Automatic material pushing device

文档序号:1454569 发布日期:2020-02-21 浏览:29次 中文

阅读说明:本技术 一种自动推料装置 (Automatic material pushing device ) 是由 叶超 叶易非 潘家琴 于 2018-08-07 设计创作,主要内容包括:本发明公开了一种自动推料装置,包括送料管、顶杆、传力装置、电机,送料管内部设有送料孔,送料管侧面设有细缝,送料管前端设有夹头,所述顶杆包括连接杆、顶料头、导向板,所述顶料头设置在连接杆前端,所述导向板固定在连接杆侧面,所述连接杆设置在送料孔内,所述导向板设置在细缝内,导向板上设有连接孔,所述传力装置包括滑轮、传力柱、钢丝绳一和钢丝绳二,所述滑轮设置在送料管一侧,滑轮通过钢丝绳一连接连接孔,所述传力柱一端与滑轮垂直连接,传力柱另一端通过钢丝绳二与电机连接,本装置可替代人工手工上料,解决了长料无法完全推进的问题,提高了生产效率,顶杆的顶料头可转动,可以精确调整产品尺寸,提高产品品质。(The invention discloses an automatic pushing device, which comprises a feeding pipe, an ejector rod, a force transmission device and a motor, wherein a feeding hole is formed in the feeding pipe, a slit is formed in the side surface of the feeding pipe, a chuck is arranged at the front end of the feeding pipe, the ejector rod comprises a connecting rod, an ejector head and a guide plate, the ejector head is arranged at the front end of the connecting rod, the guide plate is fixed on the side surface of the connecting rod, the connecting rod is arranged in the feeding hole, the guide plate is arranged in the slit, a connecting hole is formed in the guide plate, the force transmission device comprises a pulley, a force transmission column, a first steel wire rope and a second steel wire rope, the pulley is arranged on one side of the feeding pipe, the pulley is connected with the connecting hole through the first steel wire rope, one end of the force transmission column is vertically connected with the pulley, the other end of the force transmission column is connected with, the production efficiency is improved, the ejector head of the ejector rod is rotatable, the size of a product can be accurately adjusted, and the quality of the product is improved.)

1. An automatic blevile of push which characterized in that: the feeding pipe is a hollow slender pipe, a feeding hole is formed in the feeding pipe, a slit is formed in the side face of the feeding pipe, a chuck is arranged at the front end of the feeding pipe, the ejector rod comprises a connecting rod, an ejector head and a guide plate, the ejector head is arranged at the front end of the connecting rod, 1-5 adjusting gaskets are arranged between the ejector head and the connecting rod, the guide plate is fixed to the side face of the connecting rod, the connecting rod is arranged in the feeding hole, the guide plate is arranged in the slit, a connecting hole is formed in the guide plate, the force transmission device comprises a pulley, a force transmission column, a first steel wire rope and a second steel wire rope, the pulley is arranged on one side of the feeding pipe, the pulley is connected with the connecting hole through the first steel wire rope, one end of the force transmission column is vertically connected with the pulley, and the other end of.

2. The automatic material pushing device according to claim 1, wherein: the motor is a servo motor.

3. The automatic material pushing device according to claim 1, wherein: the thickness of the adjusting gasket is 0.2-0.5 mm.

4. The automatic material pushing device according to claim 1, wherein: the first steel wire rope is connected with the connecting hole through a hook.

5. The automatic material pushing device according to claim 4, wherein: the guide plate is provided with 1-4 connecting holes.

6. The automatic material pushing device according to claim 1, wherein: the diameter of the material ejecting head is smaller than that of the feeding hole.

7. The automatic material pushing device according to claim 1, wherein: and the surface of the material ejecting head is provided with a wear-resistant layer.

8. The automatic material pushing device according to claim 1, wherein: and the other end of the force transmission column is provided with a limiting block.

Technical Field

The invention relates to the technical field of metal processing equipment, in particular to an automatic material pushing device.

Background

At present, when round copper is used in the mechanical industry for cutting and then processing small products, the existing feeding system is manually fed by personnel, so that the workload of operators is increased, the batch feeding difficulty of the small products is high, the production efficiency is reduced, and the production cost is improved. Improvement has been made in present part enterprise, the feeder equipment of several kinds of full-automatic drilling machines has been developed, some have increased thrust, some have solved unstable defect, some are the problem of the clamp force of adjusting the chuck, all the mechanization pushes away the material, the production efficiency is improved, the labor intensity is reduced, nevertheless in actual operation, circle copper is advanced by intermittent type, cut into smallclothes product after punching, in order to raise the efficiency, general circle copper length is very long, when using cylinder or hydraulic stem to impel, the stroke of its telescopic link is not enough, need cut circle copper into short rod in advance, the work efficiency is reduced.

Disclosure of Invention

In order to solve the problems, the invention discloses an automatic material pushing device which can replace manual feeding, solve the problem that long materials cannot be completely pushed and improve the production efficiency.

In order to achieve the purpose, the technical scheme of the invention is as follows:

an automatic blevile of push which characterized in that: the feeding pipe is a hollow slender pipe, a feeding hole is formed in the feeding pipe, a slit is formed in the side face of the feeding pipe, a chuck is arranged at the front end of the feeding pipe, the ejector rod comprises a connecting rod, an ejector head and a guide plate, the ejector head is arranged at the front end of the connecting rod, 1-5 adjusting gaskets are arranged between the ejector head and the connecting rod, the guide plate is fixed to the side face of the connecting rod, the connecting rod is arranged in the feeding hole, the guide plate is arranged in the slit, a connecting hole is formed in the guide plate, the force transmission device comprises a pulley, a force transmission column, a first steel wire rope and a second steel wire rope, the pulley is arranged on one side of the feeding pipe, the pulley is connected with the connecting hole through the first steel wire rope, one end of the force transmission column is vertically connected with the pulley, and the other end of.

