CN114290057B - Mechanical chamber storehouse cover automatic molding equipment - Google Patents

Mechanical chamber storehouse cover automatic molding equipment Download PDF

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Publication number
CN114290057B
CN114290057B CN202111655270.2A CN202111655270A CN114290057B CN 114290057 B CN114290057 B CN 114290057B CN 202111655270 A CN202111655270 A CN 202111655270A CN 114290057 B CN114290057 B CN 114290057B
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workbench
block
fixed
stamping
sliding
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CN114290057A (en
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高兴业
汪晓春
刘友祥
顾志玛
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Chuzhou Shangnuo Automation Equipment Co ltd
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Chuzhou Shangnuo Automation Equipment Co ltd
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Abstract

The invention discloses automatic forming equipment for a mechanical chamber bin cover, which comprises a first workbench and a second workbench, wherein the second workbench is fixedly connected with the first workbench, two conveyor belts are arranged on the second workbench in a rotating manner, a placing groove is formed in the upper end surface of the second workbench and positioned between the two conveyor belts, a lifting rod is fixed at the inner bottom of the placing groove, an electromagnet for adsorbing and fixing a plate is fixed at the upper end of the lifting rod, a rotating disc is fixedly connected to the bottom of the lifting rod, and grinding boxes for grinding burrs on the side edges of the plate are movably arranged on two sides of the second workbench; according to the invention, through the matching of the grinding box, the double-shaft motor and the electromagnet, when the lifting rod jacks up the plate from the conveying belt, the double-shaft motor works to drive the threaded rod to rotate, so that the two mounting blocks drive the two grinding boxes to approach each other, burrs on the side edge of the plate are ground, and the problem that the cabin cover plate is inconvenient to carry and transfer after being formed by stamping and stretching is avoided.

