WO2021077752A1 - 一种发光鞋底及发光鞋 - Google Patents

一种发光鞋底及发光鞋 Download PDF

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Publication number
WO2021077752A1
WO2021077752A1 PCT/CN2020/093793 CN2020093793W WO2021077752A1 WO 2021077752 A1 WO2021077752 A1 WO 2021077752A1 CN 2020093793 W CN2020093793 W CN 2020093793W WO 2021077752 A1 WO2021077752 A1 WO 2021077752A1
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WO
WIPO (PCT)
Prior art keywords
light
midsole
groove
emitting
sole
Prior art date
Application number
PCT/CN2020/093793
Other languages
English (en)
French (fr)
Inventor
蔡清来
许金升
许金泰
郭献招
杨鑫杰
Original Assignee
信泰(福建)科技有限公司
福建省万物智联科技有限公司
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
Priority claimed from CN201921814822.8U external-priority patent/CN210696166U/zh
Priority claimed from CN201911026633.9A external-priority patent/CN110742350A/zh
Priority claimed from CN201922047500.1U external-priority patent/CN211354065U/zh
Priority claimed from CN201922483192.7U external-priority patent/CN212065862U/zh
Priority claimed from CN201922483252.5U external-priority patent/CN211532946U/zh
Priority claimed from CN201922483255.9U external-priority patent/CN211631949U/zh
Application filed by 信泰(福建)科技有限公司, 福建省万物智联科技有限公司 filed Critical 信泰(福建)科技有限公司
Publication of WO2021077752A1 publication Critical patent/WO2021077752A1/zh

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    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43BCHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
    • A43B13/00Soles; Sole-and-heel integral units
    • A43B13/14Soles; Sole-and-heel integral units characterised by the constructive form
    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43BCHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
    • A43B21/00Heels; Top-pieces or top-lifts
    • A43B21/24Heels; Top-pieces or top-lifts characterised by the constructive form
    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43BCHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
    • A43B3/00Footwear characterised by the shape or the use
    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43BCHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
    • A43B3/00Footwear characterised by the shape or the use
    • A43B3/30Footwear characterised by the shape or the use specially adapted for babies or small children
    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43DMACHINES, TOOLS, EQUIPMENT OR METHODS FOR MANUFACTURING OR REPAIRING FOOTWEAR
    • A43D25/00Devices for gluing shoe parts
    • A43D25/06Devices for gluing soles on shoe bottoms
    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43DMACHINES, TOOLS, EQUIPMENT OR METHODS FOR MANUFACTURING OR REPAIRING FOOTWEAR
    • A43D8/00Machines for cutting, ornamenting, marking or otherwise working up shoe part blanks

Definitions

  • the invention relates to the field of footwear, and more specifically to a luminous sole and a luminous shoe.
  • the luminous shoes on the market generally have luminous strips, luminous lamps or luminous light strips arranged on the upper, making the luminous shoes more fashionable and novel.
  • the luminous strips, luminous lamps or luminous light strips are also extremely It is easy to be damaged due to external force, such as repeatedly standing on tiptoe, causing the light-emitting bar, light-emitting lamp or light-emitting light bar to break or contact poorly, which greatly affects the light-emitting life of the light-emitting shoes.
  • a luminous sole which is characterized in that it comprises a midsole and an outsole connected to the midsole, the midsole is equipped with an electronic unit, and the electronic unit It includes a light-emitting light bar and a control chip for driving the light-emitting light bar to turn on and off, and a light-transmitting part for transmitting light of the light-emitting light bar is arranged at the midsole and/or the outsole.
  • the midsole is provided with a lamp installation groove for the installation of the light-emitting light bar and a box installation groove for the installation of the installation groove, the lamp installation groove and the box installation groove communicate with each other, and the light-emitting lamp The bar is electrically connected to the output terminal of the control chip.
  • the midsole is provided with a lamp installation groove for installing the light-emitting light bar and a box installation groove for installing the installation groove
  • the midsole is provided with a through hole
  • the lamp installation groove is connected to the The box installation grooves communicate with each other through the through hole, and the light-emitting light bar passes through the through hole and is electrically connected to the output terminal of the control chip.
  • the light-transmitting portion includes a plurality of light-transmitting windows, and a plurality of the light-transmitting windows are respectively provided at the side of the midsole corresponding to each of the lamp installation grooves, and each of the lamp installation grooves is respectively corresponding to the Each of the light-transmitting windows communicate with each other;
  • the outsole is an outsole made of a light-transmitting material, and the portion of the outsole corresponding to the light from the light-emitting light bar constitutes the light-transmitting part; or
  • the midsole is a midsole made of a light-transmitting material, and a portion of the midsole corresponding to the light from the light-emitting light bar constitutes the light-transmitting part.
  • a luminous sole comprising a midsole, an outsole connected to the midsole, and a flexible light emitting element arranged between the midsole and the outsole, characterized in that: the midsole is provided with a plurality of side surfaces.
  • a light-emitting groove, a plurality of mid-sole grooves are opened on the bottom surface of the midsole, each of the light-emitting grooves is respectively connected to the nearest mid-sole groove, and each of the light-emitting grooves is connected to each
  • the midsole grooves together form a connected circuit channel, the flexible light-emitting element is installed in the circuit channel, and a plurality of extended outsoles are respectively extended on the sides of the outsole.
  • each of the extended outsoles respectively covers the corresponding light-emitting groove, wherein the extended outsole is an outsole made of a light-transmitting material.
  • a luminous sole comprising a midsole, an outsole connected to the midsole, and a flexible light emitting element arranged between the midsole and the outsole, characterized in that: the midsole is provided with a plurality of side surfaces.
  • a light-emitting groove, a plurality of mid-sole grooves are opened on the bottom surface of the midsole, each of the light-emitting grooves is respectively connected to the nearest mid-sole groove, and each of the light-emitting grooves is connected to each
  • the midsole grooves together form a connected circuit channel, the flexible light-emitting element is installed in the circuit channel, and a plurality of extended outsoles are respectively extended on the sides of the outsole.
  • each of the extended outsoles respectively covers the corresponding light-emitting groove, wherein the extended outsole is an outsole made of a light-transmitting material.
  • the light-emitting element is an optical fiber assembly
  • the optical fiber assembly includes an optical fiber and a transparent sleeve sheathed with the optical fiber, both ends of the optical fiber are connected to a luminous body, and the luminous body is mounted on the Inside the installation box, and the luminous body is electrically connected to the output terminal of the control device.
  • the side of the midsole is provided with a plurality of outsole recesses, each of the outsole recesses extends to the edge of the bottom surface of the midsole, and each of the outsole recesses and each of the light-emitting grooves They are arranged one-to-one, and each of the light-emitting grooves is respectively located in the corresponding outsole concave portion, and each of the outsole concave portions is respectively matched with the corresponding extended outsole.
  • a luminous sole which is characterized in that it comprises an inner sole, a midsole, a light emitting element and a mounting box containing a control device, the inner sole is mounted on the midsole, and the midsole and the outsole are connected to each other
  • the upper bottom surface of the midsole is provided with an annular groove for installing the light-emitting element, and the midsole is provided with a box groove for installing the mounting box.
  • the annular groove and the The box grooves are communicated with each other, the side of the midsole is provided with a plurality of light-transmitting windows, each of the light-transmitting windows is connected with the annular groove, and the side of the outer sole has a plurality of extensions extending upward Outsole, when the outsole and the midsole are connected, each of the extended outsoles respectively covers the corresponding light-transmitting window, wherein the extended outsole is an outsole made of a light-transmitting material.
  • an annular side wall extends upward from the side of the midsole, the midsole is surrounded by the annular side wall to form a midsole cavity, and the midsole is installed in the midsole cavity.
  • a light-emitting shoe sole which is characterized by comprising a midsole, a control device, and a U-shaped light-emitting element connected to the control device.
  • the midsole includes a forefoot portion corresponding to the forefoot of the human body and a foot corresponding to the arch of the human foot.
  • the bow part and the heel part corresponding to the heel of the human body;
  • the control device is connected to the U-shaped light-emitting element as a whole, and the control device includes a power supply module, a PCB board, a microprocessor arranged on the PCB board, and controls the U-shaped light-emitting element and the power supply
  • the controller for electrically connecting or disconnecting the module, the U-shaped light-emitting element;
  • the upper end surface of the midsole encircles the outer circumference of the arch portion and the heel portion and is recessed with a first recessed portion;
  • the upper end surface of the arch of the foot is flush with the upper end surface of the heel, and the upper end of the arch of the foot is lower than the upper end of the forefoot;
  • the upper end surface of the heel portion is recessed downwardly with a first U-shaped groove around its outer periphery, the first U-shaped groove is adapted to the U-shaped light-emitting element, and the first U-shaped groove
  • the middle part of the upper end surface of the arch of the foot is recessed downwardly with a first groove adapted to the control device, and the first groove is arranged so that the arch of the foot
  • a second boss is formed on both sides of the part, and the first U-shaped groove communicates with the first groove to form a receiving groove for accommodating the control device and the U-shaped light-emitting element;
  • the upper end surface of the device is flush with the upper end surface of each of the second bosses, and the upper end surface of the U-shaped light-emitting element is flush with the upper end surface of the first boss;
  • the sole also includes a waterproof and shock-absorbing midsole back cover arranged above the arch portion and the heel portion, the lower end surface of the midsole back cover and the first boss and each The upper end surface of the second boss is bonded by glue;
  • the front part of the midsole back cover and the back part of the forefoot part are glued together, and after bonding, the upper end surface of the midsole back cover is flush with the upper end surface of the forefoot part;
  • the outer peripheral edge of the upper end surface of the midsole rear cover is recessed with a second recessed portion 416 downward, and the upper end surface of the second recessed portion 416 forms a step surface surrounding the outer peripheral edge of the midsole rear cover;
  • the sole also includes a U-shaped light-emitting element cover sleeved on the outer peripheral edge of the first recessed portion and the outer peripheral edge of the midsole back cover;
  • the U-shaped light-emitting element cover includes a clamping side wall and a The upper end of the side wall is clamped and the clamping platform is adapted to the step surface, the part of the U-shaped light-emitting element cover corresponding to the U-shaped light-emitting element is a transparent light-transmitting part;
  • the clamping platform and The step surface is adhered by glue;
  • the inner peripheral edge of the clamping side wall and the outer peripheral edge of the first recessed portion and the outer peripheral edge of the midsole rear cover are adhered by glue;
  • the shoe sole also includes an outsole, and the outsole is bonded to the upper end surface of the forefoot and the upper end surface of the midsole back cover.
  • a number of notches are provided on the card connection platform.
  • the controller is a pressure sensor switch with a pressure sensitive resistor.
  • the lower end surface of the midsole rear cover is provided with elastic bumps at a position corresponding to the varistor.
  • the lower end of the front part of the midsole rear cover is provided with an L-shaped notch
  • the upper end of the front part of the arch of the foot is provided with a third boss adapted to the L-shaped notch.
  • the third boss and the L-shaped notch are adhered by glue.
  • a light-emitting sole characterized in that: the sole body includes a midsole, a light-emitting module, a shell, and a lower sole; the side of the sole body that contacts the ground is the lower sole, and the opposite side is the midsole.
  • the module is arranged in the midsole, the upper surface of the shell is attached to the midsole, and the lower surface is attached to the bottom of the bottom.
  • the midsole is provided with two first grooves for attaching to the shell for accommodating light.
  • the receiving slot of the module includes a second groove for embedding the light-emitting module and a third groove for embedding the light bar of the light-emitting module;
  • the light-emitting module includes a mounting box and a mounting box For the electrically connected light bar, the mounting box is inserted into the second groove, and the light bar is inserted into the third groove.
  • the part of the midsole corresponding to the forefoot is the forefoot
  • the part corresponding to the arch of the foot is the arch part
  • the part corresponding to the heel is the heel part
  • the second groove is provided in the arch of the midsole.
  • the two first grooves and the third groove are arranged at the heel part of the midsole, and the third groove is located between the two first grooves.
  • the housing includes an outer frame, and from top to bottom, the outer frame is a light-shielding area, a light-transmitting area, and a light-shielding area respectively corresponding to the first groove, the third groove, and the first groove connected to the midsole. groove.
  • the preparation method of the luminous shoes is as follows:
  • Step 1 Upper preparation: prepare shoe uppers and shoe upper accessories.
  • the shoe upper accessories include tongue, back lining, inner lining, toe lining, heel lining, and performing necessary pretreatment on the above components.
  • the pretreatment process includes edge, seamless, sewing and filming, and then use sutures to connect and fix the shoe upper and shoe upper accessories;
  • Step two pull the upper: stitch the prepared upper and the chopped midsole lining, and then put on the last to shape;
  • Step 3 Bottom making: Place the mounting box of the light-emitting module in the second groove, and place the light bar of the light-emitting module in the third groove; attach the housing to the first groove, Align and fix the push switch bump and the charging port penetration hole on the shell with the push switch and the charging port of the light-emitting module; attach the bottom or bottom edge of the shell to the rubber bottom;
  • Step 4 Attaching the sole: Adhere the shaped upper and the prepared integrated sole, first heat the upper and the glue on the sole to 60 ⁇ 80°C at the same time, then glue and compress it in position, and then pass it through the cold The box is cooled to 0° ⁇ 10°C;
  • Step 5 take off the last: take off the last in the shoe cavity to complete the production of the whole shoe.
  • the light-transmitting manufacturing method of the shell is specifically as follows: S1, adopting the structure of translucent TPU, and coloring it; S2, performing structural atomization treatment on the inner surface of the translucent TPU structure; S3, translucent TPU The outer surface of the structure of the TPU is polished; S4. A push switch bump that matches the push switch and the charging port and a charging port through hole with a waterproof ring are installed at the front end of the mounting box, and the luminous body The output terminal of the microprocessor is electrically connected.
  • the present invention has the following beneficial effects: the light-emitting light bar is installed at the midsole to effectively prevent the light-emitting light bar from breaking, and the service life of the light-emitting light bar is increased, thereby increasing the light-emitting life of the present invention.
