CN211003106U - Automatic feeding device - Google Patents

Automatic feeding device Download PDF

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Publication number
CN211003106U
CN211003106U CN201921985752.2U CN201921985752U CN211003106U CN 211003106 U CN211003106 U CN 211003106U CN 201921985752 U CN201921985752 U CN 201921985752U CN 211003106 U CN211003106 U CN 211003106U
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China
Prior art keywords
strip
shaped
pair
wall surface
bearings
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CN201921985752.2U
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Chinese (zh)
Inventor
蒋志勇
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Yangzhou Yangzi Metal Shock Absorption Accessoriesco Ltd
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Yangzhou Yangzi Metal Shock Absorption Accessoriesco Ltd
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Priority to CN201921985752.2U priority Critical patent/CN211003106U/en
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Abstract

The utility model discloses an automatic feeding device, which comprises a bar-shaped underframe, wherein a material conveying structure is arranged on the bar-shaped underframe, and an auxiliary pushing structure is arranged on the lower wall surface of the bar-shaped underframe and is close to the right end; the material conveying structure comprises: the device comprises a servo motor, a conveyor belt, a first bearing and a pair of second bearings; a pair of strip-shaped brackets is arranged on the upper wall surface of the strip-shaped bottom frame. The utility model discloses when the part transportation pay-off, through transporting the material structure, be convenient for carry out reasonable pay-off to the part, reduce artifical manually operation, use manpower sparingly to improve part pay-off efficiency, the part of being convenient for through supplementary propelling movement structure can not pile up when the pay-off, can thoroughly transport the equipment of processing part on.

