CN219944312U - Forming mechanism of antidetonation support - Google Patents

Forming mechanism of antidetonation support Download PDF

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Publication number
CN219944312U
CN219944312U CN202321018407.8U CN202321018407U CN219944312U CN 219944312 U CN219944312 U CN 219944312U CN 202321018407 U CN202321018407 U CN 202321018407U CN 219944312 U CN219944312 U CN 219944312U
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China
Prior art keywords
processing table
protection box
motor
cylinder
forming mechanism
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CN202321018407.8U
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Chinese (zh)
Inventor
庄汉长
喻木法
彭文涛
黄明
郑晓金
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Jiangxi Xin Giti Polytron Technologies Inc
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Jiangxi Xin Giti Polytron Technologies Inc
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Abstract

The utility model discloses a forming mechanism of an anti-seismic bracket, which belongs to the field of anti-seismic bracket processing and comprises a first processing table and a second processing table arranged on the front surface of the first processing table, wherein a transmission mechanism is arranged on the front surface of the first processing table, an air cylinder protection box is slidably arranged on the transmission mechanism, a downward red point positioner is fixedly arranged on the right surface of the air cylinder protection box, the air cylinder protection box can move left and right through the transmission mechanism, C-shaped connecting rods are slidably arranged on the left side surface and the right side surface of the first processing table respectively, a clamping plate is fixedly arranged at one end of each C-shaped connecting rod, a wedge-shaped block II is arranged at the other end of each C-shaped connecting rod, a pedal is arranged in the second processing table, and can drive a rotating shaft and a fixing rod to move up and down synchronously through the pedal, so that when a conveyor belt pauses moving, the clamping plate can internally fix parts, and simultaneously place a plurality of parts on the conveyor belt, and the machine is time-saving and labor-saving.

