CN216267776U - Waste recovery device for aluminum plate processing - Google Patents

Waste recovery device for aluminum plate processing Download PDF

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Publication number
CN216267776U
CN216267776U CN202121732858.9U CN202121732858U CN216267776U CN 216267776 U CN216267776 U CN 216267776U CN 202121732858 U CN202121732858 U CN 202121732858U CN 216267776 U CN216267776 U CN 216267776U
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aluminum plate
extrusion
cylinder
feed cylinder
shell
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CN202121732858.9U
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Chinese (zh)
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张宁
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Sichuan Nonferrous Metals Jinao Aluminum Co ltd
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Sichuan Nonferrous Metals Jinao Aluminum Co ltd
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Abstract

The utility model relates to the technical field of aluminum plate processing devices, in particular to a waste recovery device for aluminum plate processing, which solves the problem that waste generated in the aluminum plate processing process is inconvenient to treat in the prior art. The utility model provides an aluminum plate processing is with waste recovery device, including gathering the silo, the bottom of gathering the silo is provided with presses the feed cylinder, presses the inside of feed cylinder to be cavity structure and be provided with the extrusion subassembly in the cavity, the top of pressing the feed cylinder is provided with the cylinder, the cylinder is fixed with the silo that gathers materials, the piston rod of cylinder runs through to press feed cylinder and extrusion subassembly fixed connection and running through and press feed cylinder sliding connection, the bottom of pressing the feed cylinder is provided with the swivel box, the bottom of swivel box is provided with the fixed plate, swivel box and fixed plate pass through the go-between and rotate the connection. The utility model can collect waste materials generated in the aluminum plate processing process, and process the waste materials into regular blocks through extrusion, thereby facilitating subsequent storage and transportation, and effectively improving the processing efficiency and the safety of waste material processing operation.

