WO2024037004A1 - 一种双风道吹风机 - Google Patents

一种双风道吹风机 Download PDF

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Publication number
WO2024037004A1
WO2024037004A1 PCT/CN2023/088421 CN2023088421W WO2024037004A1 WO 2024037004 A1 WO2024037004 A1 WO 2024037004A1 CN 2023088421 W CN2023088421 W CN 2023088421W WO 2024037004 A1 WO2024037004 A1 WO 2024037004A1
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WO
WIPO (PCT)
Prior art keywords
air
hair
air outlet
hair dryer
right end
Prior art date
Application number
PCT/CN2023/088421
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English (en)
French (fr)
Inventor
李莹莹
谢作握
陈思佳
林盛标
Original Assignee
深圳淑格医疗美容器械有限公司
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Application filed by 深圳淑格医疗美容器械有限公司 filed Critical 深圳淑格医疗美容器械有限公司
Publication of WO2024037004A1 publication Critical patent/WO2024037004A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D20/00Hair drying devices; Accessories therefor
    • A45D20/04Hot-air producers
    • A45D20/08Hot-air producers heated electrically
    • A45D20/10Hand-held drying devices, e.g. air douches
    • A45D20/12Details thereof or accessories therefor, e.g. nozzles, stands
    • A45D20/122Diffusers, e.g. for variable air flow
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D20/00Hair drying devices; Accessories therefor
    • A45D20/04Hot-air producers
    • A45D20/08Hot-air producers heated electrically
    • A45D20/10Hand-held drying devices, e.g. air douches

Definitions

  • the invention relates to the technical field of hair dryers, specifically a double air duct hair dryer.
  • High-speed hair dryers have gradually become mainstream products in the market. Different from ordinary hair dryers, high-speed hair dryers use brushless motors. The impeller driven by its own motor can achieve strong enough wind power, and it can indeed achieve powerful speed when blowing hair. At the same time, the brushless motor not only has a higher speed, but also has greater wind power, lower noise, and longer life. However, the high-speed hair dryers currently on the market are seriously homogenized. Most high-speed hair dryers are "T" shaped. The air enters from the bottom of the handle and exits from the head. It is large in size and has a single function. At the same time, the "T" shaped air duct causes a large loss of air volume.
  • the object of the present invention is to provide a double air duct hair dryer, which reduces the loss of air volume in the air duct through the air duct and rectification designed as a straight-shaped double air outlet, and can use hollow slots to keep hair stuck on both sides. In the middle of the two air outlets, the contact area between the hair and the wind is larger. At the same time, the hollow design of the double air outlets allows for simple hair styling operations, which can solve the existing problems mentioned above.
  • the present invention provides the following technical solutions:
  • a dual-channel hair dryer which includes:
  • the shell component has a driving component, a flow diversion heating component and an air outlet component installed inside, and the internal components can be installed and set in a straight shape;
  • the driving component is installed at the inner right end of the shell component and can simultaneously release positive and negative ions through dual-emitter plasma technology, which quickly neutralizes the positive and negative charges after acting on the hair, making the hair smooth and shiny;
  • a flow-guiding heating component is installed in the middle of the interior of the shell component and can heat the blown wind and adjust the air output of the air outlet component;
  • the air outlet assembly is installed at the inner left end of the shell assembly, and through the air duct design of the hollow double air outlets inside, a pressure difference is formed, creating a negative pressure area that sucks the surrounding air and increases the wind speed at the air outlet.
  • the shell assembly includes:
  • a shell in which the driving component, the flow diversion heating component and the air outlet component are installed, and the internal components are installed and placed in a straight shape;
  • the filter is installed at the port at the inner right end of the housing and blocks external hair
  • Tail cap magnet which is installed on the right end of the filter
  • a tail cap which is installed on the right end of the tail cap magnet and fixes the filter to the port on the inner right end of the housing;
  • the tail stop is installed on the right end of the outer wall of the tail cover and can discharge the circuit.
  • the housing includes:
  • the filter hole is set at the right end of the outer wall of the housing and blocks impurities through the filter screen.
  • the driving assembly includes:
  • Bracket which is installed on the inner right end of the housing and is arranged in two groups, and the main function PCB board and motor are installed inside;
  • Button PCB board which is installed on the outer wall of the lower bracket
  • the button is fixed in the button hole of the housing and connected to the button PCB board.
  • the bracket includes:
  • the main function PCB board is installed on the right end between the two sets of brackets and is electrically connected
  • the motor is installed inside the silicone sleeve of the motor and can generate wind power through rotation;
  • the fixing buckle is installed between the left ends of the two sets of brackets. After the inner part is pushed into the shell, it is installed inside the two sets of brackets from the back of the shell to bolt the overall internal structure;
  • Magnets are installed at both ends of the filter and can fix the filter
  • Motor silicone sleeve which is installed inside the motor bracket and limits the motor
  • the left end of the motor bracket is installed on the inner right end of the air outlet assembly, and can fix the motor silicone sleeve and limit the installation of the heater.
