CN112756899B - Protective fence production device - Google Patents

Protective fence production device Download PDF

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Publication number
CN112756899B
CN112756899B CN202011540137.8A CN202011540137A CN112756899B CN 112756899 B CN112756899 B CN 112756899B CN 202011540137 A CN202011540137 A CN 202011540137A CN 112756899 B CN112756899 B CN 112756899B
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China
Prior art keywords
sliding
plate
rotating
block
rotating shaft
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Active
Application number
CN202011540137.8A
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Chinese (zh)
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CN112756899A (en
Inventor
靳大喜
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Jiangxi Hangxi Metal Products Co ltd
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Jiangxi Hangxi Metal Products Co ltd
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Priority to CN202011540137.8A priority Critical patent/CN112756899B/en
Publication of CN112756899A publication Critical patent/CN112756899A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K37/00Auxiliary devices or processes, not specially adapted to a procedure covered by only one of the preceding main groups
    • B23K37/04Auxiliary devices or processes, not specially adapted to a procedure covered by only one of the preceding main groups for holding or positioning work
    • B23K37/053Auxiliary devices or processes, not specially adapted to a procedure covered by only one of the preceding main groups for holding or positioning work aligning cylindrical work; Clamping devices therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K37/00Auxiliary devices or processes, not specially adapted to a procedure covered by only one of the preceding main groups
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K2101/00Articles made by soldering, welding or cutting
    • B23K2101/04Tubular or hollow articles
    • B23K2101/06Tubes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K2103/00Materials to be soldered, welded or cut
    • B23K2103/02Iron or ferrous alloys
    • B23K2103/04Steel or steel alloys

Abstract

The invention relates to a production device, in particular to a protective fence production device. The technical problem to be solved is how to design a protective guard production device which is convenient for people to arrange steel pipes at equal intervals, has high working efficiency and can fix the steel pipes. A protective fence production device comprises: the base is provided with a bracket on one side; the mounting plate is mounted on the bracket; and the equidistant unfolding device is arranged between the support and the mounting plate and is used for arranging the steel pipes at equal intervals. According to the invention, the steel pipes are sequentially placed in the material discharging groove blocks, the motor is started to enable the screw rod to rotate forwards, the first sliding installation block moves forwards to drive the second sliding installation block to move forwards sequentially through the hinge frame, the material discharging groove blocks drive the steel pipes to be arranged at equal intervals, and the shifting plate is pulled to swing to enable the steel pipes to be in an inclined state.

Description

Protective fence production device
Technical Field
The invention relates to a production device, in particular to a protective guard production device.
Background
The protective fence is mainly used for protecting and protecting personal safety and equipment facilities in occasions such as houses, roads, commercial districts, public places and the like. At present, most people weld a proper amount of steel pipes into the protective fence, and the steel pipes are required to be arranged at equal intervals during welding, so that the operation is troublesome, the working efficiency is low, and the steel pipes are easy to move during welding, so that the shapes of the welded protective fence are different, and the subsequent use is influenced.
Therefore, a protective guard production device which is convenient for people to arrange steel pipes at equal intervals, has high working efficiency and can fix the steel pipes needs to be researched and developed so as to solve the problems in the prior art.
Disclosure of Invention
In order to overcome because the steel pipe needs the equidistance to be arranged when welding, so troublesome poeration, work efficiency is low, and the steel pipe produces the removal easily, leads to the welding rail guard shape to differ, influences the shortcoming of follow-up use, and the technical problem who solves is: the protective fence production device is convenient for people to arrange steel pipes at equal intervals, high in working efficiency and capable of fixing the steel pipes.
The technical implementation scheme of the invention is as follows: a protective fence production device comprises: the base is provided with a bracket on one side; the mounting plate is mounted on the bracket; the equidistant unfolding device is arranged between the bracket and the mounting plate and is used for arranging the steel pipes at equal intervals; and the rotating device is arranged between the equidistant unfolding device and the mounting plate and is used for inclining the steel pipe.
