The present disclosure relates to the technical field of lighting apparatus, and particularly to a magnetic connection structure and a lighting apparatus.
Track lights mainly include tracks (conductive tracks) fixed on the ceiling or walls and various lamp bodies slidable along the tracks, which can be spotlights, line lights, etc. For some magnetically conductive track lights on the market, the lamp body and the track are connected by directly utilizing a magnetic force, so that the lamp body may fall off or have poor connection between power-acquisition contacts or even drop off due to the principle of leverage or due to a shearing force generated by the magnetic force when the lamp body rotates or swings, which results in potential safety hazards.
The examples of the present disclosure provide a magnetic connection structure and a lighting apparatus.
The examples of the present disclosure provide a magnetic connection structure for connecting a magnetically conductive track and a lighting device. The magnetic connection structure may include a first connection side and a second connection side capable of being engaged with each other; the first connection side may be provided with an anti-rotation protrusion, two connection grooves, and two first adsorption elements.
The connection groove may be arranged at both sides of the anti-rotation protrusion, the connection groove has an open end facing towards the second connection side and a closed end away from the second connection side; the anti-rotation protrusion may be protruded towards the second connection side and exceeds the open end of the connection groove; the first adsorption element is arranged in the corresponding connection groove and exposed in the corresponding connection groove.
The second connection side may be provided with an anti-rotation groove and two second adsorption elements, the anti-rotation groove is recessed in a direction away from the first connection side, the second adsorption element may be arranged at both sides of the anti-rotation groove and faces towards the first connection side; and when the first connection side is engaged with the second connection side, the anti-rotation protrusion may be inserted into the anti-rotation groove, the second adsorption element may be inserted into the connection groove and forms a magnetic adsorption with the first adsorption element.
The present disclosure further provides a lighting apparatus including a magnetically conductive track and a lighting device; wherein the lighting apparatus includes the magnetic connection structure described in any of the above, for magnetically connecting the magnetically conductive track and the lighting device.
The present disclosure further provides a lighting apparatus including a magnetically conductive track and a lighting device capable of being magnetically connected with each other.
The magnetically conductive track may be used for being assembled on an installation foundation, where the magnetically conductive track may include a mounting body, the mounting body has a mounting side and a first connection side arranged opposite to each other, the mounting side faces towards the installation foundation, and the first connection side may face towards the lighting device.
The first connection side may be provided with an anti-rotation protrusion, two connection grooves, and two first adsorption elements; where the connection groove may be arranged at both sides of the anti-rotation protrusion, the connection groove may have an open end facing towards the lighting device and a closed end away from the lighting device; the anti-rotation protrusion may be protruded towards the lighting device and exceeds the open end of the connection groove; the first adsorption element may be arranged in the corresponding connection groove and exposed in the corresponding connection groove.
The lighting device may include a base, the base has a lamp body side and a second connection side may be arranged opposite to each other, where the second connection side may face towards the first connection side, the second connection side may be provided with an anti-rotation groove and two second adsorption elements, the anti-rotation groove may be recessed into the base, and the second adsorption element may be arranged at both sides of the anti-rotation groove and may face towards the first connection side.
The first connection side and the second connection side may be engaged with each other, so that the anti-rotation protrusion may be inserted into the anti-rotation groove, the second adsorption element may be inserted into the connection groove and forms a magnetic adsorption with the first adsorption element.
It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the present disclosure.
The drawings described here are used to provide a further understanding of the present disclosure and constitute a part of the present disclosure. The illustrative examples of the present disclosure and their descriptions are used to explain the present disclosure and do not constitute an improper limitation of the present disclosure. In the drawings:
In order to make objects, technical solutions and advantages of the present disclosure more apparent, the technical solutions of the present disclosure will be described in a clear and complete way in connection with examples and corresponding drawings. Apparently, the described examples are just a part but not all of the examples of the present disclosure. Based on the examples of the present disclosure, those ordinary skilled in the art can obtain all other example(s), without any inventive work, which should be within the scope of the present disclosure.
