Conveying device for construction of profiled metal floor support plate of frame plant
By designing a construction conveying device for profiled metal floor decking suitable for steel frame workshops, the problems of limited hoisting, low efficiency of manual handling, and safety hazards were solved. It achieves efficient and safe construction conveying, has strong adaptability, and reduces construction costs and material damage.
Patent Information
- Application Number
- CN202520068837.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-13
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-01-13
AI Technical Summary
In the construction of steel frame factory buildings, the hoisting of profiled metal floor decking is restricted, manual handling is inefficient, and there are significant safety hazards. Existing equipment is either complex in structure or expensive and difficult to adapt to the construction environment.
A construction conveying device was designed, which includes a conveying guide rail and a conveying component. The conveying guide rail is made of channel steel, the rollers are made of wear-resistant material, and the limiting component is detachable. It can adapt to profiled metal floor decking of different sizes and shapes and is directly conveyed to the construction point by a crane.
It improves construction efficiency, reduces labor requirements and costs, ensures construction safety, reduces material damage, is highly adaptable, and is suitable for various building formwork constructions.
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Figure CN223673571U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a steel structure building technical field, specifically a kind of frame factory building profiled metal floor slab construction conveying device. BACKGROUND
[0002] In the construction process of steel frame factory building, profiled metal floor slab as an important building material is widely used in the support and formwork of floor structure. However, in the current construction process, the conveying and laying of profiled metal floor slab face many challenges.
[0003] Traditionally, profiled metal floor slab needs to be scattered and transported by manual labor after being hoisted to the construction floor. However, due to the limited operating radius of the automobile crane and the space limitation of the construction site, the floor slab is often difficult to be directly hoisted to the ideal position. This leads to the need for a large amount of manual labor for secondary handling in the subsequent construction process, which not only reduces the construction efficiency but also increases the construction cost.
[0004] In addition, the manual transportation of scattered boards has many safety hazards. During the handling process, workers need to frequently move and lift heavy objects, which can easily cause accidents such as bumps and falls from a height, posing a threat to the safety of construction personnel. At the same time, due to the instability of manual operation, the floor slab is also prone to bumps, wear and tear during handling, affecting the construction quality.
[0005] To solve the above problems, the existing construction method often uses the way of batch packaging. That is, workers first lay a batch of floor slab, and then hoist the next batch to the construction floor. However, this method, although to some extent, alleviates the hoisting problem, but still has problems such as manual efficiency and safety hazards. Each hoisting and laying needs to consume a lot of manpower and time, and due to the large size and weight of the floor slab, manual operation still faces great difficulties.
[0006] With the continuous development of building technology, some devices for construction template conveying have appeared in the market. For example, there are devices for high-altitude conveying of metal plates through flexible guide rails, devices for conveying building templates to the next floor by installing fixed guide rails, and devices for conveying aluminum templates using conveyor belts. However, these devices still have many shortcomings when applied to the construction of profiled metal floor slab. They either have complex structure and high cost, or are difficult to adapt to the construction environment and needs of steel frame factory building. UTILITY MODEL CONTENTS
[0007] The utility model aims to overcome the defects of the prior art and provide a frame factory building profiled metal floor slab construction conveying device, which solves the key technical problems of hoisting limitation, manual efficiency and safety hazards, construction quality, and adaptability.
[0008] In order to solve the above technical problems, the utility model is realized as follows:
[0009] A frame factory profiled metal floor slab construction conveying device, characterized in that it comprises a conveying guide rail and a conveying assembly:
[0010] The conveying guide rail is arranged on the profiled metal floor slab and is used for supporting and guiding the movement of the conveying assembly, and the two conveying guide rails are connected through guide rail connecting steel bars;
[0011] The conveying assembly comprises a hollow shaft pipe, a roller and an angle iron support, wherein the hollow shaft pipe is connected with the roller and the support fixing ring and is fixedly connected through shaft pipe limiting steel bars and a bolt; the roller is welded with roller limiting steel bars and is placed on the conveying guide rail; the angle iron support is arranged on the upper part of the support fixing ring and is used for placing the profiled metal floor slab to be conveyed, and a limiting assembly is arranged on the top of the angle iron support and is used for preventing the profiled metal floor slab from falling off.