Furthermore, it is particularly preferred that the equidistant deployment device comprises: the motor is arranged on the bracket; the screw rod is rotatably arranged on the mounting plate; the first transmission assembly is arranged between the screw rod and an output shaft of the motor; the first sliding installation block is arranged on the installation plate in a sliding mode and is rotatably connected with the screw rod through threads; the second sliding installation block is arranged on the installation plate in a sliding mode and is rotatably connected with the screw rod through threads; and the hinge frame is mounted between the first sliding mounting block and the second sliding mounting block in a hinged manner.
Further, it is particularly preferable that the rotating means includes: the grooved rod is rotatably arranged on the mounting plate; the rotating cylinders are arranged on the grooved rod at intervals in a sliding manner and are positioned in the first sliding mounting block and the second sliding mounting block; the first rotating shaft is rotatably arranged on the first sliding installation block and is also rotatably arranged on the second sliding installation block; the bevel gear set is arranged between the first rotating shaft and the rotating cylinder; the second rotating shaft is rotatably arranged on the first sliding installation block and is also rotatably arranged on the second sliding installation block; the second transmission assembly is arranged between the first rotating shaft and the second rotating shaft; the discharging groove block is arranged on the second rotating shaft; the toggle plate is arranged on the slotted rod; the limiting blocks are two in number and are installed on the installation plate.
In addition, it is particularly preferable that the device further comprises a blanking device, and the blanking device comprises: the fixing frames are symmetrically arranged on the base; the sliding charging basket is arranged between the two fixing frames in a sliding manner; the first handle is arranged on the sliding charging basket; the lower material blocking plates are symmetrically and slidably arranged on the sliding charging basket; the upper material blocking plates are symmetrically and slidably arranged on the sliding charging basket; the third rotating shaft is symmetrically and rotatably arranged on the sliding charging basket; the rotating plate is arranged on the third rotating shaft; the first sliding rod is arranged on the lower material baffle plate, and the rotating plate is sleeved on the first sliding rod and is in sliding fit with the first sliding rod; the second sliding rod is arranged on the upper material baffle plate, and the rotating plate is sleeved on the second sliding rod and is in sliding fit with the second sliding rod; the first return spring is arranged between the rotating plate and the sliding charging basket; the long plate is arranged between the two lower material retaining plates; and the second handle is arranged on the long plate.
In addition, it is particularly preferred that the device further comprises a pushing device, and the pushing device comprises: the connecting plates are symmetrically and slidably mounted on the mounting plates and are fixedly connected with one second sliding mounting block; the vertical plates are symmetrically arranged on the base; the straight gear is rotatably arranged on the vertical plate; the first rack is arranged on the connecting plate and meshed with the straight gear; the second rack is slidably mounted on the vertical plate and meshed with the straight gear; and the connecting bent plate is arranged on the second rack and fixedly connected with the sliding charging basket.
In addition, it is especially preferred that the device further comprises a limiting device, and the limiting device comprises: the fixed groove block is arranged on the sliding charging basket; the sliding block is arranged on the fixed groove block in a sliding manner; the second return spring is arranged between the sliding block and the fixed groove block; and the contact lever is arranged on the sliding block.
Further, it is particularly preferable that the lock device further includes: the fourth rotating shaft is rotatably arranged on the poking plate; the rotating T-shaped plate is arranged on the fourth rotating shaft; and the magnets are embedded on the limiting blocks and are matched with the rotating T-shaped plates.
In addition, it is particularly preferable that the material of the first handle is rubber.
The invention has the beneficial effects that:
1. through placing the steel pipe in the blowing inslot in proper order, starter motor makes the lead screw corotation, and first slidable mounting piece moves forward, and just first slidable mounting piece moves forward and just also drives second slidable mounting piece through articulated frame and move forward in proper order, and the blowing inslot just also drives the steel pipe equidistance and arranges the division, pulls again and dials the board swing and makes the steel pipe be the tilt state, so, can make things convenient for people to arrange the steel pipe equidistance and open, and work efficiency is high.
2. Through unloader's effect, can make the steel pipe drop to the blowing groove block on, so, need not people and repeatedly place the steel pipe to the blowing groove block on.
3. Through stop device's effect, can carry on spacingly to long board, so, can avoid the mistake to bump first handle and make long board remove.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a partial perspective view of the present invention.