  • a plasma generator is provided at the upper end of the main functional PCB board and is connected to the two holes on the top of the hair dryer through two lead wires.
  • the flow-guiding heating component includes:
  • the heater is composed of a mica sheet and a heating wire, and is fixed inside the hairdryer. At the same time, one end of the mica sheet is fixed in the groove at the upper end of the motor bracket.
  • the air outlet assembly includes:
  • the guide blade is installed inside the air duct and can adjust the fluid movement trajectory and flow rate of the air duct;
  • the top cover is installed on the left end of the air duct, and can blow the wind out vertically by installing guide blades inside;
  • the air duct is installed at the inner left end of the casing, and through the air duct design of the hollow double air outlet inside, a pressure difference is formed, creating a negative pressure area, sucking the surrounding air, and increasing the wind speed at the air outlet.
  • the top cover includes:
  • the air outlets are arranged on both sides of the front end of the top cover, and correspond to the air outlets of the hair dryer, and can blow out the wind blown by the hair dryer vertically.
  • the top cover is configured in a U-shape, and hair can be placed inside for drying and styling the hair.
  • the internal components can be installed through the shell assembly and set in a straight shape, thereby reducing the loss of air volume in the air duct through rectification and increasing the wind speed and air volume;
  • the driving component can simultaneously release positive and negative ions through dual-emitter plasma technology, which quickly neutralizes the positive and negative charges after acting on the hair, making the hair smooth and shiny;
  • the air outlet assembly passes through the internal hollow double outlet air duct design to form a pressure difference and generate a negative pressure area, which sucks the surrounding air and increases the wind speed at the air outlet.
  • the double air outlet air duct design can be used
  • the hollow slot can trap the hair between the two air outlets, allowing a larger contact area between the hair and the wind and improving hair drying efficiency.
  • Figure 1 is a schematic diagram of the overall split structure provided by the present invention.
  • Figure 2 is a schematic diagram of the overall structure provided by the present invention.
  • Figure 3 is a schematic diagram of the disassembled structure of the air outlet assembly provided by the present invention.
  • Figure 4 is a schematic diagram of the overall cross-sectional structure provided by the present invention.
  • Figure 5 is a schematic right structural diagram of the air outlet assembly provided by the present invention.
  • Figure 6 is a schematic diagram of the disassembled structure of the flow diversion heating component provided by the present invention.
  • Figure 7 is a schematic diagram of the disassembled structure of the driving assembly provided by the present invention.
  • Figure 8 is a schematic structural diagram of the housing provided by the present invention.
  • Figure 9 is a schematic diagram of the disassembled structure of the shell assembly provided by the present invention.
  • Figure 10 is a schematic cross-sectional structural diagram of the air outlet assembly provided by the present invention.
  • Figure 11 is a schematic diagram of the connection structure of the hair dryer provided by the present invention.
  • Figure 12 is a schematic structural diagram of the motor bracket provided by the present invention.
  • Figure 13 is a schematic cross-sectional wind direction diagram of the air outlet assembly provided by the present invention.
  • Figure 14 is a schematic diagram of the wind direction of the internal air duct section provided by the present invention.
  • Figure 15 is a schematic diagram of the overall wind direction provided by the present invention.
  • Shell component 1 outer shell 11, filter hole 111, filter 12, tail cover magnet 13, tail cover 14, tail block 15, drive component 2, bracket 21, button PCB board 22, button 23, main function PCB board 24.
  • Motor 25 fixed buckle 26, magnet 27, motor silicone sleeve 28, motor bracket 29, diversion heating component 3, mica sheet 32, heater 33, air outlet component 4, diversion grid blade 31, top cover 41, Air outlet 411 and hairdryer 42.
  • the present invention provides a double air duct hair dryer, which has the air duct and rectification designed as a straight-shaped double air outlet 411 to reduce the loss of air volume in the air duct and increase the wind speed and air volume.
  • the air duct design of the double air outlets 411 can be utilized
  • the hollow slot can trap hair between the two air outlets, allowing the hair to have a larger contact area with the wind and improving hair drying efficiency.
  • the hollow design of the double air outlets allows for simple hair styling operations. Please refer to Figure 1- 5, including shell component 1, drive component 2, flow guide and heating component 3 and air outlet component 4;
  • the drive component 2, the flow guide heating component 3 and the air outlet component 4 are installed inside the shell component 1.
  • the internal components can be installed through the shell component 1 and set in a straight shape, thereby reducing the loss of air volume in the air duct through rectification and increasing Wind speed and air volume
  • the shell assembly 1 includes: a shell 11, a filter hole 111, a filter 12, a tail cover magnet 13, a tail cover 14 and a tail block 15.
  • the shell 11 has a driving component 2, a flow diversion heating component 3 and an outlet installed inside.
