Adjustable movable scaffold
By installing adjustable oblique struts and connecting mechanisms on the mobile scaffolding, the risk of overturning caused by ground unevenness is solved, and stable support is achieved to meet the needs of safe construction.
Patent Information
- Application Number
- CN202421386370.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-18
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-06-18
AI Technical Summary
Mobile scaffolding is prone to overturn when it is erected on the ground environment and needs to be erected at a higher level, resulting in higher safety risks.
An adjustable mobile scaffolding is designed to form oblique support by installing a retractable oblique strut and a reinforced connection mechanism on the upright pole to adjust the length and angle of the oblique strut to adapt to different ground environments and enhance stability.
It effectively reduces the risk of overturning of mobile scaffolding due to excessive height, uneven ground and disturbances in workers' operations, improves the ability to resist overturning and meets the requirements of on-site safety construction.
Smart Images

Figure CN223227016U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of building construction, and particularly relates to an adjustable movable scaffold. Background Art
[0002] Mobile scaffolding refers to various types of supports erected on construction sites for workers to operate and facilitate vertical and horizontal transportation. They are characterized by simple assembly and disassembly, excellent load-bearing capacity, and safe and reliable use. Mobile scaffolding has rapidly developed and is the earliest and most widely used of all new types of scaffolding.
[0003] As a basic construction facility, mobile scaffolding is widely used on various construction sites of all sizes, playing a significant supporting role. Mobile scaffolding generally consists of a scaffolding body consisting of vertical poles and horizontal poles, and is equipped with scaffolding boards for workers to walk on or for placing construction materials.
[0004] In construction projects, mobile scaffolding is increasingly being used on-site. It features easy assembly, portability, and flexible configurations. Depending on the working conditions, mobile scaffolding can be erected at varying heights, and the ground conditions it is used in also vary. When the ground conditions for erecting the scaffolding are uneven, and the mobile scaffolding needs to be erected at a higher level, the risk of the mobile scaffold tipping over during use is high. In such conditions, worker falls from heights due to scaffolding tipping are frequent.
[0005] Therefore, designing an adjustable mobile scaffold that can effectively prevent the mobile scaffold from overturning when the ground environment for the mobile scaffold is uneven and the mobile scaffold needs to be erected higher has become a technical problem that needs to be urgently solved by technicians in the relevant technical field. Utility Model Content
[0006] The technical problem to be solved by the utility model is to provide an adjustable mobile scaffolding fixed support to solve the technical problem that the mobile scaffolding is prone to overturning and generates high safety risks when the ground environment for erecting the mobile scaffold is uneven and needs to be erected higher.
[0007] In order to achieve the above purpose, the technical solution adopted by the present utility model is as follows:
[0008] An adjustable mobile scaffold comprises a scaffold body consisting of at least vertical poles and horizontal poles and a scaffolding board arranged on the scaffold body, wherein the vertical poles are provided with a diagonal bracing stabilizing mechanism, which comprises a telescopic diagonal bracing rod installed on the vertical poles and a reinforcing connection mechanism installed between the telescopic diagonal bracing rod and the vertical poles.
[0009] Furthermore, the telescopic diagonal support rod includes a telescopic sleeve, and a diagonal support rod with one end sleeved in the telescopic sleeve and the other end mounted on the vertical pole; the telescopic sleeve is provided with a fastening mechanism for fixing the diagonal support rod in the telescopic sleeve.
[0010] Furthermore, the fastening mechanism includes a threaded through hole formed on the telescopic sleeve, and a bolt threadedly connected to the threaded through hole for supporting and fixing the diagonal support rod.
[0011] Furthermore, a handle rod is welded on the bolt.
[0012] Furthermore, an anti-slip sleeve is mounted on the bottom end of the telescopic sleeve.
[0013] Furthermore, a pair of vertical pole connecting ears A distributed parallel to each other are provided on the vertical pole, and a diagonal brace connecting ear adapted to the vertical pole connecting ear A is provided on the diagonal brace. The vertical pole connecting ear A and the diagonal brace connecting ear are detachably connected by bolts.
[0014] Furthermore, an angle greater than 0° and less than 90° is formed between the telescopic diagonal support rod and the vertical rod.
[0015] Furthermore, the enhanced connection mechanism includes a connecting rod with one end mounted on the vertical pole and the other end mounted on the telescopic sleeve, and an angle greater than 0° and less than 90° is formed between the connecting rod and the vertical pole.
