WO2017210939A1 - 无间断导电机构以及条形灯 - Google Patents

无间断导电机构以及条形灯 Download PDF

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Publication number
WO2017210939A1
WO2017210939A1 PCT/CN2016/087796 CN2016087796W WO2017210939A1 WO 2017210939 A1 WO2017210939 A1 WO 2017210939A1 CN 2016087796 W CN2016087796 W CN 2016087796W WO 2017210939 A1 WO2017210939 A1 WO 2017210939A1
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WO
WIPO (PCT)
Prior art keywords
support member
conductive
strip
insulating
fixed
Prior art date
Application number
PCT/CN2016/087796
Other languages
English (en)
French (fr)
Inventor
丁德亮
梁德强
Original Assignee
深圳亚锐光电科技有限公司
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 深圳亚锐光电科技有限公司 filed Critical 深圳亚锐光电科技有限公司
Publication of WO2017210939A1 publication Critical patent/WO2017210939A1/zh

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R24/00Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S4/00Lighting devices or systems using a string or strip of light sources
    • 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
    • F21V21/12Pendants, arms, or standards; Fixing lighting devices to pendants, arms, or standards capable of being elongated or shortened by the insertion or removal of intermediate pieces
    • 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
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • F21V23/06Arrangement of electric circuit elements in or on lighting devices the elements being coupling devices, e.g. connectors
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/02Contact members
    • H01R13/22Contacts for co-operating by abutting
    • H01R13/24Contacts for co-operating by abutting resilient; resiliently-mounted
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/46Bases; Cases
    • H01R13/502Bases; Cases composed of different pieces
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R25/00Coupling parts adapted for simultaneous co-operation with two or more identical counterparts, e.g. for distributing energy to two or more circuits
    • H01R25/14Rails or bus-bars constructed so that the counterparts can be connected thereto at any point along their length
    • H01R25/142Their counterparts
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R25/00Coupling parts adapted for simultaneous co-operation with two or more identical counterparts, e.g. for distributing energy to two or more circuits
    • H01R25/14Rails or bus-bars constructed so that the counterparts can be connected thereto at any point along their length
    • H01R25/145Details, e.g. end pieces or joints
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R2107/00Four or more poles

Definitions

  • the present invention belongs to the field of strip lamps, and more particularly to an uninterrupted conductive mechanism and a strip lamp.
  • a strip lamp with a long space such as a large supermarket, a workshop production line, a logistics warehouse, etc.
  • a plurality of strip-shaped support members connected in series are generally used as a support structure, a wire slot is arranged in the support member, and the wire is Arranged into the wire slot, and then set the power take-off device at a fixed position, which causes the power to be used, and can only take power at the position where the power take-off device is provided.
  • workshop production lines, logistics warehouses and other narrow spaces it is often necessary to adjust the lighting position according to the layout of the items, and the placement of items in large supermarkets, workshop production lines, and logistics warehouses often needs to be moved and adjusted. Therefore, only Power taking at a specific location makes it inconvenient to flexibly adjust the power take-off position of the lighting fixture.
  • the object of the present invention is to overcome the deficiencies of the prior art described above, and to provide an uninterrupted conductive structure, which aims to solve the problem that power can only be set at a fixed position, which is inconvenient for flexible power take-off.
  • the present invention is implemented as follows:
  • An uninterrupted conductive mechanism for a strip lamp comprising a support structure and a plurality of conductive structures, wherein the support structure includes a first support member, a second support member, and a locking fit for the first a supporting member and a locking device of the second supporting member, wherein the first supporting member and the second supporting member are each provided at least one, and the first supporting member and the second supporting member are alternately arranged in sequence Setting
  • the conductive structure includes an insulating fixing base connected to the first support member and/or the second support member, an insulating connecting seat movably connected to the insulating fixing base, and An electrical connection assembly between the insulating fixed base and the insulating connecting block, the electrical connecting component comprising a conductive strip fixed to the insulating fixed base and arranged along a moving path of the insulating connecting block, connected to the conductive a male connector at one end of the strip, a female connector connected to the other end of the conductive strip, and a female connector fixed to the insulating connector An electrical contact that is in electrical contact with the conductive strip is maintained as the insulated connector moves.
  • the electrical connection component includes an insulating fixed vertical strip fixed to the insulating fixed base and disposed along a moving path of the insulating connecting block, and the conductive strip is disposed on the insulating fixed vertical strip
  • the electrical contact member includes a contact portion disposed on a side of the insulating fixed vertical strip to which the conductive strip is fixed, and the contact portion has elasticity to recover and contacts the conductive strip under the action of restoring elasticity .
  • a side of the insulating fixed strip corresponding to the contact portion is provided with a fixing groove for placing the conductive strip.
  • the slot depth of the fixing slot is greater than the thickness of the conductive strip in the direction of the slot of the fixing slot
  • the contact portion passes through the notch of the fixing groove and is in contact with the conductive strip.
  • the insulating fixed strip is provided with a limiting portion on the side wall of the fixing groove for preventing the conductive strip from being detached from the fixing slot.
  • the electrical contact comprises a guiding portion connected to the free end of the contact portion and extending toward the insulating fixing base and inclined obliquely away from the insulating fixed vertical strip.
  • the insulating fixed strip is provided with a guiding slope that cooperates with the guiding portion at an end facing the insulating connecting seat.
  • the locking device includes a first locking fitting connected to the second supporting member and a second locking fitting hinged to the first supporting member, the first locking
  • the tight fitting member is provided with a card hole
  • the second locking fitting member comprises a hinge point rotating and pivoted into the card hole to lock and cooperate with the first support member and the second support member.
  • a hook a distance of the hook to the hinge point of the second locking fitting is matched with a spacing of the hole to the second locking fitting.
  • the locking device comprises an intermediate connecting piece, the intermediate connecting piece is connected to the first supporting piece, and the second locking fitting is hinged to the intermediate connecting piece.
  • the intermediate connecting member includes a connecting fixing portion connected to the first supporting member, the first supporting member is provided with the connecting fixing portion sliding in and restricting the connecting fixing portion a first limit slide that moves relative to the direction in which the profile extends.
  • the intermediate connecting member includes an extended mating segment disposed in the second supporting member, the second supporting member is provided to slide the inward engaging member and limit the extending mating segment a second limit slide that moves relative to the direction in which the profile extends.
  • the cross-sectional shape of the first limiting sliding cavity is the same as the cross-sectional shape of the second limiting sliding cavity, and the position of the first limiting sliding cavity and the second limiting sliding cavity The location corresponds to the setting.
  • the first locking fitting is integrally provided with the first supporting member, and the first locking fitting passes through the first profile.
  • the second locking fitting comprises a handle provided for a human hand to apply force to drive the second locking fitting to rotate about the hinge point.
  • the present invention also provides a strip lamp comprising the above described non-interrupting conductive mechanism.
  • the arrangement direction of the first support member and the second support member can be arbitrarily extended by the locking device, and the adjacent conductive structures are connected through the respective male connector and the female connector.
  • the plurality of conductive structures can be connected in an alternately arranged direction along the first support member and the second support member, and in the conductive structure, the electrical contacts remain in the process of moving the insulating joint relative to the insulating fixed base. Electrical contact with the conductive strip, the power take-off position of the functional device can be arranged along the support structure arrangement path without interruption, which is convenient for flexible power take-off, and is suitable for some occasions that need to take power at any position in a narrow space.
