Construction scaffolding

CN224664086UActive Publication Date: 2026-08-21SHANGHAI CHUANQIN CONSTR ENG CO LTD
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Patent Information

Application Number
CN202522113266.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-30
Publication Date
2026-08-21
Estimated Expiration
2035-09-30

AI Technical Summary

Technical Problem

[0004]本申请的目的在于解决现有技术中的脚手架在使用过程中存在稳定性较差的问题

Benefits of technology

[0028] This utility model discloses a construction scaffold, in which the footboards of the scaffold unit can be height-adjusted with the extension and retraction of multiple telescopic support rods. The height of the footboards can be adjusted according to construction needs. Furthermore, a building connecting plate can be flipped relative to the footboards and detachably connected to the building, allowing the scaffold unit to be relatively fixed to one side of the building, increasing its stability and enhancing the safety of construction workers operating in different positions. Multiple telescopic support rods are raised or retracted via a jacking mechanism, making use more convenient and quick. The distance between the support bases can also be adjusted in the width direction of the scaffold unit, further enhancing stability. Moreover, multiple scaffold units can be arranged in an arrangement, allowing the number of units to be adjusted according to different site requirements, thus broadening its applicability.

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Abstract

The utility model discloses a building scaffold, including scaffold unit, scaffold unit includes scaffold support part, multiple telescopic support rods and footboard. Among them, the scaffold support part is used for supporting on the support surface. Multiple telescopic support rods are arranged at the scaffold support part at intervals, and each telescopic support rod can be telescopic along the height direction of the scaffold unit. The footboard is fixedly connected between the multiple telescopic support rods and can move in the height direction of the scaffold unit relative to the scaffold support part along with the telescoping of the multiple telescopic support rods. And one side of the footboard is also provided with building connection footboard, and one side of the building connection footboard is rotatably connected with one side of the footboard to make the building connection footboard can overturn relative to the footboard, and the other side of the building connection footboard is used for being detachably connected with the building. The building connection footboard of the building scaffold can overturn relative to the footboard and be detachably connected with the building, and the stability of the scaffold unit is higher.
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Description

Technical Field

[0001] This utility model relates to the field of building engineering technology, and in particular to a building scaffold. Background Technology

[0002] In the field of construction engineering, scaffolding is a commonly used tool and an essential device for working at heights. Most scaffolding on the market today consists of columns, crossbars, connecting rods, and footboards. To accommodate construction work at different heights, existing scaffolding is generally designed to be retractable and foldable in the vertical direction. When not in use, the scaffolding can be folded down; when needed for work at different heights, it needs to be extended and raised to the appropriate height. During use, scaffolding operates at considerable heights, resulting in a relatively high center of gravity. However, scaffolding is generally only supported by its base, leading to poor stability. For example, uneven ground or wind conditions during operation can easily cause swaying and instability, posing safety hazards during use.

[0003] Therefore, existing scaffolding technologies suffer from poor stability during use. Utility Model Content

[0004] The purpose of this application is to solve the problem of poor stability of existing scaffolding during use.

[0005] To address the aforementioned technical problems, this utility model discloses a construction scaffold, comprising a scaffold unit, which includes a scaffold support section, multiple telescopic support rods, and footboards. The scaffold support section is used to support a support surface. Multiple telescopic support rods are spaced apart within the scaffold support section, and each telescopic support rod can extend and retract along the height direction of the scaffold unit.

[0006] The footboard is fixedly connected between multiple telescopic support rods and can move relative to the scaffold support in the height direction of the scaffold unit as the multiple telescopic support rods extend and retract. The thickness direction of the footboard is parallel to the height direction of the scaffold unit. Furthermore, a building connection footboard is provided on one side of the footboard. One side of the building connection footboard is rotatably connected to one side of the footboard, allowing the building connection footboard to flip relative to the footboard. The other side of the building connection footboard is used for detachable connection to the building.

[0007] By adopting the above technical solution, the footboards in the scaffolding unit disclosed in this application are fixedly connected between multiple telescopic support rods, and their height can be adjusted with the extension and retraction of the multiple telescopic support rods. This design makes it more convenient for construction workers to adjust the height of the footboards according to their working position, meeting the needs of operations at different heights and improving the convenience and efficiency of construction. Furthermore, a building connection plate is also provided. When the footboards are used at different heights, the building connection plate can be flipped relative to the footboards and detachably connected to the building. This increases the attachment point in the height direction and makes the scaffolding unit relatively fixed to one side of the building, resulting in higher stability of the scaffolding unit and increasing the safety of construction workers working in different positions.