Description

Automatic feeding device
Technical Field
The utility model relates to an automatic feeding technical field specifically is an automatic feeding device.
Background
When the part is machined, the operation procedures are complex, so the part is required to be transported to machining equipment when the part is machined, a large amount of manpower is required due to frequent manual operation during traditional transportation operation, and when the part is transported to the equipment, if the part machining equipment has certain danger, the part is transported by manual operation, so that the part machining equipment has certain danger, and the part machining equipment works for a long time manually, so that certain fatigue is caused, the working efficiency is reduced, and the part machining production is hindered.
SUMMERY OF THE UTILITY MODEL
The utility model provides a not enough to prior art, the utility model provides an automatic feeding has solved current man-hour at the part, and operating procedure is loaded down with trivial details, so need add man-hour at the part, on transporting the processing equipment with the part, during traditional transportation operation, often manual operation leads to needing a large amount of manpowers.
In order to achieve the above purpose, the utility model discloses a following technical scheme realizes: the material conveying device comprises a strip-shaped underframe, wherein a material conveying structure is arranged on the strip-shaped underframe, and an auxiliary pushing structure is arranged on the lower wall surface of the strip-shaped underframe and close to the right end of the strip-shaped underframe;
the material conveying structure comprises: the device comprises a servo motor, a conveyor belt, a first bearing and a pair of second bearings;
a pair of strip-shaped brackets are arranged on the upper wall surface of the strip-shaped chassis, a pair of first circular grooves are formed in the pair of strip-shaped brackets close to the left end, the servo motor is arranged in one of the first circular grooves, a first roller shaft is arranged on the driving end of the servo motor, the first bearing is arranged in a second circular groove, one end of the first roller shaft is inserted into the first bearing, a pair of second circular grooves are formed in the inner wall surfaces of the pair of strip-shaped brackets close to the right end, a pair of second bearings are arranged in the pair of second circular grooves, a second roller shaft is jointly inserted between the pair of second bearings, the conveyor belt is sleeved on the first roller shaft and the second roller shaft, a plurality of strip-shaped plates are arranged on the conveyor belt, arc-shaped grooves are formed in the strip-shaped plates, and support blocks are arranged on the upper wall surfaces of the pair of strip-, a pair of third circular grooves is formed in the side wall surface of the supporting block, third bearings are inserted into the third circular grooves, and third roller shafts are inserted into the third bearings together.
Preferably, the auxiliary pushing structure includes: the long-strip brush, the strip support plate and the pair of fourth bearings;
the lower wall surface of the strip-shaped underframe and the position close to the right end are provided with a pair of strip-shaped support plates with corresponding positions, the pair of fourth bearings are respectively inserted on the pair of strip-shaped support plates and have corresponding positions, a support column is arranged between the pair of fourth bearings, the strip-shaped hairbrush is arranged on the support column, and the strip-shaped hairbrush is contacted with the strip-shaped support plates.
Preferably, the four corners of the lower wall surface of the strip-shaped underframe are provided with stand columns, and the lower wall surface of each stand column is provided with a base plate.
Preferably, a folding bracket is arranged on the left side wall surface of the strip-shaped underframe, and a cover-free box body is arranged on the folding bracket.
Preferably, both ends all are equipped with annular packing ring about the pillar, every all seted up a plurality of screw mouths on the annular packing ring, every the thread groove corresponding with the screw mouth position is all seted up to bar extension board lateral wall face, every screw mouth all the cartridge has the screw corresponding with the thread groove position in.
Preferably, a fixing frame is arranged on the servo motor.
Has the advantages that: the utility model provides an automatic feeding device. The method has the following beneficial effects: the problem of the part processing transportation of mentioning in the background art is add to effectual having solved, when the part transportation pay-off, through transporting material structure, be convenient for carry out reasonable pay-off to the part, reduce artifical manually operation, use manpower sparingly to improve part pay-off efficiency, be convenient for the part through supplementary propelling movement structure can not pile up when the pay-off, can thoroughly transport to the equipment of processing part.
Drawings
Fig. 1 is a schematic structural view of an automatic feeding device of the present invention.
Fig. 2 is a left side view of the conveyor belt of the automatic feeding device of the present invention.
Fig. 3 is a right side view of the conveyor belt of the automatic feeding device of the present invention.
