Hanging bracket for double-layer stainless steel I-shaped steel
By setting up telescopic grooves on the columns and installing an adjustable hanging frame mechanism on the outer wall of the I-steel, the problem that the double-layer stainless steel I-steel hanging frame cannot be adjusted is solved, and the height and position adjustment is achieved, which improves the use effect and safety of the hanging frame.
Patent Information
- Application Number
- CN202422102594.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-29
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-08-29
AI Technical Summary
The existing double-layer stainless steel I-steel hanger cannot adjust the height and position, resulting in the inability to operate when lifting heavy objects at high places, affecting the use effect.
By setting a telescopic groove on the column, the I-shaped steel can slidably adjust the height, and install a left-right hanger mechanism on the outer wall of the I-shaped steel, including a U-shaped moving block and a connecting rod, and position fixing is achieved using elastic fixing components.
It realizes flexible adjustment of the height and position of I-shaped steel, avoiding heavy objects being too high and cannot be lifted, and improves the use effect and safety of the hanging frame.
Smart Images

Figure CN223060534U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of double-layer stainless steel I-beams, in particular to a hanger for double-layer stainless steel I-beams. Background Technique
[0002] I-beams, also known as steel beams, are long steel bars with an I-shaped cross-section. I-beams are divided into ordinary I-beams and light I-beams. They are steel sections with an I-shaped cross-section. I-beams are mainly divided into ordinary I-beams, light I-beams and wide flange I-beams. According to the ratio of the flange to the web height, they are also divided into wide-width, medium-width and narrow-width wide flange I-beams. The specifications produced by the former two are No. 10 - 60, that is, the corresponding height is 10 cm - 60 cm. At the same height, light I-beams have narrow flanges, thin webs and light weights. Wide flange I-beams are also called H-beams. The cross-section feature is that the two legs are parallel and there is no slope inside the legs. It belongs to an economic cross-section steel section and is rolled on a four-high universal rolling mill, so it is also called "universal I-beam". National standards have been formed for ordinary I-beams and light I-beams.
[0003] The defects of the existing hanger for double-layer stainless steel I-beams are as follows: when the hanger for double-layer stainless steel I-beams needs to lift heavy objects, since the hanger for double-layer stainless steel I-beams is usually fixed and cannot be adjusted in height, when the heavy object to be lifted is relatively high, the lifting operation cannot be carried out. At the same time, when the position of the hanger for double-layer stainless steel I-beams cannot be changed, it will also affect the lifting operation of the hanger for heavy objects, thus reducing the use effect of the hanger for double-layer stainless steel I-beams.
[0004] Therefore, it is very necessary to develop a hanger for double-layer stainless steel I-beams. Summary of the Invention
[0005] The purpose of the utility model is to provide a hanger for double-layer stainless steel I-beams. By providing a column and a hanger mechanism, the I-beam is arranged in the telescopic groove on the column in a sliding manner by the support legs, so that the I-beam can move up and down on the column, which is convenient for adjusting the height of the I-beam to avoid the situation that the heavy object to be lifted is too high to be lifted. By using the hanger mechanism with the effect of being adjustable left and right, the hanger mechanism is installed on the outer wall of the I-beam in a sliding manner. When the hanger mechanism lifts the heavy object, the position of the hanger mechanism can be adjusted left and right according to the needs of the operator, which is convenient for the hanger mechanism to lift, effectively improving the use effect of the hanger for double-layer stainless steel I-beams, so as to solve the problem that the hanger for double-layer stainless steel I-beams cannot be adjusted and affects the use effect in the above background technique.
[0006] To achieve the above object, the utility model provides the following technical solution: A hanger for a double-layer stainless steel I-beam, including an I-beam, on both sides of the bottom of the I-beam, legs are installed, at the bottom end of the legs, columns are installed, at the bottom end of the columns, a bottom plate is installed, and a hanger mechanism is installed below the outer wall of the I-beam;
[0007] The hanger mechanism includes a hanger component and an elastic fixing component. The hanger component is connected to the I-beam, and the elastic fixing component is connected to the hanger component.
