WO2025223232A1 - 轨道灯 - Google Patents

轨道灯

Info

Publication number
WO2025223232A1
WO2025223232A1 PCT/CN2025/088717 CN2025088717W WO2025223232A1 WO 2025223232 A1 WO2025223232 A1 WO 2025223232A1 CN 2025088717 W CN2025088717 W CN 2025088717W WO 2025223232 A1 WO2025223232 A1 WO 2025223232A1
Authority
WO
WIPO (PCT)
Prior art keywords
track
rotating body
track light
base
light
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.)
Pending
Application number
PCT/CN2025/088717
Other languages
English (en)
French (fr)
Inventor
黎志远
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 WO2025223232A1 publication Critical patent/WO2025223232A1/zh
Pending legal-status Critical Current
Anticipated expiration legal-status Critical

Links

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
    • F21S8/06Lighting devices intended for fixed installation intended only for mounting on a ceiling or the like overhead structures by suspension
    • 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
    • F21V21/10Pendants, arms, or standards; Fixing lighting devices to pendants, arms, or standards
    • F21V21/104Pendants
    • 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
    • F21V21/14Adjustable mountings
    • F21V21/30Pivoted housings or frames
    • 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
    • F21V21/35Supporting elements displaceable along a guiding element with direct electrical contact between the supporting element and electric conductors running along the guiding element

Definitions

  • This application relates to the field of lighting fixtures and provides a track light.
  • Track lights are commonly used for product display lighting, interior decoration, and outdoor lighting. Traditional track lights typically use a sliding rail to install the light fixture onto the guide rail, allowing the light fixture to slide back and forth.
  • This application aims to at least solve one of the technical problems existing in the related art. To this end, this application proposes a track light that can improve the installation efficiency of the track light and also enable the track to rotate relative to the base, thereby satisfying the angle adjustment of the track light.
  • This application provides a track light, including:
  • a rotating body is detachably mounted on the base, and a second receiving portion is formed on the rotating body;
  • Terminal assembly mounted on the rotating body
  • a rotating shaft assembly wherein, when the rotating body is mounted on the base, the rotating shaft assembly is adapted to be mounted on the first receiving portion and the second receiving portion;
  • the track is configured to mount track lights and is detachably mounted on the side of the rotating body opposite to the second receiving portion.
  • the terminals in the terminal assembly are in contact with the conductive strip in the track.
  • the design of the rotating body being detachably installed on the base allows the track to be adjusted in angle and direction relative to the base within a certain range. This enables the track light to adapt to different lighting needs and enriches its usage scenarios and decorative effects. Because the track and rotating body are detachable, users can choose different tracks and rotating bodies to combine as needed to meet various lighting requirements. Furthermore, this design provides users with expansion possibilities; for example, by adding more rotating bodies and tracks, more complex lighting systems can be constructed.
  • the track light provided in this application embodiment adopts a modular design, with each component assembled together through a simple detachable connection. This not only simplifies the installation process, allowing users to quickly install the track light onto the track, but also facilitates future maintenance and replacement.
  • the wiring terminals in the terminal assembly contact the conductive strip in the track, achieving a rapid electrical connection between the terminal assembly and the track.
  • the connection method is stable and reliable, ensuring the safety of the track light during use. Therefore, the track light provided in this application embodiment has advantages such as flexible adjustable angle, easy installation and maintenance, safe and reliable power supply, and good versatility and expandability, meeting a variety of different lighting needs and improving the user experience.
  • a first positioning part is formed on the rotating body, and a second positioning part is formed in the track.
  • the rotating body and the track are adapted to be positioned by the first positioning part and the second positioning part.
  • both the first positioning part and the second positioning part are provided with mounting holes, and fasteners are inserted into the mounting holes.
  • the fasteners are adapted to lock the rotating body and the track.
  • a groove is formed on the side of the track opposite to the second positioning part, and a conductive strip is formed in the groove.
  • the rotating body has a positioning post formed on the side opposite to the second receiving portion, which is suitable for positioning and engaging with the terminal assembly.
  • the rotating body has a wire-passing hole, and the terminals of the terminal assembly are adapted to pass through the wire-passing hole and connect to the cable of the track light.
  • the rotating body has a connecting hole, and a fastener passes through the connecting hole.
  • the fastener is adapted to lock the terminal assembly and the rotating body.
  • a locking hole is provided on the second receiving portion, and a fastener is provided in the locking hole.
  • the fastener is adapted to lock the rotating shaft assembly and the second receiving portion.
  • At least four mounting surfaces are formed on the base, and each mounting surface is formed with the first receiving portion, and the number of rotating bodies corresponds one-to-one with the number of mounting surfaces.
  • it further includes a top cover, a first mounting post disposed on the base, and a second mounting post disposed on the top cover, the top cover being adapted to be detachably mounted to the base via the first mounting post and the second mounting post.
  • a suspension wire assembly is included, the suspension wire assembly being connected to the top cover.
  • the design of the rotating body being detachably installed on the base allows the track to be adjusted in angle and direction relative to the base within a certain range. This enables the track light to adapt to different lighting needs and enriches its usage scenarios and decorative effects. Because the track and rotating body are detachable, users can choose different tracks and rotating bodies to combine as needed to meet various lighting requirements. Furthermore, this design provides users with expansion possibilities; for example, by adding more rotating bodies and tracks, more complex lighting systems can be constructed.
  • the track light provided in this application embodiment adopts a modular design, with each component assembled together through a simple detachable connection. This not only simplifies the installation process, allowing users to quickly install the track light onto the track, but also facilitates future maintenance and replacement.
  • the wiring terminals in the terminal assembly contact the conductive strip in the track, achieving a rapid electrical connection between the terminal assembly and the track.
  • the connection method is stable and reliable, ensuring the safety of the track light during use. Therefore, the track light provided in this application embodiment has advantages such as flexible adjustable angle, easy installation and maintenance, safe and reliable power supply, and good versatility and expandability, meeting a variety of different lighting needs and improving the user experience.
  • Figure 1 is a schematic exploded view of the track light provided in an embodiment of this application.
  • Figure 2 is a schematic structural diagram of the track light provided in an embodiment of this application.
  • Figure 3 is a schematic structural diagram of the track light and track provided in an embodiment of this application.
  • FIG. 4 is a schematic structural diagram of the rotating body provided in an embodiment of this application.
  • Figure 5 is a schematic structural diagram of the base provided in an embodiment of this application.
  • Figure 6 is a schematic structural diagram of the base and pivot assembly provided in an embodiment of this application.