[0016] Furthermore, a pair of vertical pole connecting ears B distributed parallel to each other are provided on the vertical pole, and one end of the connecting rod is detachably connected between the two vertical pole connecting ears B by a bolt; a pair of telescopic sleeve connecting ears distributed parallel to each other are provided on the telescopic sleeve, and the other end of the connecting rod is detachably connected between the two telescopic sleeve connecting ears by a bolt.
[0017] Furthermore, a foot brake roller skate is provided on the vertical pole.
[0018] Compared with the prior art, the present invention has the following beneficial effects:
[0019] The utility model has a simple structure, a scientific and reasonable design, and is easy to use. By adding oblique supports to the scaffold body to fix the mobile scaffold, the risk of the mobile scaffold overturning due to excessive height, uneven construction environment, and excessive disturbance during worker operation can be effectively reduced. The anti-overturning ability of the mobile scaffold can be effectively improved to meet the safety requirements of on-site construction. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 This is a schematic structural diagram of the utility model.
[0021] Figure 2 This is a schematic diagram of the telescopic sleeve structure of the utility model.
[0022] Figure 3 This is a schematic diagram of the connection between the vertical pole and the diagonal brace of the utility model.
[0023] Figure 4 This is a schematic diagram of the connection between the connecting rod of the utility model and the vertical rod or the telescopic sleeve.
[0024] Figure 5 This is a schematic diagram of the connecting rod of the utility model.
[0025] Figure 6 This is a schematic diagram of the bolt and handle rod of the utility model.
[0026] The names corresponding to the reference numerals are:
[0027] 2-vertical pole, 3-cross bar, 4-telescopic diagonal support rod, 5-anti-slip sleeve, 6-telescopic sleeve, 7-diagonal support rod, 8-threaded through hole, 9-bolt, 10-handle rod, 11-vertical pole connecting ear A, 12-diagonal support rod connecting ear, 13-connecting rod, 14-vertical pole connecting ear B, 15-telescopic sleeve connecting ear, 16-foot brake roller skate. DETAILED DESCRIPTION
[0028] To make the purpose, technical solutions, and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings. It is apparent that the embodiments described herein are merely a portion of the embodiments of the present invention, and not all of them. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without inventive effort are also within the scope of protection of the present invention.
[0029] Example 1.
[0030] like Figure 1-6 As shown, the utility model provides an adjustable mobile scaffold, including a scaffold body consisting of at least vertical poles 2 and horizontal poles 3 and a scaffolding board arranged on the scaffold body, and a diagonal bracing stabilizing mechanism is installed on the vertical poles 2, and the diagonal bracing stabilizing mechanism includes a retractable diagonal bracing rod 4 installed on the vertical poles 2, and a reinforcing connection mechanism installed between the retractable diagonal bracing rod 4 and the vertical poles 2.
[0031] The utility model has a simple structure, a scientific and reasonable design, and is easy to use. By adding oblique supports to the scaffold body to fix the mobile scaffold, the risk of the mobile scaffold overturning due to excessive height, uneven setting environment conditions, and excessive disturbance during worker operation can be effectively reduced, the anti-overturning ability of the mobile scaffold is effectively improved, and the safety construction requirements on site are met.
[0032] Example 2.
[0033] like Figure 1-6As shown, the utility model provides an adjustable mobile scaffold, including a scaffold body consisting of at least vertical poles 2 and horizontal poles 3 and a scaffolding board arranged on the scaffold body, and a diagonal bracing stabilizing mechanism is installed on the vertical poles 2, and the diagonal bracing stabilizing mechanism includes a retractable diagonal bracing rod 4 installed on the vertical poles 2, and a reinforcing connection mechanism installed between the retractable diagonal bracing rod 4 and the vertical poles 2.
[0034] The telescopic diagonal support rod 4 includes a telescopic sleeve 6 and a diagonal support rod 7 with one end sleeved in the telescopic sleeve 6 and the other end mounted on the vertical pole 2; the telescopic sleeve 6 is provided with a fastening mechanism for fixing the diagonal support rod 7 in the telescopic sleeve 6.
