CN218422646U - Graphite block forming device for cultivating diamonds - Google Patents

Graphite block forming device for cultivating diamonds Download PDF

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Publication number
CN218422646U
CN218422646U CN202221518794.7U CN202221518794U CN218422646U CN 218422646 U CN218422646 U CN 218422646U CN 202221518794 U CN202221518794 U CN 202221518794U CN 218422646 U CN218422646 U CN 218422646U
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gear
support
arc
graphite block
plate
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CN202221518794.7U
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李仁德
范祖华
梅春枝
刘威
白石
孙毅
刘健
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Zhongjing Diamond Co ltd
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Zhongjing Diamond Co ltd
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Abstract

The utility model provides a be used for cultivating lithodomous graphite block forming device, including the support, be equipped with mould and bed die on the support, go up and be equipped with gliding top push pedal on the mould, be equipped with gliding slide on the bed die, slide and first gear connection, first gear one side is equipped with the second gear of meshing, goes up and is equipped with between mould and the bed die and washs pushing mechanism, washs pushing mechanism and includes the arc, is equipped with a plurality of brushes on the arc. The pushing plate pushes the formed graphite block out of the upper die under the action of the springs, and the pushing mechanism is cleaned to enable the graphite block to enter the material receiving box. The whole device has the advantages of ingenious design, simple and practical structure, high working efficiency and high automation degree. Wash pushing mechanism can be to the washing of slide, can sweep out slide outer wall and glue glutinous a large amount of graphite powder, what the arc can be better washs for the slide, increases the area of contact of arc and slide, increases the cleaning efficiency, has great spreading value.

