WO2020155372A1 - 并接式轨道结构及组合 - Google Patents

并接式轨道结构及组合 Download PDF

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Publication number
WO2020155372A1
WO2020155372A1 PCT/CN2019/081242 CN2019081242W WO2020155372A1 WO 2020155372 A1 WO2020155372 A1 WO 2020155372A1 CN 2019081242 W CN2019081242 W CN 2019081242W WO 2020155372 A1 WO2020155372 A1 WO 2020155372A1
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Prior art keywords
rail
locking
locking hole
parallel
side cover
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PCT/CN2019/081242
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English (en)
French (fr)
Inventor
卢福星
兰小平
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厦门普为光电科技有限公司
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Publication of WO2020155372A1 publication Critical patent/WO2020155372A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V21/00Supporting, suspending, or attaching arrangements for lighting devices; Hand grips
    • F21V21/34Supporting elements displaceable along a guiding element
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V17/00Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages
    • F21V17/10Fastening of component parts of lighting devices, e.g. shades, globes, refractors, reflectors, filters, screens, grids or protective cages characterised by specific fastening means or way of fastening
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO THE FORM OR THE KIND OF THE LIGHT SOURCES OR OF THE COLOUR OF THE LIGHT EMITTED
    • F21Y2115/00Light-generating elements of semiconductor light sources
    • F21Y2115/10Light-emitting diodes [LED]
    • F21Y2115/15Organic light-emitting diodes [OLED]