  • Figure 7 is a schematic structural diagram of the base, rotating body, and terminal assembly provided in an embodiment of this application;
  • Figure 8 is a schematic structural diagram of the track provided in an embodiment of this application.
  • a track light including:
  • a base 100 on which a first receiving portion 102 is formed;
  • the rotating body 104 is detachably mounted on the base 100 and a second receiving portion 106 is formed on the rotating body 104;
  • Terminal assembly 108 is mounted on rotating body 104;
  • the rotating shaft assembly 110 is adapted to be mounted on the first receiving portion 102 and the second receiving portion 106.
  • the track 112 is configured to mount track lights.
  • the track 112 is detachably mounted on the side of the rotating body 104 away from the second receiving portion 106.
  • the wiring terminals in the terminal assembly 108 contact the conductive strip 122 in the track 112.
  • the design of the rotating body 104 being detachably mounted on the base 100 allows the track 112 to adjust its angle and direction relative to the base 100 within a certain range. This enables the track light to adapt to different lighting needs and enriches its usage scenarios and decorative effects. Because the track 112 and the rotating body 104 are detachable, users can select different combinations of tracks 112 and rotating bodies 104 as needed to meet various lighting requirements. Furthermore, this design provides users with the possibility of expansion; for example, by adding more rotating bodies 104 and tracks 112, more complex lighting systems can be constructed.
  • the modular design provided in this application embodiment allows the various components to be assembled together through a simple detachable connection.
  • the track lights provided in this application have advantages such as flexible adjustable angle, easy installation and maintenance, safe and reliable power supply, and good versatility and expandability, which can meet a variety of different lighting needs and improve the user experience.
  • the track light includes a base 100, a rotating body 104, a terminal assembly 108, a rotating shaft assembly 110, and a track 112.
  • the base 100 has a first receiving portion 102.
  • the first receiving portion 102 is primarily configured to mount and fix the rotating shaft assembly 110, thereby allowing the rotating body 104 to rotate stably on the base 100.
  • the rotating body 104 is detachably mounted on the base 100.
  • a second receiving portion 106 is formed on the rotating body 104, which corresponds to the first receiving portion 102 of the base 100, together forming a space for mounting the rotating shaft assembly 110.
  • the design of the rotating body 104 allows the track light to be easily adjusted in angle and direction to meet different lighting needs.
  • Terminal assembly 108 is mounted on rotating body 104.
  • Terminal assembly 108 includes terminal box and wiring terminals.
  • the terminal box is mounted on rotating body 104, and the wiring terminals are configured to connect to an external power source to power the track lights.
  • the rotating shaft assembly 110 is mounted on the first receiving portion 102 and the second receiving portion 106.
  • the main function of the rotating shaft assembly 110 is to enable the rotating body 104 to rotate smoothly on the base 100, while ensuring the stability and reliability of the rotation.
  • the track 112 is configured to mount a track light, and it is detachably mounted on the side of the rotating body 104 opposite to the second receiving portion 106.
  • the terminals in the terminal assembly 108 contact the conductive strip 122 in the track 112.
  • the track light can draw power from the track 112 through the contact between the conductive strip 122 and the terminals, thereby achieving the lighting function.
  • This allows for relative rotation of the track 112 relative to the base 100, and further allows adjustment of the track light's rotation relative to the base 100 to adjust the illumination angle of the track light.
  • a first positioning part 114 is formed on the rotating body 104, and a second positioning part 116 is formed in the track 112.
  • the rotating body 104 and the track 112 are adapted to be positioned by the first positioning part 114 and the second positioning part 116.
  • a first positioning part 114 is formed on the rotating body 104, and a second positioning part 116 is formed in the track 112.
  • the first positioning part 114 and the second positioning part 116 cooperate with each other to achieve precise positioning between the rotating body 104 and the track 112. This arrangement ensures that the track light has a stable position and posture when installed on the track 112, avoiding shaking or displacement during use, and improving the stability and reliability of the track light.
  • the shape and structure of the first positioning part 114 and the second positioning part 116 can be designed according to actual needs. For example, they can adopt a mutually mating convex and concave structure, a hole and pin structure, or other suitable positioning methods.
  • the user only needs to align the track 112 with the first positioning part 114 on the rotating body 104, and then install the track 112 onto the rotating body 104 until the second positioning part 116 is fully engaged with the first positioning part 114 to complete the installation of the track light.
  • This positioning design not only simplifies the installation process of track lights but also improves their stability and reliability, providing users with a better lighting experience. Furthermore, this positioning design is applicable to different specifications and models of tracks 112 and rotating bodies 104, offering users greater choice and flexibility.
  • both the first positioning part 114 and the second positioning part 116 are provided with mounting holes 118, and fasteners are inserted into the mounting holes 118.
  • the fasteners are suitable for locking the rotating body 104 and the track 112.
  • both the first positioning part 114 and the second positioning part 116 are provided with mounting holes 118.
  • the mounting holes 118 are configured to accommodate fasteners, such as screws or bolts.
  • fasteners such as screws or bolts.
  • the fasteners can be screws, bolts, or other suitable fasteners.
  • the number and position of the mounting holes 118 can be designed according to actual needs to ensure that the fasteners can effectively lock the rotating body 104 and the track 112. During installation, the user only needs to pass the fasteners through the mounting holes 118 and tighten or secure them appropriately to complete the installation of the track light.
  • the installation process of the track light is simplified, and its stability and reliability are improved.
  • This design is also applicable to different specifications and models of the track 112 and rotating body 104, providing users with greater choice and flexibility.
  • the fastener design also makes the disassembly and maintenance of the track light more convenient and simple.
  • a groove 120 is formed on the side of the track 112 away from the second positioning part 116, and a conductive strip 122 is formed in the groove 120.
  • the terminal block is adapted to extend into the groove 120 and contact the conductive strip 122.
  • a groove 120 is formed on the side of the track 112 opposite to the second positioning part 116, and a conductive strip 122 is formed in this groove 120.
  • the conductive strip 122 can be stably fixed in the track 112 and can be easily connected to the wiring terminals on the rotating body 104.
  • the wiring terminal When the track 112 is installed on the rotating body 104, and the first positioning part 114 and the second positioning part 116 are positioned together, the wiring terminal will extend into the slide groove 120 and contact the conductive strip 122.
  • This contact method ensures that the track light receives a stable power supply during use, while avoiding malfunctions or safety hazards caused by poor contact.
