WO2022134279A1 - 等离子体发生组件、生发梳和充电座 - Google Patents

等离子体发生组件、生发梳和充电座 Download PDF

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Publication number
WO2022134279A1
WO2022134279A1 PCT/CN2021/075333 CN2021075333W WO2022134279A1 WO 2022134279 A1 WO2022134279 A1 WO 2022134279A1 CN 2021075333 W CN2021075333 W CN 2021075333W WO 2022134279 A1 WO2022134279 A1 WO 2022134279A1
Authority
WO
WIPO (PCT)
Prior art keywords
isolation
charging
circuit board
electrically connected
conductive member
Prior art date
Application number
PCT/CN2021/075333
Other languages
English (en)
French (fr)
Inventor
雷晓兵
黄上快
Original Assignee
深圳半岛医疗有限公司
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 CN202023171507.3U external-priority patent/CN213989506U/zh
Priority claimed from CN202011557724.8A external-priority patent/CN112543544A/zh
Priority claimed from CN202023170497.1U external-priority patent/CN213989330U/zh
Priority claimed from CN202023171041.7U external-priority patent/CN215195045U/zh
Application filed by 深圳半岛医疗有限公司 filed Critical 深圳半岛医疗有限公司
Publication of WO2022134279A1 publication Critical patent/WO2022134279A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N1/00Electrotherapy; Circuits therefor
    • A61N1/44Applying ionised fluids
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05HPLASMA TECHNIQUE; PRODUCTION OF ACCELERATED ELECTRICALLY-CHARGED PARTICLES OR OF NEUTRONS; PRODUCTION OR ACCELERATION OF NEUTRAL MOLECULAR OR ATOMIC BEAMS
    • H05H1/00Generating plasma; Handling plasma
    • H05H1/24Generating plasma

Definitions

  • the invention relates to the technical field of medical devices, in particular to a plasma generating assembly, a hair-growing comb and a charging base.
  • the main purpose of this application is to propose a plasma generating assembly, which aims to improve the isolation effect of the working electrode.
  • a plasma generating assembly proposed in this application includes:
  • an isolation seat which has an installation through hole and an installation groove surrounding the installation through hole
  • the working electrode has a plug-in part and a convex part connected with the plug-in part, the plug-in part is inserted into the installation through hole, and the end of the plug-in part away from the convex part is used for is electrically connected to a power source, the protruding portion is located outside the mounting through hole, and the protruding portion and the mounting groove are located on the same side of the isolation seat; and
  • the isolation cap has an open end, the isolation cap is sleeved outside the convex portion through the open end, and the open end is inserted into the installation groove.
  • the present invention also proposes a hair growth comb, comprising:
  • the isolation seat closes the opening, and the isolation cap is located on a side of the isolation seat away from the casing;
  • each comb tooth of the hair growth comb includes one of the inserting part and one of the isolation cap.
  • the present invention also provides a charging stand, which is used in cooperation with the charging end of the above-mentioned hair growth comb, and is characterized in that, it includes:
  • the charging base with a second charging contact
  • the charging base is provided with an exposed charging interface
  • the charging interface is electrically connected to the second charging contact
  • the fixing cover arranged on the charging base, the fixing cover has a fixing cavity for accommodating the charging end;
  • the charging base stably supports the hair growth comb, and the first charging contact collides with the second charging contact.
  • the installation groove is provided, and the open end is inserted into the installation groove, so that two layers of isolation layers are formed at the open end, and the ionization energy released by the working electrode can be effectively prevented from passing outside the open end. leakage, further improving the isolation effect of the working electrode, so that the plasma generator has higher safety.
  • FIG. 1 is a schematic three-dimensional structural diagram of a plasma generator according to an embodiment of the present invention.
  • FIG. 2 is a schematic three-dimensional structure diagram of the plasma generator shown in FIG. 1 from another perspective;
  • Fig. 3 is the partial enlarged view of A place in Fig. 1;
  • Fig. 4 is a partial exploded view of the plasma generator shown in Fig. 1;
  • FIG. 5 is a partially exploded view of the plasma generator shown in FIG. 1 from another perspective;
  • FIG. 6 is a schematic cross-sectional view of the plasma generator shown in FIG. 1;
  • Fig. 7 is a partial enlarged view at B in Fig. 6;
  • FIG. 8 is a schematic three-dimensional cross-sectional view of the mounting seat in FIG. 1;
  • Fig. 9 is a partial enlarged view at C in Fig. 8;
  • FIG. 10 is a schematic structural diagram of a plasma generator according to another embodiment of the present invention.
  • FIG. 11 is a schematic structural diagram of a plasma generator according to another embodiment of the present invention.
  • FIG. 12 is a schematic structural diagram of a plasma generator according to another embodiment of the present invention.
  • FIG. 13 is a schematic three-dimensional structural diagram of a plasma generator according to another embodiment of the present invention.
  • FIG. 14 is a schematic cross-sectional view of the isolation cap of the plasma generator in FIG. 13;
  • FIG. 15 is a schematic exploded perspective view of a plasma generator according to another embodiment of the present invention.
  • Fig. 16 is the module schematic diagram of the plasma generator corresponding to Fig. 15;
  • FIG. 17 is a schematic three-dimensional structural diagram of a charging stand according to an embodiment of the present invention.
  • Fig. 18 is a top view of the charging stand shown in Fig. 17;
  • FIG. 19 is a perspective exploded schematic view of the charging stand shown in FIG. 17;
  • FIG. 20 is a schematic cross-sectional view of the charging stand shown in FIG. 17;
  • 21 is a schematic cross-sectional view of a charging stand according to another embodiment of the present invention.
  • the directional indications are only used to explain the relationship between the various components in a certain posture If the specific posture changes, the directional indication also changes accordingly.
  • the plasma generating system includes a plasma generator 10 and a charging base 20 used in cooperation with the plasma generator 10 .
  • the charging base 20 is used for supporting the plasma generator 10 and charging the plasma generator 10 .
  • the plasma generator 10 When the plasma generator 10 does not need to be used, the plasma generator 10 can be plugged into the charging base 20, so that the plasma generator 10 can be stably placed on the desktop or the like, preventing the plasma generator 10 from being removed from the desktop or other places. Roll off, and when the plasma generator 10 needs to be charged, the charging stand 20 electrically connected to the power supply can charge the plasma generator 10 . When the plasma generator 10 needs to be used, the plasma generator 10 can be removed from the charging base 20 .
  • the plasma generator 10 when the plasma generator 10 is used, when the plasma generator 10 is close to the user's scalp, the plasma generator 10 can ionize the air between the user's scalp and the plasma generator 10 to generate plasma. Plasma acts on the user's scalp and can improve the health of the scalp.
  • the plasma generator 10 includes a casing 300 , a plasma generating assembly 400 and a first battery 500 .
  • the plasma generating assembly 400 is disposed on the casing 300 .
  • the first battery 500 is disposed in the casing 300 .
  • the housing 300 is provided with a switch button 302a and a first charging contact 302b.
  • the switch button 302 a is used to turn on or off the plasma generating assembly 400 and the first battery 500 .
  • the plasma generator 10 can work, and when the plasma generating assembly 400 is disconnected from the first battery 500, the plasma generator 10 does not work.
  • the first charging contact 302b is electrically connected to the first battery 500.
  • the power supply can charge the first battery 500.
  • the housing 300 has a charging terminal 302 .
  • the switch button 302a and the first charging contact 302b are both located at the charging end 302 .
  • the first charging contact 302b of the charging end 302 is electrically connected to the second charging contact 212 in the charging base 20.
  • the charging base 20 electrically connected with the power supply can charge the first battery 500 . Since the switch button 302a and the first charging contact 302b are both located at the charging end 302, the charging base 20 can cover the switch button 302a when the plasma generator 10 is being charged and when the plasma generator 10 is not required to be used.
  • the plasma generator 10 is prevented from being turned on due to misoperation of the switch button 302 a, and the safety of the plasma generator 10 is improved. For example, during charging, if the switch button 302a is accidentally triggered and the plasma generator 10 is turned on, at this time, if the plasma generator 10 is close to the user's eyes, the air between the eyes and the plasma generator 10 is ionized, resulting in Plasma can strike the eye and cause eye injury.
