WO2020083259A1 - 消防应急吸顶灯 - Google Patents

消防应急吸顶灯 Download PDF

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Publication number
WO2020083259A1
WO2020083259A1 PCT/CN2019/112366 CN2019112366W WO2020083259A1 WO 2020083259 A1 WO2020083259 A1 WO 2020083259A1 CN 2019112366 W CN2019112366 W CN 2019112366W WO 2020083259 A1 WO2020083259 A1 WO 2020083259A1
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WO
WIPO (PCT)
Prior art keywords
snap
lamp body
fire emergency
ceiling lamp
slot
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2019/112366
Other languages
English (en)
French (fr)
Inventor
程争光
李锋
马子才
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Opple Lighting Co Ltd
Suzhou Op Lighting Co Ltd
Original Assignee
Opple Lighting Co Ltd
Suzhou Op Lighting Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Opple Lighting Co Ltd, Suzhou Op Lighting Co Ltd filed Critical Opple Lighting Co Ltd
Publication of WO2020083259A1 publication Critical patent/WO2020083259A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S8/00Lighting devices intended for fixed installation
    • F21S8/04Lighting devices intended for fixed installation intended only for mounting on a ceiling or the like overhead structures
    • 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
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V19/00Fastening of light sources or lamp holders
    • 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
    • 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
    • F21V23/04Arrangement of electric circuit elements in or on lighting devices the elements being switches
    • 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
    • F21V25/00Safety devices structurally associated with lighting devices
    • F21V25/12Flameproof or explosion-proof arrangements

Definitions

  • the present application relates to the technical field of lighting, in particular to a fire emergency ceiling lamp.
  • Fire emergency ceiling light is a luminaire that provides emergency lighting in an emergency.
  • fire emergency ceiling lights are developed from ordinary ceiling lights, so the installation method is usually similar to ordinary ceiling lights. You need to remove the lower cover first, fix the chassis to the ceiling, then connect, and finally Put on the mask.
  • the embodiments of the present application provide a fire emergency ceiling lamp to solve the above problems.
  • An embodiment of the present application provides a fire emergency ceiling lamp, including a lamp body, a face shield, a mounting bracket, a light source module, and a drive control module;
  • the mounting bracket is used for fixing on the mounting surface, and the mounting bracket is provided with a clamping portion;
  • the lamp body includes a partition plate that divides the lamp body into a first side and a second side facing away from each other, and the face mask is provided on the lamp body by the first side cover
  • the lamp body collectively forms a receiving cavity, and the light source module and the driving control module are both disposed in the receiving cavity and fixedly connected to the lamp body;
  • the lamp body is further provided with a wire passing hole connecting the first side and the second side, the drive control module has a cable, and the cable extends through the wire passing hole to the Second side
  • the second side is provided with a snap-fitting part, and the lamp body and the mounting bracket are connected with the snap-fitting part of the snap-fitting part through the snap-fitting part.
  • the number of the engaging portions is at least two and are respectively provided in the installation along the circumferential direction of the axis
  • the number of the snap-fitting parts is the same as the number of the snap-fitting parts, and are respectively provided on the second side at positions corresponding to the snap-fitting parts along the circumferential direction;
  • the snap-fitting portion and the snap-fitting portion can achieve / disengage the snapping state by movement in the circumferential direction.
  • the clamping part includes two chucks, a bayonet is formed between the two chucks, and the clamping fitting part faces one side of the partition With a card block,
  • the bayonet and the snap block can achieve / disengage the snap-in state.
  • the clamping block is provided with guide surfaces on both sides of the circumferential direction.
  • the lamp body includes a ring wall surrounding the partition, the ring wall and the partition form a mounting groove on the second side, and the snap-fit
  • the portion further includes an engaging portion and a stop portion.
  • the engaging portion is fixedly connected to the ring wall.
  • the engaging portion extends along the circumferential direction and has an inlet end and a terminating end. State the termination end;
  • the stop portion includes a support section and a stop section.
  • the support section and the stop section are fixedly connected to the ring wall.
  • the support section extends from the end end in the circumferential direction.
  • the stop section is fixedly connected to a side of the support section away from the termination end and extends toward the partition plate;
  • the supporting section is in contact with one of the clamping heads.
  • the support section is connected to the termination end or not.
  • the entrance end extends away from the partition to form a guide structure.
  • reinforcing ribs are provided on the engaging portion and / or the stop portion.
  • the mounting bracket is elongated, the number of the clamping portions is two, and they are respectively provided at both ends of the mounting bracket, and the number of the clamping matching portions There are also two, and the two snap-fit portions are 180 ° apart in the circumferential direction.
  • a drive installation slot is provided in the middle of the partition, the wire passing hole is provided at a side of the drive installation slot, and the drive control module is provided at the Drive installation slot.
