Auxiliary device for building engineering bending

By designing automated transmission, support, bending and shaping components, combined with auxiliary pulling components, automated bending of metal materials in construction projects is achieved, safety hazards brought about by manual operation, and production efficiency and equipment durability are improved.

CN223171663UActive Publication Date: 2025-08-01XINJIANG HENGJIANG RAPID TRANSIT CONSTRUCTION ENGINEERING CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202422437771.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-10
Publication Date
2025-08-01
Estimated Expiration
2034-10-10

AI Technical Summary

Technical Problem

Existing construction bending devices require manual operation when used, which poses safety hazards and is more likely to occur when equipment is damaged.

Method used

An automated device including a conveying component, a support component, a bending component, a shaping component and an adjustment component is designed to automatically transfer, support, bending and shaping of materials through mechanical linkage, and automatically pull out the material with auxiliary pulling components to avoid manual operation.

Benefits of technology

It realizes the full automatic operation of materials, improves production efficiency and safety, reduces labor demand, extends the service life of the equipment, and reduces labor intensity and maintenance costs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223171663U_ABST
    Figure CN223171663U_ABST
Patent Text Reader

Abstract

The utility model discloses an auxiliary device for constructional engineering bending, and relates to the technical field of constructional engineering, the auxiliary device comprises a base and a working mechanism, the working mechanism is arranged above the base, and the working mechanism comprises a conveying assembly arranged above the base. According to the design of the working mechanism, efficient conveying, accurate supporting, flexible bending and stable shaping of materials are achieved, the conveying assembly ensures that the materials are stably conveyed to the designated position through a fixing plate and a conveying belt, a driving motor provides a stable power source, and the supporting assembly provides a solid foundation for bending operation through a supporting plate and a fixing connecting plate; the telescopic design of the bending assembly allows adaptive adjustment of materials with different thicknesses, the bending accuracy is ensured, the shaping assembly realizes stable maintenance of the shape of the bent material through cooperation of a first shaping plate and a second shaping plate, and the adjusting assembly provides a fine adjustment function so as to adapt to diversified material size and shape requirements.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of construction engineering, in particular to an auxiliary device for bending in construction engineering. Background Technique

[0002] The auxiliary device for bending in construction engineering is an automatic mechanical device specially used for bending metal materials in construction engineering. It automatically conveys materials to the bending position through a conveyor belt, uses a support assembly to provide stable support, and realizes precise bending of materials with different thicknesses or shapes through an adjustable bending assembly. In addition, a shaping assembly keeps the shape of the material stable after bending, while an adjustment assembly provides a fine-tuning function to adapt to diverse material size and shape requirements. The automated operation of the auxiliary pulling assembly reduces the labor demand, improves production efficiency and safety. Overall, the application of this device significantly improves the efficiency, quality and safety of metal processing in construction engineering, while reducing labor intensity and maintenance costs.

[0003] After retrieval, the text of the patent number "CN216397620U" mentions that "the utility model discloses an auxiliary device for bending in construction engineering, including a workbench. A fixed bracket is fixedly connected between the two ends of the top surface of the workbench. The middle end of the top of the fixed bracket is fixedly installed with a hydraulic rod. The output end of the hydraulic rod is fixedly installed with a pressing block. The middle end of the top of the workbench is fixedly connected with a base. A cross plate is fixedly connected between the middle ends of the two sides of the inner cavity of the workbench. Through the mutual cooperation of the servo motor, the first gear, the second gear, the rotating shaft, the cross plate, the rotating rod, the fixed shaft, the connecting rod, the push rod, the sliding rod, the push plate, the workbench, the base, the hydraulic rod and the pressing block, the device can realize the function of bending metal plates and centering adjustment of metal plates while bending metal plates, effectively avoiding the influence of the placement deviation of metal plates on the processing accuracy and improving the overall processing quality". When in use, it can bend metal plates and has the function of centering adjustment of metal plates, effectively avoiding the influence of the placement deviation of metal plates on the processing accuracy and improving the overall processing quality. However, when using the above device, it is necessary to manually put materials in and out. When the device is damaged, there will be dangerous situations when manually taking materials.