  • Wind component 4, and the internal components are installed and placed in a straight shape, thereby reducing the loss of air volume in the air duct through rectification and increasing the wind speed and air volume.
  • the filter hole 111 is set at the right end of the outer wall of the housing 11, and Impurities are blocked by the filter screen 12, and the magnetic structure is used to facilitate disassembly and cleaning by the user.
  • the filter screen 12 is installed at the port at the inner right end of the housing 11 and blocks external hair.
  • the tail cover magnet 13 is installed at the end of the filter screen 12. The right end of the filter screen 12 is limited, the tail cover 14 is installed on the right end of the tail cover magnet 13, and the filter screen 12 is fixed to the port at the inner right end of the housing 11, and the tail stopper 15 is installed on the right end of the tail cover magnet 14.
  • the right end of the outer wall, which can discharge the circuit, is fixed on the tail cover 14 through the filter 12 and fixed with screws.
  • the detachable filter 12 is partially fixed in the gap between the shell 11 and the bracket 21 and is magnetically attracted and fixed by the magnet 27.
  • the user When used for a long time, a large amount of dust and other substances will be adsorbed on the filter 12, which needs to be cleaned in time, otherwise the air inlet will be blocked, and it can avoid affecting the operation of the motor 25.
  • the magnetic suction structure allows users to easily disassemble and clean it;
  • the driving component 2 is installed at the inner right end of the shell component 1.
  • the driving component 2 can simultaneously release positive and negative ions through dual-emitter plasma technology. After acting on the hair, it quickly neutralizes the positive and negative charges, making the hair smooth and shiny.
  • the driving component 2 includes: bracket 21, button PCB board 22, button 23, main function PCB board 24, motor 25, fixing buckle 26 and magnet 27, bracket 21, which is installed on the inner right end of the shell 11, and is set in two groups, and inside The main function PCB board 24 and the motor 25 are installed.
  • the button PCB board 22 is installed on the outer wall of the lower end bracket 21.
  • the button PCB board 22 is electrically connected to the main function PCB board 24 and can operate the main function PCB board 24.
  • the button 23 is fixed in the button hole of the housing 11 and connected to the button PCB board 22.
  • the main function PCB board 24 is installed at the right end between the two sets of brackets 21 and is electrically connected to the button PCB board 22.
  • the mode is selected and electrically connected to the motor 25, which can control the starting and closing of the motor 25.
  • the motor 25 is installed inside the motor silicone sleeve 28 and can generate wind force through rotation.
  • the fixed buckle 26 is installed on two sets of Between the left ends of the brackets 21, after the inner parts are finally pushed into the shell 11, they are installed inside the two sets of brackets 21 from the back of the shell 11, and are used to bolt the overall internal structure.
  • the magnets 27 are installed on the filter screen. 12, and can fix the filter 12.
  • the upper end of the main function PCB board 24 is provided with a plasma generator, and is connected to the top two holes of the air duct 42 through two leads.
  • the plasma generator outputs two The tail ends of the leads are respectively the positive ion generator carbon brush and the negative ion generator carbon brush.
  • the motor silicone sleeve 28 is installed inside the motor bracket 29 and limits the motor 25.
  • the left end of the motor bracket 29 is installed on the air outlet assembly. 4, and can fix the motor silicone sleeve 28, and can also limit the installation of the heater 33.
  • the motor 25 is wrapped with the motor silicone sleeve 28 and fixed together in the motor bracket 29. Through the elasticity of the motor silicone sleeve 28 It is tightly fitted and fixed with the motor bracket 29.
  • the hair does not have static electricity when it is wet, but when the water evaporates under the action of the hair dryer, it will also cause the hair to rub against each other and generate static electricity. Since the friction caused by the fluid is messy, it will generate a positive load. Negative charges will be generated. High-speed fans are more likely to cause static electricity due to their faster flow rates. The negative ions from a single emitter can only neutralize the positive charges in the static electricity. The remaining negative charges will still cause frizzy and messy hair due to repulsion. The plasma technology of the emitter will release positive and negative ions at the same time. After acting on the hair, it can quickly neutralize the positive and negative charges, making the hair smoother and brighter. This is not only the process of drying hair, but also has the same effect when blow-drying;
  • the flow-guiding heating component 3 is installed in the middle of the interior of the shell component 1. It can heat the blown wind, adjust the air outflow from the air outlet component 4, and reduce the head loss of the air flow by diverting the air volume through the gate blades. Increase the wind speed and air volume and reduce the noise caused by head damage. Since the heating component is not facing the air outlet and is at a certain distance, it has a good fire prevention effect.
  • the diversion heating component 3 includes: mica sheet 32 and heater 33.
  • the heater 33 It is composed of a mica sheet 32 and a heating wire, and is fixed inside the air duct 42. At the same time, one end of the mica sheet 32 is fixed in the groove at the upper end of the motor bracket 29;
  • the air outlet assembly 4 is installed at the inner left end of the shell assembly 1.