[0012] The frame factory profiled metal floor slab construction conveying device is characterized in that the conveying guide rail is a channel steel guide rail, the shape and size of which are matched with the roller, so as to ensure that the roller rolls smoothly on the guide rail.
[0013] The frame factory profiled metal floor slab construction conveying device is characterized in that the roller is made of wear-resistant material, so as to reduce the wear when rolling on the guide rail and improve the service life.
[0014] The frame factory profiled metal floor slab construction conveying device is characterized in that the limiting assembly comprises limiting plates arranged on both sides of the support and used for clamping the profiled metal floor slab from both sides, so as to prevent the profiled metal floor slab from sliding or falling off during the conveying process.
[0015] The frame factory profiled metal floor slab construction conveying device is characterized in that the limiting assembly is designed in a detachable manner, so as to be adjusted and replaced according to the size and shape of the profiled metal floor slab.
[0016] The frame factory profiled metal floor slab construction conveying device provided by the application can directly convey the profiled metal floor slab from the hoisting position to the construction point without manual secondary handling, so as to greatly reduce the waiting time and the labor consumption during the construction process. Through the optimization of the design of the conveying guide rail and the conveying assembly, the conveying process is more stable and fast, and the construction efficiency is further improved.
[0017] Since the manual handling requirement is reduced, the number of construction personnel and the working intensity are correspondingly reduced, so as to reduce the construction cost. The device has a simple structure and is easy to maintain and can be repeatedly used, so as to further reduce the construction cost.
[0018] The design of the conveying device avoids safety accidents such as bumps and falls from heights that may occur when manually handling heavy objects, ensuring the safety of construction personnel. By setting safety measures such as limiting components, it ensures that the profiled metal floor slab does not fall or slide sideways during the conveying process, further enhancing construction safety.
[0019] Due to the smooth and fast conveying process, the bumps and wear of the profiled metal floor slab during handling are reduced, thereby improving the construction quality. The device can adapt to the conveying needs of profiled metal floor slabs of different sizes and weights, ensuring flexibility and accuracy during construction.
[0020] The conveying device is not only suitable for profiled metal floor slab construction in steel frame workshops, but can also be adapted according to actual needs, widely used in other types of building formwork conveying construction. By setting auxiliary functions such as adjusting devices, the device can cope with different construction environments and needs, improving its versatility and practicality. BRIEF DESCRIPTION OF DRAWINGS
[0021] The utility model will be further described in detail below in combination with the drawings and embodiments:
[0022] Figure 1 is a structural schematic diagram of the present application;
[0023] Figure 2 is Figure 1 is a side view schematic diagram;
[0024] Figure 3 is a schematic diagram of the conveying guide rail and angle iron support;
[0025] Figure 4 is a schematic diagram of the profiled metal floor slab to be paved placed on the support. DETAILED DESCRIPTION
[0026] The technical solutions of the embodiments of the present application will be described clearly and completely below in combination with the drawings. Obviously, the described embodiments are part of the embodiments of the present application, not all. Based on the embodiments in the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor belong to the scope of the present application.
[0027] As Figures 1-4 shown: a profiled metal floor slab construction conveying device for frame workshop, which comprises a conveying guide rail 2 and a conveying assembly:
[0028] The conveying guide rail is arranged on the profiled metal floor support plate 1 and used for supporting and guiding the movement of the conveying assembly, and the two sections of the conveying guide rail are connected through the guide rail connecting steel bars 2.1 to ensure the continuity and stability of the guide rail.