  • the side of the midsole and/or the outsole are provided with light-transmitting parts, so it is easy to transmit the light emitted by the light-emitting light bar, and the light-emitting effect of the present invention is more obvious.
  • FIG. 1 is a schematic structural diagram of Embodiment 1 of Embodiment 1 of the present invention.
  • FIG. 2 is a schematic diagram of the structure of the mating surface of the midsole in Example 1 of Embodiment 1 of the present invention
  • Embodiment 2 of Embodiment 1 of the present invention is a schematic structural diagram of Embodiment 2 of Embodiment 1 of the present invention.
  • FIG. 4 is a schematic view of the structure of the mating surface of the midsole in the second embodiment of the first embodiment of the present invention.
  • Embodiment 3 of Embodiment 1 of the present invention is a schematic structural diagram of Embodiment 3 of Embodiment 1 of the present invention.
  • Embodiment 4 of Embodiment 1 of the present invention is a schematic structural diagram of Embodiment 4 of Embodiment 1 of the present invention.
  • FIG. 7 is a schematic structural diagram of a light-emitting shoe made by using the light-emitting sole described in Example 4 in Embodiment 1 of the present invention.
  • FIG. 8 is a schematic diagram of the structure of the sole in the second embodiment of the present invention.
  • Fig. 9 is an exploded schematic diagram of the sole in the second embodiment of the present invention.
  • FIG. 10 is a schematic diagram of the bottom surface structure of the shoe midsole in Embodiment 2 of the present invention.
  • FIG. 11 is a schematic diagram of the structure of the sole in the third embodiment of the present invention.
  • Figure 12 is an exploded schematic diagram of the sole of the third embodiment of the present invention.
  • FIG. 13 is a schematic diagram of assembling the light-emitting element and the shoe midsole in Embodiment 3 of the present invention.
  • Figure 14 is a top view of the sole in the third embodiment of the present invention (the insole is omitted)
  • FIG. 15 is a perspective schematic diagram of Embodiment 4 of the present invention when it is being placed; FIG.
  • 16 is an exploded schematic diagram of the outsole and the midsole in the fourth embodiment of the present invention when it is undercut;
  • FIG. 17 is an exploded schematic diagram of various components when undercut in Embodiment 4 of the present invention.
  • FIG. 19 is a schematic diagram of a U-shaped light-emitting element cover according to Embodiment 4 of the present invention.
  • FIG. 20 is a front view of a structure split of Embodiment 5 of the present invention.
  • FIG. 21 is a perspective view of the structure of the fifth embodiment of the present invention.
  • a luminous sole as shown in Figures 1-6, includes a midsole 10 and an outsole 20.
  • the midsole 10 and the outsole 20 are connected to each other.
  • the midsole 10 is equipped with an electronic unit.
  • the electronic unit includes a light bar 103 and a control chip.
  • the control chip is used to control the on and off of the light-emitting light bar, and the side of the midsole 10 and/or the outsole 20 are provided with light-transmitting parts for transmitting the light of the light-emitting light bar 103.
  • the light-emitting light bar 103 mentioned here can also be a light-emitting lamp or a light-emitting bar.
  • the control chip is installed in the mounting slot 104 to protect the control chip.
  • the above-mentioned light-transmitting part has various structures, and the specific structure will be described below.
  • the first structure is: the light-transmitting part includes a light-transmitting window 101, and the side of the midsole 10 is provided with a light-transmitting window 101.
  • the light-transmitting window 101 is a light-transmitting window made of a light-transmitting material.
  • the light-transmitting material may be Transparent rubber material or transparent TPU material, and the light-transmitting window 101 is located within the light projection range of the luminous light bar;
  • the above-mentioned light-transmitting portion includes multiple light-transmitting windows 11, and the number of light-transmitting windows 101 is set according to the actual situation of the midsole 10.
  • the second structure the midsole 10 is a midsole made of a light-transmitting material, and the midsole 10 forms a light-transmitting part corresponding to the part where the light of the light-emitting light bar 103 is transmitted.
  • the third structure the outsole 20 is an outsole made of a light-transmitting material, and the outsole 20 forms a light-transmitting part corresponding to the part where the light of the light-emitting light bar 103 is transmitted.
  • the fourth structure the side of the midsole 10 is provided with a light-transmitting window 101, the light-transmitting window 101 is located within the light projection range of the light-emitting light bar, and the light-transmitting window 101 is an outsole made of light-transmitting material, and the outsole 20
  • the light-transmitting window 101 and the outsole 20 corresponding to the part of the light-emitting light bar 103 to form the light-transmitting part; in addition, the light-transmitting window 101 can have multiple, in this case the outsole 20, the part where light from the light-emitting light bar 103 passes through and the plurality of light-transmitting windows 101 together constitute a light-transmitting part.
  • the structure of the electronic unit that is, there are various mounting structures of the light-emitting light bar 103 and the mounting groove 104, and the structure of the above-mentioned light-transmitting part can be carried out according to the different mounting structures of the light-emitting light bar 103 and the mounting groove 104. Different arrangements.
  • the installation structure of the light-emitting light bar 103 and the installation slot 104 will be described in detail below.
  • the side where the midsole 10 and the outsole are in contact with each other is used as the mating surface, and the side facing away from each other is the away surface.
  • the light-emitting light bar 103 and the installation groove 104 are both installed at the mating surface 109 of the midsole 10.
  • the mating surface 109 of the midsole 10 is provided with a light installation groove 105 and a box installation groove 106, respectively, and the light installation groove 105 and the box installation groove 106 are both along the mating surface 109 of the midsole 10.
  • the installation groove 105 is matched with the light-emitting light bar 103 and is used for installing the light-emitting light bar 103; the box installation groove 106 is matched with the installation groove 104 and is used for installing and placing the box 104.
  • the end of the light-emitting light bar 103 close to the box installation groove 106 extends into the installation groove 104 and is electrically connected to the output end of the control chip inside.
  • the box installation groove 106 is located at the waist of the midsole 10, and the light installation groove 105 is arranged in a serpentine shape and is located at the forefoot or the heel of the midsole 10.
  • the above-mentioned light-transmitting portion may be any structure from the first structure to the fourth structure of the aforementioned light-transmitting portion.
  • the light-transmitting window 101 and the lamp mounting groove 105 are in communication with each other, and when the light mounting groove 105 is located at the forefoot of the midsole 10, light is transmitted
  • the window 101 is located at the side of the forefoot portion of the midsole 10; when the light installation groove 105 is located at the heel of the midsole 10, the light-transmitting window 101 is located at the side of the heel portion of the midsole 10.
  • a plurality of light-transmitting windows 101 are provided on the side of the midsole 10, and each light-transmitting window 101 is connected with the lamp installation groove 105, so that the light-emitting strip 101 can pass light through the light-transmitting The window 101 transmits through.
  • the light-emitting light bar 103 when the above-mentioned light-transmitting part is of the first structure, the light-emitting light bar 103 emits light, and light is partially transmitted from the side of the midsole 10; when the above-mentioned light-transmitting part is of the second structure, the midsole 10 When the light-transmitting part is the third structure, the whole of the outsole 20 transmits light; when the light-transmitting part is the fourth structure, the side of the midsole 10 is partially transparent Light is emitted, and the whole of the outsole 20 emits light.
  • Each light-emitting light bar 103 and light mounting groove 105 are arranged one to one, and each light mounting groove 105 communicates with the same box mounting groove 106, and the end of each light-emitting light bar 103 close to the box mounting groove 106 extends Into the installation slot 104, and are respectively electrically connected to the output end of the same control chip, so that the same control chip can control the on and off of each light-emitting light bar 103.
  • the two light-emitting light bars 103 are arranged in a serpentine shape.
  • One light-emitting light bar 103 is arranged on the forefoot of the midsole 10, and the other light-emitting light bar 103 is arranged on the forefoot of the midsole 10.
  • each light-emitting light bar 103 is equipped with multiple light-transmitting windows 101 (with each light-emitting light bar 103 Two light-transmitting windows 101 are provided for example).
  • the two light-transmitting windows 101 of the same light-emitting light bar 103 are respectively provided on opposite sides of the midsole 101, and each light-transmitting window 101 is connected to a corresponding lamp.
  • the installation groove 105 communicates with each other.
  • the difference between this embodiment and the first embodiment is that the above-mentioned placement box 104 is installed on the away surface 110 of the midsole 10.
  • the midsole 10 is provided with a box mounting groove 106 for mounting the mounting groove 104 at the waist of the shoe away from the surface 110, and the midsole 10 is provided with a through hole 102, and the through hole 102 is along the mating surface 109 of the midsole 10. It is arranged in a direction away from the surface 110, and the through hole 102 is located in the box installation groove 106.
  • the lamp installation groove 105 and the box installation groove 106 arranged in the manner described in the first embodiment communicate with each other through the through hole 102. In this way, when the light-emitting light bar 103 is installed in the lamp installation groove 105, the light-emitting light bar 101 is installed close to the box.
  • One end of the slot 106 sequentially passes through the through hole and extends into the mounting slot 104, and is electrically connected to the output terminal of the control chip in the mounting slot 104.
  • each light-emitting light bar 103 and each through hole 102 are arranged one to one, that is, the corresponding end of each light-emitting light bar 103 Pass through the corresponding through holes 102 respectively, and are located at the mating surface 109 of the midsole 10.
  • the difference between this embodiment and the first embodiment is that at least one light-emitting light bar 103 is also installed on the away surface 110 of the midsole 10.
  • two light-emitting light bars 103 are installed at the facing surface 110 of the midsole 10 as an example.
  • the waist of the midsole 10 is also provided with two lamp installation grooves 105 at the facing surface 110 of the midsole.
  • the light mounting grooves 105 and the light-emitting light bars 103 are respectively arranged one to one at the facing surface 110 of the, and the two light mounting grooves 105 are arranged along the width direction of the midsole 10 in turn, and are separately provided on both sides of the box mounting groove 106.
  • the midsole 10 is provided with through holes 102.
  • the number of through holes 102 is the same as the number of the light-emitting light bars 101 located on the deviating surface 110, and they are arranged one to one, and each through hole is along the center of the midsole 10.
  • the deviating surface 110 is arranged in the direction of the mating surface 109, and each through hole 102 is located in the box installation groove 106 described above. In this way, the ends of the two light-emitting light bars 103 that are located away from the surface 110 close to the box mounting groove 106 respectively pass through the corresponding through holes (not shown in the figure), and extend into the mounting groove 104 to control the output of the chip. Terminals are electrically connected.
  • the light-emitting light bars at the facing surface 110 of the midsole 10 are replaced with light-emitting boards 107.
  • the facing surface 110 of the midsole 10 is provided with a plurality of board mounting grooves 108, and each board mounting groove 108
  • Each light-emitting board 107 is arranged one-to-one, and each board mounting slot 108 communicates with the same box mounting slot 106, and each light-emitting board 107 is a flexible light-emitting board that is already on the market.
  • the light-emitting board 107 when the light-transmitting part is the first and fourth structures described above, the light-emitting board 107 is arranged along the width direction of the midsole 10, and the side of the midsole 10 corresponds to the light-emitting board 107.
  • a light-transmitting window 101 is also provided, so that the light-emitting panel 107 transmits the light emitted from the corresponding two light-transmitting windows 101 to further improve the light-emitting effect of the midsole 10.
  • a light-emitting light bar 103 is also installed at the deviating surface 110 of the midsole 10.
  • the midsole 10 is also provided with a light installation groove 105 at the waist of the shoe away from the surface 110; at the reverse surface 110 of the midsole 10, the light installation groove 105 and the light-emitting light bar 103 are arranged one-to-one, and the two lights
  • the installation grooves 105 are arranged along the width direction of the midsole 10 in turn, and are separately provided on both sides of the box installation groove 106.
  • the two light-emitting light bars 103 located on the facing surface 110 of the midsole 10 are connected with the box installation groove 106 so as to be located in the middle.
  • the ends of the two light-emitting light bars 103 of the bottom 10 facing away from the surface 110 extend into the mounting slot 104, and both are electrically connected to the output terminal of the control chip.
  • the light-emitting light bars at the facing surface 110 of the midsole 10 are replaced with light-emitting boards 107.
  • the facing surface 110 of the midsole 10 is provided with a plurality of board mounting grooves 108, and each board mounting groove 108
  • Each light-emitting board 107 is arranged one-to-one, and each board mounting slot 108 communicates with the same box mounting slot 106, and each light-emitting board 107 is a flexible light-emitting board that is already on the market.
  • the two light-emitting boards 107 are separately arranged on both sides of the mounting groove 104, and the two light-emitting boards 107 are arranged in the width direction of the midsole 10; when the light-transmitting part is the above-mentioned first In the first and fourth configurations, the sides of the midsole 10 correspond to the two light-emitting panels 107 with light-transmitting windows 101 respectively, so that the two light-emitting panels 107 can respectively transmit the light emitted from the corresponding light-transmitting windows 101 Go out to further improve the luminous effect of the midsole 10.
  • each light-emitting light bar 103 mentioned above is a flexible LED light bar, and each light-emitting light bar may also be a multi-color LED light bar.
  • the light-emitting panels mentioned in the third and fourth embodiments are all light-emitting panels with built-in multi-color LED lamp beads or multi-color LED light bars.
  • the electronic unit further includes a pressure sensor, the output end of the pressure sensor is electrically connected to the input end of the control chip, and the pressure sensor is installed in the midsole 10 or the outsole.
  • a luminous sole as shown in Figures 8-10, includes a midsole 10, an outsole 20 and a flexible light emitting element 204.
  • the midsole 10 is connected to the outsole 20 in a conventional manner, for example, the two are glued. Fixed, the flexible light-emitting element 204 is arranged between the midsole 10 and the outsole 20.
  • the bottom surface of the midsole 10 is provided with a number of midsole grooves 202, and the side of the midsole 10 is provided with a number of light-emitting grooves 201.
