CN208929980U - A kind of self-feeding processing unit (plant) - Google Patents
A kind of self-feeding processing unit (plant) Download PDFInfo
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- CN208929980U CN208929980U CN201821670336.9U CN201821670336U CN208929980U CN 208929980 U CN208929980 U CN 208929980U CN 201821670336 U CN201821670336 U CN 201821670336U CN 208929980 U CN208929980 U CN 208929980U
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Abstract
The utility model discloses a kind of self-feeding processing unit (plant)s, comprising: level support platform;Vibrating disk in the level support platform is set, material to be ground is placed in the vibrating disk;The sloping platform of the level support platform side is set, and the top work surface of the sloping platform is a straight plane of inclination;The conveying seat being fastened on the working face of the sloping platform;It is fastened on the working face of the sloping platform and is located at the processing unit of conveying seat side, the processing unit includes a grinding wheel, one the second motor of the grinding wheel rotation, one driven to be fastened with the straight spur unit of the sliding panel of second motor, a straight reciprocating motion for driving the sliding panel to do vertical direction;It is fastened on the translation unit on the working face of the sloping platform for being moved to the material of the conveying seat discharge end immediately below the grinding wheel.The self-feeding processing unit (plant) can effectively reduce energy consumption, have the advantages that structure is simple, easy to use.
Description
Technical field
The utility model relates to non-standard automatic equipment technical field more particularly to self-feeding processing unit (plant)s.
Background technique
Self-feeding processing unit (plant) is the material conveying process equipment of automation, is widely used in light, heavy industry part
Feeding processing.Existing self-feeding processing unit (plant) haves the shortcomings that structure is complicated, driving source is more.Therefore, it is necessary to study one
Kind self-feeding processing unit (plant).
Utility model content
Shortcoming present in view of the above technology, the utility model, which provides one kind, can reduce energy consumption and structure letter
Single self-feeding processing unit (plant).
The technical scheme adopted by the utility model to solve the technical problem is as follows: a kind of self-feeding processing unit (plant), comprising:
Level support platform;Vibrating disk in the level support platform is set, material to be ground is placed in the vibrating disk;Setting
Sloping platform in the level support platform side, the top work surface of the sloping platform are a straight plane of inclination;It is fastened on
Conveying seat on the working face of the sloping platform;It is fastened on the working face of the sloping platform and is located at the conveying seat one
The processing unit of side, the processing unit include a grinding wheel, one drive the second motor of grinding wheel rotation, one be fastened with it is described
The sliding panel of second motor, one drive the sliding panel do vertical direction straight reciprocating motion straight spur unit;Fastening
For the material of the conveying seat discharge end to be moved to immediately below the grinding wheel on the working face of the sloping platform
Translation unit;Wherein, the material include one first cylindrical portion, one be fixed on the first cylindrical portion bottom face
Two cylindrical portions and one it is fixed at third cylindrical portion on the second cylindrical portion bottom face, first cylindrical portion, institute
The diameter value for stating the second cylindrical portion and third cylindrical portion coaxial arrangement and second cylindrical portion is greater than first cylinder
The diameter value in portion and the third cylindrical portion.
It preferably, further include a height-regulating unit, the height-regulating unit is fastened with the vibrating disk including one and is horizontally disposed with
Adjustable plate, four adjusting screw rods being fixed on the work top of the level support platform, wherein the adjusting screw rod
Be vertically arranged on the work top of the level support platform, and be bolted on each adjusting screw rod on one adjusting nut and
Adjusting nut once, four edges of the adjustable plate form the threaded hole matched with the adjusting screw rod, it is described on
Adjusting nut is located at the top of the adjustable plate, and the lower adjusting nut is located at the lower section of the adjustable plate, and the adjustable plate is logical
It crosses the upper adjusting nut and the lower adjusting nut is arranged on the adjusting screw rod.
Preferably, a conveying channel slided for the material, the top of the conveying seat are formed on the conveying seat
It is fastened with the cover board for avoiding extraneous dust granule from entering the conveying channel.