Description

Forming mechanism of antidetonation support
Technical Field
The utility model belongs to the field of anti-seismic bracket processing, and particularly relates to a forming mechanism of an anti-seismic bracket.
Background
The anti-vibration support limits the displacement of the auxiliary electromechanical engineering facilities, controls the vibration of the facilities and transmits the load to various components or devices on the bearing structure. The anti-seismic support gives reliable protection to the building electromechanical engineering facilities in the earthquake and bears the earthquake action from any horizontal direction; the anti-seismic bracket should be checked according to the load born by the anti-seismic bracket; all the components forming the anti-seismic bracket should be finished components, and the components connected with the fasteners should be convenient to install; the anti-seismic support of the heat-insulating pipeline is limited according to the design of the dimension of the heat-insulating pipeline, and the displacement generated by heat expansion and cold contraction of the pipeline is not limited, so that a plurality of working procedures such as cutting, drilling, slotting and the like are needed in the processing process of the anti-seismic support, wherein the drilling working procedure is an important working procedure.
At present, traditional antidetonation support spare part trompil operation is fixed the spare part before punching at every turn, then needs to adjust the spare part position according to punching the position, if punching to a plurality of spare parts, needs to take off the spare part that has punched, and the new spare part of refastening is readied, readjusts the spare part position and adjusts, and work efficiency is low, and the operation is inconvenient.
Disclosure of Invention
The utility model aims to provide a forming mechanism of an anti-seismic bracket, which is used for solving the problems that the prior anti-seismic bracket part punching operation is carried out by fixing parts before punching each time, then adjusting the positions of the parts according to punching positions, if a plurality of parts are punched, the punched parts are required to be taken down, new parts are required to be fixed again, the positions of the parts are readjusted for adjustment, the working efficiency is low and the operation is inconvenient.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a forming mechanism of antidetonation support, includes processing platform one and installs processing platform two in processing platform one openly, processing platform one openly is provided with drive mechanism, slidable mounting has cylinder guard box on the drive mechanism, cylinder guard box right side fixed surface installs decurrent red spot locator, cylinder guard box inside fixed mounting has the cylinder, the piston rod bottom fixed mounting of cylinder has the drift, processing platform one side is the C shape connecting rod of slidable mounting respectively, the one end fixed mounting of C shape connecting rod has splint, and wedge one is installed to the other end of C shape connecting rod, two wedge one relative one is provided with wedge two, wedge two bottom fixed mounting has the dead lever, two inside slidable mounting of processing platform has the footboard, footboard and dead lever fixed connection, surface fixed mounting has a plurality of springs under the footboard, surface fixed connection under spring and the two inner wall of processing platform, surface rotation installs the pivot on the footboard, pivot one end fixed mounting has the bevel gear, surface mounting has a motor output shaft one and two and is connected with two transmission shafts on the same processing platform, two transmission shafts and two side fixed mounting have the bevel gears, the transmission shaft is located two side of the same bevel gear, processing platform fixed mounting has two bevel gears.
By adopting the scheme, through the positive drive mechanism of setting at the processing platform, can make the cylinder guard box move about, utilize red spot locator, can carry out accurate punching in the left and right directions, through driving pivot and dead lever at the footboard and reciprocate, can let pivot and dead lever reciprocate in step, when the pivot moves down, bevel gear cancellation, conveyer belt pause motion, when the dead lever moves down, wedge moves down and drives wedge and inwards move, wedge drives splint inwards move through C-shaped connecting rod, can realize when the conveyer belt pause motion, splint inwards fix spare part when the conveyer belt resumes the motion, splint loosen spare part, and can realize the centre gripping to not unidimensional spare part through footboard downforce control splint inwards distance, a plurality of spare parts can be placed on the conveyer belt, labour saving and time saving.
In the above scheme, it is to be noted that the motor I, the motor II, the cylinder and the red spot positioner are all electrically connected with an external power supply, the red spot positioner adopts a laser diode, an optical lens, the light spots are clear, the divergence is low, the collimation is good, the volume is small, the industrial applicability is strong, and the laser irradiation spot direction of the red spot positioner is concentric with the up-down movement direction of the punch.
As a preferred implementation mode, the transmission mechanism comprises a fixed plate and a motor II which are arranged on the front surface of the first processing table, a screw is rotatably arranged on the fixed plate, one end of the screw is fixedly connected with an output shaft of the motor II, and the cylinder protection box is in threaded connection with the outer surface of the screw.