[0035] Based on Example 1, this second embodiment provides a more preferred structure for the telescopic diagonal brace 4. Specifically, the telescopic diagonal brace 4 includes a telescopic sleeve 6 and a diagonal brace 7 with one end inserted into the telescopic sleeve 6 and the other end mounted on the vertical pole 2. The telescopic sleeve 6 is provided with a fastening mechanism for securing the diagonal brace 7 within the telescopic sleeve 6. The diagonal brace 7 can be adjusted to extend beyond the telescopic sleeve 6, thereby adjusting the overall length of the telescopic diagonal brace 4 to accommodate uneven erection environments. Once the length of the telescopic diagonal brace 4 is adjusted, the diagonal brace 7 is secured within the telescopic sleeve 6 via the fastening mechanism, further stabilizing the entire telescopic diagonal brace 4 structure. Connecting a telescopic diagonal brace 4 to each vertical pole 2 ensures that the mobile scaffold is adaptable to uneven erection environments and maintains its overall stability.
[0036] Example 3.
[0037] like Figure 1-6 As shown, the utility model provides an adjustable mobile scaffold, including a scaffold body consisting of at least vertical poles 2 and horizontal poles 3 and a scaffolding board arranged on the scaffold body, and a diagonal bracing stabilizing mechanism is installed on the vertical poles 2, and the diagonal bracing stabilizing mechanism includes a retractable diagonal bracing rod 4 installed on the vertical poles 2, and a reinforcing connection mechanism installed between the retractable diagonal bracing rod 4 and the vertical poles 2.
[0038] The telescopic diagonal support rod 4 includes a telescopic sleeve 6 and a diagonal support rod 7 with one end sleeved in the telescopic sleeve 6 and the other end mounted on the vertical pole 2; the telescopic sleeve 6 is provided with a fastening mechanism for fixing the diagonal support rod 7 in the telescopic sleeve 6.
[0039] The fastening mechanism includes a threaded through hole 8 formed on the telescopic sleeve 6 and a bolt 9 threadedly connected to the threaded through hole 8 for abutting and fixing the diagonal support rod 7 .
[0040] This third embodiment, based on the second embodiment, provides a more preferred structure for the fastening mechanism. Specifically, the fastening mechanism includes a threaded through-hole 8 formed in the telescopic sleeve 6, and a bolt 9 threaded into the threaded through-hole 8 for abutting and securing the diagonal brace 7. To adjust the length of the telescopic diagonal brace 4, loosen the bolt 9 to freely adjust the extension of the diagonal brace 7 within the telescopic sleeve 6. Once the adjustment is complete, tighten the bolt 9 to secure the diagonal brace 7 within the telescopic sleeve 6. This simple structure and easy adjustment make it easy for any worker to operate.
[0041] Example 4.
[0042] like Figure 1-6 As shown, the utility model provides an adjustable mobile scaffold, including a scaffold body consisting of at least vertical poles 2 and horizontal poles 3 and a scaffolding board arranged on the scaffold body, and a diagonal bracing stabilizing mechanism is installed on the vertical poles 2, and the diagonal bracing stabilizing mechanism includes a retractable diagonal bracing rod 4 installed on the vertical poles 2, and a reinforcing connection mechanism installed between the retractable diagonal bracing rod 4 and the vertical poles 2.
[0043] The telescopic diagonal support rod 4 includes a telescopic sleeve 6 and a diagonal support rod 7 with one end sleeved in the telescopic sleeve 6 and the other end mounted on the vertical pole 2; the telescopic sleeve 6 is provided with a fastening mechanism for fixing the diagonal support rod 7 in the telescopic sleeve 6.
[0044] The fastening mechanism includes a threaded through hole 8 formed on the telescopic sleeve 6 and a bolt 9 threadedly connected to the threaded through hole 8 for abutting and fixing the diagonal support rod 7 .
[0045] A handle bar 10 is welded to the bolt 9 .
[0046] Based on the embodiment 3, the present embodiment 4 provides a more preferred structure of the bolt 9, specifically: a handle rod 10 is welded on the bolt 9. With this design, it is more convenient to loosen or tighten the bolt 9 and can be operated by bare hands.
[0047] Example 5.
[0048] like Figure 1-6 As shown, the utility model provides an adjustable mobile scaffold, including a scaffold body consisting of at least vertical poles 2 and horizontal poles 3 and a scaffolding board arranged on the scaffold body, and a diagonal bracing stabilizing mechanism is installed on the vertical poles 2, and the diagonal bracing stabilizing mechanism includes a retractable diagonal bracing rod 4 installed on the vertical poles 2, and a reinforcing connection mechanism installed between the retractable diagonal bracing rod 4 and the vertical poles 2.
[0049] The telescopic diagonal support rod 4 includes a telescopic sleeve 6 and a diagonal support rod 7 with one end sleeved in the telescopic sleeve 6 and the other end mounted on the vertical pole 2; the telescopic sleeve 6 is provided with a fastening mechanism for fixing the diagonal support rod 7 in the telescopic sleeve 6.
