WO2017088323A1 - 设有空槽的连接件及由其构成的灯具和灯具拼接方法 - Google Patents

设有空槽的连接件及由其构成的灯具和灯具拼接方法 Download PDF

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Publication number
WO2017088323A1
WO2017088323A1 PCT/CN2016/076552 CN2016076552W WO2017088323A1 WO 2017088323 A1 WO2017088323 A1 WO 2017088323A1 CN 2016076552 W CN2016076552 W CN 2016076552W WO 2017088323 A1 WO2017088323 A1 WO 2017088323A1
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WIPO (PCT)
Prior art keywords
luminaire
hexagonal
connector
lamp
module
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PCT/CN2016/076552
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English (en)
French (fr)
Inventor
袁建平
Original Assignee
深圳市希亚照明科技有限公司
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Publication of WO2017088323A1 publication Critical patent/WO2017088323A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21KNON-ELECTRIC LIGHT SOURCES USING LUMINESCENCE; LIGHT SOURCES USING ELECTROCHEMILUMINESCENCE; LIGHT SOURCES USING CHARGES OF COMBUSTIBLE MATERIAL; LIGHT SOURCES USING SEMICONDUCTOR DEVICES AS LIGHT-GENERATING ELEMENTS; LIGHT SOURCES NOT OTHERWISE PROVIDED FOR
    • F21K9/00Light sources using semiconductor devices as light-generating elements, e.g. using light-emitting diodes [LED] or lasers
    • F21K9/20Light sources comprising attachment means
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S2/00Systems of lighting devices, not provided for in main groups F21S4/00 - F21S10/00 or F21S19/00, e.g. of modular construction
    • F21S2/005Systems of lighting devices, not provided for in main groups F21S4/00 - F21S10/00 or F21S19/00, e.g. of modular construction of modular construction
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S2/00Systems of lighting devices, not provided for in main groups F21S4/00 - F21S10/00 or F21S19/00, e.g. of modular construction
    • 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
    • F21V21/002Supporting, suspending, or attaching arrangements for lighting devices; Hand grips making direct electrical contact, e.g. by piercing
    • 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
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • F21V23/06Arrangement of electric circuit elements in or on lighting devices the elements being coupling devices, e.g. connectors
    • 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
    • F21V29/00Protecting lighting devices from thermal damage; Cooling or heating arrangements specially adapted for lighting devices or systems
    • F21V29/50Cooling arrangements
    • F21V29/70Cooling arrangements characterised by passive heat-dissipating elements, e.g. heat-sinks
    • F21V29/74Cooling arrangements characterised by passive heat-dissipating elements, e.g. heat-sinks with fins or blades

Definitions

  • the invention relates to a connecting structure and a luminaire structure, in particular to a connecting member provided with an empty slot and a splicing method of the illuminating device and the illuminating device formed thereby.
  • a connecting member provided with an empty slot includes a connecting body; the connecting body is provided with an empty slot for accommodating the connecting conductor, and a screw mounting hole on both sides of the empty slot.
  • a further technical solution is that the two ends of the connecting member are provided with inclined surfaces corresponding to the connecting sides of the lamp module.
  • a luminaire comprising at least two hexagonal luminaire modules, a connecting member and a connecting conductor connected to a connector of the hexagonal luminaire module adjacent to the hexagonal luminaire module; the connecting member
  • the connecting member provided with the empty slot; the connecting member is fixedly coupled with the connecting edge of the hexagonal lamp module.
  • the hexagonal lamp module comprises a lamp holder body; the lamp holder body comprises a hexagonal plate-shaped body, six panels on the rear side of the plate-shaped body, and six blocks. a heat sink in the middle of the plate; a space between the six boards and an edge of the plate body forms a coupling edge; and a front side of the plate body is provided with a light emitting element.
  • a further technical solution is: further comprising a hexagonal back cover on the back side of the six panels; the six panels are evenly distributed along the center of the plate body.
  • a further technical solution is: a power module is disposed in the middle of the six boards, and the connector is electrically connected to the power module, wherein at least one of the boards is provided with a connector slot for mounting the embedded connector.