Preferably, the longitudinal cross-section in the conveying channel is in inverted " convex " font.
Preferably, the straight spur unit of the processing unit includes one being fastened on the working face of the sloping platform
Screw case, one are fastened on the first motor at the top of the screw case, are provided with the first sliding block and are fastened on the outside of the screw case
First straight line guide rail on wall, wherein the sliding panel is fastened on first sliding block, and the screw case is built-in with one and institute
The lead screw screw rod of the output axis connection of first motor is stated, a feed screw nut, the feed screw nut are bolted on the lead screw screw rod
Tighten it is fixed be equipped with a link block, the one end of the link block and the feed screw nut be connected, the other end and the sliding
Plate is connected, and the screw case is provided on the side wall of the first straight line guide rail and forms an elongated hole being vertically distributed.
Preferably, a wheel guard is covered on the grinding wheel.
Preferably, the translation unit includes on a working face for being fastened on the sloping platform and being located at the conveying seat
Discharge end pedestal, be provided with the second sliding block and be fastened at the top of the pedestal second straight line guide rail, one by described
Translation plates that second sliding block is arranged on the second straight line guide rail, one are fastened on the translation plates top end face and form object
The material seat of hopper, one be fastened on the pedestal and the first cylinder that piston rod and the translation plates are connected, vertically through institute
It states translation plates and the material seat and is located at the opposite two sides of the material trough for the material to be pressed in the material trough
A pair of of compression bar, be fastened on provide the straight reciprocating motion of vertical direction for the compression bar on the bottom face of the translation plates
Two cylinders, one be arranged in the material trough slot bottom be fastened on the pedestal close to switch, one and conveying seat described in face
Discharge end makes limit plate of the material lagging skidded off from the discharge end in the material trough, wherein described
One is formed on pedestal for accommodating the accommodation groove of second cylinder, in the translation direction of the translation plates and the conveying seat
The material glide direction it is perpendicular, the piston rod of second cylinder is connect by fixed block with the compression bar.
It preferably, further include a sharpening unit, the sharpening unit includes a working face for being fastened on the sloping platform
On mounting base, be provided with third sliding block third linear guide, one be fastened on laminate in the third linear guide, one tight
Gu the sharpening block and one on the laminate top end face for being ground the grinding wheel are fastened in the mounting base and piston rod
The third cylinder being connected with the laminate, wherein the third sliding block is fastened on the top of the mounting base.
It preferably, further include a dust suction bucket, the dust suction bucket is fastened on the working face of the sloping platform and is located at institute
The side of grinding wheel is stated, the dust suction bucket is also connected with external air source.
Preferably, the tilt angle of the working face of the sloping platform is 18 ° ~ 38 °.
The utility model compared with prior art, the beneficial effect is that: self-feeding provided by the utility model processing dress
It sets, the working face of sloping platform is obliquely installed, and the material in the conveying channel of conveying seat slides under the effect of gravity
To the material trough of material seat, a driving source is effectively saved, energy consumption is reduced, has structure simple, easy to use excellent
Point;The top end face of first cylindrical portion of material is machined surface, and grinding wheel is under the driving of straight spur unit to the top end face of material
Carry out grinding operation;The sharpening block of sharpening unit can be ground the grinding wheel of passivation so that grinding wheel has sharp grinding sword;
Dust suction bucket can be absorbed in time the clast that grinding generates by external air source.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of self-feeding processing unit (plant) described in the utility model;
Fig. 2 is the structural schematic diagram of the processing unit of the utility model;
Fig. 3 is the positional diagram between the conveying seat, translation unit and dust suction bucket of the utility model;
Fig. 4 is the decomposition texture schematic diagram of the conveying seat of the utility model;
Fig. 5 is the positional diagram between the screw case, first motor and first straight line guide rail of the utility model;
Fig. 6 is the schematic diagram of internal structure of the screw case of the utility model;
Fig. 7 is the structural schematic diagram of the translation unit of the utility model;
Fig. 8 is the compression bar of the utility model, the second cylinder and the positional diagram close between switching;
Fig. 9 is one of the structural schematic diagram of the sharpening unit of the utility model;
Figure 10 is the second structural representation of the sharpening unit of the utility model;
Figure 11 is the structural schematic diagram of the height-regulating unit of the utility model;
Figure 12 is one of structural schematic diagram of material of the utility model.