Definitions

  • the invention relates to a lamp, in particular to a parallel track structure.
  • OLED organic light-emitting diode
  • OLED is usually used in surface light source modules and installed on a track structure.
  • OLED lamp combinations often require angle and position changes. For example, it may be necessary to rotate an angle or move the position to make OLED lamps illuminate.
  • the electrical connection problem must be considered for the movement of this kind of mechanism. That is, the current OLED lamps have limited freedom of movement due to the electrical connection problem, that is, lack of movement. Or turning function, so it is quite inconvenient for the use of situational lighting, which leads to problems such as that OLED lamps may not be applicable if the lighting equipment needs to have a moving or rotating function.
  • an embodiment of the present invention provides a parallel rail structure including a rail groove and two side cover joints.
  • the rail groove includes a bottom plate and two opposite side plates.
  • the two side cover joints are respectively located in the rail grooves.
  • the track structure further includes two splicing pieces, the two splicing pieces are relatively accommodated in each of the slots, each of the splicing pieces includes a front panel and two side panels, and each of the front panels is attached to each Two side cover joints, each side panel has a first locking structure on both sides, the side panel is located in the rail groove, and has a second locking structure, and is locked to the first locking structure .
  • the parallel rail structure further comprises a locking member
  • the side cover joint is provided with a locking hole corresponding to the opening of the rail, and both ends of the bottom of the front panel have notches, The locking member passes through the locking hole and the rail to lock the side cover joint on the rail groove.
  • the first locking structure includes a first locking hole
  • the second locking structure includes a second locking hole.
  • the locking member fixes the assembling member and the rail groove through the first locking hole and the second locking hole.
  • the locking member there are a plurality of the locking member, the first locking hole, and the second locking hole.
  • the first lock hole and the second lock hole are arranged in a direction different from an extension direction of the rail groove.
  • the rail groove is aluminum extrusion.
  • the width of each splicing piece is smaller than the notch.
  • An embodiment of the present invention also provides a parallel rail structure combination, which includes at least two of the above-mentioned parallel rail structures, wherein the adjacent parallel rail structures are locked by a connecting lock.
  • the seamless splicing method is mainly used for the buckle or locking structure.
  • each front panel is attached to each side cover joint to form a seamless splicing method.
  • the structural strength can be increased dozens of times or even hundreds of times, and the locking structure can be used to pull hundreds of kilograms, so it is very effective.
  • Fig. 1 is an exploded schematic diagram of an embodiment of the present invention.
  • Fig. 2 is an exploded top schematic view of an embodiment of the present invention.
  • Figure 3 is a schematic top view of a combination of an embodiment of the present invention.
  • Fig. 4 is a schematic diagram of the appearance of an embodiment of the present invention.
  • Fig. 5 is a schematic diagram of a combination of an embodiment of the present invention.
  • Rail structure 11, rail groove, 111, bottom plate, 112, side plate, 1121, first locking structure, 1121a, first keyhole, 113, notch, 12, splicing piece, 121, front panel, 1211 , Through hole, 1212, first locking hole, 1213, notch, 122, side panel, 1221, second locking structure, 1221a, second locking hole, 13, side cover connector, 131, perforation, 132, second Locking hole, 133, locking hole, 14, connecting lock piece, 16, locking piece, 17, rail, 18, locking piece.
  • FIG. 1 to FIG. 5 are respectively a combined schematic diagram and an exploded schematic diagram of an embodiment of the track structure 1 of the present invention.
  • the track structure 1 is an elongated groove structure, and the track structure 1 includes a track groove 11, two splicing pieces 12 and two side cover joints 13.
  • the two assembling pieces 12 are respectively U-shaped appearance structures, and the two side plates 13 are each a thin plate.
  • the rail groove 11 is made of aluminum extrusion.
  • the rail groove 11 includes an integrated bottom plate 111 and two opposite side plates 112.
  • the cross section of the bottom plate 111 and the opposite two side plates 112 is U-shaped.
  • the side plates 112 are respectively connected to the two sides of the bottom plate 111 to form two opposite notches 113, and the two sides of each side plate 112 have a first locking structure 1121.
  • each assembling piece 12 is smaller than the notch 113, and each assembling piece 12 is relatively accommodated in each of the notches 113.
  • each of the assembling pieces 12 includes an integrated front panel 121 and two side panels 122, and the side panels 122 are connected to both sides of the front panel 121, respectively.
  • the front panel 121 includes a through hole 1211 and has a different plane from the bottom plate 111, and the side panel 122 is located in the rail groove 11 and has a second locking structure 1221 that is similar to the first The locking structure 1121 is locked, and the position of the front panel 121 corresponds to the notch 113.
  • each side cover connector 13 is located at both ends of the rail groove 11, and a through hole 131 is provided corresponding to the through hole 1211, and each front panel 121 is attached to each side cover connector 13 to form Seamless splicing way.
  • the front panel 121 is further provided with a first locking hole 1212 located on one side of the through hole 1211, and the side cover connector 13 is also provided with a second locking hole 132 located in the through hole 1211. 131, wherein the position of the first locking hole 1212 corresponds to the position of the second locking hole 132, passing through the first locking hole 1212 and the second locking hole via the connecting lock 14 132. Lock the side cover connector 13 on the front panel 121.
  • the track structure 1 further includes a locking member 16.
  • the first locking structure 1121 includes a first locking hole 1121a
  • the second locking structure 1221 includes a second locking hole 1221a. 16
  • the assembling piece 12 is fixedly connected to the rail groove 11 through the first locking hole 1121a and the second locking hole 1221a.
  • the present invention is not limited by this.
  • the side plate 112 and the bottom plate 111 are connected with a rail 17, and the extension direction of the rail 17 is the same as the extension direction of the rail groove 11.
  • the side cover joint 13 is provided with a locking hole 133 corresponding to the opening of the rail 17, and both ends of the bottom of the front panel 121 have notches 1213, and the locking member 18 penetrates Through the locking hole 133 and the rail 17, the side cover connector 13 is locked on the rail groove 11.
  • FIG. 4 is a schematic view of the appearance of an embodiment of the track structure assembly 100 according to the present invention.
  • the track structure assembly 100 includes two track structures 1, and the adjacent track structures 1 are locked through the connecting lock 14.
  • the seamless splicing method is converted into shearing force, which can increase the structural strength, which is extremely beneficial to users or industry operators.
  • the seamless splicing method is mainly used for the buckle or locking structure.
  • each front panel is attached to each side cover joint to form a seamless splicing method.
  • the structural strength can be increased dozens of times or even hundreds of times, and the locking structure can be used to pull hundreds of kilograms, so it is very effective.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Connection Of Plates (AREA)