Description

Waste recovery device for aluminum plate processing
Technical Field
The utility model relates to the technical field of aluminum plate processing devices, in particular to a waste recovery device for aluminum plate processing.
Background
Aluminum plate is the rolling panel that forms of raw materials with the aluminium ingot, common aluminum plate includes pure aluminum plate, alloy aluminum plate, thin aluminum plate, medium and thick aluminum plate, decorative pattern aluminum plate etc. aluminum plate is used widely in the building materials, fields such as illumination lamp decoration and furniture, aluminum plate need be through cutting process in the course of working with the shape and the size of standardizing aluminum plate, can produce many aluminum plate waste materials in the cutting process, this type of waste material often has sharp outward flange, consequently adopt artifical collection not only inefficiency and have certain potential safety hazard, and sharp outward flange also can the subsequent transportation of impression and deposit, consequently, the waste material after collecting needs carry out the preliminary treatment, to above user demand, can provide an aluminum plate processing and use waste recovery device, through simple operation with aluminum plate production waste material handle to the state of being convenient for follow-up use.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a waste recovery device for aluminum plate processing, which solves the problem that waste generated in the aluminum plate processing process is inconvenient to treat in the prior art.
In order to achieve the purpose, the utility model adopts the following technical scheme:
a waste recovery device for aluminum plate processing comprises a material collecting groove, wherein a material pressing barrel is arranged at the bottom of the material collecting groove, the interior of the material pressing barrel is of a cavity structure, an extrusion assembly is arranged in the cavity, an air cylinder is arranged at the top of the material pressing barrel and is fixed with the material collecting groove, a piston rod of the air cylinder penetrates through the material pressing barrel and is fixedly connected with the extrusion assembly and is in sliding connection with the material pressing barrel in a penetrating manner, a rotating box is arranged at the bottom of the material pressing barrel, a fixed plate is arranged at the bottom of the rotating box, the rotating box and the fixed plate are in rotating connection through a connecting ring, the connecting ring is fixedly connected with the rotating box and is in rotating connection with the fixed plate through a bearing sleeve, the top of the rotating box is of an open structure, the outer wall of the rotating box is of a gear-shaped structure, a driving gear is arranged at one side of the rotating box far away from the material pressing barrel, a servo motor is arranged at the top of the driving gear, the servo motor is fixedly connected with a bolt of the fixed plate, and an output shaft is in transmission connection with the driving gear, the driving gear is connected with the rotating box through latch meshing, the inside of the rotating box is provided with two supporting plates matched with a discharge port of the material pressing barrel, the two supporting plates are symmetrically distributed, two discharging through grooves which are symmetrically distributed are formed in the rotating box, and a discharging channel matched with the discharging through grooves is formed in the fixed plate.
Preferably, the bottom that gathers materials the silo is provided with the feeder hopper, and the feeder hopper runs through a material collecting groove with a material collecting groove fixed connection and top, feeder hopper and a material collecting groove intercommunication, and the bottom of feeder hopper is provided with defeated material pipeline, and defeated material pipeline's top and feeder hopper fixed connection and intercommunication, defeated material pipeline's the other end run through press the feed cylinder and press the inner chamber intercommunication of feed cylinder and be in the department of running through and press feed cylinder fixed connection.
Preferably, the material collecting groove comprises an outer shell and an inner shell, the inner side of the outer shell is provided with the inner shell, sliding grooves matched with the inner shell are formed in the inner walls of the two sides of the inner shell, the inner shell is connected with the outer shell in a sliding mode, and the material feeding hopper is fixedly connected with the outer shell.
Preferably, the outer wall of the inner shell and the inner wall of the outer shell are embedded with matched magnets.
Preferably, the equal fixedly connected with expansion plate in the outside of inner shell and shell, the outside of two expansion plates all is provided with the spiral depression bar, the inside of expansion plate set up with spiral depression bar matched with spiral hole, the spiral depression bar passes through the screw thread with the expansion plate and closes soon to be connected, the inboard of two expansion plates all is provided with anti-skidding pressure head, the spiral depression bar fixed connection of anti-skidding pressure head and homonymy.