[0008] The present invention also discloses a construction scaffold, wherein multiple building connection parts are provided on the other side of the building connection platform, and the multiple building connection parts are spaced apart along the length direction of the building connection platform.

[0009] Each building connection includes a connecting plate and fastening components. The connecting plate is connected to the building connecting tread and has connecting holes for fastening components to be installed through, so that the connecting plate is detachably and fixedly connected to the building through the fastening components.

[0010] By adopting the above technical solution, multiple building connection parts can be set up for multi-point positioning and fixing, which increases the connection strength. The building connection parts all include connection plates and fastening components. Their structure is simple and easy to install and disassemble, resulting in higher efficiency.

[0011] The present invention also discloses a construction scaffold, wherein a connecting shaft is provided between one side of the building connecting platform and one side of the footboard, the connecting shaft extends along the length direction of the building connecting platform, and one side of the footboard is also provided with multiple platform connectors, the multiple platform connectors being spaced apart along the axial direction of the connecting shaft.

[0012] One end of each pedal connector is connected to the connecting shaft, and the other end is fixedly mounted on one side of the building connecting pedal, so that the building connecting pedal can be flipped relative to the foot pedal.

[0013] By adopting the above technical solution, and setting a connecting shaft and multiple pedal connectors, the structural stability of the building connecting pedals and foot pedals can be enhanced. When multiple pedal connectors are set, the connection strength is also higher, and the flipping is more flexible and smooth.

[0014] The present invention also discloses a construction scaffold, wherein both the footboard and the building connecting plate are rectangular plates, and the building connecting plate can switch between a folded state and an open state relative to the footboard.

[0015] Specifically, when the building connecting tread is folded relative to the foot pedal, the building connecting tread overlaps and rests against a surface of the foot pedal along its thickness direction. When the building connecting tread is open relative to the foot pedal, the building connecting tread and the foot pedal are placed flush.

[0016] This utility model also discloses a construction scaffold, in which four telescopic support rods are provided on the scaffold support section. Along the height direction of the scaffold unit, multiple foot pedals are spaced apart on the four telescopic support rods, and each foot pedal is fixed to one of the four telescopic support rods. Each telescopic support rod includes multiple telescopic sleeve rods that can be interlocked with each other.

[0017] Furthermore, each telescopic support rod is also equipped with a jacking mechanism, which includes a drive motor and a jacking screw. The jacking screw is located at the output end of the drive motor and is situated inside the telescopic support rod. The drive motor can drive the jacking screw to lift, causing the multiple telescopic sleeves of the telescopic support rod to rise sequentially.

[0018] By adopting the above technical solution, the structure is more stable when four telescopic support rods are set to support the foot pedals. The jacking mechanism can easily raise multiple telescopic sleeve rods in sequence. The degree of automation is higher when driven by the drive motor. The scaffolding unit is faster and more convenient to use.

[0019] This utility model also discloses a construction scaffold, the scaffold support part comprising: a support frame, with multiple telescopic support rods spaced apart on the support frame; a bottom support part, used to support the support surface, and located at the bottom of the support frame away from the multiple telescopic support rods; and reinforcing struts, inclinedly arranged within the support frame and fixedly connected to the support frame.

[0020] This utility model also discloses a construction scaffold, the bottom support of which includes a telescopic rod and a support base. One end of the telescopic rod is connected to a support frame, and the other end is connected to the support base. The support base is used to support the support surface. The support base can be adjusted relative to the telescopic rod in the height direction of the scaffold unit, and the telescopic rod can adjust the distance between the support base and the support frame in the width direction of the scaffold unit.

[0021] By adopting the above technical solution, strengthening the struts can improve the structural strength and stability of the scaffolding support. Furthermore, by setting telescopic rods in the bottom support to adjust the distance between the support seat and the support frame in the width direction of the scaffolding unit, the stability of the scaffolding unit can be further improved.

[0022] The present invention also discloses a construction scaffold, wherein the scaffold unit further includes a top support, which is fixedly installed between the tops of multiple telescopic support rods, and multiple lifting rings are spaced apart on the top support.

[0023] By adopting the above technical solution, the top of the scaffolding unit can be hoisted or fixed to other components using lifting rings, further improving the stability of the scaffolding unit during use.

