Steel pipe transportation fixed bolster device of steel mesh frame production
Technical Field
The utility model relates to the field of steel pipe conveying devices, in particular to a steel pipe conveying fixed support device for steel mesh frame production.
Background
The steel net frame is a space structure formed by connecting a plurality of rods through nodes according to a certain grid form, has the advantages of small space stress, light weight, high rigidity, good earthquake resistance and the like, and is widely applied to roofs of buildings such as stadiums, theatres, exhibition halls, waiting halls, stadium stands, awning, hangars, bidirectional large-column-spacing workshops and the like;
the main material is steel pipes, when in production, the steel pipes are required to be subjected to lofting and sizing, then cut, edge processing and rust removal painting, so that the steel net frame use standard can be achieved, and in the production process, a conveying device is required to transport the steel pipes, so that the next working procedure is carried out;
At present, the transportation mode of steel pipe in the production process has the hoist and mount to transport, fork truck transport, handcart transport etc. wherein hoist and mount transport and fork truck transport are applicable to large-scale steel pipe transportation, in steel frame production process, because the steel pipe needs to be processed through the multichannel process, generally use the handcart to transport, but current conveyer, after transporting to appointed place, need the manual work to carry the steel pipe on the operation panel, can carry out corresponding processing to the steel pipe, workman's intensity of labour has been increased, production efficiency has been reduced, and the steel pipe can be stained with metal particle or other impurity that produces when processing on the steel pipe outer wall after processing is accomplished, these impurity in time clear up first can influence the processing of next process, second influence the life of processing equipment, the quality of product has been reduced.
Therefore, it is necessary to provide a rust removing device for steel mesh frame steel pipe raw materials to solve the above problems.
Disclosure of utility model
The utility model aims to provide a steel pipe transportation fixing support device for steel mesh frame production, which aims to solve the problems that the existing transportation device provided in the background art needs to manually transport a steel pipe to an operation table to correspondingly process the steel pipe after being transported to a designated place, and metal particles or other impurities generated when the outer wall of the steel pipe is stained with the steel pipe after the steel pipe is processed are not timely cleaned, so that the processing of the next working procedure is influenced.
The utility model provides the technical scheme that the device comprises a device base, wherein the upper surface of the device base is fixedly provided with four upright posts, the upper end of each upright post is provided with a first inclined plate, the upper surface of the first inclined plate is provided with guide bars close to two sides, the guide bars are provided with rubber rollers, the lower part of the first inclined plate is provided with a second inclined plate, the second inclined plate is provided with impurity falling openings, a plurality of impurity falling openings are uniformly distributed on the second inclined plate, the lower part of the second inclined plate is provided with a third inclined plate, the lower part of the third inclined plate is provided with a fourth inclined plate, the lower part of the fourth inclined plate is provided with an inclined bottom plate, and the inclined bottom plate is provided with holes;
The first sloping plate and the second sloping plate are distributed oppositely, the second sloping plate and the third sloping plate are distributed oppositely, the third sloping plate and the fourth sloping plate are distributed oppositely, and the fourth sloping plate and the sloping bottom plate are distributed oppositely;
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 two supporting columns, the feeding device is characterized in that the feeding device is axisymmetrically distributed on a feeding base, a fixed shaft is arranged between the supporting columns and close to the upper end, a rotating shaft is arranged in a feeding cavity, a sealing bearing is arranged at one end of the rotating shaft, and the output end of the motor is in transmission connection with the rotating shaft through a transmission shaft;
The gear is installed in the axis of rotation, the gear is two, is axisymmetric distribution in the axis of rotation, install the gear on the fixed axle, the gear is two, is axisymmetric distribution on the fixed axle, install the metal track on the gear, the fork board is installed in the metal track outside, the card strip is installed to the metal track inboard, card strip and gear engagement.
Preferably, a drawing box is arranged on one side surface of the equipment base, a handle is arranged on the drawing box, an impurity falling cavity is formed in the drawing box, and the impurity falling cavity corresponds to the hole.