Description

Mechanical chamber storehouse cover automatic molding equipment
Technical Field
The invention relates to the technical field of mechanical automation, in particular to automatic forming equipment for a bin cover of a mechanical chamber.
Background
Part machinery room housing is in the in-process of production, it is obtained to carry out the punching press drawing to the housing panel by machinery room housing automatic molding equipment usually, as shown in fig. 8, current machinery room housing automatic molding equipment can make required product, but in the use, there is certain defect, for example current machinery room housing automatic molding equipment can not treat the side burr of the housing panel of processing, lead to machinery room housing shaping back, inconvenient transport and later stage installation combination, for example current machinery room housing automatic molding equipment is when punching press drawing housing panel, to the transition arc limit of preliminary fashioned machinery room housing, it is not very good to handle, influence the result of use in this machinery room housing later stage.
Disclosure of Invention
The invention aims to solve the defects in the prior art, and provides automatic forming equipment for a mechanical chamber cover.
In order to achieve the purpose, the invention adopts the following technical scheme:
the utility model provides a machinery room canopy automatic molding equipment, includes first workstation and second workstation, second workstation and first workstation fixed connection rotate on the second workstation and are provided with two conveyer belts, and the up end of second workstation just is located and has seted up the standing groove between two conveyer belts, and the interior bottom of standing groove is fixed with the lifter, and the upper end of lifter is fixed with the electro-magnet that is used for adsorbing fixed panel, and the bottom fixedly connected with rolling disc of lifter, the equal activity in both sides of second workstation are provided with the case of polishing that is used for polishing panel side burr.
As a further technical scheme, a first sliding groove is formed in the bottom of the second workbench, a first sliding block is arranged in the first sliding groove in a sliding mode, a double-shaft motor is fixed to the bottom of the first sliding block, threaded rods are fixedly sleeved on two driving shafts of the double-shaft motor, each threaded rod is in threaded connection with an installation block, and the upper end face of each installation block is fixedly connected with the bottom of the polishing box.
As a further technical scheme of the present invention, first limiting blocks are fixed on both sides of the first sliding block, a plurality of balls are rotatably disposed at the bottom of each first limiting block, and a first limiting groove used in cooperation with the first limiting block is disposed on a side wall of the first sliding groove.
As a further technical scheme, second sliding grooves are formed in two sides of the second workbench, a second sliding block is connected to the inside of each second sliding groove in a sliding mode, a guide rod is fixed to the side wall of each second sliding block, and the guide rods penetrate through the corresponding mounting blocks.
As a further technical scheme, a second limiting block is fixed at the bottom of each second sliding block, a second limiting groove matched with the second limiting block is formed in the bottom of each second sliding groove, electric push rods are fixed on two sides of the first workbench, and the telescopic ends of the electric push rods are movably connected with the side wall of the mounting block.
As a further technical scheme of the invention, each grinding box is U-shaped, two side grinding wheels are rotatably arranged on the side wall of each grinding box, and two upper grinding wheels and two lower grinding wheels are rotatably arranged at the inner top and the inner bottom of each grinding box respectively.
As a further technical scheme, a working box is fixed on the upper end face of the first working table, a stamping cylinder penetrates through the working box, a stamping block is fixed at the tail end of the stamping cylinder, four extrusion plates are movably arranged on the side wall of the stamping block, and a stamping groove matched with the stamping block for use is formed in the upper end face of the first working table.
As a further technical scheme, four telescopic grooves are formed in the side wall of each stamping block, four extrusion plates are movably arranged in the four corresponding telescopic grooves, a fixed block is fixed on the inner wall of each extrusion plate, a first hydraulic rod is fixed in each telescopic groove, and the telescopic end of each first hydraulic rod is fixedly connected with the corresponding fixed block.
As a further technical scheme, two second hydraulic rods penetrate through the working box, the tail ends of the two second hydraulic rods are fixedly provided with the same material pressing plate, and the upper end face of the first working table is symmetrically provided with two guide plates.
The invention has the beneficial effects that:
1. through the case of polishing that sets up, the cooperation of double-shaft motor and electro-magnet, after the lifter jacks up panel from the conveyer belt, the double-shaft motor work, it rotates to drive the threaded rod, thereby make two installation pieces drive two case of polishing and be close to each other, polish the processing to the burr of the side of panel, avoid storehouse cover panel behind the punching press stretch forming, inconvenient transport shifts, through the guide bar that sets up, avoid the installation piece to take place rotatoryly on the one hand, on the other hand makes the guide bar can undertake the weight of installation piece and the case of polishing.
2. Through the rolling disc that sets up, the cooperation of first sliding block and electric push rod, when making electric push rod drive the case of polishing for the first time and remove, the side wheel of polishing can polish the side of panel, then the lifter drives panel rebound suitable distance, make the upper end portion of panel side and last wheel of polishing contact, then electric push rod drives the case of polishing for the second time and removes, polish the processing to the upper end part burr of panel side, the lifter drives panel rebound suitable distance after that, make the lower tip of panel side and lower wheel of polishing contact, then electric push rod drives the case of polishing for the third time and removes, polish the processing to the lower tip burr of panel side, double-shaft motor drives the threaded rod antiport, make two cases of polishing keep away from the panel of processing instead, then the rolling disc of lifter bottom rotates 90, it rotates 90 to drive panel, thereby make the case of polishing also polish the processing to two other sides of panel, guarantee the effect of polishing.
3. Through the punching press piece that sets up, the cooperation of stripper plate and first hydraulic stem, after on panel was carried the punching press groove by the conveyer belt, the punching press jar drives the punching press piece downstream, stretch to panel, make panel stretched into the approximate shape of mechanical chamber housing cover, under the effect of stripper plate after that, carry out further drawing to each side of panel, make panel stretched into the shape of mechanical chamber housing cover completely, thereby make each lateral wall of housing cover can bear the whole weight that plays the housing cover, cause the housing cover can bear the impact and the deformation of certain degree at the in-process that uses, press the flitch through setting up, fix the side of placing the panel on the punching press groove, prevent that panel from producing the displacement by tensile in-process.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the connection between the lifter and the electromagnet according to the present invention;
FIG. 3 is a side view of the present invention;
FIG. 4 is a schematic view of the connection between the first slider and the dual-shaft motor according to the present invention;
FIG. 5 is a schematic view of the connection of the sanding box to the mounting block of the present invention;
FIG. 6 is a schematic view of the connection between the ram block and the ram cylinder in the present invention;
FIG. 7 is a schematic view of the connection between the extruding plate and the fixing block of the present invention;
fig. 8 is a schematic structural diagram of the prior art.
In the figure: 1. a first table; 2. a second table; 3. a conveyor belt; 4. a lifting rod; 5. an electromagnet; 6. grinding a box; 7. a first slider; 8. a dual-axis motor; 9. a threaded rod; 10. mounting blocks; 11. a first stopper; 12. a ball bearing; 13. a second chute; 14. a second slider; 15. a guide bar; 16. an electric push rod; 17. grinding wheels are arranged on the side edges; 18. polishing a grinding wheel; 19. grinding the grinding wheel downwards; 20. a work box; 21. stamping a cylinder; 22. stamping the blocks; 23. a pressing plate; 24. a telescopic groove; 25. a fixed block; 26. a first hydraulic lever; 27. a second hydraulic rod; 28. a material pressing plate; 29. a guide plate.
Detailed Description
To further illustrate the technical means and effects of the present invention adopted to achieve the predetermined objects, the following detailed description of the embodiments, structures, features and effects according to the present invention will be made with reference to the accompanying drawings and preferred embodiments.
Referring to fig. 1-7, an automatic molding device for machinery chamber bin covers comprises a first working table 1 and a second working table 2, the second working table 2 is fixedly connected with the first working table 1, two conveyor belts 3 are rotatably arranged on the second working table 2, the two conveyor belts 3 are used for conveying bin cover plates to be processed, a placing groove is arranged on the upper end surface of the second working table 2 and positioned between the two conveyor belts 3, a lifting rod 4 is fixed at the inner bottom of the placing groove, an electromagnet 5 used for adsorbing and fixing the plates is fixed at the upper end of the lifting rod 4, a rotating disc is fixedly connected with the bottom of the lifting rod 4, the rotating disc is rotatably arranged in the placing groove, and grinding boxes 6 used for grinding burrs on the side edges of the plates are movably arranged on both sides of the second working table 2, carry out the automation transport to placing panel on second workstation 2 through conveyer belt 3 that sets up, do not need artifical transport, when the panel of treating processing moves the standing groove directly over, lifter 4's flexible end extension, take the bottom that electromagnet 5 is close to panel, contact until the counterbalance of the bottom of electromagnet 5 and panel, then 5 electric work that leads to of electromagnet, adsorb fixedly to the panel that passes through on the conveyer belt 3, then lifter 4's flexible end continues the extension, with jack-up on the panel punching conveyer belt 3, avoid panel to continue to move, two case 6 of polishing through setting up, the processing of polishing is carried out to the burr on the panel side, avoid storehouse cover panel behind the punching press stretch forming, inconvenient transport is shifted.
