WO2019062053A1 - 直发梳 - Google Patents

直发梳 Download PDF

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Publication number
WO2019062053A1
WO2019062053A1 PCT/CN2018/081065 CN2018081065W WO2019062053A1 WO 2019062053 A1 WO2019062053 A1 WO 2019062053A1 CN 2018081065 W CN2018081065 W CN 2018081065W WO 2019062053 A1 WO2019062053 A1 WO 2019062053A1
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WO
WIPO (PCT)
Prior art keywords
comb
comb teeth
heat
straight hair
hair
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Application number
PCT/CN2018/081065
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English (en)
French (fr)
Inventor
胡浩文
Original Assignee
东莞富美康电器科技有限公司
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Application filed by 东莞富美康电器科技有限公司 filed Critical 东莞富美康电器科技有限公司
Publication of WO2019062053A1 publication Critical patent/WO2019062053A1/zh

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    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D1/00Curling-tongs, i.e. tongs for use when hot; Curling-irons, i.e. irons for use when hot; Accessories therefor
    • A45D1/18Curling-tongs, i.e. tongs for use when hot; Curling-irons, i.e. irons for use when hot; Accessories therefor with combs
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D2/00Hair-curling or hair-waving appliances ; Appliances for hair dressing treatment not otherwise provided for
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D2/00Hair-curling or hair-waving appliances ; Appliances for hair dressing treatment not otherwise provided for
    • A45D2/36Hair curlers or hair winders with incorporated heating or drying means, e.g. electric, using chemical reaction
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D2/00Hair-curling or hair-waving appliances ; Appliances for hair dressing treatment not otherwise provided for
    • A45D2/44Hair-curling or hair-waving appliances ; Appliances for hair dressing treatment not otherwise provided for using two or more combs one upon the other or one in distance to the other, e.g. using slidable combs
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D24/00Hair combs for care of the hair; Accessories therefor
    • A45D24/04Multi-part combs
    • A45D24/10Multi-part combs combined with additional devices