[0004] Therefore, we provide an auxiliary device for bending in construction engineering to solve the above problems. Content of the Utility Model

[0005] This application provides an auxiliary device for bending in construction engineering, which solves the problem that when using the above device, it is necessary to manually put materials in and out, and there will be dangerous situations when manually taking materials when the device is damaged.

[0006] This application provides an auxiliary device for bending in construction engineering, including a base and a working mechanism. The working mechanism is arranged above the base.

[0007] The working mechanism includes a conveying component arranged above the base. One side of the conveying component is provided with a supporting component. The upper end of the supporting component is fixedly connected with a bending component. The inner side of the supporting component is provided with a shaping component. The lower side of the shaping component is provided with an adjusting component.

[0008] Preferably, the conveying component includes a fixing plate arranged above the base. The inner side of the fixing plate is provided with a conveyor belt. The outer wall of the fixing plate is connected with a driving motor by a flat key. A steel plate is arranged above the conveyor belt.

[0009] Preferably, the supporting component includes a supporting plate arranged on one side of the fixing plate. The upper end of the supporting plate is fixedly connected with a fixed connecting plate.

[0010] Preferably, the bending component includes a telescopic sleeve fixedly connected to the upper end of the fixed connecting plate. A telescopic rod is arranged below the telescopic sleeve. The lower end of the telescopic rod is fixedly connected with a bending pressing block.

[0011] Preferably, the shaping component includes a first shaping plate arranged inside the supporting plate. A second shaping plate is closely attached to one side of the first shaping plate. The lower end of the second shaping plate is fixedly connected with a connecting hinge.

[0012] Preferably, the adjusting component includes an adjusting block arranged below the second shaping plate. The lower end of the adjusting block is fixedly connected with an electric telescopic column.

[0013] Preferably, an auxiliary pulling component is arranged outside the supporting plate. The auxiliary pulling component includes an auxiliary connecting plate arranged outside the supporting plate. A chute is formed on the surface of the auxiliary connecting plate. A slider is slidably connected inside the chute. One end of the slider is fixedly connected with a connecting piece. The other end of the connecting piece is fixedly connected with a connecting sleeve. The other end of the connecting sleeve is movably connected with a telescopic shaft. The other end of the telescopic shaft is fixedly connected with a magnetic block. A connecting shaft is rotatably connected to the surface of the connecting piece. The upper end of the connecting shaft is rotatably connected with a movable plate. The upper end of the movable plate is fixedly connected with a driving sleeve. One end of the driving sleeve is movably connected with a driving telescopic column.

[0014] As can be seen from the above technical solutions, the present application provides an auxiliary device for bending in construction engineering. During use, first, the steel plate is placed above the conveyor belt. The drive motor is started, and the conveyor belt is driven to operate through a flat key connection. The conveyor belt conveys the steel plate to the bending position. The support plate, as a support structure, together with the fixed connection plate, provides necessary support for the bending process. The bending assembly composed of the telescopic sleeve and the telescopic rod performs telescopic adjustment to adapt to materials of different thicknesses or shapes. The bending press block acts directly on the material to achieve bending. The first shaping plate and the second shaping plate are closely matched to shape the bent material. The second shaping plate is connected to the support assembly through a connecting hinge, allowing the shaping assembly to make necessary adjustments. The adjusting block is fixed below the second shaping plate and is used to adjust the included angle of the shaping assembly. The electric telescopic column provides power to enable the adjusting block to move telescopically to adapt to materials of different shapes and sizes. The auxiliary pulling assembly, through the cooperation of the auxiliary connection plate, chute, slider, connecting piece, connecting sleeve, telescopic shaft, magnetic block, connecting shaft, movable plate, driving sleeve, and driving telescopic column, after bending and shaping, the magnetic block adsorbs the bent material, and the driving telescopic column drives the movable plate, and then pulls the material through the connecting shaft and the connecting piece to achieve automatic pulling without manual operation. Finally, the use of an auxiliary device for bending in construction engineering is completed.