[0024] The present invention also discloses a construction scaffold, which includes multiple scaffold units. The multiple scaffold units are arranged on a plane perpendicular to the height direction of the scaffold units. Any two adjacent scaffold units are detachably fixedly connected by multiple scaffold connecting components. The multiple scaffold connecting components are spaced apart along the height and width directions of the scaffold units.

[0025] Each scaffolding connection assembly includes two scaffolding unit connectors that are nested together, and also includes fastening members for fixing the two scaffolding unit connectors, with the two scaffolding unit connectors located on two adjacent scaffolding units respectively.

[0026] Using the above technical solution, multiple scaffolding units can be arranged and set up, and any two can be connected by scaffolding connection components. It can be expanded and installed according to construction needs, and the number of scaffolding units can be adjusted according to different site requirements, making it more widely applicable.

[0027] In summary, the beneficial effects of this utility model are:

[0028] This utility model discloses a construction scaffold, in which the footboards of the scaffold unit can be height-adjusted with the extension and retraction of multiple telescopic support rods. The height of the footboards can be adjusted according to construction needs. Furthermore, a building connecting plate can be flipped relative to the footboards and detachably connected to the building, allowing the scaffold unit to be relatively fixed to one side of the building, increasing its stability and enhancing the safety of construction workers operating in different positions. Multiple telescopic support rods are raised or retracted via a jacking mechanism, making use more convenient and quick. The distance between the support bases can also be adjusted in the width direction of the scaffold unit, further enhancing stability. Moreover, multiple scaffold units can be arranged in an arrangement, allowing the number of units to be adjusted according to different site requirements, thus broadening its applicability. Attached Figure Description

[0029] Figure 1 This is a structural schematic diagram of the scaffolding unit of the building scaffolding provided in Embodiment 1 of this utility model in the unfolded and used state;

[0030] Figure 2 This is a structural schematic diagram of the scaffolding unit of the building scaffolding provided in Embodiment 1 of this utility model in a folded and stored state.

[0031] Figure 3A partial structural diagram of the building connection pedal of the construction scaffolding provided by this utility model when flipped open relative to the foot pedal;

[0032] Figure 4 A partial structural diagram of the scaffolding support section of the building scaffolding provided by this utility model;

[0033] Figure 5 This is a schematic diagram of a construction scaffolding provided in Embodiment 2 of the present invention, which consists of 5 scaffolding units arranged in a folded and stored state.

[0034] Figure 6 A schematic diagram of the structure of five scaffolding units of the building scaffolding provided in Embodiment 2 of this utility model in the unfolded state;

[0035] Figure 7 This is a schematic diagram of the structure of the building connecting pedals of the five scaffolding units of the building scaffolding provided in Embodiment 2 of this utility model, with the pedals flipped open relative to the foot pedals.

[0036] Explanation of reference numerals in the attached figures:

[0037] 10. Scaffolding unit;

[0038] 100. Scaffolding support unit;

[0039] 110. Support frame; 130. Reinforcing strut;

[0040] 120. Bottom support section;

[0041] 121. Telescopic pole; 122. Support base;

[0042] 200. Telescopic support rod;

[0043] 300. Foot pedal;

[0044] 400. Building connecting steps;

[0045] 410. Building connection parts;

[0046] 411. Connecting plate; 412. Fastening component;

[0047] 420. Connecting shaft; 430. Pedal connector;

[0048] 500. Top bracket;

[0049] 510. Hanging rings;

[0050] 600. Scaffolding connection components;

[0051] 610. Scaffolding unit connectors;

[0052] A. Height direction of the scaffolding unit. Detailed Implementation

[0053] Scaffolding is widely used in the construction industry. When working with common scaffolding, it is necessary to extend and raise the scaffolding to a certain height. At this time, the center of gravity of the scaffolding is relatively high. However, scaffolding is generally only supported by the base, so there is a problem of poor stability.

[0054] To solve the above-mentioned technical problems, this application discloses a construction scaffold that can extend and retract in the vertical direction to adjust its height. Furthermore, a flip-up building connection plate is provided on one side of the footboard of the scaffold unit, which can be connected to the building. With such a structure, when the footboard is extended to a certain height and work is carried out, the building connection plate is connected to the building, making the construction scaffold more stable and more convenient to use.

