CN217317621U - Reversible clamp for graphite processing - Google Patents

Reversible clamp for graphite processing Download PDF

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Publication number
CN217317621U
CN217317621U CN202122749142.6U CN202122749142U CN217317621U CN 217317621 U CN217317621 U CN 217317621U CN 202122749142 U CN202122749142 U CN 202122749142U CN 217317621 U CN217317621 U CN 217317621U
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graphite
blocks
mounting
workbench
graphite processing
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CN202122749142.6U
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唐川
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Sichuan Haicheng Carbon Products Co ltd
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Sichuan Haicheng Carbon Products Co ltd
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Abstract

The application provides a graphite processing is with anchor clamps that can overturn belongs to anchor clamps technical field. The turnable fixture for graphite processing comprises a workbench, two first clamping assemblies and two second clamping assemblies, wherein a first through opening is formed in the workbench, a moving mechanism is fixedly mounted on the workbench, and the two first clamping assemblies are fixedly mounted on the left side and the right side of the workbench. Set up first through-hole on the workstation, be used for the large-scale graphite of upset, large-scale graphite is placed on two first centre gripping subassemblies, moving mechanism drives two second centre gripping subassemblies and removes to graphite, both sides around making two first splint clip graphite, through rotating first double threaded screw, make two clamp splice move in opposite directions, thereby the realization is cliied the purpose of graphite, strengthen and snatch intensity, when the graphite of upset, two first centre gripping subassemblies are rolled away from graphite, through servo motor drive shaft rotation degree, can realize the purpose of upset graphite, and stability is high simultaneously.