[0008] Preferably, a telescopic groove is opened at the central position of the upper surface of the column, and the inner wall of the telescopic groove is slidably connected to the outer wall of the leg.
[0009] Preferably, angle brackets are installed on both sides of the top of the bottom plate. One side outer wall of the angle bracket is fixedly connected to the lower outer wall of the column through a fastening bolt, and universal wheels are installed at the bottom of the bottom plate.
[0010] Preferably, the hanger component includes a U-shaped moving block. The inner wall of the U-shaped moving block is slidably connected to the outer wall of the I-beam. At the central position of the bottom of the U-shaped moving block, a hanger group is installed, and mounting holes are opened on both sides of the lower surface of the U-shaped moving block.
[0011] Preferably, the elastic fixing component includes a connecting rod. At the bottom end of the connecting rod, a pull ring is provided. At the top end of the connecting rod, a top plate is installed, and a spring is provided above the outer wall of the connecting rod.
[0012] Preferably, the spring is located between the pull ring and the top plate, and an anti-slip pad is provided at the top of the top plate.
[0013] Compared with the prior art, the beneficial effects of the utility model are:
[0014] By providing columns and a hanger mechanism, the I-beam is slidably arranged in the telescopic groove on the column by the legs, so that the I-beam can move up and down on the column, which is convenient for adjusting the height of the I-beam to avoid the situation that the heavy object to be lifted is too high to be lifted. By using the hanger mechanism with the effect of being adjustable left and right, the hanger mechanism is slidably installed on the outer wall of the I-beam. When the hanger mechanism hoists a heavy object, the position of the hanger mechanism can be adjusted left and right according to the needs of the operator, which is convenient for the hanger mechanism to hoist, and effectively improves the use effect of the double-layer stainless steel I-beam hanger. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is the front sectional view provided by the utility model;
[0016] Figure 2 is the front view provided by the utility model;
[0017] Figure 3 Front elevation sectional view of the hanger mechanism provided by the present utility model;
[0018] Figure 4 Stereogram of the I-beam steel structure provided by the present utility model;
[0019] Figure 5 Stereogram of a partial structure of the hanger mechanism provided by the present utility model.
[0020] In the figure: 1, I-beam steel; 101, leg; 2, column; 201, telescopic groove; 3, bottom plate; 301, corner bracket; 302, universal wheel; 4, hanger mechanism; 401, U-shaped moving block; 402, hanger group; 403, mounting hole; 404, connecting rod; 405, pull ring; 406, top plate; 407, spring; 408, anti-slip pad. Specific implementation manners
[0021] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0022] The present utility model provides the following technical solution: A hanger for double-layer stainless steel I-beam steel, which can effectively improve the use effect of the double-layer stainless steel hanger during use, and adds a column 2 and a hanger mechanism 4. Please refer to Figures 1-5, including an I-beam 1. On both sides of the bottom of the I-beam 1, legs 101 are installed. At the bottom end of the legs 101, columns 2 are installed. At the center position of the upper surface of the column 2, a telescopic groove 201 is opened. The inner wall of the telescopic groove 201 is slidably connected to the outer wall of the leg 101. The I-beam 1 is installed in the telescopic groove 201 on the column 2 in a sliding manner by the legs 101 at the bottom, so that the I-beam 1 can move up and down on the column 2. By opening a plurality of holes on the surface of the leg 101 and correspondingly opening a hole on the surface of the column 2, after the height of the I-beam 1 is adjusted, a pin is passed through the hole on the column 2 and inserted into the hole on the leg 101, and the position of the I-beam 1 can be fixed. The adjustment and fixation of the I-beam 1 are effectively realized, avoiding the situation that the heavy object to be lifted by the fixed I-beam 1 is too high to be lifted. At the bottom end of the column 2, a bottom plate 3 is installed. On both sides of the top of the bottom plate 3, angle brackets 301 are installed. One side outer wall of the angle bracket 301 is fixedly connected to the outer wall of the column 2 below through a fastening bolt. At the bottom of the bottom plate 3, universal wheels 302 are installed, so that the I-beam 1 can be moved to the designated place by the universal wheels 302 at any time, effectively improving the use effect of the I-beam 1. Below the outer wall of the I-beam 1, a hanging bracket mechanism 4 is installed;
