Sliding block type mounting structure of cross beam stand column
By using adjustable hexagon screws and adjustment screws in the slider-type installation structure, the problem of difficult to adjust the deviation of the fixed joint in the X direction is solved, and the installation accuracy between the cross beam and the column is improved.
Patent Information
- Application Number
- CN202421974014.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-14
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-08-14
AI Technical Summary
The existing slider-type mounting structure is fixed by welding after the fixture set, resulting in deviations in the X direction of the fixture, which makes it difficult to adjust, affecting the installation accuracy of the cross beam.
The hexagonal screws between the mounting plate and the buckle plate can be adjusted to the fixing connection, and the position between the fixed joint and the I-beam is adjusted through horizontal adjustment screws and vertical adjustment screws to ensure that the fixed joint is consistent in the X-direction position of the I-beam.
Through the adjustable fixing method, multiple fixing parts are ensured to be consistent in the X-direction position of the I-beam, and the installation accuracy between the I-beam and the column is improved.
Smart Images

Figure CN222904105U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a slider type mounting structure for a cross beam and a column. Background Art
[0002] In an automated production line, a large number of robots are used for operation. To install these robot devices, structural components such as cross beams and columns are usually applied to realize the up and down, left and right movement of the robots.
[0003] Generally, a slider type mounting structure is adopted between the cross beam and the column. The I-shaped cross beam is fixedly connected to the mounting plate of the column through a slider type fixing part, and then the guide rail is installed on the cross beam. The manipulator realizes the X-direction movement through the sliding fit with the guide rail.
[0004] In the conventional slider type mounting structure, after the fixing part is sleeved on the cross beam, the fixing part and the mounting plate of the column are usually fixed by welding. In this way, once there is a deviation in the X direction among multiple fixing parts during installation, adjustment cannot be carried out, so it is difficult to ensure the installation accuracy of the cross beam. Content of the Utility Model
[0005] The technical problem to be solved by the utility model is: in order to overcome the deficiencies in the prior art, the utility model provides a slider type mounting structure for a cross beam and a column that is convenient to adjust to ensure the installation accuracy.
[0006] The technical solution adopted by the utility model to solve its technical problem is: a slider type mounting structure for a cross beam and a column, including an I-shaped cross beam and columns arranged at intervals along the length direction of the I-shaped cross beam. An upper end part of the column is fixedly connected with a mounting plate. A fixing part is arranged between the mounting plate and the upper plate of the I-shaped cross beam. The fixing part includes a buckle plate located above the surface of the upper plate of the I-shaped cross beam. The front and rear sides of the buckle plate are respectively clamped with inlay plates corresponding to the front and rear sides of the upper plate of the I-shaped cross beam. The bottom ends of the inlay plates are respectively clamped with embedding blocks located at the bottom surface of the upper plate of the I-shaped cross beam. The mounting plate and the buckle plate are adjustably fixedly connected through an internal hexagonal screw. A horizontal adjusting screw is connected to the inlay plate, and an end of the horizontal adjusting screw abuts against the side surface of the upper plate of the I-shaped cross beam. A vertical adjusting screw is connected to the upper surface of the buckle plate, and an end of the vertical adjusting screw abuts against the surface of the upper plate of the I-shaped cross beam.
[0007] Specifically, a rectangular square tube is arranged at the upper end part of the column. One bottom surface of the rectangular square tube is welded and fixed to the top surface of the column, and the other bottom surface of the rectangular square tube is welded and fixed to the mounting plate.
[0008] Further, in order to facilitate the adjustment of the front and rear positions between the mounting plate and the fixing part, a kidney-shaped long hole is opened on the mounting plate, and the internal hexagonal screw is threadedly connected with the buckle plate through the kidney-shaped long hole.
[0009] Further, a first rib plate is fixed between the bottom surface of the rectangular square tube and the side surface of the column, and second rib plates are respectively fixed between the left and right side surfaces of the rectangular square tube and the mounting plate.
