CN204300737U - Can the fluorescent tube of automated production - Google Patents
Can the fluorescent tube of automated production Download PDFInfo
- Publication number
- CN204300737U CN204300737U CN201420668061.0U CN201420668061U CN204300737U CN 204300737 U CN204300737 U CN 204300737U CN 201420668061 U CN201420668061 U CN 201420668061U CN 204300737 U CN204300737 U CN 204300737U
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- China
- Prior art keywords
- fluorescent tube
- outer cover
- lamp plate
- bottom plate
- radiating bottom
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- 238000004519 manufacturing process Methods 0.000 title claims abstract description 28
- 230000005611 electricity Effects 0.000 claims abstract description 14
- 238000010079 rubber tapping Methods 0.000 claims description 5
- 230000009286 beneficial effect Effects 0.000 abstract description 5
- 238000003466 welding Methods 0.000 abstract description 4
- 238000000034 method Methods 0.000 description 4
- 230000004807 localization Effects 0.000 description 3
- 239000000463 material Substances 0.000 description 3
- 238000009434 installation Methods 0.000 description 2
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminium Chemical compound [Al] XAGFODPZIPBFFR-UHFFFAOYSA-N 0.000 description 1
- 229910052782 aluminium Inorganic materials 0.000 description 1
- 239000004411 aluminium Substances 0.000 description 1
- 230000000712 assembly Effects 0.000 description 1
- 238000000429 assembly Methods 0.000 description 1
- 239000011324 bead Substances 0.000 description 1
- 238000006243 chemical reaction Methods 0.000 description 1
- 238000000354 decomposition reaction Methods 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 230000007613 environmental effect Effects 0.000 description 1
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- Fastening Of Light Sources Or Lamp Holders (AREA)
Abstract
The utility model discloses a kind of can the fluorescent tube of automated production, this fluorescent tube of automated production can comprise the fluorescent tube outer cover of tubulose, the radiating bottom plate be arranged in fluorescent tube outer cover, is arranged on the light source assembly on radiating bottom plate and is arranged on the plug component of fluorescent tube outer cover at least one end, and light source assembly comprises lamp plate and is arranged on lamp plate on the surface and conduct electricity with lamp plate the light source be connected; Be respectively equipped with slot inside on radiating bottom plate is longitudinal relative two, lamp plate inserts slot and is arranged on radiating bottom plate; Plug component comprises plug and is plugged on the power panel in plug; Conduction connected structure is provided with between power panel and lamp plate.Of the present utility model can the fluorescent tube of automated production, the lamp plate of light source assembly is arranged on radiating bottom plate by coordinating with slot, and realize conduction connection by conduction connected structure between power panel and lamp plate, thus do not need welding lead to carry out conduction connection, connect reliable, simple to operate, be beneficial to the automated production of this fluorescent tube.
Description
Technical field
The utility model relates to field of light fittings, particularly relate to a kind of can the fluorescent tube of automated production.
Background technology
LED light source is energy-efficient due to its environmental protection, is widely used.In existing LED lamp, as LED lamp tube, mostly comprise fluorescent tube outer cover (as PC cover), be arranged on the LED light source component in fluorescent tube outer cover and be arranged on the lamp holder on fluorescent tube outer cover termination, the power panel on lamp holder to be welded with LED light source component by wire to realize being electrically connected.When producing, connection between power panel and LED light source component is comparatively complicated and meticulous, higher to operation requirements, usually all need to adopt manual operation to carry out assembly and connection, make when fluorescent tube is produced like this, be difficult to realize automated production completely, cost of labor is high and be unfavorable for the raising of production efficiency.
Utility model content
The technical problems to be solved in the utility model is, provide a kind of can the fluorescent tube of automated production, carry out conduction without the need to welding lead between its light source assembly with power panel and be connected, easy to operate, connect reliable.
The utility model solves the technical scheme that its technical problem adopts: provide a kind of can the fluorescent tube of automated production, comprise the fluorescent tube outer cover of tubulose, the radiating bottom plate be axially arranged in described fluorescent tube outer cover, be arranged on the light source assembly on described radiating bottom plate and be arranged on the plug component of described fluorescent tube outer cover at least one end along described fluorescent tube outer cover, described light source assembly comprises lamp plate and is arranged on described lamp plate on the surface and conduct electricity with described lamp plate the light source be connected;
Be respectively equipped with slot inside on described radiating bottom plate is longitudinal relative two, described lamp plate inserts described slot and is arranged on described radiating bottom plate; Described plug component comprises plug and is plugged on the power panel in described plug; Conduction connected structure is provided with between described power panel and described lamp plate.