  • the switch button 302 a and the first charging contact 302 b are both located on the end surface of the charging end 202 . In this way, it is more convenient to cover the switch button 302a during charging. It can be understood that, in other embodiments, at least one of the switch button 302 a and the first charging contact 302 b may also be on the circumferential wall of the charging end 202 .
  • the charging end 302 is provided with an escape hole 3022 .
  • the first charging contact 302b is accommodated in the escape hole 3022 . In this way, damage to the protruding first charging contact 302b due to scratching can be avoided.
  • the housing 300 includes a handle part 310 and a working part 320 which are connected together.
  • the first battery 500 is located in the handle portion 310 .
  • the plasma generating assembly 400 is located on the working part 320 .
  • the charging end 302 is the end of the handle portion 310 away from the working portion 320 .
  • the cross section of the handle portion 310 is oval. In this way, it is more convenient for users to hold.
  • the cross-section of the handle portion 310 may also be in the shape of a circle, a square, or the like.
  • the width of the working portion 320 is greater than or equal to the width of the handle portion 310 .
  • the working electrode 420 when the first battery 500 is omitted, can be powered by the way of connecting to the commercial power.
  • the power source is the commercial power.
  • the outer convex portion 424 is located outside the mounting through hole 410a.
  • the isolation cap 430 has an open end 432 , and the isolation cap 430 is sleeved outside the convex portion 424 through the open end 432 .
  • the opening 320a By providing the opening 320a, it is very convenient for the mounting seat 410 to be assembled on the working part 320, and it is convenient for the plug part 422 of the working electrode 420 to be electrically connected to the power source. By providing the installation through hole 410 a , it is very convenient for the insertion portion 422 of the working electrode 420 to be assembled on the installation seat 410 .
  • the protruding portion 424 of the working electrode 420 is located outside the mounting through hole 410a, which facilitates the protruding portion 424 of the working electrode 420 to protrude out of the mounting seat 410, so that it is more convenient for the working electrode 420 to be close to the user's scalp and other parts, for example, it is more convenient for the isolation cap 430 and the convex portion 424 of the working electrode 420 constitute comb teeth for combing hair.
  • the isolation cap 430 can isolate the convex portion 424 of the working electrode 420 to avoid damage to the user's scalp and other parts when the working electrode 420 is working.
  • the mounting seat 410 is detachably connected to the working part 320 . In this way, it is very easy to disassemble and assemble. Specifically, in this embodiment, the mounting seat 410 and the working part 320 are buckled together through a buckle.
  • the mounting seat 410 is an isolation seat 410 .
  • the isolation seat 410 also defines a mounting groove 410b surrounding the mounting through hole 410a.
  • the outer protrusion 424 and the mounting groove 410b are located on the same side of the isolation seat 410 .
  • the isolation cap 430 is sleeved outside the convex portion 424 through the open end 432 , and the open end 432 is inserted into the installation groove 410b.
  • the isolation cap 430 is sleeved outside the convex portion 424 through the open end 432 , when the working electrode 420 operates, the ionization energy released by the working electrode 420 may leak through the open end 432 .
  • the open end 432 is inserted into the installation groove 410b, so that two layers of isolation layers are formed at the open end 432, and the ionization energy released by the working electrode 420 can be effectively prevented from leaking through the open end 432. , further improving the isolation effect of the working electrode 420 , so that the plasma generator 10 has higher safety.
  • the end surface of the open end 432 interferes with the isolation seat 410 .
  • the open end 432 and the isolation seat 410 are sealed and fixed by a glue 432 a surrounding the open end 432 .
  • the end surface of the open end 432 is in contact with the isolation seat 410 , and the open end 432 and the isolation seat 410 are sealed and fixed by a glue 432 a surrounding the open end 432 . In this way, the ionization energy released by the working electrode 420 can be prevented from leaking out through the open end 432 to a certain extent, and the isolation effect of the working electrode 420 can be further improved, so that the plasma generator 10 has higher safety.
  • the isolation seat 410 includes a mounting plate 412 and an isolation protrusion 414 .
  • Mounting plate 412 closes opening 320a.
  • the isolation protrusion 414 is protruded from the side of the mounting plate 412 away from the opening 320a.
  • the mounting through hole 410 a penetrates the mounting plate 412 and the isolation protrusion 414 .
  • the mounting groove 410b is located at one end of the isolation protrusion 414 away from the mounting plate 412 .
  • the isolation protrusions 414 By arranging the isolation protrusions 414, it is more convenient for the outer protrusions 424 of the working electrode 420 to protrude out of the isolation seat 410, so that it is more convenient for the working electrode 420 to be close to the user's scalp and other parts, for example, it is more convenient for the isolation cap 430 and the working electrode 420
  • the outer convex portion 424 of the 10000 constitutes the comb teeth for combing the hair.
  • the material of the mounting plate 412 and the material of the isolation protrusion 414 are the same. That is, the mounting plate 412 is an isolation plate. In this way, it is more favorable to isolate the working electrode 420 . It can be understood that, in other embodiments, the material of the mounting plate 412 may also be different from the material of the isolation protrusion 414 .
  • the mounting plate 412 and the isolation protrusion 414 are integrally formed. In this way, it is easy to make.
  • the isolation protrusion 414 has an inner isolation tube 4142 .
  • the mounting through hole 410a includes a hollow cavity of the inner spacer tube 4142 .
  • Mounting slot 410b surrounds inner spacer tube 4142.
  • the isolation cap 430 it is more convenient for the isolation cap 430 to be formed with the protruding portion 424 of the working electrode 420 Teeth for combing hair.
  • the mass and volume of the isolation protrusion 414 can also be reduced, which is more conducive to obtaining the plasma generator 10 with a smaller weight and volume.
  • the outer diameters of the isolation protrusions 414 gradually decrease. In this way, while preventing the ionization energy released by the working electrode 420 from leaking out through the open end 432 , the isolation effect of the working electrode 420 is further improved, so that the plasma generator 10 has higher safety, and at the same time, the isolation protrusion 414 can be isolated.
  • the smaller mass and volume are more favorable for obtaining the plasma generator 10 with smaller weight and volume.
  • the installation through hole 410a has a connected insertion section 410c and a transition section 410d, the inner diameter of the transition section 410d is larger than the inner diameter of the insertion section 410c, and the transition section 410d is closer to the mounting plate 412 than the insertion section 410c .
  • One end of the insertion portion 422 close to the outer convex portion 424 is inserted into the insertion section 410c. In this way, not only is it convenient for the working electrode 420 to be inserted into the installation through hole 410a, but also it is convenient for the working electrode 420 to be electrically connected to the power supply on the side where the transition section 410d is located.
  • the inserting portion 422 is in clearance fit with the inserting segment 410c.
  • the spacer cap 430 is in clearance fit with the outer convex portion 424 . In this way, it is very convenient for the outer convex portion 424 to be inserted into the isolation cap 430 .
  • glue can be dispensed between the working electrode 420 and the inner wall of the isolation cap 430 to firmly fix the working electrode 420 .
  • the open end 432 of the isolation cap 430 is in clearance fit with the inner peripheral wall of the mounting groove 410b. In this way, it is very convenient for the open end 432 to be inserted into the installation slot 410b.
  • glue can be dispensed between the open end 432 and the inner peripheral wall of the installation groove 410b to firmly fix the isolation cap 430.
  • the end surface of the open end 432 is in contact with (including interference) with the groove bottom of the installation groove 410b. In this way, the ionization energy released by the working electrode 420 can be better isolated.
  • the diameter of the outer convex portion 424 is 1.0mm-4.0mm. Specifically, in this embodiment, the diameter of the outer convex portion 424 is 2.8mm-3.6mm. In this way, the ionization discharge of the convex portion 424 of the working electrode 420 is very convenient.
  • the diameter of the outer convex portion 424 may be 2.9 mm, 3.0 mm, 3.1 mm, 3.2 mm, 3.3 mm, 3.4 mm or 3.5 mm.