[0050] The bottom end of the telescopic sleeve 6 is covered with an anti-slip sleeve 5.
[0051] Based on Example 2, this Example 5 provides a more preferred structure of the telescopic sleeve 6, specifically: the bottom end of the telescopic sleeve 6 is covered with an anti-slip sleeve 5. By installing the anti-slip sleeve 5 on the bottom end of the telescopic sleeve 6, the mobile scaffold can be applied to more complex erection environments.
[0052] Example 6.
[0053] like Figure 1-6 As shown, the utility model provides an adjustable mobile scaffold, including a scaffold body consisting of at least vertical poles 2 and horizontal poles 3 and a scaffolding board arranged on the scaffold body, and a diagonal bracing stabilizing mechanism is installed on the vertical poles 2, and the diagonal bracing stabilizing mechanism includes a retractable diagonal bracing rod 4 installed on the vertical poles 2, and a reinforcing connection mechanism installed between the retractable diagonal bracing rod 4 and the vertical poles 2.
[0054] The telescopic diagonal support rod 4 includes a telescopic sleeve 6 and a diagonal support rod 7 with one end sleeved in the telescopic sleeve 6 and the other end mounted on the vertical pole 2; the telescopic sleeve 6 is provided with a fastening mechanism for fixing the diagonal support rod 7 in the telescopic sleeve 6.
[0055] A pair of vertical pole connecting ears A11 are provided on the vertical pole 2 and are distributed parallel to each other. The diagonal brace rod 7 is provided with a diagonal brace rod connecting ear 12 that matches the vertical pole connecting ear A11. The vertical pole connecting ear A11 and the diagonal brace rod connecting ear 12 are detachably connected by bolts.
[0056] Based on Example 2, this Example 6 provides a more preferred connection structure between the vertical poles 2 and the diagonal braces 7. Specifically, the vertical poles 2 are provided with a pair of vertical pole connecting ears A11 arranged parallel to each other, and the diagonal brace connecting ears 12 are provided on the diagonal brace 7 to match the vertical pole connecting ears A11. The vertical pole connecting ears A11 and the diagonal brace connecting ears 12 are detachably connected by bolts. Due to the complex working conditions of the mobile scaffolding installation environment, it is sometimes necessary to adjust the angle between the telescopic diagonal brace 4 and the vertical poles 2 in addition to the length of the telescopic diagonal brace 4 to meet the complex working conditions of the mobile scaffolding installation environment. When the angle needs to be adjusted, the angle between the telescopic diagonal brace 4 and the vertical poles 2 can be freely adjusted by loosening the bolts tightening the vertical pole connecting ears A11 and the diagonal brace connecting ears 12. After adjustment, the telescopic diagonal brace 4 can be tightened again to provide a stable support for the vertical poles 2.
[0057] Example 7.
[0058] like Figure 1-6As shown, the utility model provides an adjustable mobile scaffold, including a scaffold body consisting of at least vertical poles 2 and horizontal poles 3 and a scaffolding board arranged on the scaffold body, and a diagonal bracing stabilizing mechanism is installed on the vertical poles 2, and the diagonal bracing stabilizing mechanism includes a retractable diagonal bracing rod 4 installed on the vertical poles 2, and a reinforcing connection mechanism installed between the retractable diagonal bracing rod 4 and the vertical poles 2.
[0059] The telescopic diagonal support rod 4 includes a telescopic sleeve 6 and a diagonal support rod 7 with one end sleeved in the telescopic sleeve 6 and the other end mounted on the vertical pole 2; the telescopic sleeve 6 is provided with a fastening mechanism for fixing the diagonal support rod 7 in the telescopic sleeve 6.
[0060] An angle greater than 0° and less than 90° is formed between the telescopic diagonal support rod 4 and the vertical rod 2 .
[0061] Based on Example 2, Example 7 provides a more preferred connection structure between the telescopic diagonal brace 4 and the vertical pole 2. Specifically, the telescopic diagonal brace 4 and the vertical pole 2 form an angle greater than 0° and less than 90°. This design makes the support structure between the telescopic diagonal brace 4 and the vertical pole 2 more stable and secure.
[0062] Example 8.
[0063] like Figure 1-6 As shown, the utility model provides an adjustable mobile scaffold, including a scaffold body consisting of at least vertical poles 2 and horizontal poles 3 and a scaffolding board arranged on the scaffold body, and a diagonal bracing stabilizing mechanism is installed on the vertical poles 2, and the diagonal bracing stabilizing mechanism includes a retractable diagonal bracing rod 4 installed on the vertical poles 2, and a reinforcing connection mechanism installed between the retractable diagonal bracing rod 4 and the vertical poles 2.