[0055] Next, a clearer and more complete explanation will be given regarding the construction scaffolding disclosed in this application:

[0056] Example 1

[0057] This embodiment discloses a construction scaffold, including a scaffold unit 10. Please refer to [link / reference]. Figure 1 Each scaffolding unit 10 can be used independently. Each scaffolding unit 10 includes a scaffolding support 100, multiple telescopic support rods 200, and footboards 300. The scaffolding support 100 is used to support a support surface, typically a horizontal ground surface or platform, and is placed horizontally on the support surface. Multiple telescopic support rods 200 are spaced apart from the scaffolding support 100, and each telescopic support rod 200 can extend and retract along the height direction of the scaffolding unit 10. Figure 1 Shown in direction A.

[0058] It should be noted that, in this embodiment, the function of the scaffold support 100 is to support multiple telescopic support rods 200 and footboards 300. Therefore, the structure of the scaffold support 100 can be a support frame, support column, support seat, etc., and those skilled in the art can design and select according to actual needs.

[0059] Further, please see Figure 1The foot pedal 300 is fixedly connected between multiple telescopic support rods 200 and can move relative to the scaffold support 100 in the height direction of the scaffold unit 10 as the multiple telescopic support rods 200 extend and retract. The thickness direction of the foot pedal 300 is parallel to the height direction of the scaffold unit 10. Furthermore, a building connection pedal 400 is provided on one side of the foot pedal 300. One side of the building connection pedal 400 is rotatably connected to one side of the foot pedal 300, allowing the building connection pedal 400 to flip relative to the foot pedal 300. The other side of the building connection pedal 400 is used for detachable connection to the building. It should be noted that... Figure 1 The connecting tread plate 400 of the building is stacked on one side of the upper surface of the foot tread plate 300, that is to say Figure 1 The building's connecting step 400 was not flipped open; after flipping it open, it would appear as follows: Figure 3 A partial structural diagram is shown.

[0060] Specifically, in this embodiment, when the multiple telescopic support rods 200 are raised and extended relative to the scaffold support part 100, as... Figure 1 As shown, when the multiple telescopic support rods 200 are folded and retracted relative to the scaffold support part 100, as... Figure 2 As shown.

[0061] In this embodiment, one or more foot pedals 300 can be provided. For example, when one foot pedal 300 is provided, the foot pedal 300 is fixedly installed near the top of multiple telescopic support rods 200, so that when the telescopic support rods 200 are raised and unfolded, the foot pedal 300 can be located at a higher position. Two, three, five, or other numbers of foot pedals 300 can also be provided, for example, see [reference needed]. Figure 1 and Figure 2 In this embodiment, five foot pedals 300 are preferably provided, and the foot pedal 300 located at the bottom in the height direction is fixed on the scaffold support 100. The remaining four foot pedals 300 can be raised and lowered as the telescopic support rod 200 extends and retracts, thereby realizing the adjustment of the foot pedals 300. Furthermore, weight-reducing holes can be provided on the foot pedals 300 and the building connecting pedal 400.

[0062] Furthermore, in this embodiment, at least four telescopic support rods 200 are provided. When the foot pedal 300 is rectangular, the four telescopic support rods 200 are respectively fixed to the four corners of the rectangular foot pedal 300. The four telescopic support rods 200 can provide better support for the foot pedal 300 and ensure its structural connection strength. Furthermore, in order to improve the connection strength between the foot pedal 300 and the telescopic support rods 200, six, eight or even more telescopic support rods 200 can be provided, spaced apart on the periphery of the foot pedal 300. Those skilled in the art can design and adjust according to actual needs, and this embodiment does not make specific limitations in this regard.

[0063] It should be noted that each telescopic support rod 200 can be set as, for example, an electric telescopic rod, a hydraulic telescopic rod, or a telescopic rod of other structures, as long as it can be extended and retracted in the height direction of the scaffolding unit 10.

[0064] Furthermore, each building connecting pedal 400 and foot pedal 300 can be rotatably connected via a pivot, connecting shaft, hinge, etc. Each building connecting pedal 400 can be detachably connected to one side of the building via fastening components such as bolts and screws, or via clamps, buckles, etc. For example, it can be detachably connected to the steel bars on one side of the building via clamps.

[0065] With this structural design, the footboard 300 in the scaffolding unit 10 is fixedly connected between multiple telescopic support rods 200, and its height can be adjusted as the multiple telescopic support rods 200 extend and retract. This design makes it easier for construction workers to adjust the height of the footboard 300 according to their working position, meeting the needs of different heights and improving the convenience and efficiency of construction. Furthermore, a building connecting footboard 400 is provided. When the footboard 300 is used at different heights, the building connecting footboard 400 can be flipped relative to the footboard 300 and detachably connected to the building. This adds an attachment point in the height direction of the scaffolding unit 10 and makes the scaffolding unit 10 relatively fixed to one side of the building, increasing the stability of the scaffolding unit 10 and improving the safety of construction workers working in different positions.