[0023] The hanger mechanism 4 includes a hanger component and an elastic fixing component. The hanger component is connected to the I-beam 1, and the elastic fixing component is connected to the hanger component. The hanger component includes a U-shaped moving block 401. The inner wall of the U-shaped moving block 401 is slidably connected to the outer wall of the I-beam 1. At the center position of the bottom of the U-shaped moving block 401, a hanger group 402 is installed. The U-shaped moving block 401 is arranged on the outer wall of the I-beam 1 in a sliding manner, so that the U-shaped moving block 401 can slide horizontally left and right on the outer wall of the I-beam 1, thus facilitating the adjustment of the position of the hanger group 402 on the bottom of the U-shaped moving block 401. Installation holes 403 are formed on both sides of the lower surface of the U-shaped moving block 401. The elastic fixing component includes a connecting rod 404. The two groups of connecting rods 404 are arranged in the installation holes 403 on the U-shaped moving block 401 in a sliding manner, so that the connecting rod 404 can slide up and down on the U-shaped moving block 401. A pull ring 405 is arranged at the bottom end of the connecting rod 404, and a top plate 406 is installed at the top end of the connecting rod 404. The pull ring 405 and the top plate 406 are arranged outside and inside the U-shaped moving block 401, so that the pull ring 405 and the top plate 406 limit the connecting rod 404 to prevent the connecting rod 404 from detaching from the U-shaped moving block 401. A spring 407 is arranged above the outer wall of the connecting rod 404. The spring 407 is located between the pull ring 405 and the top plate 406. By using the elastic tightening effect of the spring 407, the spring 407 keeps the top plate 406 in an upwardly tightened state. An anti-slip pad 408 is arranged at the top of the top plate 406. By using the anti-slip effect of the anti-slip pad 408, after the left and right adjustment of the hanger group 402 is completed, the anti-slip pad 408 contacts the lower surface of the I-beam 1, so as to fix the position of the hanger group 402, avoiding the situation that the hanger group 402 moves when lifting a heavy object, resulting in the left and right sliding of the hanger group 402 affected by the movement, which is likely to cause harm to the surrounding operators. By pulling down the pull ring 405, the anti-slip pad 408 is separated from the lower surface of the I-beam 1, and the left and right adjustment of the hanger group 402 can be carried out again, effectively improving the use effect of the double-layer stainless steel I-beam hanger.
[0024] Working principle: When using the present utility model, the I-beam 1 is installed in the telescopic groove 201 on the column 2 in a sliding manner by the legs 101 at the bottom, so that the I-beam 1 can move up and down on the column 2. By opening a plurality of holes on the surface of the legs 101 and correspondingly opening a hole on the surface of the column 2, after the height of the I-beam 1 is adjusted, the pin penetrates the hole on the column 2 and is inserted into the hole on the legs 101, then the position of the I-beam 1 can be fixed, effectively realizing the adjustment and fixation of the I-beam 1, avoiding the situation that the heavy object to be lifted is too high to be lifted in the case of a fixed I-beam 1. By installing the column 2 on the bottom plate 3 and installing universal wheels 302 at the bottom of the bottom plate 3, the I-beam 1 can be moved to the designated place by the universal wheels 302 at any time, effectively improving the use effect of the I-beam 1. By arranging the U-shaped moving block 401 on the hanger mechanism 4 in a sliding manner on the outer wall of the I-beam 1, the U-shaped moving block 401 can slide horizontally left and right on the outer wall of the I-beam 1, so as to conveniently adjust the position of the hanger group 402 at the bottom of the U-shaped moving block 401. By arranging two groups of connecting rods 404 in a sliding manner in the mounting holes 403 on the U-shaped moving block 401, the connecting rods 404 can slide