Translation conveying device for steel structure production
By designing a steel structure conveying device, ensuring that the transition roller and the conveying roller are at the same horizontal height and their axes are perpendicular, and combining this with a ball screw drive to achieve precise movement of the steel structure, the problems of jamming and positioning in traditional conveying systems are solved, thus improving conveying efficiency and safety.
Patent Information
- Application Number
- CN202520577577.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-03-31
AI Technical Summary
Traditional steel structure conveying systems are prone to jamming, tilting, or falling at the joints between different conveying stages, and lack flexible translation mechanisms, making it difficult to meet the positioning requirements of steel structures of different sizes, thus affecting conveying efficiency and safety.
A translational conveying device was designed, comprising a steel structure conveyor frame, a transition support, a transition roller, a translational side plate, a ball screw, and a drive component. This device ensures that the transition roller and the conveyor roller are at the same horizontal height and their axes are perpendicular. Combined with the ball screw and drive component, it enables precise movement of the steel structure and adapts to position adjustments of different sizes.
It achieves a smooth transition of the steel structure during transportation, improves transportation efficiency and safety, reduces the risk of damage, and enhances positioning flexibility and production diversity.
Smart Images

Figure CN223949997U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to steel structure translation technical field especially relates to a kind of steel structure production is with translation conveying device. BACKGROUND
[0002] In the field of steel structure processing and transportation, there has been a high demand for efficient and stable conveying of steel structural parts. Traditional steel structure conveying systems often have complex structure and poor transition. For example, at the junction of different conveying links, due to the inconsistent height of the conveying rollers or unreasonable axis relationship, the steel structure is prone to jam, tilt or even fall during the transition process, which not only affects the conveying efficiency, but also may cause damage to the steel structural parts, increasing the processing cost and safety hazards. At the same time, when adjusting the position of the steel structure, the existing device lacks flexible and accurate translation mechanism, and it is difficult to meet the positioning needs of steel structures of different sizes, greatly limiting the flexibility and diversity of production.
[0003] Therefore, it is necessary to invent a steel structure production translation conveying device. SUMMARY
[0004] To solve the above technical problems, the utility model provides a kind of steel structure production translation conveying device, including steel structure conveying frame A, steel structure conveying frame B, transition support, transition roller, translation side plate, sliding table, ball screw, actuator shell, driving component, crossbeam and stand, two mirror image symmetries the transition support is fixedly installed between steel structure conveying frame A and steel structure conveying frame B, and the transition roller is rotatably installed between the two transition supports;Two translation side plates are provided, and the two translation side plates are fixedly installed on the sliding table, the sliding table is connected with the ball screw through the ball nut, the ball screw is rotatably installed on the actuator shell, and the output end of the driving component fixedly installed on the outside of the actuator shell is fixed with either end of the ball screw;The actuator shell is fixedly installed on the crossbeam, and the stand is fixedly installed below the two ends of the crossbeam, respectively, and the crossbeam and the stand are located on one side of the steel structure conveying frame A and the steel structure conveying frame B.
[0005] Preferably, the steel structure conveying frame A and the steel structure conveying frame B are the same structure, and the steel structure conveying frame A includes conveying side plate, support frame, conveying roller and bearing seat, two conveying side plates are provided, and the two conveying side plates are fixedly installed on the support frame in mirror image symmetry, and the conveying rollers are installed on the two conveying side plates through the bearing seat.
[0006] Preferably, two mirror-symmetrical transition supports are fixedly installed between adjacent conveyor side plates of the steel structure conveyor frame A and the steel structure conveyor frame B. The transition supports are of an "I" shape, and a plurality of transition rollers are rotatably installed between the two transition supports.
[0007] Preferably, the uppermost apex of the transition roller and the conveyor roller are at the same horizontal height, and their axes are perpendicular to each other, so that the steel structure can smoothly transition on the transition roller and the conveyor roller.
[0008] Preferably, the transition roller and the conveying roller do not contact each other with the two mirror-symmetrical translation side plates and are spaced apart, and the inner surfaces of the two translation side plates can contact the outer surface of the steel structure.
[0009] Preferably, the translational side plate has an "L" shaped structure, and one end of the translational side plate is fixedly mounted on the slide table by bolts. The slide table is provided with a set of parallel holes that allow bolt installation.