  • the design of the groove 120 also provides a guiding function, allowing the terminal block to smoothly align with the conductive strip 122 when it extends into the groove 120. This arrangement not only simplifies the installation process but also improves the accuracy and reliability of the installation. Therefore, by providing the groove 120 and conductive strip 122 on the track 112, and ensuring that the terminal block extends into the groove 120 and contacts the conductive strip 122 after positioning and mating, the track light provided in this embodiment achieves a stable and reliable electrical connection, ensuring the normal operation and safe use of the track light.
  • the rotating body 104 has a positioning post 124 formed on the side opposite to the second receiving portion 106, which is suitable for positioning and engaging with the terminal assembly 108.
  • a positioning post 124 is formed on the side of the rotating body 104 opposite to the second receiving portion 106.
  • the positioning post 124 is designed primarily to engage with the terminal assembly 108 for positioning. This positioning engagement ensures that the terminal assembly 108 is accurately positioned on the rotating body 104, thereby guaranteeing the stability and reliability of the track light during use.
  • the shape and size of the positioning post 124 can be designed according to the structure and size of the terminal assembly 108 to ensure a tight fit between the two. During installation, the user only needs to align the terminal assembly 108 with the positioning post 124 and install it onto the rotating body 104 to complete the installation and positioning of the terminal assembly 108.
  • the installation process of the track light is not only simplified, but its installation accuracy and stability are also improved.
  • This design also effectively prevents the terminal assembly 108 from loosening or falling off during use, thereby ensuring the normal operation and safety of the track light.
  • the track light of this application achieves a more stable and reliable electrical connection and installation effect, thereby improving the user experience.
  • a wire hole 126 is provided on the rotating body 104, and the terminals of the terminal assembly 108 are adapted to pass through the wire hole 126 and connect to the cable of the track light.
  • a wire-passing hole 126 is provided on the rotating body 104.
  • the wire-passing hole 126 allows the terminals of the terminal assembly 108 to easily pass through the rotating body 104 and connect to the track light cable.
  • the wire-passing hole 126 allows the cable to pass smoothly through the rotating body 104, and the terminals of the terminal assembly 108 can connect to the cable through the wire-passing hole 126. This design not only simplifies the cable connection process but also makes the installation and maintenance of the track light more convenient and faster.
  • the size and position of the wire through hole 126 can be designed according to actual needs to ensure that the terminals of the terminal assembly 108 can pass through smoothly and connect to the cable. At the same time, the design of the wire through hole 126 also needs to take into account the protection and fixation of the cable to avoid the cable becoming loose or damaged during use.
  • the track light of this application achieves convenient cable connection and fixation, improving the installation efficiency and operational stability of the track light. Simultaneously, this design provides users with greater installation and maintenance space, making it easier for them to install, debug, and maintain the track light. Furthermore, through the cooperation of the cable pass-through hole 126 with the terminal assembly 108 and the cable, the track light provided in this embodiment achieves more convenient and stable cable connection and fixation, improving the user experience and installation efficiency of the track light.
  • a connecting hole 128 is provided on the rotating body 104, and a fastener is provided in the connecting hole 128.
  • the fastener is suitable for locking the terminal assembly 108 and the rotating body 104.
  • the rotating body 104 has a connection hole 128, which is configured to accommodate fasteners such as screws or bolts.
  • the fasteners securely lock the terminal assembly 108 and the rotating body 104 together through the connection hole 128, ensuring a stable connection between the two.
  • connection hole 128 allows fasteners to act directly on the terminal assembly 108 and the rotating body 104, enabling a quick and easy locking operation. This design not only simplifies the installation process but also improves the overall stability of the track light.
  • the number and position of the connecting holes 128 can be customized according to the structure and size of the terminal assembly 108 to ensure that the fasteners can effectively lock the terminal assembly 108 to the rotating body 104.
  • the user only needs to pass the fasteners through the connecting holes 128 and tighten or fix them appropriately to complete the installation and locking of the terminal assembly 108.
  • This configuration also facilitates future maintenance and replacement. For example, when a user needs to replace or repair the terminal assembly 108, the user can easily remove the terminal assembly 108 from the rotating body 104 simply by loosening the fasteners.
  • the track light of this application achieves a quick and easy installation and disassembly process, improving the stability and maintenance convenience of the track light.
  • This design not only meets the actual needs of users but also enhances the overall performance and user experience of the track light.
  • a locking hole 130 is provided on the second receiving portion 106, and a fastener is provided in the locking hole 130.
  • the fastener is suitable for locking the rotating shaft assembly 110 and the second receiving portion 106.
  • a locking hole 130 is provided on the second receiving portion 106.
  • the locking hole 130 is configured to accommodate fasteners, such as screws or bolts.
  • the locking hole 130 is designed to allow fasteners to act directly on the shaft assembly 110 and the second receiving portion 106, thereby enabling a quick and easy locking operation. This design not only simplifies the installation process but also improves the overall stability of the track light.
  • the number and position of the locking holes 130 can be customized according to the structure and size of the shaft assembly 110 to ensure that the fasteners can effectively lock the shaft assembly 110 to the second receiving portion 106.
  • the user only needs to pass the fasteners through the locking holes 130 and tighten or fix them appropriately to complete the installation and locking of the shaft assembly 110.
  • this configuration facilitates future maintenance and replacement. If the shaft assembly 110 needs to be replaced or repaired, the user can easily remove the shaft assembly 110 from the second receiving part 106 simply by loosening the fasteners.
  • the track light of this application achieves a quick and easy installation and disassembly process, improving the stability and maintenance convenience of the track light.
  • This design not only meets the actual needs of users but also enhances the overall performance and user experience of the track light. Simultaneously, this design also strengthens the connection between the rotating shaft assembly 110 and the second receiving portion 106, further improving the reliability and safety of the track light.
  • At least four mounting surfaces are formed on the base 100, each mounting surface having a first receiving portion 102, and the number of rotating bodies 104 corresponds one-to-one with the number of mounting surfaces.
  • At least four mounting surfaces are formed on the base 100, and a first receiving portion 102 is formed on each mounting surface.
  • This design allows the base 100 to mount multiple rotating bodies 104, each rotating body 104 corresponding to a first receiving portion 102 on a mounting surface.
  • This structure provides greater flexibility and scalability for track lights.
  • the base 100 has multiple mounting surfaces and a first receiving portion 102, users can select to install different numbers of rotating bodies 104 as needed. For example, if a larger area needs to be illuminated or more lighting directions are required, users can install more rotating bodies 104 on the base 100. This design allows track lights to be customized according to actual usage scenarios to meet different lighting needs.