FIG. 3 is a schematic view of a first partial body structure of the equi-spaced stent of the present invention.
FIG. 4 is a schematic view of a second partial body structure of the equi-spaced stent of the present invention.
FIG. 5 is a schematic cross-sectional view of a rotating device according to the present invention.
Fig. 6 is a schematic perspective view of the blanking device of the present invention.
Fig. 7 is a schematic view of a partial cross-sectional structure of the blanking device of the present invention.
Fig. 8 is an enlarged schematic view of part a of the present invention.
Fig. 9 is a perspective view of the pushing device of the present invention.
Fig. 10 is a schematic cross-sectional view of the spacing device of the present invention.
Fig. 11 is a perspective view of the locking device of the present invention.
Number designation in the figures: 1: base, 2: a bracket, 3: mounting plate, 4: equidistant deployment device, 41: motor, 42: screw, 43: first transmission assembly, 44: first slide mounting block, 45: second slide mounting block, 46: hinge mount, 5: rotating device, 51: rotating cylinder, 52: grooved bar, 53: first rotating shaft, 54: bevel gear set, 55: second rotating shaft, 56: second transmission assembly, 57: emptying groove block, 58: toggle plate, 59: a limiting block, 6: blanking device, 61: mount, 62: sliding basket, 63: first handle, 64: lower retainer plate, 65: go up striker plate, 66: third rotating shaft, 67: turning plate, 68: first slide bar, 69: second slide bar, 610: first return spring, 611: long plate, 612: second handle, 7: pushing device, 71: connection plate, 72: riser, 73: spur gear, 74: first rack, 75: second rack, 76: connecting bent plate, 8: stop device, 81: fixed slot block, 82: sliding block, 83: second return spring, 84: contact lever, 9: locking device, 91: fourth rotation shaft, 92: rotating the T-shaped plate, 93: and a magnet.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example 1
A protective guard production device is shown in figures 1, 2, 3, 4, 5 and 11 and comprises a base 1, a support 2, a mounting plate 3, an isometric unfolding device 4 and a rotating device 5, wherein the support 2 is fixedly connected to the middle of the front side of the top of the base 1, the mounting plate 3 is fixedly connected between the front side and the rear side of the upper portion of the support 2, the isometric unfolding device 4 is arranged between the support 2 and the mounting plate 3, and the rotating device 5 is arranged between the isometric unfolding device 4 and the mounting plate 3.
The equidistance spreading device 4 comprises a motor 41, a screw rod 42, a first transmission assembly 43, a first sliding installation block 44, a second sliding installation block 45 and a hinged frame 46, the motor 41 is fixedly connected to the front side of the bottom in the support 2, the screw rod 42 is rotatably arranged at the right part of the mounting plate 3, the first transmission assembly 43 is connected between the front circumferential direction of the screw rod 42 and the output shaft of the motor 41, the first sliding installation block 44 is slidably arranged on the mounting plate 3, the first sliding installation block 44 is connected with the screw rod 42 through threads, the second sliding installation blocks 45 are arranged on the mounting plate 3 at intervals, the second sliding installation blocks 45 are connected with the screw rod 42 through threads, and the hinged frame 46 is arranged between the bottom of the first sliding installation block 44 and the bottom of the second sliding installation blocks 45.
The rotating device 5 comprises a rotating cylinder 51, a grooved rod 52, a first rotating shaft 53, a bevel gear group 54, a second rotating shaft 55, a second transmission assembly 56, a material discharging groove block 57, a toggle plate 58 and a limiting block 59, the left part of the mounting plate 3 is rotatably provided with the grooved rod 52, the rotating cylinder 51 is arranged on the grooved rod 52 at intervals in a sliding way, the rotating cylinder 51 is positioned in the first sliding mounting block 44 and the second sliding mounting block 45, the left side of the bottom in the first sliding mounting block 44 and the left side of the bottom in the second sliding mounting block 45 are both rotatably provided with the first rotating shaft 53, the bevel gear group 54 is connected between the upper part circumference of the first rotating shaft 53 and the rear circumference of the rotating cylinder 51, the second rotating shaft 55 is rotatably arranged between the middle part of the first sliding mounting block 44 and the middle part of the second sliding mounting block 45, the second transmission assembly 56 is connected between the lower part circumference of the first rotating shaft 53 and the lower part circumference of the second rotating shaft 55, the top end of the second rotating shaft 55 is fixedly connected with the material discharging groove block 57, the left side of the front part of the grooved rod 52 is fixedly connected with a toggle plate 58, and the left part of the outer front side surface of the mounting plate 3 is fixedly connected with two limit blocks 59.