In figure: 10, vibrating disk;11, level support platform;12, unit is turned up;121, adjustable plate;122, adjusting screw rod;123,
Upper adjusting nut;124, lower adjusting nut;20, sloping platform;30, conveying seat;31, conveying channel;32, cover board;40, work sheet
Member;41, screw case;411, lead screw screw rod;412, feed screw nut;413, link block;414, elongated hole;42, first motor;43,
First straight line guide rail;44, sliding panel;45, the second motor;46, wheel guard;50, translation unit;51, pedestal;511, accommodation groove;
52, second straight line guide rail;53, limit plate;54, the first cylinder;55, translation plates;56, material seat;561, material trough;57, compression bar;
571, fixed block;58, the second cylinder;59, close to switch;60, sharpening unit;61, mounting base;62, third linear guide;63,
Laminate;631, sharpening block;64, third cylinder;70, dust suction bucket;80, material;81, the first cylindrical portion;82, the second cylindrical portion;83,
Third cylindrical portion.
Specific embodiment
The following describes the utility model in further detail with reference to the accompanying drawings, to enable those skilled in the art referring to explanation
Book text can be implemented accordingly.
As shown in Figures 1 to 12, the utility model provides a kind of self-feeding processing unit (plant), comprising: level support platform
11;Vibrating disk 10 in the level support platform 11 is set, material 80 to be ground is placed in the vibrating disk 10;Setting
Sloping platform 20 in 11 side of level support platform, the top work surface of the sloping platform 20 are a straight plane of inclination;
The conveying seat 30 being fastened on the working face of the sloping platform 20;It is fastened on the working face of the sloping platform 20 and is located at
The processing unit 40 of 30 side of conveying seat, the processing unit 40 include a grinding wheel, one drive the of grinding wheel rotation
Two motors 45, one are fastened with the straight line that the sliding panel 44, one of second motor 45 drives the sliding panel 44 to do vertical direction
The straight spur unit of reciprocating motion;It is fastened on the working face of the sloping platform 20 and is used for 30 discharge end of conveying seat
The material 80 of mouth is moved to the translation unit 50 immediately below the grinding wheel;As shown in figure 12, the material 80 includes one first circle
The second cylindrical portion 82 and one that column portion 81, one is fixed on 81 bottom face of the first cylindrical portion are fixed at described
Third cylindrical portion 83 on second cylindrical portion, 82 bottom face, first cylindrical portion 81, second cylindrical portion 82 and described
The diameter value of the coaxial arrangement of three cylindrical portions 83 and second cylindrical portion 82 is greater than first cylindrical portion 81 and third circle
The diameter value in column portion 83.
It further include a height-regulating unit 12 as shown in figure 11 as an embodiment of this programme, the height-regulating unit 12 includes
One is fastened with the vibrating disk 10 and horizontally disposed adjustable plate 121, the workbench for being fixed at the level support platform 11
Four adjusting screw rods 122 on face, wherein the adjusting screw rod 122 is vertically arranged in the workbench of the level support platform 11
Adjusting nut 123 and once adjusting nut 124, the adjustable plate are bolted on one on face, and on each adjusting screw rod 122
121 four edges form the threaded hole matched with the adjusting screw rod 122, and the upper adjusting nut 123 is located at institute
The top of adjustable plate 121 is stated, the lower adjusting nut 124 is located at the lower section of the adjustable plate 121, and the adjustable plate 121 passes through
The upper adjusting nut 123 and the lower adjusting nut 124 are arranged on the adjusting screw rod 122.
