CN214605996U - Meson divides material assembly quality - Google Patents
Meson divides material assembly quality Download PDFInfo
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- CN214605996U CN214605996U CN202120687579.9U CN202120687579U CN214605996U CN 214605996 U CN214605996 U CN 214605996U CN 202120687579 U CN202120687579 U CN 202120687579U CN 214605996 U CN214605996 U CN 214605996U
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- meson
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Abstract
The utility model relates to an automation equipment technical field discloses a meson divides material assembly device, include: the meson feeding device is used for transporting the mesons; the meson blocking device is connected with a discharge port of the meson feeding device and used for blocking the meson at the discharge port; the meson assembling device is arranged above the discharge hole of the meson feeding device and is used for installing the meson blocking the meson device; the workbench is arranged below the meson assembling device, and is provided with more than one assembling die holder for matching with the meson assembling device. The utility model discloses realize automatic to the material process of dividing of meson and the assembly process of meson.
Description
Technical Field
The utility model relates to an automation equipment technical field indicates a meson divides material assembly device especially.
Background
In the existing market, due to the shortage of corresponding mechanical equipment, most of the assemblies are manually assembled, for example, for the meson, because the meson is made of plastic and is thin and small, the manual assembly has low working efficiency and is easy to damage the meson.
SUMMERY OF THE UTILITY MODEL
In order to solve the above problem, the utility model provides a meson divides material assembly quality, its main objective divides material assembly quality through setting up the meson, to the branch material of meson and to the equipment operation of meson.
In order to achieve the above object, the utility model adopts the following technical scheme:
a meson divides material assembly device includes:
the meson feeding device is used for transporting the mesons;
the meson blocking device is connected with a discharge port of the meson feeding device and used for blocking the meson at the discharge port;
the meson assembling device is arranged above the discharge hole of the meson feeding device and is used for installing the meson blocked by the meson blocking device;
the workbench is arranged below the meson assembling device, and is provided with more than one assembling die holder for the meson assembling device to match.
Furthermore, meson loading attachment including shake the dish and with the pay-off track that shakes the dish and be connected, the discharge gate that shakes the dish with the feed inlet of pay-off track is connected.
Furthermore, the medium blocking device comprises a medium blocking cylinder and a medium blocking gripper arranged on the output end of the medium blocking cylinder, and the pair of medium blocking grippers is arranged oppositely.
Furthermore, a meson in-place detection device is arranged on the meson blocking gripper.
Furthermore, the meson assembling device comprises a meson assembling cylinder and a meson assembling pressure rod arranged on the meson assembling cylinder.
Furthermore, the meson assembling device comprises an assembling sliding table, and the assembling pressure rod is arranged on the assembling sliding table and moves along the assembling sliding table.
Further, the meson assembling device comprises a buffer piece, and the buffer piece is arranged between the meson assembling cylinder and the meson assembling pressing rod.
The utility model discloses a set up meson material feeding unit and accomplish branch material and the transportation operation to the meson, set up the equipment die holder interact on meson assembly device and the workstation, accomplish the equipment operation to the meson, set up through this structure and realize the automation mechanized operation, improve packaging efficiency and equipment quality greatly.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
FIG. 2 is a schematic structural diagram of a meson feeding device.
Fig. 3 is a schematic structural diagram of the blocking medium device.
FIG. 4 is a schematic structural diagram of the meson assembling apparatus.
The reference numbers illustrate: 1. a meson feeding device; 2. an intermediate blocking device; 3. a meson assembling device; 4. a work table; 5. assembling a die holder; 6. vibrating disc; 7. a feeding track; 8. a medium blocking sub-cylinder; 9. a blocking medium clamping hand; 10. a meson in-place detection device; 11. assembling a cylinder by using a meson; 12. a meson assembling pressure lever; 13. assembling a sliding table; 14. a buffer.
Detailed Description
Please refer to fig. 1, which illustrates an meson separating and assembling apparatus according to the present invention, including:
the meson feeding device 1 is used for transporting mesons; the meson blocking device 2 is connected with the discharge port of the meson feeding device 1 and used for blocking the meson at the discharge port; the meson assembling device 3 is arranged above the discharge hole of the meson feeding device 1 and is used for installing the meson stopped by the meson stopping device 2; and the workbench 4 is arranged below the meson assembling device 3, and is provided with more than one assembling die holder 5 for matching with the meson assembling device 3.
For solving the technical problem who exists among the background art, the utility model discloses in provide a meson branch material assembly device, its specific motion process is: the method comprises the steps of pouring a meson material to a meson feeding device 1, conveying the meson to a discharge port position by the meson feeding device 1, stopping the meson due to the fact that a meson blocking device 2 is arranged at the discharge port position, then linking a meson assembling device 3, assembling the meson to an assembling die holder 5 on a workbench 4, and in actual use, enabling the workbench 4 to be a rotatable disc, and rotating the assembling die holder 5 to finish the operation of assembling the meson.