Firstly, an operator places steel pipes in the material placing groove blocks 57 in sequence, starts the motor 41 to rotate forward, the motor 41 rotates forward to drive the first transmission assembly 43 to rotate forward, the first transmission assembly 43 rotates forward to drive the screw rod 42 to rotate forward, the screw rod 42 rotates forward to drive the first sliding installation block 44 to move forward, the first sliding installation block 44 moves forward to drive the foremost material placing groove block 57 to move forward, the first sliding installation block 44 moves forward to drive the second sliding installation block 45 to move forward in sequence through the hinge frame 46, the second sliding installation block 45 drives the rest material placing groove blocks 57 to move forward, the steel pipes are arranged at equal intervals, the motor 41 is closed to stop rotating forward, the first sliding installation block 44 and the second sliding installation block 45 stop driving the material placing groove blocks 57 to move forward, then the shifting plate 58 is pulled to swing downward, the shifting plate 58 swings downward to drive the belt groove rod 52 to rotate backward, the belt groove rod 52 rotates backward to drive the rotating cylinder 51 to rotate backward, the rotating cylinder 51 rotates reversely to drive the first rotating shaft 53 to rotate reversely through the bevel gear set 54, the first rotating shaft 53 rotates reversely to drive the second transmission assembly 56 to rotate reversely, the second transmission assembly 56 rotates reversely to drive the second rotating shaft 55 to rotate reversely, the second rotating shaft 55 rotates reversely to drive the material containing groove block 57 to rotate reversely, steel pipes are in an inclined state, people weld all the steel pipes into protective guards by using an electric welding tool, the protective guards are taken down for subsequent treatment, the stirring plate 58 is pulled to swing upwards for resetting, the material containing groove block 57 also rotates forwardly for resetting, the motor 41 rotates reversely and drives the screw rod 42 to rotate reversely through the first transmission assembly 43, the first sliding installation block 44 also drives the second sliding installation blocks 45 through the hinge frame 46 to sequentially move backwards for resetting, and after the first sliding installation block 44 and the second sliding installation blocks 45 reset, the motor 41 is closed.
Example 2
Based on embodiment 1, as shown in fig. 1, 6, 7, 8 and 9, the blanking device 6 further includes a blanking device 6, the blanking device 6 includes a fixing frame 61, a sliding basket 62, a first handle 63, a lower retainer plate 64, an upper retainer plate 65, a third rotating shaft 66, a rotating plate 67, a first sliding rod 68, a second sliding rod 69, a first return spring 610, a long plate 611 and a second handle 612, the fixing frame 61 is fixed on the rear side of the top of the base 1 in a bilateral symmetry manner, the sliding basket 62 is arranged between the fixing frames 61 on the left and right sides in a sliding manner, the first handle 63 is fixed on the middle of the upper portion of the outer rear side of the sliding basket 62, the lower retainer plate 64 is arranged on the lower portion of the sliding basket 62 in a bilateral symmetry manner, the upper retainer plate 65 is arranged on the lower portion in a bilateral symmetry manner, the upper retainer plate 65 is positioned above the lower retainer plate 64, the third rotating shaft 66 is arranged on the lower sides of the rear portions of the left and right sides in the sliding basket 62 in a rotating manner, a rotating plate 67 is fixedly connected to the periphery of the third rotating shaft 66, a first sliding rod 68 is fixedly connected to the rear portion of the lower material blocking plate 64, the lower portion of the rotating plate 67 is sleeved on the first sliding rod 68 to be in sliding fit with the first sliding rod 68, a second sliding rod 69 is fixedly connected to the rear portion of the upper material blocking plate 65, the upper portion of the rotating plate 67 is sleeved on the second sliding rod 69 to be in sliding fit with the second sliding rod, a first return spring 610 is fixedly connected between the lower portion of the rear side face of the rotating plate 67 and the inner side face of the sliding material basket 62, a long plate 611 is fixedly connected between the front side faces of the lower material blocking plates 64 on the left side and the right side, and a second handle 612 is fixedly connected to the middle portion of the front side face of the long plate 611.
