Steel pipe transportation fixing support device for steel net rack production
By designing a fixed support device for steel pipe transportation, gravity and inertia are used to clean impurities from the outer wall of the steel pipe, and automatic feeding and transfer are achieved. This solves the problems of manual handling and the influence of impurities, and improves production efficiency and product quality.
Patent Information
- Application Number
- CN202423123555.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-12-18
AI Technical Summary
The existing steel pipe transport equipment requires manual handling to move the pipes to the operating table for processing after they are transported to the designated location. Furthermore, the metal particles and impurities adhering to the outer wall of the steel pipes are not cleaned in time, which affects the next process and the lifespan of the equipment.
A steel pipe transport fixing support device was designed, which includes an inclined base plate, an impurity outlet and an impurity cavity. It uses gravity and inertia to clean impurities, and realizes automatic feeding and transfer of steel pipes through gear and clamping bar meshing.
This technology enables the automatic cleaning of impurities from the outer wall of steel pipes during transport, reducing the labor intensity of workers and improving production efficiency and product quality.
Smart Images

Figure CN223560261U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to steel pipe transport device field, especially in steel mesh frame production's steel pipe transport fixed support device. BACKGROUND
[0002] Steel mesh frame is a kind of space structure by the node connection of the form of a certain grid according to multiple rod pieces, it has the advantages such as small space stress, light weight, rigidity, good seismic performance, is widely used in gymnasium, theatre, exhibition hall, waiting room, stadium stand canopy, hangar, two-way large column spacing workshop and other building roof cover;
[0003] Its main material is steel pipe, in production, steel pipe needs to be lofting and number material, then after cutting, edge processing and rust removal and painting, can reach steel mesh frame use standard, in production process, transport device is needed to be used to transfer steel pipe, to carry out next process;
[0004] At present, steel pipe transport mode in production process includes hoisting transfer, forklift transfer, handcart transfer, among which hoisting transfer and forklift transfer are suitable for large-scale steel pipe transportation, in steel mesh frame production process, since steel pipe needs to pass through multiple process machining, generally uses handcart to transport, but the existing transport device needs manual handling of steel pipe to operation table after transporting to specified place, to carry out corresponding processing to steel pipe, increases the labor intensity of worker, reduces production efficiency, and after steel pipe is processed, metal particles or other impurities generated during processing are attached to steel pipe outer wall, these impurities are not cleaned in time, one to affect next process processing, two to affect service life of processing equipment, reduces product quality.
[0005] Therefore, it is necessary to provide a rust removal device for steel mesh frame steel pipe raw material to solve the above problems. CONTENT OF UTILITY MODEL
[0006] The utility model discloses a kind of steel pipe transport fixed support device for steel mesh frame production, to solve the problem that the existing transport device in above background technology needs manual handling of steel pipe to operation table after transporting to specified place to carry out corresponding processing to steel pipe and steel pipe outer wall after steel pipe is processed, metal particles or other impurities generated during processing are attached, these impurities are not cleaned in time, affect next process processing.
[0007] To achieve the above object, the utility model provides following technical scheme: including equipment base, the upper surface fixed mounting of equipment base has the stand, the stand has four, the upper end installation of stand has the first inclined plate, the upper surface of first inclined plate is close to two side positions and is installed with the guide strip, is installed with rubber roller on the guide strip, the lower installation of first inclined plate has second inclined plate, the upper of second inclined plate is equipped with the impurity drop, the impurity drop has a plurality of, evenly distributes on second inclined plate, the lower installation of second inclined plate has third inclined plate, the lower installation of third inclined plate has fourth inclined plate, the lower installation of fourth inclined plate has the inclined bottom plate, the hole is equipped with on the inclined bottom plate,
[0008] The first inclined plate and the second inclined plate are oppositely distributed, the second inclined plate and the third inclined plate are oppositely distributed, the third inclined plate and the fourth inclined plate are oppositely distributed, and the fourth inclined plate and the inclined bottom plate are oppositely distributed.