  • the air outlet assembly 4 is designed with an internal hollow double outlet air duct to form a pressure difference and generate a negative pressure area to suck the surrounding air and increase the size of the air outlet.
  • the wind speed, and the air duct design with dual air outlets can use the hollow slot to trap the hair in the middle of the two air outlets, making the contact area between the hair and the wind larger, improving the hair drying efficiency.
  • the air outlet assembly 4 includes: guide grille The blades 31, the top cover 41, the air outlet 411 and the air duct 42, and the guide blades 31 are installed inside the air duct 42 and can adjust the fluid motion trajectory and flow rate of the air duct 42.
  • the guide blades 31 will The double air outlets are each divided into three small air outlets. You can also adjust the number of air outlets by adjusting the number of guide blades. Add the function of 3 guide blades to the air duct to change the wind direction through diversion. The wind direction of the air outlet is vertical to the air outlet, and at the same time, the air volume per unit area of the double air outlet is uniform. The air volume is diverted by the gate blades to reduce the head loss of the air flow, thereby increasing the wind speed and air volume, and reducing the noise caused by head damage.
  • the fluid enters the device from the air inlet at the bottom of the fuselage, passes through the motor 25, and then passes through the heating rack inside the air duct 42, and then is divided into several parts by the guide blades 31, and finally blows out from the two sets of air outlets 411 of the top cover 41.
  • the top cover 41 is installed at the left end of the air duct 42, and the wind can be blown out vertically by installing the guide blades 31 inside.
  • the air outlets 411 are provided on both sides of the front end of the top cover 41, and Correspondingly matching the air outlet of the hair dryer 42, the wind blown out by the hair dryer 42 can be blown out vertically.
  • the top cover 41 is set in a U shape, and hair can be placed inside to dry and style the hair.
  • the hair dryer 42 is installed on The inner left end of the shell 11, and through the air duct design of the hollow double air outlets inside, forms a pressure difference, creating a negative pressure area, sucking the surrounding air, increasing the wind speed at the air outlet, and clamping the hair when drying Blowing the hollow part in the direction of the wind can speed up the evaporation of water on the hair.