Preferably, described conduction connected structure is included in the electrically conducting contact that described power panel one end is arranged and the conduction access slot arranged at the corresponding described electrically conducting contact of described lamp plate, described electrically conducting contact is provided with the first conductive contact, and in described conduction access slot, corresponding described first conductive contact is provided with the second conductive contact; Described electrically conducting contact is plugged in described conduction access slot, is electrically connected by described first conductive contact and described second conductive contact and is electrically connected with described light source.
Preferably, described conduction connected structure is included in the electrically conducting contact that described lamp plate one end is arranged and the conduction access slot arranged at the corresponding described electrically conducting contact of described power panel, described electrically conducting contact is provided with the first conductive contact, and in described conduction access slot, corresponding described first conductive contact is provided with the second conductive contact; Described electrically conducting contact is plugged in described conduction access slot, is electrically connected by described first conductive contact and described second conductive contact and is electrically connected with described light source.
Preferably, also conducting resinl is provided with between described conduction access slot and described electrically conducting contact.
Preferably, the two opposite outer on described radiating bottom plate is longitudinal is respectively equipped with locating slot, and in described fluorescent tube outer cover, both sides are respectively equipped with the locating piece coordinated with described locating slot relatively.
Preferably, described power panel is provided with positive pole contact pin and negative pole contact pin away from one end of described lamp plate, described plug is respectively equipped with positive pole projection and negative pole projection away from the corresponding described positive pole contact pin in one end of described lamp plate and negative pole contact pin, and described positive pole contact pin and negative pole contact pin insert described positive pole projection respectively and conduct electricity be connected with in negative pole projection.
Preferably, described plug is plugged on described fluorescent tube outer cover with its one end near described lamp plate; Described plug is provided with the first connecting hole, be covered with second connecting hole that be communicated with corresponding to described first connecting hole outside described radiating bottom plate or fluorescent tube, described plug is located in described first connecting hole and described second connecting hole internal locking on described radiating bottom plate or fluorescent tube outer cover by self-tapping screw.
Of the present utility model can the fluorescent tube of automated production, the lamp plate of light source assembly is arranged on radiating bottom plate by coordinating with slot, and realize conduction connection by conduction connected structure between power panel and the lamp plate of light source assembly, thus do not need welding lead to carry out conduction connection, connect reliable, simple to operate, be beneficial to the automated production of this fluorescent tube.The manufacture method of this fluorescent tube, simple to operate, can automated production completely and efficiency is high.
Accompanying drawing explanation
Below in conjunction with drawings and Examples, the utility model is described in further detail, in accompanying drawing:
Fig. 1 be the utility model one embodiment can the decomposition texture schematic diagram of fluorescent tube of automated production;
Fig. 2 is the cross-sectional view after lighting tube combination shown in Fig. 1;
Fig. 3 is the structural representation of radiating bottom plate in fluorescent tube shown in Fig. 1.
Detailed description of the invention
In order to there be understanding clearly to technical characteristic of the present utility model, object and effect, now contrast accompanying drawing and describe detailed description of the invention of the present utility model in detail.
As Figure 1-3, the utility model one embodiment can the fluorescent tube of automated production, comprise fluorescent tube outer cover 1, radiating bottom plate 2, light source assembly 3 and plug component 4, radiating bottom plate 2 is axially arranged in fluorescent tube outer cover 1 along fluorescent tube outer cover 1, light source assembly 3 is installed on radiating bottom plate 2, and plug component 4 is arranged on fluorescent tube outer cover 1 at least one end is conducted electricity with light source assembly 3 and is connected; Light source assembly 3 comprises lamp plate 31 and is arranged on lamp plate 31 on the surface and conduct electricity with lamp plate 31 light source 32 be connected.
Fluorescent tube outer cover 1 in a tubular form, with by radiating bottom plate 2 and light source assembly 3 wherein accommodating.As shown in Figure 3, the installation of radiating bottom plate 2 in fluorescent tube outer cover 1 adopts inserting mode to realize, wherein, two opposite outer on radiating bottom plate 2 is longitudinal is respectively equipped with locating slot 21, in fluorescent tube outer cover 1, both sides are respectively equipped with the locating piece (not shown) coordinated with locating slot 21 relatively, and radiating bottom plate 2 is aimed at locating piece by locating slot 21 and is coupled on it and is installed in fluorescent tube outer cover 1.Above-mentioned this kind of inserting mode is beneficial to the automatic assembling of this radiating bottom plate 2 in fluorescent tube outer cover 1.
