CN222493280U - High-efficient cutting device of steel for bridge engineering construction - Google Patents
High-efficient cutting device of steel for bridge engineering construction Download PDFInfo
- Publication number
- CN222493280U CN222493280U CN202421917016.4U CN202421917016U CN222493280U CN 222493280 U CN222493280 U CN 222493280U CN 202421917016 U CN202421917016 U CN 202421917016U CN 222493280 U CN222493280 U CN 222493280U
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- fixedly connected
- sliding
- engineering construction
- steel
- cutting device
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- 229910000831 Steel Inorganic materials 0.000 title claims abstract description 50
- 239000010959 steel Substances 0.000 title claims abstract description 50
- 238000010276 construction Methods 0.000 title claims abstract description 22
- 230000000712 assembly Effects 0.000 claims 1
- 238000000429 assembly Methods 0.000 claims 1
- 238000000034 method Methods 0.000 abstract description 4
- 208000027418 Wounds and injury Diseases 0.000 abstract 1
- 230000006378 damage Effects 0.000 abstract 1
- 208000014674 injury Diseases 0.000 abstract 1
- 239000000463 material Substances 0.000 description 6
- 238000012986 modification Methods 0.000 description 3
- 230000004048 modification Effects 0.000 description 3
- 238000010586 diagram Methods 0.000 description 2
- 239000007858 starting material Substances 0.000 description 2
- 230000006978 adaptation Effects 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000007547 defect Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 238000003466 welding Methods 0.000 description 1
Classifications
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P70/00—Climate change mitigation technologies in the production process for final industrial or consumer products
- Y02P70/10—Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working
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- Bridges Or Land Bridges (AREA)
Abstract
The utility model discloses a high-efficiency steel cutting device for bridge engineering construction, which comprises a workbench, wherein the bottom of the workbench is fixedly connected with four brackets, one side of each bracket is provided with a sliding groove, the inside of one sliding groove is fixedly connected with a fixed plate, a threaded rod is rotationally connected between the bottom of the fixed plate and the inner wall of the sliding groove, the inside of the other sliding groove is fixedly connected with a fixed rod, the outer surface of the threaded rod is in threaded connection with a threaded block, the outer surface of the fixed rod is sleeved with a sliding block, and one side of the threaded block and one side of the sliding block are fixedly connected with a connecting block. According to the utility model, workers are not required to manually carry bridge steel onto the workbench, so that inconvenience of workers in the carrying process due to heavy bridge steel bodies is avoided, dropping of bridge steel caused by hand sliding is avoided, injury of the workers is avoided, and potential safety hazard is reduced.
Description
Technical Field
The utility model relates to the technical field of steel processing, in particular to a high-efficiency steel cutting device for bridge engineering construction.
Background
With the development of the steel industry, steel is widely used in bridge construction. When the bridge engineering construction is constructed, a large amount of steel materials are required to be used as supporting structures of the bridge, and in order to strengthen the structural strength of the bridge, the whole steel materials are generally arranged into a net-shaped structure. The steel materials of the net structure are required to be hinged and fixed at the head and the tail ends of every two steel materials, and then are connected and formed by a welding technology. Therefore, the cutting tool is used for cutting the first end and the last end of the steel.
The existing bridge steel cutting device generally needs to manually convey bridge steel to the device for cutting before processing the steel, but the bridge steel body is heavy, the mode of manual conveying is inconvenient, the condition that the bridge steel falls due to manual sliding easily occurs in the manual conveying process, and therefore workers are injured, and potential safety hazards are large.
Therefore, it is necessary to provide a high-efficiency cutting device for steel materials for bridge engineering construction to solve the above technical problems.
Disclosure of utility model
The utility model aims to solve the defects in the prior art, and provides a high-efficiency cutting device for steel for bridge engineering construction.
In order to achieve the purpose, the high-efficiency steel cutting device for bridge engineering construction comprises a workbench, wherein four brackets are fixedly connected to the bottom of the workbench, one side of each bracket is provided with a sliding groove, one sliding groove is fixedly connected with a fixing plate, a threaded rod is rotatably connected between the bottom of the fixing plate and the inner wall of the sliding groove, the other sliding groove is fixedly connected with a fixing rod, the outer surface of the threaded rod is in threaded connection with a threaded block, a sliding block is sleeved on the outer surface of the fixing rod, one side of the threaded block is fixedly connected with a connecting block, a supporting plate is fixedly connected between the two connecting blocks, and a sliding assembly is arranged on the supporting plate.
As a further description of the above technical solution:
The top of fixed plate is provided with the motor, the output of motor and the one end fixed connection of threaded rod drive the threaded rod through the starter motor and rotate to drive the thread piece and remove in one of them spout inside.
As a further description of the above technical solution:
The sliding assembly comprises a groove formed in the top of the supporting plate, a sliding plate is movably connected in the groove, four device grooves are formed in the bottom of the sliding plate, connecting rods are fixedly connected between one sides of the inner walls of the device grooves, and pulleys are sleeved on the outer surface of the connecting rods in a rotating mode.
