Disclosure of utility model
The present utility model aims to solve at least one of the technical problems existing in the prior art or related art.
To this end, the utility model provides a luminaire.
In view of the above, the utility model provides a lamp, which comprises a lamp body, a light guide column arranged in the lamp body, and a light emitting component arranged at least one of two ends of the lamp body along the length direction, wherein the light emitting component comprises a light emitting piece, the light emitting piece is arranged opposite to the end part of the light guide column, and the light guide column can guide light emitted by the light emitting piece.
The lamp provided by the utility model comprises a lamp body, a light guide column and a light emitting component, wherein the light emitting component comprises a light emitting piece, the light guide column is arranged in the lamp body, the light emitting component is arranged at least one of two ends of the lamp body, and the light emitting piece and the end part of the light guide column are arranged oppositely, so that the light guide column can guide the light emitted by the light emitting piece under the condition that the light emitting piece emits light, the light that makes the light-emitting part send light on the leaded light post is even, has increased the illumination area, has promoted the effect of illumination, simultaneously, leaded light through the leaded light post can also reduce the occupation to lamp body inner space, and then has reduced the holistic volume of lamps and lanterns to, the shape of leaded light post can have multiple, makes lamps and lanterns not receive the restriction of straight face light-emitting, can realize the diversification of lamps and lanterns shape.
The lamp provided by the utility model can also have the following additional technical characteristics:
In some embodiments, optionally, the lamp further comprises a light reflecting member, wherein the light reflecting member is arranged in the lamp body and is positioned at one side of the light guide column.
In this embodiment, the lamps and lanterns still include the reflector, and the reflector sets up in the lamp body, and is located one side of leaded light post, and then can make light towards a direction reflection, forms the light emitting surface that light concentrated emission, promotes the illuminating effect of lamps and lanterns.
In some embodiments, the light reflecting member may optionally include light reflecting paper attached to a side wall of the light guiding column and attached to a portion of an outer side wall of the light guiding column in a circumferential direction of the light guiding column, or the light reflecting member may include a light reflecting coating.
In this embodiment, the retroreflective member comprises retroreflective paper or the retroreflective member comprises a retroreflective coating. Under the condition that the light reflecting piece comprises light reflecting paper, the light reflecting paper is attached to the side wall of the light guide column and is located at one part of the circumference of the light guide column, namely, the light reflecting paper is attached to one part of the circumference of the light guide column, and then the other part of the circumference of the light guide column is used for emitting light, so that the light reflecting effect of the light reflecting paper is guaranteed, and a light emitting surface with concentrated light can be formed.
In some embodiments, optionally, the lamp body comprises a lamp tube, a first bracket and a light emitting assembly, wherein the first bracket is arranged in the lamp tube, the light emitting assembly is connected with the first bracket, the light guide column and the light reflecting piece are both arranged on the first bracket, and the light emitting piece is arranged between the first bracket and the light guide column.
In this embodiment, the lamp body includes the fluorescent tube and sets up the first support in the fluorescent tube, and luminous subassembly and the end connection of first support, leaded light post and reflection of light spare all set up on first support, and first support provides the mounted position for leaded light post, reflection of light spare and luminous subassembly for lamps and lanterns bulk connection intensity promotes.
In some embodiments, optionally, the first bracket is provided with a mounting groove, the light guide column and the light reflecting member are both arranged in the mounting groove, wherein, along the length direction of the lamp body, two ends of the mounting groove are provided with first through holes, and two ends of the light guide column extend out of the mounting groove from the first through holes at two ends of the mounting groove respectively so as to be arranged opposite to the light emitting component.
In this embodiment, be provided with the mounting groove in the first support, the mounting groove is used for installing reflector and leaded light post, has improved the connection reliability between leaded light post and the first support, has also reduced the occupation of first support and leaded light post to fluorescent tube inner space simultaneously, can reduce the holistic volume of lamps and lanterns. Wherein, along the length direction of lamp body, the both ends of mounting groove all are provided with first through-hole, and the tip of leaded light post stretches out the mounting groove by first through-hole, and then has shortened the distance between leaded light post and the light-emitting part, can effectively conduct the light that the light-emitting part sent, has reduced the loss of light.