Preferably, the extrusion subassembly is including sheltering from sleeve and extrusion head, the piston rod fixed connection of extrusion head and cylinder, the outside of extrusion head is provided with shelters from the sleeve, shelter from sleeve and extrusion head through spring elastic connection and the both ends of spring respectively with shelter from sleeve and extrusion head fixed connection, the inner chamber of pressure feed cylinder is including activity chamber and extrusion chamber, the radial dimension in activity chamber cooperatees with the radial dimension who shelters from the sleeve, the radial dimension in extrusion chamber cooperatees with the radial dimension of extrusion head, the axial dimension who shelters from the sleeve cooperatees with the size of conveying pipeline discharge gate.
The utility model has at least the following beneficial effects:
1. in the course of working, servo motor can drive the driving gear and rotate with driving gear complex rotatory case, when the discharge gate of pressing the feed cylinder is aimed at to the backup pad in the rotatory incasement, the waste material extrusion of extrusion subassembly in the step-down feed cylinder under the drive of cylinder is cylindricly, discharging channel is rotatory to the discharge gate of aiming at the pressure feed cylinder afterwards, the waste material accessible ejection of compact that the processing was accomplished this moment leads to groove and discharging channel output, thereby realize the full-automatic suppression and the ejection of compact of waste material, handling operation is being simplified, the operational safety has been ensured when promoting recovery efficiency.
2. When sheltering from the sleeve and moving to activity chamber bottom, shelter from the sleeve and stop down and the extrusion head lasts down the suppression waste material, shelter from the sleeve and just block the discharge gate of conveying pipeline this moment, avoid the waste material to get into the activity chamber for the extrusion subassembly can be continuously steadily reciprocating motion, lasts the suppression and exports the waste material.
3. The relative slip of collecting tank accessible shell and inner shell changes self length to adapt to the not unidimensional processing platform, be favorable to comprehensively collecting the waste material.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings needed to be used in the description of the embodiments are briefly introduced below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without creative efforts.
FIG. 1 is a front elevation, partial cross-sectional view of the present invention;
FIG. 2 is a top sectional view of the trough;
FIG. 3 is a sectional view of the inside of the barrel;
FIG. 4 is a schematic view of a compression assembly;
FIG. 5 is a top cross-sectional view of the spin box, support plate, and discharge through slot.
In the figure: 1. a material collecting groove; 2. a retractable plate; 3. a screw press rod; 4. an anti-slip pressure head; 5. pressing the material barrel; 6. a cylinder; 7. an extrusion assembly; 8. a movable cavity; 9. an extrusion chamber; 10. a rotating box; 11. a support plate; 12. a discharge through groove; 13. a driving gear; 14. a servo motor; 15. a fixing plate; 16. a discharge channel; 17. a delivery pipeline; 18. a feed hopper; 19. a housing; 20. an inner shell; 21. a magnet; 22. a shielding sleeve; 23. an extrusion head; 24. and (7) connecting rings.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the utility model and are not intended to limit the utility model.
Referring to fig. 1-5, a waste recycling device for aluminum plate processing comprises a material collecting tank 1, a material pressing barrel 5 is arranged at the bottom of the material collecting tank 1, the material pressing barrel 5 is of a cavity structure, an extrusion assembly 7 is arranged in the cavity, a cylinder 6 is arranged at the top of the material pressing barrel 5, the cylinder 6 is fixed with the material collecting tank 1, a piston rod of the cylinder 6 penetrates through the material pressing barrel 5 and is fixedly connected with the extrusion assembly 7, and is in sliding connection with the material pressing barrel 5, a rotary box 10 is arranged at the bottom of the material pressing barrel 5, a fixed plate 15 is arranged at the bottom of the rotary box 10, the rotary box 10 and the fixed plate 15 are in rotary connection through a connecting ring 24, the connecting ring 24 is fixedly connected with the rotary box 10 and is in rotary connection with the fixed plate 15 through a bearing sleeve, the top of the rotary box 10 is of an open structure, the outer wall of the rotary box is of a gear structure, and a driving gear 13 is arranged at one side of the rotary box 10 far away from the material pressing barrel 5, the top of driving gear 13 is provided with servo motor 14, servo motor 14 and 15 bolt fixed connection of fixed plate and output shaft are connected with the driving gear 13 transmission, driving gear 13 passes through the latch meshing with rotatory case 10 and is connected, the inside of rotatory case 10 is provided with two and presses material section of thick bamboo 5's discharge gate matched with backup pad 11, two backup pads 11 are the symmetric distribution, two ejection of compact logical grooves 12 that are the symmetric distribution are seted up to the inside of rotatory case 10, fixed plate 15's inside is seted up and is led to groove 12 matched with discharging channel 16 with the ejection of compact.
The scheme has the following working processes:
utilize the cooperation of spiral depression bar 3 and expansion plate 2 to be fixed in the bottom of processing point with collection silo 1, the production waste material gets into the inner chamber that accessible feeder hopper 18 and conveying pipeline 17 got into pressure feed cylinder 5 behind the collection silo 1, open cylinder 6 and servo motor 14 after, in the course of working, servo motor 14 drives driving gear 13 and rotates with driving gear 13 complex rotatory case 10, when backup pad 11 in the rotatory case 10 aims at the discharge gate that presses feed cylinder 5, the extrusion subassembly 7 is the waste material extrusion cylindric in the pressure feed cylinder 5 under the drive of cylinder 6, discharge groove 12 is rotatory to the discharge gate that aims at pressure feed cylinder 5 afterwards, the waste material accessible discharge groove 12 and the 16 output of discharging channel of processing completion this moment.
According to the working process, the following steps are known:
this waste recovery device can extrude the waste material of collecting and handle, and it not only can standardize the shape and can avoid the sharp edge of waste material to cut operating personnel to suppress into cylindric structure with the waste material, and this waste recovery device can realize full-automatic suppression and output finished product, has effectively promoted the treatment effeciency, has promoted the processing security.
Further, the bottom of collecting groove 1 is provided with feeder hopper 18, feeder hopper 18 runs through collecting groove 1 with 1 fixed connection in the groove and top that gathers materials, feeder hopper 18 and 1 intercommunication in the groove that gathers materials, the bottom of advancing hopper 18 is provided with conveying pipeline 17, conveying pipeline 17's top and feeder hopper 18 fixed connection and intercommunication, conveying pipeline 17's the other end runs through press feed cylinder 5 and press feed cylinder 5's inner chamber intercommunication and in the department of running through and press feed cylinder 5 fixed connection, the waste material accessible feeder hopper 18 and the conveying pipeline 17 that drop into in the collecting groove 1 get into and press the feed cylinder 5 in by concentrated suppression, need not artifical the collection, therefore efficiency is higher and safer.
Further, the material collecting groove 1 comprises an outer shell 19 and an inner shell 20, the inner shell 20 is arranged on the inner side of the outer shell 19, sliding grooves matched with the inner shell 20 are formed in the inner walls of the two sides of the inner shell 20, the inner shell 20 is connected with the outer shell 19 in a sliding mode, the feeding hopper 18 is fixedly connected with the outer shell 19, the length of the material collecting groove 1 can be changed through relative sliding of the outer shell 19 and the inner shell 20, and therefore the material collecting groove can adapt to machining tables of different sizes and is beneficial to comprehensive collection of waste materials.
Further, the outer wall of the inner shell 20 and the inner wall of the outer shell 19 are embedded with matched magnets 21, and the magnets 21 can prevent the inner shell 20 and the outer shell 19 from sliding relatively when the material collecting groove 1 is in a retracted state, so that the storage and the transportation are facilitated.
Further, the equal fixedly connected with expansion plate 2 in the outside of inner shell 20 and shell 19, the outside of two expansion plates 2 all is provided with spiral depression bar 3, the inside of expansion plate 2 is seted up with spiral depression bar 3 matched with spiral hole, spiral depression bar 3 closes the connection through the screw soon with expansion plate 2, the inboard of two expansion plates 2 all is provided with anti-skidding pressure head 4, anti-skidding pressure head 4 and the 3 fixed connection of spiral depression bar of homonymy, can make anti-skidding pressure head 4 compress tightly the lateral wall of processing platform through tensile expansion plate 2 and rotatory spiral depression bar 3, play the effect of fixed collecting tank 1.
Further, the extrusion assembly 7 comprises a shielding sleeve 22 and an extrusion head 23, the extrusion head 23 is fixedly connected with a piston rod of the cylinder 6, the shielding sleeve 22 is arranged on the outer side of the extrusion head 23, the shielding sleeve 22 and the extrusion head 23 are elastically connected through a spring, two ends of the spring are fixedly connected with the shielding sleeve 22 and the extrusion head 23 respectively, an inner cavity of the material pressing barrel 5 comprises a movable cavity 8 and an extrusion cavity 9, the radial dimension of the movable cavity 8 is matched with the radial dimension of the shielding sleeve 22, the radial dimension of the extrusion cavity 9 is matched with the radial dimension of the extrusion head 23, the axial dimension of the shielding sleeve 22 is matched with the dimension of a discharge port of the material conveying pipeline 17, in the whole descending process of the extrusion assembly 7, when the shielding sleeve 22 moves to the bottom of the movable cavity 8, the shielding sleeve 22 stops descending and the extrusion head 23 continuously presses the descending waste material, at this time, the shielding sleeve 22 just blocks the discharge port of the material conveying pipeline 17, the waste material is prevented from entering the movable cavity 8, so that the extrusion assembly 7 can continuously and stably reciprocate, and the output waste material is continuously pressed.
The foregoing shows and describes the general principles, principal features, and advantages of the utility model. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are merely illustrative of the principles of the utility model, but that various changes and modifications may be made without departing from the spirit and scope of the utility model, which fall within the scope of the utility model as claimed. The scope of the utility model is defined by the appended claims and equivalents thereof.

