Steel structure engineering column beam welding equipment

By designing the steel structure engineering column and beam welding equipment with positioning bars and support plates, the problem of difficulty in carrying welding machines and steel columns during high-altitude operations is solved, the welding machines and steel columns can be conveniently placed, and the safety and efficiency of high-altitude welding are improved.

CN223368623UActive Publication Date: 2025-09-23CHENGDU YITENG STEEL STRUCTURE CO LTD
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Patent Information

Application Number
CN202422627312.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-30
Publication Date
2025-09-23
Estimated Expiration
2034-10-30

AI Technical Summary

Technical Problem

During high-altitude operations, it is difficult for operators to carry a welding machine and several steel columns at the same time, and the welding machine is prone to falling or scalding the human body. Existing technology cannot conveniently perform continuous welding of steel structure beams and columns at high altitudes.

Method used

A steel structure engineering column and beam welding equipment is designed, which includes a positioning bar and a support plate. The positioning bar can be detachably connected to the side of the steel beam. The support plate is provided with a slide groove and a horizontal placement plate. The horizontal placement plate has a welding machine hanging hole and a cylinder. The cylinder is open for placing steel columns. The support plate can slide to the next welding position. The welder and steel column can be temporarily placed. It is suitable for high-altitude continuous welding.

Benefits of technology

The welding machine and steel columns can be conveniently placed, and operators can more conveniently perform multiple welding operations at high altitudes, avoiding the risk of the welding machine falling and burns, and improving the safety and efficiency of high-altitude welding.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses steel structure engineering column beam welding equipment, which relates to the technical field of steel structure welding equipment, and comprises a positioning strip detachably connected to the side surface of a steel beam; the positioning strips are provided with sliding grooves formed in the length direction of the steel beam. The bottom of the supporting plate is connected with the sliding groove in a sliding mode, a horizontal containing plate is arranged on the supporting plate, a welding machine hanging hole and a barrel are arranged on the horizontal containing plate, and the axis of the barrel is perpendicular to the top of the steel beam; and the top of the cylinder body is open. By the adoption of the scheme, when the steel structure beam column is welded at high altitude, a welding machine and the steel column can be conveniently placed, and the welding device is suitable for the high-altitude continuous welding procedure of a plurality of steel columns.
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Description

Technical Field

[0001] The utility model relates to the technical field of steel structure welding equipment, in particular to a steel structure engineering column and beam welding equipment. Background Art

[0002] After the main frame of the steel structure beams and columns is installed, it is necessary to weld several steel columns on the steel structure beams in the air, especially at the dense load-bearing positions of the steel structure, to increase the connection nodes and strengthen the strength of the overall frame.

[0003] However, in the prior art, especially when working at height, it is not easy for operators to carry a welding machine and several steel columns at the same time. The welding machine and several steel columns are easy to fall when carried on the body, and the welding machine is not easy to be too close to the human body when in continuous working and standby mode. Once the operation is wrong, it is very easy to burn the human body. Utility Model Content

[0004] The present invention does not solve the deficiencies of the prior art, but aims to provide a steel structure engineering column and beam welding device. By adopting this solution, when welding steel structure beams and columns at high altitude, the welding machine and steel columns can be easily placed, and the device is suitable for continuous welding processes of several steel columns at high altitude.

[0005] The utility model is achieved through the following technical solutions:

[0006] A steel structure engineering column and beam welding device, comprising:

[0007] A positioning bar, the positioning bar being detachably connected to the side of the steel beam; the positioning bar having a sliding groove arranged along the length direction of the steel beam;

[0008] A support plate, the bottom of the support plate is slidably connected to the slide groove, and a horizontal placement plate is provided on the support plate. The horizontal placement plate is respectively provided with a welding machine hanging hole and a cylinder, and the axis of the cylinder is perpendicular to the top of the steel beam; the top of the cylinder is open.

