CN211966531U - Bulb shell leading-out wire and drive plate wire winding device of full-automatic LED filament lamp assembling machine - Google Patents
Bulb shell leading-out wire and drive plate wire winding device of full-automatic LED filament lamp assembling machine Download PDFInfo
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- CN211966531U CN211966531U CN202020237481.9U CN202020237481U CN211966531U CN 211966531 U CN211966531 U CN 211966531U CN 202020237481 U CN202020237481 U CN 202020237481U CN 211966531 U CN211966531 U CN 211966531U
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- 238000004804 winding Methods 0.000 title claims abstract description 62
- 230000007246 mechanism Effects 0.000 claims abstract description 65
- 238000009730 filament winding Methods 0.000 description 6
- 238000004519 manufacturing process Methods 0.000 description 6
- 239000011521 glass Substances 0.000 description 2
- 238000009434 installation Methods 0.000 description 2
- 238000000034 method Methods 0.000 description 2
- 230000008569 process Effects 0.000 description 2
- 230000004075 alteration Effects 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 230000003993 interaction Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
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- 238000006467 substitution reaction Methods 0.000 description 1
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Abstract
The utility model relates to a full automatic assembly machine cell-shell of LED filament lamp draws silk and drive plate wire winding device. The device comprises a wire winding mechanism, a wire winding mechanism up-and-down moving mechanism, a longitudinal wire clamping mechanism and a transverse wire clamping mechanism; when the two leading-out wires of the bulb shell of the LED filament lamp and the wires loaded on the drive board are wound, the wire winding mechanism can be rotated to move up and down, the two leading-out wires of the bulb shell of the LED filament lamp are longitudinally clamped and transversely clamped, and the two leading-out wires of the bulb shell of the LED filament lamp and the wires loaded on the drive board are automatically wound. The utility model has the advantages of being simple in structure and convenient in operation, work precision is high, the location is accurate, wire winding working range is wider.
Description
Technical Field
The utility model relates to a device that two lead wires of cell-shell LED filament lamp cell-shell and the wire post on the drive plate of packing into carry out the wire winding and be connected especially relates to a full automatic assembly machine cell-shell of LED filament lamp is LED out silk and drive plate wire winding device.
Background
At present, the assembly of the domestic LED filament lamp adopts the traditional production line assembly, and a production worker assembles an LED filament lamp bulb shell, an LED luminous body leading-out wire, a driving plate, a lamp holder and a lamp needle on the production line. The disadvantages of this process are: firstly, the number of workers is high, and the wage cost is high. Secondly, because of frequent carrying operation, the glass bulb shell of the filament lamp has the fragile bad characteristic, the loss in the manufacturing process is large, and the production cost is increased. And thirdly, the LED filament lamp driving board is assembled and welded in a manual production mode, so that cold joint and false joint are easily caused, the product quality consistency is poor, the qualification rate is not high, and especially, the lamp tube is fragile due to the fact that the lamp tube is a glass product.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a full automatic assembly machine cell-shell of LED filament lamp draws out silk and drive plate wire winding device to solve not enough among the prior art.
