WO2021063009A1 - 工作灯、可折叠灯及其组装方法和工作方法 - Google Patents

工作灯、可折叠灯及其组装方法和工作方法 Download PDF

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Publication number
WO2021063009A1
WO2021063009A1 PCT/CN2020/093758 CN2020093758W WO2021063009A1 WO 2021063009 A1 WO2021063009 A1 WO 2021063009A1 CN 2020093758 W CN2020093758 W CN 2020093758W WO 2021063009 A1 WO2021063009 A1 WO 2021063009A1
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WIPO (PCT)
Prior art keywords
light
power supply
emitting
emitting part
housing
Prior art date
Application number
PCT/CN2020/093758
Other languages
English (en)
French (fr)
Inventor
鲍永
Original Assignee
余姚煜昌电器有限公司
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
Priority claimed from CN201910944328.1A external-priority patent/CN112577023A/zh
Priority claimed from CN201921667537.8U external-priority patent/CN211925480U/zh
Priority claimed from CN201921667539.7U external-priority patent/CN211551533U/zh
Application filed by 余姚煜昌电器有限公司 filed Critical 余姚煜昌电器有限公司
Publication of WO2021063009A1 publication Critical patent/WO2021063009A1/zh

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Classifications

    • 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
    • F21V21/26Pivoted arms

Definitions

  • the present invention relates to the field of lighting, in particular to work lights, foldable lights, assembling methods and working methods thereof.
  • Lamps are common lighting tools in daily life. Work lamps are a type of lamp. The difference from daily use lamps is that work lamps can provide higher lumens to meet the needs of various working environments.
  • Work lights can be used in multiple scenarios, such as vehicle maintenance, or outdoor lighting.
  • the folding lamp is a kind of work lamp.
  • the folding lamp includes a handle and a light-emitting part, wherein the angle between the light-emitting part and the handle can be changed, that is, the light-emitting part can be folded relative to the handle.
  • the handle is usually used to place the battery to provide power. This also means that electrical energy needs to be transferred from the handle position to the light-emitting part position.
  • the lightweight design of folding lights will be challenged.
  • the rotating shaft is designed at the connection position of the handle and the light-emitting part so that the angle between the handle and the light-emitting part can be changed, but the connection position of the handle and the light-emitting part still needs to be provided.
  • the wiring from the handle to the light-emitting part, so the connection position of the handle and the light-emitting part must be designed to be larger to leave enough space.
  • folding lights may need to provide multiple operating modes, which increases the number of light sources that need to be configured at the position of the light-emitting part, and also increases the number of wires connecting the position of the handle and the light-emitting part. Increasing, this is not conducive to the miniaturized design of the entire folding lamp.
  • An advantage of the present invention is to provide a work lamp, a foldable lamp, and an assembly method and working method thereof, wherein the foldable lamp can provide a higher lumen while maintaining a small size.
  • Another advantage of the present invention is to provide a working lamp, a foldable lamp, and an assembly method and working method thereof, wherein the foldable lamp can provide multiple working modes while being small in size.
  • Another advantage of the present invention is to provide a working lamp, a foldable lamp, and an assembly method and working method thereof, wherein the foldable lamp can provide a plurality of different light sources while maintaining a small size to meet more usage requirements.
  • Another advantage of the present invention is to provide a working lamp, a foldable lamp, and an assembly method and working method thereof, wherein the foldable lamp includes a power supply part and a light emitting part, wherein the light emitting part can be rotated toward the power supply part , So that the foldable lamp is folded.
  • Another advantage of the present invention is to provide a work lamp, a foldable lamp, and an assembly method and working method thereof, wherein the wire of the foldable lamp can increase the size of the connection between the power supply part and the light-emitting part. Under the premise, it passes through the connection between the power supply part and the light-emitting part and does not affect the relative rotation of the power supply part and the light-emitting part.
  • the present invention provides a foldable lamp, which includes:
  • a connecting portion wherein the connecting portion includes a connecting head, a connecting seat, and a rotating shaft, wherein the connecting head and the connecting seat are respectively located in the power supply part and the light emitting part, and the connecting head passes through the
  • the rotation shaft is rotatably connected to the connecting seat, so that the light emitting unit is rotatably connected to the power supply part about the rotation shaft to be folded toward the power supply part, wherein the rotation shaft is set eccentrically Pass through the connecting head and the connecting seat to leave a space for the wire to pass through the connecting part.
  • the connector includes a first accommodating cavity
  • the connecting seat includes a second accommodating cavity
  • the first accommodating cavity communicates with the second accommodating cavity and the first accommodating cavity
  • the central axis of the accommodating cavity coincides with the central axis of the second accommodating cavity
  • the rotating shaft is eccentrically passed through the first accommodating cavity and the second accommodating cavity
  • the wire is in the second accommodating cavity It bypasses the rotating shaft and then extends toward the first accommodating cavity.
  • the wire extends outside the rotating shaft, and when the light-emitting part is rotated toward the power supply part, the wire can be stretched.
  • the number of the connecting seats is two, and the connecting head is located between the two connecting seats.
  • the distance between the rotating shaft and the inner wall of the connecting head is not less than 5 mm.
  • the foldable lamp further includes a light-emitting portion mounting housing, wherein the light-emitting portion includes a light-emitting piece, wherein the light-emitting piece is mounted on the light-emitting portion mounting housing and is located at The light-emitting part is installed on the bottom side of the housing.
  • the light-emitting part further includes another light-emitting part, wherein the light-emitting part is mounted on the light-emitting part mounting housing and is located on a top surface of the light-emitting part mounting housing. side.
  • the light-emitting part further includes another light-emitting part, wherein the light-emitting part is mounted on the light-emitting part mounting housing and is located at a free end of the light-emitting part mounting housing unit.
  • the light-emitting portion mounting housing has a light-emitting portion accommodating groove, wherein the light-emitting portion is slidable along the light-emitting portion accommodating groove to be detachably accommodated in the light-emitting portion accommodating groove .
  • the foldable lamp further includes a light-emitting portion mounting housing, and the light-emitting portion mounting housing has a light-emitting portion accommodating groove, an upper light-transmitting window and a lower light-transmitting window, wherein The upper light-transmitting window and the lower light-transmitting window are respectively located on both sides of the light-emitting portion accommodating groove and are respectively connected to the light-emitting portion accommodating cavity, the light-emitting portion includes a double-sided COB, and the double-sided COB is Are accommodated in the light-emitting part accommodating cavity to respectively radiate light outward through the upper light-transmitting window and the lower light-transmitting window.
  • the thickness of the light-emitting part receiving groove is not less than 1.8 mm.
  • the foldable lamp further includes a power supply mounting housing, wherein the power supply mounting housing has a power supply mounting cavity, wherein the power supply is accommodated in the power supply part In the installation cavity, the connection base is connected to the power supply installation housing.
  • the foldable lamp further includes a magnetic base, the magnetic base is located on the bottom side of the power supply part mounting housing, wherein the magnetic base includes at least a pair of polarities The opposite magnetic attraction element and at least one magnetic enhancement element, wherein the magnetic enhancement element is located inside the magnetic attraction element.
  • the magnetic reinforcement member is an iron sheet
  • the magnetic attraction member is a magnet
  • the magnetic base includes a magnetic base housing, wherein the magnetic member is fixed to the magnetic base housing by means of the magnetic reinforcement member.
  • the foldable lamp further includes a light-emitting part mounting housing, a power supply part mounting housing, a light-emitting part connection housing, and a power supply part connection housing, wherein the light-emitting part is connected to The housing is connected to the connector and the light-emitting part mounting housing, the power supply part connecting housing is connected to the connecting seat and the power supply part connecting housing, wherein the light-emitting part mounting housing has a light-emitting part mounting The light-emitting part is installed in the light-emitting part installation groove, the power supply part mounting housing has a power supply part installation cavity, and the power supply part is installed in the power supply part installation cavity.
  • the present invention provides a work light including:
  • a handle wherein the light stick is rotatably mounted on the handle so as to be folded toward the handle, and the light-emitting area of the light stick is located in the length direction of the light stick and faces the handle.
  • the light-emitting area of the light stick is located in the length direction of the light stick and faces away from the handle.
  • the light-emitting area of the light stick is located at a free end of the light stick.
  • the light-emitting area of the light stick is located at a free end of the light stick.
  • the work light further includes at least one wire, wherein the light stick includes a light-emitting portion, and the handle includes a power supply portion, wherein the light-emitting portion can be conducted through the wire
  • the ground is connected to the power supply part.
  • the work light further includes a connecting head, a connecting seat, and a rotating shaft, wherein the connecting head is connected to the light-emitting part, the connecting seat is connected to the power supply part, and the The connecting head and the connecting seat are rotatably connected to each other through the rotating shaft, so that the light-emitting part and the power supply part are rotatably connected to each other.
  • the rotating shaft is arranged to eccentrically pass through the connecting head and the connecting seat to leave a space for the wire to pass through the connecting part.
  • the connector includes a first accommodating cavity
  • the connecting seat includes a second accommodating cavity
  • the first accommodating cavity communicates with the second accommodating cavity and the first accommodating cavity
  • the central axis of the accommodating cavity coincides with the central axis of the second accommodating cavity
  • the rotating shaft is eccentrically passed through the first accommodating cavity and the second accommodating cavity
  • the wire is in the second accommodating cavity It bypasses the rotating shaft and then extends toward the first accommodating cavity.
  • the wire extends outside the rotating shaft, and when the light-emitting part is rotated toward the power supply part, the wire can be stretched.
  • the number of the connecting seats is two, and the connecting head is located between the two connecting seats.
  • the distance from the rotating shaft to the connecting head is not less than 5 mm.
  • the work light further includes a light-emitting portion mounting housing, wherein the light-emitting portion includes a light-emitting piece, wherein the light-emitting piece is mounted on the light-emitting portion mounting housing and is located in the light-emitting portion mounting housing.
  • the light emitting part is installed on the bottom side of the housing.
  • the work lamp further includes a light-emitting portion mounting housing and the light-emitting portion mounting housing has a light-emitting portion accommodating groove, an upper light-transmitting window and a lower light-transmitting window, wherein the The upper light-transmitting window and the lower light-transmitting window are respectively located on both sides of the light-emitting portion accommodating groove and respectively communicate with the light-emitting portion accommodating cavity, the light-emitting portion includes a double-sided COB, and the double-sided COB is accommodated The accommodating cavity of the light-emitting part radiates light outward through the upper light-transmitting window and the lower light-transmitting window respectively.
  • the thickness of the light-emitting part receiving groove is not less than 1.8 mm.
  • the work light further includes a power supply mounting housing, wherein the power supply mounting housing has a power supply mounting cavity, and the power supply is accommodated in the power supply mounting cavity. Cavity, the connecting seat is connected to the power supply part mounting housing.