  • the light-emitting grooves 201 are sequentially spaced apart, and each light-emitting groove 201 is In a strip shape, the two ends of each light-emitting groove 201 respectively extend to the side edges of the midsole 10, and respectively communicate with the nearest midsole groove 202.
  • Each mid-sole groove 202 and each light-emitting groove 201 are adapted to the flexible light-emitting element 204, and each light-emitting groove 201 and each mid-bottom groove 202 jointly form a connected route channel, and the flexible light-emitting element 204 is installed in Inside the route channel.
  • Each extended outsole 50 and each light-emitting groove 201 are respectively arranged one to one, and each extended outsole 50 is attached to the inner sole 10
  • the side surfaces respectively cover the corresponding light-emitting grooves 201, and the extended outsole 50 is an outsole made of light-transmitting material.
  • the extended outsole 50 and the outsole 20 are integrally formed.
  • the shoe sole also includes a control device, which is installed in the installation box 40.
  • a box accommodating groove is opened on the bottom surface of the midsole 10, and the box accommodating groove is adapted to the installation box 40 so that the installation box 40 can be installed in the box accommodating groove.
  • the box containing groove and the nearby mid-bottom groove 202 are communicated with each other through a through groove.
  • the through groove can be one or two, and the number of the through groove is selected according to the actually used light-emitting element.
  • the control device includes a microprocessor and a power supply device.
  • the power output end of the power supply device is electrically connected to the power input end of the microprocessor so that the power supply device provides working power to the microprocessor.
  • Both the microprocessor and the power supply device are installed in a conventional manner. ⁇ installation box 40.
  • the power supply device includes a battery.
  • the battery is an existing conventional battery, such as a lithium battery with a model of FIT-BAT
  • the microprocessor is an existing conventional microprocessor, such as a microprocessor with a model of ADM691ARWZ.
  • the above-mentioned flexible light-emitting element can be an LED light bar or an optical fiber assembly.
  • the flexible light-emitting element is an LED light bar, and the LED light bar is electrically connected to the output terminal of the microprocessor.
  • a through groove is opened between the box containing groove and the nearby mid-bottom groove 202, and the middle bottom groove 202 communicates with the box containing groove through the corresponding through groove, so that the above-mentioned route channel is connected to the box containing groove.
  • make one end of the LED light bar extend into the installation box 40.
  • the flexible light-emitting element is an optical fiber assembly.
  • the optical fiber assembly includes an optical fiber and a transparent sleeve sleeved on the optical fiber. Both ends of the optical fiber are connected to a luminous body, so that the optical fiber emits light through the luminous body.
  • the luminous body may have at least one luminous body, The number of luminous bodies is set according to the actual production situation. This embodiment takes one luminous body as an example.
  • the luminous body is electrically connected to the output end of the microprocessor, and the optical fiber radiates the light from the transparent sleeve.
  • the principle of luminescence is a well-known technology.
  • a through groove is opened between the box containing groove and the nearby mid-bottom groove 202, that is, two through grooves, and the two mid-bottom grooves 202 communicate with each other through the corresponding through groove and the box containing groove, so as to make
  • the above-mentioned route channel is connected to the box containing groove, and the two ends of the optical fiber respectively extend into the installation box through the corresponding through grooves.
  • control device also includes a wireless unit, and the microprocessor communicates with an external mobile device through the wireless unit, the mobile device may be a mobile phone, etc., to control the on and off of the flexible light-emitting element through the mobile device.
  • the wireless unit adopts an existing conventional wireless unit, such as a Bluetooth chip of Nordic52810 model.
  • control device may also include an on-off switch installed on the shoe body provided with the sole.
  • the on-off switch is electrically connected to the output terminal of the microprocessor, and the on-off switch is manually pressed to control the operation of the flexible light-emitting element. On and off.
  • each light-emitting groove 201 there are 6 light-emitting grooves 201, and the flexible light-emitting element 204 is an LED light bar as an example for description.
  • Each midsole groove 202 is arranged as shown in FIG. 10, and each light-emitting groove
  • each midsole groove 202 on the bottom surface of the midsole 10 can be set according to actual conditions, such as the position of the box containing groove, the position of each light-emitting groove 201, and the number of The number and the position and number of the midsole grooves 202 are not limited to the arrangement route shown in FIG. 9 and FIG. 10.
  • a luminous sole as shown in Figures 11-14, includes an insole 10, a midsole 20, and an outsole 30.
  • the insole 10 is laid on the midsole 20, and the midsole 20 is connected in a conventional manner.
  • FIG. 12 For the convenience of description, the orientation shown in FIG. 12 is taken as the reference direction of the present invention.
  • the sole includes a light-emitting element 305 and a mounting box 40.
  • the control device is installed in the mounting box 40.
  • the light-emitting element 305 and the mounting box 40 are both installed at the midsole 20 of the shoe.
  • a box groove 303 and an annular groove 301 are respectively provided on the upper bottom surface and the edge of the midsole 20.
  • the box groove 303 and the annular groove 301 communicate with each other, and the side surface of the midsole 20 is provided with several transparent holes.
  • each light transmitting window 302 is connected to the annular groove 301, a number of extended outsoles 40 extend upward from the side of the outsole 30, and each light transmitting window 302 and each extended outsole 40 are one-to-one respectively When the midsole 20 and the outsole 30 are connected, each extended outsole 40 is attached to the side of the midsole 20 and covers the corresponding light-transmitting windows 302 respectively.
  • the light-emitting element 305 is placed in the annular groove 301, and the light-emitting element 305 fits into the annular groove 301.
  • the light-emitting element 30 does not protrude from the annular groove 301.
  • the box groove 303 is installed in the shoe midsole 10 at a position corresponding to the arch of the human body, and the box groove 303 is matched with the installation box 40, the installation box 40 is installed in the box groove 303, when the box 40 is installed When installed in the box groove 303, the upper box surface of the installation box 40 is flush with the upper bottom surface of the midsole 20.
  • the upper bottom surface of the midsole 20 is also provided with a communicating groove 24, and one or two communicating grooves 24 are provided.
  • the annular groove 301 communicates with the box groove 303 through the communicating groove 24, and expands. Ground, if there are two communicating grooves 24, one end of the annular groove 301 and the box groove 303 are connected through one of the communicating grooves 24, and the other end of the annular groove 301 is connected to the box groove 303.
  • the light emitting element 305 is installed in the annular groove 301, and both ends of the light emitting element 305 respectively extend into the same mounting box 40 through the corresponding connecting groove 24;
  • the above-mentioned light-transmitting windows 302 are arranged at intervals along the side of the midsole 20, and the number of light-transmitting windows 302 and the position on the side of the midsole 20 are arranged according to the actual situation in the sole design process, and are not limited to In the number and position shown in FIG. 2, the light-transmitting windows 302 are arranged from the outside to the inner side of the midsole 20, and the light-transmitting windows 302 are connected with the annular groove 301, so that the light-emitting element 305 is lit. At this time, the light emitted by the light-emitting element 305 is led to the outside of the midsole 20 of the shoe.
  • each of the above-mentioned extended outsoles 40 is attached to the corresponding position of the side of the midsole 20 in a conventional manner.
  • each extended outsole 40 is glued to the side of the midsole 20, and the corresponding light-transmitting The window 302 is covered.
  • each extended outsole 40 has an n-shape, and each extended outsole 40 may also have other shapes that can cover the corresponding light-transmitting window 302, such as a circular shape, a star shape, or a hemispherical shape.
  • each The extension outsole and the shoe outsole 30 are an integral structure, and the shoe outsole 30 is an outsole made of light-transmitting materials.
  • the shoe outsole 30 is an outsole made of transparent TPU.
  • the side of the upper bottom surface of the shoe midsole 20 extends upwards with an annular side wall 306, the shoe midsole 20 is surrounded by the annular side wall 306 to form a midsole cavity 307, and the shoe insole 10 is laid in the midsole cavity In 307, the side surrounded by the annular side wall 306 is the inner side, and the opposite side is the outer side.
  • the annular groove 301 is located on the inner side of the annular side wall 306.
  • the arrangement of the annular side wall 306 enables the light emitting element to be located on the shoe midsole 20. Central.
  • the midsole 20 and the annular side wall 306 are integrally formed.
  • the control device includes a microprocessor and a power supply device.
  • the power input end of the microprocessor is electrically connected to the power output end of the power supply device.
  • the power supply device may be a rechargeable battery or a lithium battery.
  • the microprocessor adopts an existing well-known microprocessor, for example, a microprocessor whose model is ADM691ARWZ.
  • the power supply device is a rechargeable battery
  • a USB charging interface is provided at the heel of the midsole 20, and the USB interface communicates with the above-mentioned box groove 303 to charge the rechargeable battery through an external power source.
  • the external charging method is a known technology that has been sold in the market, so it will not be described again.
  • the power supply device is a lithium battery
  • the lithium battery and the microprocessor are connected in the above-mentioned manner.
  • the lithium battery is taken as an example for description.
  • the lithium battery is also a well-known battery, for example, a lithium battery with a model of FIT-BAT.
  • control device In the present invention, the way in which the control device is installed in the installation box 40 has been used in footwear products, so it will not be further described.
  • the above-mentioned light-emitting element 305 is an LED light bar or an optical fiber assembly. If the light-emitting element 305 is an LED light bar, the LED light bar is electrically connected to the output end of the microprocessor; correspondingly, there is one of the above-mentioned two communicating grooves 24, the LED light bar is installed in the annular groove 301, and the LED light One end of the connector extends into the installation box 40 through the communicating groove 24. If the light-emitting element 305 is an optical fiber assembly, the optical fiber assembly includes an optical fiber and a transparent sleeve sleeved on the optical fiber, and both ends of the optical fiber are connected to a luminous body, so that the optical fiber emits light through the luminous body.
  • the luminous body may have at least one luminous body.
  • the number of luminous bodies is set according to actual production conditions.
  • the luminous body is electrically connected to the output end of the microprocessor, and the optical fiber scatters the light from the transparent sleeve.
  • the optical fiber assembly It is currently known technology.
  • the above-mentioned communicating groove 24 may be one or two. If there is one, both ends of the optical fiber extend into the installation box 40 through the same communicating groove 24; if there are two, the optical fiber One end of the optical fiber extends into the installation box 40 through the corresponding communicating groove 24, and the other end of the optical fiber extends into the installation box 40 through the corresponding communicating groove 24.
  • the light-emitting element 305 is an optical fiber component, and there are two communicating grooves 24 as an example for description.
  • control device further includes a wireless unit, and the microprocessor communicates with an external mobile device through the wireless unit, the mobile device may be a mobile phone or a tablet, etc., to control the on and off of the flexible light-emitting element through the mobile device.
  • the wireless unit adopts an existing conventional wireless unit, such as a Bluetooth chip of Nordic52810 model.
  • control device may also include an on-off switch installed on the shoe body provided with the sole, and the on-off switch is electrically connected to the output terminal of the microprocessor to directly press the on-off switch to control the lighting of the light-emitting element. Extinct.
  • the present invention is a shoe sole with light-emitting elements, the annular groove 301 and the light-transmitting windows 302 are arranged.
  • the light-emitting element 305 is located at the midsole 20 of the shoe.
  • the light-emitting element 305 scatters the light through the light-transmitting windows 302, and the With the arrangement of the extended outsole 40, each light-transmitting window 302 is covered by the corresponding extended outsole 40, that is, the light-emitting element 305 is hidden, so that the light-emitting element 305 is not easily damaged under the action of external force, and plays the role of protecting the flexible light-emitting element 30 , Improve the luminous life of the sole.
  • the light-emitting element 305 is located at the edge of the shoe midsole 20, and when the wearer walks using the shoe body made of the shoe sole, the edge force of the shoe midsole 20 is relatively small compared to other parts, so the wearer is wearing It will not be damaged or have poor contact even when the person’s feet are on tiptoe many times.
  • the extended outsoles 40 respectively show corresponding light-emitting patterns according to the shape of the light-transmitting window 302 covered, which makes the present invention more Fashion, novelty, and increase the interest of the present invention, so that consumers have a variety of choices.
  • the sole of a light-emitting shoe includes a midsole 10, a control device 419, and a U-shaped light-emitting element 420 connected to the control device 419.
  • the midsole 10 includes a forefoot portion corresponding to the forefoot of the human body. 402.
  • the midsole 10 is mainly composed of polyurethane or ethylene vinyl acetate elastomer and polymer foam materials.
  • the control device 419 is connected to the U-shaped light-emitting element 420 as a whole.
  • the control device 419 includes a power module and a PCB board, a microprocessor arranged on the PCB board, and the U-shaped light-emitting element 420 is electrically connected or electrically connected to the power module. With the disconnected controller, the U-shaped light-emitting element 420, the power module, the microprocessor, and the controller are electrically connected in a conventional manner to form a complete loop.
  • the power module is a lithium battery module of model FIT-BAT
  • the microprocessor is a microprocessor chip of model ADM9AARWZ
  • the controller is a pressure sensor switch with a varistor, and the pressure sensor The switch controls the on-off of the U-shaped light-emitting element 420 and the power module through the pressure change of the varistor.
  • the controller can also control the U-shaped light-emitting element 420 and the power module by means of buttons, sound or vibration.
  • Switch; U-shaped light-emitting element 420 is a flexible LED strip.
  • the side where the sole is attached to the foot is taken as the bottom, and the other side of the sole away from the foot is taken as the upper.
  • the upper end surface of the midsole 10 surrounds the arch portion 406 and the outer periphery of the arch portion 407 and is recessed with a first recess 401 downward.
  • the upper end surface of the arch portion 406 is flush with the upper end surface of the arch portion 407, and the upper end surface of the arch portion 406 is lower than the upper end surface of the forefoot portion 402.
  • the upper end surface of the arch portion 407 is recessed downwardly around the outer periphery of the arch portion 407 with a first U-shaped groove 408.
  • the first U-shaped groove 408 is matched with the U-shaped light-emitting element 420.