  • the diameter of the outer convex portion 424 is 3.2 mm
  • the outer diameter of the isolation cap 430 is 4.5 mm
  • the wall thickness of the isolation cap 430 is 0.6 mm.
  • one end of the isolation cap 430 away from the open end 432 is a flat end 434 .
  • the end of the isolation cap 430 away from the open end 432 can have a relatively large ionization end surface, which is more conducive to ionizing the air between the end of the isolation cap 430 away from the open end 432 and the user's scalp.
  • one end of the isolation cap 430 away from the open end 432 is a rounded end 436 .
  • the end face of the rounded end 436 includes a convex arcuate working face 4362 .
  • the end face of the rounded end 436 includes a concave arcuate working face. The convex circular arc working surface 436 can prevent the end surface of the round head end 436 from scratching the user's scalp.
  • the user's scalp is generally arc-shaped, and the concave arc working surface can make the end face of the round head end 436 roughly the same shape as the user's scalp, so that the distance between the end face of the round head end 436 and the user's scalp can be Roughly the same everywhere, the air between the end face of the butt end 436 and the user's scalp can be ionized more uniformly.
  • the material of the isolation cap 430 is an insulating material. Specifically, in this embodiment, the material of the isolation cap 430 is ceramic. More specifically, in this embodiment, the material of the isolation cap 430 is zirconia or alumina. In other embodiments, the material of the isolation cap 430 can also be Teflon.
  • the plurality of isolation caps 430 are arranged at intervals from each other.
  • the plurality of isolation protrusions 414 are spaced apart from each other.
  • the isolation seat 410 includes a mounting portion 416 and a light-transmitting portion 418 that are connected to each other.
  • the mounting through hole 410 a and the mounting groove 410 b are located on the mounting portion 416 .
  • the mounting plate 412 includes a mounting portion 416
  • the light-transmitting portion 418 includes an isolation protrusion 414 and a part of the mounting plate 412 corresponding to the isolation protrusion 414 .
  • Plasma generator 10 also includes a light therapy assembly 600 within housing 300 .
  • the light therapy assembly 600 includes a first light source 610 .
  • the first light source 610 is a laser light source.
  • the first light source 610 is located on the side of the isolation seat 410 away from the isolation cap 430 , and is disposed corresponding to the light-transmitting portion 416 . In this way, the light emitted by the first light source 610 can irradiate the user's scalp through the light-transmitting part 416 to irradiate the user's scalp to stimulate cells, activate hair root cells, and promote blood circulation, thereby promoting hair growth and preventing hair loss and baldness.
  • the plurality of first light sources 610 are distributed in the gaps of the plurality of isolation caps 430 and distributed in the gaps of the plurality of isolation protrusions 414 at the same time. In this way, the shielding of the first light source 610 by the isolation cap 430 and the isolation protrusion 414 can be reduced.
  • the light-transmitting portion 418 is provided with an escape groove 4182 corresponding to the position of the first light source 610 . In this way, not only the protruding first light source 610 can be avoided, but also the light of the first light source 610 can be more easily transmitted through the isolation seat 410 .
  • the plasma generator 10 further includes a vibration massage assembly 700 located in the casing 300 .
  • the vibration massage assembly 700 is used to drive the isolation seat 410 to vibrate.
  • the isolation cap 430 can be brought into contact with the user's scalp, and the vibration massage assembly 700 is turned on at the same time, so that the isolation seat 410 vibrates, thereby realizing vibration massage on the user's scalp.
  • the vibration massage assembly 700 , the first light source 610 and the working electrode 420 are all electrically connected to the first battery 500 , and the first battery 500 supplies power to the vibration massage assembly 700 , the first light source 610 and the working electrode 420 .
  • the plasma generator 10 further includes a transformer 800 and a circuit board 900 located in the casing 300 .
  • the transformer 800 , the vibration massage assembly 700 and the first light source 610 are electrically connected to the first battery 500 through the circuit board 900
  • the transformer 800 is electrically connected to the plug portion 422 of the working electrode 420 through the circuit board 900 .
  • the transformer 800 can increase the voltage of the first battery 500 to provide the working electrode 420 with a high voltage, so that the working electrode 420 can ionize the air between the user's scalp and the isolation cap 430 when the working electrode 420 is working.
  • circuit boards 900 which are a first circuit board 900a and a second circuit board 900b respectively.
  • the isolation base 410 , the first circuit board 900a and the second circuit board 900b are arranged in sequence, and the first circuit board 900a and the second circuit board 900b are electrically connected.
  • the working electrode 420 and the first light source 610 are respectively electrically connected to the first circuit board 900a, and the first battery 500, the vibration massage assembly 700 and the transformer 800 are respectively electrically connected to the second circuit board 900b.
  • the provision of two circuit boards 900 is more convenient for each element to be electrically connected to the first battery 500 .
  • the first circuit board 900a is exposed from the opening 320a.
  • the first circuit board 900a defines an insertion hole 910 corresponding to the insertion portion 422 .
  • the plug-in portion 422 is plugged into the plug-in hole 910, so as to realize the electrical connection between the working electrode 420 and the first circuit board 900a. In this way, it is very convenient for the working electrode 420 to be electrically connected to the first circuit board 900a.
  • the casing 300 includes a first casing 330 and a second casing 340 .
  • the first casing 330 and the second casing 340 are arranged along the arrangement direction of the isolation seat 410 , the first circuit board 900 a and the second circuit board 900 b , and can be detachably connected.
  • the first casing 330 and the second casing 340 enclose a cavity for accommodating the first battery 500 , the light therapy component 600 , the vibration massage component 700 , the transformer 800 and the circuit board 900 .
  • the opening 320a is located on the first housing 330 .
  • a conductive member 350 is provided on the handle portion 310 of the housing 300 .
  • the conductive member 350 is electrically connected to the plasma generating assembly 400 .
  • the conductive member 350 is electrically connected to the negative electrode of the first battery 500 .
  • the plasma generating assembly 400 (working electrode 420 ) is close to the scalp of the user, and when the plasma generating assembly 400 (working electrode 420 ) is working, the plasma generating assembly 400 (working electrode 420 ) ionizes the scalp of the user and the plasma generating assembly 400 ( The air between the working electrode 420 and/or the isolation cap 430 ) generates plasma.
  • the human body A loop is formed between the conductive member 350 and the plasma generating component 400 (the working electrode 420 ), which can increase the energy of the ionization energy output by the working electrode 420 .
  • the conductive member 350 is elongated.
  • the length direction of the conductive member 350 is the same as the length direction of the handle portion 310 . In this way, the user can also touch the conductive member 350 when holding different positions of the handle portion 310 , which is more convenient for the user to use.
  • the conductive member 350 is located at the boundary position between the first casing 330 and the second casing 340 , that is, at the connecting position between the first casing 330 and the second casing 340 . In this way, it is convenient for the conductive member 350 to be electrically connected to the first battery 500 .
  • the conductive member 350 includes a first conductive member 350a and a second conductive member 350b which are insulated and disposed.
  • the first conductive member 350a and the second conductive member 350b can be held by a handle The user of section 310 is turned on.
  • the plasma generator 10 also includes a detection module 360 .
  • the detection module 360 is used to detect whether the first conductive member 350a and the second conductive member 350b are connected. When the first conductive member 350a and the second conductive member 350b are connected, the plasma generating assembly 400 works. When not conducting with the second conductive member 350b, the plasma generating assembly 400 does not work.
  • the detection module 360 first detects whether the first conductive member 350a and the second conductive member 350b are connected by the user holding the handle portion 310, that is, the detection module 360 first detects whether the user touches the The first conductive member 350a and the second conductive member 350b do not work until the user touches the first conductive member 350a and the second conductive member 350b at the same time. In this way, malfunction of the plasma generating assembly 400 can be avoided, and user experience can be improved.
  • the charging base 20 will be described in detail below.
  • the charging base 20 includes a charging base 210 and a fixing cover 220 .
  • the charging base 210 has second charging contacts 212 .
  • the fixing cover 220 is disposed on the charging base 210 .
  • the fixing cover 220 has a fixing cavity 220a for accommodating the charging end 202 of the plasma generator 10 (to be fixed).