  • the work lamp further includes a magnetic base, the magnetic base is located on the bottom side of the power supply part mounting housing, wherein the magnetic base includes at least a pair of opposite polarities The magnetic attraction member and at least one magnetic enhancement member, wherein the magnetic enhancement member is located inside the magnetic attraction member.
  • the magnetic reinforcement member is an iron sheet
  • the magnetic attraction member is a magnet
  • the magnetic base includes a magnetic base housing, wherein the magnetic member is fixed to the magnetic base housing by means of the magnetic reinforcement member.
  • the work light further includes a light-emitting part mounting housing, a power supply part mounting housing, a light-emitting part connection housing, and a power supply part connection housing, wherein the light-emitting part connection housing
  • the body is connected to the connector and the light-emitting part mounting housing
  • the power supply part connecting housing is connected to the connecting seat and the power supply part connecting housing
  • the light-emitting part mounting housing has a light-emitting part mounting groove
  • the light-emitting part is installed in the light-emitting part installation groove
  • the power supply part mounting housing has a power supply part installation cavity
  • the power supply part is installed in the power supply part installation cavity.
  • the work light further includes a switch, wherein the light-emitting part is controllably connected to the switch.
  • the present invention provides a method for assembling a foldable lamp, which includes the following steps:
  • a light-emitting part is rotatably mounted on a power supply part through a rotating shaft of a connecting part;
  • the wire bypasses the rotating shaft of a connecting seat and a connecting head eccentrically arranged to connect the light-emitting part and the power supply part.
  • the wire extends from the power supply part to the first accommodating cavity of the connecting part and then passes through the outside of the rotating shaft to be wound to the second accommodating part of the connecting part. Cavity, wherein the rotating shaft eccentrically passes through the first accommodating cavity and the second accommodating cavity.
  • the present invention provides a working method of a foldable lamp, which includes the following steps:
  • the wire bypasses the rotating shaft of a connecting seat and a connecting head eccentrically arranged to connect a light-emitting part and a power supply part.
  • the working method further includes the following steps:
  • Different light-emitting regions of the light-emitting part emit light.
  • Fig. 1 is a schematic diagram of a foldable lamp according to a preferred embodiment of the present invention.
  • Fig. 2 is a disassembled schematic diagram of the foldable lamp according to the above-mentioned preferred embodiment of the present invention.
  • Fig. 3 is a schematic diagram of a light-emitting unit of the foldable lamp according to the above-mentioned preferred embodiment of the present invention.
  • Fig. 4 is a schematic cross-sectional view based on the position of the A-A section line of the foldable lamp in Fig. 2.
  • Fig. 5 is a schematic diagram of a wire at a position of a connecting portion of the foldable lamp according to the above-mentioned preferred embodiment of the present invention.
  • FIG. 6 is a schematic cross-sectional view of a magnetic holder of the foldable lamp according to the above-mentioned preferred embodiment of the present invention.
  • Fig. 7 is a schematic diagram of the application of the foldable lamp according to the above-mentioned preferred embodiment of the present invention.
  • Fig. 8 is a schematic diagram of another application of the foldable lamp according to the above-mentioned preferred embodiment of the present invention.
  • the term “a” should be understood as “at least one” or “one or more”, that is, in one embodiment, the number of an element may be one, and in another embodiment, the number of the element The number can be more than one, and the term “one” cannot be understood as a restriction on the number.
  • FIG. 1 to FIG. 8 a foldable lamp 1 according to a preferred embodiment of the present invention is illustrated.
  • the foldable lamp 1 can be folded to facilitate storage, and its light direction can be adjusted to meet different usage requirements.
  • the foldable can be designed with a smaller size and can provide a higher lumen.
  • the foldable lamp 1 includes a light-emitting unit 10 and a power supply unit 20, wherein the light-emitting unit 10 is rotatably connected to the power supply unit 20 relative to the power supply unit 20.
  • the unit 10 rotates toward the power supply unit 20, and the foldable lamp 1 can be folded.
  • the power supply unit 20 includes a power supply part 21, the light-emitting unit 10 includes a light-emitting part 11, wherein the power-supply part 21 is used for supplying power, the light-emitting part 11 is used for light-emitting, and the light-emitting part 11 can be opposed to
  • the power supply part 21 is rotatably connected to the power supply part 21, and the power supply part 21 is connected to the light emitting part 11 with power supply.
  • the angle between the light-emitting part 11 and the power supply part 21 can be freely adjusted based on user requirements.
  • the light-emitting part 11 may be rotated to be on the same line as the power supply part 21, or the light-emitting part 11 may be rotated to an included angle with the power supply part 21 at a predetermined other angle, for example, Acute angle.
  • the foldable lamp 1 has a folded state and an opened state.
  • the light-emitting part 11 In the folded state, the light-emitting part 11 is rotated to be close to the power supply part 21.
  • the light-emitting part 11 and the power supply part 21 may be parallel or approximately parallel to reduce the length of the foldable lamp 1.
  • the light-emitting part 11 In the open state, the light-emitting part 11 can be rotated by a certain angle relative to the power supply part 21.
  • the foldable lamp 1 includes a connecting part 30, wherein the connecting part 30 is connected to the power supply part 21 and the light-emitting part 11.
  • the connection part 30 may be independent of the power supply part 21 and the light-emitting part 11, or the power supply part 21 and the light-emitting part 11 may form at least part of the connection part 30 respectively.
  • the connecting portion 30 includes a connecting head 31, at least one connecting seat 32, and a rotating shaft 33, wherein the connecting head 31 and the connecting seat 32 are respectively located in the power supply part 21 and the light emitting part 11, wherein the The connecting head 31 and the connecting seat 32 are rotatably connected to each other through the rotating shaft 33.
  • the power supply part 21 and the light-emitting part 11 are rotatably connected to each other through the rotational connection of the connector 31 and the connector base 32.
  • the connecting head 31 may be located in the power supply part 21, and the connecting seat 32 may be located in the light emitting part 11. It is also possible that the connecting head 31 may be located at the light-emitting part 11 and the connecting seat 32 may be located at the power supply part 21. In this embodiment, the connecting head 31 is located at the light-emitting part 11 and the connecting seat 32 is located at the power supply part 21. It is worth noting that the connecting head 31 may be disposed on the light-emitting part 11, or the light-emitting part 11 may form the connecting head 31. Similarly, the connection base 32 may be provided on the power supply part 21, or the power supply part 21 may form the connection head 31.
  • the foldable lamp 1 further includes at least one wire 40, wherein the wire 40 transfers the energy from the power supply part 21 to the light-emitting part 11.
  • the light-emitting part 11 is connected to the power supply part 21 so that the wire 40 can transmit electric energy inside the light-emitting part 11 and the power supply part 21.
  • the wire 40 extends from the power supply part 21 through the connection part 30 to the light-emitting part 11.
  • the connecting head 31 has a first accommodating cavity 310, wherein the connecting seat 32 has a second accommodating cavity 320, and the connecting head 31 is connected to the connecting seat 32.
  • the first accommodating cavity 310 is connected to the second accommodating cavity 320.
  • the rotating shaft 33 passes through the first accommodating cavity 310 and the second accommodating cavity 320, and the wire 40 also passes through the first accommodating cavity 310 and the second accommodating cavity 320. If the rotating shaft 33 extends through the first accommodating cavity 310 and the second accommodating cavity 320 in a transverse direction, the wire 40 passes through the first accommodating cavity 310 and the second accommodating cavity 310 and the second accommodating cavity in a longitudinal direction. There are two accommodating cavities 320, and when the light emitting part 11 rotates around the rotating shaft 33 relative to the power supply part 21, it will not affect the wire 40.
  • the foldable lamp 1 has a rotation axis, wherein the rotation axis passes through the connecting head 31 and the connecting seat 32.
  • the connecting head 31 and the connecting seat 32 can respectively rotate around the rotation axis.
  • the rotation axis passes through the rotation shaft 33.
  • the connecting head 31 and the connecting seat 32 respectively have a central axis.
  • the central axis passes through the connecting head 31 or the connecting seat 32 from left to right or right to left.
  • the central axis passes through the first accommodating cavity 310 and the second accommodating cavity 320, respectively.
  • Part of the space of the first accommodating cavity 310 and the second accommodating cavity 320 is respectively occupied by the rotating shaft 33 passing through from left to right or from right to left.
  • the rotating shaft 33 is set to be eccentric to leave enough space for the wire 40 to pass, so that the wire 40 can not be rotated while passing through the connecting portion 30.
  • the rotating shaft 33 is affected.
  • the connector 31 includes a connector housing 311, wherein the connector housing 311 is ring-shaped and surrounds the first accommodating cavity 310.
  • the connecting seat 32 includes a connecting seat side shell 321 and a connecting seat top shell 322, wherein the connecting seat side shell 321 is set in a ring shape, and the connecting seat top shell 322 is set in a circular shape.
  • the connecting seat side shell 321 extends from the peripheral position of the connecting seat top shell 322 toward one side.
  • the connecting seat side shell 321 and the connecting seat top shell 322 surround the second receiving cavity 320.
  • the connecting seat 32 and the connecting head 31 are rotatably connected to each other through the rotating shaft 33.
  • the connector housing 311 is connected to the connector side shell 321, and the first accommodating cavity 310 is aligned with the second accommodating cavity 320.
  • the connector housing 311 may form an annular groove
  • the connecting seat side shell 321 may form an annular protrusion, so that when the connector 31 is connected to the connecting seat 32 The ring-shaped groove is engaged with the ring-shaped protrusion to facilitate the sealing performance of the connection between the connecting head 31 and the connecting seat 32.
  • the connecting head 31 and the connecting seat 32 are aligned with each other. Specifically, the central axis of the connecting head 31 and the central axis of the connecting seat 32 coincide.
  • the rotating shaft 33 Since the rotating shaft 33 is eccentrically arranged, the rotating shaft 33 does not coincide with the central axis of the connecting head 31 and the connecting shaft.
  • the rotating shaft 33 is set eccentrically toward the direction where the power supply part 21 is located, the connection seat 32 is located at the power supply part 21, and the connector 31 is located at the light-emitting part 11.
  • the wire 40 from the power supply part 21 extends to the second accommodating cavity 320 of the connecting seat 32, and then bypasses the rotating shaft 33 and extends toward the first accommodating cavity 310 of the connector 31 , And then extend to the light-emitting part 11 to supply power. In this process, because the eccentric rotating shaft 33 leaves more space for the wire 40, the risk of the wire 40 being wound on the rotating shaft 33 is reduced.
  • the rotatable range of the light-emitting part 11 of the foldable lamp 1 is set to be within a certain angle, for example, no more than 180 degrees. This means that if the position of the power supply unit 21 is taken as the dividing line, the light-emitting unit 11 usually moves on one side of the power supply unit 21.