[0029] The conveying assembly comprises a hollow shaft tube 3, a roller 4 and an angle iron bracket 5, wherein the hollow shaft tube 3 is connected with the roller 4 and the bracket fixing ring 5.1 and fixedly connected through the shaft tube limiting steel bars 3.1 and the latch 3.2 to ensure the structural strength and stability of the conveying assembly; the roller 4 is welded with the roller limiting steel bars 4.1 and placed on the conveying guide rail 2 to facilitate smooth rolling on the guide rail; the angle iron bracket 5 is arranged on the upper part of the bracket fixing ring 5.1 and used for placing the profiled metal floor support plate 1 to be conveyed, and the angle iron bracket 5 is provided with a limiting assembly 5.2 at the top to prevent the profiled metal floor support plate 1 from falling and ensure the safety of conveying.
[0030] The profiled metal floor support plate 1 is hoisted by the crane and placed on the angle iron bracket 5, and then the conveying assembly is manually pushed along the conveying guide rail 2 to the construction point.
[0031] The conveying guide rail 2 is a channel steel guide rail, which is matched in shape and size with the roller 4 to ensure smooth rolling of the roller 4 on the guide rail 2.
[0032] The roller 4 is made of wear-resistant material to reduce wear and tear when rolling on the guide rail and improve the service life.
[0033] The limiting assembly 5.2 comprises limiting plates arranged on both sides of the bracket to clamp the profiled metal floor support plate 1 from both sides and prevent it from sliding or falling during conveying.
[0034] The limiting assembly 5.2 is designed to be detachable to facilitate adjustment and replacement according to the size and shape of the profiled metal floor support plate 1.
[0035] The method of the present application is as follows: the conveying guide rail 2 is laid on the completed profiled metal floor support plate surface, and the guide rail connecting steel bars 2.1 are used to connect the guide rails; the conveying assembly is placed on the guide rail, and the profiled metal floor support plate 1 to be conveyed is fixed on the angle iron bracket 5 by the limiting assembly 5.2; the next profiled metal floor support plate to be laid is hoisted by the crane and placed on the bracket, and then the conveying assembly is manually pushed along the guide rail to the construction point to complete the conveying of the profiled metal floor support plate.
[0036] The above are only examples provided by the present application and are not intended to limit the present application. Although the present application is described in detail with reference to the examples, those skilled in the art can modify the technical solutions described in the foregoing examples or make equivalent replacements to some of the technical features, but any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A frame factory profiled metal floor beam construction conveying device, characterized by, It includes a conveying guide rail (2) and a conveying assembly: The conveying guide rail is arranged on the profiled metal floor support plate (1) and is used to support and guide the movement of the conveying assembly. The two sections of the conveying guide rail are connected by guide rail connecting steel bars (2.1). The conveying assembly includes a hollow shaft tube (3), a roller (4), and an angle iron bracket (5). The hollow shaft tube (3) is connected to the roller (4) and the bracket fixing ring (5.1) and is fixedly connected by shaft tube limiting steel bars (3.1) and a latch (3.2). The roller (4) is welded with roller limiting steel bars (4.1) and placed on the conveying guide rail (2). The angle iron bracket (5) is arranged on the upper part of the bracket fixing ring (5.1) and is used to place the profiled metal floor support plate (1) to be conveyed. The top of the angle iron bracket (5) is provided with a limiting assembly (5.2) to prevent the profiled metal floor support plate (1) from falling.
2. The framing plant profiled metal floor deck construction conveyor apparatus according to claim 1, wherein, The conveying guide rail (2) is a channel steel guide rail with a shape and size matching the roller (4) to ensure smooth rolling of the roller (4) on the guide rail (2).
3. The framing plant profiled metal floor deck construction conveyor apparatus according to claim 1, wherein, The roller (4) is made of wear-resistant material to reduce wear and tear when rolling on the guide rail and improve service life.
4. The framing plant profiled metal floor deck construction conveyor apparatus according to claim 1 or 2, characterized in that, The limiting assembly (5.2) includes limiting plates arranged on both sides of the bracket to clamp the profiled metal floor support plate (1) from both sides and prevent it from sliding or falling during the conveying process.
5. The framing plant profiled metal floor deck construction conveyor apparatus according to claim 1, wherein, The limiting assembly (5.2) is designed to be detachable to facilitate adjustment and replacement according to the size and shape of the profiled metal floor support plate (1).