  • the charging base 20 When the charging end 202 of the plasma generator 10 (the part to be fixed) is accommodated in the fixing cavity 220a, the charging base 20 stably supports the plasma generator 10 (the part to be fixed), and the charging base 20 stably supports the plasma generator 10 (the part to be fixed), and the The first charging contact 302b of the charging end 202 is in conflict with the second charging contact 212 of the charging base 210 .
  • the charging base 20 can effectively protect the plasma generator 10 (the part to be fixed) by preventing the plasma generator 10 (the part to be fixed) from rolling down from the table top, and the charging base 20 electrically connected to the power supply can also be Charge the plasma generator 10 (to be fixed).
  • an exposed charging interface 214 is disposed on the charging base 210 , and the charging interface 214 is electrically connected to the second charging contact 212 .
  • the charging interface 214 is used for electrical connection with the power supply.
  • the charging interface 214 is a USB interface.
  • 1/4-2/3 times the length of the handle portion 310 can be accommodated in the charging base 20 , that is, the depth of the fixing cavity 220 a of the charging base 20 is approximately 1/4 of the length of the handle portion 310 . -2/3 times. In this way, it is convenient for the charging stand 20 to stably support the plasma generator 10 (the part to be fixed).
  • the outer diameter of the fixing cover 220 gradually decreases. In this way, not only is it convenient for the charging base 20 to stably support the plasma generator 10 (the part to be fixed), but also it is convenient for the user to identify the insertion end of the charging base 20 , which has a foolproof effect.
  • the shape of the fixing cavity 220a is the same as that of the charging end 202 of the plasma generator 10 (the part to be fixed). In this way, it is convenient for the charging stand 20 to stably support the plasma generator 10 (the part to be fixed).
  • the shape of the fixing cavity 220a and the shape of the charging end 202 of the plasma generator 10 (the part to be fixed) are both oval, circular or square.
  • the fixing cover 220 is detachably connected to the charging base 210 . In this way, it is very convenient to assemble and disassemble the charging stand 20 .
  • the charging base 210 has a bayonet 216
  • the fixing cover 220 has a locking block 222
  • the locking block 222 is clamped on the bayonet 216 , so that the fixing cover 220 and the charging base 210 can be detachably connected.
  • the fixing cover 220 and the charging base 210 can also be detachably connected by means of screws.
  • the charging base 210 has a recessed escape groove 218 .
  • the shape of the escape groove 218 is the same as the shape of the end face of the charging end 202 of the plasma generator 10 (the part to be fixed). In this way, it is convenient for the charging stand 20 to stably support the plasma generator 10 (the part to be fixed).
  • the second charging contact 212 is located at the bottom of the escape groove 218 . In this way, it is more convenient for the second charging contact 212 to be electrically connected to the charging end 202 of the plasma generator 10 (the part to be fixed).
  • the charging stand 20 further includes a second light source 230 .
  • the second light source 230 is disposed on the charging base 210 and is electrically connected to the charging interface 214 .
  • the fixed cover 220 can transmit light.
  • the light emitted by the second light source 230 can be transmitted through the fixing cover 220 . Therefore, when the charging base 210 is electrically connected to the power supply through the charging interface 214, the second light source 230 is lit.
  • the charging base 20 can also play the role of lighting, and can be used as a desk lamp.
  • the charging base 20 further includes a second battery, and the second battery is electrically connected to the second light source 230 to supply power to the second light source 230 . Therefore, when the charging base 210 is not electrically connected to the power supply, the second light source 230 can be lit by the second light source 230 .