[0010] Preferably, rectangular clamping holes are formed in the veneer, and rectangular clamping blocks that cooperate with the rectangular clamping holes are respectively provided on the front and rear side surfaces of the clamping plate and the outer side surface of the insert block.
[0011] The beneficial effects of the present utility model are as follows: The present utility model adopts an adjustable fixed connection between the mounting plate and the clamping plate, and adjusts the front and rear positions between the fixing member and the I-shaped cross beam through the horizontal adjustment screw, and adjusts the up and down positions between the fixing member and the I-shaped cross beam through the vertical adjustment screw. In this way, it can ensure that the positions of multiple fixing members in the X direction of the I-shaped cross beam are consistent and straight, thereby ensuring the installation accuracy between the I-shaped cross beam and the column. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] The present utility model will be further described below in conjunction with the drawings and embodiments.
[0013] Figure 1 is a schematic diagram of the overall structure of the present utility model.
[0014] Figure 2 is Figure 1 an enlarged schematic diagram of part A in
[0015] Figure 3 is a schematic diagram of the mounting plate of the present utility model.
[0016] Figure 4 is a schematic diagram of the fixing member of the present utility model.
[0017] In the figure: 1. I-shaped cross beam, 2. column, 3. mounting plate, 3-1. oblong hole, 4. clamping plate, 5. veneer, 5-1. rectangular clamping hole, 6. insert block, 7. hexagon socket head screw, 8. horizontal adjustment screw, 9. vertical adjustment screw, 10. rectangular square tube, 11. first rib plate, 12. second rib plate, 13. rectangular clamping block. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0018] The present utility model will now be further described in detail with reference to the drawings. These drawings are all simplified schematic diagrams, only illustrating the basic structure of the present utility model in a schematic manner, so they only show the components related to the present utility model.
[0019] As Figure 1 、 Figure 2A slider-type installation structure for a crossbeam and a column is shown, including an I-shaped crossbeam 1. Two columns 2 are arranged at intervals along the length direction of the I-shaped crossbeam 1. A rectangular square tube 10 is provided at the upper end of each column 2. The bottom surface of the rear end of the rectangular square tube 10 is welded and fixed to the top surface of the column 2, and a mounting plate 3 is welded and fixed to the bottom surface of the front end of the rectangular square tube 10.
[0020] To improve the connection strength between the rectangular square tube 10, the column 2, and the mounting plate 3, a first rib plate 11 is fixed between the bottom surface of the rectangular square tube 10 and the front side surface of the column 2, and three second rib plates 12 arranged at intervals are respectively fixed between the left and right side surfaces of the rectangular square tube 10 and the mounting plate 3.
[0021] As Figure 1 、As Figure 4 shown, a fixing member is provided between the mounting plate 3 and the upper plate of the I-shaped crossbeam 1. The fixing member includes a clamping plate 4, two inlay plates 5, and two embedding blocks 6. Among them, the clamping plate 4 is located above the surface of the upper plate of the I-shaped crossbeam 1, the two inlay plates 5 are respectively located on the front and rear sides of the upper plate of the I-shaped crossbeam 1, the two embedding blocks 6 are respectively located on the bottom surface of the upper plate of the I-shaped crossbeam 1. A rectangular clamping hole 5-1 is provided on the inlay plate 5. The front and rear side surfaces of the clamping plate 4 and the outer side surfaces of the embedding blocks 6 respectively have rectangular clamping blocks 13 that are matched with the rectangular clamping hole 5-1. The rectangular clamping blocks 13 and the clamping plate 4 and the embedding blocks 6 are all of an integral structure. In this way, the upper plate of the I-shaped crossbeam 1 is located within the space surrounded by a clamping plate 4, two inlay plates 5, and two embedding blocks 6.
[0022] As Figure 3 shown, a waist-shaped long hole 3-1 is provided on the mounting plate 3. The hexagon socket head screw 7 is threadedly connected and fixed to the clamping plate 4 through the waist-shaped long hole 3-1. The function of the waist-shaped long hole 3-1 is to facilitate the adjustment of the front and rear positions between the mounting plate 3 and the clamping plate 4.