  • the wire 40 is arranged on the other side of the dividing line with the position of the power supply part 21 as the dividing line.
  • the connecting portion 30 includes a light-emitting portion connecting housing 34 and a power-supply connecting housing 35, wherein the light-emitting portion connecting housing 34 connects the light-emitting portion 11 and the connector 31, the The power supply connection housing 35 connects the power supply 21 and the connection base 32.
  • the light-emitting portion connecting housing 34 has a first accommodating space 340, the connector 31 is disposed in the light-emitting portion connecting housing 34, and the light-emitting portion is connected to the first housing space 340 of the housing 34
  • the first accommodating cavity 310 communicates with the connector 31.
  • the light-emitting part connecting housing 34 may also form the connecting head 31 integrally.
  • the power supply part connection housing 35 has a second accommodating space 350, the connection seat 32 is disposed in the power supply part connection housing 35, and the power supply part is connected to the second accommodating space 350 of the housing 35
  • the second accommodating cavity 320 communicates with the connecting seat 32.
  • the power supply part connecting housing 35 may also form the connecting seat 32 integrally.
  • the second accommodating space 350 of the power supply part connection housing 35 is connected to the second accommodating cavity 320 where the power supply part 21 is located.
  • the rotating shaft 33 is disposed close to the power supply part connecting housing 35.
  • the wire 40 extends from the power supply portion 21 toward the second accommodating space 350 of the housing of the power supply portion 21, and then extends along the outside of the rotating shaft 33 to the second accommodating space of the connecting seat 32
  • the cavity 320 then extends from the second accommodating cavity 320 of the connecting seat 32 toward the first accommodating cavity 310 of the connector 31 located inside the connecting seat 32, and then extends to the light-emitting part
  • the first accommodating space 340 of the housing 34 is connected.
  • the outer side of the rotating shaft 33 means that the position of the light-emitting portion 11 is the inner side, and the light-emitting portion 11 is restricted to the other side where the rotation angle cannot be reached as the outer side.
  • the wire 40 extends outside the rotating shaft 33, when the light-emitting portion 11 rotates relative to the power supply portion 21, the wire 40 will not be folded, thereby avoiding the wire 40 from being caused many times. Folding causes the problem of reduced service life.
  • the connecting seat 32 has a connecting seat through hole 3200 and the connecting seat through hole 3200 is formed in the connecting seat top shell 322, and the connecting seat through hole 3200 is set in a square shape. After the rotating shaft 33 passes through the connecting seat through hole 3200, there is still a certain space between the circumference of the rotating shaft 33 and the connecting seat 32.
  • the distance C between the rotating shaft 33 and the inner wall of the connecting head 31 is not less than 5 mm, so that the wire can be defined between the rotating shaft 33 and the inner wall of the connecting head 31 It passes through the space and is not excessively folded or excessively bent, so as to avoid damage to the internal structure of the wire.
  • the distance between the rotating shaft 33 and the connecting head 31 may range from 5.3 mm to 6 mm.
  • the foldable lamp 1 can provide a variety of light sources with different radiation directions.
  • the light-emitting part 11 includes at least one light-emitting element 111, wherein one of the light-emitting elements 111 is implemented as a light-emitting light board, and the light-emitting light board is implemented to have a longer length and a smaller width. Long and narrow shape.
  • the light-emitting unit 10 further includes a light-emitting portion mounting housing 12, wherein the light-emitting portion 11 is mounted on the light-emitting portion mounting housing 12.
  • the light-emitting portion mounting housing 12 is mounted on the light-emitting portion connecting housing 34.
  • the light-emitting member 111 implemented as the light-emitting lamp board is installed in the light-emitting portion mounting housing 12 and the light-emitting portion mounting housing 12 forms a light-emitting portion mounting groove 120 in which the light-emitting light board can be accommodated It is attached to the light-emitting part mounting groove 120 and can be drawn out along the light-emitting part mounting groove 120.
  • the light-emitting portion mounting housing 12 includes two mounting side surfaces 121, wherein the light-emitting portion mounting groove 120 is formed between the two mounting side surfaces 121.
  • the light-emitting portion mounting housing 12 further forms an upper light-transmitting window 1201 and a lower light-transmitting window 1202, wherein the upper light-transmitting window 1201 and the lower light-transmitting window 1202 are respectively located above and below the light-emitting portion installation groove 120 On both sides.
  • the upper light-transmitting window 1201 faces away from the power supply part 21, and the lower light-transmitting window 1202 faces the power supply part 21.
  • the light-emitting part 11 When the light-emitting part 11 is energized to emit light, light may be radiated outward through the upper light-transmitting window 1201 and the lower light-transmitting window 1202, respectively.
  • the other light-emitting element 111 may also be implemented as a light-emitting lamp board, and the two light-emitting elements 111 are respectively installed in the light-emitting part installation groove 120 and face the upper light-transmitting window 1201 and the lower light-emitting window 1201.
  • the light-emitting part 11 can emit light toward both sides.
  • the other light-emitting element 111 is mounted on a free end of the light-emitting portion mounting housing 12, wherein the light-emitting portion mounting housing 12 has two ends, wherein the end portions are close to the power supply portion 21.
  • the other end is a free end.
  • the light emitting element 111 installed at the free end may be an LED lamp bead.
  • the three light-emitting elements 111 are respectively conductively connected to the power supply part 21, and it is worth noting that the three light-emitting elements 111 can be controlled separately.
  • the light emitting element 111 is implemented as a double-sided COB, which can emit light on both sides.
  • the other light emitting element 111 may be installed on a free end of the double-sided COB to emit light at the end.
  • the thickness B of the light-emitting portion mounting groove 120 corresponding to the position of the light-emitting element 111 is not less than 1.8 mm, and the thickness A of the entire light-emitting portion mounting housing 12 is not less than 4.5 mm. Sufficient space is left in the light-emitting part mounting housing 12 for the light-emitting element 111 to dissipate heat.
  • the light-emitting unit 10 further includes at least one light-emitting auxiliary member 13, wherein the number of the light-emitting auxiliary member 13 may be two, and one light-emitting auxiliary member 13 is accommodated in the upper light-transmitting window 1201, The other light-emitting auxiliary member 13 is accommodated in the lower light transmission window 1202, and the light-emitting member 111 is located between the two light-emitting auxiliary members 13 and keeps a certain distance from the light-emitting auxiliary member 13.
  • the light-emitting part mounting housing 12 may be made of a metal material to assist the light-emitting element 111 to dissipate heat, such as an aluminum profile.
  • the thickness of the light-emitting part installation groove 120 may be 2 mm or 3 mm, and the light-emitting element 111 is accommodated in the light-emitting part installation groove 120.
  • the thickness of the light-emitting part mounting housing 12 may be 6.8 mm to leave a space between the light-emitting part 111 and the light-emitting part mounting housing 12 for heat dissipation, and the light-emitting part mounting housing 12 itself is also It can assist the light emitting element 111 to dissipate heat.
  • the foldable lamp 1 further includes a switch 50, wherein the light-emitting elements 111 are controllably connected to the switch 50, respectively.
  • the foldable lamp 1 may have multiple working modes. For example, three light-emitting elements 111 emit light separately, for example, two of the three light-emitting elements 111 emit light in pairs, for example, The three light emitting elements 111 emit light at the same time.
  • the foldable lamp 1 This requires at least the foldable lamp 1 to provide at least three circuits, and one light emitting element 111 is connected to one circuit. That is, the number of the wires 40 is multiple, for example, four of the wires 40, three of the wires 40 are respectively connected to one of the light-emitting elements 111, and one of the wires 40 is used to form a common The loop part.
  • the light-emitting part connection housing 34 includes a first part light-emitting part connection housing 341 and a second part light-emitting part connection housing 342, wherein the first accommodating space 340 is formed at the first part light-emitting part connection housing 341
  • the housing 341 and the second partial light-emitting part are connected between the housing 342.
  • the connecting head 31 may integrally extend to the light-emitting portion connecting housing 34.
  • the connector housing 311 of the connector 31 may include a first part of the connector housing 3111 and a second part of the connector housing 3112, wherein the first part of the connector housing 3111 and the The second partial connector housing 3112 extends integrally with the first partial light-emitting portion connection housing 341 and the second partial light-emitting portion connection housing 342, respectively.
  • the light-emitting portion mounting housing 12 and the light-emitting portion connecting housing 34 can be detachably connected to each other.
  • the light-emitting portion mounting housing 12 can be inserted into the first receiving space 340 of the light-emitting portion connecting housing 34.
  • the light-emitting portion connecting housing 34 can be inserted into the light-emitting portion 11 installation cavity of the light-emitting portion mounting housing 12.
  • the number of the connecting seats 32 is two, and the connecting seats 32 are respectively located on both sides of the connecting head 31.
  • the rotating shaft 33 passes through one connecting seat 32, the connecting head 31 and the other connecting seat 32 in sequence.
  • the wire 40 can pass through one of the two connecting seats 32 and the connecting head 31.
  • the power supply connection housing 35 includes a first power supply connection housing 351 and a second power supply connection housing 352, wherein the second accommodation space 350 is formed in the first power supply connection housing 351 And the second part of the power supply part is connected between the housing 352.
  • One of the connecting sockets 32 integrally extends to the first part of the power supply part connecting housing 351, and the other of the connecting sockets 32 integrally extends to the second part of the power supply part connecting housing 352.
  • the foldable lamp 1 further includes a circuit board unit 60, wherein the circuit board unit 60 is accommodated in the second accommodation space 350 of the power supply connection housing 35. At least one wire 40 extends from the circuit board unit 60 toward the second receiving space 350.
  • the circuit board unit 60 is electrically connected to the power supply unit 21.
  • the light-emitting element 111 of the light-emitting portion 11 is controllably connected to the circuit board unit 60, and the circuit board unit 60 is controllably connected to the switch 50, thereby controlling the switch 50 The light-emitting element 111.
  • the switch 50 is provided in the first partial power supply part connection housing 351 or the second partial power supply part connection housing 352 of the power supply part connection housing 35.
  • the power supply unit 20 of the foldable lamp 1 further includes a power supply mounting housing 22, wherein the power supply mounting housing 22 has a power supply mounting cavity 220, and the power supply 21 is accommodated in The power supply part is installed with a housing 22.
  • the power supply connection housing 35 can be inserted into the power supply installation cavity 220 of the power supply installation housing 22.
  • the power supply unit mounting housing 22 is inserted into the second accommodating space 350 of the power supply unit connection housing 35.
  • the foldable lamp 1 can not only be held in the hand for use, but also can be hung on the wall for use, thereby freeing the user's hands.
  • the foldable lamp 1 further includes a magnetic base 70, wherein the magnetic base 70 is installed at the bottom end of the power supply part 21, when the foldable lamp 1 is placed on a desk or the ground ,
  • the magnetic base 70 can play a supporting role.