  • FIG. 1 is a partial perspective structural view of an uninterrupted conductive mechanism according to an embodiment of the present invention.
  • FIG. 2 is a schematic exploded view of a support structure in an uninterrupted conductive mechanism according to an embodiment of the present invention, wherein a partial cross-sectional view is performed on a part of the component;
  • FIG. 3 is a schematic structural view of a support structure to be connected in an uninterrupted conductive mechanism according to an embodiment of the present invention, wherein a partial cross-sectional view is performed on a part;
  • FIG. 4 is a schematic structural view of a connection structure of a support structure in an uninterrupted conductive mechanism according to an embodiment of the present invention; Wherein, partial sectioning is performed on some parts;
  • FIG. 5 is a schematic structural diagram of a connection state of a support structure in an uninterrupted conductive mechanism according to an embodiment of the present invention
  • FIG. 6 is a schematic perspective view showing a first support member of a support structure in an uninterrupted conductive mechanism according to an embodiment of the present invention
  • Figure 7 is a front elevational view of Figure 5;
  • FIG. 8 is a schematic structural view of a second locking fitting of a support structure in an uninterrupted conductive mechanism according to an embodiment of the present invention.
  • Figure 9 is a side view of Figure 7;
  • FIG. 10 is a schematic perspective view showing the intermediate structure of the support structure in the uninterrupted conductive mechanism according to the embodiment of the present invention.
  • FIG. 11 is a partial structural diagram of a conductive structure in an uninterrupted conductive mechanism according to an embodiment of the present invention in a state to be electrically connected;
  • FIG. 12 is a schematic structural view of an insulating fixed base of a conductive structure in an uninterrupted conductive mechanism according to an embodiment of the present invention
  • FIG. 13 is a schematic view showing the overall structure of a conductive structure in an uninterrupted conductive mechanism according to an embodiment of the present invention.
  • Figure 14 is a perspective view of Figure 13;
  • FIG. 15 is a perspective view of an insulating connection seat of a conductive structure in an uninterrupted conductive mechanism according to an embodiment of the present invention.
  • FIG. 16 is a schematic exploded view of FIG. 15.
  • first and second are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated.
  • features defining “first” and “second” may explicitly or implicitly include one or more of the features.
  • the meaning of “plurality” is two or more, unless specifically defined otherwise.
  • the terms “installation”, “connected”, “connected”, “fixed” and the like should be understood broadly, and may be, for example, a fixed connection or a Removable connection, or integrated; can be mechanical connection or electrical connection; it can be directly connected or indirectly connected through an intermediate medium, which can be the internal connection of two elements or the interaction of two elements.
  • the meaning of the above terms in the present invention can be understood by those skilled in the art on a case-by-case basis.
  • Embodiments of the present invention provide an uninterrupted conductive mechanism.
  • the uninterrupted conductive mechanism includes a support structure 100 and a conductive structure 200.
  • the support structure 100 includes a first support member 110, a second support member 120, and a locking device 130 for lockingly engaging the first support member 110 and the second support member 120, the first support member 110 and the first support member 110
  • the two support members 120 are each provided with at least one, and the first support member 110 and the second support member 120 are alternately disposed in sequence.
  • the conductive structure 200 includes an insulating fixed base connected to the first support 110 and/or the second support 120.
  • An electrical connection assembly 220 movably coupled to the insulating base 210 and an electrical connection assembly 230 disposed between the insulating base 207 and the insulating base 220.
  • the electrical connection assembly 230 includes a fixed base 210.
  • a conductive strip 231 disposed along the moving path of the insulating connecting seat 220, a male connector 250 connected to the end of the conductive strip 231, a female connector 260 connected to the other end of the conductive strip 231, and fixed to the insulating connecting seat 220 and connected with the insulating connecting seat
  • the electrical contact 232 is moved to maintain the conductive strip 231 in electrical contact.
  • the conductive strip 231 may be directly connected to the mains, or may be connected to other DC power sources, or directly connected to the ground, and the electrical contacts 232 are connected to the functional devices in the electrical device.
  • the arrangement direction of the first support member 110 and the second support member 120 may be arbitrarily extended by the locking device 130, and the adjacent conductive structures 200 pass through the respective male connectors 250 and the mother.
  • the connector 260 is connected such that the plurality of conductive structures 200 can be connected in an alternately arranged direction along the first support member 110 and the second support member 120, and in the conductive structure 200, the electrical contacts 232 are in the insulated connector 220.
  • the electrical insulation strip 231 remains electrically in contact with the conductive strip 231 during the movement of the insulating fixed base 210.
  • the power take-off position of the functional device can be arranged along the support structure 100 without interruption, which facilitates flexible power take-off, and is suitable for some needs in a narrow space. Use any position to take power.
  • the conductive strip 231 is made of copper or may be made of other conductive metal materials.
  • the electrical connection assembly 230 includes an insulating fixed vertical strip 240 fixed to the insulating fixed base 210 and disposed along the moving path of the insulating connecting seat 220.
  • the conductive strip 231 is disposed on the insulating fixed vertical strip 240.
  • the electrical contact 232 includes a contact portion 23 21 disposed on the side of the insulating fixed strip 240 to which the conductive strip 231 is fixed.
  • the contact portion 2321 has a return elasticity and is in contact with the conductive strip 231 under the effect of restoring elasticity.
  • the contact between the electrical contact 232 and the conductive strip 231 is achieved by the elasticity of the contact portion 2321, which causes the electrical contact 232 to move with the insulating connector 220, such as the electrical contact 232.
  • the enlargement of the gap between the conductive strip 231 and the conductive strip 231 causes a gap between the filled contact portion 2321 and the conductive strip 231 to prevent the electrical contact 232 from being disconnected from the conductive strip 231.
  • the contact portion 2321 has a recovery elasticity, and the contact portion 2321 can be further deformed, thereby avoiding electricity.
  • the contact 232 or the conductive strip 231 is damaged or plastically deformed.
  • a side of the insulating fixing strip 240 corresponding to the contact portion 2321 is provided with a fixing groove 2401 for placing the conductive strip 231. Based on this, after the conductive strip 231 is placed in the fixing slot 2401, it is fixed. The groove bottom of the groove 2401 and the groove walls on both sides form a limit in three directions on the conductive strip 231. After the contact portion 2321 is restrained in the fourth direction of the conductive strip 231, the conductive strip 231 can be restricted to In the fixing groove 2401, the conductive strip 231 is re-fixed without other auxiliary components, which is advantageous for simplifying the structure.
  • the groove depth of the fixing groove 2401 is larger than the thickness of the conductive strip 231 in the direction in which the groove of the fixing groove 240 1 is disposed, and the contact portion 2321 passes through the notch of the fixing groove 2401 until Contact with the conductive strip 231. Based on this, after the contact portion 2321 contacts the conductive strip 231, the contact portion 2321 and the groove wall of the fixing groove 2401 interfere in the direction of the opening of the fixing groove 2401, so that the groove wall of the fixing groove 2401 serves as the limiting conductive strip 231. The action of sliding along the slot of the fixing groove 2401.
  • the insulating fixing strips 240 are provided with stopper portions 241 for preventing the conductive strips 231 from being detached from the slits of the fixing grooves 2401 at the groove walls on both sides of the fixing groove 2401.
  • the conductive strip 231 can be directly restrained in the fixing groove 2401 by the limiting portion 241 without the auxiliary fixing of the contact portion 2321.