[0009] The front surface of the equipment base is provided with a feeding base, the other side surface of the feeding base is provided with a motor, the feeding base is provided with a feeding cavity, the upper surface of the feeding base is provided with a supporting column, the supporting column has two and is axially symmetrically distributed on the feeding base, the supporting column is provided with a fixed shaft close to the upper end position between the supporting columns, a rotating shaft is installed in the feeding cavity, one end of the rotating shaft is provided with a sealing bearing, and the output end of the motor is in transmission connection with the rotating shaft through a transmission shaft.
[0010] The rotating shaft is provided with a gear, the gear has two and is axially symmetrically distributed on the rotating shaft, the fixed shaft is provided with a gear, the gear has two and is axially symmetrically distributed on the fixed shaft, the gear is provided with a metal track, the outer side of the metal track is provided with a fork plate, the inner side of the metal track is provided with a clamping strip, and the clamping strip is in engagement with the gear.
[0011] Preferably, the equipment base is provided with a pull-out box on one side surface, the pull-out box is provided with a handle, the pull-out box is provided with an impurity falling cavity, and the impurity falling cavity corresponds to the hole.
[0012] Preferably, the second inclined plate is provided with a baffle, the third inclined plate is provided with a baffle, and the fourth inclined plate is provided with a baffle.
[0013] Preferably, the outer surface of the stand is provided with a side plate, the side plate has two and is axially symmetrically distributed on the equipment base.
[0014] Preferably, the side surface of the supporting column is provided with a control switch.
[0015] Preferably, the rear surface of the equipment base is provided with a push rod, and the lower surface of the equipment base is provided with a universal wheel.
[0016] The utility model discloses a technical effect and advantage:
[0017] 1、The inclined bottom plate, impurity drop port and impurity drop cavity are arranged in the utility model, metal particles and other impurities adhered to the outer wall are shaken down through rolling from a high place by a steel pipe, and the impurities are collected through the impurity drop cavity and uniformly treated, so that the problem that metal particles and impurities are not cleaned completely and affect the next process is solved, the steel pipe is cleaned while being transferred, the work efficiency is improved, and the labor intensity of workers is reduced;
[0018] 2、The utility model discloses a feeding base and a fork plate are arranged, the meshing of gear and clamping strip drives the steel pipe on the fork plate to ascend, realizes automatic feeding to the steel pipe of cleaning, and the device is placed on the two sides of the operation table, through the guide strip and the first inclined plate, the function of quick transfer after processing can be realized, the problem that the existing transfer equipment needs manual operation to transfer the steel pipe to the operation table after transporting to the designated place and then processes the steel pipe is solved. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is whole structure schematic diagram of the utility model discloses a steel pipe transport fixed support device of steel net rack production;
[0020] Figure 2 It is split view of the utility model discloses a steel pipe transport fixed support device of steel net rack production;
[0021] Figure 3 It is front view of the utility model discloses a steel pipe transport fixed support device of steel net rack production;
[0022] Figure 4 It is feeding base schematic diagram of the utility model discloses a steel pipe transport fixed support device of steel net rack production;
[0023] Figure 5 It is the schematic diagram of using of the utility model discloses a steel pipe transport fixed support device of steel net rack production;
[0024] In the drawing: 1, equipment base;2, push rod;3, rubber roller;4, guide strip;5, first inclined plate;6, stand;7, control switch;8, side plate;9, support column;10, feeding base;11, universal wheel;12, pull-out box;13, handle;14, impurity drop cavity;15, hole;16, inclined bottom plate;17, fourth inclined plate;18, third inclined plate;19, second inclined plate;20, impurity drop port;21, baffle;22, fixed shaft;23, sealing bearing;24, rotating shaft;25, motor;26, metal track;27, fork plate;28, clamping strip;29, gear;30, feeding cavity. DETAILED DESCRIPTION
[0025] The utility model providesFigures 1-5 The illustrated steel pipe transportation fixing support device for steel net production includes a device base 1, the upper surface of the device base 1 is fixedly installed with four vertical columns 6, the upper end of each vertical column 6 is installed with a first inclined plate 5, the upper surface of each first inclined plate 5 is installed with a guide strip 4 near the two sides, the guide strip 4 is installed with a rubber roller 3, the lower side of each first inclined plate 5 is installed with a second inclined plate 19, the second inclined plate 19 is provided with a plurality of impurity drop openings 20, the impurity drop openings 20 are evenly distributed on the second inclined plate 19, the lower side of each second inclined plate 19 is installed with a third inclined plate 18, the lower side of each third inclined plate 18 is installed with a fourth inclined plate 17, the lower side of each fourth inclined plate 17 is installed with an inclined bottom plate 16, and the inclined bottom plate 16 is provided with a hole 15;
[0026] The first inclined plate 5 is oppositely distributed with the second inclined plate 19, the second inclined plate 19 is oppositely distributed with the third inclined plate 18, the third inclined plate 18 is oppositely distributed with the fourth inclined plate 17, and the fourth inclined plate 17 is oppositely distributed with the inclined bottom plate 16.