[0066] This embodiment also discloses a construction scaffolding; please refer to [link / reference]. Figure 3 On the other side of the building connecting tread 400, a plurality of building connecting parts 410 are provided, and the plurality of building connecting parts 410 are spaced apart along the length direction of the building connecting tread 400. For example, two, three, four or even more building connecting parts 410 may be provided, but this embodiment does not specifically limit this.

[0067] Please see Figure 3Each building connection 410 includes a connecting plate 411 and a fastening member 412. The connecting plate 411 is connected to the building connection pedal 400. The connecting plate 411 is provided with a connecting hole for the fastening member 412 to be installed through, so that the connecting plate 411 is detachably and fixedly connected to the building through the fastening member 412.

[0068] In this embodiment, the connecting plate 411 can be a metal plate, and the fastening component 412 can be a bolt, expansion screw, etc. When connecting the building, each building connection part 410 can be pre-drilled on one side of the building, and then the connecting plate 411 and the building are made to fit together so that the connecting hole is aligned with the hole on the building. Finally, the connecting plate 411 and the building are fastened together by the fastening component 412. When the scaffolding is finished, the fastening component 412 between the building and the connecting plate 411 can be removed.

[0069] This structural design allows for multi-point positioning and fixing of multiple building connection parts 410, increasing connection strength. Each building connection part 410 includes a connecting plate 411 and a fastening component 412. Its structure is simple and easy to install and disassemble, resulting in higher efficiency.

[0070] See further Figure 3 When the building connecting pedal 400 is in the open state relative to the foot pedal 300, a connecting shaft 420 is provided between one side of the building connecting pedal 400 and one side of the foot pedal 300. The connecting shaft 420 extends along the length direction of the building connecting pedal 400, and a plurality of pedal connectors 430 are also provided on one side of the foot pedal 300. The plurality of pedal connectors 430 are spaced apart axially on the connecting shaft 420.

[0071] One end of each pedal connector 430 is connected to the connecting shaft 420, and the other end is fixedly disposed on one side of the building connecting pedal 400, so that the building connecting pedal 400 is rotatably connected relative to the foot pedal 300.

[0072] In this embodiment, the connecting shaft 420 can extend through the length of the building connecting pedal 400, or multiple connecting shafts can be spaced apart along the length of the building connecting pedal 400. The pedal connector 430 can be a common hinge, etc. In this embodiment, one end of the pedal connector 430 is mounted on the connecting shaft 420, and the other end is fixed to the building connecting pedal 400 by bolts. Thus, as the connecting shaft 420 rotates, the pedal connector 430 can also drive the building connecting pedal 400 to rotate. In this embodiment, this structural design allows the building connecting pedal 400 to rotate 180 degrees and has high stability after being flipped 180 degrees open, so that the building connecting pedal 400 can switch between folded and flipped open states relative to the foot pedal 300. The number of pedal connectors 430 can be 2, 3, 4 or even more, which is not specifically limited in this embodiment.

[0073] This structural design, with the connecting shaft 420 and multiple pedal connectors 430, enhances the structural stability of the building connecting pedal 400 and foot pedal 300. The connection strength is also higher when multiple pedal connectors 430 are provided, and the flipping is more flexible and smooth.

[0074] This embodiment also discloses a construction scaffolding. See [link to relevant documentation]. Figure 1 and Figure 3 Both the foot pedal 300 and the building connecting pedal 400 are rectangular plates, and the building connecting pedal 400 can switch between a folded state and an open state relative to the foot pedal 300. In this embodiment, the area of ​​the building connecting pedal 400 is preferably smaller than the area of ​​the foot pedal 300.

[0075] When the building connecting tread 400 is folded relative to the foot pedal 300, the building connecting tread 400 overlaps and abuts against a surface of the foot pedal 300 along its thickness direction. When the building connecting tread 400 is open relative to the foot pedal 300, the building connecting tread 400 and the foot pedal 300 are placed flush and then fixedly connected to the building via the building connecting part 410.