In some embodiments, optionally, the light emitting assembly comprises a second bracket connected with the end of the lamp body, a second through hole is arranged on the second bracket, the end of the light guide column extends into the second through hole, and the light emitting element is arranged on the second bracket and is opposite to the second through hole.
In this embodiment, the light emitting component still includes the second support, and the light emitting part sets up on the second support, and the end connection of second support and lamp body has realized the fixed of light emitting part, wherein, is provided with the second through-hole on the second support, and the tip of leaded light post stretches into in the second through-hole, has realized fixing the leaded light post, also makes leaded light post and light emitting part set up relatively simultaneously, has guaranteed the reliability of light transmission.
In some embodiments, optionally, the light emitting assembly further comprises a third bracket, the light emitting piece is arranged on the third bracket, the third bracket is arranged on the second bracket, and the third bracket is provided with a third through hole which is arranged opposite to and communicated with the second through hole.
In this embodiment, the light emitting assembly further includes a third bracket for mounting the light emitting member, and providing a mounting carrier for the light emitting member, so as to avoid damage to the light emitting member caused by directly mounting the light emitting member. Wherein, the third through-hole sets up and communicates with the second through-hole relatively, can avoid the third support to produce the shielding to light.
In some embodiments, optionally, the light emitting assembly further comprises a heat dissipation member, and a side of the light emitting member facing away from the light guide post is attached to the heat dissipation member.
In this embodiment, the light-emitting component further includes a heat dissipation member, and the heat dissipation member is disposed on one side of the light-emitting member away from the light guide column, so that light emitted by the light-emitting member can be prevented from being blocked, and the heat dissipation effect of the light-emitting member can be improved.
In some embodiments, optionally, the light emitting assembly further comprises an end cover, wherein the end cover covers the outer sides of the second bracket and the light emitting piece, and the end cover is connected with the lamp body.
In this embodiment, the light emitting assembly further includes an end cover, and the end cover is covered on the outer sides of the second bracket and the light emitting member, so as to protect the light emitting member and the second bracket and prevent dust from falling on the light emitting member and the second bracket to affect light transmission.
In some embodiments, optionally, the lamp further comprises a base component, wherein the base component is arranged on the outer side of the lamp body and connected with the lamp body.
In this embodiment, the lamp further comprises a base component, and the base component is arranged on the outer side of the lamp body and connected with the lamp body, so that the lamp can be installed on a position to be installed through the base component, and wall-mounted installation of the lamp is achieved.
In some embodiments, optionally, the base assembly comprises a base body located at the outer side of the lamp body, and a first magnetic piece arranged on the base body, wherein a second magnetic piece is arranged in the lamp body, and the first magnetic piece and the second magnetic piece are attracted.
In this embodiment, the base subassembly includes first magnetic part and pedestal, is provided with the second magnetic part in the lamp body, and the base subassembly is connected through the absorption realization of first magnetic part and second magnetic part with the lamp body, does not need to destroy the outward appearance of lamp body, also makes the base subassembly also can be dismantled simultaneously, and then makes lamps and lanterns have multiple use form.
In some embodiments, optionally, the first magnetic member and the second magnetic member are both permanent magnets, or one of the first magnetic member and the second magnetic member is an iron sheet and the other is a permanent magnet.
In this embodiment, the first magnetic member and the second magnetic member may be permanent magnets, and in the case that the base assembly is mounted on the outer side wall of the lamp body, the two permanent magnets are attracted, so that connection reliability between the base assembly and the lamp body is improved. The first magnetic piece and the second magnetic piece can be set as one of which is an iron sheet and the other is a permanent magnet, and the two pieces are adsorbed to realize the installation of the base component.
In some embodiments, optionally, a magnet slot is provided in the lamp body, and the second magnetic member is provided in the magnet slot.
In this embodiment, the second magnetic part sets up in the magnet inslot, has improved the joint strength of second magnetic part and lamp body, can avoid the second magnetic part to drop. Meanwhile, the second magnetic piece is arranged in the magnet groove, and occupation of the second magnetic piece to the space in the lamp body can be reduced.