  • the above fire emergency ceiling lamp further includes a switch module, the switch module includes a switch component and a connecting line, a switch hole is provided on the mask, and a component slot and wiring are provided on the partition A slot, the component slot is opposite to the switch hole, two ends of the wiring slot are respectively communicated with the component slot and the driving installation slot, the light source module passes over the wiring slot, and the switch assembly is provided In the component slot and exposed by the switch hole, the connection wire is disposed in the wiring slot and electrically connected to the drive control module.
  • the switch module includes a switch component and a connecting line, a switch hole is provided on the mask, and a component slot and wiring are provided on the partition A slot, the component slot is opposite to the switch hole, two ends of the wiring slot are respectively communicated with the component slot and the driving installation slot, the light source module passes over the wiring slot, and the switch assembly is provided In the component slot and exposed by the switch hole, the connection wire is disposed in the wiring slot and electrically connected to the drive control module.
  • the lamp body and / or the mask are made of flame retardant plastic.
  • the fire emergency ceiling lamp disclosed in the embodiments of the present application can be installed without dismounting the face mask by providing a mounting bracket, and the hidden safety risks are small.
  • FIG. 1 is an exploded view of the fire emergency ceiling lamp disclosed by the embodiment of the present application when viewed from the second side;
  • FIG. 2 is an exploded view of the fire emergency ceiling lamp disclosed by the embodiment of the present application when viewed from the first side;
  • 3 and 4 are overall assembly views of the fire emergency ceiling lamp disclosed by the embodiment of the present application when viewed from different angles from the second side;
  • FIG. 5 is a partial enlarged view of part A in FIG. 1;
  • FIG. 6 is a partially enlarged view of part B in FIG. 4.
  • 1-Lamp body 10-Baffle, 10a-First side, 10b-Second side, 100-Drive mounting slot, 102-Component slot, 104-Wiring slot, 12-Wire hole, 14-Snap fitting part , 140-block, 140a-guide surface, 142-engagement, 142a-entrance end, 142b-end end, 144-stop, 144a-support section, 144b-stop section, 146-reinforcement, 16 -Ring wall, 2-mask, 20-switch hole, 3-mounting bracket, 30-mounting hole, 32-clamping part, 320-chuck, 320a-skirt, 322-bayonet, 34-extension, 4 -Light source module, 5-drive control module, 50-cable, 6-switch module, 60-switch assembly, 62-connection cable, 7-accommodation cavity, 8-mounting slot.
  • the embodiment of the present application discloses a fire emergency ceiling lamp. As shown in FIGS. 1 and 2, it includes a lamp body 1, a mask 2, a mounting bracket 3, a light source module 4 and a drive control module 5. In order to manually control the fire emergency ceiling lamp to turn on, a switch module 6 can also be provided.
  • the lamp body 1 includes a partition 10 which divides the lamp body 1 into a first side 10a and a second side 10b facing away from each other.
  • the mask 2 is covered by the first side 10a on the lamp body 1 and is shared with the lamp body 1
  • the accommodating cavity 7 is enclosed, and the light source module 4 and the drive control module 5 are both disposed in the accommodating cavity 7.
  • the connection structure of the lamp body 1 and the face mask 2 meets the requirements of the sealed insulation performance.
  • the lamp body 1 can be made of flame retardant plastic with an oxygen index greater than 28, and the mask 2 can be made of transparent plastic with an oxygen index greater than 28.
  • Both the light source module 4 and the drive control module 5 are fixedly connected to the lamp body 1, for example, fixed on the partition 10.
  • the lamp body 1 is also provided with a wire hole 12 communicating the first side 10a and the second side 10b.
  • the drive control module 5 has a cable 50, and the cable 50 extends through the wire hole 12 to the second side 10b.
  • a drive installation slot 100 may be provided in the middle of the partition 10, and the drive control module 5 is provided in the drive installation slot 100.
  • the drive mounting groove 100 formed on the partition plate 10 is a groove on the first side 10a, and it becomes a protrusion on the second side 10b. Therefore, the wire hole 12 is provided on the side of the drive mounting groove 100 The communication between the first side 10a and the second side 10b can be achieved.
  • the light source module 4 may surround the drive installation slot 100, and the concave setting of the drive installation slot 100 may prevent the drive control module 5 from blocking the light emission of the light source module 4.
  • the switch module 6 generally includes a switch assembly 60 and a connecting wire 62.
  • a switch hole 20 is provided on the mask 2, and a component slot 102 and a wiring slot 104 are provided on the partition 10.
  • the component slot 102 is opposite to the switch hole 20. Both ends of the slot 104 communicate with the component slot 102 and the drive mounting slot 100 respectively, and the switch assembly 60 is disposed in the component slot 102 and exposed by the switch hole 20, and the connecting wire 62 is disposed in the wiring slot 104 and communicates with the drive control module 5 Electrical connection.