  • the charging base 210 includes a bottom plate 210a, a third circuit board 210b and a base body 210c, the base body 210c is disposed on the base plate 210a, and the third circuit board 210b is sandwiched between the base body 210c and the base plate 210a.
  • the second charging contact 212, the second light source 230 and the charging interface 214 are respectively electrically connected to the third circuit board 210b.
  • the fixed cover 220 is detachably connected to the base body 210c.
  • the escape groove 218 is located on the base body 210c. Both the second charging contact 212 and the second light source 230 are exposed from the side of the base body 210c close to the fixing cover 220 .
  • the charging port 214 is exposed from the peripheral side wall of the base body 210c.
  • the cavity wall of the fixing cavity 220a is a hollow structure. In this way, on the premise that the charging base 20 stably supports the plasma generator 10 (the part to be fixed), the material cost of the charging base 20 can also be reduced.
  • the cavity wall of the fixation cavity 220a is a solid structure. In this way, the charging stand 20 can be made to stably support the plasma generator 10 (to be fixed).
  • a hair growth comb is also provided, and the hair growth comb includes the above-mentioned plasma generator 10 or the above-mentioned hair growth system.
  • each comb tooth of the hair growth comb includes an outer convex portion 424 and an isolation cap 430 .

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  • Engineering & Computer Science (AREA)
  • Health & Medical Sciences (AREA)
  • Plasma & Fusion (AREA)
  • Physics & Mathematics (AREA)
  • Nuclear Medicine, Radiotherapy & Molecular Imaging (AREA)
  • Biomedical Technology (AREA)
  • Spectroscopy & Molecular Physics (AREA)
  • Radiology & Medical Imaging (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
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Abstract

一种等离子体发生组件(400)、生发梳和充电座(20),其中,等离子体发生组件(400)包括隔离座(410)、工作电极(420)及隔离帽(430),隔离座(410)具有安装通孔(410a)和环绕安装通孔(410a)一周的安装槽(410b);工作电极(420)具有插接部(422)和与插接部(422)连接的外凸部(424),插接部(422)插接于安装通孔(410a)内,插接部(422)远离外凸部(424)的一端用于与电源电连接,外凸部(424)位于安装通孔(410a)外,外凸部(424)和安装槽(410b)位于隔离座(410)的同一侧;隔离帽(430)具有开口端(432),隔离帽(430)通过开口端(432)套设于外凸部(424)外,且开口端(432)插接于安装槽(410b)内。等离子体发生组件(400)能提高工作电极(420)的隔离效果。

Description

等离子体发生组件、生发梳和充电座
本申请要求于2020年12月24日提交中国专利局、申请号为202011557724.8、发明名称为“等离子体发生组件、等离子体发生器和生发梳”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
本申请要求于2020年12月24日提交中国专利局、申请号为202023170497.1、发明名称为“等离子体发生器、等离子体发生系统和生发梳”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
本申请要求于2020年12月24日提交中国专利局、申请号为202023171041.7、发明名称为“等离子体发生器和生发梳”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
本申请要求于2020年12月24日提交中国专利局、申请号为202023171507.3、发明名称为“充电座、等离子体发生系统和生发梳”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及医疗器械技术领域,特别涉及一种等离子体发生组件、生发梳和充电座。
背景技术
毛发疾病是临床上的多发病,常见的有脱发、秃发、枯发和白发。随着人们美容意识的不断提高,人们对毛发健康提出了更高的要求。相关研究表明,等离子体作用于头皮,可以提高头皮组织对药物的吸收率,此外,等离子体还可以起到杀菌消炎的作用,有效缓解皮脂腺油性分泌,减少头皮瘙痒等症状,从而改善头皮的健康状况。但相关技术中的等离子体发生器的工作电极的隔离效果较差,导致其安全性有待提高。
技术问题
本申请主要目的是提出一种等离子体发生组件,旨在提高工作电极的隔离效果。
技术解决方案
本申请提出的一种等离子体发生组件,包括:
隔离座,具有安装通孔和环绕所述安装通孔一周的安装槽;
工作电极,具有插接部和与所述插接部连接的外凸部,所述插接部插接于所述安装通孔内,所述插接部远离所述外凸部的一端用于与电源电连接,所述外凸部位于所述安装通孔外,所述外凸部和所述安装槽位于所述隔离座的同一侧;以及
隔离帽,具有开口端,所述隔离帽通过所述开口端套设于所述外凸部外,且所述开口端插接于所述安装槽内。
本发明还提出一种生发梳,包括:
壳体,具有开口;以及
上述等离子体发生组件,所述隔离座封闭所述开口,所述隔离帽位于所述隔离座远离所述壳体的一侧;
其中,所述生发梳的每一梳齿包括一所述插接部及一所述隔离帽。
本发明还提出一种充电座,用于与上述的生发梳的所述充电端配合使用,其特征在于,包括:
充电底座,具有第二充电触点,所述充电底座上设置有外露的充电接口,所述充电接口与所述第二充电触点电连接;以及
固定罩,设于所述充电底座上,所述固定罩具有用于收容所述充电端的固定腔;
其中,当所述充电端收容于所述固定腔内时,所述充电座稳定支撑所述生发梳,所述第一充电触点与所述第二充电触点抵触。
本申请的一个或多个实施例的细节在下面的附图和描述中提出。本申请的其它特征、目的和优点将从说明书、附图以及权利要求书变得明显。
有益效果
在上述等离子体发生组件中,通过设置安装槽,开口端插接于安装槽内,从而相对于在开口端处形成内外两层隔离层,进而可以有效避免工作电极放出的电离能通过开口端外漏,进一步提高工作电极的隔离效果,使得等离子体发生器具有更高的安全性。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图示出的结构获得其他的附图。
图1为本发明一实施例的等离子体发生器的立体结构示意图;
图2为图1所示的等离子体发生器的另一视角的立体结构示意图;
图3为图1中的A处的局部放大图;
图4为图1所示的等离子体发生器的部分分解图;
图5为图1所示的等离子体发生器的另一视角的部分分解图;
图6为图1所示的等离子体发生器的剖面示意图;
图7为图6中的B处的局部放大图;
图8为图1中的安装座的立体剖面示意图;
图9为图8中的C处的局部放大图;
图10为本发明另一实施例的等离子体发生器的结构示意图;
图11为本发明另一实施例的等离子体发生器的结构示意图;
图12为本发明另一实施例的等离子体发生器的结构示意图;
图13为本发明另一实施例的等离子体发生器的立体结构示意图;
图14为图13中的等离子体发生器的隔离帽的剖面示意图;
图15为本发明另一实施例的等离子体发生器的立体分解示意图;
图16为与图15对应的等离子体发生器的模块示意图;
图17为本发明一实施例的充电座的立体结构示意图;
图18为图17所示的充电座的俯视图;
图19为图17所示的充电座的立体分解示意图;
图20为图17所示的充电座的剖面示意图;
图21为本发明另一实施例的充电座的剖面示意图。
本发明的实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请的一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
