A production line for assembling a post light
By designing a column lamp assembly production line, the problems of conductive wire entanglement and gluing were solved, and efficient processing of conductive wires and efficient assembly and production of column lamps were achieved.
Patent Information
- Application Number
- CN202311230242.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-21
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2043-09-21
AI Technical Summary
The existing column lamp assembly process is complicated, the conductive wires are easily entangled, the non-circular shape of the light-emitting board is difficult to apply glue, the conductive wires are difficult to strip, and can only be stripped at one end.
A column lamp assembly production line was designed, which includes conductive wire processing, wire insertion, gluing and straightening devices. The conductive wire is processed by a conductive wire conveying mechanism, a clamping mechanism and a stripping mechanism. The conductive wire is accurately inserted using the wire insertion device's positioning mechanism and flipping mechanism. The light-emitting panel rotation mechanism and gluing mechanism ensure uniform gluing. The straightening device separates the conductive wires, and the lampshade installation device completes the lampshade installation.
It achieves efficient processing and plugging of conductive wires, solves the problems of conductive wire entanglement and gluing, and ensures efficient assembly and production of column lights.
Smart Images

Figure CN117260254B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of column lamp assembly, in particular to a column lamp assembly production line. BACKGROUND
[0002] The bulb refers to the light source that emits light and heat by electric energy. The bulb is mainly composed of a light-emitting plate, a shell and a lamp cap. The light-emitting plate is arranged on the bottom surface of the shell, and the top end of the shell is provided with a thread. The lamp cap is screwed on the top end of the shell through the cooperation of the thread. The conductive wires on the light-emitting plate need to pass through the top end of the shell. One of the conductive wires is hung on the side wall of the lamp cap, and the other conductive wire is pulled out from the middle position of the lamp cap. The structure of the column lamp is shown in Figure 1
[0003] The existing column lamp assembly process is relatively complex. After the production of the light-emitting plate of the column lamp, the conductive wire needs to be inserted into the corresponding power terminal of the light-emitting plate, and then the conductive wire is pulled to the top end of the lampshade while the lampshade cover is arranged on the light-emitting plate. In this process, the following problems exist: 1. The wire of the conductive wire is thin and the conductive wires are easy to entangle together. The existing technology is difficult to realize the insertion of the conductive wire into the light-emitting plate, 2. The shape of the light-emitting plate is a non-circular structure, and it is difficult for the glue gun to glue the edge of the light-emitting plate, 3. The conductive wire needs to be double stripped, and the existing technology can only strip the single end of the conductive wire.
[0004] In view of the problems existing in the prior art, the present application designs a column lamp assembly production line. SUMMARY
[0005] In view of the problems existing in the prior art, the present application provides a column lamp assembly production line, which can effectively solve at least one problem existing in the prior art.
[0006] The technical scheme of the present application is as follows:
[0007] A column lamp assembly production line, comprising:
[0008] A conductive wire processing device for cutting the conductive wire into a set length and stripping the conductive wire to expose the electric core;
[0009] A conductive wire insertion device for receiving the conductive wire processed by the conductive wire processing device and inserting the conductive wire into the light-emitting plate;
[0010] A light-emitting plate gluing device for receiving the light-emitting plate processed by the conductive wire insertion device and gluing the edge of the light-emitting plate;
[0011] A conductive wire straightening device for receiving the light-emitting plate processed by the light-emitting plate gluing device and vertically straightening the conductive wire on the light-emitting plate;
[0012] The lampshade mounting device is used for aligning the straightened conductive wire into the lampshade, making the lampshade fit to the edge of the light-emitting plate, and obtaining the assembled columnar lamp.
[0013] Further, the conductive wire processing device comprises:
[0014] The conductive wire conveying mechanism comprises a conductive wire input member, a conductive wire end exposure member and a first conductive wire positioning member connected in sequence, the first conductive wire positioning member can clamp one end of the conductive wire, the conductive wire input member can drive the first conductive wire positioning member to extend so as to input a certain length of the conductive wire, and the conductive wire end exposure member can drive the first conductive wire positioning member to retract and then extend so as to expose one end of the conductive wire outside the first conductive wire positioning member.
[0015] The conductive wire clamping mechanism comprises a conductive wire output member and a second conductive wire positioning member, the conductive wire output member can drive the second conductive wire positioning member to move, and the second conductive wire positioning member can clamp one end of the conductive wire.
[0016] The conductive wire stripping mechanism is arranged at the output end of the first conductive wire positioning member, the conductive wire stripping mechanism comprises a group of cutting knives which can be separated or closed, and the group of cutting knives can cut off the conductive wire or cut the outer skin of the conductive wire after being closed.
[0017] Further, the conductive wire conveying mechanism comprises a conductive wire conveying fixing frame, the conductive wire input member and the conductive wire end exposure member are air cylinders, the conductive wire input member is fixedly arranged on the conductive wire conveying fixing frame, the output end of the conductive wire input member is connected to the conductive wire end exposure member, and the output end of the conductive wire end exposure member is connected to the first conductive wire positioning member.
[0018] The conductive wire conveying fixing frame is connected with a first conductive wire positioning member mounting plate in a track mode, the first conductive wire positioning member mounting plate has an L-shaped structure, the first conductive wire positioning member is an air cylinder, the first conductive wire positioning member is mounted on the vertical part of the first conductive wire positioning member mounting plate, and the first conductive wire positioning member can abut against the horizontal part of the first conductive wire positioning member mounting plate after being extended so as to position one end of the conductive wire.
[0019] Further, a plurality of conductive wire receiving seats are arranged at the blanking end of the conductive wire clamping mechanism, the conductive wire receiving seats are upwardly provided with a plurality of V-shaped grooves, the conductive wire receiving seats are arranged at equal intervals and are driven by a conveying belt.
[0020] The device includes a straightening mechanism, which comprises a pressing seat arranged above the conductive wire receiving seat, the pressing seat is provided with a V-shaped protrusion matched with the V-shaped groove, the pressing seat is driven to move up and down by the corresponding cylinder, when the conductive wire receiving seat moves to the lower side of the pressing seat, the pressing seat is driven to move down, so that the V-shaped protrusion and the V-shaped groove are close to each other, and then the conductive wire in the V-shaped groove is straightened and shaped.
[0021] Further, the conductive wire inserting device comprises:
[0022] The wire inserting device wire feeding mechanism is used for receiving corresponding and transverse conductive wires;
[0023] The wire inserting device wire clamping mechanism comprises a first wire inserting device clamping piece and a wire inserting device transverse moving piece, the first wire inserting device clamping piece is driven to move transversely by the wire inserting device transverse moving piece, so that the wire inserting device wire feeding mechanism clamps the conductive wire;
[0024] The wire inserting device conductive wire positioning mechanism is used for storing the transverse conductive wire conveyed by the wire inserting device wire clamping mechanism;
[0025] The wire inserting device overturning mechanism comprises a second wire inserting device clamping piece, a wire inserting device rotating piece, and a first wire inserting device longitudinal moving piece, the wire inserting device rotating piece is driven to move transversely by the wire inserting device transverse moving piece, the wire inserting device rotating piece is driven to move up and down by the first wire inserting device longitudinal moving piece, the wire inserting device rotating piece can drive the second wire inserting device clamping piece to overturn, the second wire inserting device clamping piece in the transverse state can clamp the transverse conductive wire on the wire inserting device conductive wire positioning mechanism, after the second wire inserting device clamping piece is overturned, the second wire inserting device clamping piece in the longitudinal state is used to drive the longitudinal conductive wire to be inserted into the power supply terminal;
[0026] The wire inserting device aligning mechanism comprises a third wire inserting device clamping piece and a wire inserting device buffer piece, the third wire inserting device clamping piece is connected to the first wire inserting device longitudinal moving piece through the wire inserting device buffer piece, in the natural state of the wire inserting device buffer piece, the clamping end of the third wire inserting device clamping piece is located below the clamping end of the second wire inserting device clamping piece, and the clamping centers of the second wire inserting device clamping piece in the longitudinal state and the third wire inserting device clamping piece are located on the same vertical line.
[0027] Further, the second wire inserting device holder is provided with a wire spacing adjusting block, which is arranged on the clamping end of the second wire inserting device holder, and the wire spacing adjusting block is arranged at a spacing on the clamping end of the second wire inserting device holder. When the clamping end of the second wire inserting device holder is closed, the wire spacing adjusting block keeps the two conductive wires at a certain spacing after being clamped by the second wire inserting device holder. The width of the wire spacing adjusting block is the same as the spacing between the two wire terminals of the power terminal.
[0028] Further, the third wire inserting device holder can contact the upper surface of the corresponding light-emitting plate after being driven downward. The third wire inserting device holder continues to be driven downward, and the wire inserting device buffer is compressed so that the third wire inserting device holder abuts against the upper surface of the corresponding light-emitting plate. The second wire inserting device holder can continue to be driven downward so as to insert the conductive wire into the power terminal.
[0029] After the third wire inserting device holder abuts against the upper surface of the corresponding light-emitting plate, the clamping end of the third wire inserting device holder can clamp the power terminal, so as to shape and position the power terminal.
[0030] Further, the light-emitting plate is in a circular structure, and the edge of the light-emitting plate comprises a plurality of circular arc portions with the same center and straight line portions connected between adjacent circular arc portions. The light-emitting plate gluing device comprises a gluing mechanism longitudinal positioning mechanism, a gluing mechanism transverse positioning mechanism driven by the gluing mechanism longitudinal positioning mechanism, a gluing mechanism driving mechanism driven by the gluing mechanism transverse positioning mechanism, a gluing mechanism driven by the gluing mechanism driving mechanism, a light-emitting plate rotating mechanism arranged below the gluing mechanism, and a light-emitting plate left-right adjusting mechanism for driving the light-emitting plate rotating mechanism to move left and right.