  • the further technical solution is that there are three panels with connector slots, two of which are located on the two symmetrical panels, and a connector pressure plate located inside the connector slot.
  • the further technical solution is as follows: further comprising at least two mounting posts disposed in the middle of the six panels, the rear cover is provided with a mounting slot corresponding to the mounting post; and the rear cover is further provided with a heat dissipation hole.
  • a further technical solution is: a gap is provided adjacent to the surrounding plates; a triangular rib extending at both ends of each of the surrounding plates toward an edge of the plate-shaped body; adjacent two triangular ribs are parallel
  • the plate-shaped body includes a light-emitting body on the front side and a heat-dissipating body on the rear side, and the light-emitting body and the heat-dissipating body are connected by screws.
  • a method for splicing a luminaire by using a hexagonal luminaire module wherein two or more hexagonal luminaire modules are fixedly coupled by edges by means of connecting members; one of the six A power module is disposed in the edge luminaire module, and two adjacent hexagonal luminaire modules are electrically connected by a connecting conductor disposed in the vacant slot of the connecting member; wherein the connecting member is located in two hexagonal luminaire modules
  • the rear side of the adjacent side of the group realizes the fixed connection of two adjacent hexagonal lamp modules by means of screw connection; wherein the hexagonal lamp module is provided with a connector which is quickly connected with the connecting conductor; each of the six The edge luminaire module is provided with three connectors, two of which are located at two opposite edges of the hexagon.
  • the invention has the advantages that the connecting member of the invention adopts an empty slot, and can provide a receiving space for the connecting conductor, so that the connecting space between the lamp modules is small and the structure is compact.
  • the lamp of the invention adopts a regular hexagonal lamp module, and the feature of the regular hexagon can realize the interconnection between the modules in six directions, thereby realizing the combination of different numbers of modules, and achieving the combination of various forms of the lamp.
  • a connector is used to make a quick connection between two luminaire modules by using a connecting conductor.
  • the connector with the empty slot can accommodate the connecting conductor and the connecting edge of the lamp module, thereby achieving seamless docking between the two modules, and occupying less space, and the shape is simple and clear. specialty.
  • FIG. 1 is a perspective enlarged view of a first embodiment of a connecting member provided with an empty slot according to the present invention
  • FIG. 2 is a perspective enlarged view of a second embodiment of a connecting member provided with an empty slot according to the present invention
  • FIG. 2A is an exploded perspective view of the connector of the embodiment of the present invention using the connector of FIG. 2 (only one lamp module and one connector are shown);
  • FIG 3 is a perspective view of the luminaire of the present invention using the connector of the embodiment of Figure 1 (only one luminaire module and one connector are shown);
  • FIG. 4 is an exploded perspective view showing a specific embodiment of the hexagonal lamp module in the embodiment of FIG. 3;
  • Figure 5 is an exploded perspective view of still another angle of the embodiment of Figure 3;
  • FIG. 6 is a plan view showing a specific embodiment of a luminaire composed of two hexagonal luminaire modules
  • FIG. 7 is a plan view showing a specific embodiment of a luminaire composed of three hexagonal luminaire modules
  • Figure 8 is a plan view showing a specific embodiment of a luminaire composed of four hexagonal luminaire modules
  • Figure 9 is a plan view of a particular embodiment of a luminaire constructed from seven hexagonal luminaire modules.
  • a connector 90 having an empty slot includes a connecting body 900.
  • the connecting body 900 is provided with a slot 91 for receiving a connecting conductor, and a screw mounting hole on both sides of the slot.
  • An empty slot 91 for receiving the connecting conductor is provided; the connecting member 90 is fixedly coupled with the connecting side 100 of the hexagonal lamp module S (as shown in FIG. 3).
  • a triangular bevel 99 corresponding to the triangular rib 21 is provided at the end of the connector 90.
  • a cavity 97 is provided between the screw hole 98 and the triangular bevel 99, and the screw hole 98 is disposed in the middle of the screw hole 96.
  • the screw holes 96 on the same side are joined together by the ribs 95 to enhance the overall strength of the connector.
