CN212217897U - Feeding machine - Google Patents
Feeding machine Download PDFInfo
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- CN212217897U CN212217897U CN202020197847.4U CN202020197847U CN212217897U CN 212217897 U CN212217897 U CN 212217897U CN 202020197847 U CN202020197847 U CN 202020197847U CN 212217897 U CN212217897 U CN 212217897U
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- feeding
- feeding pipe
- feeder
- supporting seat
- hole
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Abstract
The utility model discloses a feeder, including set up on the lathe with lathe fixed connection's supporting seat, set up at the feeder upper cover of supporting seat top, set up the support frame above the supporting seat, set up conveying pipe and the air pump of setting in the lathe on the support frame. The feeder can realize continuous feeding, and has the function of material heat dissipation while feeding, thereby reducing production processes and improving production efficiency. The feeding is carried out by using gas, so that the environment is protected, the energy is saved, no pollution is caused, and the efficiency is high.
Description
Technical Field
The utility model relates to a lathe field, in particular to feeder.
Background
As the cost of human labor increases with the development of economy, more and more enterprises are beginning to use more automated equipment to replace human labor and provide the work efficiency of the overall work while replacing human labor. The feeder is one of the tools in which the work efficiency is improved.
Generally, one feeder is required to convey the material from a cutting machine to a processing machine, for example, a machine tool such as a lathe, a grinding machine, or a milling machine, and the old feeder is often conveyed by a push-pull method, a crawler belt, or the like. The continuous conveying is difficult to realize in the conveying process, and the collision is easy to occur in the conveying process, so that the subsequent working steps are influenced, and therefore, a feeder capable of realizing the continuous conveying function is needed.
Heretofore, another feeder has been developed, which is conveyed by hydraulic power, can realize continuous transportation, and cools the material by the water flow in the transportation process. However, this machine has a difficult problem to overcome, and in both the cutting and other processes, there are always many chips produced which may adhere to the material, and the processed chips mix with the water, making the process very dirty and the water very cloudy, thus impairing the operation of the workers. Therefore, a material conveying machine which is cleaner, does not affect the operation of workers and can realize continuous conveying is particularly important.
SUMMERY OF THE UTILITY MODEL
The utility model mainly aims at providing a can realize continuous transport and, high-efficient, clean feeder.
The utility model provides a feeder, which comprises a supporting seat, a feeder upper cover arranged above the supporting seat, a feeding pipe and an air pump which are arranged between the supporting seat and the feeder upper cover; the feeding pipe inlet is provided with a feeding pipe gate, an air inlet is formed in the side face of the feeding pipe, the output end of the air pump is connected with the inlet of the air inlet pipe, the outlet of the air inlet pipe is connected with the air inlet, and after materials enter the feeding pipe through the gate, the materials are pumped into the feeding pipe through the air pump, so that the materials are driven to leave the feeding pipe.
Preferably, the supporting seat is arranged on a machine tool, the air pump is arranged in the machine tool, the supporting seat is provided with a through hole, a line on the feeding machine is connected with a line in the machine tool through the through hole, and the air inlet pipe is connected with the air pump in the machine tool and the feeding pipe on the supporting seat through the through hole.
Preferably, the feeder upper cover is provided with a feeding hole, the feeding hole and the feeding pipe inlet are on the same horizontal line and have the same size, the feeding pipe gate is arranged between the feeding hole and the feeding pipe inlet, and the feeding hole and the feeding pipe inlet are controlled to be closed or communicated by ascending or descending of the feeding pipe gate.
Preferably, the feeding pipe is arranged on the supporting seat through two supporting frames and is fixedly connected with the supporting seat.
The utility model discloses a beneficial effect of feeder does:
1, can realize continuous pay-off, and the pay-off speed piece, pay-off is efficient.
2, compare in using water to pay-off, cleaner can not influence staff's operation.
3, can realize certain radiating effect equally to avoid material temperature overheated in the course of working, the result of processing is not good, can reduce product precision error, and can guarantee the quality of processing.
And 4, compared with feeding by using water, the material is not required to be recycled, so that the waste and the pollution are avoided, and the material is cleaner and more environment-friendly.
Drawings
Fig. 1 is a perspective view of the feeding machine of the present invention;
fig. 2 is a left side view of the feeding machine of the present invention;
reference numbers in the figures: 1. supporting seat, 2, feeder upper cover, 3, support frame, 4, conveying pipe, 5, conveying pipe gate, 6, intake pipe, 7, lead to the line hole, 8, air pump, 21, feed port.
The objects, features and advantages of the present invention will be further described with reference to the accompanying drawings.