[0031] The gluing mechanism longitudinal positioning mechanism is used for adjusting or positioning the height of the gluing mechanism driving mechanism.
[0032] The gluing mechanism transverse positioning mechanism is used for adjusting or positioning the horizontal distance between the gluing mechanism and the edge of the light-emitting plate.
[0033] The light-emitting plate rotating mechanism is used for fixing the light-emitting plate and rotating the light-emitting plate.
[0034] The gluing mechanism driving mechanism is used for driving the gluing mechanism to move up and down so that the glue outlet of the gluing mechanism is opposite to the edge of the light-emitting plate.
[0035] When the glue applying mechanism is above the arc-shaped part of the light-emitting plate, the light-emitting plate left-right adjusting mechanism fixes the rotation center of the light-emitting plate rotating mechanism, so that the glue applying mechanism draws a corresponding arc on the arc-shaped part of the light-emitting plate; when the glue applying mechanism is above the straight part of the light-emitting plate, the light-emitting plate left-right adjusting mechanism moves the rotation center of the light-emitting plate rotating mechanism, and the moving distance of the light-emitting plate left-right adjusting mechanism offsets the transverse component in the rotation of the edge of the light-emitting plate, so that the glue applying mechanism draws a corresponding straight line on the straight part of the light-emitting plate.
[0036] Further, the conductive wire straightening device comprises a straightening fixing mechanism, straightening pressing mechanisms arranged on both sides of the straightening fixing mechanism, and a straightening mechanism arranged at the rear side of the fixing mechanism.
[0037] The straightening fixing mechanism is used for fixing and placing the light-emitting plate.
[0038] The straightening pressing mechanisms are used for pressing the light-emitting plate.
[0039] The straightening mechanism comprises two oppositely arranged V-shaped straightening plates and a wire separator arranged in the middle of the V-shaped straightening plates; the wire separator is driven by a straightening mechanism front-rear positioning mechanism, the front side of the wire separator is provided with a sharp head, and the straightening mechanism front-rear positioning mechanism is used for pushing the sharp head into the middle position between the bottoms of the two conductive wires.
[0040] The V-shaped straightening plates are respectively driven by straightening mechanism left-right positioning mechanisms, the openings of the two V-shaped straightening plates are arranged staggered in up-down and front-rear directions, the two V-shaped straightening plates are arranged on both sides of the wire separator, and after the two V-shaped straightening plates are closed, the wire separator is located between the openings of the two V-shaped straightening plates, so that the two conductive wires are respectively located at the two openings.
[0041] The straightening mechanism front-rear positioning mechanism is driven by a straightening mechanism up-down positioning mechanism, and is used for simultaneously lifting the V-shaped straightening plates and the wire separator from bottom to top, so that the two conductive wires are straightened.
[0042] Further, the lampshade mounting device comprises a conductive wire sleeving mechanism, a lampshade clamping mechanism, and a lampshade clamping mechanism driving mechanism.
[0043] The conductive wire sleeving mechanism is vertically arranged above the V-shaped straightening plate and the wire separator, the V-shaped straightening plate and the wire separator are raised to straighten two conductive wires, the conductive wire sleeving mechanism is opposite to the two conductive wires, the upper end of the conductive wire sleeving mechanism is provided with the lampshade clamping mechanism, the conductive wire sleeving mechanism penetrates into the bottom surface of the lampshade from the upper end of the lampshade after the lampshade clamping mechanism clamps the lampshade, the V-shaped straightening plate and the wire separator are withdrawn, and the lampshade clamping mechanism driving mechanism drives the conductive wire sleeving mechanism and the lampshade clamping mechanism to move downward, so that the conductive wire penetrates out of the upper end of the lampshade, and the lampshade is installed on the light-emitting plate.
[0044] Therefore, the present application provides the following effects and / or advantages:
[0045] The present application realizes the processing, wiring, straightening and lampshade installation of the conductive wire of the columnar lamp through the continuous structure arrangement, and realizes the production and processing of the columnar lamp through the production line.
[0046] The conductive wire stripping mechanism, the conductive wire clamping mechanism and the conductive wire stripping mechanism can strip the two ends of the conductive wire and cut the conductive wire into a fixed length at the same time.
[0047] The cooperation of the wiring device alignment mechanism and the wiring device overturning mechanism can overturn the conductive wire into a longitudinal state first, and then position the power wire terminal through the wiring device alignment mechanism, and under the structure that the clamping center of the second wiring device clamping piece and the clamping center of the third wiring device clamping piece are located on the same vertical line in the longitudinal state, the conductive wire can be inserted into the conductive wire terminal clamped by the third wiring device clamping piece as long as the second wiring device clamping piece moves downward, solving various problems such as difficult alignment, terminal deviation and head skew in the prior art.
[0048] The cooperation of the light-emitting plate rotating mechanism and the light-emitting plate left-right adjusting mechanism enables the glue applying mechanism to draw a corresponding arc line on the arc-shaped part of the light-emitting plate when the glue applying mechanism is opposite to the arc-shaped part of the light-emitting plate, and enables the glue applying mechanism to draw a corresponding straight line on the straight line part of the light-emitting plate when the glue applying mechanism is opposite to the straight line part of the light-emitting plate, through the movement of the light-emitting plate left-right adjusting mechanism to offset the horizontal displacement component in the process of rotating the edge of the light-emitting plate, so that the glue applying mechanism keeps moving.
[0049] The two electric conductive wires are separated from the bottom by the wire separator, and are separated and straightened from bottom to top by the cooperation of the V-shaped straightening plate, so that the crossing and bending of the two conductive wires are effectively avoided, the conductive wire sleeving mechanism is aligned above the straightened conductive wires, the two electric conductive wires are sleeved by the conductive wire sleeving mechanism, and then the lampshade is installed, so that the assembly and production of the columnar lamp can be realized.
[0050] It should be understood that the foregoing summary of the application and the following detailed description are exemplary and explanatory only and are intended to provide further explanation of the application as claimed. BRIEF DESCRIPTION OF DRAWINGS
[0051] Figure 1 Structure diagram of prior art column type lamp.
[0052] Figure 2 Structure diagram of embodiment of the application.
[0053] Figure 3 Structure diagram of conductive wire processing device.
[0054] Figure 4 Structure diagram of conductive wire conveying mechanism and straightening mechanism.
[0055] Figure 5 Structure diagram of conductive wire conveying mechanism.
[0056] Figures 6-7 Working process diagram of conductive wire conveying mechanism.
[0057] Figure 8 Structure diagram of conductive wire stripping mechanism.
[0058] Figure 9 Structure diagram of conductive wire clamping mechanism.
[0059] Figure 10 Structure diagram of conductive wire receiving seat and straightening mechanism.
[0060] Figure 11 Conductive wire after processing of the application.
[0061] Figure 12 Structure diagram of embodiment of conductive wire inserting device.
[0062] Figure 13 Structure diagram of embodiment of conductive wire inserting device hidden inserting device overturning mechanism and inserting device aligning mechanism.
[0063] Figure 14 Structure diagram of wire inserting mechanism.
[0064] Figure 15 Conductive wire being clamped by second inserting device clamping member in transverse direction.
[0065] Figure 16 Conductive wire being overturned by second inserting device clamping member in longitudinal direction.
[0066] Figure 17 Fig. 2 is a schematic view of the second cable clip in a natural state.
[0067] Figure 18 Fig. 3 is a schematic view of the second cable clip in a state of driving the conductive wire to be inserted into the power terminal.
[0068] Figure 19 Fig. 4 is an enlarged view of part A of Fig. 3. Figure 18
[0069] Figure 20 Fig. 5 is an enlarged view of part B of Fig. 3. Figure 16
[0070] Figure 21 Fig. 6 is a schematic view of the whole structure of the glue coating device.
[0071] Figure 22 Fig. 7 is a schematic view of the movement of the glue coating device.
[0072] Figure 23 Fig. 8 is a sectional view of the longitudinal positioning mechanism of the glue coating mechanism.
[0073] Figure 24 Fig. 9 is a schematic view of the lateral positioning mechanism of the glue coating mechanism.
[0074] Figure 25 Fig. 10 is a schematic view of the driving mechanism of the glue coating mechanism.
[0075] Figure 26 Fig. 11 is a schematic view of the glue coating mechanism.
[0076] Figure 27 Fig. 12 is a schematic view of the light emitting plate rotating mechanism.
[0077] Figure 28 Fig. 13 is a schematic view of the light emitting plate left-right adjusting mechanism.
[0078] Figure 29 Fig. 14 is a schematic view of the whole structure of the conductive wire straightening device.
[0079] Figure 30 Fig. 15 is a top view of the conductive wire straightening device.
[0080] Figure 31 Fig. 16 is a side view of the conductive wire straightening device.
[0081] Figure 32 Fig. 17 is a schematic view of the straightening fixing mechanism.
[0082] Figure 33 Fig. 18 is a schematic view of the straightening pressing mechanism.
[0083] Figure 34 Fig. 19 is a schematic view of the front-rear positioning mechanism of the straightening mechanism.
[0084] Figure 35 is a structure diagram of the straightening mechanism left and right positioning mechanism.
[0085] Figure 36 is a front view of the lampshade mounting device.
[0086] Figure 37 is a structure diagram of the rear side of the lampshade mounting device.
[0087] Figure 38 is a working flow diagram of the conductive wire straightening device and the lampshade mounting device.