  • the upper end surface corresponds to the peripheral edge of the first U-shaped groove 408 to form a first boss 403; the middle of the upper end surface of the arch portion 406 is recessed downwardly with a first groove adapted to the control device 419, A groove 70 is provided so that a first boss 404 is formed on both sides of the arch portion 406 respectively.
  • the first boss 403 is connected to one of the first bosses 404.
  • the first U-shaped groove 408 communicates with the first groove 70 to form a receiving groove for accommodating the control device 419 and the U-shaped light-emitting element 420.
  • the U-shaped light-emitting element 420 is arranged on the first U-shaped groove 408, and the control device 419 is arranged In the first groove 70, the upper end surface of the control device 419 is flush with the upper end surface of each first boss 404, and the upper end surface of the U-shaped light-emitting element is flush with the upper end surface of the first boss 403.
  • the length of the U-shaped light-emitting element 420 is long enough to ensure that the U-shaped light-emitting element 420 has sufficient brightness.
  • the stretch is less, so that the U-shaped light-emitting element 420 is less stretched and bent when the user wears the shoes made of the sole to walk, avoids the U-shaped light-emitting element 420 from bending and breaking, and effectively improves the U-shaped light-emitting element 420
  • the U-shaped light-emitting element 420 is arranged on the outer periphery of the arch 407, and the pressure of the sole of the foot on the sole during walking is mainly concentrated in the middle area of the forefoot and arch 407, so that the user wears and walks
  • the U-shaped light-emitting element 420 is less stressed, which prevents the U-shaped light-emitting element 420 from being damaged by long-term greater pressure.
  • the sole also includes a midsole back cover 415 with waterproof and shock absorption effects covering the arch portion 406 and the arch portion 407.
  • the midsole back cover 415 is made of TPU. Since the midsole rear cover 415 has shock absorption and waterproof effects, the midsole rear cover 415 protects the U-shaped light-emitting element 420 and the control device 419, preventing water from penetrating into the U-shaped light-emitting element 420 and the control device 419 and soaking The U-shaped light-emitting element 420 and the control device 419 cause damage to both, and it also avoids that the U-shaped light-emitting element 420 and the control device 419 are pressure-damaged when the instantaneous pressure on the sole changes excessively.
  • the lower end surface of the midsole rear cover 415 is attached to the first boss 403 and the upper end surface of each first boss 404 and is bonded by glue.
  • the lower end surface of the midsole back cover 415 is provided with elastic bumps at the position corresponding to the varistor, so that when the midsole back cover 415 is under pressure, the elastic bumps will press the varistor so that the varistor can quickly sense the upper end. Therefore, the sensitivity of the conduction between the U-shaped light-emitting element 420 and the power module is improved.
  • the front part of the midsole back cover 415 and the rear part of the forefoot part 402 are glued together, and the upper end surface of the midsole back cover 415 is flush with the upper end surface of the forefoot part 402 after being bonded.
  • the upper end surface of the midsole rear cover 415 surrounds the outer periphery of the midsole rear cover 415 and is recessed downwardly with a second recessed portion, so that the upper end surface of the second recessed portion forms a step surface 417 surrounding the outer peripheral edge of the midsole rear cover 415.
  • the sole also includes a U-shaped light-emitting element 420 cover 409 and a U-shaped light-emitting element 420 cover on the outer peripheral edge of the first recessed portion 401 (that is, the side wall of the first recessed portion 401) and the outer peripheral edge of the midsole back cover 415.
  • the 409 is made of a well-known elastic material.
  • the material of the cover 409 of the U-shaped light-emitting element 420 is TPU.
  • the U-shaped light emitting element 420 cover 409 includes a clamping side wall 413 and a clamping platform 412 arranged on the upper end of the clamping side wall 413 and adapted to the step surface 417.
  • the clamping platform 412 is clamped on the step surface 417 and passes through Adhesive bonding; the inner peripheral edge of the clamping side wall 413 and the outer peripheral edge of the first recessed portion 401 (ie the side wall of the first recessed portion 401) and the outer peripheral edge of the midsole rear cover 415 are attached to and adhered by adhesive Together.
  • a gap 414 is provided on the clamping platform 412, and the distance between each adjacent gap 414 is equal.
  • the bending degree of the U-shaped light-emitting element cover can be flexibly adjusted, thereby avoiding the bending of the U-shaped light-emitting element 420 cover 409
  • the clamping platform 412 is dented or raised due to different degrees. When excessive adhesive is applied to the step surface 417, the clamping platform is squeezed. The excess adhesive can overflow from the gap 414, and the clamping platform 412 is always flat.
  • the bonded U-shaped light-emitting element 420 can be made
  • the cover 409 is smoothly connected to the midsole 10.
  • the portion of the U-shaped light-emitting element 420 cover 409 corresponding to the U-shaped light-emitting element 420 is a transparent light-transmitting part 411, and the light source emitted by the U-shaped light-emitting element 420 can be transmitted through the light-transmitting part 411.
  • the upper end surface of the forefoot portion 402 and the upper end surface of the midsole rear cover 415 are bonded together with an outsole 410, and the outsole 410 is made of wear-resistant materials.
  • the outsole 410 is made of conventional materials. In this embodiment, it is a durable, abrasion-resistant, and strong-grip rubber material.
  • the length of the U-shaped light-emitting element 420 is long enough, the U-shaped light-emitting element 420 has sufficient brightness, and the U-shaped light-emitting element 420 is affected by the user wearing shoes made of the sole when walking. There is less stretching and bending, avoiding bending and breaking of the U-shaped light-emitting element 420, and effectively improving the service life of the U-shaped light-emitting element 420.
  • the U-shaped light-emitting element 420 is arranged on the outer peripheral edge of the arch part 407.
  • the U-shaped light-emitting element 420 When the user wears shoes made of the sole, the U-shaped light-emitting element 420 receives less pressure, which prevents the U-shaped light-emitting element 420 from being severely exposed for a long time. Damaged by stress. Since the midsole back cover 415 has a shock-absorbing effect, it avoids the U-shaped light emitting element 420 and the control device 419 from being damaged by excessive transient pressure changes caused by the U-shaped light emitting element 420 and the control device 419; due to the midsole back cover 415 It has a waterproof effect and avoids damage caused by water infiltrating the U-shaped light-emitting element 420 and the control device 419 soaking the U-shaped light-emitting element 420 and the control device 419.
  • the sole of the foot exerts pressure on the sole.
  • the U-shaped light-emitting element 420 is connected to the power module, and the U-shaped light-emitting element 420 emits light. It can show through the light-transmitting part 411 to attract outside attention.
  • the pressure on the varistor is reduced, the U-shaped light-emitting element 420 is disconnected from the power module, and the U-shaped light-emitting element 420 does not emit light, which makes the wearer wear
  • the U-shaped light-emitting element 420 flickers when a person is walking, which is easy to attract outside attention.
  • the controller is a Bluetooth chip that wirelessly controls the on and off of the U-shaped light-emitting element 420 and the power module.
  • the Bluetooth chip can be a Nordic52810 model. After the Bluetooth chip is connected to an external terminal such as a mobile phone APP, Through the external terminal such as mobile phone APP, the light-emitting element can be controlled to start or stop light-emitting, which is convenient to use.
  • the lower end of the front part of the midsole rear cover 415 is provided with an L-shaped notch 418
  • the upper end of the front part of the arch part 406 is provided with a first boss 405 that is adapted to the L-shaped notch 418.
  • the bosses 405 protrude from each of the first bosses 404, and the L-shaped notches 418 and the first bosses 405 are bonded by glue. This arrangement makes the midsole back cover 415 and the midsole 10 adhere more tightly and firmly.
  • a light-emitting shoe includes a sole body and an upper 60 connected to the sole body; the sole body includes a midsole 10, a light-emitting module 503, a shell 506, and a lower sole 80; The side of the sole body that contacts the ground is the lower sole 80, and the opposite side is the midsole 10.
  • the light-emitting module 503 is arranged in the midsole 2; the part of the midsole 10 corresponding to the forefoot is the forefoot, which corresponds to The part of the arch of the foot is the arch part, and the part corresponding to the heel is the heel part; the midsole 10 is provided with a first groove 70 for fitting the housing 506 from top to bottom, and a receiving groove for receiving the light-emitting module 503 , And a first groove 70 for fitting the housing; the receiving groove includes a second groove 501 for embedding the light-emitting module 503, and a third groove 502 for embedding the light bar of the light-emitting module 503; The second groove 501 is provided on the arch of the midsole 10, the two first grooves 70 and the third groove 502 are provided on the heel of the midsole 10, and the third groove 502 Located between the two first grooves 70.
  • the side frame of the housing 506 is a light-shielding area 506, a light-transmitting area 507, and a light-shielding area 506 (not limited to this, it can also be full light-shielding, full light-transmitting or other arrangements); the light-shielding area 506 corresponds to the first recess
  • the groove 70 and the light-transmitting area 507 correspond to the third groove 502 to ensure that the light emitted by the light bar 504 in the third groove 23 can pass through.
  • the light-shielding area 506 of the housing 506 is attached to the first groove 70, and the housing 506
  • the bottom or bottom edge of the bottom part and the bottom bottom 80 are attached to each other.
  • the structure of the shell 506 can be a wrap-around, a side-periphery wrap, or a peripheral plus a bottom surface.
  • the shell 506 includes, but is not limited to, TPU material, EVA material, and PU material.
  • the light-emitting module 503 includes a mounting box 40 and a light bar 504 electrically connected to the mounting box 40.
  • the mounting box 40 is embedded in the second groove 501
  • the light bar 504 is embedded in the third groove 502
  • the light bar 504 is embedded in the third groove 502.
  • the strip 504 can be one or multiple, and can be placed arbitrarily in the third groove 502.
  • the placement positions include but are not limited to diagonally upward, diagonally downward, horizontal, and vertical; specifically, the installation box 40 includes waterproof Shell, the waterproof shell is provided with a battery, a PCB circuit board, a push switch and a charging port, and the battery, the push switch and the light bar are all electrically connected to the PCB circuit board.
  • the front end of the housing 506 is provided with a push switch protrusion 509 that matches the push switch and the charging port, and a charging port through hole 508 with a waterproof ring.
  • a push switch protrusion 509 that matches the push switch and the charging port
  • a charging port through hole 508 with a waterproof ring.
  • the charging port is used to charge the battery.
  • the charging port includes but not limited to USB, TYPE C, Micro USB, and can also be other forms of magnetic charging port.
  • the light-emitting module 503 also includes other sensors, such as three/six-axis acceleration sensors, vibration sensors, temperature sensors, and wireless communication modules (including but not limited to Bluetooth, WIFI, GPRS). Various sensors are used to collect various related data, which are then transmitted to the upper computer through the wireless communication module to collect various data of the user for later analysis and processing of the data.
  • sensors such as three/six-axis acceleration sensors, vibration sensors, temperature sensors, and wireless communication modules (including but not limited to Bluetooth, WIFI, GPRS).
  • Various sensors are used to collect various related data, which are then transmitted to the upper computer through the wireless communication module to collect various data of the user for later analysis and processing of the data.
  • the midsole 10 is made of EVA material commonly used in the shoe material industry
  • the shell 506 is made of TPU material
  • the lower sole 80 is made of rubber material, which has the effect of anti-skid, wear resistance, and impact reduction, and may be partially hollowed out.
  • the second groove 501 is not limited to be provided in the arch of the foot, and may also be provided in the forefoot.
  • the preparation method of luminous shoes is as follows:
  • Step 1 Upper preparation: prepare shoe uppers and shoe upper accessories.
  • the shoe upper accessories include tongue, back lining, inner lining, toe lining and heel lining.
  • the above parts are subjected to necessary pretreatment and pretreatment.
  • the process includes edge, seamless, sewing, laminating, etc., and then use stitches to connect and fix the two;
  • Step two pull the upper: the prepared upper and the chopped midsole lining are seamlessly stitched or stitched, and then the shoe last is put on and shaped;
  • Step 3 Bottom making: Place the installation box 40 of the light-emitting module 503 in the second groove 501, and place the light bar 504 of the light-emitting module 503 in the third groove 502; install the box 40 and the light bar
  • the 504 fixing method can specifically adopt full bonding, fixed-point bonding, positioning card holes, crimping fixation, or multiple modes of sharing.
  • the housing 506 is connected to the first groove 70, and the switch bump on the housing 506 is pressed.
  • the bottom or bottom edge of the shell 506 is attached to the rubber bottom, and the rubber bottom is glued to the bottom layer to achieve anti-slip resistance The role of wear and puncture prevention;
  • Step 4 Attaching the sole: Adhere the shaped upper and the prepared integrated sole, and bond at an appropriate temperature. First, heat the glue on both sides to 60 ⁇ 80°C at the same time, and then glue it in position. Press tightly and cool down to 0° ⁇ 10°C after the subcooling box;
  • Step 5 take off the last: take off the last in the shoe cavity to complete the production of the whole shoe.
  • the transparent manufacturing method of the housing 506 is specifically as follows: S1, the structure of translucent TPU is adopted, and the partition painting or coloring process is done inside or outside, and the basic module can be modified accordingly according to the actual situation; S2, in order to achieve Better soft light homogenization effect, structural atomization treatment on the inner surface of the shell, combined with the adjustment of the raw material transmittance, the overall adjustment to an ideal light effect, so that the next adjustment without affecting the outer surface shape; S3, Smooth or strip the outer surface to allow more light to be concentrated on the convex surface, thereby adjusting the local brightness; S4, at its front end is provided with a push switch bump 509 that matches the push switch and the charging port, and a waterproof ring ⁇ charging port through hole 508.