[0010] Compared with the prior art, the present invention has the following beneficial effects:
[0011] In this invention, the uppermost apex of the transition roller and the conveying roller are at the same horizontal height and their axes are perpendicular to each other, which allows the steel structure to transition smoothly on the transition roller and the conveying roller, effectively avoiding jamming and tilting of the steel structure during the conveying process, significantly improving conveying efficiency and safety, and reducing the risk of damage to steel structural components.
[0012] This invention features a translation mechanism consisting of a sliding side plate, a slide table, a ball screw, and a drive component. The sliding side plate can contact the outer surface of the steel structure. The drive component rotates the ball screw, thereby achieving precise movement of the slide table and the sliding side plate. This mechanism can flexibly adapt to the position adjustment needs of steel structures of different sizes, greatly improving the positioning flexibility and versatility in the production process.
[0013] The steel structure conveyor frame A and B of this utility model have the same structure and are equipped with transition supports and other components in a specific way. The transition supports adopt an "I" shaped structure. This design ensures the stability of the overall structure. At the same time, the layout between the components is reasonable, which not only meets the conveying requirements of the steel structure, but also facilitates installation and maintenance, and reduces the overall cost of the equipment. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0015] Figure 2 This is another overall structural schematic diagram of this utility model.
[0016] Figure 3 This is a top view of the structure of this utility model.
[0017] In the drawings:
[0018] Steel structure conveying frame A1, conveying side plate 11, support frame 12, conveying roller 13, bearing seat 14, steel structure conveying frame B2, transition support 3, transition roller 4, translation side plate 5, sliding table 6, ball screw 7, actuator shell 8, driving component 9, cross beam 10, stand column 1A. DETAILED DESCRIPTION
[0019] In order to enable personnel in the technical field to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor should belong to the scope of protection of the present application.
[0020] In the description of the embodiments, it should be noted that the terms "upper", "lower", "inner", "outer", "front end", "rear end", "two ends", "one end", "the other end" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. In addition, the terms "first" and "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance. In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "provided with", "connection" and the like should be broadly understood, for example, "connection" can be fixed connection, can also be detachable connection, or integral connection; can be mechanical connection, can also be electrical connection; can be directly connected, can also be indirectly connected through an intermediate medium, can be the communication between two elements inside. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0021] As shown in the accompanying Figure 1 to the accompanying Figure 3 As shown in the accompanying
[0022] This utility model provides a translational conveying device for steel structure production, including a steel structure conveyor frame A1, a steel structure conveyor frame B2, transition supports 3, transition rollers 4, translational side plates 5, a slide table 6, a ball screw 7, an actuator housing 8, a drive component 9, a crossbeam 10, and a column 1A. Two mirror-symmetrical transition supports 3 are fixedly installed between the steel structure conveyor frame A1 and the steel structure conveyor frame B2, and the transition rollers 4 are rotatably installed between the two transition supports 3. Two translational side plates 5 are provided. The translational side plate 5 is fixedly installed on the slide table 6. The slide table 6 is connected to the ball screw 7 through a ball nut. The ball screw 7 is rotatably installed on the actuator housing 8. The output end of the drive component 9 fixedly installed on the outside of the actuator housing 8 is fixed to either end of the ball screw 7. The actuator housing 8 is fixedly installed on the crossbeam 10. The columns 1A are fixedly installed below both ends of the crossbeam 10. The crossbeam 10 and the columns 1A are located on one side of the steel structure conveyor frame A1 and the steel structure conveyor frame B2.
[0023] Furthermore, the steel structure conveyor frame A1 and steel structure conveyor frame B2 have identical structures. Taking steel structure conveyor frame A1 as an example, it includes two conveyor side plates 11, a support frame 12, several conveyor rollers 13, and corresponding bearing seats 14. The two conveyor side plates 11 are mirror-symmetrically fixed to the support frame 12 by welding. The support frame 12 is usually made of high-strength Q345 steel to ensure that the entire conveyor frame has sufficient load-bearing capacity. Several conveyor rollers 13 are installed between the two conveyor side plates 11 through bearing seats 14. The bearing seats 14 are bolted to the conveyor side plates 11 for easy installation, disassembly, and maintenance. The conveyor rollers 13 are generally made of 45# steel with a heat-treated surface to enhance their wear resistance and mechanical strength, ensuring long-term stable operation.