[0088] Figure 39 is a structure diagram of the hanging edge wire device. DETAILED DESCRIPTION
[0089] In order to facilitate the understanding of those skilled in the art, the structure of the present application will be further described in detail in combination with the drawings:
[0090] Reference Figure 2 A column lamp assembly production line, comprising:
[0091] The wiring terminal output device 1 is used to output the power wiring terminal. In this embodiment, the power wiring terminal is realized by a vibrating feeder.
[0092] The wiring terminal mounting device 2 is used to mount the power wiring terminal output by the wiring terminal output device 1 to the light-emitting plate. This embodiment is a prior art, which mounts the power wiring terminal by clamping and aligning the power wiring terminal to the corresponding position of the light-emitting plate.
[0093] In this embodiment, the wiring terminal output device 1 and the wiring terminal mounting device 2 are both prior arts, and their specific structures and working principles are not described here.
[0094] The conductive wire processing device 3 is used to cut the conductive wire into a set length and strip the conductive wire to expose the battery core.
[0095] The conductive wire wiring device 6 is used to accept the conductive wire processed by the conductive wire processing device 3 and insert the conductive wire into the light-emitting plate.
[0096] The light-emitting plate gluing device 4 is used to accept the light-emitting plate processed by the conductive wire wiring device 6 and glue the edge of the light-emitting plate.
[0097] The conductive wire straightening device 5 is used to accept the light-emitting plate processed by the light-emitting plate gluing device 4 and straighten the conductive wire on the light-emitting plate vertically.
[0098] The lampshade mounting device 504 is used to align the straightened conductive wire to fit into the lampshade, so that the lampshade is attached to the edge of the light-emitting plate, and the assembled column lamp is obtained.
[0099] refer to Figures 3-10 , a conductive wire processing device, comprising:
[0100] refer to Figure 8 The conductive wire stripping mechanism 303 is arranged at the output end of the first conductive wire positioning member 3013. The conductive wire stripping mechanism 303 includes a group of cutters 3031 that can be separated or brought together. When a group of cutters 3031 are brought together, they can cut the conductive wire or cut the outer skin of the conductive wire.
[0101] Furthermore, the conductive wire stripping mechanism 303 includes a conductive wire stripping screw assembly 3032, which is a bidirectional screw assembly with positive and negative teeth. The conductive wire stripping screw assembly 3032 drives a group of cutters 3031 to separate or move closer.
[0102] Furthermore, the cutters 3031 are of a V-shaped structure, and the openings of a group of the cutters 3031 are arranged opposite to each other, and a group of the cutters 3031 are respectively distributed above and below the second conductive wire positioning member 3022.
[0103] Furthermore, when the conductive wire stripping screw assembly 3032 drives a group of the cutters 3031 to move closer together, the outer skin of the conductive wire can be cut open; when the conductive wire stripping screw assembly 3032 drives a group of the cutters 3031 to overlap, the conductive wire can be cut off.
[0104] In this embodiment, the cutter 3031 is a V-shaped structure with openings facing each other, so that when the cutter 3031 moves toward the middle, an incision can be formed, allowing the conductive wire to fall into the incision, thereby cutting the conductive wire or cutting the outer skin.
[0105] The conductive wire feeding mechanism 301 includes a conductive wire input member 3011, a conductive wire end exposing member 3012, and a first conductive wire positioning member 3013, which are connected in sequence. The first conductive wire positioning member 3013 can clamp one end of the conductive wire. The conductive wire input member 3011 can drive the first conductive wire positioning member 3013 to extend, thereby inputting a certain length of conductive wire. The conductive wire end exposing member 3012 can drive the first conductive wire positioning member 3013 to retract and then extend, thereby exposing a section of the conductive wire end outside the first conductive wire positioning member 3013.
[0106] In this embodiment, the conductive wire input member 3011 is used to output a certain length of conductive wire according to the preset output, and the conductive wire can be output from the unwinding device to be extracted by the conductive wire input member 3011. Then, the conductive wire end exposure member 3012 is used to control the output of the end of the conductive wire by a small distance as the conductive wire end, which is used for subsequent stripping. The first conductive wire positioning member 3013 is used to clamp or position the end of the conductive wire, so that it can be output by the conductive wire input member 3011 and the conductive wire end exposure member 3012.
[0107] Reference Figures 4-5 Further, the conductive wire conveying mechanism 301 includes a conductive wire conveying fixed frame 3014, the conductive wire input member 3011 and the conductive wire end exposure member 3012 are air cylinders, the conductive wire input member 3011 is fixedly arranged on the conductive wire conveying fixed frame 3014, the output end of the conductive wire input member 3011 is connected to the conductive wire end exposure member 3012, and the output end of the conductive wire end exposure member 3012 is connected to the first conductive wire positioning member 3013.
[0108] In this embodiment, the structure of the conductive wire input member 3011 and the conductive wire end exposure member 3012 as air cylinders is used as the basis, and by the extension of the conductive wire input member 3011, the first conductive wire positioning member 3013 clamping the end of the conductive wire can output a certain length of conductive wire. Then, referring to Figure 6 The first conductive wire positioning member 3013 releases the end of the conductive wire, and the conductive wire end exposure member 3012 retracts by a small distance, referring to Figure 7 The first conductive wire positioning member 3013 clamps the end of the conductive wire again, and then the conductive wire end exposure member 3012 extends by a small distance, at which time the conductive wire end is exposed. Finally, the blades of the conductive wire stripping mechanism 303 are closed to cut open the outer skin of the conductive wire, the conductive wire end exposure member 3012 retracts, and the outer skin is separated from the conductive wire end.
[0109] Further, the conductive wire conveying fixed frame 3014 is connected with a first conductive wire positioning member mounting plate 3015, the first conductive wire positioning member mounting plate 3015 is an L-shaped structure, the first conductive wire positioning member 3013 is an air cylinder, and the first conductive wire positioning member 3013 is mounted on the vertical part of the first conductive wire positioning member mounting plate 3015. After the first conductive wire positioning member 3013 extends, it can abut against the horizontal part of the first conductive wire positioning member mounting plate 3015 to position one end of the conductive wire.
[0110] The first conductive wire positioning member 3013 is installed on the first conductive wire positioning member mounting plate 3015, and the piston cylinder of the first conductive wire positioning member 3013 is directed to the transverse part of the first conductive wire positioning member mounting plate 3015, thereby providing a clamping structure base.
[0111] Further, the first conductive wire positioning member mounting plate 3015 is provided with a plurality of conductive wire guide tubes 3016, and the conductive wire can be stretched out from the conductive wire guide tube 3016 after passing through the first conductive wire positioning member mounting plate 3015.
[0112] In this embodiment, the conductive wire guide tube 3016 can provide a guiding effect for the conductive wire, so that it can be accurately output to the input end of the conductive wire clamping mechanism 302.
[0113] Referring to Figure 9 , the conductive wire clamping mechanism 302 includes a conductive wire output member 3021 and a second conductive wire positioning member 3022, the conductive wire output member 3021 can drive the second conductive wire positioning member 3022 to move, and the second conductive wire positioning member 3022 can clamp one end of the conductive wire.
[0114] In this embodiment, the conductive wire output member 3021 is a lead screw, and the second conductive wire positioning member 3022 is a finger air cylinder. The conductive wire output member 3021 can pull out a certain length of the conductive wire clamped by the finger air cylinder, which is used to control the length of the conductive wire to be cut off. The second conductive wire positioning member 3022 can also position one end of the conductive wire to limit it.
[0115] The function of the conductive wire clamping mechanism 302 is to obtain a conductive wire end of a bare battery cell under the operation of the conductive wire conveying mechanism 301 as shown in Figure 7 At this time, the conductive wire clamping mechanism 302 pulls out a certain distance of the conductive wire, the first conductive wire positioning member 3013 clamps one end of the conductive wire end of the bare battery cell, the blades of the conductive wire stripping mechanism 303 are closed to cut the outer skin of the conductive wire, the conductive wire output member 3021 is pulled away from the conductive wire to make the outer skin separate from the conductive wire end, and then the cutting knife of the conductive wire stripping mechanism 303 cuts the conductive wire, so that the conductive wire with both ends bare battery cell is obtained.
[0116] Further, referring to Figure 4 , the whole wire mechanism 304 is arranged at the input end of the conductive wire conveying mechanism 301, and the whole wire mechanism 304 includes a plurality of upper and lower staggered supporting rollers, which are used to straighten the conductive wire when it passes through.
[0117] In this embodiment, through the upper and lower staggered arrangement of the supporting rollers, when the conductive wire passes between the upper and lower staggered supporting rollers, the supporting rollers can straighten the originally curled, deformed and twisted conductive wire as much as possible to make it similar to a straight line.
[0118] Further, a plurality of conductive wire receiving seats 305 are arranged at the lower end of the conductive wire clamping mechanism 302, and a plurality of V-shaped grooves are arranged upwardly on the conductive wire receiving seats 305, and the conductive wire receiving seats 305 are arranged at equal intervals and are driven by a conveyor belt 306.
[0119] The conductive wire receiving seat 305 can receive the conductive wire cut into a fixed length and with the bare core at both ends, and when the second conductive wire positioning member 3022 moves above the conductive wire receiving seat 305, the conductive wire receiving seat 305 releases the conductive wire, so that the conductive wire naturally falls into the conductive wire receiving seat 305.
[0120] Further, referring to Figure 10 , a wire pressing mechanism 307 is arranged above the conductive wire receiving seat 305, and the wire pressing mechanism 307 includes a wire pressing seat provided with a V-shaped protrusion matched with the V-shaped groove, and the wire pressing seat is driven to move up and down, and when the conductive wire receiving seat 305 moves below the wire pressing seat, the wire pressing seat is driven to move downward, so that the V-shaped protrusion and the V-shaped groove are close to each other, and then the conductive wire in the V-shaped groove is pressed and shaped.