Description

Graphite block forming device for cultivating diamonds
Technical Field
The utility model relates to a cultivate the diamond field, especially relate to a graphite block forming device for cultivating diamond.
Background
Diamonds made from graphite are widely used, and graphite powder is required to be pressed into graphite blocks in the process of cultivating artificial diamonds. Among the graphite block forming device among the prior art, on the production line, the graphite piece is after the extrusion is accomplished, and the graphite piece that produces is difficult to take out it, and fashioned graphite piece is difficult to automatic collection, influences the production efficiency of whole production line, and the outer wall that is used for extruded extrusion piece simultaneously can glue a large amount of graphite powder, can influence next machining precision, leads to the phenomenon that the product is not too close. To this end, we propose a graphite block forming device for cultivating diamonds to solve the above problems.
Chinese patent document CN213699751U describes an automatic batching device for cultivating diamond graphite powder and assisting powder, comprising a batching table and a plurality of vacuum feeders, wherein a holding tank is arranged on the front wall of the batching table, a batching barrel is arranged inside the holding tank, a plurality of universal wheels are arranged at the bottom of the batching barrel, a plurality of sleeves are fixedly connected to the top of the batching table, and straight grooves and spiral grooves which are mutually communicated are arranged on the inner walls of the sleeves; the utility model discloses accomplish the back of weighing to the powder, usable first electronic jar promotes the push rod and removes, when the guide block removes in the straight flute, the push rod drives the mounting panel and the box of weighing is linear motion, make the box of weighing remove directly over the opening part of batching bucket, after the guide block removes to the helicla flute in, can drive the push rod and take place to rotate, thereby make the box of weighing take place the reversal at the removal in-process, in order to channel into the batching bucket with the powder, realize automatic blending and material loading, need not artifical the transportation, time saving and labor saving, excellent in use effect. But the device graphite block is after the extrusion is accomplished, and the graphite block of production is difficult to take out it, influences the production efficiency of whole production line, and the outer wall that is used for the extrusion piece of extrusion simultaneously can glue a large amount of graphite powder, can influence the machining precision next time, leads to the phenomenon that the product is not too close. There are drawbacks to the use and improvements are needed.
SUMMERY OF THE UTILITY MODEL
The utility model provides a be used for cultivating lithodomous graphite block forming device solves the graphite piece and accomplishes the back in the extrusion, and the graphite piece of production is difficult to take out it and automatic collection, influences the production efficiency of whole production line, and the outer wall that is used for extruded extrusion piece simultaneously can glue glutinous a large amount of graphite powder, can influence the problem of the machining precision next time.
In order to solve the technical problem, the utility model discloses the technical scheme who adopts is: the utility model provides a graphite block forming device for cultivating diamond, includes the support, is equipped with mould and bed die on the support, is equipped with gliding push pedal on going up the mould, is equipped with gliding slide on the bed die, slide and first gear connection, and first gear one side is equipped with the second gear of meshing, goes up and is equipped with between mould and the bed die and washs pushing mechanism, washs pushing mechanism and includes the arc, is equipped with a plurality of brushes on the arc.
In the preferred scheme, be equipped with the backup pad on the support, be equipped with the spout in the backup pad, wash pushing mechanism and include the cylinder, be equipped with the slider on the cylinder, the slider supports and leans on the spout.
In the preferred scheme, the pneumatic cylinder of support top, the one end and the last mould of pneumatic cylinder are connected, are equipped with a plurality of springs between push pedal and the last mould.
In the preferred scheme, the bottom of support is equipped with electric putter, and electric putter's one end is equipped with the rolling disc, and the rolling disc rotates with first gear and is connected, is equipped with the spliced pole on the first gear, is connected with the slide on the spliced pole.
In the preferred scheme, a hollow cavity is arranged on the first gear, the rotating disc abuts against the hollow cavity, the electric push rod penetrates through the first gear to be connected with the rotating disc, and the connecting column penetrates through the lower die to be connected with the sliding plate.
In the preferred scheme, one end of the second gear is provided with a motor, and the motor is arranged on the supporting plate.
In the preferred scheme, a material collecting box is arranged on one side of the support, a material guiding sliding plate is arranged between the material collecting box and the support, one end of the material guiding sliding plate is abutted against the supporting plate, and the other end of the material guiding sliding plate is positioned on the material collecting box.
In the preferred scheme, support one side is equipped with the head tank, is equipped with screw conveyer between head tank and the bed die, is equipped with the feed inlet on the bed die, and screw conveyer one end is located the head tank, and the screw conveyer other end and feed inlet intercommunication.
The utility model has the advantages that: after the graphite powder is extruded into the graphite block, the hydraulic cylinder is driven to enable the upper die to move upwards, the pushing plate pushes the formed graphite block out of the upper die under the action of the springs, and the cylinder is driven simultaneously to enable the arc plate to slide relative to the supporting plate so that the arc plate pushes the graphite block to the material receiving box. The whole device design benefit, simple structure is practical, can get the material to the graphite piece automatically through the elasticity of spring, utilizes the slip of arc to collect the graphite piece, accomplishes drawing of patterns and automatic collection process for work efficiency on the assembly line, degree of automation is high.
When the sliding plate needs to be cleaned, the electric push rod is driven to move the sliding plate out to the horizontal position of the arc-shaped plate, the air cylinder is driven to enable the hairbrush on the arc-shaped plate to abut against the sliding plate, the motor is driven to enable the second gear to rotate, and the first gear is enabled to rotate so that the sliding plate rotates. The cleaning of the sliding plate can sweep a large amount of graphite powder adhered to the outer wall of the sliding plate, so that the phenomenon that the product is not closed due to the next machining precision can be avoided.
The arc is the arc structure, and the arc structure not only can guarantee that the graphite piece removes in the receipts workbin, can not take place the skew at gliding in-process, and what the arc structure of arc can be better simultaneously washs for the slide, can increase the area of contact of arc and slide, increases the cleaning efficiency, has great spreading value.
Drawings
The present invention will be further explained with reference to the drawings and examples;
FIG. 1 is a cross-sectional view of the overall structure of the present invention;
FIG. 2 is a right side view of the overall structure of the present invention;
FIG. 3 is a sectional view of a partial structure of the present invention;