Additional aspects and advantages of the utility model will be set forth in part in the description which follows, or may be learned by practice of the utility model.
Detailed Description
In order that the above-recited objects, features and advantages of the present utility model will be more clearly understood, a more particular description of the utility model will be rendered by reference to the appended drawings and appended detailed description. It should be noted that, without conflict, the embodiments of the present utility model and features in the embodiments may be combined with each other.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present utility model, but the present utility model may be practiced in other ways than those described herein, and therefore the scope of the present utility model is not limited to the specific embodiments disclosed below.
A lamp according to some embodiments of the present utility model is described below with reference to fig. 1 to 6.
As shown in fig. 1 and 2, according to an embodiment of the present utility model, the present utility model provides a lamp, which includes a lamp body 1, a light guiding column 2, and a light emitting assembly 3.
The light guide column 2 is arranged in the lamp body 1, the light emitting component 3 is arranged at least one of two ends of the lamp body 1 along the length direction, the light emitting component 3 comprises a light emitting piece 30, the light emitting piece 30 is arranged opposite to the end part of the light guide column 2, and the light guide column 2 can guide light emitted by the light emitting piece 30.
The lamp provided by the utility model comprises a lamp body 1, a light guide column 2 and a light emitting component 3, wherein the light emitting component 3 comprises a light emitting part 30, the light guide column 2 is arranged in the lamp body 1, the light emitting component 3 is arranged at least one of two ends of the lamp body 1, and the light emitting part 30 is arranged opposite to the end part of the light guide column 2, so that under the condition that the light emitting part 30 emits light, the light guide column 2 can guide the light emitted by the light emitting part 30, the light emitted by the light emitting part 30 is uniform on the light guide column 2, the lighting area is increased, the lighting effect is improved, meanwhile, the light guide through the light guide column 2 can also reduce the occupation of the internal space of the lamp body 1, the whole volume of the lamp is further reduced, the shape of the light guide column 2 can be provided with various shapes, the lamp is not limited by the light emitting of a flat surface, and the diversification of the lamp shape can be realized.
Optionally, the light emitting component 3 is disposed at two ends of the lamp body 1 along the length direction, correspondingly, two ends of the light guide column 2 are provided with light emitting elements 30 along the length direction of the lamp body 1, so that the lighting effect of the lamp and the uniformity of light in the light guide column 2 are improved.
As shown in fig. 1 and 3, in some embodiments, optionally, the lamp further includes a reflector 4, where the reflector 4 is disposed in the lamp body 1 and located at one side of the light guiding column 2.
In this embodiment, the lamp further includes a light reflecting member 4, and the light reflecting member 4 is disposed in the lamp body 1 and located at one side of the light guiding column 2, so that light can be reflected towards one direction, a light emitting surface for light concentrated emission is formed, and the lighting effect of the lamp is improved.
In some embodiments, optionally, the light reflecting member 4 includes a light reflecting paper 40, the light reflecting paper 40 is adhered to a side wall of the light guiding post 2, and the light reflecting paper 40 is adhered to a portion of an outer side wall of the light guiding post 2 along a circumferential direction of the light guiding post 2, or the light reflecting member 4 includes a light reflecting coating.
In this embodiment, the retroreflective member 4 comprises retroreflective paper 40 or the retroreflective member 4 comprises a retroreflective coating. Under the condition that the light reflecting piece 4 comprises the light reflecting paper 40, the light reflecting paper 40 is attached to the side wall of the light guide column 2 and is located at one part of the circumference of the light guide column 2, namely, the light reflecting paper 40 is attached to one part of the circumference of the light guide column 2, and then the other part of the circumference of the light guide column 2 is used for emitting light, so that the light reflecting effect of the light reflecting paper 40 is ensured, and a light emitting surface with concentrated light can be formed.
Alternatively, the length of the reflective paper 40 is the same or approximately the same as the length of the light guide column 2 along the length direction of the lamp body 1.
Alternatively, the light guide pillar 2 extends from one end to the other end of the lamp body 1 along the length direction of the lamp body 1.