[0121] The wire pressing seat is driven to move downward, so that the V-shaped protrusion and the V-shaped groove are close to each other, and the conductive wire in the V-shaped groove is pressed downward, so that the conductive wire maintains the linear structure at the bottom end of the V-shaped groove, thereby pressing the deformed conductive wire after shearing and peeling.
[0122] Further, referring to Figure 12 , the conductive wire inserting device 6 includes:
[0123] The wire inserting device wire feeding mechanism 601 is used to accept the corresponding and transverse conductive wire;
[0124] Referring to Figures 13-14 , in this embodiment, the wire inserting device wire feeding mechanism 601 can accept and temporarily store the conductive wire transferred from the previous station, and the conductive wire on the wire inserting device wire feeding mechanism 601 is in a transverse state.
[0125] The wire inserting device wire clamping mechanism 602 includes a first wire inserting device clamping member 6021 and a wire inserting device transverse moving member 6022, and the first wire inserting device clamping member 6021 is driven by the wire inserting device transverse moving member 6022 to move transversely, so that the wire inserting device wire feeding mechanism 602 clamps the conductive wire;
[0126] The first wire inserting device holder 6021 is driven by the wire inserting device transverse moving member 6022 to move transversely above the wire inserting device wire feeding mechanism 601, so that the first wire inserting device holder 6021 can clamp the transverse conductive wire on the wire inserting device wire feeding mechanism 601. In this embodiment, the first wire inserting device holder 6021 is connected with the wire inserting device transverse moving member 6022 through the second wire inserting device longitudinal moving member 6023, so that the up and down position of the first wire inserting device holder 6021 can be controlled.
[0127] The wire inserting device conductive wire positioning mechanism 603 is used to store the transverse conductive wire delivered by the wire inserting device wire clamping mechanism 602;
[0128] Reference Figures 15-16 In this embodiment, the wire inserting device conductive wire positioning mechanism 603 has the same structure as the wire inserting device wire feeding mechanism 601. The wire inserting device transverse moving member 6022 is used to drive the first wire inserting device holder 6021 to move back and forth between the wire inserting device conductive wire positioning mechanism 603 and the wire inserting device wire feeding mechanism 601, so as to deliver the transverse conductive wire and temporarily store the conductive wire in the wire inserting device conductive wire positioning mechanism 603.
[0129] The wire inserting device overturning mechanism 604 includes a second wire inserting device holder 6041, a wire inserting device rotating member 6042, and a first wire inserting device longitudinal moving member 6043. The wire inserting device rotating member 6042 is driven by the wire inserting device transverse moving member 6022 to move transversely. The wire inserting device rotating member 6042 is driven by the first wire inserting device longitudinal moving member 6043 to move up and down. The wire inserting device rotating member 6022 can drive the second wire inserting device holder 6041 to overturn. The second wire inserting device holder 6041 in the transverse state can clamp the transverse conductive wire on the wire inserting device conductive wire positioning mechanism 603. After the second wire inserting device holder 6041 is overturned, the second wire inserting device holder 6041 in the longitudinal state is used to drive the longitudinal conductive wire towards the power supply terminal wire insertion;
[0130] In this embodiment, the wire inserting device rotating member 6022 can drive the second wire inserting device holder 6041 to overturn, so as to overturn the second wire inserting device holder 6041 from the transverse state to the longitudinal state. The second wire inserting device holder 6041 in the transverse state can operate to the wire inserting device wire clamping mechanism 602 to clamp one end of the conductive wire. Referring to Figure 15 At this time, the wire end of the conductive wire protrudes from the clamping end of the second wire inserting device holder 6041, and the second wire inserting device holder 6041 is overturned. Referring to Figure 16The conductive wire is flipped to be vertical. Finally, the second wire inserting device holder 6041 is moved downward to insert the conductive wire into the power terminal.
[0131] The wire inserting device alignment mechanism 605 includes a third wire inserting device holder 6051 and a wire inserting device buffer 6052. The third wire inserting device holder 6051 is connected to the first wire inserting device vertical moving member 6043 through the wire inserting device buffer 6052. In the natural state, the clamping end of the third wire inserting device holder 6051 is below the clamping end of the second wire inserting device holder 6041, and the clamping center of the second wire inserting device holder 6041 in the vertical state and the clamping center of the third wire inserting device holder 6051 are on the same vertical line.
[0132] Reference Figure 17 In the natural state of the wire inserting device buffer 6052, that is, when the wire inserting device buffer 6052 is not compressed, the clamping end of the third wire inserting device holder 6051 is below the clamping end of the second wire inserting device holder 6041. The wire inserting device buffer 6052 can be composed of a spring and a wire rail, and the third wire inserting device holder 6051 is connected to the wire rail, so that it can be buffered by the spring. At this time, as shown in Figure 20 the conductive wire is above the third wire inserting device holder 6051.
[0133] Further, after the third wire inserting device holder 6051 is driven downward, it can contact the upper surface of the corresponding light-emitting plate. After the third wire inserting device holder 6051 is continuously driven downward, the wire inserting device buffer 6052 is compressed so that the third wire inserting device holder 6051 abuts against the upper surface of the corresponding light-emitting plate, and the second wire inserting device holder 6041 can be continuously driven downward to insert the conductive wire into the power terminal.
[0134] Further, after the third wire inserting device holder 6051 abuts against the upper surface of the corresponding light-emitting plate, the clamping end of the third wire inserting device holder 6051 can clamp the power terminal, thereby shaping and positioning the power terminal.
[0135] Reference Figures 18-19, the third wire device holder 6051 is driven to move downward, the wire device buffer 6052 is compressed to make the third wire device holder 6051 abut against the upper surface of the corresponding light-emitting plate. At this time, the power supply wiring terminal is between the two clamping fingers of the third wire device holder 6051. At this time, the two clamping fingers of the third wire device holder 6051 can be controlled to close together. Due to the different positioning angles of the light-emitting plate and the possible skew and distortion of the power supply wiring terminal, the two clamping fingers of the third wire device holder 6051 can fine-tune the light-emitting plate to a fixed angle and fix the orientation of the power supply wiring terminal, that is, the position of the wiring end of the power supply wiring terminal is fixed at this time. Since the clamping center of the second wire device holder 6041 in the vertical state and the clamping center of the third wire device holder 6051 are located on the same vertical line. At this time, as long as the second wire device holder 6041 is continuously driven downward, the conductive wire clamped by the second wire device holder 6041 can be inserted into the power line wiring terminal.
[0136] Further, the wire spacing adjusting block 606 is arranged at the clamping end of the second wire device holder 6041. The wire spacing adjusting block 606 is arranged at the clamping end of the second wire device holder 6041 in a spaced manner. After the clamping end of the second wire device holder 6041 is closed, the wire spacing adjusting block 606 makes the two conductive wires clamped by the second wire device holder 6041 maintain a certain spacing.
[0137] In this embodiment, the wire spacing adjusting block 606 is arranged at the clamping end of the second wire device holder 6041 in a spaced manner, so that the second wire device holder 6041 can clamp two conductive wires at a time. In order to adapt to the center distance of the two wiring ends of the power supply wiring terminal, the wire spacing adjusting block 606 makes the two conductive wires apart by a certain center distance, so that the wires can be inserted into the wiring terminal.
[0138] Further, the width of the wire spacing adjusting block 606 is the same as the spacing of the two wiring ends of the power supply wiring terminal. In this structure, the two conductive wires can be directly inserted.
[0139] Further, the light-emitting plate placing disc 607 can be driven to rotate, and the light-emitting plate placing disc 607 is used to place the corresponding light-emitting plate.
[0140] In this embodiment, the light-emitting plate placing disc 607 also has another function, which is to rotate the light-emitting plate by a certain angle. After being transferred to the light-emitting plate placing disc 607 in the previous work station, the light-emitting plate placing disc 607 serves as the feeding end of the wire insertion device, and the light-emitting plate placing disc 607 needs to adjust the light-emitting plate to a certain angle to match the wire insertion direction of the wire insertion device. Since the angle of the light-emitting plate transferred to the light-emitting plate placing disc 607 in the previous work station is fixed, in this embodiment, the light-emitting plate placing disc 607 needs to rotate the light-emitting plate by a certain angle to make the power terminal of the light-emitting plate face the second wire insertion device clamping piece 6041 according to the wire insertion position of the second wire insertion device clamping piece 6041.
[0141] Further, the wire insertion device transverse moving piece is a horizontally arranged screw rod assembly, the wire insertion device transverse moving piece 6022 is driven by a wire insertion device mounting plate 6023, the wire insertion device mounting plate 6023 is provided with the first wire insertion device longitudinal moving piece 6043 and the second wire insertion device longitudinal moving piece 6023, and the second wire insertion device longitudinal moving piece 6023 is driven by the wire insertion device wire clamping mechanism 602.
[0142] Further, the wire insertion device rotating piece 6042 is a rotary cylinder, and the wire insertion device rotating piece 6042 is arranged on the wire insertion device mounting plate 6023.
[0143] As shown in Figure 1 A lampshade gluing device suitable for a columnar lamp is used for edge gluing of a light-emitting plate, the light-emitting plate is of a circular structure, and the edge of the light-emitting plate comprises a plurality of circular arc parts with the same center and straight line parts connected between adjacent circular arcs.