  • a connecting member 90A provided with an empty groove of the present invention employs a narrow-length recess 91A, and a strip-like projection 92A is provided in the middle of the screw hole 98A.
  • This structure is suitable for a luminaire module structure S' having a deeper connecting edge (i.e., the coupling groove 100A as shown in Fig. 2A).
  • a slope 99A corresponding to the side wall of the coupling groove 100A is provided at the end of the coupling member 90A.
  • FIG. 1 or FIG. 2 it is also possible to provide a slot portion on the side wall of the coupling edge or the coupling groove, and a rib portion for inserting the slot portion on the side or the inclined surface of the connector. After the rib portion of the connecting member is completely inserted into the slot portion of the coupling slot from the horizontal direction, the connecting member is fixedly coupled to the luminaire module by screwing.
  • This structure can make the joint portion between the two lamp modules supported by the force not only the position of the screw hole, but also the connection position of the slot portion and the ridge portion, which greatly improves the relationship between the two lamp modules. The strength of the joint.
  • a lamp of the present invention comprises at least two hexagonal lamp modules S, and a connecting member 90 and a connecting conductor connected to the connector are arranged adjacent to the hexagonal lamp module S (Fig. Not shown, the power supply line and/or the control line between the two modules are connected by a connecting conductor.
  • the power module can be placed in one of the modules.
  • the power module can be separately set outside the module.
  • a bracket may be added to fix the lamp module through the bracket, and the bracket may also be used to fix the independently set power module.
  • the hexagonal lamp module S used in the lamp of the present invention comprises a lamp holder body; the lamp holder body comprises a regular hexagonal plate-shaped body 10 and six blocks on the rear side of the plate-shaped body 10 .
  • the shroud 20 and the fins 30 located between the six shrouds 20; the spacing between the six shrouds 20 and the edges of the plate-like body 10 constitutes a coupling edge 100; the front side of the plate-like body 10 is provided with a light-emitting element 40.
  • the six panels 20 are evenly distributed along the center of the plate-like body 10 to form a hexagonal shape, and further include a hexagonal back cover 50 on the rear side of the six panels 20 for aesthetics, protection of internal components and dust prevention. .
  • a power module (not shown) is disposed in the middle of the six panels 20, and three connectors 60 (only one is shown) electrically connected to the power module, wherein three panels 20 are provided for
  • the connector slot 200 of the connector 60 is embedded.
  • Two of the connector slots 200 are located on the two symmetrical panels, and further include a connector pressing plate 61 (only two are shown in the figure, which are fixed to the heat sink 30 by screws).
  • It further includes four mounting posts 19 disposed in the middle of the six panels 20, and the rear cover 50 is provided with a mounting slot 51 corresponding to the mounting post 19 (so that the mounting screws can be fixedly coupled to the mounting post through the mounting slots to improve the fixing Mounted joint strength) and four louvers 52.
  • a gap 69 is provided in the adjacent portion between the panels 20; each of the two ends of each of the panels 20 extends to the corners of the plate-like body 10 to form a triangular rib 21; the adjacent two triangular ribs 21 are preferably used. The way to set up in parallel.
  • the plate-shaped body 10 adopts a split structure, and includes a light-emitting body 101 on the front side and a heat-dissipating body 102 on the rear side, and the light-emitting body 101 and the heat-dissipating body 102 are connected by screws.
  • the light-emitting element 40 is fixed to the front side of the light-emitting body 101, preferably an LED light-emitting body.
  • the heat dissipation body 102 is used to fix the aforementioned six panels 20 and the heat sink 30.
  • the heat dissipating body 102 adopts a structure integrally formed with the six shingles 20 and the fins 30.
  • the plate-shaped body may also be a one-piece structure; or a back cover may not be provided; other light-emitting elements (such as a conventional light-emitting tube) may also be used.
  • the invention adopts a method of splicing a luminaire by using a hexagonal luminaire module, and adopts the feature that the regular hexagon can be infinitely extended in the same plane to realize assembling.