The technical scheme of the utility model is that: the full-automatic LED filament lamp assembling machine comprises a bulb shell leading-out filament and drive plate filament winding device, wherein the device comprises a filament winding mechanism, a filament winding mechanism up-and-down moving mechanism, a longitudinal filament clamping mechanism and a transverse filament clamping mechanism;
the wire winding mechanism consists of a rotary wire winding rod, a rotary motor mounting plate, a rotary motor up-and-down moving adjusting frame, an up-and-down moving adjusting track bearing, a second track, an up-and-down moving tension spring, a track fixing plate, an up-and-down moving adjusting positioning frame and a positioning bolt, wherein the rotary wire winding rod and the rotary motor are mounted on the rotary motor up-and-down moving adjusting frame through the rotary motor mounting plate; the rotary motor up-and-down moving adjusting frame is arranged on the wire winding mechanism mounting frame through an up-and-down moving adjusting track bearing, a second track and a track fixing plate; the vertical movement adjusting frame of the rotating motor and the track fixing plate are provided with vertical movement tension springs, and the vertical movement adjusting positioning frame of the rotating motor and the positioning bolt are arranged on the vertical movement adjusting frame;
the wire winding mechanism up-and-down moving mechanism consists of an up-and-down moving servo control motor mounting frame, an up-and-down moving rotary mounting frame, a first track, a track bearing, an upper moving block, a lower moving block, a moving plate, a wire winding mechanism mounting frame, a lead screw bearing and a servo control motor, wherein the wire winding mechanism mounting frame is mounted on the upper moving block and the lower moving block through the moving plate, and the upper moving block and the lower moving block are mounted on the up-and-down moving servo control motor mounting frame through the; the servo control motor is arranged on the mounting frame of the up-and-down servo control motor and is connected with the up-and-down moving block through a lead screw; the servo control motor mounting rack is mounted on the rack by moving up and down the rotary mounting rack;
the longitudinal wire clamping and transverse wire clamping mechanism consists of a longitudinal wire clamping mechanical arm, a transverse wire clamping mechanical arm, a longitudinal wire clamping mechanical arm control cylinder, a transverse wire clamping mechanical arm control cylinder, a control cylinder mounting frame, a longitudinal wire clamping and transverse wire clamping device mounting frame, a longitudinal wire clamping and transverse wire clamping movable plate, a movable track bearing, a third track, a track mounting plate, a longitudinal wire clamping and transverse wire clamping movable control cylinder mounting frame, a longitudinal wire clamping and transverse wire clamping movable control cylinder, wherein the longitudinal wire clamping mechanical arm, the longitudinal wire clamping mechanical arm control cylinder are mounted on the control cylinder mounting frame, and the transverse wire clamping mechanical arm control cylinder are mounted on the control cylinder mounting frame; the control cylinder mounting rack is mounted on the rack through a longitudinal wire clamping and transverse wire clamping moving plate, a moving track bearing, a track III, a track mounting plate, a longitudinal wire clamping and transverse wire clamping device mounting rack; the longitudinal wire clamping and transverse wire clamping mobile control cylinder is arranged on the rail mounting plate through a mounting frame of the longitudinal wire clamping and transverse wire clamping mobile control cylinder.
The utility model has the advantages that: when the two leading-out wires of the bulb shell of the LED filament lamp and the lead wires on the drive board are wound, the winding mechanism can be rotated to move up and down, the two leading-out wires of the bulb shell of the LED filament lamp are longitudinally clamped and transversely clamped, and then the winding mechanism automatically winds the two leading-out wires of the bulb shell of the LED filament lamp and the lead wires on the drive board. The utility model has the advantages of being simple in structure and convenient in operation, work precision is high, the location is accurate, wire winding working range is wider.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic view of the structure in the direction a in fig. 1.
Fig. 3 is an enlarged schematic view at I in fig. 2.
In the figure, 1 is an up-and-down servo control motor mounting frame, 2 is an up-and-down rotary mounting frame, 3 is a track I, 4 is a track bearing, 5 is an up-and-down moving block, 6 is a moving plate, 7 is a wire winding mechanism mounting frame, 8 is a screw rod, 9 is a screw rod bearing, 10 is a servo control motor, 11 is a rotary wire winding rod, 12 is a rotary motor mounting plate, 13 is a rotary motor, 14 is a rotary motor up-and-down moving adjusting frame, 15 is an up-and-down moving adjusting track bearing, 16 is a track II, 17 is an up-and-down tension spring, 18 is a track fixing plate, 19 is an up-and-down moving adjusting positioning frame, 20 is a positioning bolt, 21 is a longitudinal wire clamping manipulator, 22 is a transverse wire clamping manipulator, 23 is a longitudinal wire clamping manipulator control cylinder, 24 is a transverse wire clamping manipulator control cylinder, 25 is, 27 is a longitudinal wire clamping and transverse wire clamping moving plate, 28 is a moving track bearing, 29 is a track III, 30 is a track mounting plate, 31 is a longitudinal wire clamping and transverse wire clamping movement control cylinder mounting frame, 32 is a longitudinal wire clamping and transverse wire clamping movement control cylinder, 33 is a left wire winding mechanism, and 34 is a right wire winding mechanism.