Light source assembly 3 is contained in fluorescent tube outer cover 1 mainly through being installed on radiating bottom plate 2, and light source assembly 3 can work by radiating bottom plate 2, the heat conduction produced distributes.Radiating bottom plate 2 can adopt aluminium section bar to make.As shown in Figure 3, coordinating conveniently between radiating bottom plate 2 and the lamp plate 31 of light source assembly 3 assembles, and be respectively equipped with slot 22 inside on radiating bottom plate 2 is longitudinal relative two, lamp plate 31 inserts slot 22 and is arranged on radiating bottom plate 2.During installation, insert after the slot 22 of the two-side alignment radiating bottom plate 2 of lamp plate 31 one end, be beneficial to automatic assembling.
In light source assembly 3, described light source 32 can be LED lamp bead, thus this fluorescent tube can be LED lamp tube.
Fluorescent tube outer cover 1 can be the equal opening of one end open or two ends as required, and plug component 4 is arranged on the openend of fluorescent tube outer cover 1.This plug component 4 comprises plug 41 and is plugged on the power panel 42 in plug 41; Be provided with between power panel 42 and lamp plate 31 and conduct electricity connected structure 5, the conduction realized between power panel 42 and lamp plate 31 by conduction connected structure 5 is connected.In the present embodiment, conduction connected structure 5 is included in the electrically conducting contact 51 that power panel 42 one end is arranged and the conduction access slot 52 arranged at the corresponding electrically conducting contact 51 of lamp plate 31, electrically conducting contact 51 is provided with the first conductive contact, in conduction access slot 52, corresponding first conductive contact is provided with the second conductive contact, electrically conducting contact 51 is plugged in conduction access slot 52, is electrically connected by the first conductive contact and the second conductive contact and is electrically connected with light source 32.The setting of the first conductive contact on electrically conducting contact 51 can form golden finger, is electrically connected for contacting with the first conductive contact.The setting of this conduction connected structure 5, to instead of in existing fluorescent tube by the mode that welding lead conduction connects between power panel 42 and lamp plate 31, simple and convenient assembly, can automatic assembling, and conduction connected structure comparatively connects more reliable in wire.
In other embodiments, conduction connected structure 5 also can be included in the electrically conducting contact 51 that lamp plate 31 one end is arranged and the conduction access slot 52 arranged at the corresponding electrically conducting contact 51 of power panel 42, electrically conducting contact 51 is provided with the first conductive contact, in conduction access slot 52, corresponding first conductive contact is provided with the second conductive contact, electrically conducting contact 51 is plugged in conduction access slot 52, is electrically connected by the first conductive contact and the second conductive contact and is electrically connected with light source 32.
Connect in order to ensure the conduction after coordinating between electrically conducting contact 51 and conduction access slot 52, between conduction access slot 52 and electrically conducting contact 51, be also provided with conducting resinl (not shown), can prevent electrically conducting contact 51 from getting loose in conduction access slot 52.
Plug component 4 to coordinate with fluorescent tube outer cover 1 mainly through plug 41 and is arranged on fluorescent tube outer cover 1.Wherein, plug 41 is plugged on fluorescent tube outer cover 1 with its one end near lamp plate 31.Further, plug 41 is provided with the first connecting hole 410, radiating bottom plate 2 or fluorescent tube outer cover 1 are provided with second connecting hole 210 that be communicated with corresponding to the first connecting hole 410, and plug 41 is located in the first connecting hole 410 and the second connecting hole 210 internal locking on radiating bottom plate 2 or fluorescent tube outer cover 1 by self-tapping screw 6.
Power panel 42 is firmly plugged in plug 41.Wherein, positive pole contact pin 421 and negative pole contact pin 422 is provided with away from one end of lamp plate 31 at power panel 42, plug 41 is respectively equipped with positive pole projection 411 and negative pole projection 412 away from the corresponding positive pole contact pin 421 in one end of lamp plate 31 and negative pole contact pin 422, positive pole contact pin 421 inserts to conduct electricity in positive pole projection 411 and with positive pole projection 411 and is connected, and negative pole contact pin 422 inserts to conduct electricity in negative pole projection 412 and with negative pole projection 412 and is connected.This fluorescent tube to be conducted electricity with lamp socket by this positive pole projection 411 and negative pole projection 412 and is connected, and power supply passes through projection supply power plate 42, and light source assembly 3 is worked.
With reference to figure 1-3, above-mentioned can the manufacture method of fluorescent tube of automated production, can comprise the following steps:
S1, fluorescent tube outer cover 1 is sent to the first station.
S2, one end of fluorescent tube outer cover 1 is positioned, shutoff, radiating bottom plate 2 is plugged in fluorescent tube outer cover 1 from the other end of fluorescent tube outer cover 1; Fluorescent tube outer cover 1 with radiating bottom plate 2 is reached the second station.