[0024] Furthermore, two mirror-symmetrical transition supports 3 are fixedly installed between the adjacent conveyor side plates 11 of the steel structure conveyor frame A1 and the steel structure conveyor frame B2. The transition supports 3 have an "I"-shaped structure, which effectively enhances their support stability. The transition supports 3 are generally made of Q235 steel, which has good processing performance and economy. Several transition rollers 4 are rotatably installed between the two transition supports 3 through the cooperation of shafts and bearings. The transition supports 3 are bolted to the conveyor side plates 11 for easy installation and position adjustment. The transition rollers 4 are also made of 45# steel with surface heat treatment to meet the requirements of frequent rotation.
[0025] Further, the uppermost vertex of the transition roller 4 and the conveying roller 13 are at the same height, and the precise control of this height is achieved by using high-precision measuring instruments during installation. The two axes are perpendicular to each other, and this positional relationship enables the steel structure to transition smoothly from the conveying roller 13 to the transition roller 4 during conveying. During actual installation, the positional accuracy of the transition roller 4 and the conveying roller 13 is ensured by precise positioning fixtures, ensuring that the steel structure does not jam or tilt during the transition process, greatly improving the stability and reliability of the conveying process.
[0026] Further, the transition roller 4 and the conveying roller 13 are not in contact with the two mirror-symmetric translation side plates 5 and maintain a certain spacing. This spacing is typically designed based on the size of the steel structure and the swing allowance during conveying, generally between 10-20mm. The inner surface of the two translation side plates 5 can contact the outer surface of the steel structure. The translation side plates 5 are made of Q235 steel plates and have certain strength and toughness. During installation, the inner surface of the translation side plates 5 is ensured to have good adhesion with the outer surface of the steel structure, so as to provide stable force during subsequent position adjustment of the steel structure.
[0027] Further, the translation side plate 5 is designed as an "L" shape, which is beneficial for contacting the side of the steel structure and providing stable support. One end of the translation side plate 5 is fixedly installed on the sliding table 6 by bolts. The sliding table 6 is pre-drilled with a parallel hole group that allows bolt installation, which facilitates the installation and adjustment of the translation side plate 5 at different positions to adapt to the needs of steel structures of different sizes. The bolts are generally high-strength bolts of grade 8.8 to ensure the firmness of the connection. The sliding table 6 is usually made of aluminum alloy material, which not only ensures sufficient strength but also reduces the overall weight and improves the flexibility of movement.
[0028] The working principle is as follows: First, the steel structure conveying frame A1 and the steel structure conveying frame B2 are respectively connected with the two parallel conveying machine frames of the steel structure production line, allowing the steel structure to be conveyed from the conveying machine frame of the production line to the steel structure conveying frame A1 or the steel structure conveying frame B2, providing a basis for subsequent steel structure translation. During conveying, the steel structure moves by rotating the conveying roller 13, which is installed on the conveying side plate 11 through the bearing seat 14, and the conveying side plate 11 is welded on the support frame 12, which provides stable support by using Q345 steel material, ensuring the stability of the conveying process.
[0029] When the steel structure is conveyed to the position where transition is needed, the steel structure can be smoothly and stably transitioned from the conveying roller 13 to the transition roller 4, since the uppermost vertex of the transition roller 4 is at the same height as the conveying roller 13 and the axes are perpendicular to each other. The transition roller 4 is installed between two mirror-symmetrical "H" shaped transition supports 3 made of Q235 steel and connected to the conveying side plate 11 by bolts, and the structure and connection mode ensure the stability of the transition link.
[0030] If the position of the steel structure needs to be adjusted, the driving component 9 starts to work. The driving component 9 is usually a motor fixedly installed outside the actuator shell 8 and fixedly connected to either end of the ball screw 7. When the motor operates, the ball screw 7 is driven to rotate, and the sliding table 6 is connected to the ball screw 7 through a ball nut, so that the sliding table 6 starts to move along the axis of the ball screw 7 under the action of the rotation of the ball screw 7.