Description

Reversible clamp for graphite processing
Technical Field
The application relates to the field of clamps, particularly, relate to a graphite processing is with anchor clamps that can overturn.
Background
Graphite is an allotrope of carbon, is combusted in oxygen to produce carbon dioxide, has stable chemical property and corrosion resistance, is not easy to react with acid and alkali, and needs to be fixed by a clamp in the processing process.
In the correlation technique, graphite is fixed to the anchor clamps, and numerical control equipment carries out surface machining, adds man-hour at the another side of needs to graphite, need overturn graphite, is convenient for overturn to small-size graphite, but then not convenient for overturn through the manual work to large-scale graphite, and current upset anchor clamps are comparatively stable to the small-size graphite of upset, but are not stable enough to the large-size graphite of upset.
SUMMERY OF THE UTILITY MODEL
In order to compensate for the defects, the application provides the turnable fixture for graphite processing, and aims to solve the problem that the overturned large graphite is not stable enough.
The embodiment of the application provides a graphite processing is with anchor clamps that can overturn, including workstation, two first centre gripping subassemblies and two second centre gripping subassemblies.
Set up first through-hole on the workstation, fixed mounting has moving mechanism, two on the workstation first centre gripping subassembly fixed mounting in the left and right sides of workstation, second centre gripping subassembly includes first mounting panel and servo motor, servo motor fixed mounting in on the first mounting panel, servo motor's drive shaft connection has the connecting axle, the one end fixed mounting of connecting axle has first splint, it runs through the mouth to have two seconds on the first splint, the back fixed mounting of first splint has two first double threaded screw, two it is equipped with two clamp splices, two to equally divide on the first double threaded screw other threaded sleeve, one side two the clamp splice passes one side the second runs through the mouth setting, two the equal fixed mounting of first mounting panel in moving mechanism is last.
In the above-mentioned realization in-process, set up first through-hole on the workstation, be used for the large-scale graphite of upset, large-scale graphite is placed on two first centre gripping subassemblies, moving mechanism drives two second centre gripping subassemblies and removes to graphite, make two first splint cliies graphite front and back both sides, through rotating first double threaded screw, make two clamp splice motion in opposite directions, thereby realize cliping the purpose of graphite, strengthen and snatch intensity, when the graphite of upset, two first centre gripping subassemblies are sailed away from graphite, through servo motor drive shaft rotation degree, can realize the purpose of upset graphite, and stability is high simultaneously.
In a specific embodiment, moving mechanism includes two installation pieces, driving motor, second double-threaded screw and removal subassembly, two the equal fixed mounting of installation piece in the bottom of workstation, driving motor fixed mounting is in wherein one on the installation piece, the one end of second double-threaded screw and wherein one the installation piece rotates to be connected, the one end of second double-threaded screw rotates and runs through another the installation piece is connected the setting with driving motor, removal subassembly thread bush is located on the second double-threaded screw.
In a specific implementation scheme, the moving assembly comprises two connecting plates, two ends of each connecting plate are respectively and fixedly connected with a thread block and a moving block, the thread blocks are sleeved on the second double-threaded screw, the moving blocks are arranged to slide and penetrate through the workbench, connecting blocks are fixedly connected to the tops of the moving blocks, and the first mounting plates are respectively and fixedly mounted on the two connecting blocks.
In the implementation process, the second stud drives the thread blocks to move oppositely, the thread blocks drive the two first mounting plates to move oppositely through the connecting plates, the moving blocks and the connecting blocks, the two first clamping plates move oppositely to clamp graphite, and meanwhile, the two first clamping plates have the function of positioning the graphite due to the fact that the running distances of the two first clamping plates are the same.
In a specific implementation scheme, two sliding grooves are formed in the top of the workbench, and the two moving blocks respectively penetrate through the two sliding grooves.
In a specific embodiment, the bottom of workstation fixed mounting has two stoppers, two the spacing groove has all been seted up at the top of connecting plate, two the stopper respectively with two spacing groove sliding connection sets up.
In the implementation process, the connecting plate slides on the limiting block and is used for improving the stability of the moving process of the moving block.
In a specific embodiment, the first clamping assembly comprises a second mounting plate and an air cylinder, the air cylinder passes through the second mounting plate and is fixedly mounted at the top of the workbench, the output shaft of the air cylinder is fixedly connected with a second clamping plate, and a supporting plate is fixedly mounted on the side wall of the second clamping plate.
In a specific embodiment, four fixing blocks are fixedly mounted on the back surface of the first clamping plate, and one of the first stud screws is rotatably arranged to penetrate through two fixing blocks.
In the implementation process, the first stud drives the pressing blocks to move oppositely to clamp graphite, so that the stability in the overturning process is improved.