[0064] The telescopic diagonal support rod 4 includes a telescopic sleeve 6 and a diagonal support rod 7 with one end sleeved in the telescopic sleeve 6 and the other end mounted on the vertical pole 2; the telescopic sleeve 6 is provided with a fastening mechanism for fixing the diagonal support rod 7 in the telescopic sleeve 6.
[0065] The enhanced connection mechanism includes a connecting rod 13 with one end mounted on the vertical pole 2 and the other end mounted on the telescopic sleeve 6. An angle greater than 0° and less than 90° is formed between the connecting rod 13 and the vertical pole 2.
[0066] This eighth embodiment, based on the second embodiment, provides a more preferred structure for the reinforced connection mechanism. Specifically, the reinforced connection mechanism includes a connecting rod 13 with one end mounted on the vertical pole 2 and the other end mounted on the telescopic sleeve 6. The connecting rod 13 forms an angle greater than 0° and less than 90° with the vertical pole 2. This design makes the support structure between the telescopic diagonal brace 4 and the vertical pole 2 more stable and secure.
[0067] Example 9.
[0068] like Figure 1-6 As shown, the utility model provides an adjustable mobile scaffold, including a scaffold body consisting of at least vertical poles 2 and horizontal poles 3 and a scaffolding board arranged on the scaffold body, and a diagonal bracing stabilizing mechanism is installed on the vertical poles 2, and the diagonal bracing stabilizing mechanism includes a retractable diagonal bracing rod 4 installed on the vertical poles 2, and a reinforcing connection mechanism installed between the retractable diagonal bracing rod 4 and the vertical poles 2.
[0069] The telescopic diagonal support rod 4 includes a telescopic sleeve 6 and a diagonal support rod 7 with one end sleeved in the telescopic sleeve 6 and the other end mounted on the vertical pole 2; the telescopic sleeve 6 is provided with a fastening mechanism for fixing the diagonal support rod 7 in the telescopic sleeve 6.
[0070] The enhanced connection mechanism includes a connecting rod 13 with one end mounted on the vertical pole 2 and the other end mounted on the telescopic sleeve 6. An angle greater than 0° and less than 90° is formed between the connecting rod 13 and the vertical pole 2.
[0071] A pair of vertical pole connecting ears B14 distributed parallel to each other are provided on the vertical pole 2, and one end of the connecting rod 13 is detachably connected between the two vertical pole connecting ears B14 by a bolt; a pair of telescopic sleeve connecting ears 15 distributed parallel to each other are provided on the telescopic sleeve 6, and the other end of the connecting rod 13 is detachably connected between the two telescopic sleeve connecting ears 15 by a bolt.
[0072] This ninth embodiment, based on the eighth embodiment, provides a more preferred structure for the enhanced connection mechanism. Specifically, the vertical pole 2 is provided with a pair of parallel vertical pole connecting ears B14, and one end of the connecting rod 13 is removably connected between the two vertical pole connecting ears B14 via bolts. The telescopic sleeve 6 is provided with a pair of parallel telescopic sleeve connecting ears 15, and the other end of the connecting rod 13 is removably connected between the two telescopic sleeve connecting ears 15 via bolts. This design makes the support structure between the telescopic diagonal brace 4 and the vertical pole 2 more stable and secure. It also allows for adjustment of the angle between the connecting rod 13 and the telescopic diagonal brace 4 or the vertical pole 2. The adjustment principle is the same as that for adjusting the angle between the telescopic diagonal brace 4 and the vertical pole 2, and will not be elaborated here.
[0073] Example 10.
[0074] like Figure 1-6 As shown, the utility model provides an adjustable mobile scaffold, including a scaffold body consisting of at least vertical poles 2 and horizontal poles 3 and a scaffolding board arranged on the scaffold body, and a diagonal bracing stabilizing mechanism is installed on the vertical poles 2, and the diagonal bracing stabilizing mechanism includes a retractable diagonal bracing rod 4 installed on the vertical poles 2, and a reinforcing connection mechanism installed between the retractable diagonal bracing rod 4 and the vertical poles 2.
[0075] A foot brake roller 16 is provided on the vertical pole 2 .
[0076] On the basis of embodiment 1, this embodiment 10 provides a more preferred structure of the upright pole 2, specifically: the upright pole 2 is provided with a foot brake roller 16. Such a design makes it more convenient to move the entire scaffold.