  • first receiving portion 102 on each mounting surface mates with the second receiving portion 106 on the corresponding rotating body 104, and is configured to mount the rotating shaft assembly 110. This arrangement ensures that the rotating body 104 can be stably mounted on the base 100 and can be easily adjusted and disassembled.
  • the track light of this application achieves greater flexibility and scalability, allowing users to customize and install it according to their actual needs.
  • This design not only improves the practicality of the track light but also provides users with more choices and convenience.
  • two, three, or more mounting surfaces may be provided on the base 100.
  • a first receiving portion 102 is provided on each mounting surface, and a rotating body 104 and a track 112 are provided on each mounting surface.
  • six mounting surfaces may be provided on the base 100, and the user may selectively provide the rotating body 104 and the track 112 on several of the mounting surfaces as needed.
  • it also includes a top cover 132, a first mounting post 134 is provided on the base 100, and a second mounting post 136 is provided on the top cover 132.
  • the top cover 132 is adapted to be detachably mounted on the base 100 via the first mounting post 134 and the second mounting post 136.
  • the track light further includes a top cover 132 configured to cover and protect the internal components of the track light.
  • a first mounting post 134 is provided on the base 100, and a second mounting post 136 is provided on the top cover 132.
  • the design of the first mounting post 134 and the second mounting post 136 allows the top cover 132 to be easily and detachably mounted to the base 100 via them.
  • This detachable installation method not only simplifies the installation and removal process of track lights but also facilitates the maintenance and replacement of internal components.
  • users need to clean, inspect, or replace track light components, they can easily remove the top cover 132 by simply loosening the connection between the top cover 132 and the base 100.
  • the top cover 132 can be easily reinstalled onto the base 100 via the first mounting post 134 and the second mounting post 136.
  • top cover 132 also provides dust and water protection, ensuring that the internal components of the track light can function properly in harsh environments. At the same time, the top cover 132 enhances the overall aesthetics of the track light and improves the user experience.
  • the track light of this application achieves convenient installation and removal between the top cover 132 and the base 100, improving the ease of use and maintainability of the track light.
  • This design not only meets the actual needs of users but also enhances the overall performance and service life of the track light.
  • a suspension wire assembly 138 is included, which is connected to a top cover 132.
  • the track light also includes a suspension wire assembly 138, which is connected to the top cover 132.
  • the suspension wire assembly 138 is configured to suspend the track light from the ceiling or other high locations to achieve a lighting function.