S3, the lamp plate 31 of light source assembly 3 aimed at the slot 22 of radiating bottom plate 2 longitudinally inside upper relative two and be plugged in slot 22; Fluorescent tube outer cover 1 with lamp plate 31 is reached the 3rd station.
S4, plug component 4 is plugged into fluorescent tube outer cover 1 at least on one end, and makes the conduction connected structure 5 on the power panel 42 of plug component 4 and lamp plate 31 aim at grafting.
In this manufacture method, fluorescent tube outer cover 1, radiating bottom plate 2, light source assembly 3 and plug component 4 be all previously prepared after put into corresponding material frame.
In the present embodiment, in step sl, fluorescent tube outer cover 1 is placed on conveyer belt is sent to the first station.
In step s 2, can comprise the following steps further:
S2-1, on the first station, one end that localization tool inserts fluorescent tube outer cover 1 positions it, shutoff; This location, shutoff are beneficial to and are follow-uply installed to wherein from the other end (openend) of fluorescent tube outer cover 1 by the assemblies such as radiating bottom plate 2.Localization tool adopts localization tool of the prior art.
S2-2, manipulator take out radiating bottom plate 2 from radiating bottom plate material frame, and locating piece relative in fluorescent tube outer cover 1 aimed at by the locating slot 21 of the two opposite outer on radiating bottom plate 2 is longitudinal, and is plugged in fluorescent tube outer cover 1 from the other end of fluorescent tube outer cover 1.
S2-3, the fluorescent tube outer cover 1 with radiating bottom plate 2 to be placed on a moving belt to be sent to the second station.
In step s3, can comprise the following steps further:
S3-1, on the second station, manipulator takes out lamp plate 31 from light source assembly material frame.
S3-2, lamp plate 31 aimed at slot 22 longitudinally inside upper relative two of radiating bottom plate 2 in fluorescent tube outer cover 1 and be plugged in slot 22.
S3-3, the fluorescent tube outer cover 1 with lamp plate 31 to be placed on a moving belt to be sent to the 3rd station.
Can while this step S3 carries out, plug 41 is placed in plug mould, power panel 42 is inserted in plug 41, and the positive pole projection 411 making the positive pole contact pin 421 of power panel 42 and negative pole contact pin 422 insert plug 41 respectively conducts electricity be connected with in negative pole projection 412.Get ready at positive pole projection 411 and negative pole projection 412 periphery by getting equipment ready further, positive pole contact pin 421 and negative pole contact pin 422 are compressed with positive pole projection 411 and negative pole projection 412 respectively, form plug component 4.
In step s 4 which, can comprise the following steps further:
Plug component 4 is plugged on fluorescent tube outer cover 1 one end (openend) by S4-1, manipulator, and makes the conduction connected structure 5 on the power panel 42 of plug component 4 and lamp plate 31 aim at grafting.
From the above, conduction connected structure 5 comprises and is arranged on electrically conducting contact on power panel 42 or lamp plate 31 51 and the corresponding non-conductive socket 52 be arranged on lamp plate 31 or power panel 42, when aiming at grafting, electrically conducting contact 51 is aimed at and is plugged in conduction access slot 52, make the first conductive contact on electrically conducting contact 51 contact electrical connection with the second conductive contact in conduction access slot 52, thus the conduction realized between power panel 42 and lamp plate 31 connect.
S4-2, outside the plug 41 of plug component 4, lock self-tapping screw 6, plug 41 and radiating bottom plate 2 or fluorescent tube outer cover 1 are locked, thus the assembling that there is the fluorescent tube of plug component 4 one end can be completed.
In step s 4 which, before plug component 4 is plugged on fluorescent tube outer cover 1, can conducting resinl on point on the electrically conducting contact 51 of conduction connected structure 5 or in conduction access slot 52 further, the tight grafting of both guarantees connection of conducting electricity.
Fluorescent tube outer cover 1 can be the equal opening of one end open or two ends as required, and plug component 4 is arranged on the openend of fluorescent tube outer cover 1.Usually, lamp tube ends is all provided with plug component 4; Therefore, in step s 4 which, following steps are further comprised:
S4-3, the fluorescent tube outer cover 1 one end being provided with plug component 4 are sent to the 4th station;
Another plug component 4 is plugged on the other end of fluorescent tube outer cover 1 by S4-4, manipulator, and makes the conduction connected structure 5 on the power panel 42 of plug component 4 and lamp plate 31 aim at grafting.
S4-5, outside the plug 41 of plug component 4, lock self-tapping screw 6, plug 41 and radiating bottom plate 2 or fluorescent tube outer cover 1 are locked, thus the assembling that all there is the fluorescent tube of plug component 4 at two ends can be completed.