Preferably, the baffle is installed on the second sloping plate, the baffle is installed on the third sloping plate, and the baffle is installed on the fourth sloping plate.
Preferably, the outer surface of the upright post is provided with two side plates which are axisymmetrically distributed on the equipment base.
Preferably, a control switch is arranged on one side surface of the support column.
Preferably, the push rod is arranged on the rear surface of the equipment base, and the universal wheel is arranged on the lower surface of the equipment base.
The utility model has the technical effects and advantages that:
1. According to the inclined bottom plate, the impurity falling port and the impurity falling cavity are arranged, the steel pipe rolls off from a high place, metal particles and other impurities attached to the outer wall are vibrated and fallen by utilizing gravity and inertia, the impurities are collected and uniformly treated through the impurity falling cavity, the problem that the next working procedure processing is affected when the metal particles and the impurities are not cleaned up is solved, the steel pipe is cleaned while being transported, the working efficiency is improved, and the labor intensity of workers is reduced;
2. According to the steel pipe automatic feeding device, the feeding base and the fork plate are meshed with the clamping strips through the gears, the steel pipe on the fork plate is driven to ascend, automatic feeding is achieved on the cleaned steel pipe, the left and right devices are placed on two sides of the operation table, the function of rapid transfer after machining is achieved through the first inclined plate and the guide strips, and the problem that the steel pipe can be correspondingly machined only by manually conveying the steel pipe to the operation table after the steel pipe is conveyed to a designated place in the conventional transfer equipment is solved.
Drawings
FIG. 1 is a schematic view of the overall structure of a steel pipe transportation fixing bracket device for steel mesh frame production of the present utility model;
FIG. 2 is a disassembled view of a steel pipe transportation fixing bracket device for steel mesh frame production according to the present utility model;
FIG. 3 is a front view of a steel pipe transportation fixing bracket device for steel mesh frame production according to the present utility model;
FIG. 4 is a schematic view of a loading base of a steel pipe transporting and fixing bracket device for steel mesh frame production according to the present utility model;
FIG. 5 is a schematic view of a steel pipe transportation fixing bracket device for steel mesh frame production according to the present utility model in use;
The device comprises a device base, a push rod, a rubber roller, a guide bar, a No. 5 inclined plate, a No. 6 upright post, a No. 7 control switch, a No. 8 side plate, a No. 9 upright post, a No. 10 loading base, a No. 11 universal wheel, a No. 12 drawing box, a No. 13 handle, a No. 14 impurity falling cavity, a No. 15 hole, a No. 16 inclined bottom plate, a No. 17 inclined plate, a No. 18 inclined plate, a No. three inclined plate, a No. 19 inclined plate, a No. two inclined plate, a No. 20 impurity falling port, a No. 21 baffle, a No. 22, a fixed shaft, a No. 23 sealing bearing, a No. 24 rotary shaft, a No. 25 motor, a No. 26 metal track, a No. 27 fork plate, a No. 28 clamping bar, a No. 29 gear, a No. 30 loading cavity.