  • the insulating fixed stay 240 is integrally provided with the insulating fixing base 210.
  • molding together in the process of forming the insulating fixing base 210 is advantageous in improving the production efficiency and improving the joint strength between the insulating fixed strip 240 and the insulating fixed base 210.
  • the insulating fixing strip 240 and the insulating fixing base 210 may be separately disposed, and may be connected by a bolt or a snap structure, such as one of the insulating fixing strip 240 and the insulating fixing base 210. Damage can be replaced separately without an overall replacement.
  • the contact portion 2321 includes a contact portion 2321 extending toward the insulating fixing base 210 and fixed to the insulating fixing strip 240 with a conductive side bent until it contacts the conductive strip 231. Based on this, the contact portion 2321 has good recovery elasticity, and can effectively bring the contact end into contact with the conductive strip 231 by the self-recovery elasticity.
  • the electrical contact 232 includes a guiding portion that is connected to the free end of the contact portion 2321 and extends toward the insulating fixing base 210 and is disposed obliquely away from the insulating fixed vertical strip 240. 232 2.
  • the contact portion 232 1 and the insulating fixed vertical strip 240 may interfere, and based on this structure, the insulating connecting seat 220 adjacent to the insulated fixed strip 240 is insulated.
  • the limiting portion 241 firstly interferes with the bow
  • the 321 is electrically connected to the conductive strip 231 under the effect of restoring elasticity.
  • the electrical contact 232 is made of a metal dome, wherein the metal dome has a simple structure and can be easily produced by simple stamping and bending.
  • the insulating fixed vertical strip 240 is provided with a guiding slope 2402 that cooperates with the guiding portion 2322 at an end portion close to the insulating connecting seat 220. Based on this, by the cooperation of the guiding slope 2402 and the guiding portion 2322, according to the mechanics, some useless force is reduced, so that the force of the guiding slope 2402 to the guiding portion 2322 can be mostly used to make the guiding portion 2322 bring the contact portion 2321 to be elastic. deformation.
  • the electrical connection assembly 230 is provided with a plurality of groups, and any adjacent insulating fixed vertical strips 240 are arranged side by side, wherein at least one pair is adjacent and used for fixing The side faces of the respective conductive strips 23 1 face away from the provided insulating fixed strips 240.
  • the electrically conductive structure 200 is self-locking without the need for additional supports to ensure that the electrical connection assemblies 230 are electrically connected to one another.
  • the two sides of the insulating fixed strips 240 that are adjacent to each other and are fixed away from the corresponding conductive strips 231 are disposed at intervals, so that both sides of the insulating fixed solid are subjected to the elastic force of the respective contact portions 2321, and the contact portions on both sides are The elastic forces of 2321 are set toward each other and cancel each other out.
  • At least one pair of adjacent insulating strips 240 disposed adjacent to each other and spaced apart from each other for fixing the side faces of the respective conductive strips 231 are disposed.
  • the self-locking property of the conductive structure 200 is further increased without the need for other support members to ensure mutual electrical connection of the electrical connection assemblies 230.
  • the electrical contacts 232 are provided in plurality and arranged in an array. Specifically, the electrical contacts 232 are spaced apart in the moving direction of the insulating connecting block 220 or perpendicular to the moving connecting seat 220. Set to avoid contact between adjacent electrical contacts 232. Further, the insulating connecting seat 220 is provided with a limiting structure member 2201 for preventing the contact portion 2321 from being displaced along the moving direction of the insulating connecting seat 220. During the movement of the insulating connecting seat 220, the contact portion 2321 is displaced along the insulating connecting seat 220. Moved and causes contact of the connected contacts 2321.
  • the insulating connector 220 includes a connection base 221 and a connection cover 222.
  • the connection chamber 221 and the connection cover 222 are provided with a connection chamber corresponding to the position and quantity relationship of the electrical contacts 232, and electrical contact.
  • the member 232 is connected to the connection base 221 through the detachable support structure 100 in the connection chamber, wherein the electrical device is also connected to the electrical contact 232 in the connection chamber.
  • the moving path of the insulating joint 220 is a straight path. This is good for insulation and fixing
  • the structure of the vertical strip 240 and the conductive strip 231 can adopt a profile structure to improve production efficiency and simple manufacturing cost.
  • the locking device 130 includes a first locking fitting 13 1 coupled to the second support 120 and a second locking fitting 132 hinged to the first support 110.
  • the first locking fitting member 131 is provided with a latching hole 1311.
  • the second locking mating member 132 includes a hinge point as a rotating shaft and is inserted into the latching hole 1311 to lock and cooperate with the first supporting member 110 and the second supporting member 120.
  • the hook 1321, the distance from the hook point 1321 to the hinge point of the second locking fitting 132 matches the spacing of the card hole 1311 to the second locking fitting 132.
  • the first supporting member 110 is first abutted to the second supporting member 120, and then the second locking fitting member 132 is driven to use the hinge point as a rotating shaft.
  • the heart rotates, as shown in FIG. 4, until the hook 1321 on the second locking fitting 132 is inserted into the card hole 1311 of the first locking fitting 131, as shown in FIG. 5, through the hook 1321
  • the side of the second support member 120 and the hole wall of the card hole 1311 adjacent to the second support member 120 restrict the first support member 110 from being disengaged from the second support member 120, thereby realizing the first support member 110 and the second support member 120. connection.
  • the second locking fitting 132 is driven to rotate with the hinge point as the rotation axis, and the hook 1321 on the second locking fitting 132 is disengaged from the first locking fitting 131.
  • the card hole 1311 that is, the disengagement of the first support member 110 and the second support member 120 is realized.
  • the entire locking and disassembling only needs to drive the second locking fitting 132 to rotate the hinge point as a rotation axis, wherein the first locking fitting 131 rotates the second locking fitting 132.
  • the limitation of the second locking fitting 132 is less than the degree of rotation, that is, the second locking fitting 132 can realize the first supporting member 110 and the second supporting member 120 without rotating around the hinge point a plurality of times. The locking fit.
  • the locking device 130 includes an intermediate connecting member 133, the intermediate connecting member 133 is coupled to the first supporting member 110, and the second locking fitting member 132 is hinged to the intermediate connecting member 133.
  • the hinge structure that cooperates with the second locking fitting 132 can be disposed on the intermediate connecting member 133 without being disposed on the first supporting member 110, which is advantageous for simplifying the structure of the first supporting member 110, and is convenient for the first
  • the production of a support member 10 reduces manufacturing costs.
  • the intermediate connector 133 can be detachably coupled to the first support member 110 by a fastener, wherein the fastener can be a screw.
  • the intermediate connecting member 133 includes a connecting fixing portion 1331 connected to the first supporting member 110, and the first supporting member 110 is provided with the connecting fixing portion 1331 sliding in and restricting the connection.
  • Fixed section 1331 at The first limit sliding cavity 1101 is relatively perpendicular to the sliding direction. In this way, during the assembly process, the connecting fixed end is placed into the first limiting sliding cavity, and after reaching the predetermined position, the fixing is fixed by the fastener, wherein the first limiting sliding cavity 1101 is now connected to the fixed section 1331. Vertically to the direction in which the profile extends, it is only necessary to control the connection fixing section 1331 to reach a predetermined position in the extending direction.
  • the first support member 110 includes a first structural bottom plate 111 and two first outer side plates 112, and the two first outer side plates 112 are fixed to the same side of the first structural bottom plate 111.