  • the light source module 4 can directly pass over the wiring slot 102, so as to avoid the shielding of the light source module 4 by the connecting wire 62.
  • the mounting bracket 3 is used to fix on the mounting surface. There are many ways to fix the mounting bracket 3. The usual way is to install the mounting hole 30 on the mounting bracket 3, and the mounting bracket 3 is fixed to the mounting surface through the mounting hole 30 through the bolt . At the same time, a clamping portion 32 is provided on the mounting bracket 3.
  • the second side 10 b of the lamp body 1 is provided with a snap-fitting portion 14, and the lamp body 1 and the mounting bracket 3 are connected with the snap-fitting portion 14 through the snap-fitting portion 32.
  • the snap-fitting structure of the snap-fitting portion 32 and the snap-fitting portion 14 is various.
  • the snap-fitting / slotting fit, the snap-fitting block / fitting hole fit can be adopted.
  • This embodiment provides a snap-fit structure that is more convenient to install.
  • the number of snap-in portions 32 is at least two based on an axis a perpendicular to the partition 10 as a reference.
  • the clamping portions 32 are respectively provided at different positions of the mounting bracket 3 along the circumferential direction of the axis a.
  • the number of snap-fitting portions 14 is the same as the number of snap-fitting portions 32, and these snap-fitting portions 14 are also provided on the second side 10b at positions corresponding to the snap-fitting portions 32 along the circumferential direction of the axis a .
  • the lamp body 1 only needs to be rotated in the circumferential direction, and the lamp body 1 drives the snap-fitting portion 14 to rotate together and relative circumferential movement relative to the snap-fitting portion 32 occurs to achieve or disengage the snapped state .
  • the direction of the axis a is the vertical direction
  • the snap-fitting portion 32 and the snap-fitting portion 14 achieve the snap-fit state by rotating in the circumferential direction, the two cooperate with each other in Interference occurs in the vertical direction, so that the lamp body 1 and the mask 2 can be restricted from separating from each other in the vertical direction.
  • the engaging portion 32 and the engaging portion 14 rotate in the circumferential direction to disengage from the engaged state, the two no longer interfere with each other in the vertical direction, at this time, the lamp body 1 and the mask 2 can be smoothly separated in the vertical direction .
  • Such a snap-fit structure can complete the change of the snap-fit state of all the snap-fit parts 32 and the snap-fit parts 14 through a circumferential rotation, and the operation process is very convenient.
  • the number of the engaging portions 32 may be two, three, or more.
  • the engaging portions 32 may be provided at the ends and corners of the mounting bracket 3 Or edge positions such as sides.
  • the mounting bracket 3 it is a more preferred solution to design the mounting bracket 3 to be elongated, and to provide one clamping portion 32 at each end of the mounting bracket 3.
  • the number of the clamping and matching portions 14 is also two
  • the two snap-fit portions 14 are 180 ° apart in the circumferential direction. In this structure, the mounting bracket 3 can be easily fixed on the mounting surface, and the force balance on both sides of the axis a can be better ensured.
  • the engaging portion 32 of this embodiment includes two chucks 320, and a bayonet 322 is formed between the two chucks 320, as shown in FIGS. 4 and 6, at A block 140 is provided on the side of the snap-fitting portion 14 facing the partition 10.
  • the block 140 may be provided with guide surfaces 140a on both sides in the circumferential direction. Through the guide surface 140a, the lamp body 1 can be axially displaced to a certain extent while rotating in the circumferential direction, so that the chuck 320 passes over the clamping block 140, and thereby the clamping of the clamping block 140 and the clamping port 322 is achieved.
  • the guide surfaces 140a on both sides of the block 140 can be inclined to different degrees, and the gentle slope is used to reduce the difficulty of the chuck 320 passing the block 140.
  • Making the block 140 and the bayonet 322 easier to catch, and using a steep slope increases the difficulty of the chuck 320 passing over from the other side of the block 140, thereby increasing the difficulty of the block 140 and the bayonet 322 detaching.
  • the mounting bracket 3 can be made of sheet metal, and a skirt 320a can be formed on the edge of the chuck 320.
  • the skirt 320a can make the edge of the chuck 320 smoother and reduce Little wear, on the other hand, can also increase the structural strength of the chuck 320.
  • the lamp body 1 may be provided with a ring wall 16 surrounding the partition 10, and the ring wall 16 and the partition 10 form a mounting groove 8 on the second side 10b.
  • the ring wall 16 may be along the axis a Circumferential setting, or the entire fire emergency ceiling lamp can be designed as a rotary configuration with axis a.
  • the snap-fitting portion 14 further includes an engaging portion 142 and a stop portion 144.
  • the engaging portion 142 is fixedly connected to the ring wall 16.
  • the engaging portion 142 extends in the circumferential direction and has an inlet end 142 a and an end end 142 b. It is set on the terminating end 142b.