As an embodiment of this programme, slided as shown in figure 4, forming one on the conveying seat 30 for the material 80
Conveying channel 31, the top of the conveying seat 30 be fastened with avoid extraneous dust granule enter the conveying channel 31 cover board
32。
As an embodiment of this programme, as shown in figure 4, the longitudinal cross-section in the conveying channel 31 is inverted " convex " in one
Font.
As an embodiment of this programme, as shown in Figure 2, Figure 5 and Figure 6, the straight spur unit of the processing unit 40
The screw case 41, one being fastened on the working face of the sloping platform 20 including one is fastened on the first of 41 top of screw case
Motor 42, the first straight line guide rail 43 for being provided with the first sliding block and being fastened on 41 lateral wall of screw case, wherein the cunning
Movable plate 44 is fastened on first sliding block, and the screw case 41 is built-in with one and the output axis connection of the first motor 42
Lead screw screw rod 411 is bolted with a feed screw nut 412 on the lead screw screw rod 411, and the feed screw nut 412 tightens fixed be equipped with
One link block 413, the one end of the link block 413 and the feed screw nut 412 be connected, the other end and the sliding panel 44
It is connected, the screw case 41, which is provided on the side wall of the first straight line guide rail 43, forms an elongated hole 414 being vertically distributed.
As an embodiment of this programme, as shown in Fig. 2, being covered with a wheel guard 46 on the grinding wheel.
As an embodiment of this programme, as shown in Figure 7 and Figure 8, the translation unit 50 includes one being fastened on and described inclining
On the working face of sloping platform 20 and be located at the conveying seat 30 discharge end pedestal 51, be provided with the second sliding block and be fastened on
The second straight line guide rail 52, one at 51 top of pedestal is arranged on the second straight line guide rail 52 by second sliding block
Translation plates 55, one be fastened on 55 top end face of translation plates and form material trough 561 material seat 56, one be fastened on it is described
The first cylinder 54 that piston rod and the translation plates 55 are connected, run through on pedestal 51 and vertically the translation plates 55 and the material
Seat 56 and a pair of the pressure for being used to be pressed on the material 80 in the material trough 561 positioned at the opposite two sides of the material trough 561
Bar 57, to be fastened on the bottom face of the translation plates 55 be the second of the straight reciprocating motion that the compression bar 57 provides vertical direction
Cylinder 58, one be arranged in 561 slot bottom of material trough be fastened on the pedestal 51 close to switch 59, one and it is defeated described in face
The discharge end of material seat 30 makes the limit being trapped in the material trough 561 from the material 80 that the discharge end skids off
Plate 53, wherein one is formed on the pedestal 51 for accommodating the accommodation groove 511 of second cylinder 58, the translation plates 55
Translation direction and the material 80 in the conveying seat 30 glide direction it is perpendicular, the piston rod of second cylinder 58
It is connect by fixed block 571 with the compression bar 57.
It further include a sharpening unit 60, the sharpening unit as shown in Figure 9 and Figure 10 as an embodiment of this programme
60 include one be fastened on the working face of the sloping platform 20 mounting base 61, be provided with the third linear guide of third sliding block
62, a laminate 63, one being fastened in the third linear guide 62 is fastened on 63 top end face of laminate for being ground institute
The sharpening block 631 and one for stating grinding wheel are fastened on the third cylinder that in the mounting base 61 and piston rod and the laminate 63 are connected
64, wherein the third sliding block is fastened on the top of the mounting base 61.
As an embodiment of this programme, as shown in figure 3, further including a dust suction bucket 70, the dust suction bucket 70 is fastened on institute
The side of the grinding wheel is stated on the working face of sloping platform 20 and is located at, the dust suction bucket 70 is also connected with external air source, and (figure is not
Show).
As an embodiment of this programme, the tilt angle of the working face of the sloping platform 20 is 18 ° ~ 38 °.