[0144] The device comprises a gluing mechanism longitudinal positioning mechanism 401, a gluing mechanism transverse positioning mechanism 402 driven by the gluing mechanism longitudinal positioning mechanism 401, a gluing mechanism driving mechanism 403 driven by the gluing mechanism transverse positioning mechanism 402, a gluing mechanism 404 driven by the gluing mechanism driving mechanism 403, a light-emitting plate rotating mechanism 405 arranged below the gluing mechanism 404, and a light-emitting plate left-right adjusting mechanism 406 for driving the light-emitting plate rotating mechanism 405 to move left and right.
[0145] The gluing mechanism longitudinal positioning mechanism 401 is used for adjusting or positioning the height of the gluing mechanism driving mechanism 403.
[0146] The gluing mechanism transverse positioning mechanism 402 is used for adjusting or positioning the horizontal distance between the gluing mechanism 404 and the edge of the light-emitting plate.
[0147] The light-emitting plate rotating mechanism 405 is used for fixing the light-emitting plate and rotating it.
[0148] The glue applying mechanism driving mechanism 403 is used to drive the glue applying mechanism 404 to move up and down, so that the glue outlet of the glue applying mechanism 404 is right above the edge of the light emitting plate;
[0149] When the glue applying mechanism 404 is right above the arc part of the light emitting plate, the light emitting plate left-right adjusting mechanism 406 is fixed, the rotation center of the light emitting plate rotating mechanism 405 is moved, so that the glue applying mechanism 404 draws a corresponding arc on the arc part of the light emitting plate; when the glue applying mechanism 404 is right above the straight part of the light emitting plate, the light emitting plate left-right adjusting mechanism 406 moves the rotation center of the light emitting plate rotating mechanism 405, and the moving distance of the light emitting plate left-right adjusting mechanism 406 offsets the horizontal shift component in the rotation process of the edge of the light emitting plate, so that the glue applying mechanism 405 draws a corresponding straight line on the straight part of the light emitting plate.
[0150] In this embodiment, the adjusting stroke of the light emitting plate rotating mechanism 405 and the light emitting plate left-right adjusting mechanism 406 has been set in advance, and the rotation of the light emitting plate starts from the fixed position, so that it is not necessary to make real-time judgment on the arc part and the straight part of the edge of the circuit board, and it is not necessary to use a too complex control method such as visual detection.
[0151] Further, as shown in Figure 21 The light emitting plate glue applying device 4 is used for applying glue to the edge of the light emitting plate, the light emitting plate is of a circular structure, and the edge of the light emitting plate includes a plurality of arc parts with the same center and straight parts connected between adjacent arc parts.
[0152] The glue applying device includes a glue applying mechanism longitudinal positioning mechanism 401, a glue applying mechanism transverse positioning mechanism 402 driven by the glue applying mechanism longitudinal positioning mechanism 401, a glue applying mechanism driving mechanism 403 driven by the glue applying mechanism transverse positioning mechanism 402, a glue applying mechanism 404 driven by the glue applying mechanism driving mechanism 403, a light emitting plate rotating mechanism 405 arranged below the glue applying mechanism 404, and a light emitting plate left-right adjusting mechanism 406 for driving the light emitting plate rotating mechanism 405 to move left and right.
[0153] The glue applying mechanism longitudinal positioning mechanism 401 is used to adjust or position the height of the glue applying mechanism driving mechanism 403.
[0154] The glue applying mechanism transverse positioning mechanism 402 is used to adjust or position the horizontal distance between the glue applying mechanism 404 and the edge of the light emitting plate.
[0155] The glue applying mechanism transverse positioning mechanism 402 is used to adjust or position the horizontal distance between the glue applying mechanism 404 and the edge of the light emitting plate.
[0156] The gluing mechanism driving mechanism 403 is used to drive the gluing mechanism 404 to move up and down so that the glue outlet of the gluing mechanism 404 is directly above the edge of the light-emitting panel;
[0157] like Figure 22 As shown, when the gluing mechanism 404 is directly above the arc-shaped portion of the light-emitting panel, the light-emitting panel left-right adjustment mechanism 406 is fixed, and the rotation center of the light-emitting panel rotation mechanism 405 causes the gluing mechanism 404 to draw a corresponding arc on the arc-shaped portion of the light-emitting panel. When the gluing mechanism 404 is directly above the straight portion of the light-emitting panel, the light-emitting panel left-right adjustment mechanism 406 moves the rotation center of the light-emitting panel rotation mechanism 405. The moving distance of the light-emitting panel left-right adjustment mechanism 406 offsets the lateral displacement component during the rotation of the edge of the light-emitting panel, so that the gluing mechanism 405 draws a corresponding straight line on the straight portion of the light-emitting panel.
[0158] In this embodiment, the adjustment strokes of the light-emitting panel rotation mechanism 405 and the light-emitting panel left-right adjustment mechanism 406 have been set in advance, and the light-emitting panel starts rotating and applying glue at a fixed position. Therefore, there is no need to make a real-time judgment on the arc portion and the straight portion of the edge of the circuit board, and there is no need to use overly complex control methods such as visual detection.
[0159] Further, if Figure 23 As shown, the gluing mechanism longitudinal positioning mechanism 401 includes: a gluing mechanism longitudinal positioning handle 4011, a gluing mechanism longitudinal positioning screw 4012, a gluing mechanism longitudinal positioning nut 4013, a gluing mechanism longitudinal positioning sliding block 4014, a gluing mechanism longitudinal positioning sliding housing 4015, and a gluing mechanism longitudinal positioning fixing seat 4016;
[0160] The longitudinal positioning screw rod 4012 of the gluing mechanism is arranged longitudinally, the longitudinal positioning handle 4011 of the gluing mechanism is arranged at the top of the longitudinal positioning screw rod 4012 of the gluing mechanism, the longitudinal positioning nut 4013 of the gluing mechanism is threadedly connected to the longitudinal positioning screw rod 4012 of the gluing mechanism, the longitudinal positioning sliding shell 4015 of the gluing mechanism is sleeved on the longitudinal positioning screw rod 4012 of the gluing mechanism and the longitudinal positioning nut 4013 of the gluing mechanism, and the longitudinal positioning sliding block 4014 of the gluing mechanism is sleeved on the longitudinal positioning screw rod 4012 of the gluing mechanism and the longitudinal positioning nut 4013 of the gluing mechanism. On the longitudinal positioning sliding shell 4015 of the gluing mechanism, a long strip opening is provided on the rear side of the longitudinal positioning sliding shell 4015 of the gluing mechanism, and the longitudinal positioning nut 4013 of the gluing mechanism is connected with the longitudinal positioning sliding block 4014 of the gluing mechanism at the long strip opening, driving the longitudinal positioning sliding block 4014 of the gluing mechanism to rise and fall longitudinally, and the longitudinal positioning sliding block 4014 of the gluing mechanism is connected with the transverse positioning mechanism 402 of the gluing mechanism, driving the transverse positioning mechanism 402 of the gluing mechanism to rise and fall longitudinally.
[0161] In the embodiment, the glue applying mechanism longitudinal positioning mechanism is arranged to artificially coarsely adjust the glue applying mechanism in advance, so as to avoid that the glue applying mechanism is far away from the edge of the light-emitting plate and the glue applying is not accurate.
[0162] Further, as shown in the figure, the glue applying mechanism transverse positioning mechanism 402 comprises a glue applying mechanism transverse positioning handle 4021, a glue applying mechanism transverse positioning screw rod 4022, a glue applying mechanism transverse positioning nut 4023, a glue applying mechanism transverse positioning sliding rail 4024 and a glue applying mechanism transverse positioning sliding block 4025. Figure 24 The glue applying mechanism transverse positioning screw rod 4022 is horizontally arranged above the side of the glue applying mechanism longitudinal positioning sliding block 4014 facing the light-emitting plate, the glue applying mechanism transverse positioning handle 4021 is arranged at one end of the glue applying mechanism transverse positioning screw rod 4022, the glue applying mechanism transverse positioning screw rod 4022 is threadedly connected with the glue applying mechanism transverse positioning nut 4023, the glue applying mechanism transverse positioning nut 4023 is connected to the rear side of the glue applying mechanism driving mechanism 403, the glue applying mechanism transverse positioning sliding rail 4024 is horizontally arranged at the side of the glue applying mechanism longitudinal positioning sliding block 4014 facing the light-emitting plate, the glue applying mechanism transverse positioning sliding rail 4024 is slidingly connected with the glue applying mechanism transverse positioning sliding block 4025, and the glue applying mechanism transverse positioning sliding block 4025 is connected to the rear side of the glue applying mechanism driving mechanism 403. Rotating the glue applying mechanism transverse positioning handle 4021 makes the glue applying mechanism transverse positioning nut 4023 rotate and move on the glue applying mechanism transverse positioning screw rod 4022, so as to drive the glue applying mechanism driving mechanism 403 to move transversely.
[0163] In the embodiment, the glue applying mechanism transverse positioning mechanism can be used to artificially coarsely adjust the glue applying mechanism transversely, so as to ensure that the glue head of the glue applying mechanism can be aligned with the edge of the light-emitting plate.
[0164] Further, as shown in the figure, the glue applying mechanism driving mechanism 403 comprises a glue applying mechanism driving fixed plate 4031, a glue applying mechanism driving cylinder 4032, a glue applying mechanism driving sliding rail 4033 and a glue applying mechanism driving sliding block 4034.