FIG. 4 is a top view of the wash push mechanism of the present invention;
in the figure: a support 1; a support plate 101; a slideway 102; cleaning the pushing mechanism 2; a cylinder 201; a slider 202; an arc-shaped plate 203; a brush 204; an upper die 3; a lower die 4; a feed inlet 401; a push plate 5; a spring 6; a slide plate 7; a connecting column 8; a first gear 9; a hollow cavity 901; a second gear 10; a material guide sliding plate 11; a material receiving box 12; an electric push rod 13; a hydraulic cylinder 14; a motor 15; a screw conveyor 16; a raw material tank 17; the disc 18 is rotated.
Detailed Description
Example 1:
as shown in fig. 1-4, a graphite block forming device for cultivating diamond, comprising a support 1, wherein a top mold 3 and a bottom mold 4 are arranged on the support 1, a sliding top plate 5 is arranged on the top mold 3, a sliding plate 7 is arranged on the bottom mold 4, the sliding plate 7 is connected with a first gear 9, a second gear 10 engaged with the first gear 9 is arranged on one side of the first gear 9, a cleaning pushing mechanism 2 is arranged between the top mold 3 and the bottom mold 4, the cleaning pushing mechanism 2 comprises an arc-shaped plate 203, and a plurality of brushes 204 are arranged on the arc-shaped plate 203. From this structure, drive hydraulic cylinder 14 to make last mould 3 support and lean on lower mould 4, drive electric putter 13, so that slide 7 moves up, so that the graphite powder extrusion in lower mould 4 is the graphite piece, drive hydraulic cylinder 14 again, so that go up mould 3 and move up, ejector plate 5 pushes out last mould 3 to fashioned graphite piece under the effect of a plurality of springs 6, drives cylinder 201 simultaneously, so that arc 203 slides for backup pad 101, so that arc 203 pushes the graphite piece and receives in the workbin 12. The whole device design benefit, simple structure is practical, can get the material through the elasticity of spring 6 is automatic to the graphite piece, utilizes the slip of arc 203 to collect the graphite piece, accomplishes drawing of patterns and automatic collection process for work efficiency on the assembly line, degree of automation is high.
When the sliding plate 7 needs to be cleaned, the electric push rod 13 is driven to move the sliding plate 7 out to the horizontal position of the arc-shaped plate 203, the air cylinder 201 is driven to enable the brush 204 on the arc-shaped plate 203 to abut against the sliding plate 7, and the motor 15 is driven to enable the second gear 10 to rotate so as to enable the first gear 9 to rotate so as to enable the sliding plate 7 to rotate. The cleaning of the sliding plate 7 can sweep a large amount of sticky graphite powder on the outer wall of the sliding plate 7, so that the phenomenon that the product is not closed due to the next machining precision can be avoided.
Arc 203 is the arc structure, and the arc structure not only can guarantee that the graphite piece removes to the workbin 12, can not take place the skew at gliding in-process, and what the arc structure of arc 203 can be better simultaneously washs for slide 7, can increase arc 203 and slide 7's area of contact, increases the cleaning efficiency.
In a preferred scheme, a support plate 101 is arranged on the support 1, a sliding groove 102 is arranged on the support plate 101, the cleaning pushing mechanism 2 comprises an air cylinder 201, a sliding block 202 is arranged on the air cylinder 201, and the sliding block 202 abuts against the sliding groove 102. With this structure, the electric push rod 13 is driven to move the sliding plate 7 out to the horizontal position of the arc-shaped plate 203, the air cylinder 201 is driven to make the brush 204 on the arc-shaped plate 203 abut on the sliding plate 7, and the motor 15 is driven to make the second gear 10 rotate to make the first gear 9 rotate to make the sliding plate 7 rotate. The cleaning of the sliding plate 7 can sweep a large amount of sticky graphite powder on the outer wall of the sliding plate 7, so that the phenomenon that the product is not closed due to the next machining precision can be avoided.
In the preferred scheme, a hydraulic cylinder 14 is arranged at the top of the support 1, one end of the hydraulic cylinder 14 is connected with the upper die 3, a sliding push plate 5 is arranged on the upper die 3, and a plurality of springs 6 are arranged between the push plate 5 and the upper die 3. With this configuration, the hydraulic cylinder 14 is driven to abut the upper mold 3 against the lower mold 4, and the electric push rod 13 is driven to move the slide plate 7 upward to extrude the graphite powder in the lower mold 4 into graphite blocks.
In the preferred scheme, the bottom of the support 1 is provided with an electric push rod 13, one end of the electric push rod 13 is provided with a rotating disc 18, the rotating disc 18 is rotatably connected with a first gear 9, a connecting column 8 is arranged on the first gear 9, and the connecting column 8 is connected with the sliding plate 7. With this structure, the motor 15 is driven to rotate the second gear 10 to rotate the first gear 9 to rotate the slide plate 7. The cleaning of the sliding plate 7 can sweep a large amount of sticky graphite powder on the outer wall of the sliding plate 7, so that the phenomenon that the product is not closed due to the next machining precision can be avoided.
In a preferable scheme, a hollow cavity 901 is formed in the first gear 9, the rotating disc 18 abuts against the hollow cavity 901, the electric push rod 13 penetrates through the first gear 9 to be connected with the rotating disc 18, and the connecting column 8 penetrates through the lower die 4 to be connected with the sliding plate 7. With this structure, when the first gear 9 rotates, the first gear 9 rotates relative to the rotating disk 18, and the rotating disk 18 and the electric push rod 13 are kept stationary.
In a preferred scheme, one end of the second gear 10 is provided with a motor 15, and the motor 15 is arranged on the supporting plate 101.
In the preferred scheme, a material receiving box 12 is arranged on one side of a support 1, a material guiding sliding plate 11 is arranged between the material receiving box 12 and the support 1, one end of the material guiding sliding plate 11 abuts against a supporting plate 101, and the other end of the material guiding sliding plate 11 is located on the material receiving box 12. With this structure, the cylinder 201 is driven to slide the arc plate 203 relative to the support plate 101 so that the arc plate 203 pushes the graphite blocks into the bin 12. The whole device is ingenious in design, simple and practical in structure, can automatically take the graphite blocks through the elasticity of the spring 6, and collects the graphite blocks by sliding the arc-shaped plate 203. Overall structure is simple, subtracts and exempts from a large amount of manual works, reduce cost, and degree of automation is higher.
In the preferred scheme, a raw material box 17 is arranged on one side of the support 1, a spiral conveyor 16 is arranged between the raw material box 17 and the lower die 4, a feed port 401 is formed in the lower die 4, one end of the spiral conveyor 16 is located on the raw material box 17, and the other end of the spiral conveyor 16 is communicated with the feed port 401. With this structure, when the lower die 4 needs to add the raw material, the screw conveyor 16 is driven, and the screw conveyor 16 conveys the raw material into the lower die 4 through the feed port 401.
The above-mentioned embodiments are merely preferred embodiments of the present invention, and should not be considered as limitations of the present invention, and the protection scope of the present invention should be defined by the technical solutions described in the claims, and includes equivalent alternatives of technical features in the technical solutions described in the claims. Namely, equivalent alterations and modifications within the scope of the invention are also within the scope of the invention.

