the top of the first supporting assembly is fixedly connected with corresponding third connecting holes by bolts;
[0015] The third connecting holes are horizontally and equidistantly distributed, so as to adjust the position of the top of the first supporting assembly.
[0016] Further, the bottom of the third supporting assembly is provided with a second mounting plate, a plurality of fourth connecting holes are formed in one side of the second mounting plate, and the bottom of the third supporting assembly is connected with corresponding fourth connecting holes;
[0017] The fourth connecting holes are horizontally and equidistantly distributed, the fourth connecting holes are located directly below the first connecting holes, and the distance between adjacent two fourth connecting holes and adjacent two first connecting holes is equal.
[0018] Further, the length-adjustable first supporting assembly, the second supporting assembly and the third supporting assembly all comprise a second connecting rod, one end of the second connecting rod is connected with a corresponding moving sleeve, the other end of the second connecting rod is fixedly connected with a first telescopic cylinder, a first connecting rod is inserted into the inner wall of the first telescopic cylinder, and one end of the first connecting rod away from the first telescopic cylinder is connected with a corresponding first mounting plate, a second mounting plate and a wall;
[0019] The outer side of the first telescopic cylinder is equidistantly provided with a plurality of first positioning holes, and the first connecting rod is provided with a second positioning hole at one end close to the first telescopic cylinder, so that the first telescopic cylinder and the first connecting rod are fixedly connected by being sequentially penetrated by bolts through the first positioning hole and the second positioning hole.
[0020] Further, the cross beam comprises a cross rod, one end of the cross rod is installed on the wall body, the other end of the cross rod is inserted into the connecting cylinder, and the end of the connecting cylinder away from the cross rod is connected with the climbing frame body.
[0021] The cross rod and the connecting cylinder are both provided with first connecting holes, and are fixed by bolts penetrating through the corresponding first connecting holes.
[0022] Compared with the prior art, the staggered balcony multi-point tie-in climbing frame has the following beneficial effects:
[0023] The utility model discloses a cross beam directly connected with the climbing frame body through the middle transverse cross beam at the missing point of the climbing frame body tie-in point or the staggered balcony, and the inclined first supporting assembly is increased on the cross beam and the vertical second supporting assembly is increased below, further supporting the cross beam in the vertical direction, forming multiple tie-in stress paths to fix the climbing frame body, solving the problem that the existing technology only connects through the inclined rod, the load capacity in the vertical direction is poor, and the stability is easily affected in long-time use. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 It is the front view of the utility model;
[0025] Figure 2 It is the sectional view of the connecting cylinder in the utility model;
[0026] Figure 3 It is the three-dimensional structure schematic diagram of the cross beam in the utility model;
[0027] Figure 4 It is the front view of the first telescopic cylinder in the utility model.
[0028] In the drawing: 1, climbing frame body;2, cross beam;201, cross rod;202, connecting cylinder;3, first supporting assembly;4, second supporting assembly;5, moving sleeve;6, first mounting plate;7, second mounting plate;8, first connecting rod;9, second connecting rod;10, first telescopic cylinder;11, third supporting assembly. DETAILED DESCRIPTION
[0029] 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 of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the scope of the present application.
[0030] As Figures 1-4 shown, the utility model provides a technical scheme: a staggered balcony multi-point tie climbing frame, including vertical climbing frame body 1, the side of climbing frame body 1 close to wall is arranged on wall, the side of climbing frame body 1 close to wall still is provided with tie mechanism, is used for playing the role of fixing to climbing frame body 1 at the place where climbing frame body 1 attachment point structure is missing;Tie mechanism includes crossbeam 2, one end of crossbeam 2 is installed on wall, the other end of crossbeam 2 is connected with climbing frame body 1;The top of one end of crossbeam 2 close to climbing frame body 1 is connected with the length adjustable first support assembly 3, and the first support assembly 3 is inclined distribution, and the top of first support assembly 3 is connected on the wall above crossbeam 2, to make through first support assembly 3 to the fixed effect of crossbeam 2;The bottom of one end of crossbeam 2 close to climbing frame body 1 is connected with the length adjustable second support assembly 4, and the second support assembly 4 is vertically downward distribution, and the bottom of second support assembly 4 is connected on the wall below crossbeam 2, to make through second support assembly 4 to the supporting effect below crossbeam 2.