Definitions

  • the present application relates to a straightening device for hairdressing, and more particularly to a straight hair comb that uniformly pulls hair without damaging the hair.
  • the hair straightening plate is generally used to straighten the hair, and the temperature is mainly transmitted to the surface of a metal plate or a ceramic plate by a heating element, and the surface temperature is generally set at about 200 degrees, and the heat reaches 200.
  • the left and right splints straighten the curled hair.
  • This technology was first created by the US company in 1995 and is currently globally popular. However, this perm splint requires professional use skills. The holding time of the splint and the amount of hair to be held are all based on experience. If the control is not good, it is easy to hurt the hair, and the straight hair effect is uneven. Secondly, use this Perm splints, you can't do it yourself, not suitable for home users, and it is not convenient to use.
  • a straight hair comb has appeared on the market. Similar to the structure of the comb, the user only needs to use the hair as normal hair to achieve the straight hair effect, the operation is convenient, and the hair is not easily damaged.
  • this type of straight hair comb also has a drawback, that is, the spacing between the heat comb and the conventional plastic comb is unreasonable, and if there is too much hair between each of the heat comb and the regular comb during straight hair, it will cause Both of them are unevenly heated, and the pulling effect is poor. On the contrary, if the spacing between the heating comb and the conventional comb is too small, the hair may be pulled or scraped, and the comfort of the hair is seriously reduced.
  • the purpose of the application is to provide a straight hair comb, which can complete the straightening effect of the hair by using the action of the normal combing head, and the hair is evenly heated, and the straightening effect is good, and at the same time, the hair is not pulled or scratched. Pulling comfort is high.
  • the present application discloses a straight hair comb comprising a lower casing and an upper casing adapted to the lower casing, the lower casing being provided with a heat generating comb and a conventional comb tooth.
  • the heat generating comb teeth are spaced apart from the conventional comb teeth, and a distance between the conventional comb teeth and the heat generating comb teeth adjacent to each other is maintained between 0.40 and 0.50 mm, and the conventional comb teeth are higher than the heat generating comb teeth. 4-5mm high.
  • the spacing between the heating comb and the conventional comb of the straight hair comb of the present application is maintained between 0.40 and 0.50 mm, and since the diameter of the common hair is generally 0.06-0.08 mm, the present application
  • the hair comb of the straight hair comb can accommodate about 8 hairs between each comb and the regular comb, which effectively ensures uniform heating of the hair during each combing process, and does not scratch or pull the hair.
  • Hair damage, straight hair effect is good; the height of the conventional comb teeth is higher than the height of the hot comb teeth, avoiding the contact between the hot comb teeth and the scalp, and scalding the scalp, but if the height difference is too large, the conventional comb teeth are easier to be heated.
  • the distance between the conventional comb teeth and the heat generating comb teeth adjacent to each other is 0.45 mm.
  • the conventional comb teeth are 4.5 mm higher than the heat generating comb teeth.
  • the straight hair comb further includes a heat conductive substrate mounted in the lower casing and a heat generating body in contact with a bottom surface of the heat conductive substrate, and the heat generating comb teeth are perpendicularly connected to an upper surface of the heat conductive substrate.
  • the bottom surface of the heat-conducting substrate is provided with a plurality of rows of grooves corresponding to the heat-generating comb teeth in a longitudinal direction thereof, and the groove is provided with a space corresponding to the regular comb teeth.
  • a through hole through which the head of the conventional comb tooth enters above the heat conductive substrate, and a tail portion of the conventional comb tooth is fixed in the groove for convenient assembly.
  • the conventional comb teeth adjacent to each other in each of the grooves are connected by a first fixed connecting strip, and the first fixed connecting strip is fixed in the groove.