需要说明,若本申请实施例中有涉及方向性指示(诸如上、下、左、右、前、后……),则该方向性指示仅用于解释在某一特定姿态下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。
另外,若本申请实施例中有涉及“第一”、“第二”等的描述,则该“第一”、“第二”等的描述仅用于描述目的,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,若全文中出现的“和/或”的含义为,包括三个并列的方案,以“A和/或B”为例,包括A方案,或B方案,或A和B同时满足的方案。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本申请要求的保护范围之内。
本发明提出一种等离子体发生系统。
在本发明实施例中,如图1及图14所示,该等离子体发生系统包括等离子体发生器10及与等离子体发生器10配合使用的充电座20。充电座20用于支撑等离子体发生器10以及为等离子体发生器10充电。
当不需要使用等离子体发生器10时,可以将等离子体发生器10插接于充电座20内,使得等离子体发生器10能稳定放置于桌面等地方,防止等离子体发生器10从桌面等地方滚落,而且当等离子体发生器10需要充电时,与供电电源电连接的充电座20可以为等离子体发生器10充电。当需要使用等离子体发生器10时,将等离子体发生器10从充电座20上取下即可。
在使用等离子体发生器10时,当等离子体发生器10靠近用户头皮时,等离子体发生器10可以电离用户头皮与等离子体发生器10之间的空气,产生等离子体。等离子体作用于用户头皮,可以改善头皮的健康状况。
在本实施例中,如图1-图4所示,等离子体发生器10包括壳体300、等离子体发生组件400以及第一电池500。等离子体发生组件400设于壳体300上。第一电池500设于壳体300内。
壳体300上设有开关按键302a及第一充电触点302b。
开关按键302a用于导通或断开等离子体发生组件400与第一电池500。当等离子体发生组件400与第一电池500导通时,等离子体发生器10可以工作,而当等离子体发生组件400与第一电池500断开时,等离子体发生器10不工作。
第一充电触点302b与第一电池500电连接,当第一电池500通过第一充电触点302b与供电电源导通时,供电电源可以为第一电池500充电。
在本实施例中,壳体300具有充电端302。开关按键302a及第一充电触点302b均位于充电端302。如此,当等离子体发生器10的壳体300的充电端302插入充电座20内时,充电端302的第一充电触点302b与充电座20内的第二充电触点212电连接,此时,与供电电源电连接的充电座20可以为第一电池500充电。而由于开关按键302a及第一充电触点302b均位于充电端302,从而在等离子体发生器10充电时以及在不需要使用等离子体发生器10时,充电座20可以遮蔽开关按键302a,进而可以避免因误操作开关按键302a而导致等离子体发生器10开启,提高等离子体发生器10的安全性。例如,在充电时,若不小心触发开关按键302a而导致等离子体发生器10开启,此时,若等离子体发生器10靠近用户眼睛,眼睛与等离子体发生器10之间的空气被电离,产生等离子体会冲击眼睛,导致眼睛受伤。
在本实施例中,开关按键302a及第一充电触点302b均位于充电端202的端面上。如此,更便于在充电时遮蔽开关按键302a。可以理解,在其他实施例中,开关按键302a与第一充电触点302b中的至少一者也可以为充电端202周向壁面上。
在本实施例中,充电端302开设有避让孔3022。第一充电触点302b收容于避让孔3022内。如此,可以避免凸出的第一充电触点302b因刮碰而损坏。
在本实施例中,壳体300包括相连的手柄部310及工作部320。第一电池500位于手柄部310内。等离子体发生组件400位于工作部320上。充电端302为手柄部310远离工作部320的一端。
在本实施例中,手柄部310的横截面呈椭圆形。如此,更便于用户握持。在其他实施例中,手柄部310的横截面也可以呈圆形、方形等形状。
在本实施例中,在手柄部310与工作部320的排布方向上,工作部320的宽度大于等于手柄部310的宽度。
在本实施例中,如图4-图9所示,等离子体发生组件400包括安装座410、工作电极420及隔离帽430。工作部320具有开口320a。安装座410封闭开口320a。安装座410开设有安装通孔410a。工作电极420具有插接部422和与插接部422连接的外凸部424。插接部422插接于安装通孔410a内。插接部422远离外凸部424的一端用于与电源电连接。在本实施例中,电源为第一电池500。可以理解,在其他实施例中,当第一电池500省略时,可以采用接市电的方式为工作电极420供电,此时,电源为市电。外凸部424位于安装通孔410a外。隔离帽430具有开口端432,隔离帽430通过开口端432套设于外凸部424外。
通过设置开口320a,非常便于安装座410组装于工作部320上,并便于工作电极420的插接部422与电源电连接。通过设置安装通孔410a,非常便于工作电极420的插接部422组装于安装座410上。工作电极420的外凸部424位于安装通孔410a外,便于工作电极420的外凸部424凸出至安装座410外,从而更便于工作电极420靠近用户头皮等部位,例如,更便于隔离帽430与工作电极420的外凸部424构成用于梳头发的梳齿。而隔离帽430可以隔离工作电极420的外凸部424,避免工作电极420工作时对用户头皮等部位造成损伤。
在本实施例中,安装座410与工作部320可拆卸连接。如此,非常便于拆装。具体地,在本实施例中,安装座410与工作部320通过卡扣扣接。
为了进一步提高工作电极420的隔离效果,在本实施例中,如图4-图11所示,安装座410为隔离座410。隔离座410还开设有环绕安装通孔410a一周的安装槽410b。外凸部424和安装槽410b位于隔离座410的同一侧。隔离帽430通过开口端432套设于外凸部424外,且开口端432插接于安装槽410b内。由于隔离帽430通过开口端432套设于外凸部424外,工作电极420工作时,工作电极420放出的电离能存在通过开口端432外漏的风险。而通过设置安装槽410b,开口端432插接于安装槽410b内,从而相对于在开口端432处形成内外两层隔离层,进而可以有效避免工作电极420放出的电离能通过开口端432外漏,进一步提高工作电极420的隔离效果,使得等离子体发生器10具有更高的安全性。
在一些实施例中,如图12所示,开口端432的端面与隔离座410抵触。在一些实施例中,开口端432与隔离座410通过环绕开口端432一周的胶水432a密封固定。在一些实施例中,开口端432的端面与隔离座410抵触,且开口端432与隔离座410通过环绕开口端432一周的胶水432a密封固定。如此,也能在一定程度上避免工作电极420放出的电离能通过开口端432外漏,进一步提高工作电极420的隔离效果,使得等离子体发生器10具有更高的安全性。
在本实施例中,如图4-图9所示,隔离座410包括安装板412和隔离凸起414。安装板412封闭开口320a。隔离凸起414凸设于安装板412远离开口320a的一侧外。安装通孔410a贯穿安装板412和隔离凸起414。安装槽410b位于隔离凸起414远离安装板412的一端。通过设置隔离凸起414,如此,更便于工作电极420的外凸部424凸出至隔离座410外,从而更便于工作电极420靠近用户头皮等部位,例如,更便于隔离帽430与工作电极420的外凸部424构成用于梳头发的梳齿。
在本实施例中,安装板412的材质和隔离凸起414的材质相同。也即安装板412为隔离板。如此,更利于隔离工作电极420。可以理解,在其他实施例中,安装板412的材质也可以与隔离凸起414的材质不相同。
在本实施例中,隔离座410的材质为聚碳酸酯。既具有隔离效果,还具有透光性较好的特点。
在本实施例中,安装板412与隔离凸起414一体成型。如此,便于制作。
在本实施例中,隔离凸起414具有内隔离管4142。安装通孔410a包括内隔离管4142的中空腔。安装槽410b环绕内隔离管4142。内隔离管4142靠近外凸部424的一端伸出至安装槽410b外。如此,更便于工作电极420的外凸部424凸出至隔离座410外,从而更便于工作电极420靠近用户头皮等部位,例如,更便于隔离帽430与工作电极420的外凸部424构成用于梳头发的梳齿。且在确保工作电极420具有较好的隔离效果的同时,还可以使得隔离凸起414的质量及体积较小,更利于获得重量及体积较小的等离子体发生器10。
在一些实施例中,如图11所示,隔离座410具有内隔离管4142。内隔离管4142具有安装通孔410a。安装槽410b环绕内隔离管4142。其中,内隔离管4142靠近外凸部424的一端伸出至安装槽410b外。如此,也能更便于工作电极420的外凸部424凸出至隔离座410外,从而更便于工作电极420靠近用户头皮等部位,例如,更便于隔离帽430与工作电极420的外凸部424构成用于梳头发的梳齿。
在本实施例中,如图4-图9所示,在安装板412至隔离凸起414的排布方向上,隔离凸起414的外径逐渐减小。如此,在避免工作电极420放出的电离能通过开口端432外漏,进一步提高工作电极420的隔离效果,使得等离子体发生器10具有更高的安全性的同时,还可以使得隔离凸起414的质量及体积较小,更利于获得重量及体积较小的等离子体发生器10。
在本实施例中,安装通孔410a具有相连通的插接段410c及过渡段410d,过渡段410d的内径大于插接段410c的内径,过渡段410d相对于插接段410c更靠近安装板412。插接部422靠近外凸部424的一端插接于插接段410c内。如此,不仅便于工作电极420插接于安装通孔410a内,而且还便于工作电极420于过渡段410d所在的一侧与电源电连接。
在本实施例中,插接部422与插接段410c间隙配合。在制作等离子体发生器10时,工作电极420插接于安装通孔410a内后,可以在工作电极420与安装通孔410a的内壁之间点胶,以牢固固定工作电极420。