[0027] The front surface of the device base 1 is installed with a feeding base 10, the other side surface of the feeding base 10 is installed with a motor 25, the feeding base 10 is provided with a feeding cavity 30, the upper surface of the feeding base 10 is installed with two support columns 9 which are axially symmetrically distributed on the feeding base 10, the support columns 9 are installed with a fixed shaft 22 near the upper end, the feeding cavity 30 is installed with a rotating shaft 24, one end of the rotating shaft 24 is installed with a sealing bearing 23, and the output end of the motor 25 is in transmission connection with the rotating shaft 24 through a transmission shaft.
[0028] The rotating shaft 24 is installed with two gears 29 which are axially symmetrically distributed on the rotating shaft 24, the fixed shaft 22 is installed with two gears 29 which are axially symmetrically distributed on the fixed shaft 22, the gears 29 are installed with a metal track 26, the outer side of the metal track 26 is installed with a fork plate 27, and the inner side of the metal track 26 is installed with a clamping strip 28 which is in engagement with the gears 29.
[0029] Further, one side surface of the device base 1 is installed with a pull-out box 12, the pull-out box 12 is installed with a handle 13, the pull-out box 12 is provided with an impurity drop cavity 14 which corresponds to the hole 15.
[0030] Further, the second inclined plate 19 is installed with a baffle 21, the third inclined plate 18 is installed with a baffle 21, the fourth inclined plate 17 is installed with a baffle 21, and the baffle 21 prevents the steel pipe from rolling out of the device during the falling process.
[0031] Further, the outer surface of each vertical column 6 is installed with a side plate 8, and the side plates 8 are axially symmetrically distributed on the device base 1.
[0032] Further, the control switch 7 is installed on one side surface of the support column 9.
[0033] Further, the push rod 2 is installed on the rear surface of the equipment base 1, and the push rod 2 is connected with the equipment base 1 through bolts and is detachable; and the universal wheel 11 is installed on the lower surface of the equipment base 1.
[0034] It should be noted that the utility model is a steel pipe transportation fixing support device for steel net rack production, in use, the steel pipe needs to be rolled down through the first inclined plate 5, and then pass through the second inclined plate 19, the third inclined plate 18 and the fourth inclined plate 17 to reach the inclined bottom plate 16; in this process, the metal particles and other impurities adhered to the outer wall of the steel pipe are shaken down through the rolling of the steel pipe from a high place by using gravity and inertia; the impurities are collected into the impurity falling cavity 14 through the impurity falling opening 20 and the hole 15; in the process of transfer, the cleaning of the steel pipe is completed, the work efficiency is improved, and the problem that the metal particles and impurities are not cleaned completely and affect the next process is avoided.