  • the heating element is wrapped by a heat conducting plate, and the heat conducting plate is applied on the bottom surface of the heat conducting substrate, and the heat generating body is placed in the heat conducting plate to ensure uniform heating, and the lower case is not easily burned. body.
  • the straight hair comb of the present application further comprises an anti-scaling comb assembly mounted on the lower casing, the anti-scalding comb assembly comprising a second fixing connecting strip and being fixed to the second fixing connecting strip a pair of anti-scaling comb teeth, the anti-scaling comb teeth are disposed in parallel with the heat-generating comb teeth, and the second fixing connecting strip is engaged with the lower casing and disposed at a periphery of the heat-conductive substrate, the The ironing comb is distributed around the periphery of the heating comb.
  • the straight hair comb of the present application further includes a circuit board assembly to drive the heat generating member to generate heat.
  • the straight hair comb of the present application further includes a negative ion generator electrically connected to the circuit board assembly, the upper casing is provided with a negative ion conducting outlet facing the heating comb, the negative ion conducting outlet
  • the front end is also provided with an insulating baffle.
  • the negative ion generator continuously emits negative ions beneficial to the human body, and has a hair-protecting effect. Since the negative ions encounter the heat-generating comb teeth, the insulation is provided at the negative ion outlet.
  • the baffle effectively protects the implementation of negative ions.
  • FIG. 1 is a schematic perspective view of a straight hair comb according to an embodiment of the present application.
  • FIG. 2 is an exploded perspective view of a straight hair comb according to an embodiment of the present application.
  • FIG. 3 is a schematic structural view showing the state of removing the upper casing of the straight hair comb according to the embodiment of the present application.
  • FIG. 4 is a top plan view of a straight hair comb according to an embodiment of the present application.
  • Figure 5 is an enlarged view of the area A of Figure 4.
  • Figure 6 is a cross-sectional view taken along line C-C of Figure 4.
  • FIG. 7 is a schematic perspective structural view of a heat conductive substrate of a straight hair comb according to an embodiment of the present application.
  • Figure 8 is a bottom view of Figure 7.
  • Figure 9 is a plan view of Figure 7.
  • FIG. 10 is a schematic structural view of an anti-scaling comb assembly of a straight hair comb according to an embodiment of the present application.
  • FIG. 11 is a schematic structural view showing the combination of a conventional comb tooth of a straight hair comb and a first fixed connecting strip according to an embodiment of the present application.
  • FIG. 12 is a schematic structural view showing the combination of a heating element and a heat conducting plate of a straight hair comb according to an embodiment of the present application.
  • the present application discloses a straight hair comb, as shown in FIG. 1, FIG. 2 and FIG. 4, comprising an upper casing 1 and a lower casing 2 adapted to the upper casing 1, and a heat is mounted on the lower casing 2
  • the comb teeth 30 and the conventional comb teeth 4, the heat generating comb teeth 30 are alternately spaced from the conventional comb teeth 4, and the spacing d1 (shown in FIG. 5) of the conventional comb teeth 4 and the heat generating comb teeth 30 adjacent to each other is maintained at 0.40-0.50.
  • the conventional comb teeth 4 are higher than the heat generating comb teeth 30 and the height difference d2 (shown in Fig. 6) from the heat generating comb teeth 30 is 4-5 mm.
  • the spacing between the heating comb teeth 30 of the straight hair comb of the present application and the conventional comb teeth 4 is maintained between 0.40 and 0.50 mm, since the diameter of the ordinary hair strand is generally 0.06-0.08 mm,
  • the hair comb of the straight hair comb of the present application can accommodate about 8 hairs between each of the heating comb teeth 30 and the conventional comb teeth 4, which effectively ensures uniform heating of the hair during each combing process, and does not scratch or pull. Hair, straight hair effect is good.
  • the height of the conventional comb teeth 4 is higher than the height of the heat generating comb teeth 30, and the heat comb teeth 30 are prevented from coming into contact with the scalp to burn the scalp.
  • the conventional comb teeth 4 are more likely to be bent and deformed under heat.
  • the conventional comb tooth 4 of the straight hair comb of the present application is 4-5 mm higher than the heat comb comb 30, thereby avoiding burns the scalp and ensuring the straight hair effect. .