As shown in fig. 1 and 3, in some embodiments, optionally, the lamp body 1 includes a lamp tube 10 and a first support 12, the first support 12 is disposed in the lamp tube 10, the light emitting component 3 is connected with the first support 12, the light guiding column 2 and the light reflecting member 4 are both disposed in the first support 12, and the light emitting member 30 is disposed between the first support 12 and the light guiding column 2.
In this embodiment, the lamp body 1 includes a lamp tube 10 and a first bracket 12 disposed in the lamp tube 10, the light emitting component 3 is connected with an end portion of the first bracket 12, the light guiding post 2 and the light reflecting member 4 are both disposed on the first bracket 12, and the first bracket 12 provides mounting positions for the light guiding post 2, the light reflecting member 4 and the light emitting component 3, so that the overall connection strength of the lamp is improved.
As shown in fig. 3, in some embodiments, optionally, the first bracket 12 is provided with a mounting groove 120, and the light guiding column 2 and the light reflecting member 4 are both disposed in the mounting groove 120, wherein, along the length direction of the lamp body 1, two ends of the mounting groove 120 are provided with first through holes 122, and two ends of the light guiding column 2 respectively extend out of the mounting groove 120 from the first through holes 122 at two ends of the mounting groove 120 so as to be disposed opposite to the light emitting component 3.
In this embodiment, the first bracket 12 is provided with the mounting groove 120, and the mounting groove 120 is used for mounting the light reflecting member 4 and the light guiding column 2, so that the connection reliability between the light guiding column 2 and the first bracket 12 is improved, and meanwhile, the occupation of the first bracket 12 and the light guiding column 2 to the inner space of the lamp tube 10 is reduced, so that the whole volume of the lamp can be reduced. Wherein, along the length direction of lamp body 1, the both ends of mounting groove 120 all are provided with first through-hole 122, and the tip of leaded light post 2 stretches out mounting groove 120 by first through-hole 122, and then has shortened the distance between leaded light post 2 and the light-emitting component 30, can effectively conduct the light that the light-emitting component 30 sent, has reduced the loss of light.
As shown in fig. 1, 2 and 4, in some embodiments, optionally, the light emitting assembly 3 includes a second bracket 32 connected to an end of the lamp body 1, a second through hole 320 is provided on the second bracket 32, an end of the light guiding column 2 extends into the second through hole 320, and the light emitting member 30 is provided on the second bracket 32 and is disposed opposite to the second through hole 320.
In this embodiment, the light emitting assembly 3 further includes a second bracket 32, the light emitting element 30 is disposed on the second bracket 32, the second bracket 32 is connected with an end portion of the lamp body 1, so as to fix the light emitting element 30, wherein a second through hole 320 is disposed on the second bracket 32, and an end portion of the light guiding column 2 extends into the second through hole 320, so as to fix the light guiding column 2, and meanwhile, the light guiding column 2 is disposed opposite to the light emitting element 30, so that reliability of light conduction is ensured.
Optionally, the light guiding post 2 is in limit fit with the second through hole 320, so that the light guiding post 2 is clamped in the second through hole 320.
As shown in fig. 2, in some embodiments, optionally, the light emitting assembly 3 further includes a third bracket 34, the light emitting member 30 is disposed on the third bracket 34, and the third bracket 34 is disposed on the second bracket 32, where the third bracket 34 is provided with a third through hole 340, and the third through hole 340 is disposed opposite to and communicates with the second through hole 320.
In this embodiment, the lighting assembly 3 further includes a third bracket 34, where the third bracket 34 is used to mount the lighting element 30, and provides a mounting carrier for the lighting element 30, so as to avoid the occurrence of damage to the lighting element 30 caused by directly mounting the lighting element 30. The third through hole 340 is opposite to and communicated with the second through hole 320, so that shielding of the light by the third bracket 34 can be avoided.
Optionally, a groove is disposed on the second bracket 32, the second through hole 320 penetrates through the bottom wall of the groove, and the third bracket 34 is disposed in the groove and opposite to the second through hole 320.
Alternatively, the light emitting member 30 is mounted on the third bracket 34 in advance.
Optionally, the light emitting element 30 comprises an LED (LIGHT EMITTING Diode) lamp.