  • the stop portion 144 includes a support section 144a and a stop section 144b.
  • the support section 144a and the stop section 144b are also fixedly connected to the ring wall 16, and the support section 144a extends from the end end 142b in the circumferential direction, and the stop section 144b It is fixedly connected to the side of the supporting section 144a away from the terminating end 142b and extends toward the partition 10.
  • the engaging portion 32 When the engaging portion 32 engages with the engaging portion 140, the engaging portion 32 first slides from the inlet end 142a to the side of the engaging portion 142 facing the partition 10, in order to facilitate the engaging portion 32 from the inlet end 142a enters, the inlet end 142a can be extended away from the partition 10 to form a guide structure, and the engaging portion 32 is guided by a slope or arc to enable it to move axially while moving in the circumferential direction to enter The inlet end 142a is slid to the side of the engaging portion 142 facing the partition 10.
  • the engaging portion 32 moves along the circumferential direction toward the end 142b until one chuck 320 passes over the chuck block 140.
  • the clamping block 140 is engaged with the bayonet 322, and the supporting section 144a is in contact with one of the clamping heads 320. If the installer rotates the lamp body 1 too much, another chuck 320 may also pass over the chuck block 140. If this happens, the chuck block 140 and the bayonet 322 will lose the chucking state again.
  • the stop section 144b can limit the rotation range of the lamp body 1 to ensure that the other chuck 320 does not cross the chuck block 140.
  • the support section 144a and the termination end 142b may not be connected to each other (see FIG. 6), and there may be a gap between the two that cannot be passed by the chuck 320, which helps reduce the support section 144a. Stress increases the structural strength of the support section 144a.
  • the solution of connecting the support section 144a and the termination end 142b as a whole is not excluded.
  • a series of reinforcing ribs 146 may be provided on the engaging portion 142 and the stop portion 144.