Claims (6)

1. The utility model provides a graphite block forming device for cultivating diamond, characterized by: the cleaning device comprises a support (1), wherein an upper die (3) and a lower die (4) are arranged on the support (1), a sliding push plate (5) is arranged on the upper die (3), a sliding plate (7) is arranged on the lower die (4), the sliding plate (7) is connected with a first gear (9), a second gear (10) which is meshed with the first gear (9) is arranged on one side of the first gear (9), a cleaning pushing mechanism (2) is arranged between the upper die (3) and the lower die (4), the cleaning pushing mechanism (2) comprises an arc-shaped plate (203), and a plurality of brushes (204) are arranged on the arc-shaped plate (203); the cleaning and pushing mechanism (2) comprises an air cylinder (201), a sliding block (202) is arranged on the air cylinder (201), and the sliding block (202) abuts against the sliding groove (102); support (1) top pneumatic cylinder (14), the one end and the last mould (3) of pneumatic cylinder (14) are connected, are equipped with a plurality of springs (6) between push pedal (5) and last mould (3).
2. The apparatus of claim 1, wherein the graphite block forming device for cultivating diamond comprises: the bottom of support (1) is equipped with electric putter (13), and the one end of electric putter (13) is equipped with rolling disc (18), and rolling disc (18) rotate with first gear (9) to be connected, is equipped with spliced pole (8) on first gear (9), is connected with slide (7) on spliced pole (8).
3. The apparatus of claim 2, wherein said graphite block forming device comprises: a hollow cavity (901) is formed in the first gear (9), the rotating disc (18) abuts against the hollow cavity (901), the electric push rod (13) penetrates through the first gear (9) to be connected with the rotating disc (18), and the connecting column (8) penetrates through the lower die (4) to be connected with the sliding plate (7).
4. The apparatus of claim 1, wherein the graphite block forming device for cultivating diamond comprises: one end of the second gear (10) is provided with a motor (15), and the motor (15) is installed on the support plate (101).
5. The apparatus of claim 1, wherein the graphite block forming device for cultivating diamond comprises: a material receiving box (12) is arranged on one side of the support (1), a material guiding sliding plate (11) is arranged between the material receiving box (12) and the support (1), one end of the material guiding sliding plate (11) is abutted against the supporting plate (101), and the other end of the material guiding sliding plate (11) is located on the material receiving box (12).
6. The apparatus of claim 1, wherein the graphite block forming device for cultivating diamond comprises: raw material box (17) are arranged on one side of support (1), a screw conveyor (16) is arranged between raw material box (17) and lower die (4), a feed port (401) is formed in lower die (4), one end of screw conveyor (16) is located on raw material box (17), and the other end of screw conveyor (16) is communicated with feed port (401).
CN202221518794.7U 2022-06-17 2022-06-17 Graphite block forming device for cultivating diamonds Active CN218422646U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221518794.7U CN218422646U (en) 2022-06-17 2022-06-17 Graphite block forming device for cultivating diamonds

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221518794.7U CN218422646U (en) 2022-06-17 2022-06-17 Graphite block forming device for cultivating diamonds

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Publication Number Publication Date
CN218422646U true CN218422646U (en) 2023-02-03

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117160416A (en) * 2023-07-11 2023-12-05 安徽有研吸气材料有限公司 Low-temperature forming equipment and forming method for getter
CN120155128A (en) * 2025-04-01 2025-06-17 内蒙古中启芯材料有限公司 Large-size diamond single crystal growth device and method

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117160416A (en) * 2023-07-11 2023-12-05 安徽有研吸气材料有限公司 Low-temperature forming equipment and forming method for getter
CN120155128A (en) * 2025-04-01 2025-06-17 内蒙古中启芯材料有限公司 Large-size diamond single crystal growth device and method
CN120155128B (en) * 2025-04-01 2025-08-15 内蒙古中启芯材料有限公司 Large-size diamond monocrystal growth device and method

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