  • the first side of the first outer side plate 112 is provided with a first sliding slot 1121.
  • the two first sliding slots 1121 jointly form a first limiting sliding cavity 1101. Based on this, under the premise of ensuring that the first support member 110 has better mechanical strength, the first support member 110 is simplified in structure, and can be made of a profile, and the profile is mainly formed by die stretching. Easy to manufacture.
  • the intermediate connecting member 133 includes an extended engaging portion 1332 disposed in the second supporting member 120.
  • the first supporting member 110 is provided with an extending fitting member for sliding in and restricting the extension.
  • the engaging section 1332 is in the second limit sliding cavity 1201 that is relatively moved perpendicular to the sliding direction. In this way, during the assembly process, the extended engagement section 1332 is placed into the second limit sliding cavity, and after reaching the predetermined position, the second locking engagement piece 132 is fixed, wherein the second limiting sliding cavity 1201 is now
  • the connecting fixing section 1331 is perpendicular to the extending direction of the profile, and it is only necessary to control the extending engaging section 1332 to reach a predetermined position in the extending direction.
  • the second support member 120 includes a second structural bottom plate and two second outer side plates, and the two second outer side plates are fixed to the same side of the second structural bottom plate, the second outer side.
  • the inner side of the plate is provided with a second sliding slot, and the two second sliding slots jointly form a second limiting sliding cavity 1201.
  • the second support member 120 is simplified in structure and can be made of a profile, and the profile is mainly formed by die stretching. Easy to manufacture.
  • the cross-sectional shape of the first limiting sliding cavity 1101 is the same as the cross-sectional shape of the second limiting sliding cavity 1201, and the position of the first limiting sliding cavity 1101 is corresponding to the position of the second limiting sliding cavity 1201. .
  • the first support member 110 and the second support member 120 can adopt the same profile structure, so that the first support member 110 and the second support member 120 can utilize the same set of production equipment, which is advantageous in reducing production cost.
  • connection fixing section 1332 is integrally provided with the connection fixing section 1331.
  • connection strength between the connection fixing section 1331 and the extension fitting section 1332 can be improved, and the extension fitting section 1332 can be formed together in the process of producing the connection fixing section 133 1 and the production efficiency of the intermediate connection member 133 can be improved.
  • the intermediate connecting member 133 may be a metal plate with a U-shaped or L-shaped cross section, and the first limiting sliding cavity 1101 limits the fixed connecting portion in at least two directions in a plane perpendicular to the direct sliding direction. Move, with this
  • the second limit slide chamber 1201 is also allowed to move in at least two directions in a plane perpendicular to the sliding direction to limit the extension of the mating section 1332.
  • the intermediate connecting member 133 is a metal plate having a U-shaped cross section.
  • the intermediate connector 133 includes a pair of support plates disposed on the extended mating segments 1332.
  • the second lock mating members 132 are disposed between the two support plates and are hinged to the two support plates by a rotating shaft. Based on this, the second locking fitting 132 is supported by the two supporting plates, which is advantageous for improving the stability of the hinge of the second locking fitting 132.