  • Two or more regular hexagonal luminaire modules are fixedly coupled by edges by means of connecting members; a power module is arranged in one of the regular hexagonal luminaire modules, two adjacent ones
  • the hexagonal luminaire module is electrically connected by a connecting conductor placed in the hollow of the connecting member;
  • the connecting member is located at the rear side of the adjacent side of the two regular hexagonal luminaire modules, and two of the two are connected by screws
  • Adjacent hexagonal luminaire modules are fixedly coupled;
  • the hexagonal luminaire module is provided with a connector that is quickly connected to the connecting conductor; each hexagonal luminaire module is provided with three connectors, two of which are The connector is located at two opposite edges of the hexagon.
  • the power module can be placed in one of the modules.
  • the power module can be separately set outside the module.
  • a bracket can be added to fix the lamp module through the bracket, and the bracket can also be used to fix the independently set power module.
  • the connecting member of the present invention adopts an empty slot, which can provide a receiving space for the connecting conductor, so that the connecting space between the lamp modules is small and the structure is compact.
  • the lamp of the invention adopts a regular hexagonal lamp module, and the feature of the regular hexagon can realize the interconnection between the modules in six directions, thereby realizing the combination of different numbers of modules, and achieving the combination of various forms of the lamp.
  • a connector is used to make a quick connection between two luminaire modules by using a connecting conductor.
  • the connector with the empty slot can accommodate the connecting conductor and the connecting edge of the lamp module, thereby achieving seamless docking between the two modules, and occupying less space, and the shape is simple and clear. specialty.