[0077] The utility model is equipped with a diagonal brace stabilizing mechanism for each upright 2, and the length of the diagonal brace is adjusted by the fastening mechanism. The detachable connection between the upright connecting ear A and the diagonal brace connecting ear can make the mobile scaffold distribute support points equal to the number of uprights 2 to the fan-shaped areas around the scaffold body, and the elevations of the above support points can all be different, thereby achieving the stabilization of the mobile scaffold, and effectively preventing the mobile scaffold from overturning due to excessive height, uneven working conditions during erection, and excessive disturbance during operation by workers. The anti-overturning ability of the mobile scaffold can be effectively improved, and the safety construction requirements on site can be met.
[0078] This utility model can be used to fix mobile scaffolds on various complex surfaces, and prevents them from tipping over due to excessive height, uneven working conditions, or excessive disturbance during operation. This utility model is particularly suitable for portal-type mobile scaffolds, as it adds diagonal supports to the vertical poles around the portal-type mobile scaffold to ensure a more stable grounding. It is highly practical and suitable for widespread promotion and application in this technical field.
[0079] Finally, it should be noted that the above embodiments are merely preferred embodiments of the present invention and are intended to illustrate the technical solutions of the present invention, not to limit the present invention, and certainly not to limit the patent scope of the present invention. Any modifications or improvements that are not of substantial significance to the main design concept and spirit of the present invention, provided that the technical problems they solve are consistent with the present invention, shall be included within the scope of protection of the present invention. Furthermore, any direct or indirect application of the technical solutions of the present invention to other related technical fields shall also be included within the scope of patent protection of the present invention.
Claims
1. An adjustable mobile scaffold, comprising a scaffold body consisting of at least vertical poles (2) and horizontal poles (3) and a scaffold board arranged on the scaffold body, characterized in that: A diagonal bracing stabilizing mechanism is installed on the vertical pole (2), and the diagonal bracing stabilizing mechanism includes a telescopic diagonal bracing rod (4) installed on the vertical pole (2), and a reinforcing connection mechanism installed between the telescopic diagonal bracing rod (4) and the vertical pole (2); The telescopic diagonal support rod (4) comprises a telescopic sleeve (6) and a diagonal support rod (7) with one end sleeved in the telescopic sleeve (6) and the other end mounted on the vertical pole (2); a fastening mechanism for fixing the diagonal support rod (7) in the telescopic sleeve (6) is provided on the telescopic sleeve (6); and an anti-slip sleeve (5) is sleeved on the bottom end of the telescopic sleeve (6); The enhanced connection mechanism comprises a connecting rod (13) with one end mounted on the vertical rod (2) and the other end mounted on the telescopic sleeve (6), wherein an angle greater than 0° and less than 90° is formed between the connecting rod (13) and the vertical rod (2); A foot brake roller (16) is provided on the vertical pole (2).
2. The adjustable mobile scaffold according to claim 1, characterized in that: The fastening mechanism comprises a threaded through hole (8) provided on the telescopic sleeve (6), and a bolt (9) threadedly connected in the threaded through hole (8) for supporting and fixing the diagonal support rod (7).
3. The adjustable mobile scaffold according to claim 2, characterized in that: A handle bar (10) is welded onto the bolt (9).
4. The adjustable mobile scaffold according to claim 1, characterized in that: A pair of vertical pole connecting ears A (11) parallel to each other are provided on the vertical pole (2); a diagonal bracing rod connecting ear (12) adapted to the vertical pole connecting ear A (11) is provided on the diagonal bracing rod (7); the vertical pole connecting ear A (11) and the diagonal bracing rod connecting ear (12) are detachably connected by bolts.
5. The adjustable mobile scaffold according to claim 1, characterized in that: An angle greater than 0° and less than 90° is formed between the telescopic diagonal support rod (4) and the vertical rod (2).
6. The adjustable mobile scaffold according to claim 1, characterized in that: A pair of mutually parallel vertical pole connecting ears B (14) are provided on the vertical pole (2), and one end of the connecting rod (13) is detachably connected between the two vertical pole connecting ears B (14) by means of bolts; a pair of mutually parallel telescopic sleeve connecting ears (15) are provided on the telescopic sleeve (6), and the other end of the connecting rod (13) is detachably connected between the two telescopic sleeve connecting ears (15) by means of bolts.
Citation Information
Cited By
Adjustable movable scaffold
CN118564028A