As a further description of the above technical solution:
The thickness of sliding plate is higher than the degree of depth of fluting, the top fixedly connected with of sliding plate pushes away the handle, through pushing away the setting of handle, the staff can be convenient push away the sliding plate to the chute inside.
As a further description of the above technical solution:
The top of workstation has seted up the chute, sliding plate swing joint is inside the chute.
As a further description of the above technical solution:
two square grooves are formed in the top of the workbench, the size of each square groove is matched with the size of each connecting block, the two connecting blocks are movably connected inside the two square grooves respectively, and the connecting blocks are prevented from moving upwards in the process of moving upwards through the arrangement of the two square grooves.
As a further description of the above technical solution:
The top fixedly connected with electric telescopic handle of workstation, electric telescopic handle's flexible end fixedly connected with device piece, one side of device piece is provided with the cutting machine.
The utility model has the following beneficial effects:
Compared with the prior art, this high-efficient cutting device of steel for bridge engineering construction, through the setting of support, spout, fixed plate, threaded rod and dead lever isotructure, the starter motor drives the threaded rod and rotates, thereby drive the bridge steel on backup pad and the sliding plate and shift up, need not the manual transport bridge steel of workman to the workstation on, avoided because of the bridge steel body is heavier, it is comparatively inconvenient at the in-process of transport to lead to the staff, simultaneously also avoided appearing the hand to slide and lead to the bridge steel to take place to drop, lead to the injured condition of staff to take place, the potential safety hazard has been reduced.
Drawings
Fig. 1 is a schematic perspective view of the whole structure of a high-efficiency cutting device for steel materials for bridge engineering construction;
Fig. 2 is a schematic structural view of a threaded rod, a fixed rod and the like of the high-efficiency steel cutting device for bridge engineering construction;
FIG. 3 is a schematic diagram of the structure of the pushing handle, sliding plate, etc. of the steel high-efficiency cutting device for bridge engineering construction;
Fig. 4 is a schematic diagram of structures such as a connecting rod and a pulley of the high-efficiency steel cutting device for bridge engineering construction.
Legend description:
1. The device comprises a workbench, 2, a bracket, 3, a sliding chute, 4, a fixed plate, 5, a threaded rod, 6, a fixed rod, 7, a threaded block, 8, a sliding block, 9, a connecting block, 10, a supporting plate, 11, a motor, 12, a slot, 13, a sliding plate, 14, a device slot, 15, a connecting rod, 16, a pulley, 17, a push handle, 18, a chute, 19, a square groove, 20, an electric telescopic rod, 21, a device block, 22 and a cutting machine.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to figures 1-4, the high-efficiency steel cutting device for bridge engineering construction comprises a workbench 1, wherein four brackets 2 are fixedly connected to the bottom of the workbench 1, sliding grooves 3 are formed in one side of each of the two brackets 2, a fixed plate 4 is fixedly connected to the inside of one sliding groove 3, a threaded rod 5 is rotatably connected between the bottom of the fixed plate 4 and the inner wall of the sliding groove 3, a fixed rod 6 is fixedly connected to the inside of the other sliding groove 3, a threaded block 7 is connected to the outer surface of the threaded rod 5 in a threaded manner, a sliding block 8 is sleeved on the outer surface of the fixed rod 6, both sides of the threaded block 7 and both sides of the sliding block 8 are respectively and slidably connected to both sides of the inner walls of the two sliding grooves 3, a connecting block 9 is fixedly connected to one side of the threaded block 7 and one side of the sliding block 8, a supporting plate 10 is fixedly connected between the two connecting blocks 9, a sliding assembly is arranged on the supporting plate 10, a motor 11 is arranged on the top of the fixed plate 4, and the output end of the motor 11 is fixedly connected with one end of the threaded rod 5.
The slip subassembly is including seting up fluting 12 at backup pad 10 top, the inside swing joint of fluting 12 has slide plate 13, four device grooves 14 have been seted up to the bottom of slide plate 13, all fixedly connected with connecting rod 15 between the relative one side of four device grooves 14 inner wall, the surface rotation cover of connecting rod 15 has pulley 16, the thickness of slide plate 13 is higher than the degree of depth of fluting 12, the top fixedly connected with push away handle 17 of slide plate 13, chute 18 has been seted up at the top of workstation 1, slide plate 13 swing joint is inside chute 18, through the setting of slip subassembly, the staff of being convenient for removes the bridge steel of placing at slide plate 13 top to on the workstation 1.
Two square grooves 19 have been seted up at the top of workstation 1, the size of two square grooves 19 and the big or small looks adaptation of two connecting blocks 9, and two connecting blocks 9 swing joint respectively inside two square grooves 19, the top fixedly connected with electric telescopic handle 20 of workstation 1, electric telescopic handle 20's flexible end fixedly connected with device piece 21, one side of device piece 21 is provided with cutting machine 22, wait to cut the position with the steel and remove to the below of cutting machine 22 after, start cutting machine 22 and electric telescopic handle 20, electric telescopic handle 20's shrink drives the cutting machine 22 of operation and moves down, cut the processing to the steel.