[0035] In use, the steel pipe needs to be placed on the operation table to be processed in the next process, and in the production process, the steel pipe is generally manually carried to the operation table, which undoubtedly increases the labor intensity of workers, so the control switch 7 can be started to start the motor 25 to drive the gear 29 on the rotating shaft 24 to rotate, the gear 29 is engaged with the clamping strip 28 to drive the fork plate 27 on the metal track 26 to rotate, the steel pipe on the inclined bottom plate 16 is lifted, automatic feeding is realized, the labor intensity of workers is greatly reduced, the production efficiency is improved, considering that the steel net rack production needs to pass through multiple processes, after the treatment is completed, the processed steel pipe also needs to be transferred again, so the push rod 2 of the other device can be removed by placing the device on the left and right sides of the operation table, so that the processed steel pipe can be rolled down through the first inclined plate 5 and the guide strip 4 on the other side, in this way, the processed steel pipe can be transferred and cleaned, and the production efficiency is improved.
Claims
1. A steel pipe transportation fixing support device for steel truss production, comprising a device base (1), characterized in that: The device base (1) upper surface is fixedly installed with four columns (6), the upper end of the column (6) is installed with a number of inclined plate (5), the upper surface of the inclined plate (5) is installed with guide bar (4) near both sides, the guide bar (4) is installed with rubber roller (3), the lower side of the inclined plate (5) is installed with the second inclined plate (19), the second inclined plate (19) is installed with impurity drop (20), the impurity drop (20) is installed with a plurality of, evenly distributed on the second inclined plate (19), the lower side of the second inclined plate (19) is installed with the third inclined plate (18), the lower side of the third inclined plate (18) is installed with the fourth inclined plate (17), the lower side of the fourth inclined plate (17) is installed with the inclined bottom plate (16), the inclined bottom plate (16) is installed with hole (15); The first inclined plate (5) and the second inclined plate (19) are opposite distribution, the second inclined plate (19) and the third inclined plate (18) are opposite distribution, the third inclined plate (18) and the fourth inclined plate (17) are opposite distribution, the fourth inclined plate (17) and the inclined bottom plate (16) are opposite distribution; The front surface of the device base (1) is installed with the feeding base (10), the other side surface of the feeding base (10) is installed with the motor (25), the feeding base (10) is installed with the feeding cavity (30), the upper surface of the feeding base (10) is installed with the support column (9), the support column (9) has two, is axisymmetric distribution on the feeding base (10), the support column (9) between the upper end position is installed with the fixed shaft (22), the feeding cavity (30) is installed with the rotating shaft (24), one end of the rotating shaft (24) is installed with the sealing bearing (23), the output end of the motor (25) is connected with the rotating shaft (24) through the transmission shaft; The rotating shaft (24) is installed with gear (29), the gear (29) has two, is axisymmetric distribution on the rotating shaft (24), the fixed shaft (22) is installed with gear (29), the gear (29) has two, is axisymmetric distribution on the fixed shaft (22), the gear (29) is installed with metal track (26), the outer side of the metal track (26) is installed with fork plate (27), the inner side of the metal track (26) is installed with clamping strip (28), the clamping strip (28) is engaged with the gear (29).
2. The steel pipe conveying and fixing support device for steel grid production according to claim 1, characterized in that: The side surface of the device base (1) is installed with the pull box (12), the pull box (12) is installed with the handle (13), the pull box (12) is installed with the impurity falling cavity (14), the impurity falling cavity (14) corresponds with the hole (15).
3. The steel pipe conveying and fixing support device for steel grid production according to claim 2, characterized in that: The second inclined plate (19) is installed with baffle (21), the third inclined plate (18) is installed with baffle (21), the fourth inclined plate (17) is installed with baffle (21).
4. The steel pipe conveying and fixing support device for steel grid production of claim 3, characterized in that: The outer surface of the column (6) is installed with side plate (8), the side plate (8) has two, is axisymmetric distribution on the device base (1).
5. The steel pipe transport fixing support device for steel grid production of claim 4, characterized in that: The side surface of the support column (9) is installed with control switch (7).
6. The steel pipe conveying and fixing support device for steel grid production of claim 5, characterized in that: The equipment base (1) rear surface is equipped with a push rod (2), and the equipment base (1) lower surface is equipped with a universal wheel (11).