  • the magnetic base 70 includes a magnetic base housing 71, at least a pair of magnets 72, and a magnetic attraction enhancement member 73, wherein the magnetic base housing 71 forms two accommodating cavities 710, and a pair of the magnets One of the 72 is accommodated in one of the accommodating cavity 710, and the other is accommodated in the other accommodating cavity 710.
  • the polarities of a pair of the magnets 72 are opposite, and the magnetic attraction enhancement member 73 is arranged near the magnet 72 to enhance the magnetic attraction effect of the magnet 72.
  • the magnetic base 70 can be installed on an iron wall, for example, as shown in FIG. 8.
  • the power supply part 21 can support the light-emitting part 11, and the resistance at the position of the connecting part 30 can be no less than the gravity of the light-emitting part 11, so that the power supply part 21 can support the light-emitting part 11.
  • the connecting portion 30 may further include a fastener 36, wherein the fastener 36 is connected to the rotating shaft 33, and is connected to the connecting head 31 or the connecting seat 32 to This enhances the resistance of the connecting head 31 and the connecting seat 32 when the rotating shaft 33 rotates, so that the light-emitting part 11 can be temporarily fixed at the adjusted position.
  • the fastener 36 may be a screw.
  • the magnetic attraction enhancement member 73 and one of the magnets 72 can be accommodated in one of the storage chambers 710, and the magnetic attraction enhancement member 73 and the other of the magnets 72 can be accommodated in the other accommodation cavity. 710.
  • the two magnets 72 can be on the same plane to facilitate the magnetic force of the magnetic base 70.
  • the two storage cavities 710 communicate with each other so that a part of the magnetic attraction reinforcement member 73 can be located in one storage cavity 710 and the magnetic attraction reinforcement member 73 The other part of may be located in another said receiving cavity 710.
  • the magnetic attraction reinforcement member 73 is located inside the magnet 72. When the magnetic attraction seat 70 is attracted to an object, the magnet 72 is closer to an external object than the magnetic attraction reinforcement member 73.
  • each of the magnets 72 may be provided with one magnetic attraction strengthening member 73.
  • the number of magnets 72 may be multiple pairs.
  • the number of magnets 72 serving as S poles in one receiving cavity 710 may be two or more.
  • the number of the magnets 72 serving as N poles in the receiving cavity 710 may be two or more.
  • the magnetic attraction enhancement member 73 can increase the attractive force of the magnet 72, and the magnetic attraction enhancement member 73 can be used as a mounting member.
  • the magnetic attraction enhancement member 73 can be used to install the magnet 72 so that the magnet 72 is firmly mounted on the magnetic attraction base housing 71. With the help of the magnetic attraction enhancement member 73, the magnetic attraction seat 70 does not need to be specially provided with an insert for installing the magnet 72.
  • the magnetic attraction reinforcement member 73 can be implemented as an iron sheet, a cobalt sheet, or a nickel sheet, or a mixture of the above three magnetic attraction metals.
  • the magnetic attraction enhancement member 73 can enhance the magnetic properties of the two magnets 72 with opposite polarities, and has a simple structure and convenient use.
  • one of the receiving cavity 710 of the magnetic base 70 may be connected to the power supply installation cavity 220 of the power supply unit mounting housing 22.
  • the magnetic holder housing 71 can be integrally formed with the power supply part mounting housing 22 to facilitate the structural strength of the foldable lamp 1, and can also reduce moisture from the magnetic holder 70 and the power supply part. It is possible to install the connection position of the housing 22 into the power supply part 21.
  • the foldable lamp 1 may further include an interface 80, wherein the interface 80 is located in the power supply part connection housing 35 of the power supply unit 20, and the interface 80 can be conducted to the light-emitting part. 11 is used to transmit electric energy to the light-emitting part 11.
  • the interface 80 may be connected to the power supply unit 21 to transmit electric energy to the power supply unit 21.
  • the power supply unit 21 may also transmit electric energy outward through the interface 80.
  • the interface 80 can be, but is not limited to, a USB interface or a TYPE-C interface.
  • the power supply unit 21 may be one battery or multiple batteries, and the type of the battery does not limit the present invention.
  • the conduction between the light-emitting part 11 and the power supply part 21 is realized by the wire.
  • the light-emitting part 11 and the power supply part 21 are connected to each other.
  • the conduction between the parts 21 can be realized by conductive elements such as conductive contacts and conductive sheets.
  • the power supply part 21 can be formed with one or more conductive contacts, and the conductive contacts can be located in the At the junction of the light-emitting portion 11 and the power supply portion 21, when the light-emitting portion 11 and the power supply portion 21 rotate relatively, the conductive contact and the light-emitting portion 11 are kept in conduction.