[0031] In use, first, for the place where the distance between the vertically distributed climbing frame body 1 and the wall is close, through the mode of traditional support connection, bolt fixed connection on the wall, then for the staggered balcony or attachment point missing place, install crossbeam 2 between the wall and the climbing frame body 1, one end of the crossbeam 2 is bolted on the wall, and the other end is bolted on the climbing frame body 1, then set the first support assembly 3 above the crossbeam 2, and make the top of the first support assembly 3 bolted on the wall, and adjust the length of the first support assembly 3, so that the bottom end is installed on the end of the crossbeam 2 close to the climbing frame body 1, the first support assembly 3 pulls the end of the crossbeam 2 away from the wall, and shares the load of the crossbeam 2, at the same time, the bottom of the second support assembly 4 is bolted on the wall, and then the length is adjusted so that the top is installed on the end of the crossbeam 2 close to the climbing frame body 1, to further support the crossbeam 2, share the load of the crossbeam 2 in the vertical direction, improve the stability of the crossbeam 2, the horizontally distributed crossbeam 2, the top inclined first support assembly 3 and the second support assembly 4 below the crossbeam 2 form multiple tie forces, improve the stability of the fixed climbing frame body 1.
[0032] The opposite sides of the cross beam 2 are provided with a plurality of first connecting holes penetrating through, the first connecting holes are horizontally distributed at equal distances along the center line of the cross beam 2, the outer side of the cross beam 2 is sleeved with a moving sleeve 5, the opposite sides of the moving sleeve 5 are provided with second connecting holes, so that the moving sleeve 5 is fixed by bolts penetrating through the second connecting holes and the first connecting holes in turn; the top and the bottom of the moving sleeve 5 are fixedly connected with the bottom of the first supporting assembly 3 and the top of the second supporting assembly 4 by bolts respectively; when the number of the moving sleeves 5 is plural, the moving sleeves 5 are respectively a first moving sleeve 5, a second moving sleeve 5 and the like from the wall to the climbing frame body 1 on the cross beam 2, the last moving sleeve 5 is located at one end of the cross beam 2 close to the climbing frame body 1, the bottoms of the first moving sleeve 5 to the last second moving sleeve 5 are all connected with third supporting assemblies 11 with adjustable lengths, and the bottoms of the third supporting assemblies 11 are arranged on the wall, for strengthening the support of the cross beam 2 and improving the stability of the cross beam 2.
[0033] The top of the first supporting assembly 3 is provided with a first mounting plate 6 between the first supporting assembly 3 and the wall; the top of the first mounting plate 6 is fixedly connected with the wall, one side of the first mounting plate 6 is provided with a plurality of third connecting holes, and the top of the first supporting assembly 3 is fixedly connected with the corresponding third connecting holes by bolts; the third connecting holes are horizontally and equidistantly distributed, so that the position of the top of the first supporting assembly 3 is adjusted.
[0034] In use, the moving sleeve 5 is slid on the cross beam 2, so as to adjust the number and the position of the moving sleeve 5, the number of the moving sleeves 5 is appropriately increased according to the length of the cross beam 2, and the position of the increased moving sleeve 5 on the cross beam 2 is adjusted: when the number of the moving sleeves 5 is two, the last moving sleeve 5 is located at the end of one end of the cross beam 2 close to the climbing frame body 1, so that the bottom end of the second supporting assembly 4 is fixed at the edge of the wall, and the two are bolted by a support, the first moving sleeve 5 is moved to a proper position in the middle and is supported and fixed by the third supporting assembly 11, so as to better support the cross beam 2 under stress, then the position of the top of the first supporting assembly 3 is further adjusted, the inclination angle of the first supporting assembly 3 is adjusted, and the first supporting assembly 3 on the last moving sleeve 5 is moved to one side of the climbing frame body 1, a new first supporting assembly 3 is further added to the top of the first moving sleeve 5, and the fixing effect of the cross beam 2 is further improved.