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Abstract

一种发光鞋底,包括中底(10)以及与中底(10)连接的外底(20)。中底(10)处装有电子单元,电子单元包括发光灯条(103)和用于驱动发光灯条(103)亮灭的控制芯片。中底(10)和/或外底(20)处设置有用于透出发光灯条(103)光线的透光部。将发光灯条(103)装于中底(10)处,有效防止发光灯条(103)的折断,提高发光灯条(103)的使用寿命,从而提高发光寿命。因在中底(10)的侧边和/或外底(20)处设置有透光部,故易于使发光灯条(103)发出的光线透射出去,发光效果更加明显。

Description

一种发光鞋底及发光鞋 技术领域
本发明涉及涉及鞋类领域,更具体地说涉及一种发光鞋底及发光鞋。
背景技术
现有技术中,目前,市面上的发光鞋一般将发光条、发光灯或发光灯条设置在鞋面上,令发光鞋更加时尚、新颖,但是,发光条、发光灯或发光灯条也极易因外力作用而损坏,如多次踮脚而使发光条、发光灯或发光灯条折断或接触不良,极大地影响了发光鞋的发光寿命。
发明内容
为实现上述目的,本发明的技术解决方案是:一种发光鞋底,其特征在于:包括中底以及与所述中底连接的外底,所述中底处装有电子单元,所述电子单元包括发光灯条和用于驱动所述发光灯条亮灭的控制芯片,所述中底和/或所述外底处设置有用于透出所述发光灯条光线的透光部。
优选的,所述中底设有供所述发光灯条安装的灯安装槽和供所述安装槽安装的盒安装槽,所述灯安装槽和所述盒安装槽相互连通,所述发光灯条电连接于所述控制芯片的输出端。
优选的,所述中底设有供所述发光灯条安装的灯安装槽和供所述安装槽安装的盒安装槽,所述中底上开设有通孔,所述灯安装槽与所述盒安装槽之间通过所述通孔相互连通,所述发光灯条穿过所述通孔电连接于所述控制芯片的输出端。
优选的,所述透光部包括多个透光窗,所述中底的侧边对应于各个所述灯安装槽处分别设置多个所述透光窗,各所述灯安装槽分别与对应的各所述透光窗相互连通;所述外底为采用透光材料制成的外底,所述外底对应透出所述发光灯条的光线的部位构成所述透光部;或者,所述中底为采用透光材料制成的中底,所述中底对应透出所述发光灯条的光线的部位构成所述透光部。
一种发光鞋底,包括中底、与所述中底连接的外底以及设置于所述中底与所述外底之间的柔性发光元件,其特征在于:所述中底的侧面开设有若干个发光凹槽,所述中底的底面处开设有若干个中底凹槽,各所述发光凹槽分别与就近的所述中底凹槽相连通,且各所述发光凹槽与各所述中底凹槽共同形成一条连通的线路通道,所述柔性发光元件安装于所述线路通道内,所述外底的侧边处分别延伸有若干个延伸外底,当所述外底和所述中底连接时各所述延伸外底分别覆盖对应的所述发光凹槽,其中,所述延伸外底为采用透光材料制成的外底。
一种发光鞋底,包括中底、与所述中底连接的外底以及设置于所述中底与所述外底之间的柔性发光元件,其特征在于:所述中底的侧面开设有若干个发光凹槽,所述中底的底面处开设有若干个中底凹槽,各所述发光凹槽分别与就近的所述中底凹槽相连通,且各所述发光凹槽与各所述中底凹槽共同形成一条连通的线路通道,所述柔性发光元件安装于所述线路通道内,所述外底的侧边处分别延伸有若干个延伸外底,当所述外底和所述中底连接时各所述延伸外底分别覆盖对应的所述发光凹槽,其中,所述延伸外底为采用透光材料制成的外底。
优选的,所述发光元件为光纤组件,所述光纤组件包括光纤和套设有所述光纤的透明套管,所述光纤的两端端部均连接发光体,所述发光体安装于所述安装盒内,且所述发光体电性连接所述控制装置的输出端。
优选的,所述中底的侧面处开设有若干个外底凹部,各所述外底凹部均延伸至所述中底的底面的边沿处,各所述外底凹部与各所述发光凹槽分别一对一配设,各所述发光凹槽分别位于对应的所述外底凹部内,各所述外底凹部分别与对应的所述延伸外底相适配。
一种发光鞋底,其特征在于:包括内底、中底、发光元件和内装有控制装置的安装盒,所述内底安装于所述中底上,所述中底和所述外底相互连接,所述中底的上底面的边沿处开设有供所述发光元件安装的环形凹槽,所述中底上开设有供所述安装盒安装的盒凹槽,所述环形凹槽与所述盒凹槽相互连通,所述中底的侧面开设有若干个透光窗,各所述透光窗均与所述环形凹槽相互连通,所述外底的侧边处向上延伸有若干个延伸外底,当所述外底和所述中底连接时各所述延伸外底分别覆盖对应的所述透光窗,其中,所述延伸外底为采用透光材 料制成的外底。
优选的,所述中底的侧边向上延伸有环形侧墙,所述中底通过所述环形侧墙的环绕形成中底凹腔,所述中底安装于所述中底凹腔。
一种发光鞋底,其特征在于:包括中底、控制装置以及与所述控制装置连接的U型发光元件,所述中底包括对应人体前脚掌设置的前掌部、对应人体足弓设置的足弓部以及对应人体脚后跟设置的后跟部;
所述控制装置与所述U型发光元件连接成一个整体,所述控制装置包括电源模块、PCB板、设置在所述PCB板上的微处理器以及控制所述U型发光元件与所述电源模块电连接或断开的控制器,所述U型发光元件;
以所述鞋底倒扣时的方向为基准,以鞋底与足部贴合的一面为下,以鞋底远离足部的另一面为上。
所述中底的上端面环绕所述足弓部和所述后跟部的外周沿向下凹设有第一凹陷部;
所述足弓部的上端面与所述后跟部的上端面齐平,所述足弓部的上端面低于所述前掌部的上端面;
所述后跟部的上端面环绕其外周沿向下凹设有第一U型凹槽,所述第一U型凹槽与所述U型发光元件相适配,所述第一U型凹槽围成一个第一凸台;所述足弓部的上端面的中部向下凹设有与所述控制装置相适配的第一凹槽,所述第一凹槽的设置使得所述足弓部的两侧分别形成有一个第二凸台,所述第一U型凹槽与所述第一凹槽连通成一个容纳所述控制装置与所述U型发光元件的容纳槽;所述控制装置的上端面与各所述第二凸台的上端面齐平,所述U型发光元件的上端面与所述第一凸台的上端面齐平;
所述鞋底还包括盖设在所述足弓部和所述后跟部上方的具有防水和减震作用的中底后盖,所述中底后盖的下端面与所述第一凸台以及各所述第二凸台的上端面通过黏胶粘合;
所述中底后盖的前部与所述前掌部的后部通过黏胶粘合,且粘合后所述中底后盖的上端面与所述前掌部的上端面齐平;所述中底后盖的上端面的外周沿向下凹设有第二凹陷部416,且所述第二凹陷部416的上端面形成环绕所述中底后盖的外周沿的台阶面;
所述鞋底还包括套设在所述第一凹陷部的外周沿以及所述中底后盖的外周沿上的U型发光元件罩;所述U型发光元件罩包括卡接侧墙和设置在所述卡接侧墙的上端并与所述台阶面相适配的卡接平台,所述U型发光元件罩对应所述U型发光元件的部位为透明的透光部;所述卡接平台与所述台阶面通过黏胶粘合;所述卡接侧墙的内周沿与所述第一凹陷部的外周沿以及所述中底后盖的外周沿通过黏胶粘合;
所述鞋底还包括大底,所述大底粘合在所述前掌部的上端面与所述中底后盖的上端面。
优选的,所述卡接平台上设置有若干个缺口。
优选的,所述控制器为具有压敏电阻的压力感应开关。
优选的,所述中底后盖的下端面对应所述压敏电阻的位置设有弹性凸块。
优选的,所述中底后盖的前部的下端设有L型缺口,所述足弓部的前部的上端设有一个与所述L型缺口相适配的第三凸台,所述第三凸台与所述L型缺口通过黏胶粘。
一种发光鞋底,其特征在于:所述鞋底本体包括中底、发光模组、外壳和下底;所述鞋底本体与地面接触的一面为下底,相对的另一面为中底,所述发光模组设置于中底中,所述外壳上表面贴合连接中底,下边面贴合连接下底,所述中底设有两个用于贴合外壳的第一凹槽、用于收纳发光模组的收纳槽;所述收纳槽包括用于嵌入发光模组的第二凹槽、用于嵌入发光模组的灯条的第三凹槽;所述发光模组包括安装盒和与安装盒电连接的灯条,所述安装盒卡嵌在第二凹槽,灯条卡嵌在第三凹槽中。
优选的,所述中底对应前脚掌的部位为前掌部,对应足弓的部位为足弓部,对应脚后跟的部位为后跟部,所述第二凹槽设置在所述中底的足弓部,所述两个第一凹槽和第三凹槽设置在中底的后跟部,所述第三凹槽位于两个第一凹槽之间。
优选的,所述外壳包括外侧边框,所述外侧边框从上到下分别为遮光区域、透光区域和 遮光区域分别对应贴合连接中底的第一凹槽、第三凹槽和第一凹槽。
优选的,发光鞋的制备方法如下:
步骤一、制帮:准备好鞋面、鞋面配件,所述鞋面配件包括鞋舌、后里、内里、鞋头内衬、鞋跟内衬,将以上部件进行必要的预处理,所述预处理过程包括片边、无缝、车缝和覆膜,然后用缝线将鞋面和鞋面配件进行连接、固定;
步骤二、拉帮:将准备好的鞋面和斩好的中底衬进行缝合,然后套上鞋楦定型;
步骤三、制底:将发光模组的安装盒放置到第二凹槽内,并将发光模组的灯条摆放至第三凹槽内;将外壳与第一凹槽进行贴合连接,并将外壳上的按压开关凸块和充电口透孔与发光模组的按压开关和充电口对齐及固定;将外壳的底部或底部边缘与橡胶底进行贴合连接;
步骤四、贴底:将定型好的拉帮与制备好的一体鞋底进行黏连,先把拉帮和鞋底上的胶同时加热到60~80℃,然后对位黏连压紧,后通过冷箱冷却至0°~10℃;
步骤五、脱楦:将鞋腔内的鞋楦脱出,完成整鞋的制作。
优选的,所述外壳的透光制作方法具体如下:S1、采用半透明TPU的结构,对其进行上色处理;S2、对半透明TPU的结构内面做结构雾化处理;S3、对半透明TPU的结构外表面进行打磨处理;S4、在其前端开设有吻合按压开关和充电口的按压开关凸块和带有防水圈的充电口透孔安装于所述安装盒内,且所述发光体电性连接所述微处理器的输出端。
采用上述结构后,本发明具有如下有益效果:将发光灯条装于中底处,有效防止发光灯条的折断,提高发光灯条的使用寿命,从而提高本发明的发光寿命,并且,因在中底的侧边和/或外底处设置有透光部,故易于使发光灯条发出的光线透射出去,本发明的发光效果更加明显。
附图说明
图1为本发明实施方式1实施例一的结构示意图;
图2为本发明实施方式1实施例一中中底的配合面的结构示意图;
图3为本发明实施方式1实施例二的结构示意图;
图4为本发明实施方式1实施例二中中底的配合面的结构示意图;
图5为本发明实施方式1实施例三的结构示意图;
图6为本发明实施方式1实施例四的结构示意图;
图7为本发明实施方式1使用实施例四所述的发光鞋底制成的发光鞋的结构示意图;
图8为本发明实施方式2中鞋底的结构示意图;
图9为本发明实施方式2中鞋底的分解示意图;
图10为本发明实施方式2中鞋中底的底面结构示意图;
图11为本发明实施方式3中鞋底的结构示意图;
图12为本发明实施方式3中鞋底的分解示意图;
图13为本发明实施方式3中发光元件与鞋中底的装配示意图;
图14为本发明实施方式3中鞋底的俯视图(省略鞋内底)
图15为本发明实施方式4正放时的立体示意图;
图16为本发明实施方式4倒扣时的大底与中底的分解示意图;
图17为本发明实施方式4倒扣时的各部件的分解示意图;
图18为本发明实施方式4倒扣时的中底与控制装置以及U型发光元件的分解示意图;
图19为本发明实施方式4的U型发光元件罩的示意图;
图20为本发明实施方式5结构拆分正视图;
图21为本发明实施方式5结构拆分立体图。
主要附图标记说明:
10-中底;20-外底;30-内底;40-安装盒;50-延伸外底;60-鞋面;70-第一凹槽;80-下底;
101-透光窗;102-通孔;103-发光灯条;104-安装槽;105-灯安装槽;106-盒安装槽; 107-发光板;108-板安装槽;109-配合面;110-背离面;
102-发光凹槽;202-中底凹槽;204-柔性发光元件;
103-环形凹槽;302-透光窗;303-盒凹槽;304-连通凹槽;305-发光元件;
104-环形侧墙;307-中底凹腔;
401-第一凹陷部;402-前掌部;403-第一凸台;404-第二凸台;405-第三凸台;406-足弓部;407-后跟部;408-第一U型凹槽;409-U型发光元件罩;410-大底;411-透光部;412-卡接平台;413-卡接侧墙;414-缺口;415-中底后盖;416-第二凹陷部416;417-台阶面;418-L型缺口;419-控制装置;420-U型发光元件;
501-第二凹槽;502-第三凹槽;503-发光模组;504-灯条;505-外壳;506-遮光区域;507-透光区域;508-充电口透孔;509-按压开关凸块。
具体实施方式
以下结合附图和具体实施例来进一步说明本发明。
本发明中所提到的方向用语,例如:上、下、内、外等,仅是参考说明书附图1的方向。因此,使用的方向用语仅是用来说明,并非用来限制本发明。
本发明中所提到的方向用语,例如:上、下、内、外等,仅是参考说明书附图1的方向。因此,使用的方向用语仅是用来说明,并非用来限制本发明。
实施方式1
一种发光鞋底,如图1-6所示,包括中底10和外底20,中底10与外底20相互连接,中底10上装有电子单元,电子单元包括发光灯条103和控制芯片,控制芯片用于控制发光灯条的亮灭,中底10的侧边处和/或外底20处设置有用于将所述发光灯条103的光线透出的透光部。其中,这里所说的发光灯条103还可为发光灯或发光条。控制芯片安装于安装槽104内,以起到保护控制芯片的作用。上述的透光部具有多种结构,下面对具体结构进行说明。