Still including thrust unit 7, thrust unit 7 is including connecting plate 71, the riser 72, straight-teeth gear 73, first rack 74, second rack 75 and connection bent plate 76, bilateral symmetry slidingtype is equipped with connecting plate 71 on the mounting panel 3, connecting plate 71 medial surface and the second sliding installation piece 45 fixed connection who counts from the past backward, base 1 top front side middle part bilateral symmetry rigid coupling has the riser 72, riser 72 upper portion rotary type is equipped with straight-teeth gear 73, connecting plate 71 lateral surface rigid coupling has first rack 74, first rack 74 meshes with straight-teeth gear 73, riser 72 upper portion slidingtype is equipped with second rack 75, second rack 75 meshes with straight-teeth gear 73, second rack 75 trailing flank rigid coupling has connection bent plate 76, connect bent plate 76 lateral surface upper portion and the outer trailing flank fixed connection of slip charging basket 62.
Firstly, people place a proper amount of steel pipes in the sliding material basket 62, when a protective guard needs to be manufactured, the second handle 612 is pushed to move backwards, the second handle 612 moves backwards to drive the long plate 611 to move backwards, the long plate 611 moves backwards to drive the lower material blocking plate 64 to move backwards, the lower material blocking plate 64 moves backwards to stop limiting the steel pipes, the bottommost steel pipe also falls onto the material placing groove block 57, the lower material blocking plate 64 moves backwards to drive the first sliding rod 68 to move backwards, the first sliding rod 68 moves backwards to drive the lower part of the rotating plate 67 to swing backwards, the first return spring 610 is compressed, the lower part of the rotating plate 67 swings backwards to enable the upper part to swing forwards, the upper part of the rotating plate 67 swings forwards to drive the second sliding rod 69 to move forwards, the second sliding rod 69 moves forwards to drive the upper material blocking plate 65 to move forwards, the upper material blocking plate 65 moves forwards to limit the upper steel pipes, the second handle 612 is released, due to the action of the first reset spring 610, the rotating plate 67 drives the lower material blocking plate 64 to move forwards for resetting, the upper material blocking plate 65 also moves backwards for resetting, after the welding of the protective guard is completed, the sliding material basket 62 moves backwards through the first handle 63 to take out the protective guard for treatment, and then the sliding material basket 62 is pulled to move forwards for resetting, so that people do not need to repeatedly place steel pipes on the material placing groove blocks 57.
When the second sliding installation block 45 moves forwards, the second sliding installation block 45 moves forwards to drive the connecting plate 71 to move forwards, the connecting plate 71 moves forwards to drive the first rack 74 to move forwards, the first rack 74 moves forwards to drive the spur gear 73 to rotate backwards, the spur gear 73 rotates backwards to drive the second rack 75 to move backwards, the second rack 75 moves backwards to drive the connecting bent plate 76 to move backwards, the connecting bent plate 76 moves backwards to drive the sliding material basket 62 to move backwards, after the steel pipe welding is completed, the second sliding installation block 45 drives the first rack 74 to move backwards through the connecting plate 71 to reset, the sliding material basket 62 also moves forwards to reset, and therefore people do not need to pull the sliding material basket 62 to move, and the steel pipe welding machine is more convenient.
Example 3
On the basis of embodiment 1 and embodiment 2, as shown in fig. 1, fig. 10 and fig. 11, the device further includes a limiting device 8, the limiting device 8 includes a fixed groove block 81, a sliding block 82, a second return spring 83 and a contact rod 84, the fixed groove block 81 is fixedly connected to the left portion of the outer front side surface of the sliding basket 62, the sliding block 82 is slidably arranged in the fixed groove block 81, the second return spring 83 is fixedly connected between the top of the sliding block 82 and the inside of the fixed groove block 81, and the contact rod 84 is fixedly connected to the front side surface of the sliding block 82.