  • the design of the suspension wire assembly 138 can be customized according to actual needs, for example, it can use materials such as metal chains, steel wire ropes, or flexible suspension wires.
  • the first end of the suspension wire assembly 138 is connected to the top cover 132, and the second end of the suspension wire assembly 138 can be connected to the ceiling or other suspension points via hooks, rings, or other means. This connection method is simple and reliable, ensuring that the track light is stably suspended in the desired position.
  • the track light provided in this embodiment can be easily installed at various heights and positions to meet different lighting needs. Furthermore, the suspension wire assembly 138 can be adjusted as needed to modify the height and angle of the track light to achieve optimal lighting effects.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Arrangement Of Elements, Cooling, Sealing, Or The Like Of Lighting Devices (AREA)
  • Fastening Of Light Sources Or Lamp Holders (AREA)

Abstract

本申请涉及照明灯具领域,提供一种轨道灯。轨道灯包括底座,底座上形成有第一容置部;转动体,可拆卸地安装于底座且转动体上形成有第二容置部;端子组件,安装于转动体;转轴组件,在转动体安装于底座的情况下,转轴组件适于安装于第一容置部和第二容置部;轨道,被配置为安装轨道灯,轨道可拆卸地安装于转动体背离第二容置部的一侧,在轨道安装于转动体的情况下,端子组件中的接线端子与轨道中的导电条相接触。该轨道灯能够适应不同的照明需求,还丰富了使用场景和装饰效果。还可以简化安装过程,实现端子组件与轨道之间的快速电气连接,连接方式稳定可靠,能够保证轨道灯在使用过程中的安全性。

Description

轨道灯
相关申请的交叉引用
本申请要求于2024年04月25日提交的申请号为2024208864063,名称为“轨道灯”的中国专利申请的优先权,其通过引用方式全部并入本文。
技术领域
本申请涉及照明灯具领域,提供一种轨道灯。
背景技术
轨道灯通常同于商品展示照明、室内装饰、户外照明等,传统的轨道灯一般是通过滑轨配合将设置有灯具的导轨头安装至导轨中,并使得灯具能够往复滑动。
传统的轨道灯在安装过程中,大多需要先将端子组件安装于轨道,再将轨道安装于轨道灯的底座,这样的安装方式导致轨道灯的安装步骤繁琐。而且,轨道灯安装完毕后,无法实现轨道的旋转,导致对于轨道灯照射角度的调整十分不便。
发明内容
本申请旨在至少解决相关技术中存在的技术问题之一。为此,本申请提出一种轨道灯,能够提升轨道灯的安装效率,还能够实现轨道相对于底座的转动,进而满足轨道灯的角度调整。
本申请实施例提供一种轨道灯,包括:
底座,所述底座上形成有第一容置部;
转动体,可拆卸地安装于所述底座且所述转动体上形成有第二容置部;
端子组件,安装于所述转动体;
转轴组件,在所述转动体安装于所述底座的情况下,所述转轴组件适于安装于所述第一容置部和所述第二容置部;
轨道,被配置为安装轨道灯,所述轨道可拆卸地安装于所述转动体背离所述第二容置部的一侧,在所述轨道安装于所述转动体的情况下,所述端子组件中的接线端子与所述轨道中的导电条相接触。
根据本申请实施例提供的轨道灯,通过转动体可拆卸地安装于底座的设计,使得轨道可以在一定范围内相对于底座调整角度和方向,由此即可使得轨道灯能够适应不同的照明需求,还丰富使用场景和装饰效果。由于轨道和转动体之间采用可拆卸设计,用户可以根据需要选择不同的轨道和转动体进行组合,以满足不同的照明需求。此外,这种设计还为用户提供了扩展的可能性,例如通过增加更多的转动体和轨道,可以构建更加复杂的照明系统。本申请实施例提供的采用模块化设计,各个组件之间通过简单的可拆卸连接方式组装在一起。不仅简化了安装过程,使得用户可以快速地将轨道灯安装到轨道上,还方便了日后的维护和更换。端子组件中的接线端子与轨道中的导电条相接触,实现了端子组件与轨道之间的快速电气连接,连接方式稳定可靠,能够保证轨道灯在使用过程中的安全性。由此,本申请实施例提供的轨道灯具有灵活可调的角度、易于安装和维护、安全可靠的供电以及良好的通用性和扩展性等优点,能够满足多种不同的照明需求,提高了用户的使用体验。
根据本申请的一个实施例,所述转动体上形成有第一定位部,所述轨道中形成有第二定位部,在所述安装于所述转动体的情况下,所述转动体与所述轨道适于通过所述第一定位部和所述第二定位部实现定位。
根据本申请的一个实施例,所述第一定位部和所述第二定位部上均开设有安装孔,所述安装孔中穿设有紧固件,在所述轨道安装于所述转动体的情况下,所述紧固件适于锁紧所述转动体和所述轨道。
根据本申请的一个实施例,所述轨道背离所述第二定位部的一侧形成有滑槽,所述导电条形成于所述滑槽,在所述第一定位部和所述第二定位部定位配合的情况下,所述接线端子适于伸入所述滑槽并与所述导电条相接触。
根据本申请的一个实施例,所述转动体背离所述第二容置部的一侧形成有适于与所述端子组件定位配合的定位柱。
根据本申请的一个实施例,所述转动体上开设有过线孔,所述端子组件的端子适于穿过所述过线孔并与轨道灯的线缆连接。
根据本申请的一个实施例,所述转动体上开设有连接孔,所述连接孔中穿设有紧固件,在所述端子组件安装于所述转动体的情况下,所述紧固件适于锁紧所述端子组件与所述转动体。
根据本申请的一个实施例,所述第二容置部上开设有锁紧孔,所述锁紧孔中穿设有紧固件,在所述转轴组件安装于所述第二容置部的情况下,所述紧固件适于锁紧所述转轴组件与所述第二容置部。
根据本申请的一个实施例,所述底座上形成有至少四个安装面,每个所述安装面均形成有所述第一容置部,所述转动体的数量与所述安装面的数量一一对应。
根据本申请的一个实施例,还包括顶盖,所述底座上设置有第一安装柱,所述顶盖上设置有第二安装柱,所述顶盖适于通过所述第一安装柱和所述第二安装柱可拆卸地安装于所述底座。
根据本申请的一个实施例,包括吊线组件,所述吊线组件连接于所述顶盖。
本申请实施例中的上述一个或多个技术方案,至少具有如下技术效果之一:
根据本申请实施例提供的轨道灯,通过转动体可拆卸地安装于底座的设计,使得轨道可以在一定范围内相对于底座调整角度和方向,由此即可使得轨道灯能够适应不同的照明需求,还丰富使用场景和装饰效果。由于轨道和转动体之间采用可拆卸设计,用户可以根据需要选择不同的轨道和转动体进行组合,以满足不同的照明需求。此外,这种设计还为用户提供了扩展的可能性,例如通过增加更多的转动体和轨道,可以构建更加复杂的照明系统。本申请实施例提供的采用模块化设计,各个组件之间通过简单的可拆卸连接方式组装在一起。不仅简化了安装过程,使得用户可以快速地将轨道灯安装到轨道上,还方便了日后的维护和更换。端子组件中的接线端子与轨道中的导电条相接触,实现了端子组件与轨道之间的快速电气连接,连接方式稳定可靠,能够保证轨道灯在使用过程中的安全性。由此,本申请实施例提供的轨道灯具有灵活可调的角度、易于安装和维护、安全可靠的供电以及良好的通用性和扩展性等优点,能够满足多种不同的照明需求,提高了用户的使用体验。
本申请的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本申请的实践了解到。
附图说明
为了更清楚地说明本申请或传统技术中的技术方案,下面将对实施例或传统技术描述中所需要使用的附图作一简单地介绍,显而易见地,下面描述中的附图是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本申请实施例提供的轨道灯的示意性爆炸图;
图2是本申请实施例提供的轨道灯的示意性结构图;
图3是本申请实施例提供的轨道灯与轨道的示意性结构图;
图4是本申请实施例提供的转动体的示意性结构图;
图5是本申请实施例提供的底座的示意性结构图;
图6是本申请实施例提供的底座与转轴组件的示意性结构图;
图7是本申请实施例提供的底座与转动体、端子组件的示意性结构图;
图8是本申请实施例提供的轨道的示意性结构图。
附图标记:
100、底座;102、第一容置部;104、转动体;106、第二容置部;
108、端子组件;110、转轴组件;112、轨道;114、第一定位部;116、第二定位部;118、安装孔;120、滑槽;122、导电条;124、定位柱;126、过线孔;128、连接孔;130、锁紧孔;132、顶盖;134、第一安装柱;136、第二安装柱;138、吊线组件。
具体实施方式
下面结合附图和实施例对本申请的实施方式作进一步详细描述。以下实施例用于说明本申请,但不能用来限制本申请的范围。
如图1至图8所示,本申请实施例提供一种轨道灯,包括:
底座100,底座100上形成有第一容置部102;
转动体104,可拆卸地安装于底座100且转动体104上形成有第二容置部106;
端子组件108,安装于转动体104;
转轴组件110,在转动体104安装于底座100的情况下,转轴组件110适于安装于第一容置部102和第二容置部106;
轨道112,被配置为安装轨道灯,轨道112可拆卸地安装于转动体104背离第二容置部106的一侧,在轨道112安装于转动体104的情况下,端子组件108中的接线端子与轨道112中的导电条122相接触。
根据本申请实施例提供的轨道灯,通过转动体104可拆卸地安装于底座100的设计,使得轨道112可以在一定范围内相对于底座100调整角度和方向,由此即可使得轨道灯能够适应不同的照明需求,还丰富使用场景和装饰效果。由于轨道112和转动体104之间采用可拆卸设计,用户可以根据需要选择不同的轨道112和转动体104进行组合,以满足不同的照明需求。此外,这种设计还为用户提供了扩展的可能性,例如通过增加更多的转动体104和轨道112,可以构建更加复杂的照明系统。本申请实施例提供的采用模块化设计,各个组件之间通过简单的可拆卸连接方式组装在一起。不仅简化了安装过程,使得用户可以快速地将轨道灯安装到轨道112上,还方便了日后的维护和更换。端子组件108中的接线端子与轨道112中的导电条122相接触,实现了端子组件108与轨道112之间的快速电气连接,连接方式稳定可靠,能够保证轨道灯在使用过程中的安全性。由此,本申请实施例提供的轨道灯具有灵活可调的角度、易于安装和维护、安全可靠的供电以及良好的通用性和扩展性等优点,能够满足多种不同的照明需求,提高了用户的使用体验。
请继续参见图1至图8,在本申请实施例中,该轨道灯包括底座100、转动体104、端子组件108、转轴组件110以及轨道112。其中,底座100上设有第一容置部102。第一容置部102的作用主要是被配置为安装和固定转轴组件110,从而使得转动体104可以稳定地在底座100上进行转动。
转动体104可拆卸地安装于底座100上,转动体104上形成有第二容置部106,第二容置部106与底座100的第一容置部102相对应,一起构成了安装转轴组件110的空间。转动体104的设计使得轨道灯可以方便地调整角度和方向,满足不同的照明需求。
端子组件108安装于转动体104上,端子组件108包括端子盒和接线端子,其中,端子盒安装于转动体104,接线端子被配置为与外部电源进行连接,从而实现轨道灯的供电。
转轴组件110在转动体104安装于底座100的情况下,安装于第一容置部102和第二容置部106。转轴组件110的作用主要是使得转动体104可以在底座100上顺畅地转动,同时保证转动的稳定性和可靠性。
如前所述,由于轨道112被配置为安装轨道灯,且轨道112可拆卸地安装于转动体104背离第二容置部106的一侧。在轨道112安装于转动体104的情况下,端子组件108中的接线端子与轨道112中的导电条122相接触。这样,当轨道灯安装在轨道112上时,通过导电条122与接线端子的接触,轨道灯就可以从轨道112上获取电力,实现照明功能。由此即可实现轨道112相对于底座100的相对转动,进而可以调整轨道灯相对于底座100的转动以实现对轨道灯的照射角度的调节。
根据本申请的一个实施例,转动体104上形成有第一定位部114,轨道112中形成有第二定位部116,在安装于转动体104的情况下,转动体104与轨道112适于通过第一定位部114和第二定位部116实现定位。
参见图4,根据本申请的一个实施例,转动体104上形成有第一定位部114,而轨道112中形成有第二定位部116。当轨道112安装于转动体104时,第一定位部114和第二定位部116会相互配合,从而实现转动体104与轨道112之间的精确定位。通过这种设置方式可以确保轨道灯在安装在轨道112上时具有稳定的位置和姿态,避免在使用过程中出现晃动或移位的情况,提高了轨道灯的稳定性和可靠性。
其中,第一定位部114和第二定位部116的形状和结构可以根据实际需要进行设计。例如,它们可以采用相互配合的凸凹结构、孔和销的结构或其他适合的定位方式。在安装过程中,用户只需将轨道112对准转动体104上的第一定位部114,然后将轨道112安装到转动体104上,直到第二定位部116与第一定位部114完全配合,即可完成轨道灯的安装。
通过这种定位设计,不仅简化了轨道灯的安装过程,还提高了轨道灯的稳定性和可靠性,使得用户在使用过程中能够获得更好的照明体验。同时,这种定位设计也适用于不同规格和型号的轨道112和转动体104,为用户提供了更大的选择空间和灵活性。
根据本申请的一个实施例,第一定位部114和第二定位部116上均开设有安装孔118,安装孔118中穿设有紧固件,在轨道112安装于转动体104的情况下,紧固件适于锁紧转动体104和轨道112。
参见图4和图8,根据本申请的一个实施例,第一定位部114和第二定位部116上均开设有安装孔118,安装孔118被配置为穿设紧固件,如螺丝、螺栓等。当轨道112安装于转动体104时,紧固件穿过安装孔118,将转动体104和轨道112紧密地锁紧在一起。这种设计方式进一步增强了轨道灯的稳定性和可靠性,确保在使用过程中不会出现晃动或脱落的情况。