[0009] Compared with the existing technology, especially when working at high altitude, it is not easy for operators to carry a welding machine and several steel columns at the same time. The welding machine and several steel columns are easy to fall off when carried on the body, and the welding machine is not easy to be too close to the human body in continuous working and standby states. Once the operation is wrong, it is very easy to burn the human body. The utility model provides a steel structure engineering column and beam welding equipment. By adopting this solution, the welding machine and steel columns can be easily placed when welding steel structure beams at high altitude, and it is suitable for the continuous welding process of several steel columns at high altitude. The specific solution includes a positioning bar and a support plate. The positioning bar is detachably connected to the side of the steel beam. The positioning bar is also provided with a slide groove. The support plate can slide along the length of the slide groove. In this way, the support plate can be easily moved to the next steel column welding position, making the operation of the operator more convenient. A horizontal placement plate is also provided on the support plate. The horizontal placement plate is respectively provided with a welding hanging hole and a cylinder. The welding machine hanging hole is used to temporarily place the welding machine. The upper end of the cylinder is open and is used to temporarily place several steel columns inside. Thus, a temporary placement station for welding and steel columns is set up at high altitude. When welding is needed, the welding machine and a steel column can be taken. When not welding, the operator can also free his hands to find the next welding point. When in use, the device is placed on a vacant beam, and several steel columns on other beams are welded first, and finally welded on the vacant beam at that location. After welding is completed, the device can be removed. The positioning strips in the device are only located on the corner side walls of the beam and do not block the welding points on the main surface. Therefore, the device can be placed on the beam to be welded without hindering the welding of several steel columns.

[0010] In order to facilitate the rapid disassembly and assembly of the cylinder, or the replacement of a cylinder of corresponding size, the side wall of the cylinder is provided with a connecting block, and the cylinder is connected to the horizontally placed plate by bolts through the connecting block.

[0011] In order to facilitate the rapid disassembly and assembly of the horizontal placement plate, a socket is opened in the middle of the horizontal placement plate, and the horizontal placement plate is inserted into the top of the support plate through the socket; the welding machine hanging hole and the cylinder are respectively located on both sides of the support plate.

[0012] In order to support the horizontal plate and prevent it from sliding further down, the middle of the support plate is provided with a thickened section. The thickened section can increase the thickness locally so that the horizontal plate can slide down to a specified position.

[0013] In order to facilitate the rapid disassembly and assembly of the support plate, a slider is slidably connected to the slide groove, and the lower end of the support plate is detachably connected to the slider.

[0014] As a detachable connection method, the lower end of the support plate is provided with a flat plate, the upper end of the slider extends out of the positioning bar, and the flat plate and the upper end of the slider are bolted together;

[0015] An L-shaped folded plate extends from the side wall of the slider, which bends toward the side wall of the positioning bar. The side wall of the positioning bar has a groove along its length. The L-shaped folded plate has a threaded hole for screwing a bolt that can be tightened against the bottom of the groove. A positioning bar extends from the upper end of the slider to facilitate installation of the flat panel and elevate the flat panel above the steel beam. Furthermore, an L-shaped plate extends from the slider, with the side of the L-shaped plate facing the side wall of the positioning bar. Bolts can be threaded onto the side of the L-shaped plate. The bolts pass through the side of the L-shaped plate and can be inserted into the groove of the side wall of the positioning bar to achieve tightening and complete the temporary fixation of the slider.

[0016] To accommodate the length of the steel columns and facilitate direct extraction from below, the upper and lower ends of the cylinder are open; a support plate is suspended downward from the lower end of the cylinder, with the support surface of the support plate facing the lower end of the cylinder. In this solution, both ends of the cylinder are open, and a support plate is suspended from the bottom. This allows several steel columns to pass through the cylinder and be placed directly on the support plate for temporary placement, with the middle of the steel column resting against the inner side of the cylinder to adapt to the length of the steel column. In addition, when the steel column needs to be removed, it only needs to be pulled out from below.

[0017] In order to adjust the lateral position of the support plate and the cylinder, the flat plate is provided with a first elongated hole, which is arranged along the width direction of the steel beam; the flat plate is bolted to the slider via the first elongated hole.