In the figure: 1-a strip-shaped chassis; 2-a servo motor; 3-a conveyor belt; 4-a first bearing; 5-a second bearing; 6-a strip-shaped bracket; 7-a first roller shaft; 8-a second roll shaft; 9-a strip-shaped plate; 10-a third bearing; 11-a third roll shaft; 12-a strip brush; 13-strip-shaped support plates; 14-a fourth bearing; 15-a pillar; 16-a column; 17-fold type stent; 18-uncovered boxes; 19-a ring gasket; 20-screws; 21-fixing frame.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-3, the present invention provides a technical solution: an automatic feeding device comprises a strip-shaped bottom frame 1, wherein a material conveying structure is arranged on the strip-shaped bottom frame 1, and an auxiliary pushing structure is arranged on the lower wall surface of the strip-shaped bottom frame 1 and close to the right end;
the material conveying structure comprises: a servo motor 2, a conveyor belt 3, a first bearing 4 and a pair of second bearings 5;
a pair of strip-shaped supports 6 are arranged on the upper wall surface of a strip-shaped underframe 1, a pair of first circular grooves are arranged in the strip-shaped supports 6 close to the left end, a servo motor 2 is arranged in one of the first circular grooves, a first roller shaft 7 is arranged on the driving end of the servo motor 2, a first bearing 4 is arranged in a second circular groove, one end of the first roller shaft 7 is inserted into the first bearing 4, a pair of second circular grooves are arranged on the inner side wall surfaces of the pair of strip-shaped supports 6 close to the right end, a pair of second bearings 5 are arranged in the pair of second circular grooves, a second roller shaft 8 is jointly inserted between the pair of second bearings 5, a conveyor belt 3 is sleeved on the first roller shaft 7 and the second roller shaft 8, a plurality of strip-shaped plates 9 are arranged on the conveyor belt 3, arc-shaped grooves are arranged on the strip-shaped plates 9, and a support block is, a pair of third circular grooves is formed in the side wall surface of the supporting block, third bearings 10 are inserted into the third circular grooves, and third roller shafts 11 are inserted into the third bearings 10.
It should be noted that: bar chassis 1 plays the supporting role, a pair of bar support 6 is used for supporting, the first roller 7 that 2 connections of servo motor on the bar support 6 inserts inside first bearing 4, and inside second roller 8 inserts second bearing 5, 3 suits of conveyer belt are on first roller 7 and second roller 8, so when 2 drive ends of servo motor rotate, drive first roller 7 and rotate, thereby 3 pulling second roller 8 of conveyer belt remove, so when the arc recess on strip board 9 is placed to the material inside, can realize the transportation effect, third roller 11 supports through third bearing 10, be located and put on strip board 9, place on the part is placed to the arc recess on strip board 9, contact with third roller 11, be convenient for when the part is put more, put the unstability, through third roller 11 contact, let the part can put on the upper end and level.
The auxiliary pushing structure comprises: a long hairbrush 12, a strip support plate 13 and a pair of fourth bearings 14;
a pair of strip support plates 13 corresponding to each other in position are arranged on the lower wall surface of the strip underframe 1 and close to the right end, a pair of fourth bearings 14 are respectively inserted into the pair of strip support plates 13 and are located correspondingly, a support column 15 is arranged between the pair of fourth bearings 14, a strip brush 12 is arranged on the support column 15, and the strip brush 12 is in contact with the strip plate 9.
It should be noted that: settle pillar 15 jointly on the fourth bearing 14 that supports through bar extension board 13 to the contact of the bar brush and the bar board 9 of support, when being convenient for rotate the below at conveyer belt 3, the part drops, scrapes the part through rectangular brush 12, and the part of being convenient for drops, reduces to pile up inside the arc recess, and fourth bearing 14 can rotate, thereby adjusts rectangular brush 12 service position.
As a preferred technical scheme, furthermore, upright columns 16 are arranged at four corners of the lower wall surface of the strip-shaped underframe 1, and a base plate is arranged on the lower wall surface of each upright column 16; and is used to support the device by means of the upright 16.
As a preferred technical scheme, furthermore, a folding bracket 17 is arranged on the left side wall surface of the strip-shaped underframe 1, and a cover-free box body 18 is arranged on the folding bracket 17; the uncovered box 18 is convenient for temporarily placing the parts to be transported, and people can place the parts in the arc-shaped groove conveniently.
As a preferable technical scheme, furthermore, annular washers 19 are respectively sleeved at the left end and the right end of the strut 15, each annular washer 19 is provided with a plurality of threaded openings, the side wall surface of each strip-shaped support plate 13 is provided with a threaded groove corresponding to the position of the threaded opening, and a screw 20 corresponding to the position of the threaded groove is inserted in each threaded opening; it is convenient to fix the position of the stay 15 by screwing the screw 20 after the fourth bearing 14 is rotated to adjust the position of the strip brush 12, thereby fixing the strip brush 12.