  • the mounting bracket 3 in this embodiment is preferably completely hidden inside the mounting groove 8 after the assembly is completed, that is, the ring wall 16 and the mounting surface are basically in close contact at this time.
  • an extension portion 34 may be provided on the mounting bracket 3, the extension portion 34 may extend a certain distance in the axial direction, and the snap-fit portion 32 may be provided at the extension 34, the clamping portion 32 can be away from the mounting surface, so that it is easier to be on the side of the clamping and matching portion 14 facing the partition 10, simplifying the assembly difficulty.
  • the fire emergency ceiling lamp provided by the embodiments of the present application has the advantages of convenient installation and low safety risks.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Arrangement Of Elements, Cooling, Sealing, Or The Like Of Lighting Devices (AREA)
  • Non-Portable Lighting Devices Or Systems Thereof (AREA)

Abstract

一种消防应急吸顶灯,其包括灯体(1)、面罩(2)、安装支架(3)、光源模块(2)以及驱动控制模组(5);安装支架(3)用于固定在安装面上,在安装支架(3)上设置卡接部(32);灯体(1)包括隔板(10),隔板(10)将灯体(1)分隔为相互背离的第一侧(10a)和第二侧(10b),面罩(2)由第一侧罩设置在灯体(1)上并与灯体(1)共同围成容纳腔(7),光源模块(2)与驱动控制模组(5)均设置在容纳腔(7)内并且与灯体(1)固定连接;在灯体(1)上还设置有连通第一侧(10a)和第二侧(10b)的过线孔(12),驱动控制模组(5)具有线缆(50),线缆(50)穿过过线孔(12)而延伸至第二侧(10b);在第二侧(10b),设置有卡接配合部(14),灯体(1)与安装支架(3)通过卡接部(32)而与卡接配合部(14),进行卡接配合连接。消防应急吸顶灯具有安装便捷、安全隐患小等的优点。

Description

消防应急吸顶灯 技术领域
本申请涉及照明技术领域,尤其涉及一种消防应急吸顶灯。
背景技术
随着人们安全意识的日渐提高,对消防安全也日趋重视。消防应急吸顶灯是一种在紧急情况下提供应急照明的灯具。
在相关技术中,消防应急吸顶灯是由普通的吸顶灯发展而来,因此其安装方式通常也与普通的吸顶灯类似,需要先拆卸下面罩,将底盘固定在天花板上,然后接线,最后再装上面罩。
然而,这样的安装方式会导致光源模组在安装时暴露,不满足加强绝缘的安全要求,存在安全隐患,不符合CCC认证要求。
实用新型内容
本申请实施例提供一种消防应急吸顶灯,以解决上述问题。
本申请实施例采用下述技术方案:
本申请实施例提供了一种消防应急吸顶灯,包括灯体、面罩、安装支架、光源模组以及驱动控制模组;
所述安装支架用于固定在安装面上,所述安装支架上设置有卡接部;
所述灯体包括隔板,所述隔板将所述灯体分隔为相互背离的第一侧以及第二侧,所述面罩由所述第一侧罩设在所述灯体上并与所述灯体共同围成容纳腔,所述光源模组以及所述驱动控制模组均设置在所述容纳腔内且与所述灯体固定连接;
所述灯体上还设置有连通所述第一侧与所述第二侧的过线孔,所述驱动控制模组具有线缆,所述线缆穿过所述过线孔延伸至所述第二侧;
所述第二侧设置有卡接配合部,所述灯体与所述安装支架通过所述卡接部与所述卡接配合部的卡接配合连接。
可选地,上述的消防应急吸顶灯中,以垂直于所述隔板的一轴线为基准,所述卡接部的数量至少为两个且沿所述轴线的周向分别设置在所述安装支架的不同位置,所述卡接配合部的数量与所述卡接部的数量一致且沿所述周向分别设置在所述第二侧上与所述卡接部对应的位置;
所述卡接部与所述卡接配合部能够通过沿周向的运动实现/脱离卡接状态。
可选地,上述的消防应急吸顶灯中,所述卡接部包括两个卡头,两个所述卡头之间形成一个卡口,所述卡接配合部朝向所述隔板的一侧设置有卡块,
随着所述卡接部与所述卡接配合部的相对周向运动所述卡口与所述卡块能够实现/脱离卡接状态。
可选地,上述的消防应急吸顶灯中,所述卡块在所述周向的两侧均设置有导向面。
可选地,上述的消防应急吸顶灯中,所述灯体包括围绕所述隔板的环壁,所述环壁与所述隔板在所述第二侧形成安装槽,所述卡接配合部还包括卡合部以及止挡部,所述卡合部与所述环壁固定连接,所述卡合部沿所述周向延伸且具有入口端以及终止端,所述卡块设置在所述终止端上;