First spout has been seted up to the bottom of second workstation 2, it is provided with first sliding block 7 to slide in the first spout, the bottom of first sliding block 7 is fixed with double-shaft motor 8, it is equipped with threaded rod 9 all to fix the cover in two drive shafts of double-shaft motor 8, equal threaded connection has installation piece 10 on every threaded rod 9, the up end of installation piece 10 and the bottom fixed connection of case 6 of polishing, after lifter 4 is with panel jack-up from conveyer belt 3, double-shaft motor 8 work, drive threaded rod 9 and rotate, thereby make two installation pieces 10 drive two case 6 of polishing and be close to each other, the side to panel is polished and is handled.
First stopper 11 is all fixed with to the both sides of first sliding block 7, the bottom of every first stopper 11 is all rotated and is provided with a plurality of balls 12, set up the first spacing groove that the first stopper 11 of cooperation used on the lateral wall of first spout, because the both sides of first workstation 1 all are fixed with electric putter 16, and the flexible end of electric putter 16 and the lateral wall fixed connection of installation piece 10, when electric putter 16's flexible end extension and shortening, drive installation piece 10 and the case 6 removal of polishing, thereby make the case 6 of polishing polish to the side of panel, through the ball 12 that sets up, it is more smooth and easy to make first sliding block 7 remove in first spout, avoid influencing work efficiency.
Second spout 13 has all been seted up to the both sides of second workstation 2, equal sliding connection has second sliding block 14 in every second spout 13, all be fixed with guide bar 15 on every second sliding block 14's the lateral wall, guide bar 15 runs through corresponding installation piece 10, when double-shaft motor 8 drives threaded rod 9 and rotates, can drive installation piece 10 and remove on threaded rod 9, guide bar 15 through setting up, avoid installation piece 10 to take place rotatoryly on the one hand, on the other hand makes guide bar 15 can undertake the weight of installation piece 10 and case 6 of polishing.
Second sliding block 14's bottom all is fixed with the second stopper, the second spacing groove that cooperation second stopper used has all been seted up to every second spout 13's bottom, first workstation 1's both sides all are fixed with electric push rod 16, the flexible end of electric push rod 16 and the lateral wall swing joint of installation piece 10, the side sliding tray has been seted up on the lateral wall of installation piece 10, the end of the flexible end of electric push rod 16 is fixed with side sliding stopper, side sliding stopper and side sliding tray sliding connection, make electric push rod 16's flexible end when installation piece 10 removes, do not produce with installation piece 10 and remove the interference, avoid influencing the removal of installation piece 10, through the second stopper that sets up, avoid second 14 outside skew when removing in the front and back, influence the result of use of this equipment.
Every case 6 of polishing all is the U-shaped, it is provided with two side wheel 17 of polishing to rotate on the lateral wall of case 6 of polishing, the interior top and the interior bottom of case 6 of polishing are rotated respectively and are provided with two and are polished round 18 and two and polish round 19 down on, be fixed with servo motor in the case 6 of polishing, through the side wheel 17 that sets up, when making electric push rod 16 drive case 6 of polishing and remove for the first time, can polish the side of panel, then lifter 4 drives panel rebound suitable distance, make the upper end of panel side contact with last wheel 18 of polishing, then electric push rod 16 drives case 6 of polishing for the second time and removes, polish the processing to the upper end part burr of panel side, lifter 4 drives panel rebound suitable distance, make the lower tip of panel side and lower wheel 19 of polishing, then electric push rod 16 drives case 6 of polishing for the third time and removes, polish the processing to the lower tip burr of panel side.
Then the double-shaft motor 8 drives the threaded rod 9 to rotate reversely, so that the two grinding boxes 6 are far away from the plates to be machined, then the rotating disc at the bottom of the lifting rod 4 rotates 90 degrees to drive the plates to rotate 90 degrees, and therefore the other two sides of the plates can be also ground by the grinding boxes 6.
The upper end face of the first workbench 1 is fixed with a workbench 20, a stamping cylinder 21 penetrates through the workbench 20, a stamping block 22 is fixed at the tail end of the stamping cylinder 21, four extrusion plates 23 are movably arranged on the side wall of the stamping block 22, a stamping groove matched with the stamping block 22 for use is formed in the upper end face of the first workbench 1, after the plate is conveyed to the stamping groove by a conveyor belt 3, the stamping cylinder 21 drives the stamping block 22 to move downwards to stretch the plate, so that the plate is stretched into the approximate shape of a mechanical chamber bin cover, and then under the action of the extrusion plates 23, each side edge of the plate is further stretched, so that the plate is completely stretched into the shape of the mechanical chamber bin cover, each side wall of the bin cover can bear the whole weight of the bin cover, and the bin cover can bear impact and deformation to a certain degree in the using process.