By adopting the scheme, the screw is driven to rotate by utilizing the second motor to drive the screw to rotate so as to drive the cylinder protection box to move left and right, so that the cylinder and the punch on the cylinder protection box move left and right, the position switching movement of the punch can be carried out on the premise that the part does not move according to the actual punching requirement, and the punching of different point positions can be carried out.
As a preferred implementation mode, a plurality of telescopic rods are fixedly arranged below the pedal, and the bottom ends of the telescopic rods are fixedly connected with the lower surface of the inner wall of the first processing table.
By adopting the scheme, a plurality of telescopic rods are arranged below the pedal, so that the pedal is pressed down horizontally, the telescopic rods play a role in fixing the pedal left and right, the pedal is ensured to move up and down only in the vertical direction, and the problem caused by improper operation is avoided.
As a preferable implementation mode, a trapezoidal chute is formed on one side of the two wedge-shaped blocks, which is opposite to the wedge-shaped blocks, trapezoidal sliding blocks are arranged on the left side and the right side of the wedge-shaped blocks, and the trapezoidal sliding blocks are slidably arranged in the trapezoidal chute.
By adopting the scheme, the trapezoidal sliding blocks can ensure that the left side and the right side of the second wedge block are kept in contact with the opposite surface of the first wedge block, and when the second wedge block moves downwards, the second wedge block can be driven to move inwards.
As a preferred embodiment, the fixing plate is fixedly provided with a guide rail, and the cylinder protection box is slidably arranged on the outer surface of the guide rail.
By adopting the scheme, the guide rail plays a role in fixing and guiding the cylinder protection box, so that the cylinder protection box cannot generate position deviation when horizontally moving on the transmission mechanism, and the punch head fixed on the cylinder piston rod is always vertical to the upper surfaces of the first processing table and the second processing table.
As a preferred embodiment, two clamping plates are positioned on the left and right sides directly below the punch.
By adopting the scheme, after the clamping plate is used for fixing the parts, the parts can be ensured to be fixed under the punch, and the punch can be ensured to punch at the correct position.
Compared with the prior art, the utility model has the beneficial effects that:
this forming mechanism of antidetonation support is through setting up the footboard, utilize footboard drive pivot and dead lever to reciprocate, can let pivot and dead lever reciprocate in step, when pivot downwardly moving, bevel gear cancellation meshing, conveyer belt pause motion, when the dead lever downwardly moving, wedge downwardly moving drives wedge and inwards moves, wedge two pass through C shape connecting rod drive splint inwards move, can realize when the conveyer belt pause motion, splint inwards fix spare part, when the conveyer belt resumes the motion, splint loosen spare part, and can control splint inwards distance through footboard depression degree, realize the centre gripping to not unidimensional spare part, can place a plurality of spare parts on the conveyer belt, it needs manual change spare part's problem after the completion to solve punching, labour saving and time saving, improve work efficiency.
The forming mechanism of the anti-seismic bracket is used by arranging the transmission mechanism to be matched with the cylinder protection box, so that the cylinder protection box can move in the left-right direction, the cylinder fixed in the cylinder protection box can be used for punching any point in the left-right direction of a part, the part can be moved in the horizontal direction by using the conveyor belt, any point of the part can be punched by matching with the left-right movement of the cylinder, the punching precision is ensured by using the red point positioner, the rejection rate is reduced, and the income is improved.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic front view in half section of a second processing station according to the present utility model;
FIG. 3 is a schematic front view in half cross section of a first processing station of the present utility model;
fig. 4 is an enlarged schematic view of the structure of fig. 2.
In the figure: 1. a first processing table; 2. a C-shaped connecting rod; 3. a clamping plate; 4. a second processing table; 5. a belt wheel; 6. a pedal; 7. a case; 8. a conveyor belt; 9. a punch; 10. a red dot positioner; 11. a cylinder protection box; 12. a second motor; 13. a guide rail; 14. a screw; 15. a first motor; 16. a telescopic rod; 17. a spring; 18. a cylinder; 19. a rotating shaft; 20. a transmission shaft; 21. a fixed rod; 22. wedge block one; 23. wedge block two; 24. a fixing plate; 25. bevel gears.
Detailed Description
Referring to fig. 1-4, the utility model provides a forming mechanism of an anti-vibration bracket, which comprises a first processing table 1 and a second processing table 4 arranged on the front surface of the first processing table 1, wherein a transmission mechanism is arranged on the front surface of the first processing table 1, a cylinder protection box 11 is movably arranged on the transmission mechanism, a red spot positioner 10 with a downward probe is fixedly arranged on the right surface of the cylinder protection box 11, light spots are clear, the divergence is low, the collimation is good, the volume is small, the industrial applicability is strong, a cylinder 18 is fixedly arranged in the cylinder protection box 11, a punch 9 is fixedly arranged at the bottom end of a piston rod of the cylinder 18, a screw 14 is rotatably arranged on the fixed plate 24 according to the transmission mechanism, one end of the screw 14 is fixedly connected with an output shaft of the second motor 12, the cylinder protection box 11 is in threaded connection with the outer surface of the screw 14, the forward and backward rotation of the second motor 12 is utilized to drive the screw 14 to drive the cylinder protection box 11 to move in a left position and a right position, so that the cylinder protection box 18 on the cylinder protection box 11 is fixedly arranged on the upper part of the cylinder protection box 9 in the right position, and the left position of the piston rod 18 can move in the position and the left position and the right position of the piston rod on the piston rod is not required to move in the right position and the right position of the piston rod is not to punch.