Abstract

一种轨道结构(1),包含轨槽(11)及二侧盖接头(13),轨槽(11)包含底板(111)及相对的二侧板(112),二侧盖接头(13)分别位于轨槽(11)的两端,轨道结构(1)更包含二拼接件(12),二拼接件(12)相对容设在各槽口(113)内,各拼接件(12)包含前面板(121)及二侧面板(122),各侧板(112)的两侧具有第一锁固结构(1121),侧面板(122)位于轨槽(11)内,且具有第二锁固结构(1221),与第一锁固结构(1121)锁接。主要以锁接结构,采用无缝拼接的方式,转换成剪切力,结构强度可提升几十倍甚至上百倍,极具效益。

Description

并接式轨道结构及组合 技术领域
本发明涉及一种灯具,特别涉及一种并接式轨道结构。
背景技术
照明技术领域中,OLED(有机发光二极体)具有自发光性(self-emissive)、较广视角、反应时间快、可使用温度范围大、高对比、低耗电且制程简单等优点,因而在照明灯具制造上,逐渐受到重视,但仍有许多改善空间。
OLED通常应用在面型光源模组,安装在一轨道结构上,应用于情境照明时,OLED灯具组合常有角度、位置改变需求,例如可能要旋转一个角度或移动位置,方能使OLED灯具照射到目标物,然此类机构运动,除了灯具与基座接合关系外,尚须考量电性连接问题,亦即,目前OLED灯具在考量电性连接问题下,运动自由度受到限制,即缺乏移动或转动功能,故对于情境照明之使用相当不便,此导致若灯具设备需具移动或转动功能时,OLED灯具恐无法适用等问题。
轨道并接轨道加以延长,需求在于灯具的延展性,如何设计一种结构强度高且拉力强的轨道灯具结构。
发明内容
有鉴于上述问题,本发明一实施例提出一种并接式轨道结构,包含轨槽及二侧盖接头,轨槽包含底板及相对的二侧板,二侧盖接头分别位于所述的轨槽的两端,轨道结构更包含二拼接件,二拼接件相对容设在各所述的槽口内,各所述拼接件包含前面板及二侧面板,各所述的前面板分别贴合于各二侧盖接头,各所述的侧板的两侧具有第一锁固结构,所述侧面板位于所述轨槽内,且具有第二锁固结构,与所述第一锁固结构锁接。
根据上述并接式轨道结构的一种优选的实施方式,其中,所述的侧板与所述底板连接处具有轨道,所述轨道的延伸方向与所述轨槽的延伸方向相同。
根据上述并接式轨道结构的一种优选的实施方式,其中,还包含锁固件,所述侧盖接头对应于所述轨道的开设有锁固孔,所述前面板底部的两端具有缺口,所述锁固件穿过所述锁固孔及所述轨道,将所述侧盖接头锁固于轨槽上。
根据上述并接式轨道结构的一种优选的实施方式,其中,还包括锁接件,所述第一锁固结构包含第一锁孔,所述第二锁固结构包含第二锁孔,所述锁接件经由所述第一锁孔及所述第二锁孔将所述拼接件与所述轨槽固接。
根据上述并接式轨道结构的一种优选的实施方式,其中,所述锁接件、所述第一锁孔、所述第二锁孔为多个。
根据上述并接式轨道结构的一种优选的实施方式,其中,所述第一锁孔及所述第二锁孔以与该轨槽的一延伸方向不同的方向排列开设。
根据上述并接式轨道结构的一种优选的实施方式,其中,所述轨槽为铝挤型。
根据上述并接式轨道结构的一种优选的实施方式,所述各个拼接件的宽度小于槽口。
本发明一实施例亦提出一种并接式轨道结构组合,包含至少二个上述并接式轨道结构,其中相邻的所述并接式轨道结构经由一连接锁件锁接。
综上所述,根据本发明的轨道结构以及组合,主要以卡扣或锁接结构,采用无缝拼接的方式,例如各前面板分别贴合于各侧盖接头,形成无缝拼接的方式,并且,转换成剪切力,结构强度可提升几十倍甚至上百倍,用锁接结构可拉至几百公斤,因此极具效益。
附图说明
图1为本发明一实施例的分解示意图。
图2为本发明一实施例分解的俯视示意图。
图3为本发明一实施例组合的俯视示意图。
图4为本发明一实施例的外观示意图。
图5为本发明一实施例的组合示意图。
附图标记说明:
1、轨道结构,11、轨槽,111、底板,112、侧板,1121、第一锁固结构,1121a、第一锁孔,113、槽口,12、拼接件,121、前面板,1211、通孔,1212、第一锁接孔,1213、缺口,122、侧面板,1221、第二锁固结构,1221a、第二锁孔,13、侧盖接头,131、穿孔,132、第二锁接孔,133、锁固孔,14、连接锁件,16、锁接件,17、轨道,18、锁固件。