Abstract

一种设有空槽的连接件及由其构成的灯具和灯具拼接方法。一种设有空槽(91)的连接件(90),包括连接本体(900);连接本体设有一用于容置连接导体的空槽(91),及位于空槽两侧的螺钉安装孔。一种灯具至少包括二个六边形灯具模组(S),六边形灯具模组的相邻处设有连接件和与六边形灯具模组的连接器(60)连接的连接导体;连接件为设有空槽的连接件;连接件与六边形灯具模组的联接边(100)固定联接。连接件采用空槽,可以为连接导体提供容置空间,使得灯具模组之间的联接空间小,结构紧凑。灯具采用了正六边形的灯具模组,利用正六边形的特点可以在六个方向实现模组之间的相互连接,从而实现不同数量模组的组合,达到灯具的多种形式的组合,以此实现灯具的多样化。

Description

设有空槽的连接件及由其构成的灯具和灯具拼接方法
技术领域
本发明涉及一种连接结构和灯具结构,尤其涉及一种设有空槽的连接件及由其构成的灯具和灯具拼接方法。
背景技术
目前的灯具结构,通常是固定的,其外形缺少可以变化的组合方式。虽有一些专利文献公开了一些灯具的组合变化之形式,但未对灯具组合的实现提出可行的具体方案。
因此,为了实现灯具的组合变化,有必要对灯具结构进行模块化设计,以满足灯具产品形式多变的需求,又可以实现批量化生产,以降低生产成本。
发明内容
为了弥补上述现有技术的缺陷,本发明的目的是提供一种设有空槽的连接件及由其构成的灯具和灯具拼接方法。
本发明的技术方案是:
一种设有空槽的连接件,包括连接本体;所述的连接本体设有一用于容置连接导体的空槽,及位于空槽两侧的螺钉安装孔。
其进一步技术方案为:所述的连接件两端设有与灯具模组的联接边相对应的斜面。
一种灯具,至少包括二个六边形灯具模组,六边形灯具模组的相邻处设有连接件和与六边形灯具模组的连接器连接的连接导体;所述的连接件为前述的设有空槽的连接件;所述的连接件与六边形灯具模组的联接边固定联接。
其进一步技术方案为:所述的六边形灯具模组包括灯座本体;所述灯座本体包括六边形的板状本体、位于板状本体后侧的六块围板和位于六块围板中间的散热片;所述六块围板与板状本体的边缘处之间的间隔构成有联接边;所述板状本体的前侧设有发光元件。
其进一步技术方案为:还包括位于六块围板后侧的六边形后盖;所述的六块围板沿板状本体的中心均匀分布。
其进一步技术方案为:所述六块围板中间设有电源模块,所述的连接器与电源模块电连接,其中,至少有一块围板设有用于安装嵌入连接器的连接器槽。
其进一步技术方案为:设有连接器槽的围板有三块,其中有二个连接器槽位于相对称的二块围板上,还包括位于连接器槽内侧的连接器压板。
其进一步技术方案为:还至少包括二个设于六块围板中间的安装柱,所述的后盖设有与安装柱相对应的安装槽;所述的后盖上还设有散热孔。
其进一步技术方案为:所述围板之间的相邻处设有空隙;每个围板的两端均向板状本体的棱角处延伸的三角形筋板;相邻的二块三角形筋板平行设置;所述的板状本体包括位于前侧的发光本体和位于后侧的散热本体,所述的发光本体与散热本体通过螺钉连接。
一种采用六边形灯具模组拼接灯具的方法,该方法是通过连接件将二个以上的六边形灯具模组,以棱边对齐棱边的方式固定联接在一起;在其中的一个六边形灯具模组内设有电源模块,二个相邻的六边形灯具模组通过置于连接件空槽内的连接导体进行电性连接;其中的连接件位于二个六边形灯具模组相邻边的后侧,以螺钉联接的方式实现二个相邻的六边形灯具模组固定联接;其中的六边形灯具模组设有与连接导体快速连接的连接器;每个六边形灯具模组的设有三个连接器,其中有二个连接器位于六边形的二个相对棱边的位置。
本发明与现有技术相比的有益效果是:本发明的连接件采用空槽,可以为连接导体提供容置空间,使得灯具模组之间的联接空间小,结构紧凑。本发明灯具采用了正六边形的灯具模组,利用正六边形的特点可以在六个方向实现模组之间的相互连接,从而实现不同数量模组的组合,达到灯具的多种形式的组合,以此实现灯具的多样化。采用了连接器,可以利用连接导体实现二个灯具模组之间的快速连接。并且利用带有空槽的连接件,既可以容置连接导体,又可以与灯具模组的联接边相吻合,从而实现二个模组之间的无缝对接,并且占用空间少,外形简洁明了的特点。
下面结合附图和具体实施例对本发明作进一步描述。
附图说明
图1为本发明一种设有空槽的连接件的具体实施例一的立体放大图;
图2为本发明一种设有空槽的连接件的具体实施例二的立体放大图;