[0018] To removably attach the positioning bar to the steel beam, each end of the positioning bar is provided with an L-shaped horizontal plate. One side of the horizontal plate runs along the width of the steel beam, and the end of one side of the horizontal plate is removably connected to the top surface of the positioning bar. The other side of the horizontal plate is bent downward. In this solution, the positioning bar is provided with a parallel L-shaped horizontal plate at each end, thereby locking the other side of the steel beam into place. In this way, the positioning bar is located on one side of the steel beam, and the other side of the horizontal plate is located on the other side of the steel beam, thereby preventing the positioning bar from moving and achieving temporary fixation of the positioning bar.

[0019] In order to adapt to steel beams of different widths and adjust the clamping length of the cross plate, the end of one side of the cross plate is provided with a second long hole, and the second long hole is arranged along the width direction of the steel beam; the cross plate is connected to the end of the positioning bar by bolts through the second long hole.

[0020] Compared with the prior art, the present invention has the following advantages and beneficial effects:

[0021] The utility model provides a steel structure engineering column and beam welding device. By adopting this solution, when welding steel structure beams and columns at high altitude, the welding machine and steel columns can be easily placed, and the device is suitable for continuous welding processes of several steel columns at high altitude. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] The accompanying drawings described herein are used to provide a further understanding of the embodiments of the present invention, constitute a part of this application, and do not constitute a limitation of the embodiments of the present invention. In the accompanying drawings:

[0023] Figure 1 This is a structural diagram of a steel structure engineering column and beam welding device provided by the utility model;

[0024] Figure 2 A schematic structural diagram of the support plate provided by the utility model;

[0025] Figure 3 The utility model provides Figure 1 Enlarged view of point A in the middle;

[0026] Figure 4 The utility model provides Figure 1 Enlarged view of point B in the middle.

[0027] Markings and corresponding parts names in the accompanying drawings:

[0028] 1-positioning bar, 2-support plate, 3-horizontal placement plate, 301-welding machine hanging hole, 302-cylinder, 303-connecting block, 4-slider, 5-flat plate, 501-first long strip hole, 6-horizontal plate, 601-second long strip hole. DETAILED DESCRIPTION

[0029] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below in conjunction with embodiments and drawings. The schematic implementation methods of the present invention and their descriptions are only used to explain the present invention and are not intended to limit the present invention.

[0030] Example

[0031] This embodiment provides a steel structure engineering column beam welding equipment, such as Figure 1-Figure 4 Shown, including:

[0032] A positioning bar 1, which is detachably connected to the side of the steel beam; the positioning bar 1 is provided with a sliding groove arranged along the length direction of the steel beam;

[0033] The support plate 2 has a bottom that is slidably connected to the slide groove, and a horizontal placement plate 3 is provided on the support plate 2. The horizontal placement plate 3 has a welding machine hanging hole 301 and a cylinder 302, respectively. The axis of the cylinder 302 is perpendicular to the top of the steel beam; the top of the cylinder 302 is open.

[0034] Compared with the existing technology, especially when working at high altitude, it is not easy for operators to carry a welding machine and several steel columns at the same time. The welding machine and several steel columns are easy to fall off when carried on the body, and the welding machine is not easy to be too close to the human body in continuous working and standby states. Once the operation is wrong, it is very easy to burn the human body. The utility model provides a steel structure engineering column and beam welding equipment. By adopting this solution, the welding machine and steel columns can be easily placed when welding steel structure beams at high altitude, and it is suitable for the continuous welding process of several steel columns at high altitude. In the specific scheme, the invention comprises a positioning bar 1 and a support plate 2, wherein the positioning bar 1 is detachably connected to the side of the steel beam, and a slide groove is also provided on the positioning bar 1, and the support plate 2 can slide along the length direction of the slide groove, so that the support plate 2 can be easily moved to the next steel column welding position, making the operation of the operator more convenient; a horizontal placement plate 3 is also provided on the support plate 2, and the horizontal placement plate 3 is respectively provided with a welding hanging hole and a cylinder 302, wherein the welding machine hanging hole 301 is used to temporarily place the welding machine, and the upper end of the cylinder 302 is open for temporarily placing several steel columns therein, thereby setting a temporary placement station for welding and steel columns at high altitude, and taking the welding machine and a steel column when welding is needed, and the operator can also free his hands to find the next welding point when not welding. When in use, the device is placed on a certain vacant beam, and several steel columns on other beams are welded first, and then welded on the vacant beam at the end, and after welding is completed, the device is removed. The positioning strip 1 in the device is only located on the corner side wall of the beam and does not block the welding points on the main surface. Therefore, the device can be placed on the beam to be welded without hindering the welding of several steel columns.