In a specific embodiment, a plurality of supporting legs are fixedly arranged at the bottom of the workbench.
In a specific embodiment, two the connecting block all slides and locates the top of workstation, the equal fixed mounting in both ends of first double-end screw has the piece of turning round.
In a specific embodiment, two reinforcing blocks are fixedly mounted on the top of the workbench, and the two connecting shafts respectively penetrate through the two reinforcing blocks in a sliding mode.
In the implementation process, the top of the workbench is provided with a reinforcing block for supporting the connecting shaft.
Drawings
In order to more clearly explain the technical solutions of the embodiments of the present application, the drawings that are required to be used in the embodiments will be briefly described below, it should be understood that the following drawings only illustrate some embodiments of the present application and therefore should not be considered as limiting the scope, and that for those skilled in the art, other related drawings can be obtained from these drawings without inventive effort.
FIG. 1 is a schematic front view of a reversible jig for graphite processing according to an embodiment of the present disclosure;
fig. 2 is a schematic front sectional view of an invertible jig for graphite processing according to an embodiment of the present disclosure;
fig. 3 is a schematic top view of a reversible fixture for graphite processing according to an embodiment of the present disclosure;
fig. 4 is a schematic bottom view of a reversible jig for graphite processing according to an embodiment of the present disclosure;
fig. 5 is a schematic structural view of a second clamping assembly in the reversible fixture for graphite processing according to the embodiment of the present disclosure.
In the figure: 10-a workbench; 110-a first through-going opening; 120-a moving mechanism; 1210-mounting a block; 1220-a drive motor; 1230-a second double-ended screw; 1240-a moving assembly; 1241-connecting plate; 1242-thread block; 1243-moving block; 1244-connecting block; 20-a first clamping assembly; 210-a second mounting plate; 220-a cylinder; 230-a second splint; 240-a support plate; 30-a second clamping assembly; 310-a first mounting plate; 320-a servo motor; 330-connecting shaft; 340-a first splint; 350-a second through hole; 360-a first double-ended screw; 370-a clamping block; 40-a chute; 50-a limiting block; 60-a limiting groove; 70-fixing block; 80-support legs.
Detailed Description
The technical solutions in the embodiments of the present application will be described below with reference to the drawings in the embodiments of the present application.
To make the objects, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions of the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are some embodiments of the present application, but not all embodiments. All other embodiments obtained by a person of ordinary skill in the art without any inventive work based on the embodiments in the present application are within the scope of protection of the present application.
Referring to fig. 1-5, the present application provides a reversible jig for graphite processing, which includes a table 10, two first clamping assemblies 20, and two second clamping assemblies 30.
First through opening 110 has been seted up on workstation 10, fixed mounting has moving mechanism 120 on workstation 10, two first centre gripping subassemblies 20 fixed mounting in the left and right sides of workstation 10, second centre gripping subassembly 30 includes first mounting panel 310 and servo motor 320, servo motor 320 fixed mounting is on first mounting panel 310, servo motor 320's drive shaft is connected with connecting axle 330, the one end fixed mounting of connecting axle 330 has first splint 340, two second through openings 350 have been seted up on first splint 340.
Fixed mounting has two first stud screws 360 at the back of first splint 340, it is equipped with two clamp splices 370 to equally divide on two first stud screws 360 and do not the screw thread cover, two clamp splices 370 of one side pass one side second and run through mouthful 350 setting, two equal fixed mounting of first mounting panel 310 are on moving mechanism 120, first centre gripping subassembly 20 includes second mounting panel 210 and cylinder 220, cylinder 220 passes through second mounting panel 210 fixed mounting in the top of workstation 10, the output shaft fixedly connected with second splint 230 of cylinder 220.
Fixed mounting has backup pad 240 on the lateral wall of second splint 230, and the back fixed mounting of first splint 340 has four fixed blocks 70, and 360 rotations of one of them first double-end screw are run through two of them fixed block 70 settings, and the bottom fixed mounting of workstation 10 has a plurality of supporting legs 80, and the equal fixed mounting in both ends of first double-end screw 360 has the piece of turning round, and the top fixed mounting of workstation 10 has two bosses, and two connecting axles 330 slide respectively and run through two boss settings.
When specifically setting up, set up first through-hole 110 on workstation 10, be used for the large-scale graphite of upset, large-scale graphite is placed on two first centre gripping subassemblies 20, moving mechanism 120 drives two second centre gripping subassemblies 30 and removes to graphite, make two first splint 340 cliies graphite front and back both sides, through rotating first stud 360, make two clamp splice 370 move in opposite directions, thereby realize the purpose of cliing graphite, strengthen and snatch intensity, when the graphite of upset, two first centre gripping subassemblies 20 are gone away from graphite, through the rotatory 180 degrees of servo motor 320 drive shaft, can realize the purpose of upset graphite, and stability is high simultaneously.