The fixing plate 24 is fixedly provided with the guide rail 13, the cylinder protection box 11 is slidably arranged on the outer surface of the guide rail 13, and the guide rail plays a role in fixing and guiding the cylinder protection box, so that the cylinder protection box cannot deviate in position when horizontally moving on a transmission mechanism, and the punch 9 fixed on the piston rod of the cylinder 18 is always vertical to the upper surfaces of the first processing table 1 and the second processing table 4.
The left and right sides face of processing platform one 1 all slidable mounting has C shape connecting rod 2, the one end fixed mounting of C shape connecting rod 2 has splint 3, two splint 3 are located the left and right sides under the drift 9, splint 3 can guarantee that spare part is fixed under drift 9 after fixed spare part, ensures that drift 9 can punch in the exact position.
The wedge-shaped block I22 is installed to the other end of C shape connecting rod 2, two the wedge-shaped block I22 is opposite one side is provided with wedge-shaped block II 23, two the trapezoidal spout has been seted up to the wedge-shaped block I22 opposite one side, wedge-shaped block II 23 left and right sides is provided with trapezoidal slider and trapezoidal slider slidable mounting in trapezoidal spout, and trapezoidal slider can guarantee that the left and right sides of wedge-shaped block II 23 remains the contact throughout with the wedge-shaped block I22 opposite one side, and when wedge-shaped block II 23 moves down, just can drive wedge-shaped block I22 inwards to remove.
The fixed rod 21 is fixedly arranged at the bottom of the wedge block II 23, the pedal 6 is fixedly connected with the fixed rod 21 in a sliding manner in the processing table II 4, a plurality of springs 17 are fixedly arranged on the lower surface of the pedal 6, the springs 17 are fixedly connected with the lower surface of the inner wall of the processing table II 4, the rotating shaft 19 is rotatably arranged on the upper surface of the pedal 6, the bevel gear 25 is fixedly arranged at one end of the rotating shaft 19, the first motor 15 is fixedly arranged on the lower surface of the pedal 6, the output shaft of the first motor 15 is fixedly connected with the rotating shaft 19, a plurality of telescopic rods 16 are fixedly arranged below the pedal 6, the bottom end of each telescopic rod 16 is fixedly connected with the lower surface of the inner wall of the processing table I1, a plurality of telescopic rods 16 are arranged below the pedal 6, the horizontal downward pressing position of the pedal 6 can be ensured, the telescopic rods 16 play a fixed role in the left and right positions of the pedal 6, the pedal 6 can be ensured to move up and down only in the vertical direction, and the problem caused by improper operation is avoided.
The processing bench two 4 and the processing bench one 1 are fixedly provided with the same box 7 on the upper surface, a plurality of transmission shafts 20 are rotatably arranged on the box 7, bevel gears 25 are arranged on the transmission shafts 20 positioned at the forefront, two bevel gears 25 are meshed, belt pulleys 5 are fixedly arranged at two ends of the transmission shafts 20, and a plurality of belt pulleys 5 positioned at the same side are provided with conveying belts 8 in a transmission manner.
When the punching machine is used, firstly, parts are contacted with conveying belts 8 on two sides, the first motor 15 is started, the first motor 15 drives the rotating shaft 19 to drive the conveying belts 8 to move, the conveying belts 8 move forwards to drive the parts to move forwards, when the parts need to be punched along with the conveying belts 8 to be conveyed to the same horizontal position with the punching head 9, the pedal 6 is stepped on, the rotating shaft 19 and the fixing rod 21 move downwards synchronously, the rotating shaft 19 moves downwards to separate the two bevel gears 25, the conveying belts 8 pause movement, the fixing rod 21 moves downwards to drive the second wedge block 23 to move downwards, the second wedge block 23 moves downwards due to the action of the trapezoid sliding block, the second wedge block 23 moves downwards to enable the first wedge block 22 to move inwards, the clamping plate 3 moves inwards to fix the parts through the C-shaped connecting rod 2 fixed on the first wedge block 22, at this time, the position of the cylinder box 11 can be adjusted through the rotation of the first motor 15, when the positioning point of the red point positioner 10 is positioned to the position needing to be punched, the second motor 12 is stopped, the extension driving of the cylinder 18 drives the punch head 9 to move downwards to punch, when the parts are finished, the parts are controlled to shrink, the piston rod 9 is controlled to retract, the piston rod 9 is reset, the parts need to be restored to move forwards, and the parts can be moved forwards, and the parts can be conveniently and the parts can be moved continuously, and the parts can be conveniently and the punched can be removed.