  • the pitch of the conventional comb teeth 4 and the heat generating comb teeth 30 adjacent to each other is set to 0.45 mm, and the conventional comb teeth 4 are 4.5 mm higher than the heat generating comb teeth 30.
  • a heat conductive substrate 31 and a heat generating body 32 in contact with the heat conductive substrate 31 are mounted in the lower casing 2, referring to FIGS. 2, 7, and 12, the heat generating comb 30 and the heat conducting substrate 31 are provided.
  • the upper surface is vertically connected, and the heating element 32 conducts thermal energy to the heat-conducting substrate 31.
  • the heat-conducting substrate 31 transfers heat energy to the heat-generating comb teeth 30, and the heat-generating comb teeth 30 are heated.
  • the hair is The dispersion is sandwiched between the heating comb teeth 30 and the conventional comb teeth 4.
  • the heat generating comb 30 and the heat conductive substrate 31 may be integrally formed or the heat generating combs 30 may be fixed to the heat conducting substrate 31 by other connecting means.
  • the heat-conducting substrate 31 and the heat-generating comb teeth 30 can be metal materials with good thermal conductivity, and other materials with good heat-conducting properties can also be selected.
  • Conventional comb teeth 4 can be selected from commonly used plastic materials.
  • the conventional comb teeth 4 of the straight hair comb of the present invention are connected to the heat conductive substrate 31 by means of plugging.
  • a plurality of heat combs 30 are opened along the longitudinal direction of the bottom surface of the heat conductive substrate 31.
  • Corresponding trenches 310 as shown in Figures 8 and 9, in the present embodiment, are provided with five columns of trenches 310.
  • a through hole 311 corresponding to the conventional comb tooth 4 is disposed in each of the grooves 310.
  • the head of the conventional comb tooth 4 is inserted into the heat conductive substrate 31 through the through hole 311 to enter the heat conducting substrate 31.
  • the tail of 4 is fixed in the groove 310.
  • the conventional comb teeth 4 distributed in each of the grooves 310 are connected to each other by a first fixed connecting strip 33.
  • the first fixed connecting strip 33 may be The flexible rubber band connects the plurality of conventional comb teeth 4 in each of the grooves 310 to facilitate installation and material storage, thereby improving production efficiency.
  • the head of the conventional comb tooth 4 on each of the first fixed connecting strips 33 is inserted into the through hole 311 of the heat conductive substrate 31, and the first fixed connecting strip 33 is locked in the groove 310.
  • the heating element 32 is surrounded by the heat conducting plate 34, as shown in FIG. 32 transfers heat energy to the heat conducting plate 34, and the heat energy is evenly transferred to the heat conducting substrate 31 by the heat conducting plate 34, thereby providing uniform heat energy to the heat generating comb teeth 30, and protecting the lower casing 2 of the straight hair comb from being burnt.
  • the straight hair comb of the present application is also provided with an anti-scaling comb assembly.
  • the anti-scaling comb assembly includes a second fixing connecting strip 50 that is engaged with the lower housing 2 and an anti-scaling comb 51 that is fixedly coupled to the second fixing connecting strip 50.
  • 51 is disposed perpendicular to the second fixed connecting strip 50, parallel to the heating comb teeth 30, and evenly distributed around the periphery of the peripheral heating comb teeth 30 on the heat conducting substrate 31, thereby effectively protecting the scalp from being burnt by the heat generating comb teeth 30 on the periphery of the heat conducting substrate 31.
  • the heating element 32 of the straight hair comb of the present application is driven by a circuit board assembly 6 disposed at the rear end of the lower casing 2, and as shown in FIG. 3, a negative ion generator electrically connected to the circuit board assembly 6 is further disposed on the lower casing 2. 7.
  • the negative ion outlet 8 of the negative ion generator 7 is disposed on the upper casing 1 toward the heat generating comb 30.
  • the negative ion generator 7 provides negative ion repair to the heated hair.
  • an insulating baffle 9 is further disposed at the front end of the negative ion conducting port 8. The negative ions are blocked from the negative ion conducting outlet 8 and blocked by the insulating baffle 9 Both sides of the insulating baffle 9 are blown to the hair.