  • the two support plates are integrally disposed with the extended mating segments 1332.
  • the connection strength between the support plate and the extended mating section 1332 is improved, and in the production process of the extended mating section 1332, the support plate can be produced together, which is advantageous for improving the overall production efficiency of the support structure 100.
  • the support plate is integrally disposed with the extended mating section 1332 to improve the accurate positioning of the second locking mating member 132 on the intermediate connector 133.
  • the intermediate connecting member 133 includes a latching member for restricting the second locking mating member 132 from continuing to rotate after the hook 1321 is inserted into the latching hole 1311.
  • the card member is integrally provided with the support plate.
  • the first locking fitting 131 is integrally formed with the first supporting member 110, and the first locking fitting 131 is formed to extend toward the second supporting member 120 by the first supporting member 110. In this way, the connection strength between the first support member 110 and the first locking fitting member 131 is improved. Of course, during the production process of the first support member 110, the second locking fitting member 132 can be produced. It is advantageous to improve the overall production efficiency of the support structure 100.
  • the second locking fitting 132 includes a handle 1322 that is provided with a manual force to drive the second locking fitting 13 2 to rotate about the hinge point.
  • a handle 1322 that is provided with a manual force to drive the second locking fitting 13 2 to rotate about the hinge point.
  • the present invention also provides a strip lamp comprising an uninterrupted conductive mechanism.
  • the specific structure of the uninterrupted conductive mechanism refers to the above embodiment, since the strip lamp adopts all the technical solutions of all the above embodiments. Therefore, all the beneficial effects brought about by the technical solutions of the above embodiments are also not described herein.

Abstract

一种无间断导电机构以及条形灯。无间断导电机构包括支撑结构(100)以及多个导电结构(200),支撑结构(100)包括第一支撑件(110)、第二支撑件(120)以及用于锁紧配合第一支撑件(110)和第二支撑件(120)的锁紧装置(130),导电结构(200)包括绝缘固定基座(210)、绝缘连接座(220)以及电连接组件(230),电连接组件(230)包括导电条(231)、公连接器(250)、母连接器(260)以及电接触件(232)。通过锁紧装置(130)可以使第一支撑件(110)和第二支撑件(120)在依次交替的方向任意延长,相邻的导电结构(200)则通过各自的公连接器(250)和母连接器(260)进行连接,使得多个导电结构(200)可以沿第一支撑件(110)和第二支撑件(120)依次交替的布置方向无间断连接,在导电结构(200)中,电接触件(232)在绝缘连接座(220)相对绝缘固定基座(210)移动的过程中依然保持与导电条(231)电性接触,取电位置可无间断设置,便于灵活取电。

Description

说明书 发明名称:无间断导电机构以及条形灯 技术领域
[0001] 本发明属于条形灯领域, 尤其涉及一种无间断导电机构以及条形灯。
背景技术
[0002] 对于大型超市、 车间生产线、 物流仓库等狭长空间的条形灯, 通常是利用多个 依次连接的长条形的支撑件作为支撑结构, 在支撑件内幵设导线槽, 并将电线 布置到导线槽内, 再在固定的位置设置取电装置, 这造成用电吋, 只能在设有 取电装置的位置进行取电。 对于大型超市、 车间生产线、 物流仓库等狭长空间 , 往往需要根据物品的布局进行调整照明的位置, 且大型超市、 车间生产线、 物流仓库内的物品的摆放经常需要挪移和调整, 因此, 只能在特定位置进行取 电, 不便于灵活调整照明灯具的取电位置。
技术问题
[0003] 本发明的目的在于克服上述现有技术的不足, 提供了无间断导电结构, 其旨在 解决只能在固定的位置设置取电, 不便于灵活取电的问题。
问题的解决方案
技术解决方案
[0004] 本发明是这样实现的:
[0005] 一种无间断导电机构, 用于条形灯, 包括支撑结构以及多个导电结构, 其中, 所述支撑结构包括第一支撑件、 第二支撑件以及用于锁紧配合所述第一支撑件 和所述第二支撑件的锁紧装置, 所述第一支撑件和所述第二支撑件均至少设有 一个, 且所述第一支撑件和所述第二支撑件依次交替设置;
[0006] 所述导电结构包括连接于所述第一支撑件和 /或所述第二支撑件的绝缘固定基 座、 与所述绝缘固定基座可移动连接的绝缘连接座以及设于所述绝缘固定基座 和所述绝缘连接座之间的电连接组件, 所述电连接组件包括固定于所述绝缘固 定基座并沿所述绝缘连接座移动路径布置的导电条、 连接于所述导电条一端的 公连接器、 连接于所述导电条另一端的母连接器以及固定于所述绝缘连接座且 随所述绝缘连接座移动而保持与所述导电条电性接触的电接触件。
[0007] 可选地, 所述电连接组件包括固定于所述绝缘固定基座并沿所述绝缘连接座移 动路径布置的绝缘固定立条, 所述导电条设于所述绝缘固定立条的一侧, 所述 电接触件包括设于所述绝缘固定立条中固定有所述导电条一侧的接触部, 所述 接触部具有恢复弹性并在恢复弹性的作用下与所述导电条接触。
[0008] 可选地, 所述绝缘固定立条与所述接触部对应的一侧幵设有用于放置所述导电 条的固定槽。
[0009] 可选地, 所述固定槽的槽深大于所述导电条在所述固定槽槽口幵设方向的厚度
, 所述接触部经过所述固定槽的槽口并直至与所述导电条接触。
[0010] 可选地, 所述绝缘固定立条在所述固定槽的两侧槽壁设有用于防止所述导电条 从所述固定槽槽口脱离的限位部。