[0015] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0016] 1. Through the setting of the auxiliary pulling assembly, through a series of mechanical linkages, the automatic pulling function after material bending is realized, greatly improving the automation level and production efficiency of the operation. The cooperation of the chute and the slider ensures the smoothness of the pulling process, and the design of the telescopic shaft and the magnetic block allows effective adsorption and fixation of materials of different sizes. The use of the connecting piece and the connecting shaft provides a flexible operating angle, and the driving action of the driving telescopic column ensures the precise control of the pulling action. In addition, the anti-wear pads in the auxiliary assembly help reduce friction and wear between components, extend the service life of the equipment, and also provide additional support, enhancing the durability and maintainability of the entire protection device;

[0017] 2. Through the setting of the working mechanism, during use, the design of the working mechanism focuses on realizing the efficient conveying, precise support, flexible bending, and stable shaping of materials. The conveying assembly ensures the smooth conveyance of materials to the designated position through the fixed plate and the conveyor belt, and the drive motor provides a stable power source. The support assembly uses the support plate and the fixed connection plate to provide a solid foundation for the bending operation. The telescopic design of the bending assembly allows for adaptive adjustment of materials of different thicknesses to ensure the accuracy of bending. The shaping assembly, through the cooperation of the first and second shaping plates, realizes the stable maintenance of the shape of the bent material, and the adjustment assembly provides a fine-tuning function to adapt to the diverse material size and shape requirements.

[0018] In summary, the present application performs fully automated operations through the transmission component and the auxiliary pulling component, without manual participation, ensuring the personal safety of workers and avoiding the occurrence of dangerous situations. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the technical solutions of the present application, the drawings required for use in the implementation cases will be briefly introduced below. Obviously, for those of ordinary skill in the art, other drawings can also be obtained based on these drawings without creative efforts.

[0020] Figure 1 Schematic diagram of the overall external structure proposed by the present utility model;

[0021] Figure 2 Schematic diagram of the overall top view of one side proposed by the present utility model;

[0022] Figure 3 Schematic diagram of the shaping component and the adjustment component proposed by the present utility model;

[0023] Figure 4 Schematic diagram of the auxiliary pulling component proposed by the present utility model.

[0024] In the figure: 1, base; 2, working mechanism; 21, transmission component; 211, fixing plate; 212, conveyor belt; 213, driving motor; 214, steel plate; 22, support component; 221, support plate; 222, fixed connecting plate; 23, bending component; 231, telescopic sleeve; 232, telescopic rod; 233, bending pressing block; 24, shaping component; 241, first shaping plate; 242, second shaping plate; 243, connecting hinge; 25, adjustment component; 251, adjustment block; 252, electric telescopic column; 3, auxiliary pulling component; 31, auxiliary connecting plate; 32, chute; 33, slider; 34, connecting piece; 35, connecting sleeve; 36, telescopic shaft; 37, magnetic block; 38, connecting shaft; 39, movable plate; 310, driving sleeve; 311, driving telescopic column. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0025] In order to enable those skilled in the art of the present technology to better understand the technical solutions in the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings.

[0026] See Figures 1-4, An auxiliary device for bending in construction engineering, including a base 1 and a working mechanism 2. The base 1 serves as the foundation of the entire device, providing stable support for the working mechanism 2. Above the base 1 is provided with the working mechanism 2, which is the core part of the device and includes a conveying component 21, a supporting component 22, a bending component 23, a shaping component 24, and an adjusting component 25, responsible for realizing the conveying, supporting, bending, and shaping of materials;

[0027] The working mechanism 2 includes a conveying component 21 arranged above the base 1. The conveying component 21 is responsible for conveying materials to the bending position. On one side of the conveying component 21 is provided with a supporting component 22, which provides necessary support for the bending process. The upper end of the supporting component 22 is fixedly connected with a bending component 23, which is responsible for realizing the bending of materials. Inside the supporting component 22 is provided with a shaping component 24, which ensures the stability of the shape after bending. Below the shaping component 24 is provided with an adjusting component 25, which allows for fine-tuning of the shaping component 24 to adapt to materials of different shapes and sizes.

[0028] In the present utility model, the conveying component 21 includes a fixing plate 211 arranged above the base 1. The fixing plate 211 serves as the supporting structure of the conveyor belt 212. Inside the fixing plate 211 is provided with a conveyor belt 212, which is used to convey the steel plate 214. The outer wall of the fixing plate 211 is connected with a driving motor 213 by a flat key. The driving motor 213 provides power to drive the conveyor belt 212 to operate. Above the conveyor belt 212 is provided with a steel plate 214.