Detailed Description
It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Referring to fig. 1 to 2, an embodiment of the feeding machine of the present invention is provided:
a feeder comprises a supporting seat 1 which is arranged on a machine tool and fixedly connected with the machine tool, a feeder upper cover 2 which is arranged above the supporting seat 1, a supporting frame 3 which is arranged above the supporting seat 1, a feeding pipe 4 which is arranged on the supporting frame 3 and an air pump 8 which is arranged in the machine tool.
The left side of the feeder upper cover 2 is provided with a feeding hole 21, the inlets of the feeding hole 21 and the feeding pipe 4 are positioned on the same horizontal line and are consistent in size, the feeding pipe gate 5 is arranged between the feeding hole 21 and the inlet of the feeding pipe 4, and the feeding hole 21 and the inlet of the feeding pipe 4 are controlled to be closed or communicated through ascending or descending of the feeding pipe gate 5.
An air inlet is arranged on the side surface of the feeding pipe 4, the output end of the air pump is connected with the inlet of the air inlet pipe 6, and the outlet of the air inlet pipe 6 is connected with the air inlet. A through hole 7 which penetrates through the supporting seat 1 is formed in the supporting seat 1, a circuit on the feeding machine is connected with a circuit in the machine tool through the through hole 7, and the air inlet pipe 6 is connected with an air pump 8 in the machine tool and a feeding pipe 4 on the supporting seat 4 through the through hole 7.
When the material feeding machine is used, the feeding machine and a cutting machine in front of the feeding machine are electrically connected with a machine tool control end, when materials are processed in the machine tool, the cutting machine is controlled to feed the materials into the feeding machine, and then the feeding machine opens the feeding pipe gate 4 until the materials completely enter the feeding machine. Then the feeder closes conveying pipe gate 4, and air pump 8 starts, and air pump 8 sends into the feeding pipe 4 with the gas pump through intake pipe 6 in, sends into the lathe through atmospheric pressure with the material and processes.
In actual use, in order to reduce the required air pressure, certain lubricating oil is added into the feeding pipe, so that the static friction force between the material and the inner wall of the feeding pipe 4 is reduced, and the aim of pushing can be fulfilled without particularly high air pressure.
The use of gas for feeding has several advantages.
1, can realize continuous pay-off, and the pay-off speed piece, pay-off is efficient.
2, compare in using water to pay-off, cleaner can not influence staff's operation.
3, can realize certain radiating effect equally to avoid material temperature overheated in the course of working, the result of processing is not good, can reduce product precision error, and can guarantee the quality of processing.
And 4, compared with feeding by using water, the material is not required to be recycled, so that the waste and the pollution are avoided, and the material is cleaner and more environment-friendly.
The above only is the preferred embodiment of the present invention, not limiting the scope of the present invention, all the equivalent structural changes made by the contents of the specification and the drawings, or the direct or indirect application in other related technical fields, are included in the same way in the protection scope of the present invention.
Claims (4)
1. A feeder is characterized by comprising a supporting seat, a feeder upper cover arranged above the supporting seat, a feeding pipe and an air pump, wherein the feeding pipe and the air pump are arranged between the supporting seat and the feeder upper cover; the feeding pipe inlet is provided with a feeding pipe gate, an air inlet is formed in the side face of the feeding pipe, the output end of the air pump is connected with the inlet of the air inlet pipe, the outlet of the air inlet pipe is connected with the air inlet, and after materials enter the feeding pipe through the gate, the materials are pumped into the feeding pipe through the air pump, so that the materials are driven to leave the feeding pipe.
2. The feeder of claim 1, wherein the supporting seat is disposed on a machine tool, the air pump is disposed in the machine tool, the supporting seat is provided with a through hole, a line on the feeder is connected with a line in the machine tool through the through hole, and the air inlet pipe is connected with the air pump in the machine tool and the feeding pipe on the supporting seat through the through hole.
3. The feeder of claim 1, wherein the feeder upper cover is provided with a feeding hole, the feeding hole and the feeding pipe inlet are on the same horizontal line and have the same size, the feeding pipe gate is arranged between the feeding hole and the feeding pipe inlet, and the feeding hole and the feeding pipe inlet are controlled to be closed or communicated by ascending or descending of the feeding pipe gate.
4. The feeder of claim 1, wherein the feed tube is disposed on the support base by two support brackets and fixedly connected to the support base.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202020197847.4U CN212217897U (en) | 2020-02-24 | 2020-02-24 | Feeding machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202020197847.4U CN212217897U (en) | 2020-02-24 | 2020-02-24 | Feeding machine |
Publications (1)
Publication Number | Publication Date |
---|---|
CN212217897U true CN212217897U (en) | 2020-12-25 |
Family
ID=73914080
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN202020197847.4U Active CN212217897U (en) | 2020-02-24 | 2020-02-24 | Feeding machine |
Country Status (1)
Country | Link |
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CN (1) | CN212217897U (en) |
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2020
- 2020-02-24 CN CN202020197847.4U patent/CN212217897U/en active Active
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