CN214778608U - Automatic receiving and conveying device for straight ejector rod - Google Patents

Automatic receiving and conveying device for straight ejector rod Download PDF

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Publication number
CN214778608U
CN214778608U CN202120424893.8U CN202120424893U CN214778608U CN 214778608 U CN214778608 U CN 214778608U CN 202120424893 U CN202120424893 U CN 202120424893U CN 214778608 U CN214778608 U CN 214778608U
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China
Prior art keywords
plate
front plate
feeding
conveying device
roller
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CN202120424893.8U
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Chinese (zh)
Inventor
贾东霞
宁甲明
孙汉新
王克
金波
刘忠哲
任洪亮
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Dalian Dongfei Special Steel Products Co ltd
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Dalian Dongfei Special Steel Products Co ltd
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Abstract

The utility model discloses a straight ejector rod automatic receiving and conveying device, which comprises a supporting frame, wherein the supporting frame is a rectangular frame structure enclosed by a rear plate, a front plate and two side plates; a driving roller and a driven roller are respectively arranged on two sides of the inner parts of the rear plate and the front plate, the driving roller is connected with the driven roller through a conveying belt, one side shaft end of the driving roller is connected with a driven gear, the driven gear is connected with a driving gear through a chain, and the driving gear is connected with a motor; two feeding straight baffle plates and one feeding inclined baffle plate are arranged at the top of the back plate and the front plate. The utility model discloses realize automated production, use manpower sparingly, improve production efficiency, reduce the incident incidence, conveniently process the transportation and accomodate of product.

Description

Automatic receiving and conveying device for straight ejector rod
Technical Field
The utility model relates to a transportation conveying technical field of the automatic processing production product of numerical control lathe especially relates to a straight ejector pin is automatic to be connect and gets conveyer.
Background
With the development of times and continuous progress of science and technology, automatic production becomes a trend, and compared with manual production, the automatic production greatly improves the production efficiency, reduces the product reject ratio, reduces the industrial accidents of field operators, and solves a plurality of technical problems which can not be realized by the traditional process.
At present my straight ejector pin processing of department is that the automatic clamping is got through robotic arm clamp and is accomplished numerical control lathe processing, has improved production efficiency greatly, and what come then is that the manual work can't satisfy after numerical control lathe processing is accomplished and unload the speed of receiving after pressing from both sides, and the manual work is in addition with the hand this kind of mode of receiving there is following defect:
1. the manual speed cannot keep up with the mechanical speed, the production efficiency is not high, and the labor cost is increased.
2. The danger of manual operation is high, and workers are easy to influence distraction due to fatigue or other factors during field operation to cause safety accidents, so that irretrievable loss is caused.
SUMMERY OF THE UTILITY MODEL
The utility model discloses a solve the manipulator and unload and connect speed and promptness after pressing from both sides, reduce the problem of labour cost expenditure, provide a high efficiency, low cost of labor, safe straight ejector pin is automatic to connect and gets conveyer.
In order to solve the technical problem, the technical scheme of the utility model is that: a straight ejector rod automatic receiving and conveying device comprises a supporting frame, wherein the supporting frame is a rectangular frame structure enclosed by a rear plate, a front plate and two side plates; a driving roller and a driven roller are respectively arranged on two sides of the inner parts of the rear plate and the front plate, the driving roller is connected with the driven roller through a conveying belt, one side shaft end of the driving roller is connected with a driven gear, the driven gear is connected with a driving gear through a chain, and the driving gear is connected with a motor; two feeding straight baffle plates and one feeding inclined baffle plate are arranged at the top of the back plate and the front plate.
Furthermore, a driving roller and a driven roller are respectively arranged on two sides of the inner parts of the rear plate and the front plate through bearing seats.
Furthermore, the outer sides of the driving gear and the driven gear are provided with outer covers.
Further, the driving gear is located above the driven gear.
Furthermore, two straight feeding baffle plates are arranged on the top of the back plate and the top of the front plate in parallel, one end of the inclined feeding baffle plate is connected with the end part of the straight feeding baffle plate positioned on the back plate, and the other end of the inclined feeding baffle plate is connected with the top of the front plate.
The utility model discloses realize automated production, use manpower sparingly, improve production efficiency, reduce the incident incidence, conveniently process the transportation and accomodate of product.
Drawings
FIG. 1 is a front view of the present invention;
fig. 2 is a top view of the present invention;
fig. 3 is a left side view of the present invention;
fig. 4 is a sectional view a-a of fig. 1.
Wherein: 1. a motor; 2. a housing; 3. a driving gear; 4. a driven gear; 5. a drive roll; 6. a conveyor belt; 7. a driven roller; 8. a back plate; 9. a front plate; 10. a feeding straight baffle; 11. a feeding inclined baffle plate; 12. side plates.
Detailed Description
The following description of the present invention will be made with reference to the accompanying drawings 1-4.
An automatic straight ejector rod receiving and conveying device comprises a supporting frame, wherein the supporting frame is a rectangular frame structure which is formed by enclosing a rear plate 8, a front plate 9 and two side plates 12; a driving roller 5 and a driven roller 7 are respectively arranged on two sides of the inner parts of the rear plate 8 and the front plate 9, the driving roller 5 is connected with the driven roller 7 through a conveying belt 6, one side shaft end of the driving roller 5 is connected with a driven gear 4, the driven gear 4 is connected with a driving gear 3 through a chain, and the driving gear 3 is connected with a motor 1; two feeding straight baffle plates 10 and a feeding inclined baffle plate 11 are arranged at the top parts of the back plate 8 and the front plate 9.
The driving roller 5 and the driven roller 7 are respectively arranged on two inner sides of the back plate 8 and the front plate 9 through bearing seats.
The driving gear 3 and the driven gear 4 are provided with a housing 2 on the outer side.
The drive gear 3 is located above the driven gear 4.
Two feeding straight baffle plates 10 are arranged on the tops of the rear plate 8 and the front plate 9 in parallel, one end of a feeding inclined baffle plate 11 is connected with the end part of the feeding straight baffle plate 10 positioned on the rear plate 8, and the other end of the feeding inclined baffle plate 11 is connected with the top of the front plate 9.
The motor 1 rotates and drives the driving gear 3, the driving gear 3 drives the driven gear 4, the driven gear 4 drives the driving roller 5 to rotate, the driving roller 5 drives the conveyor belt 6 to do circular motion, the conveyor belt 6 drives the driven roller 7 to do motion again, the manipulator takes out a product from the numerical control lathe and then puts the product on the conveyor belt 6, the product moves along with the conveyor belt, the feeding straight baffle plate 10 serves as a baffle to prevent parts from falling on two sides, and the feeding inclined baffle plate 11 enables the product to fall to a specified material receiving box position. The transmission speed is controlled by the rotating speed of the motor 1 and can be adjusted according to the actual production requirement.
The above description is only the specific implementation manner of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art can substitute or change the technical solution of the present invention and the design of the present invention within the technical scope of the present invention.