[0165] Figure 25
[0166] The gluing mechanism driving fixed plate 4031 is vertically fixed to the same side of the gluing mechanism transverse positioning nut 4023 and the gluing mechanism transverse positioning slider 4025, the gluing mechanism driving cylinder 4032 is fixed on the top of the gluing mechanism driving fixed plate 4031, the gluing mechanism driving slide rail 4033 is vertically provided on the front side of the gluing mechanism driving fixed plate 4031, the gluing mechanism driving slide rail 4033 and the gluing mechanism driving slider 4034 are slidingly connected, the upper part of the gluing mechanism driving slider 4034 is connected to the gluing mechanism driving cylinder 4032, which is used to drive the gluing mechanism driving slider 4034 to slide on the gluing mechanism driving slide rail 4033, the front side of the gluing mechanism driving slider 4034 is connected to the gluing mechanism 404, thereby driving the gluing mechanism 404 to slide up and down.
[0167] In this embodiment, the gluing mechanism driving mechanism is used for fine adjustment of the gluing mechanism to ensure that the glue head of the gluing mechanism can be aligned with the edge of the light-emitting panel.
[0168] Further, if Figure 26 As shown, the glue coating mechanism 404 includes: a glue barrel 4041, a glue barrel piston 4042 (not shown in the figure), and a glue coating motor 4043;
[0169] The glue barrel 4041 is arranged on the side of the glue-coating mechanism driving slider 4034 facing the light-emitting board. The glue barrel 4041 has the glue barrel piston 4042 built in. The glue barrel piston 4042 is driven by the glue-coating motor 4043 to make glue flow out of the glue outlet below the glue barrel 4041.
[0170] In this embodiment, the glue coating mechanism is used to automatically dispense glue at a constant and slow speed. The glue dispensing speed can be adjusted to adapt to the rotation speed of the light-emitting panel.
[0171] Further, if Figure 27 As shown, the light-emitting panel rotating mechanism 405 includes: a light-emitting panel turntable 4051, a light-emitting panel belt rotating assembly 4052, and a light-emitting panel rotating motor 4053;
[0172] A light-emitting board belt rotating assembly 4052 is provided below the light-emitting board turntable 4051 , and a light-emitting board rotating motor 4053 is provided below the light-emitting board belt rotating assembly 4052 for driving the light-emitting board belt rotating assembly 4052 to rotate and thereby drive the light-emitting board turntable to rotate.
[0173] In this embodiment, one or more light-emitting plate turntables can be provided, and the number thereof can be set according to actual production conditions, and the number of the corresponding gluing mechanisms can also be set accordingly.
[0174] Further, if Figure 28As shown, the light-emitting plate left-right adjusting mechanism 406 comprises a light-emitting plate first left-right horizontal moving plate 4061, a light-emitting plate second left-right horizontal moving plate 4062, a light-emitting plate left-right horizontal moving motor 4063, a light-emitting plate left-right horizontal moving slide rail 4064, a light-emitting plate left-right horizontal moving slide block 4065, and a light-emitting plate left-right horizontal moving fixed seat 4066.
[0175] The light-emitting plate first left-right horizontal moving plate 4061 is arranged below the light-emitting plate turntable 4051 and above the light-emitting plate belt rotating assembly 4052; the light-emitting plate second left-right horizontal moving plate 4062 is arranged below the light-emitting plate belt rotating assembly 4052 and above the light-emitting plate rotating motor 4053; the light-emitting plate first left-right horizontal moving plate 4061 and the light-emitting plate second left-right horizontal moving plate 4062 are arranged in a stacked manner and are connected in a sliding manner; the long side of the light-emitting plate second left-right horizontal moving plate 4062 is horizontally provided with the light-emitting plate left-right horizontal moving slide rail 4064; the inner side of the light-emitting plate left-right horizontal moving fixed seat 4066 is provided with the light-emitting plate left-right horizontal moving slide block 4065; the light-emitting plate left-right horizontal moving slide rail 4064 and the light-emitting plate left-right horizontal moving slide block 4065 are connected in an interactive manner; and the light-emitting plate left-right horizontal moving motor 4063 is arranged at one side of the short side of the light-emitting plate second left-right horizontal moving plate 4062 and is used to drive the second left-right horizontal moving plate 4062 to move left and right, thereby driving the light-emitting plate first left-right horizontal moving plate 4061 to move left and right.
[0176] Further, a light-emitting plate glue coating lifting assembly is arranged below the light-emitting plate first left-right horizontal moving plate 4061; a through hole is arranged in the middle of the second left-right horizontal moving plate 4062; the light-emitting plate glue coating lifting assembly passes through the through hole of the second left-right horizontal moving plate 4062 and is arranged to face the ground; and the light-emitting plate glue coating lifting assembly drives the light-emitting plate first left-right horizontal moving plate 4061 to move up and down.
[0177] Further, referring to Figure 29 , the conductive wire straightening device 5 comprises:
[0178] The conductive wire straightening device 5 is used for straightening two conductive wires on a light-emitting plate and comprises a straightening fixing mechanism 501, a straightening pressing mechanism 502 arranged on both sides of the straightening fixing mechanism, and a straightening mechanism 503 arranged at the rear side of the fixing mechanism.
[0179] The straightening fixing mechanism 501 is used for fixing and placing the light-emitting plate.
[0180] The straightening pressing mechanism 502 is used for pressing the light-emitting plate.
[0181] As Figure 2As shown, the straightening mechanism 503 includes two oppositely arranged V-shaped straightening plates 5031, and a wire separator 5032 arranged between the V-shaped straightening plates. The wire separator 5032 is driven by a front and back positioning mechanism 5033 of the straightening mechanism, and the front side of the wire separator 5032 is provided with a sharp head. The front and back positioning mechanism 5033 is used to push the sharp head into the middle position between the bottoms of the two conductive wires.
[0182] As shown in the figure, Figure 30 The V-shaped straightening plates 5031 are respectively driven by left and right positioning mechanisms 5034 of the straightening mechanism. The openings of the two V-shaped straightening plates 5031 are arranged staggered in up and down and front and back directions. The two V-shaped straightening plates 5031 are arranged on both sides of the wire separator 5032. After the two V-shaped straightening plates 5031 are closed, the wire separator 5032 is located between the openings of the two V-shaped straightening plates 5031, so that the two conductive wires are respectively located at the two openings.
[0183] As shown in the figure, Figure 31 The front and back positioning mechanism 5033 of the straightening mechanism is driven by an up and down positioning mechanism 5035 of the straightening mechanism, which is used to simultaneously raise the V-shaped straightening plates 5031 and the wire separator 5032 (not shown in the figure) from bottom to top, so that the two conductive wires are straightened.
[0184] In this embodiment, the two electric conductive wires are separated from the bottom by the wire separator. During the straightening process, the V-shaped straightening plates are raised from bottom to top at the same time, and the electric conductive wires are separated and straightened. The openings of the two V-shaped straightening plates are arranged staggered in up and down directions, and are respectively used for straightening the electric conductive wires on different sides. When the two V-shaped straightening plates are closed, collision between the two V-shaped straightening plates can be avoided, so that the two V-shaped straightening plates cannot be closed. The up and down positioning mechanism of the straightening mechanism uses a conventional belt assembly and a screw assembly to cooperate with the lifting. This technology is prior art, and will not be described here.
[0185] Further, as shown in the figure, Figure 32 The straightening fixing mechanism 501 includes a straightening fixing seat 5011, a straightening placement table 5012, a straightening fixing ring 5013, a straightening spring column 5014, and a straightening placement table longitudinal mechanism 5015.
[0186] The straightening fixing seat 5011 is internally provided with the straightening placement table 5012, the straightening placement table 5011 is a T-shaped column, the upper part of the straightening placement table 5011 is provided with the straightening fixing ring 5012, the straightening fixing ring 5012 has the same radius as the straightening placement table 5011, and the straightening fixing ring 5012 is used for buckling and fixing the light-emitting plate; the protruding table top of the straightening placement table 5011 is provided below with the straightening spring column 5013, which is used for buffering when the lampshade is installed; and the straightening placement table 5011 is provided below with the straightening placement table longitudinal mechanism 5014, which is used for adjusting the height of the straightening fixing mechanism.
[0187] In the embodiment, the light-emitting plate needs to be fixed in advance according to the fixed position to avoid deviation of the circuit board due to tension during the straightening process; because the straightening and pressing mechanism needs to be matched, the light-emitting plate is relatively thin, and a relatively large force is generated when the straightening and pressing mechanism is pressed downward, so the straightening spring column is needed for shock absorption, and the deformation of the light-emitting plate can be effectively avoided. The straightening placement table longitudinal mechanism is lifted by a belt assembly, a screw assembly and a motor, which is prior art, and will not be described here.
[0188] Further, as shown in Figure 33 The straightening and pressing mechanism 502 includes a straightening and pressing mechanism sliding rail 5021, a straightening and pressing mechanism sliding block 5022, a straightening and pressing mechanism finger air cylinder 5023, a straightening and pressing mechanism force arm rod 5024, a straightening and pressing mechanism pressing rod 5025 and a straightening and pressing mechanism sliding cylinder 5026.
[0189] The straightening and pressing mechanism sliding rail 5021 is arranged on the two sides of the straightening fixing mechanism 501, the straightening and pressing mechanism sliding rail 5021 is slidably connected with the straightening and pressing mechanism sliding block 5022, the straightening and pressing mechanism sliding block 5022 is connected with the straightening and pressing mechanism sliding cylinder 5026 at the rear side along the direction of the straightening and pressing mechanism sliding rail 5021, and the straightening and pressing mechanism sliding cylinder 5026 is used to drive the straightening and pressing mechanism sliding block 5022 to slide; the straightening and pressing mechanism sliding block 5022 is provided above with the straightening and pressing mechanism finger air cylinder 5023, the straightening and pressing mechanism finger air cylinder 5023 is horizontally arranged near the straightening fixing mechanism 501 side and provided with the straightening and pressing mechanism force arm rod 5024, the straightening and pressing mechanism force arm rod 5024 is vertically arranged near the straightening fixing mechanism 501 side and provided with the straightening and pressing mechanism pressing rod 5025, and the lower end of the straightening and pressing mechanism pressing rod 5025 presses the center of the light-emitting plate, so as to press the light-emitting plate.