[0035] In order to facilitate the rapid disassembly and assembly of the cylinder 302 or the replacement of the cylinder 302 with a corresponding size, the side wall of the cylinder 302 is provided with a connecting block 303 , and the cylinder 302 is bolted to the horizontal placement plate 3 via the connecting block 303 .

[0036] In order to facilitate the rapid disassembly and assembly of the horizontal plate 3, a socket is opened in the middle of the horizontal plate 3, and the horizontal plate 3 is inserted into the top of the support plate 2 through the socket; the welding machine hanging hole 301 and the cylinder 302 are respectively located on both sides of the support plate 2.

[0037] In order to support the horizontal plate 3 and prevent the horizontal plate 3 from continuing to slide down, the middle part of the support plate 2 is provided with a thickened section. By the thickened section, the thickness is locally increased so that the horizontal plate 3 can slide down to the specified position.

[0038] In order to facilitate the rapid disassembly and assembly of the support plate 2 , a slider 4 is slidably connected to the slide groove, and the lower end of the support plate 2 is detachably connected to the slider 4 .

[0039] As a detachable connection method, the lower end of the support plate 2 is provided with a flat plate 5, the upper end of the slider 4 extends out of the positioning bar 1, and the flat plate 5 and the upper end of the slider 4 are bolted;

[0040] An L-shaped folded plate 401 extends from the side wall of the slider 4, bent toward the side wall of the positioning bar 1. The side wall of the positioning bar 1 has a groove 101 along its length. The L-shaped folded plate 401 has a threaded hole for receiving a bolt that can be tightened against the bottom of the groove 101. The upper end of the slider 4 extends beyond the positioning bar 1 to allow for installation of the flat plate 5 and to elevate the flat plate 5 above the steel beam. Furthermore, an L-shaped plate 401 extends from the slider, with the side of the L-shaped plate 401 facing the side wall of the positioning bar 1. Bolts can be threaded onto the side of the L-shaped plate 401, which passes through the side of the L-shaped plate 401 and can be inserted into the groove in the side wall of the positioning bar 1 to achieve tightening, thus temporarily securing the slider 4.

[0041] To accommodate the length of the steel columns and facilitate direct extraction from below, the upper and lower ends of the cylinder 302 are open; a support plate 304 is suspended downward from the lower end of the cylinder 302, with the support surface of the support plate 304 facing the lower end of the cylinder 302. In this solution, both ends of the cylinder 302 are open, and the support plate 304 is suspended from the bottom. In this way, several steel columns can pass through the cylinder 302 and have their bottoms directly placed on the support plate 304, thus achieving temporary placement, with the middle of the steel column resting against the inside of the cylinder 302 to adapt to the length of the steel column. In addition, when the steel column needs to be removed, it only needs to be pulled out from below.

[0042] In order to adjust the lateral position of the support plate 2 and the cylinder 302 , the flat plate 5 is provided with a first elongated hole 501 , which is arranged along the width direction of the steel beam; the flat plate 5 is bolted to the slider 4 via the first elongated hole 501 .

[0043] To removably attach the positioning bar 1 to the steel beam, each end of the positioning bar 1 is provided with a horizontal plate 6, which is L-shaped. One side of the horizontal plate 6 runs along the width of the steel beam, and the end of one side of the horizontal plate 6 is removably connected to the top surface of the end of the positioning bar 1. The other side of the horizontal plate 6 is bent downward. In this solution, the positioning bar 1 is provided with a parallel horizontal plate 6 at each end, and the horizontal plate 6 is L-shaped, so that the L-shaped shape can capture the other side of the steel beam. In this way, the positioning bar 1 is located on one side of the steel beam, and the other side of the horizontal plate 6 is located on the other side of the steel beam, thereby preventing the positioning bar 1 from moving and achieving temporary fixation.