在本实施例中,外凸部424的外径大于插接部422的外径。如此,便于外凸部424位于安装通孔410a外,从而便于工作电极420与安装通孔410a定位组装。
在本实施例中,隔离帽430与外凸部424间隙配合。如此,非常便于外凸部424插接于隔离帽430内。在制作等离子体发生器10时,工作电极420插接于隔离帽430内后,可以在工作电极420与隔离帽430的内壁之间点胶,以牢固固定工作电极420。
在本实施例中,隔离帽430的开口端432与安装槽410b的内周壁间隙配合。如此,非常便于开口端432插接于安装槽410b内。在制作等离子体发生器10时,开口端432插接于安装槽410b内后,可以在开口端432与安装槽410b的内周壁之间点胶,以牢固固定隔离帽430。
在本实施例中,开口端432的端面与安装槽410b的槽底接触(包括抵触)。如此,能更好的隔离工作电极420放出的电离能。
在本实施例中,外凸部424的直径为1.0mm-4.0mm。具体地,在本实施例中,外凸部424的直径为2.8mm-3.6mm。如此,非常便于工作电极420的外凸部424电离放电。其中,外凸部424的直径可以为2.9mm、3.0mm、3.1mm、3.2mm、3.3mm、3.4mm或3.5mm。
在本实施例中,隔离帽430的外直径为2.0mm-6.0mm。具体地,在本实施例中,隔离帽430的外直径为4.0mm-5.0mm,隔离帽430的壁厚为0.3mm-1.5mm。如此,如此,非常便于工作电极420的外凸部424隔离放电。其中,隔离帽430的外直径可以为4.1mm、4.2mm、4.3mm、4.4mm、4.5mm、4.6mm、4.7mm、4.8mm或4.9mm。隔离帽430的壁厚可以为0.4mm、0.5mm、0.6mm、0.7mm、0.8mm、0.9mm、1.0mm、1.1mm、1.2mm、1.3mm或1.4mm。
具体地,在本实施例中,外凸部424的直径为3.2mm,隔离帽430的外直径为4.5mm,隔离帽430的壁厚为0.6mm。
在本实施例中,隔离帽430远离开口端432的一端为偏平端434。如此,可以使得隔离帽430远离开口端432的一端具有相对较大的电离端面,从而更利于电离隔离帽430远离开口端432的一端与用户头皮之间的空气。
在一些实施例中,如图13及图14所示,隔离帽430远离开口端432的一端为圆头端436。在一些实施例中,圆头端436的端面包括外凸的圆弧工作面4362。在一些实施例中,圆头端436的端面包括内凹的圆弧工作面。外凸的圆弧工作面436可以避免圆头端436的端面刮伤用户头皮。而用户的头皮大致呈弧形,内凹的圆弧工作面可以使得圆头端436的端面与用户的头皮的形状大致相同,从而圆头端436的端面与用户的头皮之间的距离,可以处处大致相同,能够更均匀的电离圆头端436的端面与用户头皮之间的空气。
在本实施例中,隔离帽430的材质为绝缘材质。具体地,在本实施例中,隔离帽430的材质为陶瓷。更具体地,在本实施例中,隔离帽430的材质为氧化锆或氧化铝。在其他实施例中,隔离帽430的材质也可以为特氟龙。
在本实施例中,如图4-图9所示,安装通孔410a、安装槽410b、工作电极420及隔离帽430均为多个,并一一对应设置。也即多个隔离凸起414、工作电极420及隔离帽430均为多个,并一一对应设置。如此,可以使得等离子体发生器10具有较大的电离面积。
在本实施例中,多个隔离帽430相互间隔设置。多个隔离凸起414相互间隔设置。
在本实施例中,隔离座410包括相连的安装部416及透光部418。安装通孔410a及安装槽410b位于安装部416上。在本实施例中,安装板412包括安装部416,透光部418包括隔离凸起414及与隔离凸起414对应的部分安装板412。
等离子体发生器10还包括位于壳体300内的光治疗组件600。光治疗组件600包括第一光源610。在本实施例中,第一光源610为激光光源。第一光源610位于隔离座410远离隔离帽430的一侧,并与透光部416对应设置。如此,第一光源610发出的光可以经透光部416照射用户头皮,对用户头皮进行照射,以刺激细胞、活化毛根细胞、促进血液循环,进而促使头发生长,防止脱发、秃发。
在本实施例中,第一光源610为多个,多个第一光源610分布于多个隔离帽430的间隙处,同时分布于多个隔离凸起414的间隙处。如此,可以减小隔离帽430及隔离凸起414对第一光源610的遮挡。
在本实施例中,透光部418对应第一光源610的位置开设有避位槽4182。如此,不仅可以避让凸出的第一光源610,而且更利于第一光源610的光线透出隔离座410。
在本实施例中,等离子体发生器10还包括位于壳体300内的振动按摩组件700。振动按摩组件700用于驱动隔离座410振动。如此,当工作电极420不工作时,可以使得隔离帽430与用户头皮接触,同时开启振动按摩组件700,使得隔离座410振动,从而实现对用户头皮的振动按摩。
在本实施例中,振动按摩组件700、第一光源610与工作电极420均和第一电池500电连接,第一电池500为振动按摩组件700、第一光源610与工作电极420供电。
在本实施例中,等离子体发生器10还包括位于壳体300内的变压器800及电路板900。变压器800、振动按摩组件700及第一光源610通过电路板900与第一电池500电连接,变压器800通过电路板900与工作电极420的插接部422电连接。变压器800可以将第一电池500的电压提高,为工作电极420提供高电压,从而使得工作电极420在工作时,能电离用户头皮与隔离帽430之间的空气。
在本实施例中,电路板900为两块,分别为第一电路板900a及第二电路板900b。隔离座410、第一电路板900a及第二电路板900b依次排布,第一电路板900a与第二电路板900b电连接。工作电极420及第一光源610分别与第一电路板900a电连接,第一电池500、振动按摩组件700及变压器800分别与第二电路板900b电连接。设置两块电路板900,更便于各元件与第一电池500电连接。
在本实施例中,第一电路板900a自开口320a露出。第一电路板900a开设有与插接部422对应的插接孔910。插接部422插接于插接孔910上,从而实现工作电极420与第一电路板900a电连接。如此,非常便于工作电极420与第一电路板900a电连接。
在本实施例中,壳体300包括第一壳体330及第二壳体340。第一壳体330与第二壳体340沿隔离座410、第一电路板900a及第二电路板900b排布方向排布,并可拆卸连接。第一壳体330与第二壳体340围合形成收容第一电池500、光治疗组件600、振动按摩组件700、变压器800及电路板900的腔体。开口320a位于第一壳体330上。
在本实施例中,如图4-图9所示,在壳体300的手柄部310上设置导电件350。导电件350与等离子体发生组件400电连接。具体地,在本实施中,导电件350与第一电池500的负极电连接。如此,等离子体发生组件400(工作电极420)靠近用户头皮,且等离子体发生组件400(工作电极420)工作时,等离子体发生组件400(工作电极420)电离用户头皮与等离子体发生组件400(工作电极420和/或隔离帽430)之间的空气,产生等离子体,此时,用户触摸导电件350,则等离子体发生组件400(工作电极420和/或隔离帽430)、等离子体、人体、导电件350及等离子体发生组件400(工作电极420)之间形成回路,可以提高工作电极420输出的电离能的能量。
在本实施例中,导电件350呈长条状。导电件350的长度方向与手柄部310的长度方向相同。如此,用户在握持手柄部310的不同位置时,也能触摸到导电件350,从而更方便用户使用。
在本实施例中,导电件350为长条金属片,例如,金属铜片。
在本实施例中,导电件350位于第一壳体330与第二壳体340的交界位置,也即位于第一壳体330与第二壳体340的连接位置。如此,便于导电件350与第一电池500电连接。
在一些实施例中,导电件350为多个,多个导电件350相互导通。其中,至少一个导电件350与等离子体发生组件400电连接。设置多个导电件350,更便于用户接触导电件350。
在一些实施例中,如图15及图16所示,导电件350包括绝缘设置的第一导电件350a及第二导电件350b,第一导电件350a与第二导电件350b能通过握持手柄部310的用户导通。
等离子体发生器10还包括检测模块360。检测模块360用于检测第一导电件350a与第二导电件350b是否导通,当第一导电件350a与第二导电件350b导通时,等离子体发生组件400工作,当第一导电件350a与第二导电件350b不导通时,等离子体发生组件400不工作。也即在等离子体发生组件400工作之前,检测模块360先检测第一导电件350a与第二导电件350b是否被用户握持手柄部310导通,也即检测模块360先检测用户是否同时接触到第一导电件350a与第二导电件350b,用户同时接触到第一导电件350a与第二导电件350b后,等离子体发生组件400才工作。如此,可以避免等离子体发生组件400误工作,提升用户体验。
下面详细介绍充电座20。
在本实施例中,如图17-图20所示,充电座20包括充电底座210及固定罩220。充电底座210具有第二充电触点212。固定罩220设于充电底座210上。固定罩220具有用于收容等离子体发生器10(待固定件)的充电端202的固定腔220a。当等离子体发生器10(待固定件)的充电端202收容于固定腔220a内时,充电座20稳定支撑等离子体发生器10(待固定件),等离子体发生器10(待固定件)的充电端202的第一充电触点302b与充电底座210的第二充电触点212抵触。如此,充电座20可以通过防止等离子体发生器10(待固定件)从桌面等地方滚落,有效保护等离子体发生器10(待固定件),而且与供电电源电连接的充电座20还可以为等离子体发生器10(待固定件)充电。
在本实施例中,充电底座210上设置有外露的充电接口214,充电接口214与第二充电触点212电连接。充电接口214用于与供电电源电连接。在本实施例中,充电接口214为USB接口。
在本实施例中,手柄部310的长度的1/4-2/3倍能收容于充电座20内,也即充电座20的固定腔220a的深度大致为手柄部310的长度的1/4-2/3倍。如此,便于充电座20稳定支撑等离子体发生器10(待固定件)。