Four flexible grooves 24 have been seted up on punching press piece 22's the lateral wall, four stripper plate 23 activities are set up in four flexible grooves 24 that correspond, all be fixed with fixed block 25 on every stripper plate 23's the inner wall, all be fixed with first hydraulic stem 26 in every flexible groove 24, the flexible end of first hydraulic stem 26 and the fixed block 25 fixed connection that corresponds, after the preliminary shaping of machinery room cover, the flexible end extension of first hydraulic stem 26, drive each stripper plate 23 and remove to the outside, it is tensile to further extrude preliminary fashioned machinery room cover, make final fashioned machinery room cover more accord with operation requirement.
Two second hydraulic rods 27 penetrate through the work box 20, the tail ends of the two second hydraulic rods 27 are fixedly provided with the same pressure plate 28, the side edges of the plates placed on the stamping groove are fixed through the arranged pressure plate 28, the plates are prevented from being displaced in the stretching process, two guide plates 29 are symmetrically arranged on the upper end face of the first work table 1, and the plates are prevented from being displaced in the process of moving from the conveyor belt 3 to the stamping groove, so that the whole work efficiency is influenced.
When the plate material processing device is used, firstly, a plate material to be processed is placed on the conveyor belt 3, the plate material placed on the second workbench 2 is automatically conveyed through the arranged conveyor belt 3 without manual carrying, when the plate material to be processed moves right above the placing groove, the telescopic end of the lifting rod 4 extends to drive the electromagnet 5 to be close to the bottom of the plate material until the electromagnet 5 is in contact with the bottom of the plate material in an abutting mode, then the electromagnet 5 is electrified to work to adsorb and fix the plate material on the conveyor belt 3, then the telescopic end of the lifting rod 4 continues to extend to jack up the plate material from the conveyor belt 3 to prevent the plate material from continuing to move, then the double-shaft motor 8 works to drive the threaded rod 9 to rotate, so that the two mounting blocks 10 drive the two grinding boxes 6 to be close to each other to grind the side edge of the plate material, and when the electric push rod 16 drives the grinding boxes 6 to move for the first time through the arranged side grinding wheels 17, the side edges of the plates can be polished, then the lifting rod 4 drives the plates to move upwards for a proper distance, the upper end parts of the side edges of the plates are in contact with the upper polishing wheel 18, then the electric push rod 16 drives the polishing box 6 to move for the second time, burrs of the upper end parts of the side edges of the plates are polished, then the lifting rod 4 drives the plates to move downwards for a proper distance, the lower end parts of the side edges of the plates are in contact with the lower polishing wheel 19, then the electric push rod 16 drives the polishing box 6 to move for the third time, burrs of the lower end parts of the side edges of the plates are polished, then the double-shaft motor 8 drives the threaded rod 9 to rotate reversely, two polishing boxes 6 are far away from the plates to be processed, then the rotating disc at the bottom of the lifting rod 4 rotates 90 degrees to drive the plates to rotate 90 degrees, and therefore the other two side edges of the plates can also be polished by the polishing boxes 6, after burrs on each side of a plate are polished, the lifting rod 4 drives the plate to return to the conveyor belt 3, then the electromagnet 5 is changed into a standby state from a working state, then the plate is conveyed to the stamping groove by the conveyor belt 3, then the pressure plate 28 moves downwards under the action of the second hydraulic rod 27 to fix the side of the plate placed on the stamping groove and prevent the plate from displacing in the stretching process, two guide plates 29 are symmetrically arranged on the upper end face of the first workbench 1 to prevent the plate from deviating in the process of moving from the conveyor belt 3 to the stamping groove and influence the overall working efficiency, then the stamping cylinder 21 drives the stamping block 22 to move downwards to stretch the plate, so that the plate is stretched into the approximate shape of the mechanical chamber cover, then, each side of the plate is further stretched under the action of the extrusion plate 23, so that the plate is completely stretched into the shape of the mechanical chamber cover, and each side wall of the chamber cover can bear the overall weight of the chamber cover, and the chamber cover can bear impact and deformation to a certain degree in the using process.
Although the present invention has been described with reference to the preferred embodiments, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the scope of the present invention.