Reference Signs used in this disclosure may include:
The technical solutions provided by various examples of the present disclosure will be described in detail below with reference to the accompanying drawings.
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When the first connection side 1010 is engaged with the second connection side 1020, the anti-rotation protrusion 110 is inserted into the anti-rotation groove 120, and the second adsorption elements 30 are inserted into the first connection groove 101 and the second connection groove 102 to form a magnetic adsorption with the first adsorption elements 20.
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In this example, the second adsorption element 30 is a magnetic iron block. When the first connection side 1010 is engaged with the second connection side 1020, the second adsorption element 30 is embedded into the power-acquisition groove 1122.
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In order to improve the anti-rotation effect of the anti-rotation groove 120, a ratio of an extension depth to a width of the anti-rotation groove 120 is configured such that, when the lighting device 1002 swings in the left and right directions on the magnetically conductive track 1001, the anti-rotation groove 120 is abutted against the anti-rotation protrusion 110 until the elastic electrical contact 31 at one side is detached from the first absorbing element 20, thereby preventing from a continuous rotation of the lighting device 1002.
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In this example, the anti-rotation protrusion 110, the first track wall 13, and the second track wall 14 are all vertically connected to the lower surface of the mounting wall 11; the mounting wall 11, the anti-rotation protrusion 110, the first track wall 13, and the second track wall 14 all extend along the length direction of the mounting body 10; the insertion grooves 1121 and the power-acquisition grooves 1122 of the first connection groove 101 and the second connection groove 102 are all parallel to the mounting wall 11. A top surface of the mounting wall 11 constitutes the mounting side 1011; a bottom surface of the anti-rotation protrusion 110, a bottom surface of the first track wall 13 and a bottom surface of the second track wall 14 jointly constitute the first connection side 1010, and the bottom surface of the anti-rotation protrusion 110 is lower than the bottom surface of the first track wall 13 and the bottom surface of the second track wall 14. Among which, the anti-rotation protrusion 110, the first track wall 13 and the second track wall 14 are connected to the lower surface of the mounting wall 11 and are spaced apart from each other. Specifically, the anti-rotation protrusion 110 is vertically connected with a middle part of the lower surface of the mounting wall 11; the first track wall 13 and the second track wall 14 are vertically connected with both sides of the lower surface of the mounting wall 11, and the first track wall 13 and the second track wall 14 are arranged parallel to each other; a first connection groove 101 extending along a length direction is formed between the first track wall 13 and the anti-rotation protrusion 110, and a second connection groove 102 extending along a length direction is formed between the anti-rotation protrusion 110 and the second track wall 14; a cross section of the anti-rotation protrusion 110 in a width direction of the mounting body 10 is in the shape of a square; the two first adsorption elements 20 are respectively arranged in the first connection groove 101 and the second connection groove 102.
The mounting wall 11 is located at the mounting side 1011 and is used for installing the mounting body 10 on the installation foundation; wherein as shown in
In this example, the first adsorption element 20 extends along a length direction and has a flat shape, and is insulated from the mounting body 10. Preferably, the first adsorption element 20 is an iron substrate, which serves as both a conductive element and a magnetic element; and the second adsorption element 30 is a magnetic iron. The first adsorption element 20 and the second adsorption element 30 are adsorbed with each other to conduct electricity as elastic power-acquisition contacts.
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In this example, two ends of the mounting body 10 along the length direction are respectively formed with an insertion hole, and a cross section of the insertion hole in the width direction of the mounting body 10 is in the shape of a square.
Further, an electric plug 200 is clamped in any one of the insertion holes; wherein the electric plug 200 and the first adsorption elements 20 form an electrical connection at the end of the first connection groove 101 and the end of the second connection groove 102, respectively.