图2A为本发明灯具采用图2实施例的连接件的立体分解图(仅示出一个灯具模组和一个连接件);
图3为本发明灯具采用图1实施例的连接件的立体图(仅示出一个灯具模组和一个连接件);
图4为图3实施例中的六边形灯具模组具体实施例的立体分解图;
图5为图3实施例的又一角度的立体分解图;
图6为由二个六边形灯具模组构成的灯具具体实施例的平面示意图;
图7为由三个六边形灯具模组构成的灯具具体实施例的平面示意图;
图8为由四个六边形灯具模组构成的灯具具体实施例的平面示意图;
图9为由七个六边形灯具模组构成的灯具具体实施例的平面示意图。
附图标记
10 板状本体 100 联接边
101 发光本体 102 散热本体
19 安装柱 20 围板
200 连接器槽 30 散热片
40 发光元件 50 六边形后盖
51 安装槽 52 散热孔
60 连接器 61 连接器压板
21 三角形筋板 69 空隙
90 连接件 91 空槽
99 三角形斜面 S 六边形灯具模组
98 螺钉孔 97 空腔
96 螺钉孔柱
具体实施方式
为了更充分理解本发明的技术内容,下面结合具体实施例对本发明的技术方案进一步介绍和说明,但不局限于此。
如图1所示,本发明一种设有空槽的连接件90,包括连接本体900;连接本体900设有一用于容置连接导体的空槽91,及位于空槽两侧的螺钉安装孔。设有用于容置连接导体的空槽91;连接件90与六边形灯具模组S的联接边100固定联接(如图3所示)。
为了安装得更加紧密,外形更加地美观。在连接件90的端部设有与三角形筋板21相对应的三角形斜面99。其中,为了降低材料的用量,在螺钉孔98与三角形斜面99之间设有空腔97,而螺钉孔98则设于螺钉孔柱96的中间。同一侧的螺钉孔柱96则通过筋板95连接成为一个整体,以此增强连接件的整体强度。
如图2所示的又一实施例中,本发明一种设有空槽的连接件90A,采用了窄长型的空槽91A,在螺钉孔98A的中间设有条状凸起部92A。从而可以降低螺钉孔的深度,有利于提高螺钉安装时的联接强度。这种结构适合用于具有较深连接边(即如图2A所示的联接槽100A)的灯具模组结构S’。在连接件90A的端部设有与联接槽100A的侧壁相对应的斜面99A。
在图1或图2的实施例中,还可以在联接边或联接槽的侧壁上设有插槽部,而在连接件的侧边或斜面上设有用于插入插槽部的凸条部,在将连接件的凸条部从水平方向完全插入联接槽的插槽部之后,再通过螺钉固定将连接件与灯具模组固定联接。这个结构可以使得二个灯具模组之间起受力支撑的联接部分不只是螺钉孔的位置,而且还有插槽部与凸条部的联接位置,大大地提高了二个灯具模组之间的联接强度。
如图3所示,本发明一种灯具,至少包括二个六边形灯具模组S,六边形灯具模组S的相邻处设有连接件90和与连接器连接的连接导体(图中未示出,通过连接导体连接二个模组之间的电源线和/或控制线)。
当灯具模组较少时,可以将电源模块设在其中的一个模组内,当灯具模组较多时(比如四个以上),可以将电源模块单独设置在模组之外。
于其它实施例中,当灯具模组较多时,可以增设有支架,通过支架来固定灯具模组,这个支架也可以同时用来固定独立设置的电源模块。
如图4至图5所示,本发明灯具采用的六边形灯具模组S,包括灯座本体;灯座本体包括正六边形的板状本体10、位于板状本体10后侧的六块围板20和位于六块围板20中间的散热片30;六块围板20与板状本体10的边缘处之间的间隔构成有联接边100;板状本体10的前侧设有发光元件40。
六块围板20沿板状本体10的中心均匀分布,形成六边形,还包括位于六块围板20后侧的六边形后盖50,起到美观、保护内部元件和防尘的作用。
六块围板20的中间设有电源模块(图中未示出),及与电源模块电连接的三个连接器60(图中仅示出了一个),其中有三块围板20设有用于嵌入连接器60的连接器槽200。其中有二个连接器槽200位于相对称的二块围板上,还包括位于连接器槽200内侧的连接器压板61(图中仅示出了二个,通过螺钉与散热片30固定)。还包括四个设于六块围板20中间的安装柱19,后盖50设有与安装柱19相对应的安装槽51(使得安装螺钉可以穿过安装槽与安装柱固定联接,以提高固定安装的联接强度)和四个散热孔52。
围板20之间的相邻处设有空隙69;每个围板20的两端均向板状本体10的棱角处延伸设有三角形筋板21;相邻的二块三角形筋板21优先采用平行设置的方式。
为了便于加工和安装发光元件,其中的板状本体10采用分体式结构,包括位于前侧的发光本体101和位于后侧的散热本体102,发光本体101与散热本体102通过螺钉连接。其中的发光元件40固定于前侧的发光本体101,优选LED发光体。散热本体102则用来固定前述的六块围板20和散热片30。散热本体102在本实施例中采用与六块围板20、散热片30一体成形的结构。