As shown in fig. 1 and 2, in some embodiments, optionally, the light emitting assembly 3 further includes a heat dissipation member 36, and a side of the light emitting member 30 facing away from the light guiding pillar 2 is attached to the heat dissipation member 36.
In this embodiment, the light emitting component 3 further includes a heat dissipation element 36, where the heat dissipation element 36 is disposed on a side of the light emitting element 30 facing away from the light guiding pillar 2, so that light emitted by the light emitting element 30 can be prevented from being blocked, and a heat dissipation effect of the light emitting element 30 can be improved.
Optionally, the heat sink 36 comprises a heat sink.
As shown in fig. 1 and 2, in some embodiments, optionally, the light emitting assembly 3 further includes an end cover 38, where the end cover 38 covers the second bracket 32 and the outer side of the light emitting member 30, and the end cover 38 is connected to the lamp body 1.
In this embodiment, the light emitting assembly 3 further includes an end cover 38, and the end cover 38 is covered on the outer sides of the second bracket 32 and the light emitting member 30, so as to protect the light emitting member 30 and the second bracket 32, and prevent dust from falling on the light emitting member 30 and the second bracket 32 to affect the light transmission.
It will be appreciated that the light emitting member 30 is capable of emitting light to the light guiding column 2.
As shown in fig. 2, optionally, the light emitting assembly 3 further includes a first connecting member 39 (e.g. a screw), where the first connecting member 39 sequentially penetrates through a mounting hole on the second bracket 32, a mounting hole on the third bracket 34, and a mounting hole (or a limiting gap) on the heat dissipating member 36, and then is locked on a first connecting structure (e.g. a screw post) on the end cover 38, so as to implement assembly of the light emitting assembly 3.
As shown in fig. 6, the light emitting assembly 3 is optionally connected to the first bracket 12 by a second connecting member 6 (e.g. a screw), wherein the second connecting member 6 is inserted through a mounting hole in the end cover 38 from a side of the end cover 38 facing away from the first bracket 12, and is locked to a second connecting structure (e.g. a screw post) on the first bracket 12, so as to connect the light emitting assembly 3 to the first bracket 12.
Optionally, the tube 10 is compressed between end caps 38 at both ends, and the end caps 38 at both ends of the tube 10 have a limiting effect on the tube 10.
As shown in fig. 1 and 5, in some embodiments, optionally, the lamp further includes a base assembly 5, where the base assembly 5 is disposed outside the lamp body 1 and connected to the lamp body 1.
In this embodiment, the lamp further includes a base component 5, and the base component 5 is disposed on the outer side of the lamp body 1 and connected with the lamp body 1, so that the lamp can be installed on a position to be installed through the base component 5, and wall-mounted installation of the lamp is achieved.
As shown in fig. 1 and 5, in some embodiments, the base assembly 5 optionally includes a base 50 and a first magnetic member 52. The lamp body 50 is positioned at the outer side of the lamp body 1, the first magnetic piece 52 is arranged at the base body 50, wherein the second magnetic piece 14 is arranged in the lamp body 1, and the first magnetic piece 52 and the second magnetic piece 14 are attracted.
In this embodiment, the base assembly 5 includes the first magnetic member 52 and the base 50, the second magnetic member 14 is disposed in the lamp body 1, the base assembly 5 and the lamp body 1 are connected by the adsorption of the first magnetic member 52 and the second magnetic member 14, so that the appearance of the lamp body 1 is not required to be damaged, and the base assembly 5 can be disassembled, so that the lamp has multiple use modes.
Optionally, the base is provided with a limiting groove, and the lamp body 1 can be installed in the limiting groove.
Optionally, the wall surface of the limiting groove is arc-shaped to be matched with the outer side wall of the lamp body 1.
Alternatively, the first magnetic member 52 is arcuate and is glued or mounted in a fixed configuration within the spacing groove.
Optionally, a second magnetic member 14 is disposed on the first bracket 12.
In some embodiments, alternatively, the first magnetic member 52 and the second magnetic member 14 are both permanent magnets, or one of the first magnetic member 52 and the second magnetic member 14 is an iron sheet and the other is a permanent magnet.