第一种结构为:透光部包括透光窗101,中底10的侧边处设置透光窗101,透光窗101为采用透光材料制成的透光窗,例如透光材料可为透明橡胶材料或透明TPU材料,且透光窗101位于发光灯条的灯光投射范围内;
此外,透光窗101可以有多个,则上述的透光部包括多个透光窗11,透光窗101的数量根据中底10的实际情况进行设置。
第二种结构:中底10为采用透光材料制成的中底,中底10对应透出发光灯条103光线的部位构成透光部。
第三种结构:外底20为采用透光材料制成的外底,外底20对应透出发光灯条103光线的部位构成透光部。
第四种结构:中底10的侧边设置透光窗101,透光窗101位于发光灯条的灯光投射范围内,且透光窗101为采用透光材料制成的外底,外底20为采用透光材料制成的外底,透光窗101和外底20对应透出发光灯条103光线的部位共同构成透光部;此外,透光窗101可以有多个,这时外底20透出发光灯条103光线的部位和多个透光窗101共同构成透光部。
本发明中,电子单元的结构有多种,即发光灯条103和安装槽104的安装结构有多种,上述透光部的结构可以根据发光灯条103和安装槽104的安装结构的不同进行不同的布置。
下面对发光灯条103和安装槽104的安装结构进行详细说明。
为方便描述,以中底10与外底相互接触的一面为配合面,相背离的一面为背离面。
实施例一
本实施例中,如图1-2所示,发光灯条103和安装槽104均安装于中底10的配合面109处。
具体来说,中底10的配合面109处分别开设有灯安装槽105和盒安装槽106,灯安装槽105和盒安装槽106均沿中底10的配合面109向
背离面110布置,且灯安装槽105与盒安装槽106相互连通;并且,灯
安装槽105与发光灯条103相适配,用于安装发光灯条103;盒安装槽106与安装槽104相适配,用于安装放置盒104。当发光灯条103安装于灯安装槽105内时,发光灯条103上靠近于盒 安装槽106的一端伸入安装槽104内且电连接其内的控制芯片的输出端。其中,盒安装槽106位于中底10的鞋腰处,灯安装槽105呈蛇形布置,且位于中底10的前掌处或后跟处。
本实施例中,上述的透光部可为前述透光部的第一种结构到第四种结构的任意一种结构。
当本实施例中透光部为第一种结构或第四种结构时,透光窗101与灯安装槽105相互连通,并且,当灯安装槽105位于中底10的前掌处时透光窗101位于中底10的前掌部分的侧边处;灯安装槽105位于中底10的后跟处时透光窗101位于中底10的后跟部分的侧边处。较佳地,为进一步提高发光效果,在中底10的侧边设置多个透光窗101,各透光窗101均与灯安装槽105相互连通,以便灯发光条101将光线通过各透光窗101透射出去。
其中,当上述的透光部为第一种结构时,发光灯条103发光,则中底10的侧边的局部透出光线;当上述的透光部为第二种结构时,中底10的整体都能透出光线;当上述透光部为第三种结构时,外底20的整体透出光线;当上述透光部为第四种结构时,中底10的侧边的局部透出光线,且外底20的整体透出光线。作为优选地,上述的发光灯条103有多条,灯安装槽105有多个,
各发光灯条103和灯安装槽105分别一对一配设,各灯安装槽105均与同一盒安装槽106相连通,并且,各发光灯条103上靠近于盒安装槽106的一端均伸入安装槽104内,且分别与同一控制芯片的输出端电连接,以便于同一控制芯片控制各条发光灯条103的亮灭。这里,以发光灯条101有两条为例进行说明,两条发光灯条103均呈蛇形布置,其中一条发光灯条103设置于中底10的前掌处,另一条发光灯条103设置于中底10的后跟处;相应地,透光部为第一种结构或第四种结构时,每条发光灯条103均配设有多个透光窗101(以每条发光灯条103均配设有两个透光窗101为例),同一发光灯条103配设的两透光窗101分设于中底101的相对两侧边处,且各透光窗101分别与对应的灯安装槽105相连通。
实施例二
如图3-4所示,本实施例与实施例一的区别在于:上述的放置盒104安装于中底10的背离面110处。
具体来说,中底10的背离面110的鞋腰处开设有供安装槽104安装的盒安装槽106,且中底10上开设有通孔102,通孔102沿中底10的配合面109向背离面110的方向布置,且通孔102位于盒安装槽106内。按实施例一所述方式设置的灯安装槽105与盒安装槽106之间通过通孔102相互连通,这样,发光灯条103安装于灯安装槽105内时,发光灯条101靠近于盒安装槽106的一端依次穿过通孔和伸入安装槽104内,且与安装槽104内的控制芯片的输出端电连接。需说明的是,当发光灯条103有多条时,上述的通孔102有多个,各发光灯条103与各通孔102分别一对一配设,即各发光灯条103的相应端分别穿过对应的通孔102,并位于中底10的配合面109处。
实施例三
如图2所示和如图5所示,本实施例与实施例一的区别在于:中底10的背离面110处也安装有至少一条的发光灯条103。
具体来说,以中底10的背离面110处安装有两条发光灯条103为例进行说明,中底10的背离面110的鞋腰处也开设有两灯安装槽105;于中底10的背离面110处,各灯安装槽105与各发光灯条103分别一对一配设,两灯安装槽105依次沿中底10的宽度方向布置,且分设于盒安装槽106的两侧。并且,中底10上开设有通孔102,通孔102的数量与位于背离面110上的发光灯条101的数量相一致,且分别一对一配设,各通孔均沿中底10的背离面110向配合面109的方向布置,并且,各通孔102均位于上述的盒安装槽106内。这样,位于背离面110处的两发光灯条103上靠近于盒安装槽106的一端分别穿过对应的通孔(图中未示出),且伸入安装槽104内,与控制芯片的输出端电连接。
作为优选地,于中底10的背离面110处的各发光灯条均替换成发光板107,相应地,中底10的背离面110处开设有多个板安装槽108,各板安装槽108与各发光板107分别一对一配设,且各板安装槽108均与同一盒安装槽106相互连通,并且,各发光板107均为市面上已有出售的 柔性发光板。以一块发光板107为例,当透光部为上述的第一种和第四种结构时,发光板107沿中底10的宽度方向布置,且中底10的侧边对应于发光板107处也设置有透光窗101,以便于发光板107将发出的光线从对应的两透光窗101处透射出去,以进一步提高中底10的发光效果。
实施例四
如图4所示和如图6所示,本实施例与实施例二的区别在于:中底10的背离面110处也安装有发光灯条103。
具体来说,中底10的背离面110的鞋腰处也开设有灯安装槽105;于中底10的背离面110处,灯安装槽105与发光灯条103一对一配设,两灯安装槽105依次沿中底10的宽度方向布置,且分设于盒安装槽106的两侧,位于中底10的背离面110的两发光灯条103均与盒安装槽106相互连通,以便位于中底10的背离面110的两发光灯条103的一端伸入安装槽104内,并均与控制芯片的输出端电连接。
作为优选地,于中底10的背离面110处的各发光灯条均替换成发光板107,相应地,中底10的背离面110处开设有多个板安装槽108,各板安装槽108与各发光板107分别一对一配设,且各板安装槽108均与同一盒安装槽106相互连通,并且,各发光板107均为市面上已有出售的柔性发光板。以有两块发光板107为例进行详细说明,两块发光板107分设于安装槽104的两侧,且两发光板107依次沿中底10的宽度方向布置;当透光部为上述的第一种和第四种结构时,中底10的侧边对应于两发光板107处分别设置有透光窗101,以便于两发光板107将发出的光线分别从对应的透光窗101处透射出去,以进一步提高中底10的发光效果。
本发明中,上述的各发光灯条103均为柔性LED灯条,且各发光灯条均还可以为多色LED灯条。其中,实施例三和实施例四中提及的发光板均为内置有多色LED灯珠或多色LED灯条的发光板。
本发明中,电子单元还包括压力传感器,压力传感器的输出端电性连接控制芯片的输入端,且压力传感器装于中底10或外底内。
实施方式2
一种发光鞋底,如图8-10所示,包括鞋中底10、鞋外底20和柔性发光元件204,鞋中底10按常规方式连接于鞋外底20上,例如两者通过胶粘固定,柔性发光元件204设置于鞋中底10与鞋外底20之间。
为方便描述,以本发明正常使用的方位为参考方向。
鞋中底10的底面处开设有若干个中底凹槽202,鞋中底10的侧面处开设有若干个发光凹槽201,各发光凹槽201依次间隔布置,且各发光凹槽201均呈条状,各发光凹槽201的两端分别延伸至鞋中底10的侧边沿处,且分别与就近的中底凹槽202相互连通。各中底凹槽202和各发光凹槽201均与柔性发光元件204相适配,并且,各发光凹槽201和各中底凹槽202共同形成一条连通的路线通道,柔性发光元件204安装于该路线通道内。鞋外底20的侧边处向上延伸有若干个延伸外底50,各延伸外底50与各发光凹槽201分别一对一配设,各延伸外底50均贴设于鞋内底10的侧面,且分别覆盖对应的发光凹槽201,且延伸外底50为采用透光材料制成的外底。本实施例中,延伸外底50与鞋外底20为一体成型。
鞋底还包括控制装置,控制装置安装于安装盒40内,鞋中底10的底面处开设有盒容纳槽,该盒容纳槽与安装盒40相适配,以供安装盒40安装于盒容纳槽内,并且,盒容纳槽与就近的中底凹槽202之间通过通槽相互连通,该通槽可为一条或两条,通槽的条数根据实际使用的发光元件进行选择。
控制装置包括微处理器和供电装置,供电装置的电源输出端电连接微处理器的电源输入端,以使供电装置给微处理器提供工作电源,微处理器与供电装置均按常规的方式安装于安装盒40内。
供电装置包括电池,电池为现有常规的电池,例如型号为FIT-BAT的锂电池,微处理器为现有常规的微处理器,例如型号为ADM691ARWZ的微处理器。
上述的柔性发光元件可为LED灯条或光纤组件。柔性发光元件为LED灯条,LED灯条电连接 微处理器的输出端。相应地,盒容纳槽与就近的中底凹槽202之间开设有一条通槽,中底凹槽202通过对应的通槽与盒容纳槽相互连通,以便使上述的路线通道连通至盒容纳槽内,令LED灯条的一端伸入到安装盒40内。
柔性发光元件为光纤组件,该光纤组件包括光纤和套设于光纤的透明套管,光纤的两端端部均连接发光体,以此通过发光体令光纤发光,该发光体可以有至少一个,发光体的数量根据实际生产情况进行设置,本实施例以发光体有一个为例,发光体电连接微处理器的输出端,光纤将光从透明套管处散发出去,其中,该光纤组件的发光原理为现有公知技术。相应地,上述的盒容纳槽与就近的中底凹槽202之间开设有通槽,即两条通槽,两中底凹槽202分别通过对应的通槽与盒容纳槽相互连通,以便使上述的路线通道连通至盒容纳槽内,光纤的两端分别通过对应的通槽伸入到安装盒内。
进一步地,控制装置还包括无线单元,微处理器通过无线单元与外部的移动设备进行通讯连接,该移动设备可为手机等,以通过移动设备控制柔性发光元件的亮灭。无线单元采用现有常规的无线单元,例如型号为Nordic52810的蓝牙芯片。
此外,控制装置还可以包括启闭开关,该启闭开关安装于设置有鞋底的鞋体上,启闭开关电连接微处理器的输出端,以人工按下启闭开关来控制柔性发光元件的亮灭。
本实施例中以发光凹槽201有6个,柔性发光元件204为LED灯条为例进行说明。各中底凹槽202均按图10所示进行布置,各发光凹槽
201均按图9所示进行布置,各中底凹槽202于鞋中底10的底面处的布置路线可以根据实际情况进行设置,如盒容纳槽的位置、各发光凹槽201的位置与个数以及各中底凹槽202的位置与个数等情况进行设置,并不局限于图9和图10所示的布置路线。
实施方式3
一种发光鞋底,如图11-14所示,包括鞋内底10、鞋中底20和鞋外底30,鞋内底10铺设于鞋中底20上,鞋中底20按常规方式连接于鞋外底30上,例如两者胶粘在一起,。
为方便描述,以图12所示方位为本发明的参考方向。
鞋底包括发光元件305和安装盒40,安装盒40内安装有控制装置,发光元件305和安装盒40均安装于鞋中底20处。鞋中底20的上底面和其边沿处分别对应开设有盒凹槽303和环形凹槽301,盒凹槽303与环形凹槽301相互连通,且鞋中底20的侧面处开设有若干个透光窗302,各透光窗302均与环形凹槽301相互连通,鞋外底30的侧边向上延伸有若干个延伸外底40,各透光窗302与各延伸外底40分别一对一配设,当鞋中底20和鞋外底30连接时各延伸外底40均贴设于鞋中底20的侧面处,且分别覆盖对应的透光窗302。
