CN209834890U - Automatic feeding vibration disk for neon lamp welding - Google Patents

Automatic feeding vibration disk for neon lamp welding Download PDF

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Publication number
CN209834890U
CN209834890U CN201920540748.9U CN201920540748U CN209834890U CN 209834890 U CN209834890 U CN 209834890U CN 201920540748 U CN201920540748 U CN 201920540748U CN 209834890 U CN209834890 U CN 209834890U
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China
Prior art keywords
magnet
neon lamp
spiral
vibration
vibration dish
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Active
Application number
CN201920540748.9U
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Chinese (zh)
Inventor
展学霞
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QINGDAO HEATEC ELECTRIC CO Ltd
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QINGDAO HEATEC ELECTRIC CO Ltd
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Abstract

The utility model provides a neon lamp welding autoloading vibration dish, vibration mechanism and spiral vibration dish on frame, frame set up the discharge gate on the spiral vibration dish, its characteristics are: the stand is provided with a stand column, and the stand column is provided with a magnet which is positioned above the spiral vibration disk. The upright post is connected with the magnet through a connecting arm. The connecting arm is connected with the connecting position of the upright post in an adjustable manner. The magnet is in a disc shape or a circular ring shape, and the bottom surface of the magnet is basically parallel to the spiral vibration disc. Because the base pin of neon lamp adopts the preparation of magnetic-sensitive material, after the neon lamp got into spiral vibration dish, kept the ascending upright state of base pin all the time under the effect of magnet, along with the incessant vibration of vibration dish, the neon lamp ascended gradually along spiral track and marchd to the discharge gate, and the manipulator of being convenient for snatchs the neon lamp and cuts the foot, counterpoint, welds, has improved neon lamp welding efficiency.

Description

Automatic feeding vibration disk for neon lamp welding
Technical Field
The utility model belongs to the technical field of domestic appliance, a refrigerator pencil production facility is related to, a neon lamp welding autoloading vibration dish specifically says so.
Background
The refrigerator is internally provided with a plurality of electric devices which are connected by leads, and in order to facilitate installation, parts of some refrigerators are welded with the leads in advance to be made into a refrigerator wire harness. The neon lamp is used as an indicator lamp and is a common device for a refrigerator, in the past, a neon lamp wire harness is welded by using a manual copper buckle for compression joint, the appearance size after compression joint is large, the assembly is limited, a manual compression joint wire copper wire is easy to fly, and the welding efficiency is low. At present, an automatic welding machine is generally adopted for welding, a spiral vibration disc is adopted for automatic feeding of a neon lamp automatic welding machine, the neon lamp is always in a movable state under the continuous vibration of the vibration disc, is orderly arranged and is conveyed to a discharge port along a spiral track, and then enters a welding channel for pin shearing, alignment and welding. The position state of the spiral vibration disc automatic feeding mechanism when the neon lamp reaches the discharge hole is uncertain, some pins face upwards, some pins face leftwards or rightwards, and the condition that the pins face downwards cannot occur due to the action of gravity, so that the difficulty is caused in subsequent pin shearing and alignment processes, and manual intervention is usually needed.
SUMMERY OF THE UTILITY MODEL
The utility model provides a solve the above-mentioned problem that prior art exists, provide a neon lamp welding autoloading vibration dish, the position state when making the neon lamp reach the discharge gate is unified, and the follow-up foot of cutting, counterpoint of being convenient for improve welding efficiency.
The utility model aims at realizing through the following technical scheme:
the utility model provides a neon lamp welding autoloading vibration dish, includes vibration mechanism and the spiral vibration dish on frame, the frame, set up the discharge gate on the spiral vibration dish, a serial communication port, set up a stand on the frame, set up a magnet on the stand, magnet is located the top of spiral vibration dish.
The improvement of the technical scheme is as follows: the upright post is connected with the magnet through a connecting arm.
The technical scheme is further improved as follows: the connecting arm is connected with the upright post in a height-adjustable manner.
The technical scheme is further improved as follows: the magnet is in a disc shape or a circular ring shape, and the bottom surface of the magnet is basically parallel to the spiral vibration disc.
The technical scheme is further improved as follows: the outer diameter of the magnet is smaller than that of the spiral vibration disc, and the thickness of the magnet is 10-50 mm.
The technical scheme is further improved as follows: the magnet is an integrated structure made of permanent magnet materials.
The utility model has the advantages that:
the utility model discloses set up a stand on the frame, set up a magnet on the stand, magnet is located the top of spiral vibration dish. Because the base pin of neon lamp adopts the preparation of magnetic-sensitive material, after the neon lamp got into spiral vibration dish, kept the ascending upright state of base pin all the time under the effect of magnet, along with the incessant vibration of vibration dish, the neon lamp ascended gradually along spiral track and marchd to the discharge gate, got into subsequent pin of cutting, counterpoint process from the discharge gate of spiral vibration dish in an orderly manner, and the manipulator of being convenient for snatchs the neon lamp and cuts the pin, counterpoints, welds. The full automation is realized from feeding to welding, manual intervention is not needed, and the welding efficiency of the neon lamp is improved.
Drawings
Fig. 1 is a schematic structural view of an embodiment 1 of a neon lamp welding automatic feeding vibration disc of the present invention;
fig. 2 is a schematic structural view of embodiment 2 of the neon lamp welding automatic feeding vibration disk of the present invention.
The numbering in the figure is: the device comprises a base 1, a vibrating mechanism 2, a neon lamp 3, a spiral vibrating disk 4, a discharge port 5, a magnet 6, a connecting arm 7 and an upright post 8.
Detailed Description
The invention is described in further detail below with reference to the accompanying drawings:
referring to fig. 1, the utility model relates to an embodiment 1 of neon lamp welding autoloading vibration dish, vibration mechanism 2 and spiral vibration dish 4 on frame 1, set up discharge gate 5 on the spiral vibration dish 4, set up a stand 8 on frame 1, set up a magnet 6 on the stand 8, magnet 6 is located the top of spiral vibration dish 4.
Specifically, the method comprises the following steps: the upright post 8 is connected with the magnet 6 through a connecting arm 7, and the height of the connecting arm 7 on the upright post 8 can be adjusted in order to adjust the attraction of the magnet to the neon lamp 3.
The magnet 6 has a disc shape, and the bottom surface of the disc-shaped magnet 6 is substantially parallel to the spiral vibratory plate 4. The outer diameter of the magnet 6 is smaller than that of the spiral vibration disk 4, and the thickness of the magnet 6 is 10-50 mm. The magnet 6 is an integral structure made of permanent magnetic material.
Referring to fig. 2, the utility model relates to an embodiment 2 of neon lamp welding autoloading vibration dish, including vibration mechanism 2 and the spiral vibration dish 4 on frame 1, the frame 1, set up discharge gate 5 on the spiral vibration dish 4, set up a stand 8 on frame 1, set up a magnet 6 on the stand 8, magnet 6 is located the top of spiral vibration dish 4.
Specifically, the method comprises the following steps: the upright post 8 is connected with the magnet 6 through a connecting arm 7, and the height of the connecting arm 7 on the upright post 8 can be adjusted in order to adjust the attraction of the magnet to the neon lamp 3.
The magnet 6 is in a ring shape, and the bottom surface of the ring-shaped magnet 6 is basically parallel to the spiral vibrating disk 4. The outer diameter of the magnet 6 is smaller than that of the spiral vibration disk 4, and the thickness of the magnet 6 is 10-50 mm. The magnet 6 is an integral structure made of permanent magnetic material.
Because the base pin of neon lamp 3 adopts the preparation of magnetic-sensitive material, after the neon lamp got into spiral vibration dish 4, kept the ascending upright state of base pin all the time under the effect of magnet 6, along with the incessant vibration of spiral vibration dish 4, neon lamp 3 ascended gradually along the spiral track and marchd to discharge gate 5, and the manipulator of being convenient for snatchs neon lamp 3 and cuts the foot, counterpoint, welds.
Of course, the above description is not intended to limit the present invention, and the present invention is not limited to the above examples, and the changes, modifications, additions or substitutions made by those skilled in the art within the scope of the present invention should also belong to the protection scope of the present invention.