Claims (5)

1. The automatic receiving and conveying device for the straight ejector rods is characterized by comprising a supporting frame, wherein the supporting frame is a rectangular frame structure surrounded by a rear plate (8), a front plate (9) and two side plates (12); a driving roller (5) and a driven roller (7) are respectively installed on two sides of the interior of the rear plate (8) and the interior of the front plate (9), the driving roller (5) is connected with the driven roller (7) through a conveying belt (6), one side shaft end of the driving roller (5) is connected with a driven gear (4), the driven gear (4) is connected with a driving gear (3) through a chain, and the driving gear (3) is connected with a motor (1); two feeding straight baffle plates (10) and a feeding inclined baffle plate (11) are arranged at the top parts of the rear plate (8) and the front plate (9).
2. The automatic straight ejector rod receiving and conveying device as claimed in claim 1, wherein a driving roller (5) and a driven roller (7) are respectively mounted on two inner sides of the rear plate (8) and the front plate (9) through bearing seats.
3. The automatic straight ejection rod receiving and conveying device as claimed in claim 1, wherein the driving gear (3) and the driven gear (4) are provided with a housing (2) at the outer side.
4. The automatic straight ejector pin receiving and conveying device as claimed in claim 1, wherein the driving gear (3) is located above the driven gear (4).
5. The automatic straight ejector rod receiving and conveying device as claimed in claim 1, wherein the two feeding straight baffle plates (10) are arranged on the tops of the rear plate (8) and the front plate (9) in parallel, one end of the feeding inclined baffle plate (11) is connected with the end part of the feeding straight baffle plate (10) on the rear plate (8), and the other end of the feeding inclined baffle plate (11) is connected with the top part of the front plate (9).
CN202120424893.8U 2021-02-26 2021-02-26 Automatic receiving and conveying device for straight ejector rod Active CN214778608U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120424893.8U CN214778608U (en) 2021-02-26 2021-02-26 Automatic receiving and conveying device for straight ejector rod

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120424893.8U CN214778608U (en) 2021-02-26 2021-02-26 Automatic receiving and conveying device for straight ejector rod

Publications (1)

Publication Number Publication Date
CN214778608U true CN214778608U (en) 2021-11-19

Family

ID=78754669

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120424893.8U Active CN214778608U (en) 2021-02-26 2021-02-26 Automatic receiving and conveying device for straight ejector rod

Country Status (1)

Country Link
CN (1) CN214778608U (en)

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