具体来说,发光元件305放置于环形凹槽301内,发光元件305与环形凹槽301相适配,当发光元件305安装于环形凹槽301内时发光元件30未凸出于环形凹槽301外;盒凹槽303安装于鞋中底10对应于人体的足弓部位置处,且盒凹槽303与安装盒40相适配,安装盒40安装于盒凹槽303内,当安装盒40安装于盒凹槽303内时安装盒40的上盒面与鞋中底20的上底面相齐平。本实施例中,鞋中底20的上底面处还开设有连通凹槽24,连通凹槽24设置有一条或两条,环形凹槽301通过连通凹槽24与盒凹槽303相互连通,展开地,若连通凹槽24设置有两条,则环形凹槽301的一端与盒凹槽303之间通过其中一条连通凹槽24相连通,环形凹槽301的另一端与盒凹槽303之间通过另一条连通凹槽24相互连通;这样,发光元件305安装于环形凹槽301内,且发光元件305的两端分别通过对应的连通凹槽24伸入至同一个安装盒40内;若连通凹槽24有一条,则发光元件305的一端或两端经连通凹槽伸入到安装盒40内;其中,连通凹槽24一条或两条的设置根据实际使用的发光元件进行选择。
上述的各透光窗302沿鞋中底20的侧面依次间隔布置,且透光窗302的数量和于鞋中底20的侧面的位置根据鞋底设计过程中的实际情况进行布置,并不局限于图2中所示的数量和位置,各透光窗302均从鞋中底20的外侧向内侧的方向布置,且各透光窗302均与环形凹槽301相互连通,以便发光元件305亮起时将发光元件305发出的光引出至鞋中底20的外部。
上述的各延伸外底40均按常规方式贴设于鞋中底20的侧面的相应位置处,例如各延伸 外底40分别胶粘于鞋中底20的侧面处,并将相对应的透光窗302覆盖。并且,各延伸外底40均呈n字型,且各延伸外底40还可以为能够将对应透光窗302覆盖的其他形状,例如圆形状、星形状或半球状等,本实施例中各延伸外底与鞋外底30为一体成型结构,并且,鞋外底30为采用透光材料制成的外底,例如鞋外底30为采用透明TPU制成的外底。
进一步地,鞋中底20的上底面的侧边向上延伸有环形侧墙306,鞋中底20通过环形侧墙306的环绕形成有中底凹腔307,鞋内底10铺设于中底凹腔307内,以环形侧墙306所环绕的一侧为内侧,相对的一侧为外侧,环形凹槽301位于环形侧墙306的内侧,环形侧墙306的设置使发光元件位于鞋中底20的中部。本实施例中,鞋中底20与环形侧墙306为一体成型。
本发明中,控制装置包括微处理器和供电装置,微处理器的电源输入端电连接供电装置的电源输出端,该供电装置可为充电电池或锂电池。其中,微处理器为采用现有公知的微处理器,例如型号为ADM691ARWZ的微处理器。
若供电装置为充电电池,则鞋中底20的后跟处设置有USB充电接口,USB接口与上述的盒凹槽303相互连通,以此通过外部电源给充电电池进行充电,这种在鞋类产品中采用外部充电的方式为现有公知技术,在市面上已有出售,故不再展开叙述。
若供电装置为锂电池,则将锂电池和微处理器按上述方式进行连接,本实施例中以锂电池为例进行说明。其中,该锂电池也为现有公知的电池,例如型号为FIT-BAT的锂电池。
本发明中,安装盒40内安装有控制装置的方式在鞋类产品中已有使用,故不再展开叙述。
上述的发光元件305为LED灯条或光纤组件。若发光元件305为LED灯条,则LED灯条电连接微处理器的输出端;相对应地,上述的两连通凹槽24有一条,LED灯条安装于环形凹槽301内,且LED灯的一端经过连通凹槽24伸入到安装盒40内。若发光元件305为光纤组件,该光纤组件包括光纤和套设于光纤的透明套管,光纤的两端端部均连接发光体,以此通过发光体令光纤发光,该发光体可以有至少一个,发光体的数量根据实际生产情况进行设置,本实施例以发光体有一个为例,发光体电连接微处理器的输出端,光纤将光从透明套管处散射出去,其中,该光纤组件为现有公知技术。相对应地,上述的连通凹槽24可以为一条或两条,若为一条,则光纤的两端均经同一条的连通凹槽24伸入到安装盒40内;若为两条,则光纤的一端经对应的连通凹槽24伸入安装盒40内,光纤的另一端经对应的连通凹槽24伸入到安装盒40内。在本实施例中以发光元件305为光纤组件,且连通凹槽24有两条为例进行说明。
进一步地,控制装置还包括无线单元,微处理器通过无线单元与外部的移动设备进行通讯连接,该移动设备可为手机或平板等,以通过移动设备控制柔性发光元件的亮灭。无线单元采用现有常规的无线单元,例如型号为Nordic52810的蓝牙芯片。
此外,控制装置还可以包括启闭开关,该启闭开关安装于设置有鞋底的鞋体上,启闭开关电连接微处理器的输出端,以直接按下启闭开关来控制发光元件的亮灭。
本发明一种内装发光元件的鞋底,环形凹槽301和各透光窗302的设置,发光元件305位于鞋中底20处,发光元件305通过各透光窗302将光散射出去,且因各延伸外底40的设置,各透光窗302分别被对应的延伸外底40覆盖,即将发光元件305隐藏起来,使得发光元件305不易在外力的作用下损坏,起到保护柔性发光元件30的作用,提高了鞋底的发光寿命。而且,因发光元件305位于鞋中底20的边沿处,而穿着者在使用该鞋底制成的鞋体行走时,因鞋中底20的边沿处受力相对其他部位都较小,故在穿着者的多次踮脚时仍然不会被损坏或接触不良。
此外,因发光元件305通过各透光窗将光散射出去,当发光元件305发光时,各延伸外底40分别根据对应覆盖的透光窗302的形状显现出相应的发光图形,使本发明更加时尚、新颖,且增加本发明的趣味性,令消费者有多种选择。
实施方式4
如图15到图19所示,一种发光鞋的鞋底,包括中底10、控制装置419以及与控制装 置419连接的U型发光元件420,中底10包括对应人体前脚掌设置的前掌部402、对应人体足弓设置的足弓部406以及对应人体脚后跟设置的足弓部407。本实施例中,中底10主要由聚氨酯或乙烯醋酸乙烯酯的弹性体、聚合物泡沫材料组成。
控制装置419与U型发光元件420连接成一个整体,控制装置419包括电源模块和PCB板、设置在所述PCB板上的微处理器以及控制U型发光元件420与所述电源模块电连接或断开的控制器,所述U型发光元件420、所述电源模块、所述微处理器以及所述控制器采用常规的方式电连接形成一个完整回路。本实施例中所述电源模块为型号FIT-BAT的锂电池模块,所述微处理器为型号ADM9AARWZ的微处理器芯片;所述控制器为具有压敏电阻的压力感应开关,所述压力感应开关通过压敏电阻的受到压力的变化控制U型发光元件420与所述电源模块的通断,压敏电阻受到压力达到设定值时U型发光元件420与所述电源模块导通,压敏电阻受到压力小于设定值时U型发光元件420与所述电源模块断开,此外控制器还可以是通过按键、声音或振动等方式控制U型发光元件420与所述电源模块通断的控制开关;U型发光元件420为柔性的LED灯带。
以所述鞋底倒扣时的方向为基准,以鞋底与足部贴合的一面为下,以鞋底远离足部的另一面为上。中底10的上端面环绕足弓部406和足弓部407的外周沿向下凹设有第一凹陷部401。
足弓部406的上端面与足弓部407的上端面齐平,足弓部406的上端面低于前掌部402的上端面。足弓部407的上端面环绕足弓部407的外周沿向下凹设有第一U型凹槽408,第一U型凹槽408与U型发光元件420相适配,足弓部407的上端面对应第一U型凹槽408的周沿形成一个第一凸台403;足弓部406的上端面的中部向下凹设有与控制装置419相适配的第一凹槽,第一凹槽70的设置使得足弓部406的两侧分别形成有一个第一凸台404,本实施例中第一凸台403与其中一个第一凸台404连接。第一U型凹槽408与第一凹槽70连通成一个容纳控制装置419与U型发光元件420的容纳槽,U型发光元件420设置在第一U型凹槽408上,控制装置419设置在第一凹槽70内,控制装置419的上端面与各第一凸台404的上端面齐平,U型发光元件的上端面与第一凸台403的上端面齐平。
由于U型发光元件420贴合足弓部407周沿设置,U型发光元件420的长度足够长,保证了U型发光元件420具有充足的亮度,且由于行走时,人体的后更部弯曲和拉伸少,从而使得使用者穿着采用该鞋底制造的鞋行走时U型发光元件420受到的拉伸和弯曲少,避免了U型发光元件420弯折断裂,有效的提高了U型发光元件420的使用寿命;另外由于U型发光元件420设置在足弓部407的外周沿,且行走时脚掌对鞋底的压力主要集中在前脚部和足弓部407的中部区域,从而使得使用者穿着行走时U型发光元件420受力较小,避免了U型发光元件420长期受到较大的压力而损坏。
鞋底还包括盖设在足弓部406和足弓部407上方的具有防水和减震效果的中底后盖415,本实施例中中底后盖415采用TPU制成。由于中底后盖415具有减震和防水效果,从而使得中底后盖415对U型发光元件420和控制装置419起到了保护作用,避免水渗入U型发光元件420和控制装置419中,浸泡U型发光元件420和控制装置419造成二者损坏,还避免了鞋底受到的瞬时压力变化过大时,U型发光元件420和控制装置419受压损坏。中底后盖415的下端面与第一凸台403以及各第一凸台404上端面相贴合并通过黏胶相粘合。中底后盖415的下端面对应压敏电阻的位置设有弹性凸块,使得中底后盖415受到压力时,弹性凸块即对压敏电阻施压,便于压敏电阻快速感应到上端的压力,从而提高了U型发光元件420与电源模块导通的灵敏度。
中底后盖415的前部与前掌部402的后部通过黏胶粘合,且粘合后中底后盖415的上端面与前掌部402的上端面齐平。中底后盖415的上端面环绕中底后盖415的外周沿向下凹设有第二凹陷部,使得第二凹陷部的上端面形成环绕中底后盖415的外周沿的台阶面417。
鞋底还包括套设在第一凹陷部401的外周沿(即第一凹陷部401的侧壁)以及中底后盖415的外周沿上的U型发光元件420罩409,U型发光元件420罩409采用公知的弹性材料 制成,本实施例中U型发光元件420罩409的材料为TPU。
U型发光元件420罩409包括卡接侧墙413和设置在卡接侧墙413的上端并与台阶面417相适配的卡接平台412,卡接平台412卡设在台阶面417上并通过黏胶粘合;卡接侧墙413的内周沿与第一凹陷部401的外周沿(即第一凹陷部401的侧壁)以及中底后盖415的外周沿相贴合并通过黏胶粘合。本实施例中卡接平台412上设置有个缺口414,各个相邻缺口414之间的距离相等。由于设置了7个缺口414,使得U型发光元件420罩409与中底后盖415粘合时,U型发光元件罩的弯曲程度可灵活调整,从而避免了因U型发光元件420罩409弯曲程度不同而导致的卡接平台412凹陷或者凸起,台阶面417上涂覆过量的黏胶时,挤压卡接平台,多余的黏胶可从缺口414处溢出,卡接平台412始终保持平整,保证了卡接平台412与中底后盖415的粘合牢固,且美观性好;另外通过灵活调整U型发光元件420罩409的弯曲程度,便可使得粘合后的U型发光元件420罩409与中底10平滑连接。U型发光元件420罩409对应U型发光元件420的部位为透明的透光部411,U型发光元件420发出的光源可从透光部411透出。
前掌部402的上端面与中底后盖415的上端面共同粘合有大底410,大底410采用耐磨材料制成。大底410采用常规材料制成,本实施例中为耐用的、抗磨损、抓地力强的橡胶材料。
由上可知,采用本发明的方案后,U型发光元件420的长度足够长,U型发光元件420具有充足的亮度,且使用者穿着采用该鞋底制造的鞋行走时U型发光元件420受到的拉伸和弯曲少,避免了U型发光元件420弯折断裂,有效的提高了U型发光元件420的使用寿命。另外U型发光元件420设置在足弓部407的外周沿,使用者穿着采用该鞋底制造的鞋行走时U型发光元件420受到的压力较小,避免了U型发光元件420长期受到较大的压力而损坏。由于中底后盖415具有减震效果,避免了U型发光元件420和控制装置419受到的瞬时压力变化过大而引起的U型发光元件420和控制装置419的损坏;由于中底后盖415具有防水效果,避免了水渗入U型发光元件420和控制装置419中浸泡U型发光元件420和控制装置419造成的损坏。
本实施例中,穿着者穿着采用该鞋底制造的鞋踩踏在地面时,脚掌对鞋底施加压力,压敏电阻受到压力后U型发光元件420与电源模块导通,U型发光元件420发光,光源可从透光部411透出,引起外界注意,当穿着者提起脚时,压敏电阻受压减小,U型发光元件420与电源模块断开,U型发光元件420不发光,从而使得穿着者行走时U型发光元件420闪烁,易于引起外界注意。
优选的,所述控制器为无线控制所述U型发光元件420与所述电源模块通断的蓝牙芯片,所述蓝牙芯片可采用Nordic52810型号,所述蓝牙芯片与手机APP等外部端连接后,通过手机APP等外部端可控制发光元件的启动发光或停止,使用方便。
优选的,中底后盖415的前部的下端设有L型缺口418,足弓部406的前部的上端设有一个与L型缺口418相适配的第一凸台405,第一凸台405凸起于各第一凸台404,L型缺口418与第一凸台405通过黏胶粘合。这样的设置使得中底后盖415与中底10的粘合更加紧密牢固。
实施方式5