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Abstract

一种直发梳,包括上壳体(1)和与上壳体(1)相适配的下壳体(2),下壳体(2)上安装有发热梳齿(30)和常规梳齿(4),发热梳齿(30)与常规梳齿(4)交错间隔设置,彼此相邻的常规梳齿(4)和发热梳齿(30)的间距保持在0.40-0.50mm之间,常规梳齿(4)比发热梳齿(30)高4-5mm,在下壳体(2)内安装有导热基板(31)和与导热基板(31)的底面接触的发热体(32),发热体(32)由导热板(34)包裹,导热板贴敷在导热基板(31)的底面上;有效的保证了每次梳发的过程中对头发的均匀加热,而且又不会刮卡或拉扯头发进而造成对头发的伤害,直发效果好。

Description

直发梳 技术领域
本申请涉及美发用拉直器具,尤其涉及一种拉发均匀、不伤头发的直发梳。
背景技术
在美发时,一般使用烫发夹板对头发进行拉直效果处理,主要通过一种发热体把温度传导到一个金属板或陶瓷板的表面,表面温度一般设定在200度左右,通过这个热度达到200度左右的夹板把卷头发拉直。这项技术是1995年由美域公司首创,目前在全球流行。但是这种烫发夹板需要专业的使用技巧,夹板的加持时间和加持头发的多少都是靠经验去掌握的,如果控制不好很容易伤及头发,而且直发效果不均匀;其次,使用这种烫发夹板,自己不能给自己做,不适合家庭用户的使用,使用不方便。
针对上述问题的不足,目前市面上也出现了一种直发梳,类似于梳子的结构,使用者只需像正常梳头发那样使用即可达成直发效果,操作方便,而且不易伤及头发。但是这类直发梳也有一个弊端,即发热梳齿和常规的塑胶梳齿之间的间距设置不合理,直发时如果每个发热梳齿和常规梳齿之间的头发过多,会造成都发受热不均匀,拉发效果差,相反如果发热梳齿和常规梳齿之间的间距过小,又会造成拉拆或刮卡头发,拉发舒适度严重下降。
申请内容
本申请的目的是提供一种直发梳,使用正常梳头的动作即可完成头发的拉直效果,而且头发受热均匀,拉直效果好,同时又不会对头发造成拉扯或刮卡的伤害,拉发舒适度高。
为了实现上述目的,本申请公开了一种直发梳,包括下壳体和与所述下壳体相适配的上壳体,所述下壳体上安装有发热梳齿和常规梳齿,所述发热梳齿与所述常规梳齿交错间隔设置,彼此相邻的所述常规梳齿和发热梳齿的间距保持在0.40-0.50mm之间,所述常规梳齿比所述发热梳齿高4-5mm。
与现有技术相比,本申请的直发梳的发热梳齿和常规梳齿之间的间距保持在0.40-0.50mm之间,由于普通头发丝的直径一般为0.06-0.08mm,因此本申请的直发梳的每个发热梳齿和常规梳齿之间可容纳大约8根头发,有效的保证了每次梳发的过程中对头发的均匀加热,而且又不会刮卡或拉扯头发造成头发的伤害,直发效果好;常规梳齿的高度较发热梳齿的高度高,避免发热梳齿与头皮接触,烫伤头皮,但是如果这个高度差过大,常规梳齿在受热状态下更容易弯曲、变形,直发时头发不易落入梳齿之间,甚至出现夹头发的现象,所以本申请的直发梳的常规梳齿比所述发热梳齿高4-5mm,即保障不烫伤头皮,又保证了直发效果。
较佳地,彼此相邻的所述常规梳齿和所述发热梳齿的间距为0.45mm。
较佳地,所述常规梳齿比所述发热梳齿高4.5mm。
较佳地,所述直发梳还包括安装在所述下壳体内的导热基板和与所述导热基板的底面接触的发热体,所述发热梳齿与所述导热基板的上表面垂直连接。
较佳地,所述导热基板的底面沿其纵长方向开设有若干列与所述发热梳齿对应的沟槽,于所述沟槽中开设有间隔排列的与所述常规梳齿相对应的通孔,所述常规梳齿的头部通过所述通孔进入所述导热基板的上方,所述常规梳齿的尾部固定在所述沟槽中,装配方便。
较佳地,所述每一沟槽中的彼此相邻的所述常规梳齿通过第一固定连接条连接,所述第一固定连接条卡固在所述沟槽中。
较佳地,所述发热体由导热板包裹,所述导热板贴敷在所述导热基板的底面上,通过把发热体放置在导热板中,保证了均匀供热,而且不易烫坏下壳体。
较佳地,本申请的直发梳还包括安装在所述下壳体上的防烫梳齿组件,所 述防烫梳齿组件包括第二固定连接条和与所述第二固定连接条固定连接的防烫梳齿,所述防烫梳齿与所述发热梳齿平行设置,所述第二固定连接条与所述下壳体卡接且设置在所述导热基板的周边,所述防烫梳齿分布在所述发热梳齿的周边。
较佳地,本申请的直发梳还包括电路板组件,以驱动所述发热件发热。
较佳地,本申请的直发梳还包括与所述电路板组件电性连接的负离子发生器,所述上壳体上设置有朝向所述发热梳齿的负离子导出口,所述负离子导出口的前端还设置有绝缘挡板,在直发过程中,负离子发生器连续发出对人体有益的负离子,有护发作用,由于负离子遇到发热梳齿会被消除,因此在负离子导出口处设置绝缘挡板,有效保障负离子的实施效果。
附图说明
图1为本申请实施例直发梳的立体结构示意图。
图2为本申请实施例直发梳的分解示意图。
图3为本申请实施例直发梳的拆除上壳体的状态结构示意图。
图4为本申请实施例直发梳的俯视图。