The locking device 9 comprises a fourth rotating shaft 91, a rotating T-shaped plate 92 and a magnet 93, the fourth rotating shaft 91 is rotatably arranged in the toggle plate 58, the rotating T-shaped plate 92 is fixedly connected to the periphery of the fourth rotating shaft 91, the magnet 93 is fixedly connected to the inside of the limiting block 59 in an embedded mode, and the magnet 93 is matched with the rotating T-shaped plate 92.
When the protective guard needs to be welded, the contact rod 84 is pulled to move upwards, the contact rod 84 moves upwards to drive the sliding block 82 to move upwards, the second reset spring 83 is compressed, the sliding block 82 moves upwards to stop limiting the long plate 611, the first handle 63 is further pushed to enable a proper amount of steel pipes to fall onto the discharging groove block 57, when the device is not needed, the contact rod 84 is loosened, the sliding block 82 drives the contact rod 84 to move downwards to reset under the action of the second reset spring 83, and therefore the situation that the first handle 63 is touched by mistake to enable the long plate 611 to move can be avoided.
When the poking plate 58 swings downwards, firstly, the rotating T-shaped plate 92 swings downwards to stop limiting the poking plate 58, the magnet 93 adsorbs and fixes the rotating T-shaped plate 92 under the action of the magnet 93, and when the device is not needed, the rotating T-shaped plate 92 swings upwards to reset limiting the poking plate 58, so that the phenomenon that the poking plate 58 is mistakenly touched to swing when the device is not needed can be avoided.
While the disclosure has been shown and described with reference to certain exemplary embodiments thereof, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the disclosure as defined by the appended claims and their equivalents. Accordingly, the scope of the present disclosure should not be limited to the above-described embodiments, but should be defined not only by the appended claims, but also by equivalents thereof.

Claims (6)

1. A protective guard production device is characterized by comprising:
the device comprises a base (1), wherein a bracket (2) is arranged on one side of the base (1);
the mounting plate (3), the mounting plate (3) is mounted on the bracket (2);
the equidistant unfolding device (4) is arranged between the bracket (2) and the mounting plate (3) and is used for arranging the steel pipes at equal intervals;
the rotating device (5) is arranged between the equidistant unfolding device (4) and the mounting plate (3) and is used for inclining the steel pipe;
equidistant deployment device (4) comprises:
the motor (41), the motor (41) is installed on the bracket (2);
the screw rod (42), the screw rod (42) is installed on the mounting plate (3) in a rotating way;
the first transmission assembly (43), the first transmission assembly (43) is installed between the screw rod (42) and the output shaft of the motor (41);
the first sliding installation block (44) is installed on the installation plate (3) in a sliding mode, and the first sliding installation block (44) is rotatably connected with the screw rod (42) through threads;
the second sliding installation block (45) is installed on the installation plate (3) in a sliding mode, and the second sliding installation block (45) is rotatably connected with the screw rod (42) through threads;
the hinge frame (46), the hinge frame (46) is mounted between the first sliding mounting block (44) and the second sliding mounting block (45) in a hinged manner;
the rotating device (5) comprises:
the grooved rod (52), the grooved rod (52) is installed on the mounting plate (3) in a rotating way;
the rotating cylinders (51), the rotating cylinders (51) are installed on the grooved rod (52) in a sliding mode at intervals, and the rotating cylinders (51) are located in the first sliding installation block (44) and the second sliding installation block (45);
the first rotating shaft (53), the first rotating shaft (53) is rotatably installed on the first sliding installation block (44), and the first rotating shaft (53) is also rotatably installed on the second sliding installation block (45);
a bevel gear set (54), the bevel gear set (54) being installed between the first rotating shaft (53) and the rotating cylinder (51);
the second rotating shaft (55), the second rotating shaft (55) is rotatably mounted on the first sliding mounting block (44), and the second rotating shaft (55) is also rotatably mounted on the second sliding mounting block (45);
the second transmission assembly (56), the second transmission assembly (56) is installed between the first rotating shaft (53) and the second rotating shaft (55);
the discharging groove block (57), the discharging groove block (57) is arranged on the second rotating shaft (55);
the poking plate (58), the poking plate (58) is arranged on the slotted rod (52);
the number of the limiting blocks (59) is two, and the limiting blocks (59) are arranged on the mounting plate (3).