[0011] 可选地, 所述电接触件包括连接于所述接触部的自由端并朝所述绝缘固定基座 延伸且朝背离所述绝缘固定立条方向倾斜设置的引导部。
[0012] 可选地, 所述绝缘固定立条在朝向所述绝缘连接座的端部设有与所述引导部配 合的引导斜坡。
[0013] 可选地, 所述锁紧装置包括连接于所述第二支撑件的第一锁紧配合件以及铰接 于所述第一支撑件的第二锁紧配合件, 所述第一锁紧配合件设有卡孔, 所述第 二锁紧配合件包括以铰接点为旋转轴心旋转并置入所述卡孔以锁紧配合所述第 一支撑件和所述第二支撑件的卡钩, 所述卡钩到所述第二锁紧配合件铰接点的 距离与所述卡孔到所述第二锁紧配合件的间距相匹配。
[0014] 可选地, 所述锁紧装置包括中间连接件, 所述中间连接件连接于所述第一支撑 件, 所述第二锁紧配合件铰接于所述中间连接件。
[0015] 可选地, 所述中间连接件包括与所述第一支撑件连接的连接固定段, 所述第一 支撑件设有供所述连接固定段滑入并限制所述连接固定段在垂直于型材延伸方 向相对移动的第一限位滑腔。
[0016] 可选地, 所述中间连接件包括置于所述第二支撑件内的延伸配合段, 所述第二 支撑件设有供所述延伸配合件滑入并限制所述延伸配合段在垂直于型材延伸方 向相对移动的第二限位滑腔。 [0017] 可选地, 所述第一限位滑腔的横截面形状与所述第二限位滑腔的横截面形状相 同, 且第一限位滑腔的位置与第二限位滑腔的位置对应设置。
[0018] 可选地, 所述第一锁紧配合件与所述第一支撑件一体设置, 且所述第一锁紧配 合件通过所述第一型材。
[0019] 可选地, 所述第二锁紧配合件包括设有供人手施力以驱动所述第二锁紧配合件 绕铰接点转动的把手。
[0020] 本发明还提供一种条形灯, 包括上述的无间断导电机构。
发明的有益效果
有益效果
[0021] 基于本发明的结果, 通过锁紧装置可以使第一支撑件和第二支撑件依次交替的 布置方向任意延长, 相邻的导电结构则通过各自的公连接器和母连接器进行连 接, 使得多个导电结构可以沿第一支撑件和第二支撑件依次交替的布置方向无 间断连接, 而在导电结构中, 电接触件在绝缘连接座相对绝缘固定基座移动的 过程中依然保持与导电条电性接触, 功能器件的取电位置可沿支撑结构布置路 径无间断设置, 便于灵活取电, 适用于一些需要在狭长空间内任意一位置进行 取电的使用场合。
对附图的简要说明
附图说明
[0022] 为了更清楚地说明本发明实施例中的技术方案, 下面将对实施例中所需要使用 的附图作简单地介绍, 显而易见地, 下面描述中的附图仅仅是本发明的一些实 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。
[0023] 图 1是本发明实施例提供的无间断导电机构的部分立体结构示意图;
[0024] 图 2是本发明实施例提供的无间断导电机构中支撑结构的分解结构示意图, 其 中, 对部分零件进行局部剖视;
[0025] 图 3是本发明实施例提供的无间断导电机构中支撑结构的待连接状态结构示意 图, 其中, 对部分零件进行局部剖视;
[0026] 图 4是本发明实施例提供的无间断导电机构中支撑结构的连接中结构示意图, 其中, 对部分零件进行局部剖视;
[0027] 图 5是本发明实施例提供的无间断导电机构中支撑结构的连接状态结构示意图
, 其中, 对部分零件进行局部剖视;
[0028] 图 6是本发明实施例提供的无间断导电机构中支撑结构的第一支撑件的立体结 构示意图;
[0029] 图 7是图 5的正视图;
[0030] 图 8是本发明实施例提供的无间断导电机构中支撑结构的第二锁紧配合件的立 体结构示意图;
[0031] 图 9是图 7的侧视图;
[0032] 图 10是本发明实施例提供的无间断导电机构中支撑结构的中间连接件的立体结 构示意图。
[0033] 图 11是本发明实施例提供的无间断导电机构中导电结构在待电连接状态的部分 结构示意图;
[0034] 图 12是本发明实施例提供的无间断导电机构中导电结构的绝缘固定基座的结构 示意图;
[0035] 图 13是本发明实施例提供的无间断导电机构中导电结构在待电连接状态的整体 结构示意图;
[0036] 图 14是图 13的立体图;
[0037] 图 15是本发明实施例提供的无间断导电机构中导电结构的绝缘连接座的立体图
[0038] 图 16是图 15的分解结构示意图。
[0039] 附图标号说明:
[] [表 1]
标号 名称 标号 名称
100 支撑结构 200 导电结构
110 第一支撑件 1101 第一限位滑腔
111 第一结构底板
112 第一外侧板 1121 第一滑槽
120 第二支撑件 1201 第二限位滑腔
130 锁紧装置
131 第一锁紧配合件 1311 卡孔
132 第二锁紧配合件
1321 卡钩 1322 把手
133 中间连接件
1331 连接固定段 1332 延伸配合段
210 绝缘固定基座
220 绝缘连接座 2201 限位结构件
221 连接底座 222 连接盖
230 电连接组件
231 导电条
232 电接触件
2321 接触部 2322 引导部
240 绝缘固定立条
241 限位部
2401 固定槽 2402 引导斜坡
250 公连接器 260 母连接器 [0040]
本发明的实施方式
[0041] 下面详细描述本发明的实施例, 所述实施例的示例在附图中示出, 其中自始至 终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。 下 面通过参考附图描述的实施例是示例性的, 旨在用于解释本发明, 而不能理解 为对本发明的限制。
[0042] 在本发明的描述中, 需要理解的是, 术语"长度"、 "宽度"、 "上"、 "下"、 "前" 、 "后"、 "左"、 "右"、 "竖直"、 "水平"、 "顶"、 "底 ""内"、 "外"等指示的方位或 位置关系为基于附图所示的方位或位置关系, 仅是为了便于描述本发明和简化 描述, 而不是指示或暗示所指的装置或元件必须具有特定的方位、 以特定的方 位构造和操作, 因此不能理解为对本发明的限制。
[0043] 此外, 术语"第一"、 "第二 "仅用于描述目的, 而不能理解为指示或暗示相对重 要性或者隐含指明所指示的技术特征的数量。 由此, 限定有 "第一"、 "第二 "的特 征可以明示或者隐含地包括一个或者更多个该特征。 在本发明的描述中, "多个" 的含义是两个或两个以上, 除非另有明确具体的限定。
[0044] 在本发明中, 除非另有明确的规定和限定, 术语"安装"、 "相连"、 "连接"、 "固 定"等术语应做广义理解, 例如, 可以是固定连接, 也可以是可拆卸连接, 或成 一体; 可以是机械连接, 也可以是电连接; 可以是直接相连, 也可以通过中间 媒介间接相连, 可以是两个元件内部的连通或两个元件的相互作用关系。 对于 本领域的普通技术人员而言, 可以根据具体情况理解上述术语在本发明中的具 体含义。
[0045] 本发明实施例提供一种无间断导电机构。
[0046] 如图 1至图 16所示, 该无间断导电机构包括支撑结构 100和导电结构 200。
[0047] 其中, 支撑结构 100包括第一支撑件 110、 第二支撑件 120以及用于锁紧配合第 一支撑件 110和第二支撑件 120的锁紧装置 130, 第一支撑件 110和第二支撑件 120 均至少设有一个, 且第一支撑件 110和第二支撑件 120依次交替设置。
[0048] 而导电结构 200包括连接于第一支撑件 110和 /或第二支撑件 120的绝缘固定基座 210、 与绝缘固定基座 210可移动连接的绝缘连接座 220以及设于绝缘固定基座 21 0和绝缘连接座 220之间的电连接组件 230, 电连接组件 230包括固定于绝缘固定 基座 210并沿绝缘连接座 220移动路径布置的导电条 231、 连接于导电条 231—端 的公连接器 250、 连接于导电条 231另一端的母连接器 260以及固定于绝缘连接座 220且随绝缘连接座 220移动而保持导电条 231电性接触的电接触件 232。 在具体 使用中, 该导电条 231可以与市电直接连接, 也可以与其他直流电源连接, 或者 是直接接地, 而电接触件 232则与用电装置中的功能器件连接。
[0049] 在使用过程中, 通过锁紧装置 130可以使第一支撑件 110和第二支撑件 120依次 交替的布置方向任意延长, 相邻的导电结构 200则通过各自的公连接器 250和母 连接器 260进行连接, 使得多个导电结构 200可以沿第一支撑件 110和第二支撑件 120依次交替的布置方向无间断连接, 而在导电结构 200中, 电接触件 232在绝缘 连接座 220相对绝缘固定基座 210移动的过程中依然保持与导电条 231电性接触, 功能器件的取电位置可沿支撑结构 100布置路径无间断设置, 便于灵活取电, 适 用于一些需要在狭长空间内任意一位置进行取电的使用场合。
[0050] 上述中, 导电条 231由铜材制成, 也可以由其他导电金属材料制成。