  • the present invention provides an assembling method of the foldable lamp 1, which includes the following steps:
  • the light-emitting part 11 is mounted on the power supply part 21 so as to be rotatable relative to the power supply part 21 by the connection part 30;
  • the wire connecting the light-emitting part 11 and the power supply part 21 passes through the connecting part 30 and extends between the light-emitting part 11 and the power supply part 21.
  • a connecting head 31 is mounted on a connecting seat 32 by a rotating shaft 33, wherein the connecting head 31 is connected to the light emitting portion 11, and the connecting seat 32 is connected to ⁇ The power supply unit 21.
  • the wire 40 extends from the power supply portion 21 to the connecting portion 30 and bypasses the rotating shaft 33 located in the connecting portion 30 to face the The light emitting part 11 extends.
  • the connecting portion 30 is foldable toward the power supply portion 21, and the wire 40 bypasses the rotating shaft 33 from the side opposite to the folding direction, so that When the light-emitting portion 11 is folded toward the power supply portion 21, the wire 40 can be stretched.
  • the light-emitting portion 11 is installed by a light-emitting portion mounting housing 12.
  • the light-emitting element 111 is mounted on the light-emitting portion mounting housing 12 with its light-emitting area facing the power supply portion 21, or the light-emitting element 111 is mounted on the light-emitting portion with its light-emitting area facing away from the power supply portion 21
  • the housing 12 is installed, or the light-emitting member 111 is installed at the free end of the light-emitting part installation housing 12.
  • the light-emitting portion mounting housing 12 is inserted into a light-emitting portion connecting housing 34, wherein the light-emitting portion connecting housing 34 connects the connecting head 31 and the connecting head 31
  • the light-emitting part is installed in the housing 12.
  • the power supply part 21 is installed by a power supply part mounting housing 22.
  • the power supply unit 21 is accommodated in the power supply unit accommodating cavity 220 of the power supply unit mounting housing 22.
  • the power supply part mounting housing 22 is inserted into a power supply part connection housing 35, wherein the power supply part connection housing 35 connects the connection base 32 and the The power supply unit mounts the housing 22.
  • the circuit board unit 60 is arranged at the power supply part and connected to the housing 35.
  • the magnetic holder 70 is installed at the bottom end of the power supply portion housing 22.
  • the present invention provides a working method of the foldable lamp 1, which includes the following steps:
  • the light emitting part 11 located at at least one position of the top side, the bottom side or the end side of the light emitting part mounting housing 12 emits light.

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  • General Engineering & Computer Science (AREA)
  • Non-Portable Lighting Devices Or Systems Thereof (AREA)

Abstract

一种工作灯、可折叠灯(1)及其组装方法和工作方法,其中可折叠灯(1)包括一供电部(21)、一发光部(11)、至少一导线以及一连接部(30),发光部(11)通过导线(40)被可导通地连接于供电部(21),其中连接部(30)包括一连接头(31)、一连接座(32)以及一转轴(33),其中连接头(31)和连接座(32)分别位于供电部(21)和发光部(11),并且连接头(31)通过转轴(33)被可转动地连接于连接座(32),从而发光单元(10)被可绕转轴(30)转动地连接于供电部(21),其中转轴(33)被设置为偏心地穿过连接头(31)和连接座(32),以留出空间供导线(40)通过连接部(30)。

Description

工作灯、可折叠灯及其组装方法和工作方法 技术领域
本发明涉及到照明领域,尤其涉及到工作灯、可折叠灯及其组装方法和工作方法。
背景技术
灯是日常生活中常见的照明工具,工作灯是灯中的一类,其和日常用照明灯的不同之处在于工作灯可以需要提供较高的流明以满足各种不同工作环境的需求。
工作灯可以应用在多个场景,比如说车辆维修,或者是户外照明灯。
一般的工作灯的体积较为笨重,不易携带,随着消费者对于便携性要求的提高,越来越多的工作灯也正在朝向小型化的设计发展。
折叠灯是工作灯中的一种,通过折叠灯包括一个把手和一个发光部,其中发光部和把手之间的夹角能够被改变,也就是发光部能够相对于把手能够被折叠。把手通常用于放置电池以提供电能。这也意味着电能需要从把手位置传递至发光部位置。
折叠灯的轻量化设计将会受到挑战,比如说通常在把手和发光部的连接位置设计转轴以使得把手和发光部的之间的夹角可以改变,但是把手和发光部的连接位置还需要供把手至发光部的走线,因此把手和发光部的连接位置必然将被设计的较大以留出足够的空间。
进一步地,随着消费者对于折叠灯性能要求的提高,折叠灯可能需要提供多种工作模式,这使得发光部位置需要被配置的光源数量增多,并且还使得连接把手位置和发光部的导线数量增多,这都不利于整个折叠灯的小型化设计。
发明内容
本发明的一优势在于提供一工作灯、可折叠灯及其组装方法和工作方法,其中所述可折叠灯能够在保持小尺寸的同时提供较高的流明。
本发明的另一优势在于提供一工作灯、可折叠灯及其组装方法和工作方法,其中所述可折叠灯能够在较小尺寸的同时提供多种工作模式。
本发明的另一优势在于提供一工作灯、可折叠灯及其组装方法和工作方法,其中所述可折叠灯能够在保持小尺寸的同时提供多个不同的光源以满足较多的使用需求。
本发明的另一优势在于提供一工作灯、可折叠灯及其组装方法和工作方法,其中所述可折叠灯包括一供电部和一发光部,其中所述发光部能够朝向所述供电部转动,以使得所述可折叠灯被折叠。
本发明的另一优势在于提供一工作灯、可折叠灯及其组装方法和工作方法,其中所述可折叠灯的导线能够在增大所述供电部和所述发光部的连接处的尺寸的前提下穿过所述供电部和所述发光部的连接处并且不对于所述供电部和所述发光部的相对转动造成影响。
根据本发明的一方面,本发明提供了一可折叠灯,其包括:
一供电部;
一发光部;
至少一导线,所述发光部通过所述导线被可导通地连接于所述供电部;以及
一连接部,其中所述连接部包括一连接头、一连接座以及一转轴,其中所述连接头和所述连接座分别位于所述供电部和所述发光部,并且所述连接头通过所述转轴被可转动地连接于所述连接座,从而所述发光单元被可绕所述转轴转动地连接于所述供电部以被朝向所述供电部折叠,其中所述转轴被设置为偏心地穿过所述连接头和所述连接座,以留出空间供所述导线通过所述连接部。
根据本发明的至少一个实施例,所述连接头包括一第一容纳腔,所述连接座包括一第二容纳腔,其中所述第一容纳腔连通所述第二容纳腔并且所述第一容纳腔的中心轴线和所述第二容纳腔的中心轴线重合,所述转轴被偏心地分别穿过所述第一容纳腔和所述第二容纳腔,所述导线在所述第二容纳腔绕过所述转轴然后朝向所述第一容纳腔延伸。
根据本发明的至少一个实施例,所述导线延伸于所述转轴的外侧,当所述发光部朝向所述供电部被转动,所述导线能够被拉伸。
根据本发明的至少一个实施例,所述连接座的数目是二,所述连接头位于两个所述连接座之间。
根据本发明的至少一个实施例,所述转轴到所述连接头内壁的距离不小于5mm。
根据本发明的至少一个实施例,所述可折叠灯进一步包括一发光部安装壳体,其中所述发光部包括一发光件,其中所述发光件被安装于所述发光部安装壳体并且位于所述发光部安装壳体的底面一侧。
根据本发明的至少一个实施例,所述发光部进一步包括另一所述发光件,其中所述发光件被安装于所述发光部安装壳体并且位于所述发光部安装壳体的顶面一侧。
根据本发明的至少一个实施例,所述发光部进一步包括另一所述发光件,其中所述发光件被安装于所述发光部安装壳体并且位于所述发光部安装壳体的一自由端部。
根据本发明的至少一个实施例,所述发光部安装壳体具有一发光部容纳槽,其中所述发光部被可沿所述发光部容纳槽滑动以被拆卸地容纳于所述发光部容纳槽。
根据本发明的至少一个实施例,所述可折叠灯进一步包括一发光部安装壳体并且所述发光部安装壳体具有一发光部容纳槽、一上透光窗和一下透光窗,其中所述上透光窗和所述下透光窗分别位于所述发光部容纳槽两侧并且分别连通于所述发光部容纳腔,所述发光部包括一双面COB,并且所述双面COB被容纳于所述发光部容纳腔以分别通过所述上透光窗和所述下透光窗朝外辐射光线。
根据本发明的至少一个实施例,所述发光部容纳槽的厚度不小于1.8mm。