In this embodiment, the first magnetic member 52 and the second magnetic member 14 may be permanent magnets, and in the case that the base assembly 5 is mounted on the outer side wall of the lamp body 1, the two permanent magnets are attracted, so that the connection reliability between the base assembly 5 and the lamp body 1 is improved. The first magnetic member 52 and the second magnetic member 14 may be configured such that one of them is an iron sheet and the other is a permanent magnet, and the two are attracted to each other to realize the mounting of the base assembly 5.
As shown in fig. 5, in some embodiments, optionally, a magnet slot 124 is provided in the lamp body 1, and the second magnetic member 14 is provided in the magnet slot 124.
In this embodiment, the second magnetic member 14 is disposed in the magnet groove 124, so that the connection strength between the second magnetic member 14 and the lamp body 1 is improved, and the second magnetic member 14 can be prevented from falling off. Meanwhile, the second magnetic element 14 is arranged in the magnet groove 124, so that the occupation of the space in the lamp body 1 by the second magnetic element 14 can be reduced.
Optionally, a magnet slot 124 is provided on the first bracket 12.
In a specific application, the light source (for example, the light emitting piece 30) is arranged at two ends of the lamp body 1, the light guide column 2 is arranged in the middle of the light sources at the two ends, so that the light is uniform on the light guide column 2, and the reflecting paper 40 is arranged at one side of the light guide column 2, so that the light is reflected towards the same direction to form a light emitting surface for light concentrated emission, the problem of volume limitation of the lamp panel or the soft lamp strip in the related art can be avoided, the problem of limitation of light emergent from the flat surface is avoided, and the variability of the shape of a product can be realized.
Optionally, the luminaire comprises a mounting bracket (e.g. the first bracket 12), a COB (Chip On Board Light, chip on board) bracket (e.g. the third bracket 34), a COB light source (e.g. the lighting element 30), a heat sink (e.g. the heat sink 36), an end cap 38, the lamp body 1, the reflective paper 40, the light guide post 2.
As shown in fig. 2, the CBO light source is attached to the heat sink, and the screws pass through the mounting holes on the second bracket 32 and the mounting holes on the COB bracket, then pass through the mounting holes on the heat sink, and are positioned on the end cover 38 through the mounting holes on the heat sink, and finally the screws are locked on the screw posts on the end cover 38 to fix.
As shown in fig. 4, the light guide pillar 2 is disposed in a positioning hole (e.g., a second through hole 320) formed in the second bracket 32.
As shown in fig. 3, the light reflecting paper 40 is attached to the mounting groove 120 set in the mounting bracket, and the light guiding post 2 passes through the first through holes 122 at both ends, so that the light reflecting paper 40 is attached to the light guiding post 2.
As shown in fig. 5, the iron sheet is adhered and fixed on the base 50 of the wall-mounted lamp to form the base assembly 5, the magnet (for example, the second magnetic member 14) is placed in the lamp body 1, and the magnet groove 124 is set on the mounting bracket, and the magnet groove 124 is used for placing the magnet.
As shown in fig. 6, the light emitting components 3 shown in fig. 2 are arranged at two ends of the lamp body 1, a mounting bracket is arranged in the lamp body 1, and two ends of the lamp body 1 are locked on screw posts of the mounting bracket through mounting holes on the end cover 38 by screws, so that fixation is realized.
Optionally, the lamp is a wall-mounted lamp, and in particular, the lamp is a kill lamp.
In the present utility model, the term "plurality" means two or more, unless explicitly defined otherwise. The terms "mounted," "connected," "secured," and the like are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected, or may be directly or indirectly connected via an intermediate medium. The specific meaning of the above terms in the present utility model can be understood by those of ordinary skill in the art according to the specific circumstances.
In the description of the present specification, the terms "one embodiment," "some embodiments," "particular embodiments," and the like, mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the present utility model. In this specification, schematic representations of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
The above description is only of the preferred embodiments of the present utility model and is not intended to limit the present utility model, but various modifications and variations can be made to the present utility model by those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model should be included in the protection scope of the present utility model.