Detailed Description
The full-automatic LED filament lamp assembling machine comprises a bulb shell leading-out filament and drive plate filament winding device, wherein the device comprises a filament winding mechanism, a filament winding mechanism up-and-down moving mechanism, a longitudinal filament clamping mechanism and a transverse filament clamping mechanism; when two leading-out wires of the bulb shell of the LED filament lamp and a wire on a drive plate are wound, the rotatable wire winding mechanism moves up and down the mechanism, the two leading-out wires of the bulb shell of the LED filament lamp are longitudinally clamped and transversely clamped, the two leading-out wires of the bulb shell of the LED filament lamp and the wire on the drive plate are automatically wound, the two leading-out wires of the bulb shell of the LED filament lamp are automatically clamped in the wire winding hooks of the rotating rods 11 of the wire winding mechanism through the longitudinal clamping wires, the transverse wire clamping mechanism and the rotatable wire winding mechanism move up and down the mechanism, and the wire winding mechanism winds the two leading-out wires of the bulb shell of the LED filament lamp and a wire post on the drive plate.
The wire winding mechanism consists of a rotary wire winding rod 11, a rotary motor mounting plate 12, a rotary motor 13, a rotary motor up-down moving adjusting frame 14, an up-down moving adjusting track bearing 15, a track II 16, an up-down moving tension spring 17, a track fixing plate 18, an up-down moving adjusting positioning frame 19 and a positioning bolt 20, wherein the rotary wire winding rod 11 and the rotary motor 13 are mounted on the rotary motor up-down moving adjusting frame 14 through the rotary motor mounting plate 12; the rotary motor up-down movement adjusting frame 14 is arranged on the wire winding mechanism mounting frame 7 through an up-down movement adjusting track bearing 15, a second track 16 and a track fixing plate 18; the vertical movement adjusting frame 14 of the rotating motor and the track fixing plate 18 are provided with a vertical movement tension spring 17, and the vertical movement adjusting positioning frame 19 and a positioning bolt 20 are arranged on the vertical movement adjusting frame 14 of the rotating motor;
the wire winding mechanism up-down moving mechanism consists of an up-down moving servo control motor mounting frame 1, an up-down moving rotary mounting frame 2, a first track 3, a track bearing 4, an upper moving block 5, a lower moving block 5, a moving plate 6, a wire winding mechanism mounting frame 7, a lead screw 8, a lead screw bearing 9 and a servo control motor 10, wherein the wire winding mechanism mounting frame 7 is mounted on the upper moving block 5 and the lower moving block 5 through the moving plate 6, and the upper moving block 5 and the lower moving block 5 are mounted on the up-down moving servo control motor mounting frame 1 through the lead screw 8, the track bearing 4; the servo control motor 10 is arranged on the up-and-down moving servo control motor mounting frame 1 and is connected with the up-and-down moving block 5 through a screw rod 8; the servo control motor mounting frame 1 is mounted on the rack by moving the rotary mounting frame 2 up and down;
the longitudinal wire clamping and transverse wire clamping mechanism consists of a longitudinal wire clamping manipulator 21, a transverse wire clamping manipulator 22, a longitudinal wire clamping manipulator control cylinder 23, a transverse wire clamping manipulator control cylinder 24, a control cylinder mounting rack 25, a longitudinal wire clamping and transverse wire clamping device mounting rack 26, a longitudinal wire clamping and transverse wire clamping moving plate 27, a moving track bearing 28, a track III 29, a track mounting plate 30, a longitudinal wire clamping and transverse wire clamping moving control cylinder mounting rack 31 and a longitudinal wire clamping and transverse wire clamping moving control cylinder 32, wherein the longitudinal wire clamping manipulator 21 and the longitudinal wire clamping manipulator control cylinder 23 are mounted on the control cylinder mounting rack 25, and the transverse wire clamping manipulator 22 and the transverse wire clamping manipulator control cylinder 24 are mounted on the control cylinder mounting rack 25; the control cylinder mounting rack 25 is mounted on the rack through a longitudinal wire clamping and transverse wire clamping moving plate 27, a moving track bearing 28, a track III 29, a track mounting plate 30 and a longitudinal wire clamping and transverse wire clamping device mounting rack 26; the longitudinal wire clamping and transverse wire clamping movement control cylinder 32 is installed on the rail installation plate 30 through a longitudinal wire clamping and transverse wire clamping movement control cylinder installation frame 31.