From the above, by the structural design of fluorescent tube, the automated production of all fronts of this fluorescent tube can be realized, enhance productivity, and obtained fluorescent tube reliability is high.
The foregoing is only embodiment of the present utility model; not thereby the scope of the claims of the present utility model is limited; every utilize the utility model description and accompanying drawing content to do equivalent structure or equivalent flow process conversion; or be directly or indirectly used in other relevant technical fields, be all in like manner included in scope of patent protection of the present utility model.
Claims (7)
1. one kind can the fluorescent tube of automated production, comprise the fluorescent tube outer cover (1) of tubulose, the radiating bottom plate (2) be axially arranged in described fluorescent tube outer cover (1), be arranged on the light source assembly (3) on described radiating bottom plate (2) and be arranged on the plug component (4) of described fluorescent tube outer cover (1) at least one end along described fluorescent tube outer cover (1), described light source assembly (3) comprises lamp plate (31) and is arranged on described lamp plate (31) on the surface and conduct electricity with described lamp plate (31) light source (32) be connected; It is characterized in that,
Be respectively equipped with slot (22) inside in described radiating bottom plate (2) longitudinal direction relative two, described lamp plate (31) inserts described slot (22) and is arranged on described radiating bottom plate (2); Described plug component (4) comprises plug (41) and is plugged on the power panel (42) in described plug (41); Be provided with between described power panel (42) and described lamp plate (31) and conduct electricity connected structure (5).
2. according to claim 1 can the fluorescent tube of automated production, it is characterized in that, described conduction connected structure (5) is included in the electrically conducting contact (51) that described power panel (42) one end is arranged and the conduction access slot (52) arranged the corresponding described electrically conducting contact (51) of described lamp plate (31), described electrically conducting contact (51) is provided with the first conductive contact, and in described conduction access slot (52), corresponding described first conductive contact is provided with the second conductive contact; Described electrically conducting contact (51) is plugged in described conduction access slot (52), is electrically connected by described first conductive contact and described second conductive contact and is electrically connected with described light source (32).
3. according to claim 1 can the fluorescent tube of automated production, it is characterized in that, described conduction connected structure (5) is included in the electrically conducting contact (51) that described lamp plate (31) one end is arranged and the conduction access slot (52) arranged the corresponding described electrically conducting contact (51) of described power panel (42), described electrically conducting contact (51) is provided with the first conductive contact, and in described conduction access slot (52), corresponding described first conductive contact is provided with the second conductive contact; Described electrically conducting contact (51) is plugged in described conduction access slot (52), is electrically connected by described first conductive contact and described second conductive contact and is electrically connected with described light source (32).
4. according to Claims 2 or 3 can the fluorescent tube of automated production, it is characterized in that, between described conduction access slot (52) and described electrically conducting contact (51), be also provided with conducting resinl.
5. according to claim 1 can the fluorescent tube of automated production, it is characterized in that, two opposite outer in described radiating bottom plate (2) longitudinal direction is respectively equipped with locating slot (21), and in described fluorescent tube outer cover (1), both sides are respectively equipped with the locating piece coordinated with described locating slot (21) relatively.
6. according to claim 1 can the fluorescent tube of automated production, it is characterized in that, described power panel (42) is provided with positive pole contact pin (421) and negative pole contact pin (422) away from one end of described lamp plate (31), described plug (41) is respectively equipped with positive pole projection (411) and negative pole projection (412) away from the corresponding described positive pole contact pin (421) in one end of described lamp plate (31) and negative pole contact pin (422), and described positive pole contact pin (421) and negative pole contact pin (422) insert described positive pole projection (411) respectively and conduct electricity be connected with in negative pole projection (412).
7. according to claim 1 can the fluorescent tube of automated production, it is characterized in that, described plug (41) is plugged on described fluorescent tube outer cover (1) with its one end near described lamp plate (31); Described plug (41) is provided with the first connecting hole (410), described radiating bottom plate (2) or fluorescent tube outer cover (1) are provided with second connecting hole (210) that be communicated with corresponding to described first connecting hole (410), and described plug (41) is located in described first connecting hole (410) and described second connecting hole (210) internal locking on described radiating bottom plate (2) or fluorescent tube outer cover (1) by self-tapping screw (6).
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CN201420668061.0U CN204300737U (en) | 2014-11-10 | 2014-11-10 | Can the fluorescent tube of automated production |
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CN201420668061.0U CN204300737U (en) | 2014-11-10 | 2014-11-10 | Can the fluorescent tube of automated production |
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