[0190] In this embodiment, since the light-emitting plate is thin, the straightening and pressing mechanism needs to press the center position of the light-emitting plate to avoid deformation of the light-emitting plate. In order to ensure the accurate setting of the pressing position of the straightening and pressing mechanism, the straightening and pressing mechanism slide rail and the straightening and pressing mechanism slide block are arranged to enable the straightening and pressing mechanism to slide forward and backward for adjustment. The straightening and pressing mechanism only needs slight downward pressure to avoid deformation and rupture of the light-emitting plate, so the finger air cylinder of the straightening and pressing mechanism can meet the requirements.
[0191] Further, as shown in Figure 34 the straightening mechanism front and rear positioning mechanism 5033 includes a straightening mechanism front and rear sliding plate 50331, a straightening mechanism front and rear slide rail 50332, a straightening mechanism front and rear slide block 50333, a straightening mechanism front and rear sliding extension rod 50334, and a straightening mechanism front and rear sliding cylinder 50335.
[0192] The straightening mechanism front and rear sliding plate 50331 is arranged on the rear side of the straightening fixed mechanism 501. Vertical straightening mechanism front and rear slide rails 50332 are arranged on both sides of the top of the straightening mechanism front and rear sliding plate 50331. The straightening mechanism front and rear slide block 50333 is slidably connected to the straightening mechanism front and rear slide rail 50332. The straightening mechanism front and rear slide block 50333 is connected to the front of the wire distributor 5032. The straightening mechanism front and rear slide block 50333 is provided with a straightening mechanism front and rear sliding extension rod 50334 on the side. The straightening mechanism front and rear sliding extension rod 50334 is connected to the rear of the straightening mechanism front and rear sliding cylinder 50335, which is used to push the straightening mechanism front and rear slide block 50334 to slide forward and backward.
[0193] In this embodiment, the straightening mechanism front and rear positioning mechanism can accurately adjust the front and rear positions of the wire distributor and the V-shaped straightening plate, ensuring that the sharp end of the wire distributor can be accurately placed in the middle of the bottom of the two electric conductors, and ensuring that the opening of the V-shaped straightening plate can be accurately placed on both sides of the electric conductor.
[0194] Further, as shown in Figure 35 the straightening mechanism front and rear positioning mechanism 5033 includes a straightening mechanism front and rear sliding plate 50331, a straightening mechanism front and rear slide rail 50332, a straightening mechanism front and rear slide block 50333, a straightening mechanism front and rear sliding extension rod 50334, and a straightening mechanism front and rear sliding cylinder 50335.
[0195] The left and right slide rails 50341 of the straightening mechanism are horizontally arranged on the front and rear sliders 50334 of the straightening mechanism. The left slider 50342 and the right slider 50343 of the straightening mechanism are respectively arranged at the two ends of the left and right slide rails 50341 of the straightening mechanism. The left extension rod 50344 of the straightening mechanism is arranged on the front side of the left slider 50342 of the straightening mechanism. The V-shaped straightening plate 3032 is arranged on the right side of the front end of the left extension rod 50344 of the straightening mechanism. The right extension rod 50345 of the straightening mechanism is arranged on the front side of the right slider 50343 of the straightening mechanism. The V-shaped straightening plate 5031 is arranged on the left side of the front end of the right extension rod 50345 of the straightening mechanism, which is used to direct the opening of the V-shaped straightening plate 5031 toward the conductive wire.
[0196] In this embodiment, the left and right positions of the V-shaped straightening plate can be accurately adjusted through the left and right positioning mechanisms of the straightening mechanism, so that the opening of the V-shaped straightening plate can fit closely next to the wire.
[0197] Further, if Figure 36 As shown, it includes: a lampshade mounting device 504;
[0198] The lampshade installation device 504 includes: a conductive wire wrapping mechanism 5041, a lampshade clamping mechanism 5042, and a lampshade clamping mechanism driving mechanism 5043;
[0199] like Figure 38 As shown, the conductive wire sleeve mechanism 5041 is vertically arranged above the V-shaped straightening plate 5031 and the divider 5032. After the V-shaped straightening plate 5032 and the divider 5031 are raised to straighten the two conductive wires, the conductive wire sleeve mechanism 5041 is directly opposite the two conductive wires. The upper end of the conductive wire sleeve mechanism 5041 is provided with the lampshade clamping mechanism 5042. After the lampshade clamping mechanism 5042 clamps the lampshade, the conductive wire sleeve mechanism 5041 passes through the upper end of the lampshade to the bottom surface of the lampshade. After the V-shaped straightening plate 5031 and the divider 5032 are withdrawn, the lampshade clamping mechanism driving mechanism 5043 drives the conductive wire sleeve mechanism 5041 and the lampshade clamping mechanism 5042 to move downward, thereby passing the conductive wire out to the upper end of the lampshade and gluing the lampshade to the light-emitting board.
[0200] In this embodiment, when the lampshade is installed downwardly and on the light-emitting board, the lampshade may press the conductive wire downward due to misalignment of the conductive wire or the lampshade, causing the conductive wire to bend. This may shorten the conductive wire and prevent it from passing through the top opening of the lampshade, or the portion of the conductive wire that passes through is too short. The conductive wire sleeve mechanism is used to sleeve the two conductive wires before the lampshade is installed. The position of the lampshade is finely adjusted by the upper and lower mounting mechanisms and the front and rear mounting mechanisms to ensure that the lampshade is accurately installed on the light-emitting board.
[0201] Further, if Figure 37 As shown, a front-to-back fine adjustment mechanism 5044 is provided behind the lampshade clamping mechanism 5042 for finely adjusting the front-to-back position of the lampshade clamping mechanism 5042. Front-to-back coarse adjustment mechanisms 5045 are provided on both sides of the lampshade clamping mechanism driving mechanism 5043 for coarsely adjusting the front-to-back position of the conductive wire wrapping mechanism 5041 (not shown) and the lampshade clamping mechanism 5042. Lampshade clamping mechanism lift coarse adjustment mechanisms 5046 are provided on both sides of the front-to-back coarse adjustment mechanism 5045 for coarsely adjusting the vertical position of the conductive wire wrapping mechanism 5041 (not shown) and the lampshade clamping mechanism 5042.
[0202] Furthermore, if Figure 39 As shown, it includes a hanging wire device 7, which includes several wire cutters. The wire cutters first clamp one of the conductive wires, then drive the wire cutters downward, bend the conductive wire and hang it on the top of the lampshade, and then cut the end of the conductive wire to obtain the assembled column lamp.
[0203] It should be noted that in the claims, any reference signs placed between parentheses shall not be construed as limiting the claims. The word "comprising" does not exclude the presence of components or steps not listed in the claim. The word "a" or "an" preceding a component does not exclude the presence of a plurality of such components. The invention can be implemented by means of hardware comprising several different components and by means of a suitably programmed computer. In a unit claim enumerating several means, several of these means may be embodied by one and the same item of hardware. The use of the words first, second, third etc. does not indicate any order. These words may be interpreted as names.
[0204] Although the preferred embodiments of the present invention have been described, those skilled in the art may make additional changes and modifications to these embodiments once they have learned the basic creative concept. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments and all changes and modifications that fall within the scope of the present invention.
[0205] In the present invention, unless otherwise expressly specified or limited, the terms "mounted," "connected," "connect," "fixed," etc. should be understood broadly. For example, they may refer to fixed connection, detachable connection, or integration; mechanical connection or electrical connection; direct connection or indirect connection through an intermediate medium; internal communication between two components or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on specific circumstances.
[0206] In the description of the specification, the description of the terms "one embodiment", "some embodiments", "an example", "a specific example", or "some examples" and the like means that the specific feature, structure, material or characteristic being described is included in at least one embodiment or example of the present application. Descriptive expressions of the above terms in the specification should not be understood as necessarily referring to the same embodiment or example. Also, the specific features, structures, materials or characteristics described can be combined in any suitable manner in one or more embodiments or examples. Furthermore, the person skilled in the art can combine and combine the different embodiments or examples described in the specification and the features of the different embodiments or examples, without contradiction.