  • the size of the hollow part is adjustable.
  • an arc angle is provided at the air outlet of the air duct 42, which functions to reduce fluid head loss, increase wind speed and air volume, and reduce wind noise at the same time.
  • the size of the arc angle is adjustable and is within the protection range. .
  • those skilled in the art energize the device and touch the button PCB board 22 by pressing the button 23, so that the main function PCB board 24 starts according to the selected mode.
  • the motor 25 and the heater 33 start to work. It is placed inside the top cover 41 so that the hair is stuck between the two air outlets, thereby making the contact area between the hair and the wind larger and improving the hair drying efficiency.
  • the air outlet 411 allows the fluid to enter the device through the air inlet at the bottom of the fuselage and undergoes plasma generation. and the motor 25, and then passes through the heating frame inside the air duct 42, and is divided into several parts by the guide blades 31, and finally blows out from the two sets of air outlets 411 of the top cover 41.
  • the wind blown out of the air outlets 411 is Vertical wind, through the air duct design of the hollow double air outlets inside, forms a pressure difference and creates a negative pressure area, which sucks the surrounding air and increases the wind speed at the air outlets, thereby drying the hair.

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  • Cleaning And Drying Hair (AREA)

Abstract

一种双风道吹风机,包括壳组件(1),其内部安装驱动组件(2)、导流发热组件(3)和出风组件(4),且能够对内部组件进行安装,并设置为一字形;驱动组件(2),其安装在壳组件(1)的内部右端,且能够通过双发射极的等离子技术同时释放正负离子,作用于毛发后迅速中和掉正电荷和负电荷,使头发柔顺光亮。通过设计为一字形的双出风口(411)的风道和整流来减少风量在风道中的损耗,增加风速和风量;双出风口(411)的风道设计可以利用中空的槽将头发卡在两个出风口(411)中间,让头发和风的接触面积更大,提高干发效率,同时,双出风口(411)的中空设计可以进行简单的发型造型操作。

Description

一种双风道吹风机 技术领域
本发明涉及吹风机技术领域,具体为一种双风道吹风机。
背景技术
高速吹风机逐步成为市场主流产品,与普通吹风机不同的是,高速吹风机采用的是无刷马达,单凭自身电机驱动的叶轮即可达到足够强大的风力,在吹头发的时候确实能够达到强效速干的效果,同时无刷马达不仅转速更高,而且风力更大、噪音更小、寿命更长,但目前市场上的高速吹风机,同质化严重,大部分高速吹风机都是“T”字形,从手柄底部进风,头部出风,体积较大,功能单一,同时,“T”字形的风道对风量的损耗较大,女性在使用吹风机时除了有干发的需求,还有发型造型的需求,但现有的吹风机往往需要借助其他工具来进行发型造型,比如头梳,结合头梳,两只手进行操作,十分不便捷。
为此,我们提出一种双风道吹风机。
技术解决方案
鉴于上述和/或现有一种双风道吹风机中存在的问题,提出了本发明。
因此,本发明的目的是提供一种双风道吹风机,通过设计为一字形的双出风口的风道和整流来减少风量在风道中的损耗,且可以利用中空的槽可以将头发卡在两个出风口中间,让头发和风的接触面积更大,同时,双风口的中空设计可以进行简单的发型造型操作,能够解决上述提出现有的问题。
为解决上述技术问题,根据本发明的一个方面,本发明提供了如下技术方案:
 一种双风道吹风机,其包括:
壳组件,其内部安装驱动组件、导流发热组件和出风组件,且能够对内部组件进行安装,并设置为一字形;
驱动组件,其安装在壳组件的内部右端,且能够通过双发射极的等离子技术同时释放正负离子,作用于毛发后迅速中和掉正电荷和负电荷,使头发柔顺光亮;
导流发热组件,其安装在壳组件的内部中间,且能够对吹出的风进行加热,并能够对出风组件的出风进行调整;
出风组件,其安装在壳组件的内部左端,且通过内部中空的双出风口的风道设计,形成压强差,产生的负压区域,抽吸周围的空气,增大出风口处的风速。
作为本发明所述的一种双风道吹风机的一种优选方案,其中:所述壳组件包括:
外壳,其内部安装驱动组件、导流发热组件和出风组件,且对内部组件进行安装和放置,且设置为一字形;
滤网,其安装在外壳的内部右端的端口,且对外界毛发进行阻挡;
尾盖磁铁,其安装在滤网的右端;
尾盖,其安装在尾盖磁铁右端,且将滤网固定在外壳的内部右端的端口;
尾挡,其安装在尾盖的外壁右端,且能够将线路排出。
作为本发明所述的一种双风道吹风机的一种优选方案,其中:所述外壳包括:
滤孔,其设置在外壳的外壁右端,且通过滤网阻挡杂质。
作为本发明所述的一种双风道吹风机的一种优选方案,其中:所述驱动组件包括:
支架,其安装在外壳的内部右端,并设置为两组,且内部对主功能PCB板和电机进行安装;
按键PCB板,其安装在下端支架的外壁;
按键,其固定在外壳的按键孔内,且连接在按键PCB板上。
作为本发明所述的一种双风道吹风机的一种优选方案,其中:所述支架包括:
主功能PCB板,其安装在两组支架之间的右端,且电性连接
按键PCB板,能够进行模式选择;
电机,其安装在电机硅胶套的内部,且能够通过转动产生风力;
固定扣,其安装在两组支架左端之间,是最后将内部件推入外壳后,从位于外壳的背面安装在两组支且架内部,用于栓住整体的内部结构;
磁铁,其安装在滤网的两端,且能够对滤网进行固定;
电机硅胶套,其安装在电机支架的内部,且对电机进行限位;
电机支架的左端安装在出风组件的内部右端,且能够对电机硅胶套进行固定,同时能够对发热器进行限位安装。
作为本发明所述的一种双风道吹风机的一种优选方案,其中:所述主功能PCB板的上端设有等离子发生器,且通过两根引线连接到风筒的顶部两个孔内。
作为本发明所述的一种双风道吹风机的一种优选方案,其中:所述导流发热组件包括:
发热器,其由云母片和发热丝共同组成,且固定在风筒内部,同时云母片一端固定在电机支架上端的槽内。
作为本发明所述的一种双风道吹风机的一种优选方案,其中:所述出风组件包括:
导流栅叶,其安装在风筒的内部,且能够对风筒的流体运动轨迹和流量进行调节;
顶盖,其安装在风筒的左端,且通过内部安装导流栅叶能够将风垂直吹出;
风筒,其安装在外壳的内部左端,且通过内部中空的双出风口的风道设计,形成压强差,产生的负压区域,抽吸周围的空气,增大出风口处的风速。
作为本发明所述的一种双风道吹风机的一种优选方案,其中:所述顶盖包括:
出风口,其设置在顶盖的前端两侧,且与风筒的出风口对应配合,能够将风筒吹出的风垂直吹出。
作为本发明所述的一种双风道吹风机的一种优选方案,其中:所述顶盖设置为U型,且内部可放置头发,对头发进行吹干和造型。
有益效果
与现有技术相比:
通过壳组件能够对内部组件进行安装,并设置为一字形,从而通过整流来减少风量在风道中的损耗,增加风速和风量;
通过驱动组件能够通过双发射极的等离子技术同时释放正负离子,作用于毛发后迅速中和掉正电荷和负电荷,使头发柔顺光亮;
通过能够对吹出的风进行加热,并能够对出风组件的出风进行调整,且通过栅叶分流风量来减少风流量的头损从而增加风速和风量,减少因头损产生的噪音,且具有良好的隔热防火作用;
通过出风组件通过内部中空的双出风口的风道设计,形成压强差,产生的负压区域,抽吸周围的空气,增大出风口处的风速,且双出风口的风道设计可以利用中空的槽可以将头发卡在两个出风口中间,让头发和风的接触面积更大,提高干发效率。
附图说明
图1为本发明提供的整体拆分结构示意图;
图2为本发明提供的整体结构示意图;
图3为本发明提供的出风组件拆分结构示意图;
图4为本发明提供的整体剖面结构示意图;
图5为本发明提供的出风组件右视结构示意图;
图6为本发明提供的导流发热组件拆分结构示意图;
图7为本发明提供的驱动组件拆分结构示意图;
图8为本发明提供的外壳结构示意图;
图9为本发明提供的壳组件拆分结构示意图;
图10为本发明提供的出风组件剖视结构示意图;
图11为本发明提供的风筒连接结构示意图;
图12为本发明提供的电机支架结构示意图;
图13为本发明提供的出风组件剖面风向示意图;
图14为本发明提供的内部风道剖面的风向示意图;
图15为本发明提供的整体风向示意图。
图中:壳组件1、外壳11、滤孔111、滤网12、尾盖磁铁13、尾盖14、尾挡15、驱动组件2、支架21、按键 PCB板22、按键23、主功能PCB板24、电机25、固定扣26、磁铁27、电机硅胶套28、电机支架29、导流发热组件3、云母片32、发热器33、出风组件4、导流栅叶31、顶盖41、出风口411、风筒42。
本发明的实施方式
为使本发明的目的、技术方案和优点更加清楚,下面将结合附图对本发明的实施方式作进一步地详细描述。
本发明提供一种双风道吹风机,具有通过设计为一字形的双出风口411的风道和整流来减少风量在风道中的损耗,增加风速和风量,双出风口411的风道设计可以利用中空的槽可以将头发卡在两个出风口中间,让头发和风的接触面积更大,提高干发效率,同时,双风口的中空设计可以进行简单的发型造型操作的优点,请参阅图1-5,包括壳组件1、驱动组件2、导流发热组件3和出风组件4;