Claims (6)

1. The utility model provides a forming mechanism of antidetonation support which characterized in that: the device comprises a first processing table (1) and a second processing table (4) arranged on the front surface of the first processing table (1), wherein a transmission mechanism is arranged on the front surface of the first processing table (1), a cylinder protection box (11) is slidably arranged on the transmission mechanism, a red point positioner (10) with a downward probe is fixedly arranged on the right side surface of the cylinder protection box (11), a cylinder (18) is fixedly arranged in the cylinder protection box (11), a punch (9) is fixedly arranged at the bottom end of a piston rod of the cylinder (18), C-shaped connecting rods (2) are slidably arranged on the left side surface and the right side surface of the first processing table (1), clamping plates (3) are fixedly arranged at one end of each C-shaped connecting rod (2), wedge blocks I (22) are arranged at the other end of each C-shaped connecting rod (2), wedge blocks II (23) are arranged on the opposite surfaces of the two wedge blocks I (22), a fixing rod (21) is fixedly arranged at the bottom of each wedge block II (23), pedals (6) are slidably arranged in the second processing table (4), pedals (6) are fixedly connected with the fixing rods (21), a plurality of springs (17) are fixedly connected with the surfaces of the second rotating tables (17) and fixedly arranged on the surfaces of the second rotating tables (17), the utility model discloses a motor, including footboard (6), processing platform (4), motor (1), conveyer belt (8) are installed in the transmission of a plurality of band pulley (5), motor (15) and motor (15) output shaft and pivot (19) fixed connection are installed to footboard (6) lower surface fixed mounting, processing platform two (4) and processing platform one (1) upper surface fixed mounting have same box (7), rotate on box (7) and install a plurality of transmission shafts (20), be located the top of forefront transmission shaft (20) surface and pivot (19) all are fixed with bevel gear (25) and two bevel gears (25) and mesh, equal fixed mounting in transmission shaft (20) both ends has band pulley (5), are located a plurality of on the same side band pulley (5) transmission is installed conveyer belt (8).
2. The anti-seismic bracket forming mechanism of claim 1, wherein: the transmission mechanism comprises a fixed plate (24) and a motor II (12) which are arranged on the front surface of the first machining table (1), a screw (14) is rotatably arranged on the fixed plate (24), one end of the screw (14) is fixedly connected with an output shaft of the motor II (12), and the cylinder protection box (11) is in threaded connection with the outer surface of the screw (14).
3. The anti-seismic bracket forming mechanism of claim 1, wherein: a plurality of telescopic rods (16) are fixedly arranged below the pedal (6), and the bottom ends of the telescopic rods (16) are fixedly connected with the lower surface of the inner wall of the second processing table (4).
4. The anti-seismic bracket forming mechanism of claim 1, wherein: the two opposite sides of the first wedge block (22) are respectively provided with a trapezoidal chute, and the left side and the right side of the second wedge block (23) are respectively provided with a trapezoidal sliding block which is slidably arranged in the trapezoidal chute.
5. The anti-seismic bracket forming mechanism of claim 2, wherein: the fixing plate (24) is fixedly provided with a guide rail (13), and the cylinder protection box (11) is slidably arranged on the outer surface of the guide rail (13).
6. The anti-seismic bracket forming mechanism of claim 1, wherein: the two clamping plates (3) are positioned at the left side and the right side right below the punch (9).
CN202321018407.8U 2023-04-30 2023-04-30 Forming mechanism of antidetonation support Active CN219944312U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321018407.8U CN219944312U (en) 2023-04-30 2023-04-30 Forming mechanism of antidetonation support

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321018407.8U CN219944312U (en) 2023-04-30 2023-04-30 Forming mechanism of antidetonation support

Publications (1)

Publication Number Publication Date
CN219944312U true CN219944312U (en) 2023-11-03

Family

ID=88535658

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321018407.8U Active CN219944312U (en) 2023-04-30 2023-04-30 Forming mechanism of antidetonation support

Country Status (1)

Country Link
CN (1) CN219944312U (en)

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