Although the embodiments of the present invention have been disclosed as above, it is not limited in institute in specification and embodiments
Column use, it can be applied to various fields suitable for the present invention completely, for those skilled in the art, can
Easily realize other modification, therefore without departing from the general concept defined in the claims and the equivalent scope, this is practical
It is novel to be not limited to specific details and legend shown and described herein.
Claims (10)
1. a kind of self-feeding processing unit (plant) characterized by comprising
Level support platform (11);
The vibrating disk (10) being arranged on the level support platform (11), the vibrating disk (10) is interior to be placed with material to be ground
(80);
Sloping platform (20) in the level support platform (11) side is set, and the top work surface of the sloping platform (20) is
The one straight plane of inclination;
The conveying seat (30) being fastened on the working face of the sloping platform (20);
It is fastened on the working face of the sloping platform (20) and is located at the processing unit (40) of conveying seat (30) side, institute
Processing unit (40) is stated to include a grinding wheel, one the second motor (45) of grinding wheel rotation, one is driven to be fastened with second electricity
The sliding panel (44) of machine (45), one drive the sliding panel (44) do vertical direction straight reciprocating motion linear drives list
Member;
It is fastened on the working face of the sloping platform (20) for the material (80) of conveying seat (30) discharge end is flat
Move to the translation unit (50) immediately below the grinding wheel;
Wherein, the material (80) is fixed at the first cylindrical portion (81) bottom end including one first cylindrical portion (81), one
The second cylindrical portion (82) and one on face are fixed at the third cylindrical portion on the second cylindrical portion (82) bottom face
(83), first cylindrical portion (81), second cylindrical portion (82) and the third cylindrical portion (83) coaxial arrangement and it is described
The diameter value of second cylindrical portion (82) is greater than the diameter value of first cylindrical portion (81) and the third cylindrical portion (83).
2. self-feeding processing unit (plant) as described in claim 1, which is characterized in that it further include a height-regulating unit (12), it is described
Be turned up unit (12) include one be fastened with the vibrating disk (10) and horizontally disposed adjustable plate (121), be fixed at it is described
Four adjusting screw rods (122) on the work top of level support platform (11), wherein the adjusting screw rod (122) is vertically arranged
Adjusting nut on one is bolted on the work top of the level support platform (11), and on each adjusting screw rod (122)
(123) and once adjusting nut (124), four edges of the adjustable plate (121) form and the adjusting screw rod (122)
The threaded hole matched, the upper adjusting nut (123) are located at the top of the adjustable plate (121), the lower adjusting nut
(124) be located at the adjustable plate (121) lower section, the adjustable plate (121) by the upper adjusting nut (123) and it is described under
Adjusting nut (124) is arranged on the adjusting screw rod (122).
3. self-feeding processing unit (plant) as described in claim 1, which is characterized in that form a confession on the conveying seat (30)
The conveying channel (31) of the material (80) sliding is fastened at the top of the conveying seat (30) and extraneous dust granule is avoided to enter
The cover board (32) of the conveying channel (31).
4. self-feeding processing unit (plant) as claimed in claim 3, which is characterized in that the longitudinal cross-section of the conveying channel (31)
In inverted " convex " font.
5. self-feeding processing unit (plant) as described in claim 1, which is characterized in that the linear drives of processing unit (40)
Unit include one be fastened on the working face of the sloping platform (20) screw case (41), one be fastened on the screw case (41)
The first motor (42) at top, the first straight line guide rail for being provided with the first sliding block and being fastened on the screw case (41) lateral wall
(43), wherein the sliding panel (44) is fastened on first sliding block, and the screw case (41) is built-in with one and described first
The lead screw screw rod (411) of the output axis connection of motor (42) is bolted with a feed screw nut (412) on the lead screw screw rod (411),
Feed screw nut (412) make-up is fixed to be equipped with a link block (413), the one end and the lead screw of the link block (413)
Nut (412) is connected, the other end and the sliding panel (44) are connected, and the screw case (41) is provided with the first straight line and leads
An elongated hole (414) being vertically distributed is formed on the side wall of rail (43).