具体而言,紧固件可以是螺丝、螺栓或其他适合的紧固件。安装孔118的数量和位置可以根据实际需要进行设计,以确保紧固件能够有效地锁紧转动体104和轨道112。在安装过程中,用户只需将紧固件穿过安装孔118,并适当地旋紧或固定,即可完成轨道灯的安装。
通过采用紧固件锁紧转动体104和轨道112的设计,不仅简化了轨道灯的安装过程,还提高了其稳定性和可靠性。这种设计方式还适用于不同规格和型号的轨道112和转动体104,为用户提供了更大的选择空间和灵活性。同时,紧固件的设计也使得轨道灯的拆卸和维护变得更加方便和简单。
根据本申请的一个实施例,轨道112背离第二定位部116的一侧形成有滑槽120,导电条122形成于滑槽120,在第一定位部114和第二定位部116定位配合的情况下,接线端子适于伸入滑槽120并与导电条122相接触。
参见图8,根据本申请的一个实施例,轨道112背离第二定位部116的一侧形成有滑槽120,导电条122则形成于这个滑槽120内。通过这样设置,使得导电条122能够稳定地固定在轨道112中,并且方便与转动体104上的接线端子进行连接。
当轨道112安装于转动体104,且第一定位部114和第二定位部116实现定位配合时,接线端子会伸入滑槽120并与导电条122相接触。这种接触方式能够确保轨道灯在使用过程中获得稳定的电力供应,同时避免了因接触不良而导致的故障或安全隐患。
滑槽120的设计还具有一定的导向作用,使得接线端子在伸入滑槽120时能够顺利地与导电条122对接。这种设置方式不仅简化了安装过程,还提高了安装的准确性和可靠性。由此,通过在轨道112上设置滑槽120和导电条122,以及使接线端子在定位配合后伸入滑槽120与导电条122相接触,本申请实施例提供的轨道灯实现了稳定、可靠的电气连接,确保了轨道灯的正常工作和使用安全。
根据本申请的一个实施例,转动体104背离第二容置部106的一侧形成有适于与端子组件108定位配合的定位柱124。
参见图4,根据本申请的一个实施例,转动体104背离第二容置部106的一侧形成有定位柱124,该定位柱124的设计主要被配置为与端子组件108进行定位配合。这种定位配合可以确保端子组件108在转动体104上的安装位置准确无误,进而保证轨道灯在使用过程中的稳定性和可靠性。
具体而言,定位柱124的形状和尺寸可以根据端子组件108的结构和尺寸进行设计,以确保两者之间能够实现紧密的配合。在安装过程中,用户只需将端子组件108对准定位柱124,并将其安装到转动体104上,即可完成端子组件108的安装和定位。
通过采用定位柱124与端子组件108的定位配合设计,不仅简化了轨道灯的安装过程,还提高了其安装精度和稳定性。这种设计方式还能够有效地防止端子组件108在使用过程中出现松动或脱落的情况,从而保证了轨道灯的正常工作和使用安全。
由此,通过在转动体104上设置定位柱124,并与端子组件108进行定位配合,本申请的轨道灯实现了更加稳定、可靠的电气连接和安装效果,提高了用户的使用体验。
根据本申请的一个实施例,转动体104上开设有过线孔126,端子组件108的端子适于穿过过线孔126并与轨道灯的线缆连接。
参见图4,根据本申请的一个实施例,转动体104上开设有过线孔126,通过过线孔126的设置使得端子组件108的端子能够方便地穿过转动体104,并与轨道灯的线缆进行连接。过线孔126的设置使得线缆可以顺畅地穿过转动体104,并且端子组件108的端子可以通过过线孔126与线缆进行连接。这种设计不仅简化了线缆的连接过程,还使得轨道灯的安装和维护更加方便快捷。
过线孔126的大小和位置可以根据实际需要进行设计,以确保端子组件108的端子能够顺利地穿过并与线缆进行连接。同时,过线孔126的设计还需要考虑到线缆的保护和固定,以避免在使用过程中出现线缆松动或损坏的情况。
通过采用过线孔126的设计,本申请的轨道灯实现了线缆的便捷连接和固定,提高了轨道灯的安装效率和使用稳定性。同时,这种设计还为用户提供了更大的安装和维护空间,使得用户可以更加方便地对轨道灯进行安装、调试和维护。此外,通过过线孔126与端子组件108和线缆进行配合,本申请实施例提供的轨道灯实现了更加便捷、稳定的线缆连接和固定,提高了用户的使用体验和轨道灯的安装效率。
根据本申请的一个实施例,转动体104上开设有连接孔128,连接孔128中穿设有紧固件,在端子组件108安装于转动体104的情况下,紧固件适于锁紧端子组件108与转动体104。
参见图4,根据本申请的一个实施例,转动体104上开设有连接孔128,连接孔128被配置为穿设紧固件,如螺丝或螺栓。当端子组件108安装于转动体104时,紧固件通过连接孔128将端子组件108与转动体104紧密地锁紧在一起,确保两者之间的稳定连接。
连接孔128的设计允许紧固件直接作用于端子组件108和转动体104,从而实现快速、简便的锁紧操作。这种设计不仅简化了安装过程,还提高了轨道灯的整体稳定性。
具体而言,连接孔128的数量和位置可以根据端子组件108的结构和尺寸进行定制,以确保紧固件能够有效地锁紧端子组件108与转动体104。在安装过程中,用户只需将紧固件穿过连接孔128,并适当地旋紧或固定,即可完成端子组件108的安装和锁紧。
这种设置方式还便于日后的维护和更换,例如,当用户需要更换或维修端子组件108,用户只需松开紧固件,即可轻松地将端子组件108从转动体104上拆卸下来。
由此,通过在转动体104上开设连接孔128并利用紧固件锁紧端子组件108与转动体104,本申请的轨道灯实现了快速、简便的安装和拆卸过程,提高了轨道灯的稳定性和维护便利性。这种设计不仅满足了用户的实际需求,还提升了轨道灯的整体性能和使用体验。
根据本申请的一个实施例,第二容置部106上开设有锁紧孔130,锁紧孔130中穿设有紧固件,在转轴组件110安装于第二容置部106的情况下,紧固件适于锁紧转轴组件110与第二容置部106。
参见图4,根据本申请的一个实施例,第二容置部106上开设有锁紧孔130,锁紧孔130被配置为穿设紧固件,如螺丝或螺栓。当转轴组件110安装于第二容置部106时,紧固件通过锁紧孔130将转轴组件110与第二容置部106紧密地锁紧在一起,确保转轴组件110的稳定安装和固定。
锁紧孔130的设计允许紧固件直接作用于转轴组件110和第二容置部106,从而实现快速、简便的锁紧操作。这种设计不仅简化了安装过程,还提高了轨道灯的整体稳定性。
具体而言,锁紧孔130的数量和位置可以根据转轴组件110的结构和尺寸进行定制,以确保紧固件能够有效地锁紧转轴组件110与第二容置部106。在安装过程中,用户只需将紧固件穿过锁紧孔130,并适当地旋紧或固定,即可完成转轴组件110的安装和锁紧。
此外,这种设置方式还便于日后的维护和更换。如果需要更换或维修转轴组件110,用户只需松开紧固件,即可轻松地将转轴组件110从第二容置部106上拆卸下来。
由此,通过在第二容置部106上开设锁紧孔130并利用紧固件锁紧转轴组件110与第二容置部106,本申请的轨道灯实现了快速、简便的安装和拆卸过程,提高了轨道灯的稳定性和维护便利性。这种设计不仅满足了用户的实际需求,还提升了轨道灯的整体性能和使用体验。同时,这种设计也增强了转轴组件110与第二容置部106之间的连接强度,进一步提高了轨道灯的可靠性和安全性。
根据本申请的一个实施例,底座100上形成有至少四个安装面,每个安装面均形成有第一容置部102,转动体104的数量与安装面的数量一一对应。
参见图1至图3,根据本申请的一个实施例,底座100上形成了至少四个安装面,每个安装面上都形成了第一容置部102。这种设计使得底座100可以安装多个转动体104,每个转动体104都与一个安装面上的第一容置部102相对应。这种结构为轨道灯提供了更大的灵活性和可扩展性。