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In the example of the present disclosure, the electrical plug 200 includes an upper shell 210 and a lower shell 220; the upper shell 210 and the lower shell 220 have basically the same structure. The pair of conductive elastic pieces 203 are sandwiched and accommodated between the upper shell 210 and the lower shell 220.
Further, a sealing plug 300 is clamped in the other one of the insertion holes. An outer profile of the sealing plug 300 is as consistent as possible with that of the electrical plug 200.
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An extension direction of the driving power source 40 is an extension direction of the length of the magnetically conductive track 1001. The driving power source 40 may include various circuit modules, a control module, a Bluetooth module or a WIFI module (the control module may be integrated with a Bluetooth module or a WIFI module).
In this example, the base 1 includes an upper base 1021 and a lower base 1022; the upper base 1021 is the upper surface of the base 1, and the lower base 1022 is the lower surface of the base 1; the upper base 1021 is provided with the anti-rotation groove 120 and the second adsorption element 30; at least two second adsorption elements 30 are provided, and the anti-rotation groove 120 is arranged between two adjacent second adsorption elements 30; the lower base 1022 is installed directly below the upper base 1021.
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The above-described at least one technical solution adopted in the examples of the present disclosure can achieve the following beneficial effects.
According to the magnetic connection structure and the lighting apparatus provided by the examples of the present disclosure, the cooperation between the anti-rotation groove on the lamp body side and the anti-rotation protrusion on the magnetically conductive track is utilized, the first adsorption elements are adsorbed and fixed with the second adsorption elements, and two elastic electrical contacts are arranged on the second connection side, so that when the lamp body is pulled, there will be no large displacement between the anti-rotation groove and the anti-rotation protrusion, and the displacement can be kept within a range which ensures that the magnetic force will not be decreased; after a small rotation of the entire lamp body with relative to the track, the anti-rotation groove on the lamp body side interferes with the anti-rotation protrusion on the track, which prevents from a continuous rotation of the lamp body with relative to the track; furthermore, such small rotation will not cause the elastic power-acquisition contact to be detached from the track, so that the elastic power-acquisition contact is still within its elastic range without resulting in a sharp drop of the magnetic force drop, which finally ensures that the lamp body will not have poor contact or fall off during the adjustment process.
The examples of the present disclosure provide a magnetic connection structure and a lighting apparatus to solve the problem(s) in the existing magnetically conductive track lights that, since the lamp body and the track are connected by directly utilizing a magnetic force and the track is in the shape of a flat plate, the lamp body may fall off or have poor connection between power-acquisition contacts or even drop off due to the principle of leverage or due to a shearing force generated by the magnetic force when the lamp body rotates or swings, which results in potential safety hazards.
The examples of the present disclosure adopt the following technical solutions: a magnetic connection structure for connecting a magnetically conductive track and a lighting device, wherein the magnetic connection structure includes a first connection side and a second connection side capable of being engaged with each other; the first connection side is provided with an anti-rotation protrusion, two connection grooves, and two first adsorption elements; wherein the connection groove is arranged at both sides of the anti-rotation protrusion, the connection groove has an open end facing towards the second connection side and a closed end away from the second connection side; the anti-rotation protrusion is protruded towards the second connection side and exceeds the open end of the connection groove; the first adsorption element is arranged in the corresponding connection groove and exposed in the corresponding connection groove; the second connection side is provided with an anti-rotation groove and two second adsorption elements, the anti-rotation groove is recessed in a direction away from the first connection side, the second adsorption element is arranged at both sides of the anti-rotation groove and faces towards the first connection side; and when the first connection side is engaged with the second connection side, the anti-rotation protrusion is inserted into the anti-rotation groove, the second adsorption element is inserted into the connection groove and forms a magnetic adsorption with the first adsorption element.
Further, each of the connection grooves includes an insertion groove and a power-acquisition groove that are communicated with each other, the insertion groove is located at the closed end of the connection groove, and the power-acquisition groove is located at the open end of the connection groove; and the first adsorption element is arranged in the corresponding insertion groove and exposed in the power-acquisition groove.