2. Guard rail production device according to claim 1, characterized in that it further comprises a blanking device (6), the blanking device (6) comprising:
the fixing frame (61), the fixing frame (61) is symmetrically installed on the base (1);
the sliding charging basket (62), the sliding charging basket (62) is installed between the two fixing frames (61) in a sliding way;
the first handle (63), the first handle (63) is installed on the sliding charging basket (62);
the lower material blocking plates (64) are symmetrically and slidably arranged on the sliding charging basket (62);
the upper material blocking plates (65), and the upper material blocking plates (65) are symmetrically and slidably arranged on the sliding charging basket (62);
the third rotating shaft (66), the third rotating shaft (66) is symmetrically and rotatably arranged on the sliding charging basket (62);
the rotating plate (67), the rotating plate (67) is installed on the third rotating shaft (66);
the first sliding rod (68), the first sliding rod (68) is installed on the lower striker plate (64), and the rotating plate (67) is sleeved on the first sliding rod (68) and is in sliding fit with the first sliding rod (68);
the second sliding rod (69), the second sliding rod (69) is installed on the upper material baffle plate (65), and the rotating plate (67) is sleeved on the second sliding rod (69) and is in sliding fit with the second sliding rod;
a first return spring (610), the first return spring (610) being installed between the rotating plate (67) and the sliding basket (62);
the long plate (611), the long plate (611) is installed between two lower material retaining plates (64);
and a second handle (612), wherein the second handle (612) is installed on the long plate (611).
3. A guard rail production device according to claim 2, characterized in that it further comprises a pushing device (7), the pushing device (7) comprising:
the connecting plate (71), the connecting plate (71) is symmetrically and slidably mounted on the mounting plate (3), and the connecting plate (71) is fixedly connected with one of the second sliding mounting blocks (45);
the vertical plates (72), the vertical plates (72) are symmetrically arranged on the base (1);
the straight gear (73), the straight gear (73) is installed on riser (72) rotatably;
a first rack (74), the first rack (74) is arranged on the connecting plate (71) and is meshed with the straight gear (73);
a second rack (75), the second rack (75) is slidably mounted on the vertical plate (72) and meshed with the straight gear (73);
and the connecting bent plate (76) is arranged on the second rack (75), and the connecting bent plate (76) is fixedly connected with the sliding charging basket (62).
4. A guard rail production device according to claim 3, characterized in that it further comprises a limiting device (8), the limiting device (8) comprising:
the fixed groove block (81), the fixed groove block (81) is arranged on the sliding charging basket (62);
the sliding block (82), the sliding block (82) is installed on the fixed groove block (81) in a sliding way;
the second return spring (83), the second return spring (83) is installed between sliding block (82) and fixed channel block (81);
and a contact lever (84), wherein the contact lever (84) is mounted on the sliding block (82).
5. A guard rail production device according to claim 4 characterized in that it further comprises a locking device (9), the locking device (9) comprising:
the fourth rotating shaft (91), the fourth rotating shaft (91) is rotatably installed on the poking plate (58);
the T-shaped rotating plate (92), and the T-shaped rotating plate (92) is arranged on the fourth rotating shaft (91);
and the magnet (93) is embedded on the limiting block (59), and the magnet (93) is matched with the rotating T-shaped plate (92).
6. A guard rail production device according to claim 5 characterized in that the first handle (63) is made of rubber.
CN202011540137.8A 2020-12-23 2020-12-23 Protective fence production device Active CN112756899B (en)

Priority Applications (1)

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CN202011540137.8A CN112756899B (en) 2020-12-23 2020-12-23 Protective fence production device

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CN211052983U (en) * 2019-11-26 2020-07-21 武汉市科迈机械制造有限责任公司 Positioning die for controlling coaxiality of multiple holes of container door hinge
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CN111790964A (en) * 2020-06-30 2020-10-20 四川大学 Automatic welding equipment for pneumatic clamping of trapezoidal guardrail
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