As a preferred technical solution, further, a fixing frame 21 is arranged on the servo motor 2; the fixing frame 21 functions as the servo motor 2.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation. The use of the phrase "comprising one of the elements does not exclude the presence of other like elements in the process, method, article, or apparatus that comprises the element.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. An automatic feeding device comprises a strip-shaped bottom frame (1), and is characterized in that a material conveying structure is arranged on the strip-shaped bottom frame (1), and an auxiliary pushing structure is arranged on the lower wall surface of the strip-shaped bottom frame (1) and close to the right end of the strip-shaped bottom frame;
the material conveying structure comprises: the device comprises a servo motor (2), a conveyor belt (3), a first bearing (4) and a pair of second bearings (5);
a pair of strip-shaped supports (6) is arranged on the upper wall surface of the strip-shaped chassis (1), a pair of first circular grooves are formed in the pair of strip-shaped supports (6) close to the left end, the servo motor (2) is arranged in one of the first circular grooves, a first roller shaft (7) is arranged at the driving end of the servo motor (2), the first bearing (4) is arranged in a second circular groove, one end of the first roller shaft (7) is inserted into the first bearing (4), a pair of second circular grooves are formed in the inner side wall surfaces of the pair of strip-shaped supports (6) close to the right end, the pair of second bearings (5) is arranged in the pair of second circular grooves, a second roller shaft (8) is jointly inserted between the pair of second bearings (5), the conveyor belt (3) is sleeved on the first roller shaft (7) and the second roller shaft (8), and a plurality of strip-shaped plates (9) are arranged on the conveyor belt (3), the novel roller bearing is characterized in that an arc-shaped groove is formed in the strip-shaped plate (9), a pair of strip-shaped supports (6) are arranged on the upper wall surface, close to the left end and located above the strip-shaped plate (9), a support block is installed on the upper wall surface of each support block, a pair of third circular grooves are formed in the side wall surfaces of the support blocks, a pair of third bearings (10) are arranged in the third circular grooves in an inserted mode, and a third roller shaft (11) is arranged on the pair of third bearings (10) in an inserted mode.
2. The automatic feeding device according to claim 1, wherein the auxiliary pushing structure comprises: a long hairbrush (12), a strip support plate (13) and a pair of fourth bearings (14);
the lower wall surface of the strip-shaped underframe (1) and the position close to the right end are provided with a pair of strip-shaped support plates (13) with corresponding positions, the pair of fourth bearings (14) are respectively inserted on the pair of strip-shaped support plates (13) and have corresponding positions, a support column (15) is arranged between the pair of fourth bearings (14), the strip-shaped brush (12) is arranged on the support column (15), and the strip-shaped brush (12) is contacted with the strip-shaped plate (9).
3. The automatic feeding device according to claim 1, wherein the strip-shaped chassis (1) is provided with upright posts (16) at four corners of a lower wall surface, and a base plate is arranged on the lower wall surface of each upright post (16).
4. The automatic feeding device according to claim 1, wherein a folding bracket (17) is arranged on the left side wall surface of the strip-shaped chassis (1), and a cover-free box body (18) is arranged on the folding bracket (17).
5. The automatic feeding device according to claim 2, wherein the left end and the right end of the supporting column (15) are sleeved with annular washers (19), each annular washer (19) is provided with a plurality of threaded openings, the side wall surface of each strip-shaped supporting plate (13) is provided with threaded grooves corresponding to the threaded openings, and each threaded opening is internally provided with a screw (20) corresponding to the threaded groove.
6. The automatic feeding device according to claim 1, characterized in that a fixed frame (21) is mounted on the servo motor (2).
CN201921985752.2U 2019-11-15 2019-11-15 Automatic feeding device Active CN211003106U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921985752.2U CN211003106U (en) 2019-11-15 2019-11-15 Automatic feeding device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921985752.2U CN211003106U (en) 2019-11-15 2019-11-15 Automatic feeding device

Publications (1)

Publication Number Publication Date
CN211003106U true CN211003106U (en) 2020-07-14

Family

ID=71472240

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921985752.2U Active CN211003106U (en) 2019-11-15 2019-11-15 Automatic feeding device

Country Status (1)

Country Link
CN (1) CN211003106U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112959827A (en) * 2021-02-03 2021-06-15 安徽明洋电子有限公司 Code spraying equipment for processing nixie tube
CN114618789A (en) * 2022-02-23 2022-06-14 扬州扬子金属减震配件有限公司 Intelligent multi-station detection equipment capable of being operated remotely and detection method thereof

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112959827A (en) * 2021-02-03 2021-06-15 安徽明洋电子有限公司 Code spraying equipment for processing nixie tube
CN114618789A (en) * 2022-02-23 2022-06-14 扬州扬子金属减震配件有限公司 Intelligent multi-station detection equipment capable of being operated remotely and detection method thereof

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