Detailed Description
The utility model provides a steel pipe transportation fixing bracket device for steel mesh frame production as shown in fig. 1-5, which comprises a device base 1, wherein four upright posts 6 are fixedly arranged on the upper surface of the device base 1, a first inclined plate 5 is arranged at the upper end of each upright post 6, guide strips 4 are arranged on the upper surface of each first inclined plate 5 near two sides, rubber rollers 3 are arranged on the guide strips 4, a second inclined plate 19 is arranged below each first inclined plate 5, impurity falling openings 20 are formed in each second inclined plate 19, a plurality of impurity falling openings 20 are uniformly distributed on each second inclined plate 19, a third inclined plate 18 is arranged below each second inclined plate 19, a fourth inclined plate 17 is arranged below each third inclined plate 18, an inclined bottom plate 16 is arranged below each fourth inclined plate 17, and holes 15 are formed in each inclined bottom plate 16;
The first sloping plate 5 and the second sloping plate 19 are distributed oppositely, the second sloping plate 19 and the third sloping plate 18 are distributed oppositely, the third sloping plate 18 and the fourth sloping plate 17 are distributed oppositely, and the fourth sloping plate 17 and the sloping bottom plate 16 are distributed oppositely;
The front surface of the equipment base 1 is provided with a feeding base 10, the other side surface of the feeding base 10 is provided with a motor 25, the feeding base 10 is provided with a feeding cavity 30, the upper surface of the feeding base 10 is provided with two support columns 9, the two support columns 9 are axisymmetrically distributed on the feeding base 10, a fixed shaft 22 is arranged between the support columns 9 and close to the upper end position, a rotating shaft 24 is arranged in the feeding cavity 30, one end of the rotating shaft 24 is provided 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;
The gear 29 is installed on the rotation shaft 24, two gears 29 are axially symmetrically distributed on the rotation shaft 24, the gear 29 is installed on the fixed shaft 22, two gears 29 are axially symmetrically distributed on the fixed shaft 22, the metal crawler 26 is installed on the gear 29, the fork plate 27 is installed on the outer side of the metal crawler 26, the clamping strip 28 is installed on the inner side of the metal crawler 26, and the clamping strip 28 is meshed with the gear 29.
Further, a drawing box 12 is arranged on one side surface of the equipment base 1, a handle 13 is arranged on the drawing box 12, an impurity falling cavity 14 is formed in the drawing box 12, and the impurity falling cavity 14 corresponds to the hole 15.
Further, a baffle 21 is installed on the second sloping plate 19, a baffle 21 is installed on the third sloping plate 18, a baffle 21 is installed on the fourth sloping plate 17, and the baffle 21 is used for preventing the steel pipe from rolling out of the device in the falling process.
Further, the outer surface of the upright post 6 is provided with two side plates 8, and the two side plates 8 are axisymmetrically distributed on the equipment base 1.
Further, a control switch 7 is installed on one side surface of the support column 9.
Further, the push rod 2 is mounted on the rear surface of the equipment base 1, the push rod 2 is connected with the equipment base 1 through bolts, and the universal wheels 11 are mounted on the lower surface of the equipment base 1 for detachable design.
The steel pipe conveying and fixing bracket device for steel mesh frame production is characterized in that when the steel pipe conveying and fixing bracket device is used, a steel pipe is required to roll down through a first inclined plate 5 and then pass through a second inclined plate 19, a third inclined plate 18 and a fourth inclined plate 17 to reach an inclined bottom plate 16, in the process, metal particles and other impurities attached to the outer wall of the steel pipe are vibrated and fallen down through the steel pipe rolling down from a high place by utilizing gravity and inertia, and are collected into an impurity falling cavity 14 through an impurity falling port 20 and a hole 15, and in the transferring process, the cleaning of the steel pipe is completed, the working efficiency is improved, and the problem that the processing of the next working procedure is affected due to the fact that the metal particles and impurities are not cleaned up is avoided;
In the use, the steel pipe needs to be placed on the operation panel to carry out the processing of next process, in the production process, generally, the manual handling is carried on the operation panel, this has just increased workman's intensity of labour, so can drive the gear 29 on the axis of rotation 24 through starting control switch 7, gear 29 and card strip 28 meshing, the fork plate 27 on the metal track 26 is rotatory, lift up the steel pipe on the tilting floor 16, carry out automatic feeding, very big reduction workman's intensity of labour, simultaneously production efficiency has been improved, in consideration of steel frame production, need pass through the multichannel process, after the processing is accomplished, still need transport again to the steel pipe that has processed, so can be through placing device one by one in the operation panel both sides, the push rod 2 of the device of the opposite side is removed, the steel pipe that has processed just can roll down through the inclined plate 5 of the opposite side and gib 4, just can realize transporting and clear up the steel pipe that just so, production efficiency is improved.