所述止挡部包括支撑段以及止挡段,所述支撑段以及所述止挡段均与所述环壁固定连接,所述支撑段由所述终止端开始沿所述周向延伸,所述止挡段与所述支撑段远离所述终止端的一侧固定连接且朝所述隔板延伸;
当所述卡块与所述卡口卡接时,所述支撑段与其中一个所述卡头抵接。
可选地,上述的消防应急吸顶灯中,所述支撑段与所述终止端相连或不相连。
可选地,上述的消防应急吸顶灯中,所述入口端向背离所述隔板的方向延伸形成导向结构。
可选地,上述的消防应急吸顶灯中,卡合部和/或所述止挡部上设置有加强 筋。
可选地,上述的消防应急吸顶灯中,安装支架为长条形,所述卡接部的数量为两个,且分别设置在所述安装支架的两端,所述卡接配合部的数量也为两个,两个所述卡接配合部在所述周向上相距180°。
可选地,上述的消防应急吸顶灯中,所述隔板的中部设置有驱动安装槽,所述过线孔设置在所述驱动安装槽的侧部,所述驱动控制模组设置在所述驱动安装槽内。
可选地,上述的消防应急吸顶灯中,还包括开关模组,所述开关模组包括开关组件以及连接线,所述面罩上设置有开关孔,所述隔板上设置有组件槽以及布线槽,所述组件槽与所述开关孔相对,所述布线槽的两端分别与所述组件槽以及所述驱动安装槽相通,所述光源模组越过所述布线槽,所述开关组件设置在所述组件槽内且由所述开关孔露出,所述连接线设置在所述布线槽内且与所述驱动控制模组电连接。
可选地,上述的消防应急吸顶灯中,所述灯体和/或所述面罩采用阻燃塑料。
本申请实施例采用的上述至少一个技术方案能够达到以下有益效果:
本申请实施例公开的消防应急吸顶灯通过设置安装支架能够在不拆卸面罩的情况下进行安装作业,安全隐患小。
附图说明
此处所说明的附图用来提供对本申请的进一步理解,构成本申请的一部分,本申请的示意性实施例及其说明用于解释本申请,并不构成对本申请的不当限定。在附图中:
图1为本申请实施例公开的消防应急吸顶灯由第二侧观察时的爆炸视图;
图2为本申请实施例公开的消防应急吸顶灯由第一侧观察时的爆炸视图;
图3和图4为本申请实施例公开的消防应急吸顶灯由第二侧以不同角度观察时的整体装配视图;
图5为图1中A部分的局部放大视图;
图6为图4中B部分的局部放大视图。
附图标记说明:
1-灯体、10-隔板、10a-第一侧、10b-第二侧、100-驱动安装槽、102-组件槽、104-布线槽、12-过线孔、14-卡接配合部、140-卡块、140a-导向面、142-卡合部、142a-入口端、142b-终止端、144-止挡部、144a-支撑段、144b-止挡段、146-加强筋、16-环壁、2-面罩、20-开关孔、3-安装支架、30-安装孔、32-卡接部、320-卡头、320a-裙边、322-卡口、34-延伸部、4-光源模组、5-驱动控制模组、50-线缆、6-开关模组、60-开关组件、62-连接线、7-容纳腔、8-安装槽。
具体实施方式
为使本申请的目的、技术方案和优点更加清楚,下面将结合本申请具体实施例及相应的附图对本申请技术方案进行清楚、完整地描述。显然,所描述的实施例仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
以下结合附图,详细说明本申请各实施例提供的技术方案。
本申请实施例公开了一种消防应急吸顶灯。如图1和图2所示,包括灯体1、面罩2、安装支架3、光源模组4以及驱动控制模组5,为了手动控制消防应急吸顶灯的开启,还可以设置开关模组6。
灯体1包括隔板10,隔板10将灯体1分隔为相互背离的第一侧10a以及第二侧10b,面罩2由第一侧10a罩设在灯体1上并与灯体1共同围成容纳腔7,光源模组4以及驱动控制模组5均设置在容纳腔7内。灯体1与面罩2的连接结构满足密封绝缘性能要求,灯体1可以采用氧指数大于28的阻燃塑料制造,同时面罩2可以采用氧指数大于28的透明塑料制造。光源模组4与驱动控制模组5均与灯体1固定连接,例如固定在隔板10上。在灯体1上还设 置有连通第一侧10a与第二侧10b的过线孔12,驱动控制模组5具有线缆50,线缆50穿过过线孔12延伸至第二侧10b。
为了便于设置过线孔12,可以在隔板10的中部设置一个驱动安装槽100,驱动控制模组5设置在驱动安装槽100内。在隔板10上所形成的驱动安装槽100在第一侧10a为槽,而其在第二侧10b便成为一个凸出部,因此将过线孔12设置在驱动安装槽100的侧部便可实现第一侧10a与第二侧10b的连通。此时光源模组4可以围绕在驱动安装槽100的周围,驱动安装槽100的凹陷设置可避免驱动控制模组5阻挡光源模组4的发光。通过调整面罩2的形状以及光源模组4的排布,本实施例可以在不使用二次光学元件的情况下发出更加均匀的光线,提高光学效率。
开关模组6通常包括开关组件60以及连接线62,在面罩2上设置有开关孔20,同时在隔板10上设置有组件槽102以及布线槽104,组件槽102与开关孔20相对,布线槽104的两端分别与组件槽102以及驱动安装槽100相通,而开关组件60设置在组件槽102内且由开关孔20露出,连接线62则设置在布线槽104内且与驱动控制模组5电连接,在设置光源模组4时,光源模组4可以直接越过布线槽102,从而避免连接线62对光源模组4的遮挡。
