Building component storage device
By setting up upper and lower supports and a hoisting mechanism in the storage device, the problem of mixed scaffolding storage is solved, and the scaffolding can be stored in a classified manner and retrieved conveniently.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG ZHONGNAN ELECTROMECHANICAL INTELLIGENT TECH
- Filing Date
- 2025-01-10
- Publication Date
- 2026-04-17
AI Technical Summary
In existing technologies, scaffolding storage devices store scaffolding of different lengths together, making it difficult to quickly retrieve short scaffolding.
Design a building component storage device, including upper and lower supports for storing scaffolding of different lengths, and equipped with a hoisting mechanism for hoisting the longer scaffolding from the lower layer to the outside of the storage supports.
It enables the categorized storage of scaffolding, simplifies the process of retrieving short scaffolding, and improves retrieval efficiency.
Smart Images

Figure CN224131590U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of building technology, and specifically relates to a building component storage device. Background Technology
[0002] Scaffolding is a working platform erected to ensure the smooth progress of various construction processes. It is widely used in building construction, decoration, equipment installation, and other fields. After the completion of a construction project, the scaffolding needs to be properly stored for future use.
[0003] Current scaffolding storage devices all use supports to store all types of scaffolding together. When a shorter scaffolding is needed, it is not easy to retrieve the shorter scaffolding because it is mixed with the longer scaffolding, making it difficult to find. Utility Model Content
[0004] In view of the above analysis, the present invention aims to provide a building component storage device to solve one or more of the above-mentioned problems existing in the prior art.
[0005] The objective of this invention is achieved as follows:
[0006] A building component storage device, comprising
[0007] The storage rack has two layers, the upper layer being used to store the first tubular object;
[0008] The lower layer is used to store the second tubular object, and the first tubular object is shorter than the second tubular object;
[0009] A hoisting mechanism, installed on the lower support, is used to hoist the second tubular object to the outside of the storage support.
[0010] In the building component storage device provided in this application embodiment, the storage bracket includes a support arm, a slide rail, support legs, and a pad. The support legs include two legs, and the two ends of the two support legs in opposite directions are respectively connected to the support arm in parallel. The slide rail is respectively connected to the two opposing support legs. The pad is slidably connected to two parallel telescopic slide rails, and the pad includes two pads.
[0011] In the building component storage device provided in the embodiments of this application, the two ends of the cushion are provided with side rails, the side rails are hinged to the cushion, and the side rails are locked or released by a locking component.
[0012] In the building component storage device provided in this application embodiment, the locking assembly includes a locking rod and a insert plate. The insert plate is inserted into a through groove opened on the cushion and can slide relative to the through groove. The insert plate is provided with a first groove and a second groove. The first groove communicates with the second groove. The width of the first groove is greater than the width of the second groove. The first groove is located at the edge of the insert plate. The first groove and the second groove can both pass through the insertion position based on the sliding of the insert plate. When the side rail is in a vertical state, the locking rod moves to the insertion position, and the locking rod is inserted with the second groove at the insertion position.
[0013] In the building component storage device provided in the embodiments of this application, the bottom of the slide rail is provided with a cross slide, and the hoisting mechanism is provided on the cross slide, the hoisting mechanism including hoisting grippers.
[0014] In the building component storage device provided in the embodiments of this application, an external frame is also connected to one of the legs. The external frame is located between the two legs. One end of the second tubular object is attached to the external frame, and the other end is attached to the other leg. The length of the second tubular object is shorter than the distance between the two legs.
[0015] In the building component storage device provided in the embodiments of this application, the two ends of the external frame are provided with heightening components.
[0016] Compared with the prior art, the present invention can achieve at least the following beneficial effects:
[0017] This invention provides a building component storage device, including a storage support with upper and lower layers. The upper layer stores a first tubular object, and the lower layer stores a second tubular object, where the first tubular object is shorter than the second. A hoisting mechanism is mounted on the lower support layer for hoisting the second tubular object to the outside of the storage support layer. By dividing the storage support into upper and lower layers, with the lower layer storing the second tubular object (i.e., longer scaffolding) and the upper layer storing the first tubular object (i.e., shorter scaffolding), scaffolding can be stored in a categorized manner. The hoisting mechanism facilitates the removal of scaffolding from the lower layer, where the space is limited and difficult for personnel to maneuver; the hoisting mechanism makes removal much more convenient. Attached Figure Description
[0018] To more clearly illustrate the technical solutions in the embodiments of this specification or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in the embodiments of this specification. For those skilled in the art, other drawings can be obtained based on these drawings.
[0019] Figure 1 Schematic diagram of the building component storage device provided by the present invention Figure 1 ;
[0020] Figure 2 Schematic diagram of the building component storage device provided by the present invention Figure 2 .