When the bridge steel is required to be carried to the workbench 1 for processing, a trolley can be used for moving the bridge steel beside the device, the bridge steel is manually placed on the sliding plate 13 on the supporting plate 10, then the motor 11 is started to drive the threaded rod 5 to rotate, so that the threaded block 7 and one connecting block 9 are driven to move upwards, the supporting plate 10 and the other connecting block 9 are driven to move upwards, the sliding block 8 is enabled to move on the fixed rod 6, when the top of the supporting plate 10 is level with the top of the workbench 1, the motor 11 is turned off, the sliding plate 13 is pushed by the handle, the sliding plate 13 slides in the groove 12 under the cooperation of the four pulleys 16, the sliding plate 13 is continuously pushed to push the inside of the chute 18 at the top of the workbench 1, when the sliding plate 13 moves into the inside of the chute 18, the bridge steel is completely moved into the inside of the chute 18, the sliding plate 13 is taken out from the inside of the chute 18, the motor is not pulled out under the weight of the bridge steel, the sliding plate 13 is driven to move back into the chute 18 again, and the sliding plate 13 is driven to move back into the bridge 10 again, and the bridge steel is carried for one time, and the bridge steel is ready to be carried.
It should be noted that the foregoing description is only a preferred embodiment of the present utility model, and although the present utility model has been described in detail with reference to the foregoing embodiments, it should be understood that modifications, equivalents, improvements and modifications to the technical solution described in the foregoing embodiments may occur to those skilled in the art, and all modifications, equivalents, and improvements are intended to be included within the spirit and principle of the present utility model.
Claims (7)
1. The high-efficiency steel cutting device for bridge engineering construction comprises a workbench (1) and is characterized in that four supports (2) are fixedly connected to the bottom of the workbench (1), one side of each support (2) is provided with a sliding groove (3), one side of each support is fixedly connected with a fixing plate (4), a threaded rod (5) is connected between the bottom of each fixing plate (4) and the inner wall of each sliding groove (3) in a rotating mode, the other side of each fixing plate is fixedly connected with a fixing rod (6) in each sliding groove (3), thread blocks (7) are connected to the outer surfaces of the threaded rods (5) in a threaded mode, sliding blocks (8) are sleeved on the outer surfaces of the fixing rods (6), connecting blocks (9) are fixedly connected to one side of each thread block (7) and one side of each sliding block (8), supporting plates (10) are fixedly connected between the two connecting blocks (9), and sliding assemblies are arranged on the supporting plates (10).
2. The efficient cutting device for steel for bridge engineering construction according to claim 1, wherein the top of the fixing plate (4) is provided with a motor (11), and the output end of the motor (11) is fixedly connected with one end of the threaded rod (5).
3. The efficient steel cutting device for bridge engineering construction according to claim 1, wherein the sliding assembly comprises a slot (12) formed in the top of the supporting plate (10), a sliding plate (13) is movably connected in the slot (12), four device slots (14) are formed in the bottom of the sliding plate (13), connecting rods (15) are fixedly connected between one sides of the four opposite inner walls of the device slots (14), and pulleys (16) are sleeved on the outer surface of the connecting rods (15) in a rotating mode.
4. The efficient steel cutting device for bridge engineering construction according to claim 3, wherein the thickness of the sliding plate (13) is higher than the depth of the slot (12), and a pushing handle (17) is fixedly connected to the top of the sliding plate (13).
5. The efficient steel cutting device for bridge engineering construction according to claim 3, wherein the top of the workbench (1) is provided with a chute (18), and the sliding plate (13) is movably connected inside the chute (18).
6. The efficient cutting device for steel for bridge engineering construction according to claim 1, wherein two square grooves (19) are formed in the top of the workbench (1), the sizes of the two square grooves (19) are matched with the sizes of the two connecting blocks (9), and the two connecting blocks (9) are movably connected inside the two square grooves (19) respectively.
7. The efficient steel cutting device for bridge engineering construction according to claim 1, wherein an electric telescopic rod (20) is fixedly connected to the top of the workbench (1), a device block (21) is fixedly connected to the telescopic end of the electric telescopic rod (20), and a cutting machine (22) is arranged on one side of the device block (21).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421917016.4U CN222493280U (en) | 2024-08-08 | 2024-08-08 | High-efficient cutting device of steel for bridge engineering construction |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421917016.4U CN222493280U (en) | 2024-08-08 | 2024-08-08 | High-efficient cutting device of steel for bridge engineering construction |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN222493280U true CN222493280U (en) | 2025-02-18 |
Family
ID=94546844
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202421917016.4U Active CN222493280U (en) | 2024-08-08 | 2024-08-08 | High-efficient cutting device of steel for bridge engineering construction |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN222493280U (en) |
-
2024
- 2024-08-08 CN CN202421917016.4U patent/CN222493280U/en active Active
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