[0035] The bottom of the third supporting assembly 11 is provided with a second mounting plate 7, one side of the second mounting plate 7 is provided with a plurality of fourth connecting holes, and the bottom of the third supporting assembly 11 is connected with the corresponding fourth connecting holes; the fourth connecting holes are horizontally and equidistantly distributed, and the fourth connecting holes are located directly below the first connecting holes, the distance between the adjacent two fourth connecting holes and the adjacent two first connecting holes is equal; in use, the corresponding first connecting holes and fourth connecting holes are used to keep the vertical relationship between the third supporting assembly 11 and the cross beam 2, and then the cross beam 2 is supported.
[0036] The first support assembly 3, the second support assembly 4 and the third support assembly 11 all comprise a second connecting rod 9, one end of the second connecting rod 9 is connected with the corresponding moving sleeve 5 respectively, the other end of the second connecting rod 9 is fixedly connected with a first telescopic cylinder 10, the inner wall of the first telescopic cylinder 10 is inserted with a first connecting rod 8, the end of the first connecting rod 8 away from the first telescopic cylinder 10 is connected with the corresponding first mounting plate 6, second mounting plate 7 and wall respectively; a plurality of first positioning holes are equidistantly arranged on the outer side of the first telescopic cylinder 10, the end of the first connecting rod 8 close to the first telescopic cylinder 10 is provided with a second positioning hole, so that the first telescopic cylinder 10 and the first connecting rod 8 are fixedly connected by the first positioning hole and the second positioning hole in turn through the bolts.
[0037] In use, by adjusting the length of the first connecting rod 8 inside the first telescopic cylinder 10, the total length of the first connecting rod 8 and the second connecting rod 9 is adjusted; the second positioning hole on the first connecting rod 8 is provided with multiple, and corresponds to the first positioning hole, so as to correspond through the multiple first positioning holes and the second positioning holes, and fixed by the multiple bolts, so as to improve the stability of the connection.
[0038] The cross beam 2 comprises a cross rod 201, one end of the cross rod 201 is installed on the wall, the other end of the cross rod 201 is inserted into the connecting cylinder 202, the end of the connecting cylinder 202 away from the cross rod 201 is connected with the climbing frame body 1; the first connecting hole is arranged on the cross rod 201 and the connecting cylinder 202, and the cross rod 201 and the connecting cylinder 202 are fixed by the bolts through the corresponding first connecting holes; in use, the first positioning holes on the cross rod 201 and the connecting cylinder 202 correspond, so as to adjust the overall length of the cross rod 201 and the connecting cylinder 202 slightly, so as to match the distance between the cross beam 2, the climbing frame body 1 and the wall, and at the same time, the first positioning hole is convenient for increasing the moving sleeve 5, providing multiple stress support points, so as to improve the stability of the cross beam 2, the moving sleeve 5 is slidingly sleeved outside the connecting cylinder 202, when the moving sleeve 5 moves to the cross rod 201, the gasket is increased between the moving sleeves 5, so as to make the moving sleeve 5 and the cross rod 201 fully contact.
Claims
1. A multi-point tieback climbing frame for a staggered balcony, comprising a vertical climbing frame body (1) arranged on a wall near one side of the wall, characterized in that: The side of the climbing frame body (1) close to the wall is also provided with a pulling mechanism for fixing the climbing frame body (1) when the attachment point structure of the climbing frame body (1) is missing; The pulling mechanism comprises a crossbeam (2), one end of the crossbeam (2) is installed on the wall, and the other end of the crossbeam (2) is connected with the climbing frame body (1); The top of the end of the crossbeam (2) close to the climbing frame body (1) is connected with a first support assembly (3) with adjustable length, the first support assembly (3) is inclined, and the top of the first support assembly (3) is connected to the wall above the crossbeam (2), so that the crossbeam (2) is fixed by the first support assembly (3); The bottom of the end of the crossbeam (2) close to the climbing frame body (1) is connected with a second support assembly (4) with adjustable length, the second support assembly (4) is vertically downward, and the bottom of the second support assembly (4) is connected to the wall below the crossbeam (2), so that the crossbeam (2) is supported below by the second support assembly (4).