Further, the output shaft of the cylinder 220 drives the second clamping plate 230 to move, so that the two second clamping plates 230 move in opposite directions, the travel is stopped to be close to the stroke end of the cylinder 220, graphite is placed on the two supporting plates 240, the primary supporting purpose is realized, after the graphite is clamped by the two first clamping plates 340, the cylinder 220 continues to drive the second clamping plate 230 to move, the graphite is clamped, the two reinforcing blocks are arranged at the top of the workbench 10, and the connecting shaft 330 is supported.
The moving mechanism 120 comprises two mounting blocks 1210, a driving motor 1220, a second stud 1230 and a moving assembly 1240, wherein the two mounting blocks 1210 are fixedly mounted at the bottom of the workbench 10, the driving motor 1220 is fixedly mounted on one of the mounting blocks 1210, one end of the second stud 1230 is rotatably connected with one of the mounting blocks 1210, and one end of the second stud 1230 is rotatably arranged through the other mounting block 1210 and connected with the driving motor 1220.
The moving assembly 1240 is sleeved on the second stud 1230 through a thread, the moving assembly 1240 comprises two connecting plates 1241, two ends of the two connecting plates 1241 are equally connected with a thread block 1242 and a moving block 1243, the two thread blocks 1242 are sleeved on the second stud 1230 through a thread, the two moving blocks 1243 are arranged to penetrate through the workbench 10 in a sliding manner, and the tops of the two moving blocks 1243 are fixedly connected with a connecting block 1244.
Two first mounting panels 310 are fixed mounting respectively on two connecting blocks 1244, two chutes 40 have been seted up at the top of workstation 10, two movable blocks 1243 pass two chutes 40 setting respectively, the bottom fixed mounting of workstation 10 has two stoppers 50, spacing groove 60 has all been seted up at the top of two connecting plates 1241, two stoppers 50 set up with two spacing groove 60 sliding connection respectively, the top of workstation 10 is located in two connecting blocks 1244 all slides.
When specifically setting up, drive second stud 1230 through driving motor 1220 and rotate, make two screw thread pieces 1242 move in opposite directions to drive two movable blocks 1243 through two connecting plates 1241 and move in opposite directions, realize two connecting block 1244 and move in opposite directions, can realize pressing from both sides both ends around graphite through two first splint 340, simultaneously because two first splint 340 strokes are the same, thereby can realize the purpose to the graphite location.
Further, when needing to overturn, make backup pad 240 drive away from graphite through cylinder 220, it is rotatory to drive connecting axle 330 through servo motor 320, makes first splint 340 rotatory 180 degrees to can realize the upset purpose, later drive two second splint 230 through cylinder 220 and clip graphite can.
The working principle of the reversible fixture for graphite processing is as follows: two second clamping plates 230 are driven to move oppositely through two cylinders 220, and the graphite stops when the automobile runs to the end of the stroke of the cylinder 220, the graphite is placed on two supporting plates 240, at the moment, a second double-head screw 1230 is driven to rotate through a driving motor 1220, two screw blocks 1242 are driven to move oppositely, two screw blocks 1242 drive two moving blocks 1243 to move oppositely through two connecting plates 1241, two first mounting plates 310 are driven to move oppositely through two connecting blocks 1244, the front side and the rear side of the graphite are clamped through two first clamping plates 340, then the first double-head screw 360 is rotated, two clamping blocks 370 are driven to move oppositely, the purpose of clamping the graphite from the upper side and the lower side is achieved, and the stability of the turnover process is improved.
Further, when overturning, the cylinder 220 drives the second clamping plate 230 to move, so that the supporting plate 240 is driven away from the graphite, then the driving shaft of the servo motor 320 drives the connecting shaft 330 to rotate, the connecting shaft 330 drives the first clamping plate 340 to rotate by 180 degrees, so that the graphite overturning purpose can be realized, and then the cylinder 220 drives the second clamping plate 230 to move towards the graphite, so that the graphite is clamped again.
It should be noted that the specific model specifications of the driving motor 1220, the air cylinder 220 and the servo motor 320 need to be determined by type selection according to the actual specification of the device, and the specific type selection calculation method adopts the prior art, so detailed description is omitted.
The power supply of the driving motor 1220, the cylinder 220 and the servo motor 320 and the principle thereof will be apparent to those skilled in the art and will not be described in detail herein.
The above description is only an example of the present application and is not intended to limit the scope of the present application, and various modifications and changes may be made to the present application by those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application. It should be noted that: like reference numbers and letters refer to like items in the following figures, and thus, once an item is defined in one figure, it need not be further defined and explained in subsequent figures.
The above description is only for the specific embodiments of the present application, but the scope of the present application is not limited thereto, and any person skilled in the art can easily conceive of the changes or substitutions within the technical scope of the present application, and shall be covered by the scope of the present application. Therefore, the protection scope of the present application shall be subject to the protection scope of the claims.