壳组件1内部安装驱动组件2、导流发热组件3和出风组件4,通过壳组件1能够对内部组件进行安装,并设置为一字形,从而通过整流来减少风量在风道中的损耗,增加风速和风量,壳组件1包括:外壳11、滤孔111、滤网12、尾盖磁铁13、尾盖14和尾挡15,外壳11,其内部安装驱动组件2、导流发热组件3和出风组件4,且对内部组件进行安装和放置,且设置为一字形,从而通过整流来减少风量在风道中的损耗,增加风速和风量,滤孔111,其设置在外壳11的外壁右端,且通过滤网12阻挡杂质,通过磁吸结构用户方便拆卸清理,滤网12,其安装在外壳11的内部右端的端口,且对外界毛发进行阻挡,尾盖磁铁13,其安装在滤网12的右端,且对滤网12进行限位,尾盖14,其安装在尾盖磁铁13右端,且将滤网12固定在外壳11的内部右端的端口,尾挡15,其安装在尾盖14的外壁右端,且能够将线路排出,通过滤网12固定在尾盖14上,通过螺丝固定,可拆卸滤网12部分固定在外壳11与支架21的缝隙中,通过磁铁27磁性吸住固定,用户长时间使用时,滤网12上会吸附大量灰尘等物质,需要及时清理,不然会导致进风口堵住,且能够避免影响电机25的运行,通过磁吸结构用户方便拆卸清理;
驱动组件2安装在壳组件1的内部右端,通过驱动组件2能够通过双发射极的等离子技术同时释放正负离子,作用于毛发后迅速中和掉正电荷和负电荷,使头发柔顺光亮,驱动组件2包括:支架21、按键PCB板22、按键23、主功能PCB板24、电机25、固定扣26和磁铁27,支架21,其安装在外壳11的内部右端,并设置为两组,且内部对主功能PCB板24和电机25进行安装,按键PCB板22,其安装在下端支架21的外壁,按键PCB板22与主功能PCB板24电性连接,能够对主功能PCB板24进行操作,按键23,其固定在外壳11的按键孔内,且连接在按键PCB板22上,主功能PCB板24,其安装在两组支架21之间的右端,且电性连接按键PCB板22,能够进行模式选择,且与电机25电性连接,能够控制电机25的启动和关闭,电机25,其安装在电机硅胶套28的内部,且能够通过转动产生风力,固定扣26,其安装在两组支架21左端之间,是最后将内部件推入外壳11后,从位于外壳11的背面安装在两组支且架21内部,用于栓住整体的内部结构,磁铁27,其安装在滤网12的两端,且能够对滤网12进行固定,主功能PCB板24的上端设有等离子发生器,且通过两根引线连接到风筒42的顶部两个孔内,等离子发生器输出两根引线尾端分别为正离子发生器碳刷和负离子发生器碳刷,电机硅胶套28,其安装在电机支架29的内部,且对电机25进行限位,电机支架29的左端安装在出风组件4的内部右端,且能够对电机硅胶套28进行固定,同时能够对发热器33进行限位安装,电机25外包裹电机硅胶套28,一起固定在电机支架29内,通过电机硅胶套28的弹性和电机支架29紧配合固定,电机支架29上有一圈限位台阶,定位电机25和电机硅胶套28,电机25和电机硅胶套28下半部分固定支架21内,也有一圈限位台阶,上下限位台阶共同定位电机25和电机硅胶套28;
其中,电机支架29和风筒42配合处有左右孔,用于出电机25的电线和发热器33与17主功能PCB板24的连接线,电机25的电线和发热器33的电线从孔内穿出后用密封胶封住孔,保证风道内部的密封性;
其中头发在湿漉时是不带有静电,但在风筒的作用下水分蒸发的同时也会使头发间相互摩擦而产生静电,由于流体引起的摩擦是杂乱的,所以即会产生正负荷也会产生负电荷,高速风机由于流速更快更易引起静电,而单一发射极的负离子是只能中和掉静电中的正电荷,剩余的负电荷由于排斥的现象依旧会造成头发的毛躁杂乱,双发射极的等离子技术会同时释放正负离子,作用于毛发后可迅速中和掉正电荷和负电荷,使头发更柔顺光亮,不单是干发的过程,做来吹造型时也有同样的效果;
导流发热组件3安装在壳组件1的内部中间,通过能够对吹出的风进行加热,并能够对出风组件4的出风进行调整,且通过栅叶分流风量来减少风流量的头损从而增加风速和风量,减少因头损产生的噪音,由于发热组件不正对出风口,且有一定距离,所以具有良好的防火作用,导流发热组件3包括:云母片32和发热器33,发热器33,其由云母片32和发热丝共同组成,且固定在风筒42内部,同时云母片32一端固定在电机支架29上端的槽内;
出风组件4安装在壳组件1的内部左端,出风组件4通过内部中空的双出风口的风道设计,形成压强差,产生的负压区域,抽吸周围的空气,增大出风口处的风速,且双出风口的风道设计可以利用中空的槽可以将头发卡在两个出风口中间,让头发和风的接触面积更大,提高干发效率,出风组件4包括:导流栅叶31、顶盖41、出风口411和风筒42,导流栅叶31,其安装在风筒42的内部,且能够对风筒42的流体运动轨迹和流量进行调节,导流栅叶31将双出风口各分为三个小出风口,也可以通过调整导流栅叶的栅叶数量调整出风口的数量,在风道中加入3导流栅叶的作用,通过导流来改变风向使出风口的风向是垂直与出风口,同时使双出风口单位面积的风量均匀,通过栅叶分流风量来减少风流量的头损从而增加风速和风量,减少因头损产生的噪音,当进行使用时,流体从机身底部进风口进入装置经过电机25,然后经过被风筒42内部的发热架,再通过导流栅叶31分为若干份,最后从顶盖41的两组出风口411吹出,从而完成流体流动路径,顶盖41,其安装在风筒42的左端,且通过内部安装导流栅叶31能够将风垂直吹出,出风口411,其设置在顶盖41的前端两侧,且与风筒42的出风口对应配合,能够将风筒42吹出的风垂直吹出,顶盖41设置为U型,且内部可放置头发,对头发进行吹干和造型,风筒42,其安装在外壳11的内部左端,且通过内部中空的双出风口的风道设计,形成压强差,产生的负压区域,抽吸周围的空气,增大出风口处的风速,干发的时候将头发夹在中空部分顺着风向的方向吹,可以加快头发上水分的蒸发,其中中空部位的尺寸是可调整的,风筒42和导流栅叶31配合时,风道中间有缝隙,通过顶盖41盖住缝隙,避免漏风;
其中,如图10所述,风筒42出风口处设圆弧角,其作用在于减少流体头损,增加风速和风量,同时减少风噪,且圆弧角大小可调节,均在保护范围内。