[0029] In the present utility model, the supporting component 22 includes a supporting plate 221 arranged on one side of the fixing plate 211. The supporting plate 221 serves as the supporting structure. The upper end of the supporting plate 221 is fixedly connected with a fixed connecting plate 222, which connects the supporting plate 221 and the bending component 23.

[0030] In the present utility model, the bending component 23 includes a telescopic sleeve 231 fixedly connected to the upper end of the fixed connecting plate 222. The telescopic sleeve 231 allows the bending component 23 to be adjusted telescopically. Below the telescopic sleeve 231 is provided with a telescopic rod 232, which connects the telescopic sleeve 231 and the bending press block 233. The lower end of the telescopic rod 232 is fixedly connected with a bending press block 233, which directly acts on the material to realize bending.

[0031] In the present utility model, the shaping assembly 24 includes a first shaping plate 241 disposed inside the support plate 221. The first shaping plate 241 cooperates with the second shaping plate 242 to shape the bent material. One side of the first shaping plate 241 is closely attached to the second shaping plate 242. The lower end of the second shaping plate 242 is fixedly connected to a connecting hinge 243. The second shaping plate 242 cooperates with the first shaping plate 241 and is connected to the support assembly 22 through the connecting hinge 243.

[0032] In the present utility model, the adjusting assembly 25 includes an adjusting block 251 disposed below the second shaping plate 242. The adjusting block 251 is fixed below the second shaping plate 242 and is used to adjust the included angle of the shaping assembly 24. The lower end of the adjusting block 251 is fixedly connected to an electric telescopic column 252. The electric telescopic column 252 provides power to enable the adjusting block 251 to move telescopically.

[0033] In some embodiments, an auxiliary pulling assembly 3 is disposed outside the support plate 221. The auxiliary pulling assembly 3 includes an auxiliary connecting plate 31 disposed outside the support plate 221. A chute 32 is formed on the surface of the auxiliary connecting plate 31. A slider 33 is slidably connected to the inside of the chute 32. One end of the slider 33 is fixedly connected to a connecting member 34. The other end of the connecting member 34 is fixedly connected to a connecting sleeve 35. The other end of the connecting sleeve 35 is movably connected to a telescopic shaft 36. The other end of the telescopic shaft 36 is fixedly connected to a magnetic block 37. A connecting shaft 38 is rotatably connected to the surface of the connecting member 34. The upper end of the connecting shaft 38 is rotatably connected to a movable plate 39. The upper end of the movable plate 39 is fixedly connected to a driving sleeve 310. One end of the driving sleeve 310 is movably connected to a driving telescopic column 311. By the combined use of each component of the auxiliary pulling assembly 3, after the material is bent and shaped, the bent material is adsorbed by the magnetic block 37 and pulled out, eliminating the need for manual operation.

[0034] As can be seen from the above technical solution, during use, first, the steel plate 214 is placed above the conveyor belt 212. The driving motor 213 is started, and the conveyor belt 212 is driven to operate through a flat key connection. The conveyor belt 212 conveys the steel plate 214 to the bending position. The support plate 221, as a support structure, together with the fixed connection plate 222, provides necessary support for the bending process. The bending assembly 23 composed of the telescopic sleeve 231 and the telescopic rod 232 performs telescopic adjustment to adapt to materials of different thicknesses or shapes. The bending pressing block 233 directly acts on the material to achieve bending. The first shaping plate 241 and the second shaping plate 242 are closely matched to shape the bent material. The second shaping plate 242 is connected to the support assembly 22 through the connecting hinge 243, allowing the shaping assembly 24 to make necessary adjustments. The adjusting block 251 is fixed below the second shaping plate 242 and is used to adjust the included angle of the shaping assembly 24. The electric telescopic column 252 provides power to enable the adjusting block 251 to telescopically move to adapt to materials of different shapes and sizes. The auxiliary pulling assembly 3 uses the cooperation of the auxiliary connecting plate 31, the chute 32, the slider 33, the connecting piece 34, the connecting sleeve 35, the telescopic shaft 36, the magnetic block 37, the connecting shaft 38, the movable plate 39, the driving sleeve 310, and the driving telescopic column 311. After bending and shaping, the magnetic block 37 adsorbs the bent material, and the driving telescopic column 311 drives the movable plate 39, and then pulls the material through the connecting shaft 38 and the connecting piece 34 to achieve automatic pulling out without manual operation. Finally, the use of an auxiliary device for bending in a construction project is completed.