[0021] Figure label:
[0022] 10. Storage bracket; 11. First tubular object; 12. Second tubular object;
[0023] 20. Lifting mechanism;
[0024] 30. Support arm; 31. Slide rail; 32. Support leg; 33. Pad; 34. Side rail; 35. Cross carriage;
[0025] 40. Locking assembly; 401. Locking rod; 402. Insert plate; 403. First groove;
[0026] 50. External rack. Detailed Implementation
[0027] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. It should be noted that, unless otherwise specified, the implementation methods and features in the implementation methods in this disclosure can be combined, separated, interchanged, and / or rearranged. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0028] In the accompanying drawings, the dimensions and relative dimensions of components may be exaggerated for clarity and / or descriptive purposes. When exemplary embodiments can be implemented differently, a specific process sequence may be performed in a different order than that described. For example, two consecutively described processes may be performed substantially simultaneously or in the reverse order of their description. Furthermore, the same reference numerals denote the same components.
[0029] The terminology used herein is for the purpose of describing particular embodiments and is not intended to be limiting. As used herein, unless the context clearly indicates otherwise, the singular forms “a” and “the” are intended to include the plural forms as well. Furthermore, when the terms “comprising” and / or “including” and variations thereof are used in this specification, it indicates the presence of the stated features, integrals, steps, operations, parts, components, and / or groups thereof, but does not exclude the presence or addition of one or more other features, integrals, steps, operations, parts, components, and / or groups thereof. It should also be noted that, as used herein, the terms “substantially,” “about,” and other similar terms are used as approximate terms rather than as terms of degree, thus explaining the inherent biases in measurements, calculated values, and / or provided values that would be recognized by one of ordinary skill in the art.
[0030] A specific embodiment of the present invention, such as Figure 1-2 As shown, a building component storage device is disclosed, comprising:
[0031] The storage rack 10 has two layers, the upper layer being used to store the first tubular object 11;
[0032] The lower layer is used to store the second tubular object, and the first tubular object 11 is shorter than the second tubular object;
[0033] The hoisting mechanism 20 is installed on the lower support and is used to hoist the second tubular object to the outside of the storage support 10.
[0034] In this embodiment, a specific structure of the hoisting mechanism 20 is given. Other types of structures that can achieve the same function are also acceptable. The hoisting gripper structure includes the following:
[0035] I. Overall Structure
[0036] The lifting gripper mainly consists of a fixed arm, a movable arm, a drive mechanism, a clamping part, and a connecting part.
[0037] II. Fixed Arm
[0038] The fixed arm is a rigid structure made of high-strength steel, with one end connected to the connecting part and the other end connected to the drive mechanism. Reinforcing ribs are installed inside the fixed arm to enhance its structural strength and load-bearing capacity.
[0039] III. Movable Arm
[0040] The movable arm is also a rigid structure, with one end hinged to the fixed arm via a pin, and the other end connected to the clamping part. Under the action of the drive mechanism, the movable arm can rotate relative to the fixed arm around the pin to achieve clamping and releasing actions.
[0041] IV. Drive Mechanism
[0042] The drive mechanism employs either hydraulic drive or an electric actuator. When hydraulically driven, the hydraulic cylinder body is mounted on the fixed arm, and the piston rod is connected to the movable arm. When an electric actuator is used, the actuator body is fixed to the fixed arm, and the telescopic end of the actuator is connected to the movable arm. The drive mechanism is controlled by a control system to achieve precise control of the movable arm's movements.
[0043] V. Clamping Part
[0044] The clamping part consists of two opposing clamping blocks. The inner surface of the clamping blocks is equipped with anti-slip rubber pads to increase the friction between the clamping blocks and the scaffolding components, preventing slippage during hoisting. The shape of the clamping blocks is designed according to the shape of the scaffolding components to be clamped. For example, for circular steel pipes, the inner surface of the clamping blocks is curved; for rectangular scaffold boards, the inner surface of the clamping blocks is flat.
[0045] VI. Connecting parts
[0046] The connecting part is used to connect the lifting jaws to the boom of the lifting device or other lifting equipment. The connecting part can be connected by pin, bolt or welding to ensure that the connection between the lifting jaws and the lifting equipment is firm and reliable.
[0047] In this embodiment, the storage bracket 10 is divided into upper and lower layers. The lower layer is used to store the second tubular object, i.e., the long scaffolding, and the upper layer is used to store the first tubular object 11, i.e., the short scaffolding. This achieves classified storage of the scaffolding. The hoisting device facilitates the removal of scaffolding located on the lower layer, which has a smaller space and is not conducive to personnel operation. Removing it using the hoisting device is more convenient.