图5为图4中A区的放大视图。
图6为图4中沿C-C向的剖视图。
图7为本申请实施例直发梳的导热基板的立体结构示意图。
图8为图7的仰视图。
图9为图7的俯视图。
图10为本申请实施例直发梳的防烫梳齿组件的结构示意图。
图11为本申请实施例直发梳的常规梳齿与第一固定连接条结合的结构示意图。
图12为本申请实施例直发梳的发热体与导热板结合的结构示意图。
具体实施方式
为详细说明本申请的技术内容、结构特征、实现原理及所实现目的及效果,以下结合实施方式并配合附图详予说明。
本申请公开了一种直发梳,如图1、图2和图4所示,包括上壳体1和与上壳体1相适配的下壳体2,下壳体2上安装有发热梳齿30和常规梳齿4,发热梳齿30与常规梳齿4交错间隔设置,彼此相邻的常规梳齿4和发热梳齿30的间距d1(如图5所示)保持在0.40-0.50mm之间,常规梳齿4比发热梳齿30高且与发热梳齿30高度差d2(如图6所示)为4-5mm。
与现有技术相比,本申请的直发梳的发热梳齿30和常规梳齿4之间的间距保持在0.40-0.50mm之间,由于普通头发丝的直径一般为0.06-0.08mm,因此本申请的直发梳的每个发热梳齿30和常规梳齿4之间可容纳大约8根头发,有效保证了每次梳发过程中对头发的均匀加热,而且又不会刮卡或拉扯头发,直发效果好。另外,常规梳齿4的高度较发热梳齿30的高度高,避免发热梳齿30与头皮接触,烫伤头皮,但是如果这个高度差过大,常规梳齿4在受热状态下更容易弯曲、变形,直发时头发不易落入梳齿之间,甚至夹头发,所以本申请的直发梳的常规梳齿4比发热梳齿30高4-5mm,既避免烫伤头皮,又保证了直发效果。
在本实施例中,为了最大限度保障直发效果,彼此相邻的常规梳齿4和发热梳齿30的间距设置为0.45mm,常规梳齿4比发热梳齿30高4.5mm。
在本申请另一优选实施例中,在下壳体2内安装有导热基板31和与导热基板31接触的发热体32,请参看图2、图7和图12,发热梳齿30与导热基板31的上表面垂直连接,发热体32把热能传导给导热基板31,导热基板31再把热能传导给发热梳齿30,发热梳齿30发热,使用本申请直发梳梳头发的过程中,头发被分散夹在发热梳齿30和常规梳齿4之间,在向下拉扯的过程中,利用发热梳齿30的热量对头发加热,如此反复,完成直发效果。发热梳齿30与导热基板31可采取一体成型的方式也可通过其他连接方式把发热梳齿30固定在导 热基板31上。导热基板31和发热梳齿30可为导热性能良好的金属材料,也可选用其他导热效果好的材料,常规梳齿4可选用常用的塑胶材料。
为了便于生产组装,本申请的直发梳的常规梳齿4与导热基板31采用插接的方式配合连接,具体为:于导热基板31的底面沿其纵长方向开设有若干与发热梳齿30对应的沟槽310,如图8和图9所示,在本实施例中,设置有五列沟槽310。于每个沟槽310中开设有间隔排列的与常规梳齿4对应的通孔311,常规梳齿4的头部通过该通孔311插入导热基板31,进入导热基板31的上方,常规梳齿4的尾部固定在沟槽310中。在本申请的另一实施例中,分布在每个沟槽310中的常规梳齿4彼此间通过一个第一固定连接条33连接,如图11所示,该第一固定连接条33可以为柔性的橡皮带,这样就把每个沟槽310中的多个常规梳齿4连接在一起,方便安装和物料的保管,提高生产效率。组装时,把每个第一固定连接条33上的常规梳齿4的头部插入导热基板31的通孔311中,第一固定连接条33卡固在沟槽310中。
为了避免发热体32长时间发热对下壳体2造成损坏,以及使发热体32均匀的释放热能,在本实施例中,发热体32外包裹着导热板34,如图12所示,发热体32把热能传导给导热板34,再由导热板34把热能均匀的传递给导热基板31,从而给发热梳齿30提供均匀的热能,而且保护直发梳的下壳体2不被烫坏。
另外,为了避免在拉发的过程中位于导热基板31边沿的发热梳齿30碰到头皮或皮肤给使用者带来伤害,本申请的直发梳还设置了防烫梳齿组件。
如图2和图10所示,防烫梳齿组件包括与下壳体2卡接的第二固定连接条50和与第二固定连接条50固定连接的防烫梳齿51,防烫梳齿51垂直于第二固定连接条50向上设置,与发热梳齿30平行,均匀分布在导热基板31上的外围发热梳齿30的周边,有效保护头皮不被导热基板31外围的发热梳齿30烫伤。
本申请的直发梳的发热体32靠设置在下壳体2后端的电路板组件6驱动,如图3所示,在下壳体2上还设置有与电路板组件6电性连接的负离子发生器7, 该负离子发生器7的负离子导出口8设置在上壳体1上,朝向发热梳齿30,在拉发的过程中,负离子发生器7给被加热的头发提供负离子修复。但是如果发热梳齿30采用金属材料制作,负离子会被金属吸收,所以在负离子导出口8的前端还设置有绝缘挡板9,负离子从负离子导出口8出来后被绝缘挡板9阻挡,进而从绝缘挡板9的两侧吹到头发处。
以上所揭露的仅为本申请的较佳实例而已,当然不能以此来限定本申请之权利范围,因此依本申请申请专利范围所作的等同变化,仍属于本申请所涵盖的范围。