Claims (10)

1. A reversible clamp for graphite processing is characterized by comprising
The device comprises a workbench (10), wherein a first through opening (110) is formed in the workbench (10), and a moving mechanism (120) is fixedly mounted on the workbench (10);
the two first clamping assemblies (20), the two first clamping assemblies (20) are fixedly arranged on the left side and the right side of the workbench (10);
two second centre gripping subassemblies (30), second centre gripping subassembly (30) include first mounting panel (310) and servo motor (320), servo motor (320) fixed mounting in on first mounting panel (310), the drive shaft of servo motor (320) is connected with connecting axle (330), the one end fixed mounting of connecting axle (330) has first splint (340), it runs through mouth (350) to have seted up two seconds on first splint (340), the back fixed mounting of first splint (340) has two first double-end screw (360), two it is equipped with two clamp splice (370), two to equally divide other thread bush on first double-end screw (360) clamp splice (370) pass one side the second runs through mouth (350) and sets up, two first mounting panel (310) equal fixed mounting in moving mechanism (120) is last.
2. The invertible jig for graphite processing according to claim 1, wherein the moving mechanism (120) comprises two mounting blocks (1210), a driving motor (1220), a second stud (1230), and a moving assembly (1240), wherein both of the two mounting blocks (1210) are fixedly mounted at the bottom of the worktable (10), the driving motor (1220) is fixedly mounted on one of the mounting blocks (1210), one end of the second stud (1230) is rotatably connected with one of the mounting blocks (1210), one end of the second stud (1230) rotatably penetrates the other mounting block (1210) and is connected with the driving motor (1220), and the moving assembly (1240) is threadedly sleeved on the second stud (1230).
3. The reversible fixture for graphite processing as claimed in claim 2, wherein the moving assembly (1240) comprises two connecting plates (1241), two ends of the two connecting plates (1241) are respectively and fixedly connected with a threaded block (1242) and a moving block (1243), the two threaded blocks (1242) are screwed on the second double-threaded screw (1230), the two moving blocks (1243) are arranged to slidably penetrate through the worktable (10), the tops of the two moving blocks (1243) are respectively and fixedly connected with a connecting block (1244), and the two first mounting plates (310) are respectively and fixedly mounted on the two connecting blocks (1244).
4. The reversible jig for graphite processing as claimed in claim 3, wherein two sliding grooves (40) are formed at the top of the worktable (10), and two moving blocks (1243) are respectively disposed through the two sliding grooves (40).
5. The reversible fixture for graphite processing as claimed in claim 3, wherein two limiting blocks (50) are fixedly installed at the bottom of the worktable (10), limiting grooves (60) are formed at the top of the two connecting plates (1241), and the two limiting blocks (50) are slidably connected with the two limiting grooves (60), respectively.
6. The reversible jig for graphite processing according to claim 1, wherein the first clamping assembly (20) comprises a second mounting plate (210) and a cylinder (220), the cylinder (220) is fixedly mounted on the top of the worktable (10) through the second mounting plate (210), a second clamping plate (230) is fixedly connected to an output shaft of the cylinder (220), and a supporting plate (240) is fixedly mounted on a side wall of the second clamping plate (230).
7. The reversible jig for graphite processing as claimed in claim 1, wherein four fixing blocks (70) are fixedly installed on the back surface of said first clamping plate (340), and one of said first double-threaded screws (360) is rotatably disposed through two of said fixing blocks (70).
8. The reversible jig for graphite processing as claimed in claim 1, wherein a plurality of support legs (80) are fixedly installed at the bottom of the worktable (10).
9. The reversible jig for graphite processing as claimed in claim 3, wherein two connecting blocks (1244) are slidably disposed on the top of the worktable (10), and two ends of the first double-threaded screw (360) are fixedly provided with twisting blocks.
10. The reversible jig for graphite processing as claimed in claim 1, wherein two reinforcing blocks are fixedly installed on the top of said table (10), and two of said connecting shafts (330) are slidably disposed through the two reinforcing blocks, respectively.
CN202122749142.6U 2021-11-10 2021-11-10 Reversible clamp for graphite processing Active CN217317621U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122749142.6U CN217317621U (en) 2021-11-10 2021-11-10 Reversible clamp for graphite processing

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Application Number Priority Date Filing Date Title
CN202122749142.6U CN217317621U (en) 2021-11-10 2021-11-10 Reversible clamp for graphite processing

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CN217317621U true CN217317621U (en) 2022-08-30

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115592167A (en) * 2022-12-07 2023-01-13 青岛宏标机械有限公司(Cn) A high-precision drilling device for automation equipment accessories

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115592167A (en) * 2022-12-07 2023-01-13 青岛宏标机械有限公司(Cn) A high-precision drilling device for automation equipment accessories

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