[0076] This embodiment also discloses a construction scaffolding; please refer to [link / reference]. Figure 1The scaffolding support section 100 is equipped with four telescopic support rods 200. Along the height direction of the scaffolding unit 10, multiple foot pedals 300 are spaced apart on the four telescopic support rods 200, and each foot pedal 300 is fixed to one of the four telescopic support rods 200. Each telescopic support rod 200 includes multiple telescopic sleeves that can be interlocked. In this embodiment, setting the telescopic support rods 200 as interlocking telescopic sleeves facilitates fixing the foot pedals 300 to each telescopic sleeve, so that when the telescopic sleeve is lifted, multiple foot pedals 300 can be lifted sequentially.

[0077] Furthermore, each telescopic support rod 200 is also equipped with a pushing mechanism, which includes a drive motor and a pushing screw. The pushing screw is located at the output end of the drive motor and is situated inside the telescopic support rod 200. The drive motor can drive the pushing screw to lift, thereby causing the multiple telescopic sleeves of the telescopic support rod 200 to rise sequentially.

[0078] In another possible implementation, the jacking mechanism can also be a hydraulically driven device, such as a hydraulic pump and a jacking rod. The hydraulic pump drives the jacking rod to rise, causing the multiple telescopic sleeves of the telescopic support rod 200 to rise sequentially. Those skilled in the art can design and select according to actual needs, and this embodiment does not limit it to a single one.

[0079] With this structural design, the structure is more stable when four telescopic support rods 200 support the foot pedals 300. The jacking mechanism can easily raise multiple telescopic rods in sequence. The degree of automation is higher when driven by the drive motor. The scaffolding unit 10 is quicker and more convenient to use.

[0080] This embodiment also discloses a construction scaffolding; please refer to [link / reference]. Figure 1 and Figure 4 The scaffolding support 100 includes a support frame 110, with multiple telescopic support rods 200 spaced apart on the support frame 110. In this embodiment, the support frame 110 is configured as a rectangular frame structure, and a reinforcing crossbar is provided at the bottom to improve the structural strength of the support frame 110. A reinforcing strut 130 is also provided, which is inclined within the support frame 110 and fixedly connected to it. See also... Figure 1 The reinforcing strut 130 is inclined and set inside the support frame 110 to form a triangular frame, which has the advantage of higher structural stability.

[0081] The bottom support portion 120 is used to support the support surface, and is located at the bottom of the support frame 110 away from the multiple telescopic support rods 200. The bottom support portion 120 includes a telescopic rod 121 and a support base 122. One end of the telescopic rod 121 is connected to the support frame 110, and the other end is connected to the support base 122, which supports the support surface. The support base 122 is adjustable relative to the telescopic rod 121 in the height direction of the scaffolding unit 10. (See [link to relevant documentation]). Figure 4 The support base 122 can be height adjusted, and the telescopic rod 121 can adjust the distance between the support base 122 and the support frame 110 in the width direction of the scaffolding unit 10. Adjusting the telescopic rod 121 in the width direction of the scaffolding unit 10 can make the scaffolding unit 10 more stable when supported. In this embodiment, multiple adjustment holes and adjustment parts can be evenly and spaced on the telescopic rod 121. After the telescopic rod 121 is adjusted, it can be fixed by the adjustment parts.

[0082] With this structural design, the reinforcing strut 130 can improve the structural strength and stability of the scaffolding support 100. Furthermore, the telescopic rod 121 is set in the bottom support 120 to adjust the distance between the support seat 122 and the support frame 110 in the width direction of the scaffolding unit 10, so as to make the scaffolding unit 10 more stable.

[0083] This embodiment also discloses a construction scaffolding; please refer to [link / reference]. Figure 1 The scaffolding unit 10 also includes a top support 500, which is fixedly installed between the tops of multiple telescopic support rods 200, and multiple lifting rings 510 are spaced apart on the top support 500.

[0084] This structural design allows for the installation or fixing of lifting rings 510 at the top of the scaffolding unit 10, further enhancing its stability during use. Furthermore, ropes or cables can be attached to the lifting rings 510. After use, releasing the ropes or cables allows the scaffolding unit 10 to lower and retract under its own weight, thus allowing the telescopic support rod 200 to recover. Figure 1 The state shown is reduced to recovery Figure 2 The state shown.

[0085] Example 2

[0086] This embodiment discloses a construction scaffold, which includes multiple scaffold units 10, each of which is identical to the scaffold unit 10 in Embodiment 1. The multiple scaffold units 10 are arranged in a plane perpendicular to the height direction of the scaffold units 10. Any two adjacent scaffold units 10 are detachably and fixedly connected by multiple scaffold connecting components 600, which are spaced apart along the height and width directions of the scaffold units 10.