以下在实施方式中详细叙述本发明之详细特征以及优点,其内容足以使任何熟习相关技艺者了解本发明之技术内容并据以实施,且根据本说明书所揭露之内容、权利要求及图式,任何熟习相关技艺者可轻易地理解本创作相关之目的及优点。
具体实施方式
为详细说明技术方案的技术内容、构造特征、所实现目的及效果,以下结合具体实施例并配合附图详予说明。
请参阅图1至图5,分别为本发明的轨道结构1的一实施例组合示意图及分解示意图。
本实施例中,轨道结构1为一长条形凹槽结构,轨道结构1包含轨槽11、二拼接件12以及二侧盖接头13。二拼接件12分别为U字型外观结构,二侧板13各别为一薄型板块。
本实施例中,轨槽11为铝挤型制成,轨槽11包括一体式结构的底板111及相对的二侧板112,底板111及相对的二侧板112截面观之概呈U字型外观,所述侧板112分别连接于底板111的两侧形成二相对的槽口113,各所述的侧板112的两侧具有第一锁固结构1121。
本实施例中,各个拼接件12的宽度小于槽口113,各个拼接件12相对容设在各所述的槽口113内。
本实施例中,各所述拼接件12包含一体式结构的前面板121及二侧面板122,所述侧面板122分别连接于所述前面板121的两侧。
本实施例中,所述前面板121包含通孔1211且与所述底板111不同平面,所述侧面板122位于所述轨槽11内,且具有第二锁固结构1221,与所述第一锁固结构1121锁接,所述前面板121的位置对应于所述槽口113。
本实施例中,各侧盖接头13分别位于所述的轨槽11的两端,且对应所述的通孔1211开设有穿孔131,各前面板121分别贴合于各侧盖接头13,形成无缝拼接的方式。
本实施例中,所述前面板121还开设有第一锁接孔1212,位于所述通孔1211的一侧,所述侧盖接头13还开设有一第二锁接孔132,位于所述穿孔131的一侧,其中所述第一锁接孔1212的位置对应于所述第二锁接孔132的位置,经由连接锁件14穿过所述第一锁接孔1212、第二锁接孔132,将所述侧盖接头13锁接在所述前面板121上。
本实施例中,轨道结构1还包括锁接件16,所述第一锁固结构1121包含第一锁孔1121a,所述第二锁固结构1221包含第二锁孔1221a,所述锁接件16经由所述第一锁孔1121a及所述第二锁孔1221a将所述拼接件12与所述轨槽11固接。
本实施例中,所述锁接件16、所述第一锁孔1121a、所述第二锁孔1221a为多个。其中,所述第一锁孔1121a及所述第二锁孔1221a以与该轨槽11的一延伸方向不同的方向排列开设。然而本发明并不以此为限制。
本实施例中,所述侧板112与所述底板111连接处具有轨道17,所述轨道17的延伸方向与所述轨槽11的延伸方向相同。
本实施例中,还包含锁固件18,所述侧盖接头13对应于所述轨道17的开设有锁固孔133,所述前面板121底部的两端具有缺口1213,所述锁固件18穿过所述锁固孔133及所述轨道17,将所述侧盖接头13锁固于轨槽11上。
请参阅图4,为根据本发明的轨道结构组合100的一实施例的外观示意图。 在此实施例中,轨道结构组合100包含二个轨道结构1,其中相邻的所述轨道结构1经由所述的连接锁件14锁接。如此采用无缝拼接的方式,转换成剪切力,可提升结构强度,对于使用者或是业者而言,极具效益。
综上所述,根据本发明的轨道结构以及组合,主要以卡扣或锁接结构,采用无缝拼接的方式,例如各前面板分别贴合于各侧盖接头,形成无缝拼接的方式,并且,转换成剪切力,结构强度可提升几十倍甚至上百倍,用锁接结构可拉至几百公斤,因此极具效益。
需要说明的是,尽管在本文中已经对上述各实施例进行了描述,但并非因此限制本发明的专利保护范围。因此,基于本发明的创新理念,对本文所述实施例进行的变更和修改,或利用本发明说明书及附图内容所作的等效结构或等效流程变换,直接或间接地将以上技术方案运用在其他相关的技术领域,均包括在本发明专利的保护范围之内。