The wire winding mechanism arranged on the wire winding device mounting frame 7 can move upwards and downwards under the control of the servo control motor 10, and meanwhile, according to the type of the driving plate, when the servo control motor mounting frame 1 moving upwards and downwards is arranged on a rack through the vertical moving rotary mounting frame 2, the vertical moving rotary mounting frame 2 can be rotatably arranged in the range of 0-90 degrees, so that the wire winding mechanism can move upwards and downwards in different angles to wind wires on the driving plate.
The wire winding mechanism consists of a left wire winding mechanism 33 and a right wire winding mechanism 34;
when the left wire winding mechanism 33 winds the bulb shell leading-out wire and the drive plate, the longitudinal wire clamping and transverse wire clamping mechanisms move rightwards to the bulb shell leading-out wire position under the control of a longitudinal wire clamping and transverse wire clamping movement control cylinder 32 arranged on the left side of the rack; as shown in the enlarged view of fig. 3, under the control of the longitudinal wire clamping manipulator control cylinder 23 and the transverse wire clamping manipulator control cylinder 24, when the longitudinal wire clamping manipulator 21 clamps the drawn wire at the wire winding hook of the wire winding rotary rod 11, the transverse wire clamping manipulator 22 clamps the drawn wire, when the rotary wire winding rod 11 arranged on the rotary motor 13 hooks the drawn wire at the wire winding hook, the wire guiding column on the left side of the driving plate automatically rotates, so that the drawn wire of the bulb is tightly wound on the wire guiding column of the driving plate, and the wire winding connection of the drawn wire of the bulb to the wire guiding column on the left side of the driving plate is completed.
When the right-side wire winding mechanism 34 winds the blister outgoing wire and the drive plate, the longitudinal wire clamping and transverse wire clamping mechanisms move leftwards to the position of the blister outgoing wire under the control of the longitudinal wire clamping and transverse wire clamping movement control cylinder 32 arranged on the right side of the rack, and the wire winding process of the right-side wire winding mechanism 34 is the same as that of the left-side wire winding mechanism 33 to wind the blister outgoing wire and the drive plate.