[0023] Four horizontal adjustment screws 8 threadedly connected to the inlay plate 5 are provided at intervals on each inlay plate 5. The end of the horizontal adjustment screw 8 abuts against the side surface of the upper plate of the I-shaped crossbeam 1 and is locked with a nut after adjusting the front and rear positions between the fixing member and the I-shaped crossbeam 1; three vertical adjustment screws 9 threadedly connected to the clamping plate 4 are provided at intervals on the upper surface of the clamping plate 4 on the left and right. The end of the vertical adjustment screw 9 abuts against the surface of the upper plate of the I-shaped crossbeam 1 and is also locked with a nut after adjusting the up and down positions between the fixing member and the I-shaped crossbeam 1. In this way, during installation, the front and rear positions between the fixing member and the I-shaped crossbeam 1 can be adjusted through the horizontal adjustment screws 8, and the up and down positions between the fixing member and the I-shaped crossbeam 1 can be adjusted through the vertical adjustment screws 9, so as to ensure that the positions of multiple fixing members are consistent in the X direction of the I-shaped crossbeam 1, straight and error-free, and improve the installation accuracy between the I-shaped crossbeam 1 and the column 2.
[0024] Inspired by the above-described ideal embodiments of the present utility model, through the above description, relevant staff can completely make various changes and modifications without departing from the technical idea of the present utility model. The technical scope of the present utility model is not limited to the content in the specification, and its technical scope must be determined according to the scope of the claims.
Claims
1. A slider type mounting structure for a beam and a column, comprising an I-shaped beam (1), columns (2) arranged at intervals along the length direction of the I-shaped beam (1), and a mounting plate (3) fixedly connected to the upper end of the column (2), wherein: A fastening member is provided between the mounting plate (3) and the upper plate of the I-beam (1), and the fastening member comprises a gusset plate (4) located above the surface of the upper plate of the I-beam (1), and the front and rear sides of the gusset plate (4) are respectively clamped with panels (5) located on the front and rear sides of the upper plate of the I-beam (1), and the bottom ends of the panels (5) are respectively clamped with embedded blocks (6) located on the bottom surface of the upper plate of the I-beam (1); the mounting plate (3) and the gusset plate (4) are adjustably fixedly connected by means of hexagon socket screws (7), and the panel (5) is connected with a horizontal adjustment screw (8) whose end abuts against the side of the upper plate of the I-beam (1), and the upper surface of the gusset plate (4) is connected with a vertical adjustment screw (9) whose end abuts against the surface of the upper plate of the I-beam (1).
2. The slider type installation structure of the beam column according to claim 1 is characterized in that: A rectangular square tube (10) is provided at the upper end of the column (2); the bottom surface of one end of the rectangular square tube (10) is welded and fixed to the top surface of the column (2); and the bottom surface of the other end of the rectangular square tube (10) is welded and fixed to the mounting plate (3).
3. The slider type installation structure of the beam column as claimed in claim 2 is characterized in that: The mounting plate (3) is provided with a waist-shaped long hole (3-1), and the hexagon socket screw (7) is threadedly connected to the buckle plate (4) through the waist-shaped long hole (3-1).
4. The slider type installation structure of the beam column as claimed in claim 2 is characterized in that: A first rib plate (11) is fixed between the bottom surface of the rectangular square tube (10) and the side surface of the column (2), and a second rib plate (12) is fixed between the left and right side surfaces of the rectangular square tube (10) and the mounting plate (3), respectively.
5. The slider type installation structure of the beam column according to claim 1 is characterized in that: The panel (5) is provided with a rectangular clamping hole (5-1), and the front and rear sides of the buckle plate (4) and the outer side of the insert block (6) are respectively provided with rectangular clamping blocks (13) matched with the rectangular clamping hole (5-1).