6. self-feeding processing unit (plant) as described in claim 1, which is characterized in that be covered with a wheel guard on the grinding wheel
(46).
7. self-feeding processing unit (plant) as described in claim 1, which is characterized in that the translation unit (50) includes a fastening
On the working face of the sloping platform (20) and be located at the conveying seat (30) discharge end pedestal (51), be provided with the
Two sliding blocks and the second straight line guide rail (52) being fastened at the top of the pedestal (51), one are arranged by second sliding block described
Translation plates (55) on second straight line guide rail (52), one are fastened on the translation plates (55) top end face and form material trough
(561) material seat (56), one are fastened on the first gas that on the pedestal (51) and piston rod and the translation plates (55) are connected
Cylinder (54), through the translation plates (55) and the material seat (56) and positioned at the material trough (561), two sides are used in opposite directions vertically
In a pair of of compression bar (57) that the material (80) is pressed in the material trough (561), it is fastened on the translation plates (55)
Be on bottom face the compression bar (57) provide vertical direction straight reciprocating motion the second cylinder (58), one be arranged in the object
Hopper (561) slot bottom be fastened on the pedestal (51) close to switch (59), one and the discharging of conveying seat (30) described in face
Port makes the limit plate (53) being trapped in the material trough (561) from the material (80) that the discharge end skids off,
Wherein, one is formed on the pedestal (51) for accommodating the accommodation groove (511) of second cylinder (58), the translation plates
(55) glide direction of translation direction and the material (80) in the conveying seat (30) is perpendicular, second cylinder
(58) piston rod is connect by fixed block (571) with the compression bar (57).
8. self-feeding processing unit (plant) as described in claim 1, which is characterized in that it further include a sharpening unit (60), it is described
Sharpening unit (60) include one be fastened on the working face of the sloping platform (20) mounting base (61), be provided with third sliding block
Third linear guide (62), one be fastened on the third linear guide (62) laminate (63), one be fastened on the laminate
(63) the sharpening block (631) and one on top end face for being ground the grinding wheel are fastened on the mounting base (61) and piston rod
The third cylinder (64) being connected with the laminate (63), wherein the third sliding block is fastened on the top of the mounting base (61).
9. self-feeding processing unit (plant) as described in claim 1, which is characterized in that further include a dust suction bucket (70), the suction
Dirt bucket (70) is fastened on the side on the working face of the sloping platform (20) and being located at the grinding wheel, and the dust suction bucket (70) is also
It is connected with external air source.
10. self-feeding processing unit (plant) as described in claim 1, which is characterized in that the working face of the sloping platform (20)
Tilt angle be 18 ° ~ 38 °.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201821670336.9U CN208929980U (en) | 2018-10-15 | 2018-10-15 | A kind of self-feeding processing unit (plant) |
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Application Number | Priority Date | Filing Date | Title |
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CN201821670336.9U CN208929980U (en) | 2018-10-15 | 2018-10-15 | A kind of self-feeding processing unit (plant) |
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Publication Number | Publication Date |
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CN208929980U true CN208929980U (en) | 2019-06-04 |
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ID=66724529
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CN201821670336.9U Expired - Fee Related CN208929980U (en) | 2018-10-15 | 2018-10-15 | A kind of self-feeding processing unit (plant) |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110695845A (en) * | 2019-10-25 | 2020-01-17 | 江苏晶杰光电科技有限公司 | Sapphire wafer processing carrier |
-
2018
- 2018-10-15 CN CN201821670336.9U patent/CN208929980U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110695845A (en) * | 2019-10-25 | 2020-01-17 | 江苏晶杰光电科技有限公司 | Sapphire wafer processing carrier |
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CF01 | Termination of patent right due to non-payment of annual fee | ||
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Granted publication date: 20190604 Termination date: 20211015 |