根据本发明的至少一个实施例,所述可折叠灯进一步包括一供电部安装壳体,其中所述供电部安装壳体具有一供电部安装腔,其中所述供电部被容纳于所述供电部安装腔,所述连接座被连接于所述供电部安装壳体。
根据本发明的至少一个实施例,所述可折叠灯进一步包括一磁吸座,所述磁吸座位于所述供电部安装壳体的底侧,其中所述磁吸座包括至少一对极性相反的磁吸件和至少一磁性增强件,其中所述磁性增强件位于所述磁吸件内侧。
根据本发明的至少一个实施例,所述磁性增强件是一铁片,其中所述磁吸件是磁铁。
根据本发明的至少一个实施例,所述磁吸座包括一磁吸座壳体,其中借助所述磁性增强件固定所述磁吸件于所述磁吸座壳体。
根据本发明的至少一个实施例,所述可折叠灯进一步包括一发光部安装壳体、一供电部安装壳体、一发光部连接壳体以及一供电部连接壳体,其中所述发光部连接壳体连接所述连接头和所述发光部安装壳体,所述供电部连接壳体连接所述连接座和所述供电部连接壳体,其中所述发光部安装壳体具有一发光部安装槽,所述发光部被安装于所述发光部安装槽,所述供电部安装壳体具有一供电部安装腔,所述供电部被安装于所述供电部安装腔。
根据本发明的另一方面,本发明提供了一工作灯,包括:
一灯棍;和
一把手,其中所述灯棍被可转动以朝向所述把手折叠地安装于所述把手,其中所述灯棍的发光区域位于所述灯棍的长度方向并且朝向所述把手。
根据本发明的至少一个实施例,所述灯棍的发光区域位于所述灯棍的长度方向并且背向所述把手。
根据本发明的至少一个实施例,所述灯棍的发光区域位于所述灯棍的一自由端部。
根据本发明的至少一个实施例,所述灯棍的发光区域位于所述灯棍的一自由端部。
根据本发明的至少一个实施例,所述工作灯进一步包括至少一导线,其中所述灯棍包括一发光部,所述把手包括一供电部,其中所述发光部通过所述导线被可导通地连接于所述供电部。
根据本发明的至少一个实施例,所述工作灯进一步包括一连接头、连接座和一转轴,其中所述连接头连接于所述发光部,所述连接座连接于所述供电部,所述连接头和所述连接座通过所述转轴相互可转动地连接,以使得所述发光部和所述供电部相互可转动地连接。
根据本发明的至少一个实施例,所述转轴被设置为偏心地穿过所述连接头和所述连接座,以留出空间供所述导线通过所述连接部。
根据本发明的至少一个实施例,所述连接头包括一第一容纳腔,所述连接座包括一第二容纳腔,其中所述第一容纳腔连通所述第二容纳腔并且所述第一容纳腔的中心轴线和所述第二容纳腔的中心轴线重合,所述转轴被偏心地分别穿过所述第一容纳腔和所述第二容纳腔,所述导线在所述第二容纳腔绕过所述转轴然后朝向所述第一容纳腔延伸。
根据本发明的至少一个实施例,所述导线延伸于所述转轴的外侧,当所述发光部朝向所述供电部被转动,所述导线能够被拉伸。
根据本发明的至少一个实施例,所述连接座的数目是二,所述连接头位于两个所述连接座之间。
根据本发明的至少一个实施例,所述转轴到所述连接头的距离不小于5mm。
根据本发明的至少一个实施例,所述工作灯进一步包括一发光部安装壳体,其中所述发光部包括一发光件,其中所述发光件被安装于所述发光部安装壳体并且位于所述发光部安装壳体的底面一侧。
根据本发明的至少一个实施例,所述工作灯进一步包括一发光部安装壳体并且所述发光部安装壳体具有一发光部容纳槽、一上透光窗和一下透光窗,其中所述上透光窗和所述下透光窗分别位于所述发光部容纳槽两侧并且分别连通于所述发光部容纳腔,所述发光部包括一双面COB,并且所述双面COB被容纳于所述发光部容纳腔以分别通过所述上透光窗和所述下透光窗朝外辐射光线。
根据本发明的至少一个实施例,所述发光部容纳槽的厚度不小于1.8mm。
根据本发明的至少一个实施例,所述工作灯进一步包括一供电部安装壳体,其中所述供电部安装壳体具有一供电部安装腔,其中所述供电部被容纳于所述供电部安装腔,所述连接座被连接于所述供电部安装壳体。
根据本发明的至少一个实施例,所述工作灯进一步包括一磁吸座,所述磁吸座位于所述供电部安装壳体的底侧,其中所述磁吸座包括至少一对极性相反的磁吸件和至少一磁性增强件,其中所述磁性增强件位于所述磁吸件内侧。
根据本发明的至少一个实施例,所述磁性增强件是一铁片,其中所述磁吸件是磁铁。
根据本发明的至少一个实施例,所述磁吸座包括一磁吸座壳体,其中借助所述磁性增强件固定所述磁吸件于所述磁吸座壳体。
根据本发明的至少一个实施例,所述工作灯进一步包括一发光部安装壳体、一供电部安装壳体、一发光部连接壳体以及一供电部连接壳体,其中所述发光部连接壳体连接所述连接头和所述发光部安装壳体,所述供电部连接壳体连接所述连接座和所述供电部连接壳体,其中所述发光部安装壳体具有一发光部安装槽,所述发光部被安装于所述发光部安装槽,所述供电部安装壳体具有一供电部安装腔,所述供电部被安装于所述供电部安装腔。
根据本发明的至少一个实施例,所述工作灯进一步包括一开关,其中所述发光部被可控制地连接于所述开关。
根据本发明的一方面,本发明提供了一可折叠灯的组装方法,其包括如下步骤:
通过一连接部的一转轴可转动地安装一发光部于一供电部;以及
导线绕过被偏心设置在一连接座和一连接头的转轴以连接所述发光部和供电部。
根据本发明的至少一个实施例,在上述方法中,所述导线自所述供电部延伸至所述连接部的第一容纳腔然后经过所述转轴的外侧绕至所述连接部的第二容纳腔,其中所述转轴偏心地通过所述第一容纳腔和所述第二容纳腔。
根据本发明的另一方面,本发明提供了一可折叠灯的工作方法,其包括如下步骤:
导线绕过被偏心设置在一连接座和一连接头的转轴以连接一发光部和一供电部。
根据本发明的至少一个实施例,所述工作方法进一步包括如下步骤:
所述发光部的不同发光区域发光。
附图说明
图1是根据本发明的一较佳实施例的一可折叠灯的示意图。
图2是根据本发明的上述较佳实施例的所述可折叠灯的一拆解示意图。
图3是根据本发明的上述较佳实施例的所述可折叠灯的一发光单元的示意图。
图4是基于图2中所述可折叠灯的A-A剖线位置的剖面示意图。
图5是根据本发明的上述较佳实施例的所述可折叠灯的一连接部位置的导线示意图。
图6是根据本发明的上述较佳实施例的所述可折叠灯的一磁吸座的剖视示意图。
图7是根据本发明的上述较佳实施例的所述可折叠灯的应用示意图。
图8是根据本发明的上述较佳实施例的所述可折叠灯的另一种应用示意图。
具体实施方式
以下描述用于揭露本发明以使本领域技术人员能够实现本发明。以下描述中的优选实施例只作为举例,本领域技术人员可以想到其他显而易见的变型。在以下描述中界定的本发明的基本原理可以应用于其他实施方案、变形方案、改进方案、等同方案以及没有背离本发明的精神和范围的其他技术方案。
本领域技术人员应理解的是,在本发明的揭露中,术语“纵向”、“横向”、“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是基于附图所示的方位或位置关系,其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,因此上述术语不能理解为对本发明的限制。
可以理解的是,术语“一”应理解为“至少一”或“一个或多个”,即在一个实施例中,一个元件的数量可以为一个,而在另外的实施例中,该元件的数量可以为多个,术语“一”不能理解为对数量的限制。
参考附图1至附图8所示,根据本发明的一较佳实施例的一可折叠灯1被示意。
所述可折叠灯1能够被折叠以方便收纳,并且其光照方向能够被调整以满足不同的使用需求。
所述可折叠能够被设计为较小的尺寸并且能够提供较高的流明。
具体地说,所述可折叠灯1包括一发光单元10和一供电单元20,其中所述发光单元10被相对于所述供电单元20可转动地连接于所述供电单元20,当所述发光单元10朝向所述供电单元20转动,所述可折叠灯1能够被折叠。
所述供电单元20包括一供电部21,所述发光单元10包括一发光部11,其中所述供电部21用于供电,所述发光部11用于发光,所述发光部11被可相对于所述供电部21转动地连接于所述供电部21,并且所述供电部21被可供电连接于所述发光部11。
所述发光部11和所述供电部21之间的夹角能够基于用户需求被自由调整。所述发光部11可以被转动至和所述供电部21位于同一直线,也可以是所述发光部11可以被转动至和所述供电部21位于一预设的其他角度的夹角,比如说锐角。
所述可折叠灯1具有一折叠状态和一打开状态,在所述折叠状态,所述发光部11被转动至靠近于所述供电部21。所述发光部11和所述供电部21可以并行, 或者是近似并行,以缩小所述可折叠灯1的长度尺寸。在所述打开状态,所述发光部11能够相对于所述供电部21被转动一定的角度。
进一步地,所述可折叠灯1包括一连接部30,其中所述连接部30连接于所述供电部21和所述发光部11。所述连接部30可以是独立于所述供电部21和所述发光部11,也可以是所述供电部21和所述发光部11分别形成所述连接部30的至少部分。
所述连接部30包括一连接头31、至少一连接座32以及一转轴33,其中所述连接头31和所述连接座32分别位于所述供电部21和所述发光部11,其中所述连接头31和所述连接座32通过所述转轴33被相互可转动地连接。也就是说,所述供电部21和所述发光部11通过所述连接头31和所述连接座32的转动连接从而被相互可转动地连接。
所述连接头31可以位于所述供电部21,所述连接座32可以位于所述发光部11。也可以是所述连接头31可以位于所述发光部11,所述连接座32可以位于所述供电部21。在本实施例中,所述连接头31位于所述发光部11并且所述连接座32位于所述供电部21。值得注意的是,所述连接头31可以被设置于所述发光部11,也可以是所述发光部11形成所述连接头31。类似的,所述连接座32可以被设置于所述供电部21,也可以是所述供电部21形成所述连接头31。
所述可折叠灯1进一步包括至少一导线40,其中所述导线40将来自于所述供电部21的能量传递至所述发光部11。所述发光部11被连通于所述供电部21以使得所述导线40可以在所述发光部11和所述供电部21内部传递电能。
所述导线40在自所述供电部21经过所述连接部30延伸至所述发光部11。具体地说,所述连接头31具有一第一容纳腔310,其中所述连接座32具有一第二容纳腔320,其中所述连接头31被连通于所述连接座32。也就是说,所述第一容纳腔310连通于所述第二容纳腔320。
所述转轴33穿过所述第一容纳腔310和所述第二容纳腔320,所述导线40也穿过所述第一容纳腔310和所述第二容纳腔320。如果所述转轴33延伸横向的方向穿过所述第一容纳腔310和所述第二容纳腔320,那么所述导线40大致沿着纵向方向穿过所述第一容纳腔310和所述第二容纳腔320,并且当所述发光部11绕所述转轴33相对于所述供电部21转动时,并不会对于所述导线40造成影响。
具体地说,所述可折叠灯1具有一转动轴线,其中所述转动轴线穿过所述连接头31和所述连接座32。所述连接头31和所述连接座32能够分别绕所述转动轴线转动。所述转动轴线穿过所述转轴33。
对于所述连接头31或者所述连接座32而言,所述连接头31和所述连接座32分别具有一中心轴线,当所述可折叠灯1的所述供电部21被握持,所述中心轴线自左往右或者是自右往左穿过所述连接头31或者是所述连接座32。
对于所述第一容纳腔310和所述第二容纳腔320而言,所述中心轴线分别穿过所述第一容纳腔310和所述第二容纳腔320。
所述第一容纳腔310和所述第二容纳腔320的部分空间分别被自左往右或者是自右往左的穿过的所述转轴33占据。
在本实施例中,所述转轴33被设置为偏心的,以为所述导线40留出足够的过线空间,从而所述导线40能够在穿过所述连接部30的同时不被可以转动的所述转轴33所影响。
详细地说,所述连接头31包括一连接头壳体311,其中所述连接头壳体311是环状的并且围绕形成所述第一容纳腔310。所述连接座32包括一连接座侧壳321和一连接座顶壳322,其中所述连接座侧壳321被设置为环状的,所述连接座顶壳322被设置为圆形的。所述连接座侧壳321自所述连接座顶壳322的周沿位置朝一侧延伸而成。
所述连接座侧壳321和所述连接座顶壳322围绕形成所述第二容纳腔320。当所述连接座32和所述连接头31通过所述转轴33被相互可转动地连接。所述连接头壳体311被连接于所述连接座侧壳321,所述第一容纳腔310被对准于所述第二容纳腔320。
可选地,所述连接头壳体311可以形成一环状凹槽,所述连接座侧壳321可以形成一环状凸起,以使得所述连接头31被连接于所述连接座32时,所述环状凹槽卡合入所述环状凸起,以有利于所述连接头31和所述连接座32的连接处的密封性。
为了缩小所述连接部30的尺寸,所述连接头31和所述连接座32相互对准。具体地说,所述连接头31的中心轴线和所述连接座32的中心轴线重合。
由于所述转轴33被偏心地设置,因此所述转轴33没有和所述连接头31、所述连接轴的中心轴线重合。
在本实施例中,所述转轴33被设置为朝向所述供电部21所在方向偏心的,而所述连接座32位于所述供电部21,所述连接头31位于所述发光部11。