As an improvement of the present invention, the motor is a servo motor.

As an improvement of the invention, the thickness of the adjusting gasket is 0.2-0.5 mm.

As an improvement of the invention, the first steel wire rope is connected with the connecting hole through a hook.

As an improvement of the invention, 1-4 connecting holes are arranged on the guide plate.

As an improvement of the invention, the diameter of the ejector head is smaller than that of the feeding hole.

As an improvement of the invention, the surface of the ejector head is provided with a wear-resistant layer.

As an improvement of the invention, the other end of the force transmission column is provided with a limiting block.

The invention has the beneficial effects that:

the automatic material pushing device can replace manual feeding, solves the problem that long materials cannot be pushed completely, improves the production efficiency, can rotate the material pushing head of the ejector rod, can accurately adjust the size of a product, and improves the quality of the product.

Drawings

FIG. 1 is a schematic structural diagram of the present invention.

Fig. 2 is a schematic view of a force transfer device according to the invention.

FIG. 3 is a right side view of the delivery tube of the present invention.

List of reference numerals:

1. the device comprises a feeding pipe, 2, an ejector rod, 3, a force transmission device, 4, a motor, 5, a feeding hole, 6, a slit, 7, a chuck, 8, a connecting rod, 9, an ejector head, 10, a guide plate, 11, an adjusting gasket, 12, a connecting hole, 13, a pulley, 14, a force transmission column, 15, a first steel wire rope, 16, a second steel wire rope, 17, a hook, 18, a limiting block, 19 and a long round copper.

Detailed Description

The present invention will be further illustrated with reference to the accompanying drawings and specific embodiments, which are to be understood as merely illustrative of the invention and not as limiting the scope of the invention. It should be noted that the terms "front," "back," "left," "right," "upper" and "lower" used in the following description refer to directions in the drawings, and the terms "inner" and "outer" refer to directions toward and away from, respectively, the geometric center of a particular component.

As shown in the figure, the automatic pushing device comprises a feeding pipe 1, a push rod 2, a force transmission device 3 and a motor 4, wherein the feeding pipe is a hollow slender pipe, a feeding hole 5 is formed in the feeding pipe, a slit 6 is formed in the side face of the feeding pipe, a chuck 7 is arranged at the front end of the feeding pipe, the push rod 2 comprises a connecting rod 8, a material ejecting head 9 and a guide plate 10, the material ejecting head 9 is arranged at the front end of the connecting rod 8, 1-5 adjusting gaskets 11 are arranged between the material ejecting head 9 and the connecting rod 8, the guide plate 10 is fixed on the side face of the connecting rod 8, the connecting rod 8 is arranged in the feeding hole 5, the guide plate 10 is arranged in the slit 6, a connecting hole 12 is formed in the guide plate 10, the force transmission device comprises a pulley 13, a force transmission column 14, a first steel wire rope 15 and a second steel wire rope 16, the pulley 13 is arranged on one side of the feeding, one end of the force transmission column 14 is vertically connected with the pulley 13, and the other end of the force transmission column 14 is connected with the motor through a second steel wire rope 16.

The invention relates to an automatic material pushing device, which is characterized in that long round copper 19 is put into a feeding hole 5 from the right side of a feeding pipe 1 when the automatic material pushing device works, then an ejector rod 2 is also put into the feeding hole 5, an ejector head 9 is attached to the long round copper 19, a guide plate 10 is arranged in a slit 6, the guide plate 10 is connected with a pulley 13 through a steel wire rope 15, the motor 4 is a servo motor, the motor 4 is controlled to rotate in the same direction once every few seconds, and the guide plate 10 is pulled to advance by rotating a certain angle each time to drive the long round copper to move forward for a fixed distance, the automatic material pushing device can replace manual feeding, solves the problem that long materials cannot be completely pushed, reduces the material changing frequency, improves the production efficiency, can rotate and disassemble the ejector head 9 of the ejector rod, accurately adjusts the size of a product by increasing and decreasing the number of adjusting gaskets 11, wherein the thickness of each adjusting gasket 11 is 0.2-0.5mm, and can overcome the size error caused by the abrasion of the, the product quality is improved.

The first steel wire rope 15 is connected with the connecting holes through the hooks 17, the mounting and dismounting are convenient, 1-4 connecting holes 12 are formed in the guide plate 10, the heights of the connecting holes 12 are different, an operator can connect the hooks 17 with different connecting holes 12 according to actual conditions, the first steel wire rope 15 is in a horizontal state, labor is saved, and the service life is long.

The diameter of the material ejecting head 9 is smaller than the diameter of the long round copper 19 and smaller than the diameter of the feeding hole 5, so that the material ejecting rod 2 can move smoothly in the material ejecting head.

The surface of the material ejection head 9 is provided with the wear-resistant layer, so that the deformation is reduced, and the service life is prolonged.

The other end of the force transmission column 14 is provided with a limiting block 18, so that a second steel wire rope 16 can be ensured to normally wind a shaft.

The technical means disclosed in the invention scheme are not limited to the technical means disclosed in the above embodiments, but also include the technical scheme formed by any combination of the above technical features.

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