Claims (6)

1. The utility model provides an aluminum plate processing is with waste recovery device, includes collecting tank (1), its characterized in that: the bottom of the material collecting groove (1) is provided with a material pressing barrel (5), the interior of the material pressing barrel (5) is of a cavity structure, an extrusion assembly (7) is arranged in the cavity, the top of the material pressing barrel (5) is provided with a cylinder (6), the cylinder (6) is fixed with the material collecting groove (1), a piston rod of the cylinder (6) penetrates through the material pressing barrel (5) and is fixedly connected with the extrusion assembly (7) and penetrates through and is in sliding connection with the material pressing barrel (5), the bottom of the material pressing barrel (5) is provided with a rotary box (10), the bottom of the rotary box (10) is provided with a fixed plate (15), the rotary box (10) and the fixed plate (15) are rotatably connected through a connecting ring (24), the connecting ring (24) is fixedly connected with the rotary box (10) and is rotatably connected with the fixed plate (15) through a bearing sleeve, the top of the rotary box (10) is of an open structure, and the outer wall of the rotary box (10) is of a gear-shaped structure, one side that rotatory case (10) kept away from pressure feed cylinder (5) is provided with driving gear (13), the top of driving gear (13) is provided with servo motor (14), servo motor (14) and fixed plate (15) bolt fixed connection and output shaft are connected with driving gear (13) transmission, driving gear (13) are connected through the latch meshing with rotatory case (10), the inside of rotatory case (10) is provided with two and discharge gate matched with backup pad (11) of pressure feed cylinder (5), two backup pad (11) are the symmetric distribution, two logical groove (12) of ejection of compact that are the symmetric distribution have been seted up to the inside of rotatory case (10), fixed plate (15) the inside seted up with ejection of compact logical groove (12) matched with discharging channel (16).
2. The scrap recycling device for aluminum plate processing according to claim 1, wherein: the bottom of collecting chute (1) is provided with feeder hopper (18), feeder hopper (18) run through collecting chute (1) with collecting chute (1) fixed connection and top, feeder hopper (18) and collecting chute (1) intercommunication, the bottom of feeder hopper (18) is provided with defeated material pipeline (17), the top and feeder hopper (18) fixed connection and the intercommunication of defeated material pipeline (17), the other end of defeated material pipeline (17) runs through the inner chamber intercommunication of pressing feed cylinder (5) and is running through department and pressing feed cylinder (5) fixed connection.
3. The scrap recycling device for aluminum plate processing according to claim 2, wherein: gather material groove (1) and include shell (19) and inner shell (20), the inboard of shell (19) is provided with inner shell (20), set up on the both sides inner wall of inner shell (20) with inner shell (20) matched with spout, inner shell (20) and shell (19) sliding connection, feeder hopper (18) and shell (19) fixed connection.
4. The scrap recycling apparatus for aluminum plate processing according to claim 3, wherein the magnets (21) are embedded on the outer wall of the inner shell (20) and the inner wall of the outer shell (19).
5. The scrap recycling device for aluminum plate processing according to claim 4, wherein: the equal fixedly connected with expansion plate (2) in the outside of inner shell (20) and shell (19), two the outside of expansion plate (2) all is provided with spiral depression bar (3), the inside of expansion plate (2) is seted up with spiral depression bar (3) matched with spiral hole, spiral depression bar (3) are connected, two through the screw thread spiral with expansion plate (2) the inboard of expansion plate (2) all is provided with anti-skidding pressure head (4), anti-skidding pressure head (4) and spiral depression bar (3) fixed connection of homonymy.
6. The scrap recycling device for aluminum plate processing according to claim 5, wherein: extrusion subassembly (7) are including sheltering from sleeve (22) and extrusion head (23), the piston rod fixed connection of extrusion head (23) and cylinder (6), the outside of extrusion head (23) is provided with shelters from sleeve (22), shelter from sleeve (22) and extrusion head (23) through the both ends of spring elastic connection and spring respectively with shelter from sleeve (22) and extrusion head (23) fixed connection, the inner chamber of pressing feed cylinder (5) is including activity chamber (8) and extrusion chamber (9), the radial dimension of activity chamber (8) cooperatees with the radial dimension who shelters from sleeve (22), the radial dimension of extrusion chamber (9) cooperatees with the radial dimension of extrusion head (23), the axial dimension who shelters from sleeve (22) cooperatees with the size of defeated material pipeline (17) discharge gate.
CN202121732858.9U 2021-07-28 2021-07-28 Waste recovery device for aluminum plate processing Active CN216267776U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121732858.9U CN216267776U (en) 2021-07-28 2021-07-28 Waste recovery device for aluminum plate processing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121732858.9U CN216267776U (en) 2021-07-28 2021-07-28 Waste recovery device for aluminum plate processing

Publications (1)

Publication Number Publication Date
CN216267776U true CN216267776U (en) 2022-04-12

Family

ID=81058377

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121732858.9U Active CN216267776U (en) 2021-07-28 2021-07-28 Waste recovery device for aluminum plate processing

Country Status (1)

Country Link
CN (1) CN216267776U (en)

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