[0087] It should be noted that construction scaffolding can be composed of 2, 3, 5, 6, or even more scaffolding units 10 that can be detached and fixed, for example, see [link to relevant documentation]. Figure 5 In this embodiment, the building scaffolding consists of 5 scaffolding units 10, which makes the overall width of the building scaffolding longer.

[0088] Further, see Figure 3 and Figure 4 Each scaffolding connection assembly 600 includes two scaffolding unit connectors 610 that are nested together, and also includes fastening members for fixing the two scaffolding unit connectors 610. The two scaffolding unit connectors 610 are located on two adjacent scaffolding units 10, and the fastening members can be bolts, rivets, screws, etc.

[0089] With this structural design, multiple scaffolding units 10 can be arranged and set up, and any two can be connected by scaffolding connection components 600. It can be expanded and installed according to construction needs, and the number of scaffolding units 10 can be adjusted according to different site requirements, making it more widely applicable.

[0090] Further, see Figures 5-7 When the construction scaffolding disclosed in this embodiment is composed of multiple scaffolding units 10, its usage steps are the same as those for a single scaffolding unit 10, as follows in the initial state: Figure 5 As shown, then the multiple telescopic support rods 200 of each scaffolding unit 10 are simultaneously lifted up to the working height, at which point... Figure 6 As shown, at this point, the building connecting step 400 and the foot step 300 are pressed together, meaning the building connecting step 400 is stacked relative to the foot step 300. Then, the building connecting step 400 is rotated 180 degrees, resulting in the following configuration: Figure 7 As shown, the building connecting tread plate 400 and the building connection are then used for construction.

[0091] In summary, this utility model discloses a construction scaffold, wherein the footboard 300 can be height-adjusted with the extension and retraction of multiple telescopic support rods 200. The height of the footboard 300 can be adjusted according to construction needs. Furthermore, a building connecting footboard 400 can be flipped relative to the footboard 300 and detachably connected to the building, making the scaffold unit 10 relatively fixed to one side of the building, thus increasing the stability of the scaffold unit 10 and enhancing the safety of construction workers operating in different positions. The multiple telescopic support rods 200 are raised or retracted by a jacking mechanism, making them more convenient and faster to use. Figure 4 Furthermore, the distance of the telescopic rods 121 can be adjusted in the width direction of the scaffolding unit 10, thereby adjusting the distance of the support base in the width direction of the scaffolding unit 10, which improves the stability of the scaffolding unit 10. Multiple scaffolding units 10 can also be arranged in a specific configuration, allowing the number of scaffolding units 10 to be adjusted according to different site requirements, thus broadening its applicability.

[0092] It should be noted that, in addition to the specific embodiments described above, those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. Although the description of this utility model is presented in conjunction with preferred embodiments, this does not mean that the features of this utility model are limited to that embodiment. On the contrary, the purpose of describing the utility model in conjunction with the embodiments is to cover other options or modifications that may be derived based on the claims of this utility model. In order to provide a deep understanding of this utility model, many specific details are included in the above description, and this utility model may also be implemented without using these details. In addition, in order to avoid confusion or obscuring the focus of this utility model, some specific details will be omitted in the description. It should be noted that, unless otherwise specified, the embodiments and features in the embodiments of this utility model can be combined with each other.

[0093] It should be noted that in this specification, similar reference numerals and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.

[0094] In the description of this embodiment, it should be noted that the terms "upper", "lower", "inner", "bottom", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship that the utility model product is usually placed in during use. They are only for the convenience of describing the 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 the utility model.

[0095] The terms “first”, “second”, etc., are used only to distinguish descriptions and should not be interpreted as indicating or implying relative importance.

[0096] In the description of this embodiment, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set up," "connected," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this embodiment based on the specific circumstances.

[0097] Although the present invention has been illustrated and described with reference to certain preferred embodiments, those skilled in the art should understand that the above description is a further detailed explanation of the present invention in conjunction with specific embodiments, and should not be construed as limiting the specific implementation of the present invention to these descriptions. Those skilled in the art can make various changes in form and detail, including some simple deductions or substitutions, without departing from the spirit and scope of the present invention.