Further, the first adsorption element is a conductive substrate, and the conductive substrate includes a magnetic adsorption layer, an insulting layer arranged on the magnetic adsorption layer, and a conductive layer arranged on the insulting layer; wherein the conductive layer faces towards the power-acquisition groove and is exposed in the power-acquisition groove.
Further, the second adsorption element is a magnetic iron block, and when the first connection side is engaged with the second connection side, the second adsorption element is embedded into the power-acquisition groove.
Further, the second connection side further includes two elastic electrical contacts passing through the corresponding second adsorption elements and extending towards the first adsorption elements, respectively; wherein the elastic electrical contact is inserted into the power-acquisition groove for electrically connecting the conductive layer of the first adsorption element.
The present disclosure further provides a lighting apparatus including a magnetically conductive track and a lighting device; wherein the lighting apparatus includes the magnetic connection structure described in any of the above, for magnetically connecting the magnetically conductive track and the lighting device.
The present disclosure further provides a lighting apparatus including a magnetically conductive track and a lighting device capable of being magnetically connected with each other; the magnetically conductive track is used for being assembled on an installation foundation, wherein the magnetically conductive track includes a mounting body, the mounting body has a mounting side and a first connection side arranged opposite to each other, the mounting side faces towards the installation foundation, the first connection side faces towards the lighting device; the first connection side is provided with an anti-rotation protrusion, two connection grooves, and two first adsorption elements.
The connection groove may be arranged at both sides of the anti-rotation protrusion, the connection groove has an open end facing towards the lighting device and a closed end away from the lighting device; the anti-rotation protrusion is protruded towards the lighting device and exceeds the open end of the connection groove; the first adsorption element is arranged in the corresponding connection groove and exposed in the corresponding connection groove; the lighting device includes a base, the base has a lamp body side and a second connection side arranged opposite to each other, wherein the second connection side faces towards the first connection side, the second connection side is provided with an anti-rotation groove and two second adsorption elements, the anti-rotation groove is recessed into the base, and the second adsorption element is arranged at both sides of the anti-rotation groove and faces towards the first connection side; wherein the first connection side and the second connection side are engaged with each other, so that the anti-rotation protrusion is inserted into the anti-rotation groove, the second adsorption element is inserted into the connection groove and forms a magnetic adsorption with the first adsorption element.
Further, the lighting device further includes a lamp body, the lamp body is connected to the lamp body side of the base through a connecting rod.
Further, the mounting body includes: a mounting wall, located at the mounting side and used for mounting the mounting body on the installation foundation; the connection grooves, located below the mounting wall; wherein each of the connection grooves includes an insertion groove and a power-acquisition groove communicated with each other, the insertion groove is located at the closed end of the connection groove, and the power-acquisition groove is located at the open end of the connection groove.
Further, the mounting body further includes: a first track wall and a second track wall; the first track wall and the second track wall are arranged at the first connection side, and the first track wall and the second track wall are arranged at both sides of the anti-rotation protrusion; wherein one of the connection grooves is formed between the first track wall and the anti-rotation protrusion; and the other one of the connection grooves is formed between the anti-rotation protrusion and the second track wall.
Further, the first adsorption element is a conductive substrate, the conductive substrate includes a magnetic adsorption layer, an insulting layer arranged on the magnetic adsorption layer, and a conductive layer arranged on the insulting layer; the first adsorption element is arranged in the corresponding connection groove, the conductive layer faces towards the power-acquisition groove and is exposed in the power-acquisition groove.
Further, the second adsorption element is a magnetic iron block, and the second adsorption element is embedded into the power-acquisition groove when the first connection side is engaged with the second connection side.
Further, the second connection side further includes two elastic electrical contacts passing through the corresponding second adsorption elements and extending towards the first adsorption elements, respectively; wherein the elastic electrical contact is inserted into the power-acquisition groove for electrically connecting the conductive layer of the first adsorption element.