[0048] In some embodiments, the storage bracket 10 includes a support arm 30, a slide rail 31, support legs 32, and a cushion 33. The support legs 32 include two legs, and the two ends of the two support legs 32 in opposite directions are respectively connected to the support arm 30 in parallel. The slide rail 31 is respectively connected to the two opposing support legs 32. The cushion 33 is slidably connected to the two parallel telescopic slide rails 31, and the cushion 33 includes two cushions.
[0049] The gap between the pads 33 is adjustable by setting a sliding rail 31, which can be adjusted according to the length of the scaffold.
[0050] The pillow 33 has side rails 34 at both ends, which are hinged to the pillow 33. The side rails 34 are locked or released by the locking assembly 40.
[0051] The locking assembly 40 includes a locking rod 401 and a insert plate 402. The insert plate 402 is inserted into a through slot in the cushion 33 and can slide relative to the through slot. The insert plate 402 has a first groove 403 and a second groove. The first groove 403 communicates with the second groove. The width of the first groove 403 is greater than the width of the second groove. The first groove 403 is located at the edge of the insert plate 402. The first groove 403 and the second groove can both pass through the insertion position based on the sliding of the insert plate 402. When the side rail 34 is in a vertical state, the locking rod 401 moves to the insertion position and is inserted into the second groove at the insertion position.
[0052] The locking rod 401 can be moved to the position of the corresponding insert plate 402 by rotating the side stop 34. At the same time, the first groove 403 of the insert plate 402 is controlled to be in the corresponding insertion position. At this time, the locking rod 401 can enter the first groove 403 through the larger first groove 403. Then, the insert plate 402 is slid so that the second groove moves to the insertion position. The second groove is just engaged with the first groove 403, so that the side stop 34 is fixed.
[0053] The bottom of the slide rail 31 is provided with a cross slide 35, and the lifting mechanism 20 is provided on the cross slide 35. The lifting mechanism 20 includes lifting grippers.
[0054] The cross carriage 35 is connected to the bottom surface of the reinforced I-beam provided with the slide rail 31.
[0055] An external frame 50 is also connected to one of the legs 32. The external frame 50 is located between the two legs 32. One end of the second tubular object is attached to the external frame 50, and the other end is attached to the other leg 32. The length of the second tubular object is shorter than the distance between the two legs 32.
[0056] One end of the second tubular object is attached to the outer frame 50, and the other end is attached to another support leg 32. When the second tubular object, which is longer than the upper scaffold, is lifted by the hoisting mechanism 20, it is moved to one side of the outer frame 50. Since the length of the second tubular object is shorter than the distance between the two supports 32, the scaffold is moved from between the two supports 32 to outside the storage bracket 10 by combining the external hoisting track, so as to realize the removal of the scaffold.
[0057] The external frame 50 is equipped with heightening components at both ends.
[0058] The above specific embodiments further illustrate the purpose, technical solution and beneficial effects of this application. It should be understood that the above are only specific embodiments of this application and are not intended to limit the scope of protection of this application. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of protection of this application.
Claims
1. A building component storage device, characterised in that, include The storage rack has two layers, with the upper layer used to store the first tubular object. The lower layer is used to store the second tubular object, and the first tubular object is shorter than the second tubular object; A hoisting mechanism is installed on the lower layer of the storage rack for hoisting the second tubular object to the outside of the storage rack; The storage bracket includes support arms, slide rails, support legs, and pads. The support legs include two legs, and the two ends of the two support legs in opposite directions are respectively connected to the support arms in parallel. The slide rails are respectively connected to the two opposite support legs. The pads are slidably connected to two parallel telescopic slide rails. The pads include two. The bottom of the slide rail is provided with a cross slide, and the hoisting mechanism is provided on the cross slide. The hoisting mechanism includes hoisting grippers.
2. The architectural member storage device of claim 1, wherein, The pillow has side rails at both ends, which are hinged to the pillow. The side rails are locked or released by a locking component.
3. The architectural member storage device of claim 2, wherein, The locking assembly includes a locking rod and a insert plate. The insert plate is inserted into a through slot in the cushion and can slide relative to the through slot. The insert plate has a first groove and a second groove, which communicate with each other. The width of the first groove is greater than the width of the second groove. The first groove is located at the edge of the insert plate. Both the first groove and the second groove can pass through the insertion position based on the sliding of the insert plate. When the side rail is in a vertical state, the locking rod moves to the insertion position and is inserted into the second groove at the insertion position.
4. The architectural member storage device of claim 1, wherein, An external frame is also connected to one of the legs, the external frame being located between the two legs, one end of the second tubular object rests on the external frame, and the other end rests on the other leg, the length of the second tubular object being shorter than the distance between the two legs.
5. The architectural member storage device of claim 4, wherein, The external frame is equipped with heightening components at both ends.