Claims (1)

1. The automatic forming equipment for the mechanical chamber bin cover comprises a first workbench (1) and a second workbench (2), and is characterized in that the second workbench (2) is fixedly connected with the first workbench (1), two conveyor belts (3) are arranged on the second workbench (2) in a rotating mode, a placing groove is formed in the upper end face of the second workbench (2) and located between the two conveyor belts (3), a lifting rod (4) is fixed to the inner bottom of the placing groove, an electromagnet (5) used for adsorbing and fixing a plate is fixed to the upper end of the lifting rod (4), a rotating disc is fixedly connected to the bottom of the lifting rod (4), and grinding boxes (6) used for grinding burrs on the side edge of the plate are movably arranged on two sides of the second workbench (2);
a first sliding groove is formed in the bottom of the second workbench (2), a first sliding block (7) is arranged in the first sliding groove in a sliding mode, a double-shaft motor (8) is fixed to the bottom of the first sliding block (7), threaded rods (9) are fixedly sleeved on two driving shafts of the double-shaft motor (8), each threaded rod (9) is in threaded connection with an installation block (10), and the upper end face of each installation block (10) is fixedly connected with the bottom of the polishing box (6);
first limiting blocks (11) are fixed on two sides of the first sliding block (7), a plurality of balls (12) are rotatably arranged at the bottom of each first limiting block (11), and a first limiting groove matched with the first limiting block (11) for use is formed in the side wall of the first sliding groove;
second sliding grooves (13) are formed in two sides of the second workbench (2), a second sliding block (14) is connected in each second sliding groove (13) in a sliding mode, a guide rod (15) is fixed to the side wall of each second sliding block (14), and each guide rod (15) penetrates through the corresponding mounting block (10);
a second limiting block is fixed at the bottom of each second sliding block (14), a second limiting groove matched with the second limiting block for use is formed in the bottom of each second sliding groove (13), electric push rods (16) are fixed on two sides of the first workbench (1), and the telescopic ends of the electric push rods (16) are connected with the side wall of the mounting block (10) in a sliding mode;
each grinding box (6) is U-shaped, two side grinding wheels (17) are rotatably arranged on the side wall of each grinding box (6), and two upper grinding wheels (18) and two lower grinding wheels (19) are respectively rotatably arranged at the inner top and the inner bottom of each grinding box (6);
the stamping device comprises a first workbench (1), a stamping block (22), four extrusion plates (23), a working box (20) and a stamping groove, wherein the working box (20) is fixed on the upper end surface of the first workbench (1), the stamping cylinder (21) penetrates through the working box (20), the stamping block (22) is fixed at the tail end of the stamping cylinder (21), the four extrusion plates (23) are movably arranged on the side wall of the stamping block (22), and the stamping groove matched with the stamping block (22) in use is formed in the upper end surface of the first workbench (1);
the side wall of the stamping block (22) is provided with four telescopic grooves (24), the four extrusion plates (23) are movably arranged in the four corresponding telescopic grooves (24), the inner wall of each extrusion plate (23) is fixedly provided with a fixed block (25), a first hydraulic rod (26) is fixedly arranged in each telescopic groove (24), and the telescopic end of each first hydraulic rod (26) is fixedly connected with the corresponding fixed block (25);
two second hydraulic rods (27) penetrate through the working box (20), the tail ends of the two second hydraulic rods (27) are fixedly provided with the same pressure plate (28), and the upper end face of the first working table (1) is symmetrically provided with two guide plates (29).
CN202111655270.2A 2021-12-30 2021-12-30 Mechanical chamber storehouse cover automatic molding equipment Active CN114290057B (en)

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Application Number Priority Date Filing Date Title
CN202111655270.2A CN114290057B (en) 2021-12-30 2021-12-30 Mechanical chamber storehouse cover automatic molding equipment

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Application Number Priority Date Filing Date Title
CN202111655270.2A CN114290057B (en) 2021-12-30 2021-12-30 Mechanical chamber storehouse cover automatic molding equipment

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CN114290057B true CN114290057B (en) 2022-11-29

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