In the present invention, unless otherwise explicitly specified or limited, for example, it may be fixedly connected, detachably connected, or integrated; can be mechanically or electrically connected; they may be directly connected or indirectly connected through an intermediate medium, and may be connected through the inside of two elements or in an interaction relationship between two elements, unless otherwise specifically defined, and the specific meaning of the above terms in the present invention will be understood by those skilled in the art according to specific situations.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (1)
- Filament and drive plate wire winding device are drawn to full automatic assembly machine cell-shell of LED filament lamp, its characterized in that: the device comprises a wire winding mechanism, a wire winding mechanism up-and-down moving mechanism, a longitudinal wire clamping mechanism and a transverse wire clamping mechanism;the wire winding mechanism consists of a rotary wire winding rod, a rotary motor mounting plate, a rotary motor up-and-down moving adjusting frame, an up-and-down moving adjusting track bearing, a second track, an up-and-down moving tension spring, a track fixing plate, an up-and-down moving adjusting positioning frame and a positioning bolt, wherein the rotary wire winding rod and the rotary motor are mounted on the rotary motor up-and-down moving adjusting frame through the rotary motor mounting plate; the rotary motor up-and-down moving adjusting frame is arranged on the wire winding mechanism mounting frame through an up-and-down moving adjusting track bearing, a second track and a track fixing plate; the vertical movement adjusting frame of the rotating motor and the track fixing plate are provided with vertical movement tension springs, and the vertical movement adjusting positioning frame of the rotating motor and the positioning bolt are arranged on the vertical movement adjusting frame;the wire winding mechanism up-and-down moving mechanism consists of an up-and-down moving servo control motor mounting frame, an up-and-down moving rotary mounting frame, a first track, a track bearing, an upper moving block, a lower moving block, a moving plate, a wire winding mechanism mounting frame, a lead screw bearing and a servo control motor, wherein the wire winding mechanism mounting frame is mounted on the upper moving block and the lower moving block through the moving plate, and the upper moving block and the lower moving block are mounted on the up-and-down moving servo control motor mounting frame through the; the servo control motor is arranged on the mounting frame of the up-and-down servo control motor and is connected with the up-and-down moving block through a lead screw; the servo control motor mounting rack is mounted on the rack by moving up and down the rotary mounting rack;the longitudinal wire clamping and transverse wire clamping mechanism consists of a longitudinal wire clamping mechanical arm, a transverse wire clamping mechanical arm, a longitudinal wire clamping mechanical arm control cylinder, a transverse wire clamping mechanical arm control cylinder, a control cylinder mounting frame, a longitudinal wire clamping and transverse wire clamping device mounting frame, a longitudinal wire clamping and transverse wire clamping movable plate, a movable track bearing, a third track, a track mounting plate, a longitudinal wire clamping and transverse wire clamping movable control cylinder mounting frame, a longitudinal wire clamping and transverse wire clamping movable control cylinder, wherein the longitudinal wire clamping mechanical arm, the longitudinal wire clamping mechanical arm control cylinder are mounted on the control cylinder mounting frame, and the transverse wire clamping mechanical arm control cylinder are mounted on the control cylinder mounting frame; the control cylinder mounting rack is mounted on the rack through a longitudinal wire clamping and transverse wire clamping moving plate, a moving track bearing, a track III, a track mounting plate, a longitudinal wire clamping and transverse wire clamping device mounting rack; the longitudinal wire clamping and transverse wire clamping mobile control cylinder is arranged on the rail mounting plate through a mounting frame of the longitudinal wire clamping and transverse wire clamping mobile control cylinder.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202020237481.9U CN211966531U (en) | 2020-03-02 | 2020-03-02 | Bulb shell leading-out wire and drive plate wire winding device of full-automatic LED filament lamp assembling machine |
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CN202020237481.9U CN211966531U (en) | 2020-03-02 | 2020-03-02 | Bulb shell leading-out wire and drive plate wire winding device of full-automatic LED filament lamp assembling machine |
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CN211966531U true CN211966531U (en) | 2020-11-20 |
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CN202020237481.9U Expired - Fee Related CN211966531U (en) | 2020-03-02 | 2020-03-02 | Bulb shell leading-out wire and drive plate wire winding device of full-automatic LED filament lamp assembling machine |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114770080A (en) * | 2022-03-24 | 2022-07-22 | 苏州朗坤自动化设备股份有限公司 | Igniter end thread locking mechanism of combustion chamber |
-
2020
- 2020-03-02 CN CN202020237481.9U patent/CN211966531U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114770080A (en) * | 2022-03-24 | 2022-07-22 | 苏州朗坤自动化设备股份有限公司 | Igniter end thread locking mechanism of combustion chamber |
CN114770080B (en) * | 2022-03-24 | 2023-10-13 | 苏州朗坤自动化设备股份有限公司 | Igniter end thread locking mechanism of combustion chamber |
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CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20201120 |