Claims (9)

  1. 一种并接式轨道结构,包含轨槽及二侧盖接头,轨槽包含底板及相对的二侧板,二侧盖接头分别位于所述的轨槽的两端,其特征在于:更包含二拼接件,二拼接件相对容设在各所述轨槽内,各所述拼接件包含前面板及二侧面板,各所述的前面板分别贴合于各二侧盖接头,各所述的侧板的两侧具有第一锁固结构,所述侧面板具有与所述第一锁固结构锁接的第二锁固结构。
  2. 根据权利要求1所述的并接式轨道结构,其特征在于,所述侧板与所述底板连接处具有轨道,所述轨道的延伸方向与所述轨槽的延伸方向相同。
  3. 根据权利要求2所述的并接式轨道结构,其特征在于,还包含锁固件,所述侧盖接头对应于所述轨道的开设有锁固孔,所述前面板底部的两端具有缺口,所述锁固件穿过所述锁固孔及所述轨道,将所述侧盖接头锁固于轨槽上。
  4. 根据权利要求1所述的并接式轨道结构,其特征在于,还包括锁接件,所述第一锁固结构包含第一锁孔,所述第二锁固结构包含第二锁孔,所述锁接件经由所述第一锁孔及所述第二锁孔将所述拼接件与所述轨槽固接。
  5. 根据权利要求4所述的并接式轨道结构,其特征在于,所述锁接件、所述第一锁孔、所述第二锁孔为多个。
  6. 根据权利要求4所述的并接式轨道结构,其特征在于,所述第一锁孔及所述第二锁孔以与该轨槽的一延伸方向不同的方向排列开设。
  7. 根据权利要求1所述的并接式轨道结构,其特征在于,所述轨槽为铝挤型。
  8. 根据权利要求1所述的并接式轨道结构,其特征在于,所述各个拼接件的宽度小于槽口。
  9. 一种并接式轨道结构组合,其特征在于,包含:至少二个如权利要求1所述的轨道结构,其中相邻的所述轨道结构经由一连接锁件锁接。
PCT/CN2019/081242 2019-01-30 2019-04-03 并接式轨道结构及组合 WO2020155372A1 (zh)

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CN201910090267.7 2019-01-30
CN201910090267.7A CN109611804B (zh) 2019-01-30 2019-01-30 并接式轨道结构及组合

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