up and down on the U-shaped moving block 401. By arranging pull rings 405 and top plates 406 at both ends of the connecting rods 404 and setting the pull rings 405 and top plates 406 outside and inside the U-shaped moving block 401, the pull rings 405 and top plates 406 limit the connecting rods 404 to prevent the connecting rods 404 from detaching from the U-shaped moving block 401. By arranging a spring 407 on the outer wall of the connecting rod 404 and utilizing the elastic tightening effect of the spring 407, the spring 407 keeps the top plate 406 in an upwardly tightened state. By arranging an anti-slip pad 408 on the top of the top plate 406 and utilizing the anti-slip effect of the anti-slip pad 408, after the hanger group 402 is adjusted left and right, the anti-slip pad 408 contacts the lower surface of the I-beam 1, playing a role in fixing the position of the hanger group 402, avoiding the situation that the hanger group 402 moves when lifting a heavy object, resulting in the hanger group 402 sliding left and right under the influence of the movement, which is likely to cause harm to the surrounding operators. By pulling down the pull ring 405, the anti-slip pad 408 is separated from the lower surface of the I-beam 1, and then the hanger group 402 can be adjusted left and right again, effectively improving the use effect of the double-layer stainless steel I-beam hanger.
[0025] Although the present utility model has been described above with reference to the embodiments, various improvements can be made thereto and components thereof can be replaced with equivalents without departing from the scope of the present utility model. In particular, as long as there is no structural conflict, the various features in the embodiments disclosed by the present utility model can be combined with each other in any way, and the exhaustive description of the situations of these combinations is not given in this specification only for the consideration of saving space and resources. Therefore, the present utility model is not limited to the specific embodiments disclosed in the text, but includes all technical solutions falling within the scope of the claims.
Claims
1. A hanger for a double-layer stainless steel I-beam, comprising an I-beam (1), with legs (101) installed on both sides of the bottom of the I-beam (1), a column (2) installed at the bottom end of the leg (101), and a bottom plate (3) installed at the bottom end of the column (2), characterized in that: A hanger mechanism (4) is installed below the outer wall of the I-beam (1); The hanger mechanism (4) includes a hanger component and an elastic fixing component. The hanger component is connected to the I-beam (1), and the elastic fixing component is connected to the hanger component.
2. The hanger for a double-layer stainless steel I-beam according to claim 1, characterized in that: A telescopic groove (201) is provided at the center of the upper surface of the column (2), and the inner wall of the telescopic groove (201) is slidably connected to the outer wall of the leg (101).
3. The hanger for a double-layer stainless steel I-beam according to claim 1, characterized in that: Angle brackets (301) are installed on both sides of the top of the bottom plate (3). One side outer wall of the angle bracket (301) is fixedly connected to the outer wall below the column (2) by a fastening bolt, and universal wheels (302) are installed at the bottom of the bottom plate (3).
4. A hanger for a double-layer stainless steel I-beam according to claim 1, characterized in that: The hanger component includes a U-shaped moving block (401). The inner wall of the U-shaped moving block (401) is slidably connected to the outer wall of the I-beam (1). A hanger group (402) is installed at the center of the bottom of the U-shaped moving block (401), and mounting holes (403) are provided on both sides of the lower surface of the U-shaped moving block (401).
5. A hanger for a double-layer stainless steel I-beam according to claim 1, characterized in that: The elastic fixing component includes a connecting rod (404). A pull ring (405) is provided at the bottom end of the connecting rod (404), a top plate (406) is installed at the top end of the connecting rod (404), and a spring (407) is provided above the outer wall of the connecting rod (404).
6. The hanger for a double-layer stainless steel I-beam according to claim 5, wherein: The spring (407) is located between the pull ring (405) and the top plate (406), and an anti-slip pad (408) is provided at the top of the top plate (406).