[0031] The sliding table 6 is fixedly installed with two translation side plates 5 in an "L" shaped structure made of Q235 steel plate, and the inner side surface thereof is in contact with the outer side surface of the steel structure. With the movement of the sliding table 6, the translation side plates 5 push the steel structure to translate, so as to realize the accurate adjustment of the position of the steel structure. The sliding table 6 is provided with parallel hole groups allowing bolts to be installed, and the translation side plates 5 are fixed at different positions by 8.8 grade high-strength bolts to adapt to the needs of steel structures of different sizes. Meanwhile, the sliding table 6 is made of aluminum alloy, which improves the movement flexibility while ensuring the strength.
[0032] During the whole translation conveying process, the actuator shell 8 is fixedly installed on the cross beam 10, and the vertical columns 1A are fixedly installed at the lower ends of the cross beam 10, and the cross beam 10 and the vertical columns 1A are located on one side of the steel structure conveying frame A1 and the steel structure conveying frame B2 to provide a stable installation and support structure for the driving component 9, the ball screw 7 and the like, so as to guarantee the stability and reliability of the whole device.
[0033] The technical scheme of the utility model or the technical scheme inspired by the technical scheme of the utility model by those skilled in the art can be used to design similar technical schemes to achieve the above technical effects, which are all within the protection scope of the utility model.
Claims
1. A translation conveyor for steel construction production, characterized in that, The system includes a steel structure conveyor frame A (1), a steel structure conveyor frame B (2), a transition support (3), a transition roller (4), a translational side plate (5), a slide table (6), a ball screw (7), an actuator housing (8), a drive component (9), a crossbeam (10), and a column (1A). Two mirror-symmetrical transition supports (3) are fixedly installed between the steel structure conveyor frame A (1) and the steel structure conveyor frame B (2), and the transition roller (4) is rotatably installed between the two transition supports (3). Two translational side plates (5) are provided, and the two translational side plates (5) are fixedly installed. The slide (6) is connected to the ball screw (7) via a ball nut. The ball screw (7) is rotatably mounted on the actuator housing (8). The output end of the drive component (9) fixedly mounted on the outside of the actuator housing (8) is fixed to either end of the ball screw (7). The actuator housing (8) is fixedly mounted on the crossbeam (10). The columns (1A) are fixedly mounted below both ends of the crossbeam (10). The crossbeam (10) and the columns (1A) are located on one side of the steel structure conveyor frame A (1) and the steel structure conveyor frame B (2).
2. A translational conveyor for the production of steel structures as claimed in claim 1, characterized in that: The steel structure conveyor frame A (1) and the steel structure conveyor frame B (2) have the same structure. The steel structure conveyor frame A (1) includes a conveyor side plate (11), a support frame (12), a conveyor roller (13) and a bearing seat (14). There are two conveyor side plates (11), which are mirror-symmetrically fixed on the support frame (12). Several conveyor rollers (13) are mounted on the two conveyor side plates (11) through the bearing seat (14).
3. A translational conveyor for the production of steel structures as claimed in claim 2, characterized in that: Two mirror-symmetrical transition supports (3) are fixedly installed between the adjacent conveyor side plates (11) of the steel structure conveyor frame A (1) and the steel structure conveyor frame B (2). The transition supports (3) are in the shape of an "I". Several transition rollers (4) are rotatably installed between the two transition supports (3).
4. A translational conveyor for the production of steel structures as claimed in claim 3, characterized in that: The uppermost apex of the transition roller (4) and the conveyor roller (13) are at the same horizontal height, and their axes are perpendicular to each other, so that the steel structure can smoothly transition on the transition roller (4) and the conveyor roller (13).
5. A translational conveyor for the production of steel structures as claimed in claim 4, characterized in that: The transition roller (4) and the conveying roller (13) do not contact each other with the two mirror-symmetrical translation side plates (5) and are spaced apart, and the inner surfaces of the two translation side plates (5) can contact the outer surface of the steel structure.
6. A translational conveyor for the production of steel structures as claimed in claim 5, characterized in that: The translational side plate (5) has an "L" shaped structure. One end of the translational side plate (5) is fixedly installed on the slide table (6) by bolts. The slide table (6) has a set of parallel holes that allow bolt installation.