Claims

1. A type of construction scaffolding, characterized in that, Includes a scaffolding unit, the scaffolding unit comprising: Scaffolding support section, used to support the support surface; Multiple telescopic support rods are spaced apart at the scaffold support section, and each telescopic support rod can extend and retract along the height direction of the scaffold unit; The foot pedal is fixedly connected between the multiple telescopic support rods and can move relative to the scaffold support part in the height direction of the scaffold unit as the multiple telescopic support rods extend and retract. The thickness direction of the foot pedal is parallel to the height direction of the scaffold unit. Furthermore, a building connection pedal is provided on one side of the foot pedal. One side of the building connection pedal is rotatably connected to one side of the foot pedal so that the building connection pedal can be flipped relative to the foot pedal. The other side of the building connection pedal is used for detachable connection with the building.

2. The construction scaffolding as described in claim 1, characterized in that, On the other side of the building connecting tread, a plurality of building connecting parts are provided, and the plurality of building connecting parts are spaced apart along the length direction of the building connecting tread; wherein Each of the building connections includes a connecting plate and a fastening member. The connecting plate is connected to the building connection tread and has a connecting hole for the fastening member to be installed through, so that the connecting plate is detachably and fixedly connected to the building through the fastening member.

3. The construction scaffolding as described in claim 1, characterized in that, A connecting shaft is provided between one side of the building connecting pedal and one side of the foot pedal. The connecting shaft extends along the length direction of the building connecting pedal, and a plurality of pedal connectors are also provided on one side of the foot pedal. The plurality of pedal connectors are spaced apart along the axial direction of the connecting shaft. in One end of each of the pedal connectors is connected to the connecting shaft, and the other end is fixedly disposed on one side of the building connecting pedal, so that the building connecting pedal is rotatably connected relative to the foot pedal.

4. The construction scaffolding as described in claim 1, characterized in that, Both the foot pedal and the building connecting pedal are rectangular plates, and the building connecting pedal can switch between a folded state and an open state relative to the foot pedal; in When the building connecting pedal is in the folded state relative to the foot pedal, the building connecting pedal overlaps and rests against a surface of the foot pedal along its thickness direction; When the building connecting pedal is in the open state relative to the foot pedal, the building connecting pedal is placed flush with the foot pedal.

5. The construction scaffolding as described in claim 1, characterized in that, The scaffolding support section is equipped with four telescopic support rods. Along the height direction of the scaffolding unit, multiple footboards are spaced apart on the four telescopic support rods, and each footboard is fixed to one of the four telescopic support rods. Each of the telescopic support rods includes multiple telescopic sleeve rods that can be nested together.

6. The construction scaffolding as described in claim 1, characterized in that, Each of the telescopic support rods is further provided with a pushing mechanism, which includes a drive motor and a pushing screw. The pushing screw is located at the output end of the drive motor and is situated inside the telescopic support rod. The drive motor can drive the push screw to rise, causing the multiple telescopic sleeves of the telescopic support rod to rise sequentially.

7. The construction scaffolding as described in claim 1, characterized in that, The scaffolding support includes: A support frame, wherein the plurality of telescopic support rods are spaced apart on the support frame; A bottom support portion is provided to support the support surface, and the bottom support portion is located at the bottom of the support frame away from the plurality of telescopic support rods; A reinforcing strut is provided, which is inclinedly arranged inside the support frame and fixedly connected to the support frame.

8. The construction scaffolding as described in claim 7, characterized in that, The bottom support includes a telescopic rod and a support base. One end of the telescopic rod is connected to the support frame, and the other end is connected to the support base. The support base is used to support the support surface. The support base can be adjusted relative to the telescopic rod in the height direction of the scaffold unit, and the telescopic rod can adjust the distance of the support base relative to the support frame in the width direction of the scaffold unit.

9. The construction scaffolding as described in claim 1, characterized in that, The scaffolding unit also includes a top support, which is fixedly installed between the tops of the multiple telescopic support rods, and multiple lifting rings are spaced apart on the top support.

10. The construction scaffolding as described in any one of claims 1-9, characterized in that, The construction scaffolding includes multiple scaffolding units arranged in a plane perpendicular to the height direction of each scaffolding unit. Any two adjacent scaffolding units are detachably and fixedly connected by multiple scaffolding connecting components, which are spaced apart along the height and width directions of the scaffolding units. Each of the scaffolding connection assemblies includes two scaffolding unit connectors that are nested together, and also includes fastening members for fixing the two scaffolding unit connectors, with the two scaffolding unit connectors located on two adjacent scaffolding units respectively.