Claims (8)

1. The utility model provides a neon lamp welding autoloading vibration dish, includes vibration mechanism and the spiral vibration dish on frame, the frame, set up the discharge gate on the spiral vibration dish, a serial communication port, set up a stand on the frame, set up a magnet on the stand, magnet is located the top of spiral vibration dish.
2. The neon lamp welding autoloading vibratory pan of claim 1, wherein the post is connected to the magnet by a connecting arm.
3. The neon lamp welding autoloading vibration tray of claim 2, wherein the connecting arm is height adjustable connected to the post.
4. A neon lamp welding autoloading vibratory pan as set forth in any one of claims 1-3, wherein said magnet is disc-shaped or ring-shaped, and wherein a bottom surface of said magnet is substantially parallel to said spiral vibratory pan.
5. The neon lamp welding autoloading vibratory pan of claim 4, wherein the outer diameter of the magnet is smaller than the outer diameter of the spiral vibratory pan, and the thickness of the magnet is 10-50 mm.
6. A neon lamp welding autoloading vibratory pan as set forth in any one of claims 1-3, wherein the magnet is a unitary structure of permanent magnet material.
7. The neon lamp welding autoloading vibration tray of claim 4, wherein the magnet is a one-piece structure made of permanent magnet material.
8. The neon lamp welding autoloading vibration tray of claim 5, wherein the magnet is a one-piece structure made of permanent magnet material.
CN201920540748.9U 2019-04-19 2019-04-19 Automatic feeding vibration disk for neon lamp welding Active CN209834890U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920540748.9U CN209834890U (en) 2019-04-19 2019-04-19 Automatic feeding vibration disk for neon lamp welding

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920540748.9U CN209834890U (en) 2019-04-19 2019-04-19 Automatic feeding vibration disk for neon lamp welding

Publications (1)

Publication Number Publication Date
CN209834890U true CN209834890U (en) 2019-12-24

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920540748.9U Active CN209834890U (en) 2019-04-19 2019-04-19 Automatic feeding vibration disk for neon lamp welding

Country Status (1)

Country Link
CN (1) CN209834890U (en)

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