[0035] Those skilled in the art will readily conceive of other embodiments of the present application after considering the specification and practicing the application disclosed herein. The present application is intended to cover any variations, uses, or adaptations of the present application that follow the general principles of the present application and include known common general knowledge or conventional technical means in the technical field not disclosed in the present application. The specification and embodiments are only to be regarded as exemplary, and the true scope of the present application is pointed out by the claims.

[0036] It should be understood that the present application is not limited to the exact structures described above and shown in the drawings, and various modifications and changes can be made without departing from its scope. The above-described embodiments of the present application do not constitute a limitation on the protection scope of the present application.

Claims

1. An auxiliary device for bending in construction engineering, comprising a base (1) and a working mechanism (2), characterized in that, Above the base (1), a working mechanism (2) is provided. The working mechanism (2) includes a conveying component (21) arranged above the base (1). On one side of the conveying component (21), a supporting component (22) is provided. The upper end of the supporting component (22) is fixedly connected to a bending component (23). Inside the supporting component (22), a shaping component (24) is provided. Below the shaping component (24), an adjusting component (25) is provided.

2. An auxiliary device for bending in construction engineering according to claim 1, wherein, The conveying component (21) includes a fixing plate (211) arranged above the base (1). Inside the fixing plate (211), a conveyor belt (212) is provided. On the outer wall of the fixing plate (211), a driving motor (213) is connected by a flat key. Above the conveyor belt (212), a steel plate (214) is provided.

3. An auxiliary device for bending in construction engineering according to claim 2, characterized in that, The supporting component (22) includes a supporting plate (221) arranged on one side of the fixing plate (211). The upper end of the supporting plate (221) is fixedly connected to a fixed connecting plate (222).

4. An auxiliary device for bending in construction engineering according to claim 3, characterized in that, The bending component (23) includes a telescopic sleeve (231) fixedly connected to the upper end of the fixed connecting plate (222). Below the telescopic sleeve (231), a telescopic rod (232) is provided. The lower end of the telescopic rod (232) is fixedly connected to a bending press block (233).

5. An auxiliary device for bending in construction engineering according to claim 3, characterized in that, The shaping component (24) includes a first shaping plate (241) arranged inside the supporting plate (221). Closely attached to one side of the first shaping plate (241) is a second shaping plate (242). The lower end of the second shaping plate (242) is fixedly connected to a connecting hinge (243).

6. An auxiliary device for bending in construction engineering according to claim 5, characterized in that, The adjusting component (25) includes an adjusting block (251) arranged below the second shaping plate (242). The lower end of the adjusting block (251) is fixedly connected to an electric telescopic column (252).

7. An auxiliary device for bending in construction engineering according to claim 3, characterized in that, On the outer side of the supporting plate (221), an auxiliary pulling component (3) is provided. The auxiliary pulling component (3) includes an auxiliary connecting plate (31) arranged on the outer side of the supporting plate (221). A sliding groove (32) is formed on the surface of the auxiliary connecting plate (31). Inside the sliding groove (32), a sliding block (33) is slidably connected. One end of the sliding block (33) is fixedly connected to a connecting piece (34). The other end of the connecting piece (34) is fixedly connected to a connecting sleeve (35). The other end of the connecting sleeve (35) is movably connected to a telescopic shaft (36). The other end of the telescopic shaft (36) is fixedly connected to a magnetic block (37). A connecting shaft (38) is rotatably connected to the surface of the connecting piece (34). The upper end of the connecting shaft (38) is rotatably connected to a movable plate (39). The upper end of the movable plate (39) is fixedly connected to a driving sleeve (310). One end of the driving sleeve (310) is movably connected to a driving telescopic column (311).

Citation Information

Patent Citations

  • Auxiliary device for building engineering bending

    CN216397620U