安装支架3用于固定在安装面上,安装支架3的固定方式很多,通常采用的方式是在安装支架3上设置安装孔30,通过螺栓穿过安装孔30实现安装支架3与安装面的固定。同时在安装支架3上设置有卡接部32。灯体1的第二侧10b设置有卡接配合部14,灯体1与安装支架3通过卡接部32与卡接配合部14的卡接配合连接。
卡接部32与卡接配合部14的卡接配合结构形式多种多样,例如卡爪/卡槽配合、卡块/卡孔配合等均可采用。本实施例中提供一种安装较为便捷的卡接配合结构,具体地,如图3和图4所示,以垂直于隔板10的一条轴线a为基准,卡接部32的数量至少为两个,这些卡接部32沿着轴线a的周向分别设置在安装支架3的不同位置。与此同时,卡接配合部14的数量与卡接部32的数量一 致,且这些卡接配合部14也沿轴线a的周向分别设置在第二侧10b上与卡接部32对应的位置。当需要进行卡接配合时,只需沿周向转动灯体1,灯体1带动卡接配合部14一起转动并相对于卡接部32发生周向的相对运动,以实现或者脱离卡接状态。
当消防应急吸顶灯被安装在屋顶上时,轴线a的方向即为竖直方向,而卡接部32与卡接配合部14通过沿周向的转动实现卡接状态时,二者相互配合在竖直方向上发生干涉,从而能够限制灯体1与面罩2沿竖直方向相互分离。而当卡接部32与卡接配合部14沿周向转动至脱离卡接状态时,二者在竖直方向上不再相互干涉,此时灯体1与面罩2能够沿竖直方向顺利分离。这种卡接配合结构通过周向转动的方式便可完成所有卡接部32与卡接配合部14的卡接状态的改变,操作过程非常便捷。
本实施例中卡接部32的数量为两个、三个或者更多个均可,同时,视安装支架3的主体形状差异,卡接部32可以设置在安装支架3的端部、角部或者侧部等边缘位置。卡接部32与卡接配合部14的数量越多则卡接牢固性越好,但相应地结构复杂度以及装配难度也会越大。综合比较,将安装支架3设计为长条形,并在安装支架3的两端各设置一个卡接部32是较为优选的方案,为了配合安装支架3,卡接配合部14的数量也为两个,两个卡接配合部14在周向上相距180°。这种结构下安装支架3很容易固定在安装面上,并且可以较好地保证轴线a两侧的受力平衡。
上述卡接配合结构虽然操作过程非常简便,但由于此时卡接部32与卡接配合部14在周向上仅存在摩擦力,在某些外力作用下可能导致灯体1克服摩擦力发生误转动导致脱离卡接状态。为了避免上述问题,如图5所示,本实施例的卡接部32包括两个卡头320,两个卡头320之间形成一个卡口322,同时如图4和图6所示,在卡接配合部14朝向隔板10的一侧设置有卡块140。随着卡接部32与卡接配合部14的相对周向运动,卡口322与卡块140能够实现或者脱离卡接状态。
由于卡块140设置在卡接配合部14朝向隔板10的一侧,因此卡口322与卡块140的卡接配合能够限制二者沿周向的相对运动,因此可以有效防止灯体1误转动的发生。为了便于卡口322与卡块140的卡接配合,卡块140在周向的两侧可以同时设置导向面140a。通过导向面140a可以使灯体1在周向转动的同时发生一定程度的轴向位移,从而使卡头320越过卡块140,进而实现卡块140与卡口322的卡接。
为了便于卡口322与卡块140的卡接配合同时使二者更加难以脱离,卡块140两侧的导向面140a可以呈不同的倾斜程度,利用缓坡降低卡头320越过卡块140的难度,使卡块140与卡口322更容易卡接,而利用陡坡增加卡头320从卡块140的另一侧越过的难度,从而增加卡块140与卡口322脱离的难度。请再参见图5,在本实施例中,安装支架3可以采用钣金件,并且在卡头320的边缘可以形成裙边320a,裙边320a一方面能够使卡头320的边缘更加圆滑,减小磨损,另一方面也能够增强卡头320的结构强度。
为了便于设置卡接配合部14,灯体1上可以设置围绕隔板10的环壁16,环壁16与隔板10在第二侧10b形成安装槽8,环壁16可以沿着轴线a的周向设置,或者整个消防应急吸顶灯均可以轴线a设计成回转构型。卡接配合部14还包括卡合部142以及止挡部144,卡合部142与环壁16固定连接,卡合部142沿周向延伸且具有入口端142a以及终止端142b,卡块140便设置在终止端142b上。止挡部144包括支撑段144a以及止挡段144b,支撑段144a以及止挡段144b也均与环壁16固定连接,并且支撑段144a由终止端142b开始沿周向延伸,而止挡段144b与支撑段144a远离终止端142b的一侧固定连接且朝隔板10延伸。
在卡接部32与卡接配合部140进行卡接配合时,卡接部32首先由入口端142a滑入至卡合部142朝向隔板10的一侧,为了便于卡接部32由入口端142a进入,可以将入口端142a向背离隔板10的方向延伸形成一导向结构,利用斜面或弧面对卡接部32进行引导,使其在周向运动的同时可以进行轴向运动从 而进入到入口端142a滑入到卡合部142朝向隔板10的一侧。
之后卡接部32沿着周向向终止端142b方向运动,直至一个卡头320越过卡块140。此时卡块140与卡口322实现卡接,而支撑段144a则与其中一个卡头320抵接在一起。如果安装人员对灯体1的转动幅度过大,另一个卡头320也可能越过卡块140,如果这种情况发生,则卡块140与卡口322便会再次丧失卡接状态。而止挡段144b则可以限制灯体1的转动幅度,保证另一个卡头320不会越过卡块140。