具体来说,由于底座100上有多个安装面和第一容置部102,用户可以根据需要选择安装不同数量的转动体104。例如,如果需要照亮更大的区域或需要更多的照明方向,用户可以在底座100上安装更多的转动体104。这种设计使得轨道灯可以根据实际使用场景进行定制,满足不同的照明需求。
此外,每个安装面上的第一容置部102都与对应的转动体104上的第二容置部106相配合,被配置为安装转轴组件110。这种设置方式确保了转动体104可以稳定地安装在底座100上,并且可以方便地进行调整和拆卸。
由此述,通过在底座100上设置至少四个安装面和第一容置部102,并与相应数量的转动体104配合使用,本申请的轨道灯实现了更高的灵活性和可扩展性,使得用户可以根据实际需求进行定制和安装。这种设计不仅提高了轨道灯的实用性,还为用户提供了更多的选择和便利性。
当然,在其他的一些实施例中,也可以在底座100上设置两个、三个或者更多的安装面,相应的,在每个安装面上均设置有第一容置部102,每个安装面上均对应地设置有转动体104和轨道112。或者,可以在底座100上设置六个安装面,用户可根据需要选择性地在其中几个安装面上设置转动体104和轨道112。
根据本申请的一个实施例,还包括顶盖132,底座100上设置有第一安装柱134,顶盖132上设置有第二安装柱136,顶盖132适于通过第一安装柱134和第二安装柱136可拆卸地安装于底座100。
参见图1至图3,根据本申请的一个实施例,轨道灯还包括一个顶盖132,被配置为覆盖并保护轨道灯的内部组件。底座100上设置有第一安装柱134,顶盖132上设置有第二安装柱136。第一安装柱134和第二安装柱136的设计使得顶盖132可以方便地通过它们可拆卸地安装于底座100。
这种可拆卸的安装方式不仅简化了轨道灯的安装和拆卸过程,还方便了对轨道灯的内部组件进行维护和更换。当用户需要清洁、检查或更换轨道灯的组件时,只需松开顶盖132与底座100之间的连接,即可轻松地拆卸顶盖132。同样地,当用户完成维护和更换工作后,也可以方便地通过第一安装柱134和第二安装柱136将顶盖132重新安装到底座100上。
顶盖132的设计还可以起到防尘、防水等保护作用,确保轨道灯的内部组件在恶劣环境下也能正常工作。同时,顶盖132还可以增加轨道灯的整体美观性,提升用户的使用体验。
由此,通过第一安装柱134和第二安装柱136的可拆卸连接方式,本申请的轨道灯实现了顶盖132与底座100之间的便捷安装和拆卸,提高了轨道灯的使用便利性和可维护性。这种设计不仅满足了用户的实际需求,还提升了轨道灯的整体性能和使用寿命。
根据本申请的一个实施例,包括吊线组件138,吊线组件138连接于顶盖132。
参见图1至图3,根据本申请的一个实施例,轨道灯还包括吊线组件138,该吊线组件138连接于顶盖132。吊线组件138被配置为将轨道灯悬挂在天花板或其他高处,从而实现照明功能。吊线组件138的设计可以根据实际需要进行定制,例如可以采用金属链条、钢丝绳或柔性吊线等材料。吊线组件138的第一端连接于顶盖132,吊线组件138的第二端则可以通过挂钩、吊环等方式与天花板或其他悬挂点连接。这种连接方式简单可靠,可以确保轨道灯稳定地悬挂在所需位置。
通过吊线组件138的使用,本申请实施例提供的轨道灯可以方便地安装在各种高度和位置,满足不同的照明需求。同时,吊线组件138还可以根据需要进行调节,以调整轨道灯的高度和角度,实现最佳的照明效果。
最后应说明的是:以上实施例仅用以说明本申请的技术方案,而非对其限制;尽管参照前述实施例对本申请进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本申请各实施例技术方案的范围。

Claims (11)

  1. 一种轨道灯,包括:
    底座(100),所述底座(100)上形成有第一容置部(102);
    转动体(104),可拆卸地安装于所述底座(100)且所述转动体(104)上形成有第二容置部(106);
    端子组件(108),安装于所述转动体(104);
    转轴组件(110),在所述转动体(104)安装于所述底座(100)的情况下,所述转轴组件(110)适于安装于所述第一容置部(102)和所述第二容置部(106);
    轨道(112),被配置为安装轨道灯,所述轨道(112)可拆卸地安装于所述转动体(104)背离所述第二容置部(106)的一侧,在所述轨道(112)安装于所述转动体(104)的情况下,所述端子组件(108)中的接线端子与所述轨道(112)中的导电条(122)相接触。
  2. 根据权利要求1所述的轨道灯,其中,所述转动体(104)上形成有第一定位部(114),所述轨道(112)中形成有第二定位部(116),在所述安装于所述转动体(104)的情况下,所述转动体(104)与所述轨道(112)适于通过所述第一定位部(114)和所述第二定位部(116)实现定位。
  3. 根据权利要求2所述的轨道灯,其中,所述第一定位部(114)和所述第二定位部(116)上均开设有安装孔(118),所述安装孔(118)中穿设有紧固件,在所述轨道(112)安装于所述转动体(104)的情况下,所述紧固件适于锁紧所述转动体(104)和所述轨道(112)。
  4. 根据权利要求2所述的轨道灯,其中,所述轨道(112)背离所述第二定位部(116)的一侧形成有滑槽(120),所述导电条(122)形成于所述滑槽(120),在所述第一定位部(114)和所述第二定位部(116)定位配合的情况下,所述接线端子适于伸入所述滑槽(120)并与所述导电条(122)相接触。
  5. 根据权利要求1所述的轨道灯,其中,所述转动体(104)背离所述第二容置部(106)的一侧形成有适于与所述端子组件(108)定位配合的定位柱(124)。
  6. 根据权利要求1所述的轨道灯,其中,所述转动体(104)上开设有过线孔(126),所述端子组件(108)的端子适于穿过所述过线孔(126)并与轨道灯的线缆连接。
  7. 根据权利要求1所述的轨道灯,其中,所述转动体(104)上开设有连接孔(128),所述连接孔(128)中穿设有紧固件,在所述端子组件(108)安装于所述转动体(104)的情况下,所述紧固件适于锁紧所述端子组件(108)与所述转动体(104)。
  8. 根据权利要求1所述的轨道灯,其中,所述第二容置部(106)上开设有锁紧孔(130),所述锁紧孔(130)中穿设有紧固件,在所述转轴组件(110)安装于所述第二容置部(106)的情况下,所述紧固件适于锁紧所述转轴组件(110)与所述第二容置部(106)。
  9. 根据权利要求1至8中任一项所述的轨道灯,其中,所述底座(100)上形成有至少四个安装面,每个所述安装面均形成有所述第一容置部(102),所述转动体(104)的数量与所述安装面的数量一一对应。
  10. 根据权利要求9所述的轨道灯,还包括顶盖(132),所述底座(100)上设置有第一安装柱(134),所述顶盖(132)上设置有第二安装柱(136),所述顶盖(132)适于通过所述第一安装柱(134)和所述第二安装柱(136)可拆卸地安装于所述底座(100)。
  11. 根据权利要求10所述的轨道灯,包括吊线组件(138),所述吊线组件(138)连接于所述顶盖(132)。
PCT/CN2025/088717 2024-04-25 2025-04-14 轨道灯 Pending WO2025223232A1 (zh)

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