Further, the base includes an upper base and a lower base; the upper base is provided with the anti-rotation groove and the second adsorption element; wherein at least two second adsorption elements are provided, and the anti-rotation groove is arranged between adjacent two second adsorption elements; and the lower base is mounted directly below the upper base.
Further, the second adsorption element is a magnetic screw structure including a screw head and a screw rod; the upper base is provided with a first screw hole, and the first screw hole is arranged in correspondence with the first adsorption element; an upper surface of the lower base is provided with a fastener, the screw rod passes through the first screw hole to be screwed onto and tightened with the screw rod by means of the fastener, and a wire is electrically connected to a bottom of the screw rod.
Further, a baffle is arranged at both sides of the upper base; an upper end side of the lower base is provided with a slot, and the lower base is clamped between two baffles of the upper base through the slot.
Further, a lower surface of the base is provided with a through hole; one end of a connecting rod passes through the through hole and is fixed on the lower surface of the base by means of a screw nut; the lamp body is connected with the other end of the connecting rod.
Further, the base and the lamp body are integrally arranged, or, the base and the lamp body are connected by an adapter to form an integral structure
The at least one technical solution adopted by the examples of the present disclosure can achieve the following beneficial effects.
According to the magnetic connection structure and the lighting apparatus provided by the examples of the present disclosure, the cooperation between the anti-rotation groove on the lamp body side and the anti-rotation protrusion on the magnetically conductive track is utilized, the first adsorption elements are adsorbed and fixed with the second adsorption elements, and two elastic electrical contacts are arranged on the second connection side, so that when the lamp body is pulled, there will be no large displacement between the anti-rotation groove and the anti-rotation protrusion, and the displacement can be kept within a range which ensures that the magnetic force will not be decreased; after a small rotation of the entire lamp body with relative to the track, the anti-rotation groove on the lamp body side interferes with the anti-rotation protrusion on the track, which prevents from a continuous rotation of the lamp body with relative to the track; furthermore, such small rotation will not cause the elastic power-acquisition contact to be detached from the track, so that the elastic power-acquisition contact is still within its elastic range without resulting in a sharp drop of the magnetic force, which finally ensures that the lamp body will not have poor contact or fall off during the adjustment process.
The present disclosure may include dedicated hardware implementations such as disclosure specific integrated circuits, programmable logic arrays and other hardware devices. The hardware implementations can be constructed to implement one or more of the methods described herein. Examples that may include the apparatus and systems of various implementations can broadly include a variety of electronic and computing systems. One or more examples described herein may implement functions using two or more specific interconnected hardware modules or devices with related control and data signals that can be communicated between and through the modules, or as portions of an disclosure-specific integrated circuit. Accordingly, the system disclosed may encompass software, firmware, and hardware implementations. The terms “module,” “sub-module,” “circuit,” “sub-circuit,” “circuitry,” “sub-circuitry,” “unit,” or “sub-unit” may include memory (shared, dedicated, or group) that stores code or instructions that can be executed by one or more processors. The module refers herein may include one or more circuit with or without stored code or instructions. The module or circuit may include one or more components that are connected.
The above are only examples of the present disclosure and are not used to limit the present disclosure. For those skilled in the art, various modifications and variations may be made to the present disclosure. Any modifications, equivalent substitutions, improvements, and the like made within the spirit and principles of the present disclosure shall be included in the scope of the present disclosure.
Number | Date | Country | Kind |
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202110449608.2 | Apr 2021 | CN | national |
This application is based upon and claims the priority of PCT patent application No. PCT/CN2022/088059 filed on Apr. 21, 2022 which claims priority to the Chinese patent application No. 202110449608.2 filed on Apr. 25, 2021, the entire contents of which are hereby incorporated by reference herein for all purposes.
Number | Date | Country | |
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Parent | PCT/CN2022/088059 | Apr 2022 | US |
Child | 18380026 | US |