来自于所述供电部21的所述导线40延伸至所述连接座32的所述第二容纳腔320,然后绕过所述转轴33朝向所述连接头31的所述第一容纳腔310延伸,然后延伸至所述发光部11以供电。在这个过程中,由于偏心的所述转轴33为所述导线40留出了更多的空间,降低了所述导线40缠绕在所述转轴33的风险。
进一步地,所述可折叠灯1的所述发光部11的可转动范围被设置为在一定角度内的,比如说不超过180度。这意味着如果以所述供电部21所在位置为分界线的话,所述发光部11通常在所述供电部21的一侧运动。
所述导线40被设置在以所述供电部21所在位置为分界线的另一侧。当所述发光部11相对于所述供电部21转动时,所述发光部11和所述供电部21之间的转动不会对于所述导线40造成过大的影响。
具体地说,所述连接部30包括一发光部连接壳体34和一供电部连接壳体35,其中所述发光部连接壳体34连接所述发光部11和所述连接头31,所述供电部连接壳体35连接所述供电部21和所述连接座32。
所述发光部连接壳体34具有一第一容纳空间340,所述连接头31被设置于所述发光部连接壳体34,并且所述发光部连接壳体34的所述第一容纳空间340连通于所述连接头31的所述第一容纳腔310。可选地,所述发光部连接壳体34也可以一体形成所述连接头31。
所述供电部连接壳体35具有一第二容纳空间350,所述连接座32被设置于所述供电部连接壳体35,并且所述供电部连接壳体35的所述第二容纳空间350连通于所述连接座32的所述第二容纳腔320。可选地,所述供电部连接壳体35也可以一体形成所述连接座32。
所述供电部连接壳体35的所述第二容纳空间350被连通于所述供电部21所在的所述第二容纳腔320。相对于所述发光部连接壳体34,所述转轴33被靠近于所述供电部连接壳体35设置。
所述导线40自所述供电部21朝向所述供电部21壳体的所述第二容纳空间350延伸,然后沿着所述转轴33的外侧延伸至所述连接座32的所述第二容纳腔320,然后自所述连接座32的所述第二容纳腔320朝向位于所述连接座32的内侧的所述连接头31的所述第一容纳腔310延伸,然后延伸至所述发光部连接壳 体34的所述第一容纳空间340。
此处所述转轴33的外侧是指所述发光部11所在位置为内侧,所述发光部11限制于转动角度无法达到的另一侧为外侧。
由于所述导线40延伸于所述转轴33的外侧,因此当所述发光部11相对于所述供电部21转动时,所述导线40不会被折叠,从而避免了所述导线40由于多次折叠导致使用寿命下降的问题。
进一步地,所述连接座32具有一连接座通孔3200并且所述连接座通孔3200形成于所述连接座顶壳322,所述连接座通孔3200被设置为方形的,当圆形的所述转轴33通过所述连接座通孔3200后,所述转轴33的周围和所述连接座32之间还留有一定的空间。
可着重参考附图5,具体地说,所述转轴33到所述连接头31的内壁的距离C不小于5mm,以使得所述导线可以在所述转轴33和所述连接头31内壁界定的空间中穿过并且不被过分折叠或者是过分弯曲,以避免对于所述导线内部结构造成损坏。在本实施例中,所述转轴33到所述连接头31的距离范围可以是5.3mm到6mm。
进一步地,所述可折叠灯1可以提供多种辐射方向不同的光源。具体地说,所述发光部11包括至少一发光件111,其中一个所述发光件111被实施为一发光灯板,其中所述发光灯板被实施为具有较长的长度和较小的宽度的狭长形状。
所述发光单元10进一步包括一发光部安装壳体12,其中所述发光部11被安装于所述发光部安装壳体12。所述发光部安装壳体12被安装于所述发光部连接壳体34。
被实施为所述发光灯板的所述发光件111被安装于所述发光部安装壳体12并且所述发光部安装壳体12形成一发光部安装槽120,所述发光灯板能够被容纳于所述发光部安装槽120并且能够沿着所述发光部安装槽120被抽出。
具体地说,所述发光部安装壳体12包括二安装侧面121,其中所述发光部安装槽120形成于两个所述安装侧面121之间。所述发光部安装壳体12进一步形成一上透光窗1201和一下透光窗1202,其中所述上透光窗1201和所述下透光窗1202分别位于所述发光部安装槽120的上下两侧。
所述上透光窗1201背向所述供电部21,所述下透光窗1202朝向所述供电部21。当所述发光部11被通电以发光时,光线可以分别通过所述上透光窗1201和 所述下透光窗1202朝外辐射。
另一个所述发光件111也可以被实施为一发光灯板,两个所述发光件111被被分别安装于所述发光部安装槽120并且分别朝向所述上透光窗1201和所述下透光窗1202。对于所述发光部11而言,所述发光部11能够朝向两侧发光。
另一个所述发光件111被安装于所述发光部安装壳体12的一自由端部,其中所述发光部安装壳体12具有两个端部,其中所述端部靠近于所述供电部21,另一个端部为自由端部。
被安装于所述自由端部的所述发光件111可以是一个LED灯珠。三个所述发光件111被分别可导通地连接于所述供电部21,并且值得注意的是,三个所述发光件111可以被分别控制。
进一步地,在本发明的一些实施例中,所述发光件111被实施为一双面COB,其能够在双面都发光。另一个所述发光件111可以被安装在所述双面COB的一自由端部,以在端部发光。
所述发光件111所在位置对应的所述发光部安装槽120的厚度B不小于1.8mm,整个所述发光部安装壳体12的厚度A不小于4.5mm。所述发光部安装壳体12内留出了足够的空间供所述发光件111散热。
更详细地说,所述发光单元10进一步包括至少一发光辅助件13,其中所述发光辅助件13的数目可以是二,一个所述发光辅助件13被容纳于所述上透光窗1201,另一个所述发光辅助件13被容纳于所述下透光窗1202,所述发光件111位于两个所述发光辅助件13之间并且和所述发光辅助件13保持一定的距离。所述发光部安装壳体12可以是金属材料制成的,以协助所述发光件111散热,比如说铝型材。
在本发明的一实施例中,所述发光部安装槽120的厚度可以是2mm或者是3mm,所述发光件111被容纳于所述发光部安装槽120。所述发光部安装壳体12的厚度可以是6.8mm,以在所述发光件111和所述发光部安装壳体12之间留出空间供散热,并且所述发光部安装壳体12本身也可以协助所述发光件111散热。
所述可折叠灯1进一步包括一开关50,其中所述发光件111被分别可控制地连接于所述开关50。所述可折叠灯1可以有多种工作模式,比如说三个所述发光件111分别单独发光,比如说三个所述发光件111中的两个所述发光件111两两发光,比如说三个所述发光件111同时发光等。
这要求至少有所述可折叠灯1提供至少三个回路,一个所述发光件111连接于一个回路。也就是说,所述导线40的数目是多个,比如说四个所述导线40,三个所述导线40分别连接于一个所述发光件111,还有一根所述导线40用于形成共用回路部分。
由于所述转轴33被偏心设置,因此在所述连接部30位置能够提供足够的空间供容纳多根所述导线40。
进一步地,所述发光部连接壳体34包括一第一部分发光部连接壳体341和一第二部分发光部连接壳体342,其中所述第一容纳空间340形成于所述第一部分发光部连接壳体341和所述第二部分发光部连接壳体342之间。所述连接头31可以一体延伸于所述发光部连接壳体34。
具体地说,所述连接头31的所述连接头壳体311可以包括一第一部分连接头壳体3111和一第二部分连接头壳体3112,其中所述第一部分连接头壳体3111和所述第二部分连接头壳体3112分别一体延伸于所述第一部分发光部连接壳体341和所述第二部分发光部连接壳体342。
所述发光部安装壳体12和所述发光部连接壳体34能够被相互可拆卸地连接。比如说所述发光部安装壳体12能够被插接进入到所述发光部连接壳体34的所述第一容纳空间340。或者是,所述发光部连接壳体34能够被插接进入到所述发光部安装壳体12的所述发光部11安装腔。
进一步地,所述连接座32的数目是二,所述连接座32分别位于所述连接头31的两侧。所述转轴33依次穿过一个所述连接座32、所述连接头31以及另一个所述连接座32。所述导线40可以通过两个所述连接座32中的一个和所述连接头31。
所述供电部连接壳体35包括一第一部分供电部连接壳体351和一第二部分供电部连接壳体352,其中所述第二容纳空间350形成于所述第一部分供电部连接壳体351和所述第二部分供电部连接壳体352之间。一个所述连接座32一体延伸于所述第一部分供电部连接壳体351,另一个所述连接座32一体延伸于所述第二部分供电部连接壳体352。
所述可折叠灯1进一步包括一电路板单元60,其中所述电路板单元60被容纳于所述供电部连接壳体35的所述第二容纳空间350。至少一所述导线40自所述电路板单元60朝向所述第二容纳空间350延伸。所述电路板单元60被可导通 地连接于所述供电部21。
所述发光部11的所述发光件111被可控制地连接于所述电路板单元60,所述电路板单元60被可控制地连接于所述开关50,从而通过控制所述开关50来控制所述发光件111。
所述开关50被设置于所述供电部连接壳体35的所述第一部分供电部连接壳体351或者所述第二部分供电部连接壳体352。
进一步地,所述可折叠灯1的所述供电单元20进一步包括一供电部安装壳体22,其中所述供电部安装壳体22具有一供电安装腔220,并且所述供电部21被容纳于所述供电部安装壳体22。
所述供电部连接壳体35能够被插接于所述供电部安装壳体22的所述供电安装腔220。或者是,所述供电部安装壳体22被插接于所述供电部连接壳体35的所述第二容纳空间350。
进一步,所述可折叠灯1不仅能够被握持在手中使用,还可以被挂在墙壁使用,从而解放用户的双手。
具体地说,所述可折叠灯1进一步包括一磁吸座70,其中所述磁吸座70被安装于所述供电部21的底端,当所述可折叠灯1被放置在桌面或者地面,所述磁吸座70能够起到支撑作用。
所述磁吸座70包括一磁吸座壳体71、至少一对磁铁72和一个磁吸增强件73,其中所述磁吸座壳体71形成两个收纳腔710,其中一对所述磁铁72中的一个被容纳于一个所述收纳腔710,另一个被容纳于另一个所述收纳腔710。
一对所述磁铁72的极性相反,其中所述磁吸增强件73被布置在所述磁铁72的附近以增强所述磁铁72的磁吸作用。
通过所述磁铁72的磁吸作用,所述磁吸座70能够被安装在铁制的墙壁,比如说参考附图8所示。
值得注意的是,所述供电部21能够支撑所述发光部11,并且在所述连接部30位置的阻力能够不小于所述发光部11的重力,以使得所述供电部21能够支撑所述发光部11于调整后的角度。进一步地,所述连接部30还可以包括一紧固件36,其中所述紧固件36被连接于所述转轴33,并且被连接于所述连接头31或者是所述连接座32,以使得增强所述转轴33转动时和所述连接头31、所述连接座32受到的阻力,从而可以将所述发光部11暂时固定在调整后位置。所述紧 固件36可以是一螺钉。
进一步地,所述磁吸增强件73和一个所述磁铁72被容纳于一个所述收纳腔710,所述磁吸增强件73和另一个所述磁铁72能够被容纳于另一个所述收纳腔710。
当所述磁吸座70被吸附于预期位置,两个所述磁铁72能够处于同一平面,以有利于所述磁吸座70的磁力。
当所述磁吸增强件73的数目是一个时,两个所述收纳腔710相互连通以使得所述磁吸增强件73的一部分可以位于一个所述收纳腔710并且所述磁吸增强件73的另一部分可以位于另一个所述收纳腔710。所述磁吸增强件73位于所述磁铁72内侧,当所述磁吸座70吸附于某一物体,所述磁铁72相对于所述磁吸增强件73更加靠近于外界物体。
当所述磁吸增强件73的数目是两个时,每一所述磁铁72可以被设置一个所述磁吸增强件73。
值得注意的是,所述磁铁72的数目可以是多对,比如说在一个所述收纳腔710内的作为S极的所述磁铁72的数目可以是两个或者更多,在另一个所述收纳腔710内的作为N极的所述磁铁72数目可以是两个或者更多。
所述磁吸增强件73可以使得所述磁铁72的吸力增强,并且所述磁吸增强件73可以作为一安装件使用。所述磁吸增强件73可以用于安装所述磁铁72,以使得所述磁铁72被牢固地安装于所述磁吸座壳体71。借助所述磁吸增强件73,所述磁吸座70也不需要特意设置用于安装所述磁铁72的嵌件。
所述磁吸增强件73可以被实施为一铁片、一钴片、或者是一镍片,或者是上述三种磁吸金属的混合物。
所述磁吸增强件73可以使得极性相反的两个所述磁铁72的磁性增强,并且结构简单,使用方便。
进一步地,所述磁吸座70的一个所述收纳腔710可以被连通于所述供电部安装壳体22的所述供电安装腔220。所述磁吸座壳体71可以和所述供电部安装壳体22一体成型,以有利于所述可折叠灯1的结构强度,也可以减少水分从所述磁吸座70和所述供电部安装壳体22连接位置进入到所述供电部21的可能性。