2. The staggered balcony multi-point tieback climbing frame of claim 1, wherein: The opposite sides of the crossbeam (2) are provided with a plurality of first connecting holes, a plurality of the first connecting holes are horizontally distributed along the center line of the crossbeam (2), a moving sleeve (5) is arranged outside the crossbeam (2), and second connecting holes are formed in the opposite sides of the moving sleeve (5), so that the moving sleeve (5) is fixed by bolts penetrating the second connecting holes and the first connecting holes in sequence; The top and bottom of the moving sleeve (5) are fixedly connected with the bottom of the first support assembly (3) and the top of the second support assembly (4) by bolts.
3. The staggered balcony multi-point tieback climbing frame of claim 2, wherein: When the number of the moving sleeve (5) is plural, the first moving sleeve (5) and the second moving sleeve (5) are arranged on the crossbeam (2) from the wall to the climbing frame body (1), and the last moving sleeve (5) is arranged at the end of the crossbeam (2) close to the climbing frame body (1), the bottoms of the first moving sleeve (5) to the last second moving sleeve (5) are connected with third support assemblies (11) with adjustable length, and the bottoms of the third support assemblies (11) are arranged on the wall to strengthen the support of the crossbeam (2).
4. The staggered balcony multi-point tieback climbing frame of claim 3, wherein: A first mounting plate (6) is arranged between the top of the first support assembly (3) and the wall; The top of the first mounting plate (6) is fixedly connected with the wall, a plurality of third connecting holes are formed in one side of the first mounting plate (6), and the top of the first support assembly (3) is fixedly connected with the corresponding third connecting hole by a bolt; The third connecting holes are horizontally and equidistantly distributed to adjust the position of the top of the first support assembly (3).
5. The staggered balcony multi-point tieback climbing frame of claim 4, wherein: The bottom of the third support assembly (11) is provided with a second mounting plate (7), a plurality of fourth connecting holes are formed in one side of the second mounting plate (7), and the bottom of the third support assembly (11) is connected with the corresponding fourth connecting hole. Several fourth connecting holes are horizontally and equidistantly distributed, and the fourth connecting holes are located directly below the first connecting holes, and the distance between two adjacent fourth connecting holes and two adjacent first connecting holes is equal.
6. The staggered balcony multi-point tieback climbing frame of claim 5, wherein: The first support assembly (3), the second support assembly (4) and the third support assembly (11) all include a second connecting rod (9), one end of the second connecting rod (9) is connected with a corresponding moving sleeve (5), the other end of the second connecting rod (9) is fixedly connected with a first telescopic cylinder (10), the inner wall of the first telescopic cylinder (10) is inserted with a first connecting rod (8), and the end of the first connecting rod (8) away from the first telescopic cylinder (10) is connected with a corresponding first mounting plate (6), a second mounting plate (7) and a wall body respectively; A plurality of first positioning holes are equidistantly arranged on the outer side of the first telescopic cylinder (10), and a second positioning hole is arranged on the end of the first connecting rod (8) close to the first telescopic cylinder (10), so that the first telescopic cylinder (10) and the first connecting rod (8) are fixedly connected by being sequentially penetrated by bolts through the first positioning hole and the second positioning hole.
7. The staggered balcony multipoint tieback climbing scaffold of claim 2, wherein: The cross beam (2) comprises a cross rod (201), one end of the cross rod (201) is mounted on a wall body, the other end of the cross rod (201) is inserted into a connecting cylinder (202), and one end of the connecting cylinder (202) away from the cross rod (201) is connected with the climbing frame main body (1). The cross rod (201) and the connecting cylinder (202) are both provided with first connecting holes, and the cross rod (201) and the connecting cylinder (202) are fixed by being penetrated by bolts through corresponding first connecting holes.
Citation Information
Patent Citations
Stress supporting structure of prefabricated balconies and construction method
CN107642241A