[0044] In order to adapt to steel beams of different widths and adjust the clamping length of the cross plate 6, the end of one side of the cross plate 6 is provided with a second long hole 601, and the second long hole 601 is arranged along the width direction of the steel beam; the cross plate 6 is connected to the end of the positioning bar 1 by bolts through the second long hole 601.

[0045] The specific implementation methods described above further illustrate the purpose, technical solutions and beneficial effects of the utility model in detail. It should be understood that the above description is only a specific implementation method of the utility model and is not intended to limit the scope of protection of the utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the utility model should be included in the scope of protection of the utility model.

Claims

1. A steel structure engineering column and beam welding equipment, characterized in that, include: A positioning bar (1), the positioning bar (1) being detachably connected to the side of the steel beam; the positioning bar (1) being provided with a sliding groove arranged along the length direction of the steel beam; A support plate (2), the bottom of the support plate (2) is slidably connected to the slide groove, a horizontal placement plate (3) is provided on the support plate (2), the horizontal placement plate (3) is respectively provided with a welding machine hanging hole (301) and a cylinder (302), the axis of the cylinder (302) is perpendicular to the top of the steel beam; the top of the cylinder (302) is open.

2. A steel structure engineering column and beam welding equipment according to claim 1, characterized in that: The side wall of the cylinder (302) is provided with a connecting block (303), and the cylinder (302) is bolted to the horizontally placed plate (3) via the connecting block (303).

3. The steel structure engineering column and beam welding equipment according to claim 1, characterized in that: A plug hole is provided in the middle of the horizontally placed plate (3), and the horizontally placed plate (3) is inserted into the top of the support plate (2) through the plug hole; The welding machine hanging hole (301) and the cylinder (302) are respectively located on both sides of the support plate (2).

4. A steel structure engineering column and beam welding equipment according to claim 3, characterized in that: The middle part of the support plate (2) is provided with a thickened section.

5. The steel structure engineering column and beam welding equipment according to claim 1, characterized in that: A slider (4) is slidably connected to the slide groove, and the lower end of the support plate (2) is detachably connected to the slider (4).

6. The steel structure engineering column and beam welding equipment according to claim 5, characterized in that: The lower end of the support plate (2) is provided with a flat plate (5), the upper end of the slider (4) extends out of the positioning bar (1), and the flat plate (5) and the upper end of the slider (4) are connected by bolts; An L-shaped folded plate (401) extends from the side wall of the slider (4), and the L-shaped folded plate (401) is bent toward the side wall of the positioning strip (1). The side wall of the positioning strip (1) has a groove (101) along its length direction; the L-shaped folded plate (401) has a threaded hole, and the threaded hole is used to screw a bolt that can be tightened against the bottom of the groove (101).

7. The steel structure engineering column and beam welding equipment according to claim 6, characterized in that: The upper and lower ends of the cylinder (302) are both open; a support plate (304) is suspended downward from the lower end of the cylinder (302), and the support surface of the support plate (304) is arranged toward the lower end of the cylinder (302).

8. The steel structure engineering column and beam welding equipment according to claim 7, characterized in that: The flat plate (5) is provided with a first elongated hole (501), and the first elongated hole (501) is arranged along the width direction of the steel beam; the flat plate (5) is bolted to the slider (4) via the first elongated hole (501).

9. The steel structure engineering column and beam welding equipment according to claim 1, characterized in that: Both ends of the positioning bar (1) are provided with a transverse plate (6), and the transverse plate (6) is L-shaped; one side of the transverse plate (6) is arranged along the width direction of the steel beam, and the end of one side of the transverse plate (6) and the top surface of the end of the positioning bar (1) are detachably connected; The other side of the transverse plate (6) is bent downward.

10. The steel structure engineering column and beam welding equipment according to claim 9, characterized in that: The end of one side of the transverse plate (6) is provided with a second elongated hole (601), and the second elongated hole (601) is arranged along the width direction of the steel beam; the transverse plate (6) is bolted to the end of the positioning bar (1) through the second elongated hole (601).