Claims
1. A column lamp assembly production line, characterized by: include: A conductive wire processing device for cutting the conductive wire into a set length and simultaneously stripping the conductive wire to expose the battery core; A conductive wire insertion device is used to receive the conductive wire processed by the conductive wire processing device and insert the conductive wire into the light-emitting board. The conductive wire insertion device includes: The wire insertion device has a wire entry mechanism for receiving corresponding and horizontal conductive wires; The wire insertion device clamping mechanism comprises a first wire insertion device clamping member and a wire insertion device transverse member, wherein the first wire insertion device clamping member is driven by the wire insertion device transverse member to move laterally, so that the wire insertion device feed mechanism clamps the conductive wire; The conductive wire positioning mechanism of the plugging device is used to store the horizontal conductive wire delivered by the clamping mechanism of the plugging device; The wire plugging device flipping mechanism includes a second wire plugging device clamping member, a wire plugging device rotating member, and a first wire plugging device longitudinal moving member. The wire plugging device rotating member is driven by the wire plugging device transverse moving member to move laterally, and the wire plugging device rotating member is driven by the first wire plugging device longitudinal moving member to move up and down. The wire plugging device rotating member can drive the second wire plugging device clamping member to flip. The second wire plugging device clamping member in the transverse state can clamp the transverse conductive wire on the conductive wire positioning mechanism of the wire plugging device. After the second wire plugging device clamping member is flipped, the second wire plugging device clamping member in the longitudinal state is used to drive the longitudinal conductive wire toward the power connection terminal for plugging; The wire plugging device alignment mechanism includes a third wire plugging device clamping member and a wire plugging device buffer member, wherein the third wire plugging device clamping member is connected to the first wire plugging device longitudinal moving member through the wire plugging device buffer member, and the wire plugging device buffer member is in a natural state, and the clamping end of the third wire plugging device clamping member is located below the clamping end of the second wire plugging device clamping member, and the clamping center of the second wire plugging device clamping member in the longitudinal state and the clamping center of the third wire plugging device clamping member are located on the same vertical line; After the third plug-in device clamp is driven downward, it can contact the upper surface of the corresponding light-emitting board. After the third plug-in device clamp is further driven downward, the plug-in device buffer is compressed so that the third plug-in device clamp is against the upper surface of the corresponding light-emitting board. The second plug-in device clamp can be further driven downward to insert the conductive wire into the power terminal. After the third plug-in device clamping piece abuts against the upper surface of the corresponding light-emitting board, the clamping end of the third plug-in device clamping piece can clamp the power connection terminal, thereby shaping and positioning the power connection terminal; A light-emitting board gluing device, used for receiving the light-emitting board processed by the conductive wire plugging device and applying glue on the edge of the light-emitting board; A conductive wire straightening device, used to receive the light-emitting board processed by the light-emitting board gluing device and vertically straighten the conductive wires on the light-emitting board; The lampshade installation device is used to align the straightened conductive wire and insert it into the lampshade, so that the lampshade fits the edge of the light-emitting board to obtain an assembled column lamp.
2. The column lamp assembly production line according to claim 1, characterized in that: The conductive wire processing device comprises: The conductive wire feeding mechanism includes a conductive wire input member, a conductive wire end exposing member, and a first conductive wire positioning member connected in sequence. The first conductive wire positioning member can clamp one end of the conductive wire. The conductive wire input member can drive the first conductive wire positioning member to extend to input a certain length of conductive wire. The conductive wire end exposing member can drive the first conductive wire positioning member to retract and then extend to expose a section of the conductive wire end outside the first conductive wire positioning member. A conductive wire clamping mechanism, comprising a conductive wire output member and a second conductive wire positioning member, wherein the conductive wire output member can drive the second conductive wire positioning member to move, and the second conductive wire positioning member can clamp one end of the conductive wire; The conductive wire stripping mechanism is arranged at the output end of the first conductive wire positioning member. The conductive wire stripping mechanism includes a group of cutters that can be separated or brought together. When the group of cutters are brought together, they can cut the conductive wire or cut the outer skin of the conductive wire.
3. The column lamp assembly production line according to claim 2, characterized in that: The conductive wire conveying mechanism includes a conductive wire conveying fixed frame, the conductive wire input member and the conductive wire end exposure member are cylinders, the conductive wire input member is fixedly arranged on the conductive wire conveying fixed frame, the output end of the conductive wire input member is connected to the conductive wire end exposure member, and the output end of the conductive wire end exposure member is connected to the first conductive wire positioning member; The conductive wire conveying fixed frame track is connected to the first conductive wire positioning member mounting plate, the first conductive wire positioning member mounting plate is an L-shaped structure, the first conductive wire positioning member is a cylinder, the first conductive wire positioning member is installed on the vertical part of the first conductive wire positioning member mounting plate, and the first conductive wire positioning member can be extended to lean against the horizontal part of the first conductive wire positioning member mounting plate to position one end of the conductive wire.
4. The column lamp assembly production line according to claim 2, characterized in that: It includes a plurality of conductive wire receiving seats provided at the unloading end of the conductive wire clamping mechanism, wherein the conductive wire receiving seats are provided with a plurality of V-shaped grooves upward, and the plurality of conductive wire receiving seats are arranged at equal intervals and driven by a conveyor belt; It includes a wire straightening mechanism, which includes a wire pressing seat arranged above the conductive wire receiving seat, the wire pressing seat is provided with a V-shaped protrusion that cooperates with the V-shaped groove, and the wire pressing seat is driven by a corresponding cylinder to move up and down. When the conductive wire receiving seat moves to the bottom of the wire pressing seat, the wire pressing seat is driven downward to bring the V-shaped protrusion and the V-shaped groove closer together, thereby straightening and shaping the conductive wire in the V-shaped groove.
5. The column lamp assembly production line according to claim 1, characterized in that: It includes a wire spacing adjustment block, which is arranged at the clamping end of the second wire plug device clamping piece. The wire spacing adjustment block is arranged at intervals at the clamping end of the second wire plug device clamping piece. After the clamping end of the second wire plug device clamping piece is closed, the wire spacing adjustment block allows the two conductive wires to maintain a certain distance after being clamped by the second wire plug device clamping piece. The width of the wire spacing adjustment block is the same as the distance between the two terminals of the power terminal.
6. The column lamp assembly production line according to claim 1, characterized in that: The light-emitting panel has a circular structure, and the edge of the light-emitting panel includes a plurality of concentric arc portions and straight portions connecting adjacent arc portions. The light-emitting panel gluing device is characterized in that: the light-emitting panel gluing device includes: a longitudinal positioning mechanism for the gluing mechanism, a transverse positioning mechanism for the gluing mechanism driven by the longitudinal positioning mechanism for the gluing mechanism, a gluing mechanism driving mechanism driven by the transverse positioning mechanism for the gluing mechanism, a gluing mechanism driven by the gluing mechanism driving mechanism, a light-emitting panel rotating mechanism provided below the gluing mechanism, and a light-emitting panel left-right adjustment mechanism for driving the light-emitting panel rotating mechanism to move left-right; The longitudinal positioning mechanism of the gluing mechanism is used to adjust or position the height of the driving mechanism of the gluing mechanism; The gluing mechanism lateral positioning mechanism is used to adjust or position the horizontal distance between the gluing mechanism and the edge of the light-emitting panel; The light-emitting panel rotating mechanism is used to fix the light-emitting panel and drive it to rotate; The gluing mechanism driving mechanism is used to drive the gluing mechanism to move up and down so that the glue outlet of the gluing mechanism is directly above the edge of the light-emitting panel; When the gluing mechanism is directly above the arc-shaped portion of the light-emitting panel, the left-right adjustment mechanism of the light-emitting panel fixes the rotation center of the light-emitting panel rotation mechanism, so that the gluing mechanism draws a corresponding arc on the arc-shaped portion of the light-emitting panel. When the gluing mechanism is directly above the straight portion of the light-emitting panel, the left-right adjustment mechanism of the light-emitting panel moves the rotation center of the light-emitting panel rotation mechanism. The moving distance of the left-right adjustment mechanism of the light-emitting panel offsets the lateral displacement component during the rotation of the edge of the light-emitting panel, so that the gluing mechanism draws a corresponding straight line on the straight portion of the light-emitting panel.
7. The column lamp assembly production line according to claim 1, characterized in that: The conductive wire straightening device includes: a straightening and fixing mechanism, a straightening and pressing mechanism arranged on both sides of the straightening and fixing mechanism, and a straightening mechanism arranged on the rear side of the fixing mechanism; The straightening and fixing mechanism is used to fix and place the light-emitting panel; The straightening and pressing mechanism is used to press the light-emitting panel; The straightening mechanism includes: two V-shaped straightening plates arranged opposite to each other, and a wire splitter arranged between the V-shaped straightening plates; the wire splitter is driven by the front and rear positioning mechanisms of the straightening mechanism, and a pointed tip is provided on the front side of the wire splitter, and the front and rear positioning mechanisms of the straightening mechanism are used to push the pointed tip to the bottom middle position of the two conductive wires; The V-shaped straightening plates are driven by the left and right positioning mechanisms of the straightening mechanism respectively. The openings of the two V-shaped straightening plates are staggered up and down and front and back. The two V-shaped straightening plates are arranged on both sides of the wire splitter. After the two V-shaped straightening plates are brought close together, the wire splitter is located between the openings of the two V-shaped straightening plates, so that the two conductive wires are respectively located at the two openings. The front and rear positioning mechanisms of the straightening mechanism are driven by the upper and lower positioning mechanisms of the straightening mechanism to simultaneously raise the V-shaped straightening plate and the wire divider from bottom to top, so that the two conductive wires are straightened.
8. The column lamp assembly production line according to claim 7, characterized in that: The lampshade installation device includes: a conductive wire threading mechanism, a lampshade clamping mechanism, and a lampshade clamping mechanism driving mechanism; The conductive wire sleeve mechanism is vertically arranged above the V-shaped straightening plate and the wire divider. After the V-shaped straightening plate and the wire divider are raised to straighten the two conductive wires, the conductive wire sleeve mechanism is opposite to the two conductive wires. The upper end of the conductive wire sleeve mechanism is provided with the lampshade clamping mechanism. After the lampshade clamping mechanism clamps the lampshade, the conductive wire sleeve mechanism passes through the upper end of the lampshade to the bottom surface of the lampshade. After the V-shaped straightening plate and the wire divider are withdrawn, the lampshade clamping mechanism driving mechanism drives the conductive wire sleeve mechanism and the lampshade clamping mechanism to move downward, thereby passing the conductive wire out to the upper end of the lampshade and installing the lampshade to the light-emitting board.
Citation Information
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Fully-automatic LED panel lamp production line
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