[0051] 如图 11至图 16所示, 电连接组件 230包括固定于绝缘固定基座 210并沿绝缘连接 座 220移动路径布置的绝缘固定立条 240, 导电条 231设于绝缘固定立条 240的一 侧, 电接触件 232包括设于绝缘固定立条 240中固定有导电条 231—侧的接触部 23 21, 接触部 2321具有恢复弹性并在恢复弹性的作用下与导电条 231接触。 基于此 , 电接触件 232与导电条 231之间的接触是在接触部 2321恢复弹性的作用下实现 的, 这使得, 电接触件 232随绝缘连接座 220移动的过程中, 如电接触件 232与导 电条 231之间出现间距的扩大, 在接触部 2321恢复弹性的作用下, 将填补接触部 2321与导电条 231之间出现间距, 避免电接触件 232与导电条 231出现断幵连接的 情况, 而如出现接触部 2321与导电条 231之间出现间距的缩小, 则在接触部 2321 恢复弹性的作用下, 由于接触部 2321具有恢复弹性, 可使接触部 2321产生进一 步变形即可, 避免电接触件 232或导电条 231出现损坏或塑性形变。
[0052] 如图 11和图 12所示, 绝缘固定立条 240与接触部 2321对应的一侧幵设有用于放 置导电条 231的固定槽 2401。 基于此, 待导电条 231放置到固定槽 2401后, 固定 槽 2401的槽底以及两侧槽壁对导电条 231形成了三个方向的限位, 在加上接触部 2321对导电条 231第四个方向的限位后, 就可将导电条 231限制在固定槽 2401内 , 无需其他辅助部件对导电条 231进行再固定, 有利于简化结构。
[0053] 进一步地, 如图 11和图 12所示, 固定槽 2401的槽深大于导电条 231在固定槽 240 1槽口幵设方向的厚度, 接触部 2321经过固定槽 2401的槽口并直至与导电条 231 接触。 基于此, 待接触部 2321接触到导电条 231后, 接触部 2321与固定槽 2401的 槽壁在固定槽 2401的幵口方向上存在干涉, 这使得固定槽 2401的槽壁起到了限 制导电条 231沿固定槽 2401的槽口幵设方向滑动的作用。
[0054] 进一步地, 如图 11和图 12所示, 绝缘固定立条 240在固定槽 2401的两侧槽壁设 有用于防止导电条 231从固定槽 2401槽口脱离的限位部 241。 这样, 导电条 231可 以直接由限位部 241限制在固定槽 2401内, 而无需接触部 2321进行辅助固定。
[0055] 如图 11和图 12所示, 绝缘固定立条 240与绝缘固定基座 210—体设置。 这样, 在 绝缘固定基座 210成型的过程中一并成型, 既有利于提高生产效率, 也能够提高 绝缘固定立条 240与绝缘固定基座 210之间的连接强度。 当然, 在其他实施例中 , 绝缘固定立条 240与绝缘固定基座 210可以分体设置, 可以通过螺栓或卡扣结 构进行连接, 如绝缘固定立条 240和绝缘固定基座 210其中之一出现损坏可以单 独进行更换, 而不需要整体更换。
[0056] 如图 15和图 16所示, 接触部 2321包括朝绝缘固定基座 210延伸且向绝缘固定立 条 240中固定有导电一侧弯曲并直至抵触导电条 231的接触部 2321。 基于此, 接 触部 2321具有良好的恢复弹性, 能够自身恢复弹性的作用下有效地使接触端抵 触导电条 231。
[0057] 进一步地, 如图 15和图 16所示, 电接触件 232包括连接于接触部 2321的自由端 并朝绝缘固定基座 210延伸且朝背离绝缘固定立条 240方向倾斜设置的引导部 232 2。 结合前述所有结构, 在接触部 2321装配至与导电条 231的过程中, 接触部 232 1与绝缘固定立条 240会发生干涉, 而基于此结构, 绝缘固定立条 240中靠近的绝 缘连接座 220的限位部 241先与接触部 2321的弓 |导端抵触, 并通过弓 |导端迫接触 部 2321发生弹性形变, 并直至绝缘连接座 220的端部越过该限位部 241, 接触部 2 321在恢复弹性的作用下与导电条 231电性连接。 [0058] 在本发明实施例中, 电接触件 232由金属弹片制成, 其中, 金属弹片结构简单 , 通过简单冲压及弯折即可, 便于生产。
[0059] 如 11图至图 13所示, 绝缘固定立条 240在靠近绝缘连接座 220的端部设有与引导 部 2322配合的引导斜坡 2402。 基于此, 通过引导斜坡 2402与引导部 2322的配合 , 根据力学可知, 减少一些无用分力, 使引导斜坡 2402对引导部 2322的作用力 能够大部分用于使引导部 2322带动接触部 2321发生弹性形变。
[0060] 在本发明实施例中, 如同 13和图 14所示, 电连接组件 230设有多组, 任意相邻 的绝缘固定立条 240并排设置, 其中, 至少有一对相邻且用于固定相应导电条 23 1的侧面相背离设置的绝缘固定立条 240。 结合前述所有结构, 该导电结构 200即 具有自锁性, 而无需其他支撑件来确保电连接组件 230相互电连接。 其中, 两相 邻并用于固定相应导电条 231的侧面相背离设置的绝缘固定立条 240无间隔设置 , 这使得绝缘固定立体的两侧均受到各自接触部 2321的弹性作用力, 两侧接触 部 2321的弹性作用力相向设置, 并相互抵消。
[0061] 在本发明实施中, 如同 13和图 14所示, 至少有一对相邻且间隔设置并用于固定 相应导电条 231的侧面相向设置的绝缘固定立条 240。 同样地, 利用此结构, 进 一步地增加导电结构 200的自锁性, 而无需其他支撑件来确保电连接组件 230相 互电连接。
[0062] 如同 13和图 14所示, 电接触件 232设有多个, 且呈阵列设置, 具体地, 电接触 件 232在沿绝缘连接座 220移动方向或垂直于绝缘连接座 220移动方向间隔设置, 以避免相邻的电接触件 232发生接触。 进一步地, 绝缘连接座 220设有防止接触 部 2321沿绝缘连接座 220移动方向偏移的限位结构件 2201, 可在绝缘连接座 220 移动过程中, 接触部 2321沿绝缘连接座 220移动方向偏移, 并导致相连的接触部 2321发生接触。
[0063] 如图 16所示, 绝缘连接座 220包括连接底座 221和连接盖 222, 连接底座 221和连 接盖 222之间设有与电接触件 232位置和数量关系对应的连接腔室, 电接触件 232 在连接腔室内通过可拆卸支撑结构 100与连接底座 221实现连接, 其中, 用电器 件也是在连接腔室内与电接触件 232连接。
[0064] 如图 14所示, 绝缘连接座 220的移动路径为直线路径。 这样, 有利于绝缘固定 立条 240和导电条 231的结构, 可采用型材结构, 提高生产效率, 简单生产制造 成本。
[0065] 如图 2至图 9所示, 锁紧装置 130包括连接于第二支撑件 120的第一锁紧配合件 13 1以及铰接于第一支撑件 110的第二锁紧配合件 132, 第一锁紧配合件 131设有卡 孔 1311, 第二锁紧配合件 132包括以铰接点为旋转轴心旋转并置入卡孔 1311以锁 紧配合第一支撑件 110和第二支撑件 120的卡钩 1321, 卡钩 1321到第二锁紧配合 件 132铰接点的距离与卡孔 1311到第二锁紧配合件 132的间距相匹配。
[0066] 基于此结构, 在连接过程中, 如图 3所示, 先将第一支撑件 110抵接至第二支撑 件 120, 然后再驱动第二锁紧配合件 132以铰接点为旋转轴心转动, 如图 4所示, 直至第二锁紧配合件 132上的卡钩 1321置入到第一锁紧配合件 131上的卡孔 1311 , 如图 5所示, 通过卡钩 1321中朝向第二支撑件 120的侧面与卡孔 1311中靠近第 二支撑件 120的孔壁来限制第一支撑件 110脱离第二支撑件 120, 从而实现了第一 支撑件 110和第二支撑件 120的连接。
[0067] 而在拆接过程中, 驱动第二锁紧配合件 132以铰接点为旋转轴心转动, 并使第 二锁紧配合件 132上的卡钩 1321脱离第一锁紧配合件 131上的卡孔 1311, 即实现 了第一支撑件 110和第二支撑件 120的拆接。
[0068] 上述中, 整个连接和拆接只需驱动第二锁紧配合件 132以铰接点为旋转轴心转 动即可, 其中, 第一锁紧配合件 131对第二锁紧配合件 132转动的限制, 第二锁 紧配合件 132的转动角度均小于度, 也即是第二锁紧配合件 132不用绕铰接点转 动多次圈即可实现对第一支撑件 110和第二支撑件 120的锁紧配合。
[0069] 如图 2至图 5以及图 10所示, 锁紧装置 130包括中间连接件 133, 中间连接件 133 连接与第一支撑件 110, 第二锁紧配合件 132铰接于中间连接件 133。 基于此, 可 以将与第二锁紧配合件 132配合的铰接结构设置在中间连接件 133上, 而不用将 设置在第一支撑件 110上, 有利于简化第一支撑件 110的结构, 便于第一支撑件 1 10的生产制造, 降低生产成本。 具体地, 在本发明实施例中, 中间连接件 133可 通过紧固件可拆卸连接于第一支撑件 110, 其中, 紧固件可为螺钉。