如图20-21所示,一种发光鞋,包括鞋底本体和连接在鞋底本体上的鞋面60;所述鞋底本体包括中底10、发光模组503、外壳506和下底80;所述鞋底本体与地面接触的一面为下底80,相对的另一面为中底10,所述发光模组503设置于中底中2;所述中底10对应前脚掌的部位为前掌部,对应足弓的部位为足弓部,对应脚后跟的部位为后跟部;所述中底10从上到下开设有用于贴合外壳506的第一凹槽70、用于收纳发光模组503的收纳槽、和用于贴合外壳的第一凹槽70;所述收纳槽包括用于嵌入发光模组503的第二凹槽501、用于嵌入发光模组503的灯条的第三凹槽502;所述第二凹槽501设置在所述中底10的足弓部,所述两个第一凹槽70和第三凹槽502设置在中底10的后跟部,所述第三凹槽502位于两个第一凹 槽70之间。外壳506的侧边框从上到下分别为遮光区域506、透光区域507和遮光区域506(不限于此,也可为全遮光、全透光或其他排列方式);遮光区域506对应第一凹槽70,透光区域507对应第三凹槽502,确保第三凹槽内23的灯条504发出的光线能透出来,外壳506遮光区域506与第一凹槽70进行贴合连接,外壳506的底部或底部边缘与下底80进行贴合连接。外壳506的结构可以是包裹式的,还可以是侧周边包裹,也可以是周边加底面。所述外壳506包括但不限制与TPU材料、EVA材料、PU材料。
所述发光模组503包括安装盒40和与安装盒40电连接的灯条504,所述安装盒40卡嵌在第二凹槽501,灯条504卡嵌在第三凹槽502中,灯条504可以是一条,也可以是多条,在第三凹槽502内任意摆放,摆放位置包括但不限于斜向上、斜向下、水平、竖直;具体的,安装盒40包括防水外壳,防水外壳内设有电池、PCB电路板、按压开关以及充电口,所述电池、按压开关和灯条均电连接至PCB电路板。外壳506的前端设有吻合按压开关和充电口的按压开关凸块509和带有防水圈的充电口透孔508。当按压按压开关凸块509的时候,灯条504发光,当使用者不想让灯条504发光时,则可以再次按压按压开关凸块509。充电口用来为电池充电,充电口包括但不限于USB,TYPE C,Micro USB,也可以是其他形态的磁吸充电口。
发光模组503还包括其它传感器,如三/六轴加速度传感器、振动传感器、温度传感器和无线通信模块(包括但不限于蓝牙、WIFI、GPRS)。各种传感器用以采集各种相关数据,然后通过无线通讯模块,传输到上位机,用以收集使用者的各种数据,以便后期对数据进行分析处理。
实施例中,中底10采用鞋材行业中常用的EVA材料,外壳506采用TPU材料,下底80采用橡胶材料,起到防滑、耐磨、减轻冲击的作用,且可以有部分镂空。本发明中,第二凹槽501并不局限于设置在足弓部,其也可以设置在前掌部。
发光鞋的制备方法如下:
步骤一、制帮:准备好鞋面、鞋面配件,所述鞋面配件包括鞋舌、后里、内里、鞋头内衬、鞋跟内衬,将以上部件进行必要的预处理,预处理过程包括片边、无缝、车缝、覆膜等,然后用缝线将二者进行连接、固定;
步骤二、拉帮:将准备好的鞋面和斩好的中底衬进行无缝缝合或者车缝缝合,然后套上鞋楦定型;
步骤三、制底:将发光模组503的安装盒40放置到第二凹槽501内,并将发光模组503的灯条504摆放至第三凹槽502内;安装盒40和灯条504固定方法具体可采用全贴合、定点黏合、定位卡孔、压边固定或多种模式共用,将外壳506与第一凹槽70进行贴合连接,并将外壳506上的按压开关凸块509和充电口透孔508与发光模组503的按压开关和充电口对齐及固定;将外壳506的底部或底部边缘与橡胶底进行贴合连接,橡胶底黏连在最下层,起到防滑耐磨防穿刺的作用;
步骤四、贴底:将定型好的拉帮与制备好的一体鞋底进行黏连,在适当的温度下进行黏连,先把两面上的胶同时加热到60~80℃,然后对位黏连压紧,后过冷箱冷却至0°~10℃;
步骤五、脱楦:将鞋腔内的鞋楦脱出,完成整鞋的制作。
所述外壳506的透光制作方法具体如下:S1、采用半透明TPU的结构,在内部或者外部做了分区喷漆或上色工艺,可根据实际情况对基础模块进行相应的改造;S2、为了达到更好的柔光匀光效果、在外壳其内面做结构雾化处理,结合原料透光度调节使整体调校到一个理想的光效,使得在不影响外表面形态的下一步调节;S3、对外表面进行光滑处理或者条状处理,让光更多聚集在凸起面上,从而调节局部亮度;S4、在其前端开设有吻合按压开关和充电口的按压开关凸块509和带有防水圈的充电口透孔508。
以上所述的,仅为本发明的较佳实施例而已,不能限定本实用实施的范围,凡是依本发明申请专利范围所作的均等变化与装饰,皆应仍属于本发明涵盖的范围内。

Claims (18)

  1. 一种发光鞋底,其特征在于:包括中底以及与所述中底连接的外底,所述中底处装有电子单元,所述电子单元包括发光灯条和用于驱动所述发光灯条亮灭的控制芯片,所述中底和/或所述外底处设置有用于透出所述发光灯条光线的透光部。
  2. 根据权利要求1所述的一种发光鞋底,其特征在于:所述中底与所述外底相互接触的一面为配合面,相互背离的一面为背离面,所述中底设有供所述发光灯条安装的灯安装槽和供所述安装槽安装的盒安装槽,所述灯安装槽和所述盒安装槽相互连通,所述发光灯条电连接于所述控制芯片的输出端。
  3. 根据权利要求1所述的一种发光鞋底,其特征在于:所述中底设有供所述发光灯条安装的灯安装槽和供所述安装槽安装的盒安装槽,所述中底上开设有通孔,所述灯安装槽与所述盒安装槽之间通过所述通孔相互连通,所述发光灯条穿过所述通孔电连接于所述控制芯片的输出端。
  4. 根据权利要求1所述的一种发光鞋底,其特征在于:所述透光部包括多个透光窗,所述中底的侧边对应于各个所述灯安装槽处分别设置多个所述透光窗,各所述灯安装槽分别与对应的各所述透光窗相互连通;所述外底为采用透光材料制成的外底,所述外底对应透出所述发光灯条的光线的部位构成所述透光部;或者,所述中底为采用透光材料制成的中底,所述中底对应透出所述发光灯条的光线的部位构成所述透光部。
  5. 一种发光鞋底,包括中底、与所述中底连接的外底以及设置于所述中底与所述外底之间的柔性发光元件,其特征在于:所述中底的侧面开设有若干个发光凹槽,所述中底的底面处开设有若干个中底凹槽,各所述发光凹槽分别与就近的所述中底凹槽相连通,且各所述发光凹槽与各所述中底凹槽共同形成一条连通的线路通道,所述柔性发光元件安装于所述线路通道内,所述外底的侧边处分别延伸有若干个延伸外底,当所述外底和所述中底连接时各所述延伸外底分别覆盖对应的所述发光凹槽,其中,所述延伸外底为采用透光材料制成的外底。
  6. 根据权利要求5所述的一种发光鞋底,其特征在于:所述中底的侧面处开设有若干个外底凹部,各所述外底凹部均延伸至所述中底的底面的边沿处,各所述外底凹部与各所述发光凹槽分别一对一配设,各所述发光凹槽分别位于对应的所述外底凹部内,各所述外底凹部分别与对应的所述延伸外底相适配。
  7. 一种发光鞋底,其特征在于:包括内底、中底、发光元件和内装有控制装置的安装盒,所述内底安装于所述中底上,所述中底和所述外底相互连接,所述中底的上底面的边沿处开设有供所述发光元件安装的环形凹槽,所述中底上开设有供所述安装盒安装的盒凹槽,所述环形凹槽与所述盒凹槽相互连通,所述中底的侧面开设有若干个透光窗,各所述透光窗均与所述环形凹槽相互连通,所述外底的侧边处向上延伸有若干个延伸外底,当所述外底和所述中底连接时各所述延伸外底分别覆盖对应的所述透光窗,其中,所述延伸外底为采用透光材料制成的外底。
  8. 根据权利要求7所述的一种发光鞋底,其特征在于:所述中底的侧边向上延伸有环形侧墙,所述中底通过所述环形侧墙的环绕形成中底凹腔,所述中底安装于所述中底凹腔。
  9. 一种发光鞋底,其特征在于:包括中底、控制装置以及与所述控制装置连接的U型发光元件,所述中底包括对应人体前脚掌设置的前掌部、对应人体足弓设置的足弓部以及对应人体脚后跟设置的后跟部;
    所述控制装置与所述U型发光元件连接成一个整体,所述控制装置包括电源模块、PCB板、设置在所述PCB板上的微处理器以及控制所述U型发光元件与所述电源模块电连接或断开的控制器,所述U型发光元件;
    以所述鞋底倒扣时的方向为基准以鞋底与足部贴合的一面为下以鞋底远离 足部的另一面为上。
    所述中底的上端面环绕所述足弓部和所述后跟部的外周沿向下凹设有第一凹陷部;
    所述足弓部的上端面与所述后跟部的上端面齐平,所述足弓部的上端面低于所述前掌部的上端面;
    所述后跟部的上端面环绕其外周沿向下凹设有第一U型凹槽,所述第一U型凹槽与所述U型发光元件相适配,所述第一U型凹槽围成一个第一凸台;所述足弓部的上端面的中部向下凹设有与所述控制装置相适配的第一凹槽,所述第一凹槽的设置使得所述足弓部的两侧分别形成有一个第二凸台,所述第一U型凹槽与所述第一凹槽连通成一个容纳所述控制装置与所述U型发光元件的容纳槽;所述控制装置的上端面与各所述第二凸台的上端面齐平,所述U型发光元件的上端面与所述第一凸台的上端面齐平;
    所述鞋底还包括盖设在所述足弓部和所述后跟部上方的具有防水和减震作用的中底后盖,所述中底后盖的下端面与所述第一凸台以及各所述第二凸台的上端面通过黏胶粘合;
    所述中底后盖的前部与所述前掌部的后部通过黏胶粘合,且粘合后所述中底后盖的上端面与所述前掌部的上端面齐平;所述中底后盖的上端面的外周沿向下凹设有第二凹陷部416,且所述第二凹陷部416的上端面形成环绕所述中底后盖的外周沿的台阶面;
    所述鞋底还包括套设在所述第一凹陷部的外周沿以及所述中底后盖的外周沿上的U型发光元件罩;所述U型发光元件罩包括卡接侧墙和设置在所述卡接侧墙的上端并与所述台阶面相适配的卡接平台,所述U型发光元件罩对应所述U型发光元件的部位为透明的透光部;所述卡接平台与所述台阶面通过黏胶粘合;所述卡接侧墙的内周沿与所述第一凹陷部的外周沿以及所述中底后盖的外周沿通过黏胶粘合;
    所述鞋底还包括大底,所述大底粘合在所述前掌部的上端面与所述中底后盖的上端面。
  10. 如权利要求9所述的一种发光鞋底,其特征在于:所述卡接平台上设置有若干个缺口。
  11. 如权利要求9所述的一种发光鞋底,其特征在于:所述控制器为具有压敏电阻的压力感应开关。
  12. 如权利要求9所述的一种发光鞋底,其特征在于:所述中底后盖的下端面对应所述压敏电阻的位置设有弹性凸块。
  13. 如权利要求9所述的一种发光鞋底,其特征在于:所述中底后盖的前部的下端设有L型缺口,所述足弓部的前部的上端设有一个与所述L型缺口相适配的第三凸台,所述第三凸台与所述L型缺口通过黏胶粘合。
  14. 一种发光鞋底,其特征在于:所述鞋底本体包括中底、发光模组、外壳和下底;所述鞋底本体与地面接触的一面为下底,相对的另一面为中底,所述发光模组设置于中底中,所述外壳上表面贴合连接中底,下边面贴合连接下底,所述中底设有两个用于贴合外壳的第一凹槽、用于收纳发光模组的收纳槽;所述收纳槽包括用于嵌入发光模组的第二凹槽、用于嵌入发光模组的灯条的第三凹槽;所述发光模组包括安装盒和与安装盒电连接的灯条,所述安装盒卡嵌在第二凹槽,灯条卡嵌在第三凹槽中。
  15. 根据权利要求14所述的一种发光鞋底,其特征在于:所述中底对应前脚掌的部位为前掌部,对应足弓的部位为足弓部,对应脚后跟的部位为后跟部,所述第二凹槽设置在所述中底的足弓部,所述两个第一凹槽和第三凹槽设置在中底的后跟 部,所述第三凹槽位于两个第一凹槽之间。
  16. 根据权利要求14所述的一种灯光鞋,其特征在于:所述外壳包括外侧边框,所述外侧边框从上到下分别为遮光区域、透光区域和遮光区域分别对应贴合连接中底的第一凹槽、第三凹槽和第一凹槽。
  17. 根据权利要求14所述的一种发光鞋底,其特征在于:发光鞋的制备方法如下:
    步骤一、制帮:准备好鞋面、鞋面配件,所述鞋面配件包括鞋舌、后里、内里、鞋头内衬、鞋跟内衬,将以上部件进行必要的预处理,所述预处理过程包括片边、无缝、车缝和覆膜,然后用缝线将鞋面和鞋面配件进行连接、固定;
    步骤二、拉帮:将准备好的鞋面和斩好的中底衬进行缝合,然后套上鞋楦定型;
    步骤三、制底:将发光模组的安装盒放置到第二凹槽内,并将发光模组的灯条摆放至第三凹槽内;将外壳与第一凹槽进行贴合连接,并将外壳上的按压开关凸块和充电口透孔与发光模组的按压开关和充电口对齐及固定;将外壳的底部或底部边缘与橡胶底进行贴合连接;
    步骤四、贴底:将定型好的拉帮与制备好的一体鞋底进行黏连,先把拉帮和鞋底上的胶同时加热到60~80℃,然后对位黏连压紧,后通过冷箱冷却至0°~10℃;
    步骤五、脱楦:将鞋腔内的鞋楦脱出,完成整鞋的制作。
  18. 根据权利要求14所述的一种发光鞋底,其特征在于:所述外壳的透光制作方法具体如下:S1、采用半透明TPU的结构,对其进行上色处理;S2、对半透明TPU的结构内面做结构雾化处理;S3、对半透明TPU的结构外表面进行打磨处理;S4、在其前端开设有吻合按压开关和充电口的按压开关凸块和带有防水圈的充电口透孔。
PCT/CN2020/093793 2019-10-26 2020-06-01 一种发光鞋底及发光鞋 WO2021077752A1 (zh)

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