在本实施例中,支撑段144a与终止端142b之间可以互不相连(参见图6),二者之间可以存在一个无法供卡头320通过的间隙,这样有助于减少支撑段144a的应力,提高支撑段144a的结构强度,当然,本实施例中也不排除将支撑段144a与终止端142b连接为一个整体的方案。为了进一步提升结构强度,可以在卡合部142以及止挡部144上设置一系列的加强筋146。
为了使外光更为整洁,本实施例中的安装支架3在装配完成后优选被完全隐藏在安装槽8的内部,即此时环壁16与安装面基本处于紧贴状态。在这种情况下为了便于卡接部32与卡接配合部14装配,可以在安装支架3上设置延伸部34,延伸部34可以沿轴向延伸一定距离,将卡接部32设置在延伸部34上可以使卡接部32远离安装面,从而使其更加容易处于卡接配合部14朝向隔板10的一侧,简化装配难度。
综上所述,本申请实施例所提供的消防应急吸顶灯具有安装便捷、安全隐患小等优点。
本申请上文实施例中重点描述的是各个实施例之间的不同,各个实施例之间不同的优化特征只要不矛盾,均可以组合形成更优的实施例,考虑到行文简洁,在此则不再赘述。
以上所述仅为本申请的实施例而已,并不用于限制本申请。对于本领域技术人员来说,本申请可以有各种更改和变化。凡在本申请的精神和原理之内所作的任何修改、等同替换、改进等,均应包含在本申请的权利要求范围之内。

Claims (12)

  1. 一种消防应急吸顶灯,其特征在于,包括灯体、面罩、安装支架、光源模组以及驱动控制模组;
    所述安装支架用于固定在安装面上,所述安装支架上设置有卡接部;
    所述灯体包括隔板,所述隔板将所述灯体分隔为相互背离的第一侧以及第二侧,所述面罩由所述第一侧罩设在所述灯体上并与所述灯体共同围成容纳腔,所述光源模组以及所述驱动控制模组均设置在所述容纳腔内且与所述灯体固定连接;
    所述灯体上还设置有连通所述第一侧与所述第二侧的过线孔,所述驱动控制模组具有线缆,所述线缆穿过所述过线孔延伸至所述第二侧;
    所述第二侧设置有卡接配合部,所述灯体与所述安装支架通过所述卡接部与所述卡接配合部的卡接配合连接。
  2. 根据权利要求1所述的消防应急吸顶灯,其特征在于,以垂直于所述隔板的一轴线为基准,所述卡接部的数量至少为两个且沿所述轴线的周向分别设置在所述安装支架的不同位置,所述卡接配合部的数量与所述卡接部的数量一致且沿所述周向分别设置在所述第二侧上与所述卡接部对应的位置;
    所述卡接部与所述卡接配合部能够通过沿周向的运动实现/脱离卡接状态。
  3. 根据权利要求2所述的消防应急吸顶灯,其特征在于,所述卡接部包括两个卡头,两个所述卡头之间形成一个卡口,所述卡接配合部朝向所述隔板的一侧设置有卡块,
    随着所述卡接部与所述卡接配合部的相对周向运动所述卡口与所述卡块能够实现/脱离卡接状态。
  4. 根据权利要求3所述的消防应急吸顶灯,其特征在于,所述卡块在所述周向的两侧均设置有导向面。
  5. 根据权利要求3所述的消防应急吸顶灯,其特征在于,所述灯体包括围绕所述隔板的环壁,所述环壁与所述隔板在所述第二侧形成安装槽,所述卡接配合部还包括卡合部以及止挡部,所述卡合部与所述环壁固定连接,所述卡合部沿所述周向延伸且具有入口端以及终止端,所述卡块设置在所述终止端上;
    所述止挡部包括支撑段以及止挡段,所述支撑段以及所述止挡段均与所述环壁固定连接,所述支撑段由所述终止端开始沿所述周向延伸,所述止挡段与所述支撑段远离所述终止端的一侧固定连接且朝所述隔板延伸;
    当所述卡块与所述卡口卡接时,所述支撑段与其中一个所述卡头抵接。
  6. 根据权利要求5所述的消防应急吸顶灯,其特征在于,所述支撑段与所述终止端相连或不相连。
  7. 根据权利要求5所述的消防应急吸顶灯,其特征在于,所述入口端向背离所述隔板的方向延伸形成导向结构。
  8. 根据权利要求5至7任一项所述的消防应急吸顶灯,其特征在于,卡合部和/或所述止挡部上设置有加强筋。
  9. 根据权利要求2至7任一项所述的消防应急吸顶灯,其特征在于,安装支架为长条形,所述卡接部的数量为两个,且分别设置在所述安装支架的两端,所述卡接配合部的数量也为两个,两个所述卡接配合部在所述周向上相距180°。
  10. 根据权利要求1至7任一项所述的消防应急吸顶灯,其特征在于,所述隔板的中部设置有驱动安装槽,所述过线孔设置在所述驱动安装槽的侧部,所述驱动控制模组设置在所述驱动安装槽内。
  11. 根据权利要求10所述的消防应急吸顶灯,其特征在于,还包括开关模组,所述开关模组包括开关组件以及连接线,所述面罩上设置有开关孔,所 述隔板上设置有组件槽以及布线槽,所述组件槽与所述开关孔相对,所述布线槽的两端分别与所述组件槽以及所述驱动安装槽相通,所述光源模组越过所述布线槽,所述开关组件设置在所述组件槽内且由所述开关孔露出,所述连接线设置在所述布线槽内且与所述驱动控制模组电连接。
  12. 根据权利要求1至7任一项所述的消防应急吸顶灯,其特征在于,所述灯体和/或所述面罩采用阻燃塑料。
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CN110360495A (zh) * 2019-07-04 2019-10-22 深圳民爆光电股份有限公司 一种安装方便的led灯
CN114427667B (zh) * 2021-12-30 2024-10-11 安徽省富鑫雅光电科技有限公司 一种支持应急功能的公共场所吸顶灯

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