在本实施例中,在充电底座210至固定罩220的排布方向上,固定罩220的外径逐渐减小。如此,不仅便于充电座20稳定支撑等离子体发生器10(待固定件),而且便于用户识别充电座20的插入端,具有防呆的效果。
在本实施例中,固定腔220a的形状与等离子体发生器10(待固定件)的充电端202的形状相同。如此,便于充电座20稳定支撑等离子体发生器10(待固定件)。在本实施例中,固定腔220a的形状与等离子体发生器10(待固定件)的充电端202的形状均为椭圆形、圆形或者方形。
在本实施例中,固定罩220与充电底座210可拆卸连接。如此,非常便于拆装充电座20。
在本实施例中,充电底座210具有卡口216,固定罩220具有卡块222,卡块222卡接于卡口216上,从而实现固定罩220与充电底座210可拆卸连接。可以理解,在其他实施例中,固定罩220与充电底座210还可以通过打螺钉的方式来实现可拆卸连接。
在本实施例中,充电底座210具有内凹的避让槽218。避让槽218的形状与等离子体发生器10(待固定件)的充电端202的端面形状相同。如此,便于充电座20稳定支撑等离子体发生器10(待固定件)。
在本实施例中,第二充电触点212位于避让槽218的槽底。如此,更便于第二充电触点212与等离子体发生器10(待固定件)的充电端202电连接。
在一些实施例中,如图20所示,卡口216位于避让槽218的槽底。在一些实施例中,如图21所示,卡口216位于避让槽218的外周。
在本实施例中,如图17-图21所示,充电座20还包括第二光源230。第二光源230设于充电底座210上,并与充电接口214电连接。固定罩220能透光。第二光源230发出的光线能经固定罩220透出。从而当充电底座210通过充电接口214与供电电源电连接时,第二光源230被点亮,此时,充电座20还可以起到照明的作用,可以作为台灯。在一些实施例中,充电座20还包括第二电池,第二电池与第二光源230电连接,为第二光源230供电。从而当充电底座210与供电电源未电连接时,第二光源230可以被第二光源230点亮。
在本实施例中,充电底座210包括底板210a、第三电路板210b及座体210c、座体210c设于底板210a上,第三电路板210b夹于座体210c与底板210a之间。第二充电触点212、第二光源230与充电接口214分别与第三电路板210b电连接。其中,固定罩220与座体210c可拆卸连接。避让槽218位于座体210c上。第二充电触点212与第二光源230均自座体210c靠近固定罩220的一侧露出。充电接口214自座体210c的周侧壁露出。
在本实施例中,充电底座210还包括防滑圈210d。防滑圈210d设于底板210a远离座体210c的一侧。设置防滑圈210d可以使得充电底座210能稳定的立于桌面等地方。
在一些实施例中,如图20所示,固定腔220a的腔壁为空心结构。如此,在满足充电座20稳定支撑等离子体发生器10(待固定件)的前提下,还可以降低充电座20的材料成本。
在一些实施例中,如图21所示,固定腔220a的腔壁为实心结构。如此,可以使得充电座20稳定支撑等离子体发生器10(待固定件)。
在本实施例中,还提供一种生发梳,该生发梳包括上述等离子体发生器10或者上述生发系统。此时,生发梳的每一梳齿包括一外凸部424及一隔离帽430。
以上所述仅为本申请的可选实施例,并非因此限制本申请的专利范围,凡是在本申请的发明构思下,利用本申请说明书及附图内容所作的等效结构变换,或直接/间接运用在其他相关的技术领域均包括在本申请的专利保护范围内。

Claims (20)

  1. 一种等离子体发生组件,其特征在于,包括:
    隔离座,具有安装通孔和环绕所述安装通孔一周的安装槽;
    工作电极,具有插接部和与所述插接部连接的外凸部,所述插接部插接于所述安装通孔内,所述插接部远离所述外凸部的一端用于与电源电连接,所述外凸部位于所述安装通孔外,所述外凸部和所述安装槽位于所述隔离座的同一侧;以及
    隔离帽,具有开口端,所述隔离帽通过所述开口端套设于所述外凸部外,且所述开口端插接于所述安装槽内。
  2. 如权利要求1所述的等离子体发生组件,其特征在于,所述隔离座包括安装板和隔离凸起,所述隔离凸起凸设于所述安装板上,所述安装通孔贯穿所述安装板和所述隔离凸起,所述安装槽位于所述隔离凸起远离所述安装板的一端。
  3. 如权利要求2所述的等离子体发生组件,其特征在于,所述隔离凸起具有内隔离管,所述安装通孔包括所述内隔离管的中空腔,所述安装槽环绕所述内隔离管,所述内隔离管靠近所述外凸部的一端伸出至所述安装槽外。
  4. 如权利要求2所述的等离子体发生组件,其特征在于,在所述安装板至所述隔离凸起的排布方向上,所述隔离凸起的外径逐渐减小。
  5. 如权利要求2所述的等离子体发生组件,其特征在于,所述安装通孔具有相连通的插接段及过渡段,所述过渡段的内径大于所述插接段的内径,所述过渡段相对于所述插接段更靠近所述安装板,所述插接部靠近所述外凸部的一端插接于所述插接段内。
  6. 如权利要求1所述的等离子体发生组件,其特征在于,所述外凸部的直径为1.0mm-4.0mm,所述隔离帽的外直径为2.0mm-6.0mm,所述隔离帽的壁厚为0.3mm-1.5mm。
  7. 如权利要求1所述的等离子体发生组件,其特征在于,所述隔离帽远离所述开口端的一端为偏平端;
    或者,所述隔离帽远离所述开口端的一端为圆头端,所述圆头端的端面包括外凸的圆弧工作面或者内凹的圆弧工作面。
  8. 如权利要求1所述的等离子体发生组件,其特征在于,所述隔离帽的材质为陶瓷或特氟龙,所述隔离座的材质为聚碳酸酯。
  9. 如权利要求1所述的等离子体发生组件,其特征在于,所述安装通孔、所述安装槽、所述工作电极及所述隔离帽均为多个,并一一对应设置。
  10. 一种生发梳,其特征在于,包括:
    壳体,具有开口;以及
    如权利要求1-9中任意一项所述等离子体发生组件,所述隔离座封闭所述开口,所述隔离帽位于所述隔离座远离所述壳体的一侧;
    其中,所述生发梳的每一梳齿包括一所述插接部及一所述隔离帽。
  11. 如权利要求10所述的生发梳,其特征在于,所述隔离座具有相连的安装部及透光部,所述安装通孔及所述安装槽位于所述安装部上;
    所述生发梳还包括设于所述壳体内的光治疗组件,所述光治疗组件包括第一光源,所述第一光源位于所述隔离座远离所述隔离帽的一侧,并与所述透光部对应设置。
  12. 如权利要求11所述的生发梳,其特征在于,所述生发梳还包括位于所述壳体内的电路板、电池及变压器,所述电路板自所述开口露出,所述电路板开设有与所述插接部对应的插接孔,所述插接部插接于所述插接孔上,并与所述电路板电连接,所述变压器及所述第一光源通过所述电路板与所述电池电连接,所述变压器通过所述电路板与所述工作电极的所述插接部电连接。
  13. 如权利要求12所述的生发梳,其特征在于,所述电路板为两块,分别为第一电路板及第二电路板,所述隔离座、所述第一电路板及所述第二电路板依次排布,所述第一电路板与所述第二电路板电连接,所述工作电极及所述第一光源分别与所述第一电路板电连接,所述电池及所述变压器分别与所述第二电路板电连接;
    所述壳体包括第一壳体及第二壳体,所述第一壳体与所述第二壳体沿所述隔离座、所述第一电路板及所述第二电路板排布方向排布,并可拆卸连接,所述第一壳体与所述第二壳体围合形成收容所述电池、所述光治疗组件、所述变压器及所述电路板的腔体,所述开口位于所述第一壳体上,并与所述腔体连通。
  14. 如权利要求10所述的生发梳,其特征在于,所述生发梳还包括用于为所述等离子体发生组件供电的电池;
    所述壳体包括相连的手柄部及工作部,所述等离子体发生组件设于所述工作部上,所述电池设于所述手柄部内;
    其中,所述手柄部上设置有外露的导电件,所述导电件与所述电池的负极电连接。
  15. 如权利要求14所述的生发梳,其特征在于,所述导电件呈长条状,所述导电件的长度方向和所述手柄部与所述工作部的排布方向相同,所述导电件为多个,多个所述导电件相互导通,其中,至少一个所述导电件与所述电池的负极电连接。
  16. 如权利要求14所述的生发梳,其特征在于,所述导电件包括绝缘设置的第一导电件及第二导电件,所述第一导电件与所述电池的负极电连接,所述第一导电件与所述第二导电件能通过握持所述手柄部的用户导通;
    所述生发梳还包括检测模块,所述检测模块用于检测所述第一导电件与所述第二导电件是否导通。
  17. 如权利要求10所述的生发梳,其特征在于,所述生发梳还包括位于所述壳体内的电池;
    所述壳体具有充电端,所述充电端上设有用于导通或断开所述电池与所述等离子体发生组件的开关按键及与所述电池电连接的第一充电触点,以使得在所述生发梳与充电座插接,并使得所述第一充电触点与所述充电座电连接时,所述充电座能遮蔽所述开关按键。
  18. 如权利要求17所述的生发梳,其特征在于,所述壳体包括相连的手柄部及工作部,所述电池位于所述手柄部内,所述等离子体发生组件位于所述工作部上,所述充电端为所述手柄部远离所述工作部的一端,所述开关按键及所述第一充电触点均位于所述充电端的端面上。
  19. 一种充电座,用于与如权利要求17所述的生发梳的所述充电端配合使用,其特征在于,包括:
    充电底座,具有第二充电触点,所述充电底座上设置有外露的充电接口,所述充电接口与所述第二充电触点电连接;以及
    固定罩,设于所述充电底座上,所述固定罩具有用于收容所述充电端的固定腔;
    其中,当所述充电端收容于所述固定腔内时,所述充电座稳定支撑所述生发梳,所述第一充电触点与所述第二充电触点抵触。
  20. 如权利要求19所述的充电座,其特征在于,所述充电座还包括第二光源,所述第二光源设于所述充电底座上,并与所述充电接口电连接,所述固定罩能透光,所述第二光源发出的光线能经所述固定罩透出。
PCT/CN2021/075333 2020-12-24 2021-02-04 等离子体发生组件、生发梳和充电座 WO2022134279A1 (zh)

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