[0070] 如图 2至图 5以及图 10所示, 中间连接件 133包括与第一支撑件 110连接的连接固 定段 1331, 第一支撑件 110设有供连接固定段 1331滑入并限制连接固定段 1331在 垂直于滑接方向相对移动的第一限位滑腔 1101。 这样, 在装配过程中, 将连接 固定端置入到第一限位滑动腔, 在到达预定位置后, 再通过紧固件进行固定, 其中, 第一限位滑腔 1101现在连接固定段 1331在垂直于型材延伸方向, 只需控 制连接固定段 1331在延伸方向到达预定位置即可。
[0071] 如图 6和图 7所示, 第一支撑件 110包括第一结构底板 111和两片第一外侧板 112 , 两片第一外侧板 112均固定于第一结构底板 111的同一侧, 第一外侧板 112的内 侧面均设有第一滑槽 1121, 两第一滑槽 1121共同形成第一限位滑腔 1101。 基于 此, 在保证第一支撑件 110具有较好的机械强度的前提下, 简化了第一支撑件 11 0结构简单, 且可采用型材制成, 而型材在制作主要是通过模具拉伸成型, 便于 生产制造。
[0072] 如图 2至图 5以及图 10所示, 中间连接件 133包括置于第二支撑件 120内的延伸配 合段 1332, 第一支撑件 110设有供延伸配合件滑入并限制延伸配合段 1332在垂直 于滑接方向相对移动的第二限位滑腔 1201。 这样, 在装配过程中, 将延伸配合 段 1332置入到第二限位滑动腔, 在到达预定位置后, 再通过第二锁紧配合件 132 进行固定, 其中, 第二限位滑腔 1201现在连接固定段 1331在垂直于型材延伸方 向, 只需控制延伸配合段 1332在延伸方向到达预定位置即可。
[0073] 参见图 6和图 7所示, 第二支撑件 120包括第二结构底板和两片第二外侧板, 两 片第二外侧板均固定与第二结构底板的同一侧, 第二外侧板的内侧面均设有第 二滑槽, 两第二滑槽共同形成第二限位滑腔 1201。 基于此, 在保证第二支撑件 1 20具有较好的机械强度的前提下, 简化了第二支撑件 120结构简单, 且可采用型 材制成, 而型材在制作主要是通过模具拉伸成型, 便于生产制造。
[0074] 第一限位滑腔 1101的横截面形状与第二限位滑腔 1201的横截面形状相同, 且第 一限位滑腔 1101的位置与第二限位滑腔 1201的位置对应设置。 基于此, 第一支 撑件 110和第二支撑件 120可以采用相同的型材结构, 这样, 第一支撑件 110和第 二支撑件 120可以利用同一套生产设备, 有利于降低生产成本。
[0075] 进一步地, 延伸配合段 1332与连接固定段 1331—体设置。 这样, 即可以提高连 接固定段 1331与延伸配合段 1332之间的连接强度, 也可以在生产连接固定段 133 1的过程中一并形成延伸配合段 1332, 并提高中间连接件 133的生产效率。 [0076] 中间连接件 133可以为横截面呈 U型或 L型设置的金属板, 让第一限位滑腔 1101 在垂于直滑接方向的平面内至少在两个方向上限制固定连接段移动, 与此同吋
, 也让第二限位滑腔 1201在垂直于滑接方向的平面内至少在两个方向上限制延 伸配合段 1332移动。 当然, 在本发明实施例中, 中间连接件 133为横截面呈 U型 设置的金属板。
[0077] 中间连接件 133包括一对设于延伸配合段 1332的支撑板, 第二锁紧配合件 132设 有两支撑板之间, 且通过旋转轴与两支撑板铰接。 基于此, 通过两个支撑板对 第二锁紧配合件 132进行支撑, 有利于提高第二锁紧配合件 132铰接的稳定性。
[0078] 进一步地, 两支撑板与延伸配合段 1332—体设置。 这样, 有利于提高支撑板与 延伸配合段 1332之间的连接强度, 且在延伸配合段 1332生产过程中, 可以一并 将支撑板生产, 有利于于提高支撑结构 100整体的生产效率。 此外, 支撑板与延 伸配合段 1332—体设置, 能够提高第二锁紧配合件 132在中间连接件 133上准确 定位。
[0079] 进一步地, 中间连接件 133包括用于在卡钩 1321置入卡孔 1311后限制第二锁紧 配合件 132继续转动的卡位件。 该卡位件与支撑板一体设置。
[0080] 第一锁紧配合件 131与第一支撑件 110—体设置, 且第一锁紧配合件 131通过第 一支撑件 110朝第二支撑件 120延伸形成。 这样, 有利于提高第一支撑件 110与第 一锁紧配合件 131之间的连接强度, 当然, 在第一支撑件 110生产过程中, 可以 一并将第二锁紧配合件 132生产, 有利于于提高支撑结构 100整体的生产效率。
[0081] 如图 8所示, 第二锁紧配合件 132包括设有供人手施力以驱动第二锁紧配合件 13 2绕铰接点转动的把手 1322。 这样, 便于使用者通过该把手 1322之间驱动第二锁 紧配合件 132绕铰接点转动。
[0082] 本发明还提出一种条形灯, 该条形灯包括无间断导电机构, 该无间断导电机构 的具体结构参照上述实施例, 由于本条形灯采用了上述所有实施例的全部技术 方案, 因此同样具有上述实施例的技术方案所带来的所有有益效果, 在此不再 一一赘述。
[0083] 以上仅为本发明的较佳实施例而已, 并不用以限制本发明, 凡在本发明的精神 和原则之内所作的任何修改、 等同替换或改进等, 均应包含在本发明的保护范
96Z.Z.80/9T0ZN3/X3d 6C60TZ/Z.10Z OAV
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Claims

权利要求书
[权利要求 1] 一种无间断导电机构, 用于条形灯, 其特征在于, 包括支撑结构以及 多个导电结构, 其中, 所述支撑结构包括第一支撑件、 第二支撑件以 及用于锁紧配合所述第一支撑件和所述第二支撑件的锁紧装置, 所述 第一支撑件和所述第二支撑件均至少设有一个, 且所述第一支撑件和 所述第二支撑件依次交替设置;
所述导电结构包括连接于所述第一支撑件和 /或所述第二支撑件的绝 缘固定基座、 与所述绝缘固定基座可移动连接的绝缘连接座以及设于 所述绝缘固定基座和所述绝缘连接座之间的电连接组件, 所述电连接 组件包括固定于所述绝缘固定基座并沿所述绝缘连接座移动路径布置 的导电条、 连接于所述导电条一端的公连接器、 连接于所述导电条另 一端的母连接器以及固定于所述绝缘连接座且随所述绝缘连接座移动 而保持与所述导电条电性接触的电接触件。
[权利要求 2] 如权利要求 1所述的无间断导电机构, 其特征在于, 所述电连接组件 包括固定于所述绝缘固定基座并沿所述绝缘连接座移动路径布置的绝 缘固定立条, 所述导电条设于所述绝缘固定立条的一侧, 所述电接触 件包括设于所述绝缘固定立条中固定有所述导电条一侧的接触部, 所 述接触部具有恢复弹性并在恢复弹性的作用下与所述导电条接触。
[权利要求 3] 如权利要求 2所述的无间断导电机构, 其特征在于, 所述绝缘固定立 条与所述接触部对应的一侧幵设有用于放置所述导电条的固定槽。
[权利要求 4] 如权利要求 3所述的无间断导电机构, 其特征在于, 所述固定槽的槽 深大于所述导电条在所述固定槽槽口幵设方向的厚度, 所述接触部经 过所述固定槽的槽口并直至与所述导电条接触。
[权利要求 5] 如权利要求 4所述的无间断导电机构, 其特征在于, 所述绝缘固定立 条在所述固定槽的两侧槽壁设有用于防止所述导电条从所述固定槽槽 口脱离的限位部。
[权利要求 6] 如权利要求 1所述的无间断导电机构, 其特征在于, 所述锁紧装置包 括连接于所述第二支撑件的第一锁紧配合件以及铰接于所述第一支撑 件的第二锁紧配合件, 所述第一锁紧配合件设有卡孔, 所述第二锁紧 配合件包括以铰接点为旋转轴心旋转并置入所述卡孔以锁紧配合所述 第一支撑件和所述第二支撑件的卡钩, 所述卡钩到所述第二锁紧配合 件铰接点的距离与所述卡孔到所述第二锁紧配合件的间距相匹配。
[权利要求 7] 如权利要求 6所述的无间断导电机构, 其特征在于, 所述锁紧装置包 括中间连接件, 所述中间连接件连接于所述第一支撑件, 所述第二锁 紧配合件铰接于所述中间连接件。
[权利要求 8] 如权利要求 7所述的无间断导电机构, 其特征在于, 所述中间连接件 包括与所述第一支撑件连接的连接固定段, 所述第一支撑件设有供所 述连接固定段滑入并限制所述连接固定段在垂直于型材延伸方向相对 移动的第一限位滑腔。
[权利要求 9] 如权利要求 8所述的无间断导电机构, 其特征在于, 所述中间连接件 包括置于所述第二支撑件内的延伸配合段, 所述第二支撑件设有供所 述延伸配合件滑入并限制所述延伸配合段在垂直于型材延伸方向相对 移动的第二限位滑腔。
[权利要求 10] 一种条形灯, 其特征在于, 包括如权利要求 1至 9中任意一项所述的无 间断导电机构。
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