在具体使用时,本领域技术人员将装置通电,通过按压按键23触动按键PCB板22,使主功能PCB板24根据所选模式进行启动,此时电机25和发热器33开始工作,通过将头发放置在顶盖41的内部,使将头发卡在两个出风口中间,从而使头发和风的接触面积更大,提高干发效率,出风口411将流体通过机身底部进风口进入装置经过等离子发生器和电机25,然后经过被风筒42内部的发热架,再通过导流栅叶31分为若干份,最后从顶盖41的两组出风口411吹出,此时出风口411吹出的风为垂直风,通过内部中空的双出风口的风道设计,形成压强差,产生的负压区域,抽吸周围的空气,增大出风口处的风速,从而来对头发进行吹干。
虽然在上文中已经参考实施方式对本发明进行了描述,然而在不脱离本发明的范围的情况下,可以对其进行各种改进并且可以用等效物替换其中的部件。尤其是,只要不存在结构冲突,本发明所披露的实施方式中的各项特征均可通过任意方式相互结合起来使用,在本说明书中未对这些组合的情况进行穷举性的描述仅仅是出于省略篇幅和节约资源的考虑。因此,本发明并不局限于文中公开的特定实施方式,而是包括落入权利要求的范围内的所有技术方案。

Claims (10)

  1. 一种双风道吹风机,其特征在于:包括:
    壳组件(1),其内部安装驱动组件(2)、导流发热组件(3)和出风组件(4),且能够对内部组件进行安装,并设置为一字形;
    驱动组件(2),其安装在壳组件(1)的内部右端,且能够通过双发射极的等离子技术同时释放正负离子,作用于毛发后迅速中和掉正电荷和负电荷,使头发柔顺光亮;
    导流发热组件(3),其安装在壳组件(1)的内部中间,且能够对吹出的风进行加热,并能够对出风组件(4)的出风进行调整;
    出风组件(4),其安装在壳组件(1)的内部左端,且通过内部中空的双出风口的风道设计,形成压强差,产生的负压区域,抽吸周围的空气,增大出风口处的风速。
  2. 根据权利要求1所述的一种双风道吹风机,其特征在于,所述壳组件(1)包括:
    外壳(11),其内部安装驱动组件(2)、导流发热组件(3)和出风组件(4),且对内部组件进行安装和放置,且设置为一字形;
    滤网(12),其安装在外壳(11)的内部右端的端口,且对外界毛发进行阻挡;
    尾盖磁铁(13),其安装在滤网(12)的右端;
    尾盖(14),其安装在尾盖磁铁(13)右端,且将滤网(12)固定在外壳(11)的内部右端的端口;
    尾挡(15),其安装在尾盖(14)的外壁右端,且能够将线路排出。
  3. 根据权利要求2所述的一种双风道吹风机,其特征在于,所述外壳(11)包括:
    滤孔(111),其设置在外壳(11)的外壁右端,且通过滤网(12)阻挡杂质。
  4. 根据权利要求1所述的一种双风道吹风机,其特征在于,所述驱动组件(2)包括:
    支架(21),其安装在外壳(11)的内部右端,并设置为两组,且内部对主功能PCB板(24)和电机(25)进行安装;
    按键PCB板(22),其安装在下端支架(21)的外壁;
    按键(23),其固定在外壳(11)的按键孔内,且连接在按键PCB板(22)上。
  5. 根据权利要求4所述的一种双风道吹风机,其特征在于,所述支架(21)包括:
    主功能PCB板(24),其安装在两组支架(21)之间的右端,且电性连接
    按键PCB板(22),能够进行模式选择;
    电机(25),其安装在电机硅胶套(28)的内部,且能够通过转动产生风力;
    固定扣(26),其安装在两组支架(21)左端之间,是最后将内部件推入外壳(11)后,从位于外壳(11)的背面安装在两组支且架(21)内部,用于栓住整体的内部结构;
    磁铁(27),其安装在滤网(12)的两端,且能够对滤网(12)进行固定;
    电机硅胶套(28),其安装在电机支架(29)的内部,且对电机(25)进行限位;
    电机支架(29)的左端安装在出风组件(4)的内部右端,且能够对电机硅胶套(28)进行固定,同时能够对发热器(33)进行限位安装。
  6. 根据权利要求5所述的一种双风道吹风机,其特征在于,所述主功能PCB板(24)的上端设有等离子发生器,且通过两根引线连接到风筒(42)的顶部两个孔内。
  7. 根据权利要求1所述的一种双风道吹风机,其特征在于,所述导流发热组件(3)包括:
    发热器(33),其由云母片(32)和发热丝共同组成,且固定在风筒42内部,同时云母片(32)一端固定在电机支架(29)上端的槽内。
  8. 根据权利要求1所述的一种双风道吹风机,其特征在于,所述出风组件(4)包括:
    导流栅叶(31),其安装在风筒(42)的内部,且能够对风筒(42)的流体运动轨迹和流量进行调节;
    顶盖(41),其安装在风筒(42)的左端,且通过内部安装导流栅叶(31)能够将风垂直吹出;
    风筒(42),其安装在外壳(11)的内部左端,且通过内部中空的双出风口的风道设计,形成压强差,产生的负压区域,抽吸周围的空气,增大出风口处的风速。
  9. 根据权利要求8所述的一种双风道吹风机,其特征在于,所述顶盖(41)包括:
    出风口(411),其设置在顶盖(41)的前端两侧,且与风筒(42)的出风口对应配合,能够将风筒(42)吹出的风垂直吹出。
  10. 根据权利要求8所述的一种双风道吹风机,其特征在于,所述顶盖(41)设置为U型,且内部可放置头发,对头发进行吹干和造型。
PCT/CN2023/088421 2022-08-17 2023-04-14 一种双风道吹风机 WO2024037004A1 (zh)

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