In practical use, as shown in fig. 2, the meson feeding device 1 includes a vibrating disc 6 and a feeding track 7 connected to the vibrating disc 6, and a discharge port of the vibrating disc 6 is connected to a feed port of the feeding track 7.
Through the vibration screening of the vibration disc 6, the mesons are separated and transported in sequence, and then enter the feeding track 7 to realize orderly feeding in sequence.
As shown in fig. 3, the medium blocking device 2 includes a medium blocking cylinder 8, a medium blocking gripper 9 disposed at an output end of the medium blocking cylinder 8, and a pair of the medium blocking grippers 9 are disposed opposite to each other.
When the meson is transported to the discharge port through the feeding track 7, the meson is stopped by the pair of meson stopping clamping hands 9, and then the meson stopping cylinder 8 drives the pair of meson stopping clamping hands 9 to clamp the meson.
As shown in fig. 3, an meson-in-place detection device 10 is disposed on the meson-blocking gripper 9. The meson in-place detection device 10 realizes the in-place detection of the meson, and the form of a sensor is preferred in use.
As shown in fig. 4, the medium assembling device 3 includes a medium assembling cylinder 11 and a medium assembling press rod 12 disposed on the medium assembling cylinder 11.
The meson assembling cylinder 11 drives the meson assembling pressure rod 12 on the meson assembling cylinder to move, so that the meson and the workpiece of the assembling die holder 5 are assembled.
As shown in fig. 4, the meson assembling device 3 includes an assembling slide table 13, and the assembling press rod 12 is disposed on the assembling slide table 13 and moves along the assembling slide table 13.
In order to make the assembling operation movement more accurate, thereby the assembling sliding table 13 is added, and under the guiding action of the assembling sliding table 13, the movement of the assembling pressure rod 12 is more accurate.
As shown in fig. 4, the meson assembling device 3 includes a buffer 14, and the buffer 14 is disposed between the meson assembling cylinder 11 and the meson assembling pressing rod 12.
In order to realize that meson equipment depression bar 12 realizes flexible equipment at the in-process of carrying out the equipment, the utility model discloses in increased bolster 14, preferably the spring.
The above embodiments are only for describing the preferred embodiments of the present invention, and are not intended to limit the scope of the present invention, and various modifications and improvements made by the technical solution of the present invention by those skilled in the art are all within the scope of the present invention as defined by the claims.
Claims (7)
1. The meson divides material assembly quality, its characterized in that includes:
the meson feeding device is used for transporting the mesons;
the meson blocking device is connected with a discharge port of the meson feeding device and used for blocking the meson at the discharge port;
the meson assembling device is arranged above the discharge hole of the meson feeding device and is used for installing the meson blocked by the meson blocking device;
the workbench is arranged below the meson assembling device, and is provided with more than one assembling die holder for the meson assembling device to match.
2. The meson splitting assembly apparatus of claim 1, wherein: the meson feeding device comprises a vibration disc and a feeding track connected with the vibration disc, and a discharge hole of the vibration disc is connected with a feed hole of the feeding track.
3. The meson splitting assembly apparatus of claim 1, wherein: the medium blocking device comprises a medium blocking cylinder and a medium blocking clamp arranged on the output end of the medium cylinder, and the medium blocking clamp is arranged oppositely.
4. The meson separation assembly apparatus of claim 3, wherein: the meson in-place detection device is arranged on the meson blocking gripper.
5. The meson splitting assembly apparatus of claim 1, wherein: the meson assembling device comprises a meson assembling cylinder and a meson assembling pressure rod arranged on the meson assembling cylinder.
6. The meson splitting assembly device of claim 5, wherein: the meson assembling device comprises an assembling sliding table, and the assembling pressing rod is arranged on the assembling sliding table and moves along the assembling sliding table.
7. The meson splitting assembly device of claim 5, wherein: the meson assembling device comprises a buffer piece, and the buffer piece is arranged between the meson assembling cylinder and the meson assembling pressing rod.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120687579.9U CN214605996U (en) | 2021-04-01 | 2021-04-01 | Meson divides material assembly quality |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120687579.9U CN214605996U (en) | 2021-04-01 | 2021-04-01 | Meson divides material assembly quality |
Publications (1)
Publication Number | Publication Date |
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CN214605996U true CN214605996U (en) | 2021-11-05 |
Family
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202120687579.9U Active CN214605996U (en) | 2021-04-01 | 2021-04-01 | Meson divides material assembly quality |
Country Status (1)
Country | Link |
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CN (1) | CN214605996U (en) |
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2021
- 2021-04-01 CN CN202120687579.9U patent/CN214605996U/en active Active
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