如图6至图9所示,分别为二个、三个、四个和七个模组构成的灯具。
于其它实施例中,板状本体也可以是一体式结构;也可以不设有后盖;也可以采用其它的发光元件(比如传统的发光灯管)。
本发明一种采用六边形灯具模组拼接灯具的方法,采用正六边形可以在同一平面内进行无限延伸的特点来实现拼装。通过连接件将二个以上的正六边形的灯具模组,以棱边对齐棱边的方式固定联接在一起;在其中的一个正六边形灯具模组内设有电源模块,二个相邻的正六边形灯具模组通过置于连接件空槽内的连接导体进行电性连接;其中的连接件位于二个正六边形灯具模组相邻边的后侧,以螺钉联接的方式实现二个相邻的六边形灯具模组固定联接;其中的六边形灯具模组设有与连接导体快速连接的连接器;每个六边形灯具模组的设有三个连接器,其中有二个连接器位于六边形的二个相对棱边的位置。
当灯具模组较少时,可以将电源模块设在其中的一个模组内,当灯具模组较多时(比如四个以上),可以将电源模块单独设置在模组之外。当灯具模组较多时,可以增设有支架,通过支架来固定灯具模组,这个支架也可以同时用来固定独立设置的电源模块。
综上所述,本发明的连接件采用空槽,可以为连接导体提供容置空间,使得灯具模组之间的联接空间小,结构紧凑。本发明灯具采用了正六边形的灯具模组,利用正六边形的特点可以在六个方向实现模组之间的相互连接,从而实现不同数量模组的组合,达到灯具的多种形式的组合,以此实现灯具的多样化。采用了连接器,可以利用连接导体实现二个灯具模组之间的快速连接。并且利用带有空槽的连接件,既可以容置连接导体,又可以与灯具模组的联接边相吻合,从而实现二个模组之间的无缝对接,并且占用空间少,外形简洁明了的特点。
上述仅以实施例来进一步说明本发明的技术内容,以便于读者更容易理解,但不代表本发明的实施方式仅限于此,任何依本发明所做的技术延伸或再创造,均受本发明的保护。本发明的保护范围以权利要求书为准。

Claims (10)

  1. 一种设有空槽的连接件,包括连接本体;其特征在于所述的连接本体设有一用于容置连接导体的空槽,及位于空槽两侧的螺钉安装孔。
  2. 根据权利要求1所述的连接件,其特征在于所述的连接件两端设有与灯具模组的联接边相对应的斜面。
  3. 一种灯具,其特征在于至少包括二个六边形灯具模组,六边形灯具模组的相邻处设有连接件和与六边形灯具模组的连接器连接的连接导体;所述的连接件为权利要求1所述的设有空槽的连接件;所述的连接件与六边形灯具模组的联接边固定联接。
  4. 根据权利要求3所述的灯具,其特征在于所述的六边形灯具模组包括灯座本体;所述灯座本体包括六边形的板状本体、位于板状本体后侧的六块围板和位于六块围板中间的散热片;所述六块围板与板状本体的边缘处之间的间隔构成有联接边;所述板状本体的前侧设有发光元件。
  5. 根据权利要求4所述的灯具,其特征在于还包括位于六块围板后侧的六边形后盖;所述的六块围板沿板状本体的中心均匀分布。
  6. 根据权利要求4所述的灯具,其特征在于所述六块围板中间设有电源模块,所述的连接器与电源模块电连接,其中,至少有一块围板设有用于安装嵌入连接器的连接器槽。
  7. 根据权利要求6所述的灯具,其特征在于设有连接器槽的围板有三块,其中有二个连接器槽位于相对称的二块围板上,还包括位于连接器槽内侧的连接器压板。
  8. 根据权利要求6所述的灯具,其特征在于还至少包括二个设于六块围板中间的安装柱,所述的后盖设有与安装柱相对应的安装槽;所述的后盖上还设有散热孔。
  9. 根据权利要求3所述的灯具,其特征在于所述围板之间的相邻处设有空隙;每个围板的两端均向板状本体的棱角处延伸的三角形筋板;相邻的二块三角形筋板平行设置;所述的板状本体包括位于前侧的发光本体和位于后侧的散热本体,所述的发光本体与散热本体通过螺钉连接。
  10. 一种采用六边形灯具模组拼接灯具的方法,该方法是通过连接件将二个以上的六边形灯具模组,以棱边对齐棱边的方式固定联接在一起;在其中的一个六边形灯具模组内设有电源模块,二个相邻的六边形灯具模组通过置于连接件空槽内的连接导体进行电性连接;其中的连接件位于二个六边形灯具模组相邻边的后侧,以螺钉联接的方式实现二个相邻的六边形灯具模组固定联接;其中的六边形灯具模组设有与连接导体快速连接的连接器;每个六边形灯具模组的设有三个连接器,其中有二个连接器位于六边形的二个相对棱边的位置。
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