进一步地,所述可折叠灯1还可以包括一接口80,其中所述接口80位于所述供电单元20的所述供电部连接壳体35,所述接口80可以被导通于所述发光 部11以为所述发光部11传输电能。所述接口80可以被导通于所述供电部21以为所述供电部21传输电能。所述供电部21也可以通过所述接口80朝外传输电能。
所述接口80可以是但是并不限制于一USB接口、TYPE-C接口。
所述供电部21可以是一电池或者是多个电池,电池的种类并不对于本发明造成限制。
值得注意的是,在上述实施例中,所述发光部11和所述供电部21的导通通过所述导线实现,在本发明的另一些实施例中,所述发光部11和所述供电部21之间的导通可以通过导电触点、导电片等导电元件来实现,比如说所述供电部21可以形成有一个或者多个所述导电触点,所述导电触点可以位于所述发光部11和所述供电部21的连接处,当所述发光部11和所述供电部21相对转动时,所述导电触点和所述发光部11保持导通。
根据本发明的一方面,本发明提供所述可折叠灯1的一组装方法,其包括如下步骤:
藉由所述连接部30可相对于所述供电部21转动地安装所述发光部11于所述供电部21;和
连接所述发光部11和所述供电部21的导线穿过所述连接部30延伸于所述发光部11和所述供电部21之间。
根据本发明的至少一个实施例,在上述方法中,藉由一转轴33安装一连接头31于一连接座32,其中所述连接头31连接于所述发光部11,所述连接座32连接于所述供电部21。
根据本发明的至少一个实施例,在上述方法中,所述导线40自所述供电部21延伸至所述连接部30并且绕过位于所述连接部30内的所述转轴33以朝向所述发光部11延伸。
根据本发明的至少一个实施例,在上述方法中,所述连接部30被可朝向所述供电部21方向折叠,所述导线40自和折叠方向相反一侧绕过所述转轴33,从而当所述发光部11在朝向所述供电部21折叠时,所述导线40能够被拉伸。
根据本发明的至少一个实施例,在上述方法中,藉由一发光部安装壳体12安装所述发光部11。所述发光件111被发光区域朝向所述供电部21地安装于所述发光部安装壳体12,或者是所述发光件111被发光区域背向所述供电部21地 安装于所述发光部安装壳体12,或者所述发光件111被安装所述发光部安装壳体12的自由端部。
根据本发明的至少一个实施例,在上述方法中,插接所述发光部安装壳体12于一发光部连接壳体34,其中所述发光部连接壳体34连接所述连接头31和所述发光部安装壳体12。
根据本发明的至少一个实施例,在上述方法中,藉由一供电部安装壳体22安装所述供电部21。所述供电部21被容纳于所述供电部安装壳体22的所述供电部容纳腔220。
根据本发明的至少一个实施例,在上方方法中,插接所述供电部安装壳体22于一供电部连接壳体35,其中所述供电部连接壳体35连接所述连接座32和所述供电部安装壳体22。
根据本发明的至少一个实施例,在上述方法中,设置所述电路板单元60于所述供电部连接壳体35。
根据本发明的至少一个实施例,在上方方法中,设置于所述磁吸座70于所述供电部安装壳体22的底端。
根据本发明的另一方面,本发明提供了所述可折叠灯1的一工作方法,其包括如下步骤:
位于所述发光部安装壳体12的顶侧、底侧或者是端侧的至少一个位置的所述发光部11发光。
本领域的技术人员应理解,上述描述及附图中所示的本发明的实施例只作为举例而并不限制本发明。本发明的目的已经完整并有效地实现。本发明的功能及结构原理已在实施例中展示和说明,在没有背离所述原理下,本发明的实施方式可以有任何变形或修改。

Claims (40)

  1. 一可折叠灯,包括:
    一供电部;
    一发光部;
    至少一导线,所述发光部通过所述导线被可导通地连接于所述供电部;以及
    一连接部,其中所述连接部包括一连接头、一连接座以及一转轴,其中所述连接头和所述连接座分别位于所述供电部和所述发光部,并且所述连接头通过所述转轴被可转动地连接于所述连接座,从而所述发光单元被可绕所述转轴转动地连接于所述供电部以被朝向所述供电部折叠,其中所述转轴被设置为偏心地穿过所述连接头和所述连接座,以留出空间供所述导线通过所述连接部。
  2. 根据权利要求1所述的可折叠灯,其中所述连接头包括一第一容纳腔,所述连接座包括一第二容纳腔,其中所述第一容纳腔连通所述第二容纳腔并且所述第一容纳腔的中心轴线和所述第二容纳腔的中心轴线重合,所述转轴被偏心地分别穿过所述第一容纳腔和所述第二容纳腔,所述导线在所述第二容纳腔绕过所述转轴然后朝向所述第一容纳腔延伸。
  3. 根据权利要求1或2所述的可折叠灯,其中所述导线延伸于所述转轴的外侧,当所述发光部朝向所述供电部被转动,所述导线能够被拉伸。
  4. 根据权利要求1或2所述的可折叠灯,其中所述连接座的数目是二,所述连接头位于两个所述连接座之间。
  5. 根据权利要求2所述的可折叠灯,其中所述转轴到所述连接头内壁的距离不小于5mm。
  6. 根据权利要求1所述的可折叠灯,进一步包括一发光部安装壳体,其中所述发光部包括一发光件,其中所述发光件被安装于所述发光部安装壳体并且位于所述发光部安装壳体的底面一侧。
  7. 根据权利要求6所述的可折叠灯,其中所述发光部进一步包括另一所述发光件,其中所述发光件被安装于所述发光部安装壳体并且位于所述发光部安装壳体的顶面一侧。
  8. 根据权利要求6或7所述的可折叠灯,其中所述发光部进一步包括另一所述发光件,其中所述发光件被安装于所述发光部安装壳体并且位于所述发光部 安装壳体的一自由端部。
  9. 根据权利要求6所述的可折叠灯,其中所述发光部安装壳体具有一发光部容纳槽,其中所述发光部被可沿所述发光部容纳槽滑动以被拆卸地容纳于所述发光部容纳槽。
  10. 根据权利要求1所述的可折叠灯,进一步包括一发光部安装壳体并且所述发光部安装壳体具有一发光部容纳槽、一上透光窗和一下透光窗,其中所述上透光窗和所述下透光窗分别位于所述发光部容纳槽两侧并且分别连通于所述发光部容纳腔,所述发光部包括一双面COB,并且所述双面COB被容纳于所述发光部容纳腔以分别通过所述上透光窗和所述下透光窗朝外辐射光线。
  11. 根据权利要求10所述的可折叠灯,其中所述发光部容纳槽的厚度不小于1.8mm。
  12. 根据权利要求1、2、6或10所述的可折叠灯,进一步包括一供电部安装壳体,其中所述供电部安装壳体具有一供电部安装腔,其中所述供电部被容纳于所述供电部安装腔,所述连接座被连接于所述供电部安装壳体。
  13. 根据权利要求12所述的可折叠灯,进一步包括一磁吸座,所述磁吸座位于所述供电部安装壳体的底侧,其中所述磁吸座包括至少一对极性相反的磁吸件和至少一磁性增强件,其中所述磁性增强件位于所述磁吸件内侧。
  14. 根据权利要求13所述的可折叠灯,其中所述磁性增强件是一铁片,其中所述磁吸件是磁铁。
  15. 根据权利要求13所述的可折叠灯,其中所述磁吸座包括一磁吸座壳体,其中借助所述磁性增强件固定所述磁吸件于所述磁吸座壳体。
  16. 根据权利要求1所述的可折叠灯,进一步包括一发光部安装壳体、一供电部安装壳体、一发光部连接壳体以及一供电部连接壳体,其中所述发光部连接壳体连接所述连接头和所述发光部安装壳体,所述供电部连接壳体连接所述连接座和所述供电部连接壳体,其中所述发光部安装壳体具有一发光部安装槽,所述发光部被安装于所述发光部安装槽,所述供电部安装壳体具有一供电部安装腔,所述供电部被安装于所述供电部安装腔。
  17. 一可折叠灯的组装方法,包括如下步骤:
    通过一连接部的一转轴可转动地安装一发光部于一供电部;以及
    导线绕过被偏心设置在一连接座和一连接头的转轴以连接所述发光部和供 电部。
  18. 根据权利要求17所述的组装方法,其中在上述方法中,所述导线自所述供电部延伸至所述连接部的第一容纳腔然后经过所述转轴的外侧绕至所述连接部的第二容纳腔,其中所述转轴偏心地通过所述第一容纳腔和所述第二容纳腔。
  19. 一可折叠灯的工作方法,包括如下步骤:
    导线绕过被偏心设置在一连接座和一连接头的转轴以连接一发光部和一供电部。
  20. 根据权利要求19所述的工作方法,进一步包括如下步骤:
    所述发光部的不同发光区域发光。
  21. 一工作灯,其特征在于,包括:
    一灯棍;和
    一把手,其中所述灯棍被可转动以朝向所述把手折叠地安装于所述把手,其中所述灯棍的发光区域位于所述灯棍的长度方向并且朝向所述把手。
  22. 根据权利要求21所述的工作灯,其中所述灯棍的发光区域位于所述灯棍的长度方向并且背向所述把手。
  23. 根据权利要求21所述的工作灯,其中所述灯棍的发光区域位于所述灯棍的一自由端部。
  24. 根据权利要求22所述的工作灯,其中所述灯棍的发光区域位于所述灯棍的一自由端部。
  25. 根据权利要求21至24任一所述的工作灯,进一步包括至少一导线,其中所述灯棍包括一发光部,所述把手包括一供电部,其中所述发光部通过所述导线被可导通地连接于所述供电部。
  26. 根据权利要求25所述的工作灯,进一步包括一连接头、连接座和一转轴,其中所述连接头连接于所述发光部,所述连接座连接于所述供电部,所述连接头和所述连接座通过所述转轴相互可转动地连接,以使得所述发光部和所述供电部相互可转动地连接。
  27. 根据权利要求26所述的工作灯,其中所述转轴被设置为偏心地穿过所述连接头和所述连接座,以留出空间供所述导线通过所述连接部。
  28. 根据权利要求27所述的工作灯,其中所述连接头包括一第一容纳腔,所述连接座包括一第二容纳腔,其中所述第一容纳腔连通所述第二容纳腔并且所 述第一容纳腔的中心轴线和所述第二容纳腔的中心轴线重合,所述转轴被偏心地分别穿过所述第一容纳腔和所述第二容纳腔,所述导线在所述第二容纳腔绕过所述转轴然后朝向所述第一容纳腔延伸。
  29. 根据权利要求26所述的工作灯,其中所述导线延伸于所述转轴的外侧,当所述发光部朝向所述供电部被转动,所述导线能够被拉伸。
  30. 根据权利要求26所述的工作灯,其中所述连接座的数目是二,所述连接头位于两个所述连接座之间。
  31. 根据权利要求26所述的工作灯,其中所述转轴到所述连接头的距离不小于5mm。
  32. 根据权利要求25所述的工作灯,进一步包括一发光部安装壳体,其中所述发光部包括一发光件,其中所述发光件被安装于所述发光部安装壳体并且位于所述发光部安装壳体的底面一侧。
  33. 根据权利要求25所述的工作灯,进一步包括一发光部安装壳体并且所述发光部安装壳体具有一发光部容纳槽、一上透光窗和一下透光窗,其中所述上透光窗和所述下透光窗分别位于所述发光部容纳槽两侧并且分别连通于所述发光部容纳腔,所述发光部包括一双面COB,并且所述双面COB被容纳于所述发光部容纳腔以分别通过所述上透光窗和所述下透光窗朝外辐射光线。
  34. 根据权利要求33所述的工作灯,其中所述发光部容纳槽的厚度不小于1.8mm。
  35. 根据权利要求25、26、30或33所述的工作灯,进一步包括一供电部安装壳体,其中所述供电部安装壳体具有一供电部安装腔,其中所述供电部被容纳于所述供电部安装腔,所述连接座被连接于所述供电部安装壳体。
  36. 根据权利要求35所述的工作灯,进一步包括一磁吸座,所述磁吸座位于所述供电部安装壳体的底侧,其中所述磁吸座包括至少一对极性相反的磁吸件和至少一磁性增强件,其中所述磁性增强件位于所述磁吸件内侧。
  37. 根据权利要求36所述的工作灯,其中所述磁性增强件是一铁片,其中所述磁吸件是磁铁。
  38. 根据权利要求36所述的工作灯,其中所述磁吸座包括一磁吸座壳体,其中借助所述磁性增强件固定所述磁吸件于所述磁吸座壳体。
  39. 根据权利要求25所述的工作灯,进一步包括一发光部安装壳体、一供 电部安装壳体、一发光部连接壳体以及一供电部连接壳体,其中所述发光部连接壳体连接所述连接头和所述发光部安装壳体,所述供电部连接壳体连接所述连接座和所述供电部连接壳体,其中所述发光部安装壳体具有一发光部安装槽,所述发光部被安装于所述发光部安装槽,所述供电部安装壳体具有一供电部安装腔,所述供电部被安装于所述供电部安装腔。
  40. 根据权利要求21所述的工作灯,进一步包括一开关,其中所述发光部被可控制地连接于所述开关。
PCT/CN2020/093758 2019-09-30 2020-06-01 工作灯、可折叠灯及其组装方法和工作方法 WO2021063009A1 (zh)

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CN201921667539.7U CN211551533U (zh) 2019-09-30 2019-09-30 可折叠灯
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CN204593024U (zh) * 2015-05-11 2015-08-26 东莞市星点灯饰配件有限公司 可全方位旋转的拆卸式台灯
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