Claims (10)

  1. 一种直发梳,其特征在于,包括上壳体和与所述上壳体相适配的下壳体,所述下壳体上安装有发热梳齿和常规梳齿,所述发热梳齿与所述常规梳齿交错间隔设置,彼此相邻的所述常规梳齿和所述发热梳齿的间距保持在0.40-0.50mm之间,所述常规梳齿比所述发热梳齿高4-5mm。
  2. 根据权利要求1所述的直发梳,其特征在于,彼此相邻的所述常规梳齿和所述发热梳齿的间距为0.45mm。
  3. 根据权利要求1所述的直发梳,其特征在于,所述常规梳齿比所述发热梳齿高4.5mm。
  4. 根据权利要求1所述的直发梳,其特征在于,还包括安装在所述下壳体内的导热基板和与所述导热基板的底面接触的发热体,所述发热梳齿与所述导热基板的上表面垂直连接。
  5. 根据权利要求4所述的直发梳,其特征在于,所述导热基板的底面沿其纵长方向开设有若干列与所述发热梳齿对应的沟槽,于所述沟槽中开设有间隔排列的与所述常规梳齿相对应的通孔,所述常规梳齿的头部通过所述通孔进入所述导热基板的上方,所述常规梳齿的尾部固定在所述沟槽中。
  6. 根据权利要求5所述的直发梳,其特征在于,所述每一沟槽中的彼此相邻的所述常规梳齿通过第一固定连接条连接,所述第一固定连接条卡固在所述沟槽中。
  7. 根据权利要求4所述的直发梳,其特征在于,所述发热体由导热板包裹, 所述导热板贴敷在所述导热基板的底面上。
  8. 根据权利要求4所述的直发梳,其特征在于,还包括安装在所述下壳体上的防烫梳齿组件,所述防烫梳齿组件包括第二固定连接条和与所述第二固定连接条固定连接的防烫梳齿,所述防烫梳齿与所述发热梳齿平行设置,所述第二固定连接条与所述下壳体卡接且设置在所述导热基板的周边,所述防烫梳齿分布在所述发热梳齿的周边。
  9. 根据权利要求4所述的直发梳,其特征在于,还包括驱动所述发热件发热的电路板组件。
  10. 根据权利要求9所述的直发梳,其特征在于,还包括与所述电路板组件电性连接的负离子发生器,所述上壳体上设置有朝向所述发热梳齿的负离子导出口,所述负离子导出口的前端还设置有绝缘挡板。
PCT/CN2018/081065 2017-09-28 2018-03-29 直发梳 WO2019062053A1 (zh)

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CN109123978A (zh) * 2018-09-26 2019-01-04 绍兴市益强电器科技有限公司 负离子直发卷发电热梳
CN111657652A (zh) * 2020-07-24 2020-09-15 禹孝花 一种梳头可拆式直卷发梳及梳齿组
CN112401438B (zh) * 2020-08-18 2022-07-22 上海飞美丝网络科技有限公司 一种电热直发梳的导热梳齿装置
CN112471728A (zh) * 2020-12-04 2021-03-12 深圳市奋达科技股份有限公司 一种毛发定型装置的装配方法

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